blob: bffac2f4b581d255c2e24daee63a933fc1f44fbd [file] [log] [blame]
b.liue9582032025-04-17 19:18:16 +08001// SPDX-License-Identifier: GPL-2.0-only
2/*
3 * xfrm_policy.c
4 *
5 * Changes:
6 * Mitsuru KANDA @USAGI
7 * Kazunori MIYAZAWA @USAGI
8 * Kunihiro Ishiguro <kunihiro@ipinfusion.com>
9 * IPv6 support
10 * Kazunori MIYAZAWA @USAGI
11 * YOSHIFUJI Hideaki
12 * Split up af-specific portion
13 * Derek Atkins <derek@ihtfp.com> Add the post_input processor
14 *
15 */
16
17#include <linux/err.h>
18#include <linux/slab.h>
19#include <linux/kmod.h>
20#include <linux/list.h>
21#include <linux/spinlock.h>
22#include <linux/workqueue.h>
23#include <linux/notifier.h>
24#include <linux/netdevice.h>
25#include <linux/netfilter.h>
26#include <linux/module.h>
27#include <linux/cache.h>
28#include <linux/cpu.h>
29#include <linux/audit.h>
30#include <linux/rhashtable.h>
31#include <linux/if_tunnel.h>
32#include <net/dst.h>
33#include <net/flow.h>
34#include <net/inet_ecn.h>
35#include <net/xfrm.h>
36#include <net/ip.h>
37#include <net/gre.h>
38#if IS_ENABLED(CONFIG_IPV6_MIP6)
39#include <net/mip6.h>
40#endif
41#ifdef CONFIG_XFRM_STATISTICS
42#include <net/snmp.h>
43#endif
44
45#include "xfrm_hash.h"
46
47#define XFRM_QUEUE_TMO_MIN ((unsigned)(HZ/10))
48#define XFRM_QUEUE_TMO_MAX ((unsigned)(60*HZ))
49#define XFRM_MAX_QUEUE_LEN 100
50
51struct xfrm_flo {
52 struct dst_entry *dst_orig;
53 u8 flags;
54};
55
56/* prefixes smaller than this are stored in lists, not trees. */
57#define INEXACT_PREFIXLEN_IPV4 16
58#define INEXACT_PREFIXLEN_IPV6 48
59
60struct xfrm_pol_inexact_node {
61 struct rb_node node;
62 union {
63 xfrm_address_t addr;
64 struct rcu_head rcu;
65 };
66 u8 prefixlen;
67
68 struct rb_root root;
69
70 /* the policies matching this node, can be empty list */
71 struct hlist_head hhead;
72};
73
74/* xfrm inexact policy search tree:
75 * xfrm_pol_inexact_bin = hash(dir,type,family,if_id);
76 * |
77 * +---- root_d: sorted by daddr:prefix
78 * | |
79 * | xfrm_pol_inexact_node
80 * | |
81 * | +- root: sorted by saddr/prefix
82 * | | |
83 * | | xfrm_pol_inexact_node
84 * | | |
85 * | | + root: unused
86 * | | |
87 * | | + hhead: saddr:daddr policies
88 * | |
89 * | +- coarse policies and all any:daddr policies
90 * |
91 * +---- root_s: sorted by saddr:prefix
92 * | |
93 * | xfrm_pol_inexact_node
94 * | |
95 * | + root: unused
96 * | |
97 * | + hhead: saddr:any policies
98 * |
99 * +---- coarse policies and all any:any policies
100 *
101 * Lookups return four candidate lists:
102 * 1. any:any list from top-level xfrm_pol_inexact_bin
103 * 2. any:daddr list from daddr tree
104 * 3. saddr:daddr list from 2nd level daddr tree
105 * 4. saddr:any list from saddr tree
106 *
107 * This result set then needs to be searched for the policy with
108 * the lowest priority. If two results have same prio, youngest one wins.
109 */
110
111struct xfrm_pol_inexact_key {
112 possible_net_t net;
113 u32 if_id;
114 u16 family;
115 u8 dir, type;
116};
117
118struct xfrm_pol_inexact_bin {
119 struct xfrm_pol_inexact_key k;
120 struct rhash_head head;
121 /* list containing '*:*' policies */
122 struct hlist_head hhead;
123
124 seqcount_t count;
125 /* tree sorted by daddr/prefix */
126 struct rb_root root_d;
127
128 /* tree sorted by saddr/prefix */
129 struct rb_root root_s;
130
131 /* slow path below */
132 struct list_head inexact_bins;
133 struct rcu_head rcu;
134};
135
136enum xfrm_pol_inexact_candidate_type {
137 XFRM_POL_CAND_BOTH,
138 XFRM_POL_CAND_SADDR,
139 XFRM_POL_CAND_DADDR,
140 XFRM_POL_CAND_ANY,
141
142 XFRM_POL_CAND_MAX,
143};
144
145struct xfrm_pol_inexact_candidates {
146 struct hlist_head *res[XFRM_POL_CAND_MAX];
147};
148
149static DEFINE_SPINLOCK(xfrm_if_cb_lock);
150static struct xfrm_if_cb const __rcu *xfrm_if_cb __read_mostly;
151
152static DEFINE_SPINLOCK(xfrm_policy_afinfo_lock);
153static struct xfrm_policy_afinfo const __rcu *xfrm_policy_afinfo[AF_INET6 + 1]
154 __read_mostly;
155
156static struct kmem_cache *xfrm_dst_cache __ro_after_init;
157static __read_mostly seqcount_t xfrm_policy_hash_generation;
158
159static struct rhashtable xfrm_policy_inexact_table;
160static const struct rhashtable_params xfrm_pol_inexact_params;
161
162static void xfrm_init_pmtu(struct xfrm_dst **bundle, int nr);
163static int stale_bundle(struct dst_entry *dst);
164static int xfrm_bundle_ok(struct xfrm_dst *xdst);
165static void xfrm_policy_queue_process(struct timer_list *t);
166
167static void __xfrm_policy_link(struct xfrm_policy *pol, int dir);
168static struct xfrm_policy *__xfrm_policy_unlink(struct xfrm_policy *pol,
169 int dir);
170
171static struct xfrm_pol_inexact_bin *
172xfrm_policy_inexact_lookup(struct net *net, u8 type, u16 family, u8 dir,
173 u32 if_id);
174
175static struct xfrm_pol_inexact_bin *
176xfrm_policy_inexact_lookup_rcu(struct net *net,
177 u8 type, u16 family, u8 dir, u32 if_id);
178static struct xfrm_policy *
179xfrm_policy_insert_list(struct hlist_head *chain, struct xfrm_policy *policy,
180 bool excl);
181static void xfrm_policy_insert_inexact_list(struct hlist_head *chain,
182 struct xfrm_policy *policy);
183
184static bool
185xfrm_policy_find_inexact_candidates(struct xfrm_pol_inexact_candidates *cand,
186 struct xfrm_pol_inexact_bin *b,
187 const xfrm_address_t *saddr,
188 const xfrm_address_t *daddr);
189
190static inline bool xfrm_pol_hold_rcu(struct xfrm_policy *policy)
191{
192 return refcount_inc_not_zero(&policy->refcnt);
193}
194
195static inline bool
196__xfrm4_selector_match(const struct xfrm_selector *sel, const struct flowi *fl)
197{
198 const struct flowi4 *fl4 = &fl->u.ip4;
199
200 return addr4_match(fl4->daddr, sel->daddr.a4, sel->prefixlen_d) &&
201 addr4_match(fl4->saddr, sel->saddr.a4, sel->prefixlen_s) &&
202 !((xfrm_flowi_dport(fl, &fl4->uli) ^ sel->dport) & sel->dport_mask) &&
203 !((xfrm_flowi_sport(fl, &fl4->uli) ^ sel->sport) & sel->sport_mask) &&
204 (fl4->flowi4_proto == sel->proto || !sel->proto) &&
205 (fl4->flowi4_oif == sel->ifindex || !sel->ifindex);
206}
207
208static inline bool
209__xfrm6_selector_match(const struct xfrm_selector *sel, const struct flowi *fl)
210{
211 const struct flowi6 *fl6 = &fl->u.ip6;
212
213 return addr_match(&fl6->daddr, &sel->daddr, sel->prefixlen_d) &&
214 addr_match(&fl6->saddr, &sel->saddr, sel->prefixlen_s) &&
215 !((xfrm_flowi_dport(fl, &fl6->uli) ^ sel->dport) & sel->dport_mask) &&
216 !((xfrm_flowi_sport(fl, &fl6->uli) ^ sel->sport) & sel->sport_mask) &&
217 (fl6->flowi6_proto == sel->proto || !sel->proto) &&
218 (fl6->flowi6_oif == sel->ifindex || !sel->ifindex);
219}
220
221bool xfrm_selector_match(const struct xfrm_selector *sel, const struct flowi *fl,
222 unsigned short family)
223{
224 switch (family) {
225 case AF_INET:
226 return __xfrm4_selector_match(sel, fl);
227 case AF_INET6:
228 return __xfrm6_selector_match(sel, fl);
229 }
230 return false;
231}
232
233static const struct xfrm_policy_afinfo *xfrm_policy_get_afinfo(unsigned short family)
234{
235 const struct xfrm_policy_afinfo *afinfo;
236
237 if (unlikely(family >= ARRAY_SIZE(xfrm_policy_afinfo)))
238 return NULL;
239 rcu_read_lock();
240 afinfo = rcu_dereference(xfrm_policy_afinfo[family]);
241 if (unlikely(!afinfo))
242 rcu_read_unlock();
243 return afinfo;
244}
245
246/* Called with rcu_read_lock(). */
247static const struct xfrm_if_cb *xfrm_if_get_cb(void)
248{
249 return rcu_dereference(xfrm_if_cb);
250}
251
252struct dst_entry *__xfrm_dst_lookup(struct net *net, int tos, int oif,
253 const xfrm_address_t *saddr,
254 const xfrm_address_t *daddr,
255 int family, u32 mark)
256{
257 const struct xfrm_policy_afinfo *afinfo;
258 struct dst_entry *dst;
259
260 afinfo = xfrm_policy_get_afinfo(family);
261 if (unlikely(afinfo == NULL))
262 return ERR_PTR(-EAFNOSUPPORT);
263
264 dst = afinfo->dst_lookup(net, tos, oif, saddr, daddr, mark);
265
266 rcu_read_unlock();
267
268 return dst;
269}
270EXPORT_SYMBOL(__xfrm_dst_lookup);
271
272static inline struct dst_entry *xfrm_dst_lookup(struct xfrm_state *x,
273 int tos, int oif,
274 xfrm_address_t *prev_saddr,
275 xfrm_address_t *prev_daddr,
276 int family, u32 mark)
277{
278 struct net *net = xs_net(x);
279 xfrm_address_t *saddr = &x->props.saddr;
280 xfrm_address_t *daddr = &x->id.daddr;
281 struct dst_entry *dst;
282
283 if (x->type->flags & XFRM_TYPE_LOCAL_COADDR) {
284 saddr = x->coaddr;
285 daddr = prev_daddr;
286 }
287 if (x->type->flags & XFRM_TYPE_REMOTE_COADDR) {
288 saddr = prev_saddr;
289 daddr = x->coaddr;
290 }
291
292 dst = __xfrm_dst_lookup(net, tos, oif, saddr, daddr, family, mark);
293
294 if (!IS_ERR(dst)) {
295 if (prev_saddr != saddr)
296 memcpy(prev_saddr, saddr, sizeof(*prev_saddr));
297 if (prev_daddr != daddr)
298 memcpy(prev_daddr, daddr, sizeof(*prev_daddr));
299 }
300
301 return dst;
302}
303
304static inline unsigned long make_jiffies(long secs)
305{
306 if (secs >= (MAX_SCHEDULE_TIMEOUT-1)/HZ)
307 return MAX_SCHEDULE_TIMEOUT-1;
308 else
309 return secs*HZ;
310}
311
312static void xfrm_policy_timer(struct timer_list *t)
313{
314 struct xfrm_policy *xp = from_timer(xp, t, timer);
315 time64_t now = ktime_get_real_seconds();
316 time64_t next = TIME64_MAX;
317 int warn = 0;
318 int dir;
319
320 read_lock(&xp->lock);
321
322 if (unlikely(xp->walk.dead))
323 goto out;
324
325 dir = xfrm_policy_id2dir(xp->index);
326
327 if (xp->lft.hard_add_expires_seconds) {
328 time64_t tmo = xp->lft.hard_add_expires_seconds +
329 xp->curlft.add_time - now;
330 if (tmo <= 0)
331 goto expired;
332 if (tmo < next)
333 next = tmo;
334 }
335 if (xp->lft.hard_use_expires_seconds) {
336 time64_t tmo = xp->lft.hard_use_expires_seconds +
337 (xp->curlft.use_time ? : xp->curlft.add_time) - now;
338 if (tmo <= 0)
339 goto expired;
340 if (tmo < next)
341 next = tmo;
342 }
343 if (xp->lft.soft_add_expires_seconds) {
344 time64_t tmo = xp->lft.soft_add_expires_seconds +
345 xp->curlft.add_time - now;
346 if (tmo <= 0) {
347 warn = 1;
348 tmo = XFRM_KM_TIMEOUT;
349 }
350 if (tmo < next)
351 next = tmo;
352 }
353 if (xp->lft.soft_use_expires_seconds) {
354 time64_t tmo = xp->lft.soft_use_expires_seconds +
355 (xp->curlft.use_time ? : xp->curlft.add_time) - now;
356 if (tmo <= 0) {
357 warn = 1;
358 tmo = XFRM_KM_TIMEOUT;
359 }
360 if (tmo < next)
361 next = tmo;
362 }
363
364 if (warn)
365 km_policy_expired(xp, dir, 0, 0);
366 if (next != TIME64_MAX &&
367 !mod_timer(&xp->timer, jiffies + make_jiffies(next)))
368 xfrm_pol_hold(xp);
369
370out:
371 read_unlock(&xp->lock);
372 xfrm_pol_put(xp);
373 return;
374
375expired:
376 read_unlock(&xp->lock);
377 if (!xfrm_policy_delete(xp, dir))
378 km_policy_expired(xp, dir, 1, 0);
379 xfrm_pol_put(xp);
380}
381
382/* Allocate xfrm_policy. Not used here, it is supposed to be used by pfkeyv2
383 * SPD calls.
384 */
385
386struct xfrm_policy *xfrm_policy_alloc(struct net *net, gfp_t gfp)
387{
388 struct xfrm_policy *policy;
389
390 policy = kzalloc(sizeof(struct xfrm_policy), gfp);
391
392 if (policy) {
393 write_pnet(&policy->xp_net, net);
394 INIT_LIST_HEAD(&policy->walk.all);
395 INIT_HLIST_NODE(&policy->bydst_inexact_list);
396 INIT_HLIST_NODE(&policy->bydst);
397 INIT_HLIST_NODE(&policy->byidx);
398 rwlock_init(&policy->lock);
399 refcount_set(&policy->refcnt, 1);
400 skb_queue_head_init(&policy->polq.hold_queue);
401 timer_setup(&policy->timer, xfrm_policy_timer, 0);
402 timer_setup(&policy->polq.hold_timer,
403 xfrm_policy_queue_process, 0);
404 }
405 return policy;
406}
407EXPORT_SYMBOL(xfrm_policy_alloc);
408
409static void xfrm_policy_destroy_rcu(struct rcu_head *head)
410{
411 struct xfrm_policy *policy = container_of(head, struct xfrm_policy, rcu);
412
413 security_xfrm_policy_free(policy->security);
414 kfree(policy);
415}
416
417/* Destroy xfrm_policy: descendant resources must be released to this moment. */
418
419void xfrm_policy_destroy(struct xfrm_policy *policy)
420{
421 BUG_ON(!policy->walk.dead);
422
423 if (del_timer(&policy->timer) || del_timer(&policy->polq.hold_timer))
424 BUG();
425
426 call_rcu(&policy->rcu, xfrm_policy_destroy_rcu);
427}
428EXPORT_SYMBOL(xfrm_policy_destroy);
429
430/* Rule must be locked. Release descendant resources, announce
431 * entry dead. The rule must be unlinked from lists to the moment.
432 */
433
434static void xfrm_policy_kill(struct xfrm_policy *policy)
435{
436 write_lock_bh(&policy->lock);
437 policy->walk.dead = 1;
438 write_unlock_bh(&policy->lock);
439
440 atomic_inc(&policy->genid);
441
442 if (del_timer(&policy->polq.hold_timer))
443 xfrm_pol_put(policy);
444 skb_queue_purge(&policy->polq.hold_queue);
445
446 if (del_timer(&policy->timer))
447 xfrm_pol_put(policy);
448
449 xfrm_pol_put(policy);
450}
451
452static unsigned int xfrm_policy_hashmax __read_mostly = 1 * 1024 * 1024;
453
454static inline unsigned int idx_hash(struct net *net, u32 index)
455{
456 return __idx_hash(index, net->xfrm.policy_idx_hmask);
457}
458
459/* calculate policy hash thresholds */
460static void __get_hash_thresh(struct net *net,
461 unsigned short family, int dir,
462 u8 *dbits, u8 *sbits)
463{
464 switch (family) {
465 case AF_INET:
466 *dbits = net->xfrm.policy_bydst[dir].dbits4;
467 *sbits = net->xfrm.policy_bydst[dir].sbits4;
468 break;
469
470 case AF_INET6:
471 *dbits = net->xfrm.policy_bydst[dir].dbits6;
472 *sbits = net->xfrm.policy_bydst[dir].sbits6;
473 break;
474
475 default:
476 *dbits = 0;
477 *sbits = 0;
478 }
479}
480
481static struct hlist_head *policy_hash_bysel(struct net *net,
482 const struct xfrm_selector *sel,
483 unsigned short family, int dir)
484{
485 unsigned int hmask = net->xfrm.policy_bydst[dir].hmask;
486 unsigned int hash;
487 u8 dbits;
488 u8 sbits;
489
490 __get_hash_thresh(net, family, dir, &dbits, &sbits);
491 hash = __sel_hash(sel, family, hmask, dbits, sbits);
492
493 if (hash == hmask + 1)
494 return NULL;
495
496 return rcu_dereference_check(net->xfrm.policy_bydst[dir].table,
497 lockdep_is_held(&net->xfrm.xfrm_policy_lock)) + hash;
498}
499
500static struct hlist_head *policy_hash_direct(struct net *net,
501 const xfrm_address_t *daddr,
502 const xfrm_address_t *saddr,
503 unsigned short family, int dir)
504{
505 unsigned int hmask = net->xfrm.policy_bydst[dir].hmask;
506 unsigned int hash;
507 u8 dbits;
508 u8 sbits;
509
510 __get_hash_thresh(net, family, dir, &dbits, &sbits);
511 hash = __addr_hash(daddr, saddr, family, hmask, dbits, sbits);
512
513 return rcu_dereference_check(net->xfrm.policy_bydst[dir].table,
514 lockdep_is_held(&net->xfrm.xfrm_policy_lock)) + hash;
515}
516
517static void xfrm_dst_hash_transfer(struct net *net,
518 struct hlist_head *list,
519 struct hlist_head *ndsttable,
520 unsigned int nhashmask,
521 int dir)
522{
523 struct hlist_node *tmp, *entry0 = NULL;
524 struct xfrm_policy *pol;
525 unsigned int h0 = 0;
526 u8 dbits;
527 u8 sbits;
528
529redo:
530 hlist_for_each_entry_safe(pol, tmp, list, bydst) {
531 unsigned int h;
532
533 __get_hash_thresh(net, pol->family, dir, &dbits, &sbits);
534 h = __addr_hash(&pol->selector.daddr, &pol->selector.saddr,
535 pol->family, nhashmask, dbits, sbits);
536 if (!entry0) {
537 hlist_del_rcu(&pol->bydst);
538 hlist_add_head_rcu(&pol->bydst, ndsttable + h);
539 h0 = h;
540 } else {
541 if (h != h0)
542 continue;
543 hlist_del_rcu(&pol->bydst);
544 hlist_add_behind_rcu(&pol->bydst, entry0);
545 }
546 entry0 = &pol->bydst;
547 }
548 if (!hlist_empty(list)) {
549 entry0 = NULL;
550 goto redo;
551 }
552}
553
554static void xfrm_idx_hash_transfer(struct hlist_head *list,
555 struct hlist_head *nidxtable,
556 unsigned int nhashmask)
557{
558 struct hlist_node *tmp;
559 struct xfrm_policy *pol;
560
561 hlist_for_each_entry_safe(pol, tmp, list, byidx) {
562 unsigned int h;
563
564 h = __idx_hash(pol->index, nhashmask);
565 hlist_add_head(&pol->byidx, nidxtable+h);
566 }
567}
568
569static unsigned long xfrm_new_hash_mask(unsigned int old_hmask)
570{
571 return ((old_hmask + 1) << 1) - 1;
572}
573
574static void xfrm_bydst_resize(struct net *net, int dir)
575{
576 unsigned int hmask = net->xfrm.policy_bydst[dir].hmask;
577 unsigned int nhashmask = xfrm_new_hash_mask(hmask);
578 unsigned int nsize = (nhashmask + 1) * sizeof(struct hlist_head);
579 struct hlist_head *ndst = xfrm_hash_alloc(nsize);
580 struct hlist_head *odst;
581 int i;
582
583 if (!ndst)
584 return;
585
586 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
587 write_seqcount_begin(&xfrm_policy_hash_generation);
588
589 odst = rcu_dereference_protected(net->xfrm.policy_bydst[dir].table,
590 lockdep_is_held(&net->xfrm.xfrm_policy_lock));
591
592 for (i = hmask; i >= 0; i--)
593 xfrm_dst_hash_transfer(net, odst + i, ndst, nhashmask, dir);
594
595 rcu_assign_pointer(net->xfrm.policy_bydst[dir].table, ndst);
596 net->xfrm.policy_bydst[dir].hmask = nhashmask;
597
598 write_seqcount_end(&xfrm_policy_hash_generation);
599 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
600
601 synchronize_rcu();
602
603 xfrm_hash_free(odst, (hmask + 1) * sizeof(struct hlist_head));
604}
605
606static void xfrm_byidx_resize(struct net *net, int total)
607{
608 unsigned int hmask = net->xfrm.policy_idx_hmask;
609 unsigned int nhashmask = xfrm_new_hash_mask(hmask);
610 unsigned int nsize = (nhashmask + 1) * sizeof(struct hlist_head);
611 struct hlist_head *oidx = net->xfrm.policy_byidx;
612 struct hlist_head *nidx = xfrm_hash_alloc(nsize);
613 int i;
614
615 if (!nidx)
616 return;
617
618 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
619
620 for (i = hmask; i >= 0; i--)
621 xfrm_idx_hash_transfer(oidx + i, nidx, nhashmask);
622
623 net->xfrm.policy_byidx = nidx;
624 net->xfrm.policy_idx_hmask = nhashmask;
625
626 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
627
628 xfrm_hash_free(oidx, (hmask + 1) * sizeof(struct hlist_head));
629}
630
631static inline int xfrm_bydst_should_resize(struct net *net, int dir, int *total)
632{
633 unsigned int cnt = net->xfrm.policy_count[dir];
634 unsigned int hmask = net->xfrm.policy_bydst[dir].hmask;
635
636 if (total)
637 *total += cnt;
638
639 if ((hmask + 1) < xfrm_policy_hashmax &&
640 cnt > hmask)
641 return 1;
642
643 return 0;
644}
645
646static inline int xfrm_byidx_should_resize(struct net *net, int total)
647{
648 unsigned int hmask = net->xfrm.policy_idx_hmask;
649
650 if ((hmask + 1) < xfrm_policy_hashmax &&
651 total > hmask)
652 return 1;
653
654 return 0;
655}
656
657void xfrm_spd_getinfo(struct net *net, struct xfrmk_spdinfo *si)
658{
659 si->incnt = net->xfrm.policy_count[XFRM_POLICY_IN];
660 si->outcnt = net->xfrm.policy_count[XFRM_POLICY_OUT];
661 si->fwdcnt = net->xfrm.policy_count[XFRM_POLICY_FWD];
662 si->inscnt = net->xfrm.policy_count[XFRM_POLICY_IN+XFRM_POLICY_MAX];
663 si->outscnt = net->xfrm.policy_count[XFRM_POLICY_OUT+XFRM_POLICY_MAX];
664 si->fwdscnt = net->xfrm.policy_count[XFRM_POLICY_FWD+XFRM_POLICY_MAX];
665 si->spdhcnt = net->xfrm.policy_idx_hmask;
666 si->spdhmcnt = xfrm_policy_hashmax;
667}
668EXPORT_SYMBOL(xfrm_spd_getinfo);
669
670static DEFINE_MUTEX(hash_resize_mutex);
671static void xfrm_hash_resize(struct work_struct *work)
672{
673 struct net *net = container_of(work, struct net, xfrm.policy_hash_work);
674 int dir, total;
675
676 mutex_lock(&hash_resize_mutex);
677
678 total = 0;
679 for (dir = 0; dir < XFRM_POLICY_MAX; dir++) {
680 if (xfrm_bydst_should_resize(net, dir, &total))
681 xfrm_bydst_resize(net, dir);
682 }
683 if (xfrm_byidx_should_resize(net, total))
684 xfrm_byidx_resize(net, total);
685
686 mutex_unlock(&hash_resize_mutex);
687}
688
689/* Make sure *pol can be inserted into fastbin.
690 * Useful to check that later insert requests will be sucessful
691 * (provided xfrm_policy_lock is held throughout).
692 */
693static struct xfrm_pol_inexact_bin *
694xfrm_policy_inexact_alloc_bin(const struct xfrm_policy *pol, u8 dir)
695{
696 struct xfrm_pol_inexact_bin *bin, *prev;
697 struct xfrm_pol_inexact_key k = {
698 .family = pol->family,
699 .type = pol->type,
700 .dir = dir,
701 .if_id = pol->if_id,
702 };
703 struct net *net = xp_net(pol);
704
705 lockdep_assert_held(&net->xfrm.xfrm_policy_lock);
706
707 write_pnet(&k.net, net);
708 bin = rhashtable_lookup_fast(&xfrm_policy_inexact_table, &k,
709 xfrm_pol_inexact_params);
710 if (bin)
711 return bin;
712
713 bin = kzalloc(sizeof(*bin), GFP_ATOMIC);
714 if (!bin)
715 return NULL;
716
717 bin->k = k;
718 INIT_HLIST_HEAD(&bin->hhead);
719 bin->root_d = RB_ROOT;
720 bin->root_s = RB_ROOT;
721 seqcount_init(&bin->count);
722
723 prev = rhashtable_lookup_get_insert_key(&xfrm_policy_inexact_table,
724 &bin->k, &bin->head,
725 xfrm_pol_inexact_params);
726 if (!prev) {
727 list_add(&bin->inexact_bins, &net->xfrm.inexact_bins);
728 return bin;
729 }
730
731 kfree(bin);
732
733 return IS_ERR(prev) ? NULL : prev;
734}
735
736static bool xfrm_pol_inexact_addr_use_any_list(const xfrm_address_t *addr,
737 int family, u8 prefixlen)
738{
739 if (xfrm_addr_any(addr, family))
740 return true;
741
742 if (family == AF_INET6 && prefixlen < INEXACT_PREFIXLEN_IPV6)
743 return true;
744
745 if (family == AF_INET && prefixlen < INEXACT_PREFIXLEN_IPV4)
746 return true;
747
748 return false;
749}
750
751static bool
752xfrm_policy_inexact_insert_use_any_list(const struct xfrm_policy *policy)
753{
754 const xfrm_address_t *addr;
755 bool saddr_any, daddr_any;
756 u8 prefixlen;
757
758 addr = &policy->selector.saddr;
759 prefixlen = policy->selector.prefixlen_s;
760
761 saddr_any = xfrm_pol_inexact_addr_use_any_list(addr,
762 policy->family,
763 prefixlen);
764 addr = &policy->selector.daddr;
765 prefixlen = policy->selector.prefixlen_d;
766 daddr_any = xfrm_pol_inexact_addr_use_any_list(addr,
767 policy->family,
768 prefixlen);
769 return saddr_any && daddr_any;
770}
771
772static void xfrm_pol_inexact_node_init(struct xfrm_pol_inexact_node *node,
773 const xfrm_address_t *addr, u8 prefixlen)
774{
775 node->addr = *addr;
776 node->prefixlen = prefixlen;
777}
778
779static struct xfrm_pol_inexact_node *
780xfrm_pol_inexact_node_alloc(const xfrm_address_t *addr, u8 prefixlen)
781{
782 struct xfrm_pol_inexact_node *node;
783
784 node = kzalloc(sizeof(*node), GFP_ATOMIC);
785 if (node)
786 xfrm_pol_inexact_node_init(node, addr, prefixlen);
787
788 return node;
789}
790
791static int xfrm_policy_addr_delta(const xfrm_address_t *a,
792 const xfrm_address_t *b,
793 u8 prefixlen, u16 family)
794{
795 u32 ma, mb, mask;
796 unsigned int pdw, pbi;
797 int delta = 0;
798
799 switch (family) {
800 case AF_INET:
801 if (prefixlen == 0)
802 return 0;
803 mask = ~0U << (32 - prefixlen);
804 ma = ntohl(a->a4) & mask;
805 mb = ntohl(b->a4) & mask;
806 if (ma < mb)
807 delta = -1;
808 else if (ma > mb)
809 delta = 1;
810 break;
811 case AF_INET6:
812 pdw = prefixlen >> 5;
813 pbi = prefixlen & 0x1f;
814
815 if (pdw) {
816 delta = memcmp(a->a6, b->a6, pdw << 2);
817 if (delta)
818 return delta;
819 }
820 if (pbi) {
821 mask = ~0U << (32 - pbi);
822 ma = ntohl(a->a6[pdw]) & mask;
823 mb = ntohl(b->a6[pdw]) & mask;
824 if (ma < mb)
825 delta = -1;
826 else if (ma > mb)
827 delta = 1;
828 }
829 break;
830 default:
831 break;
832 }
833
834 return delta;
835}
836
837static void xfrm_policy_inexact_list_reinsert(struct net *net,
838 struct xfrm_pol_inexact_node *n,
839 u16 family)
840{
841 unsigned int matched_s, matched_d;
842 struct xfrm_policy *policy, *p;
843
844 matched_s = 0;
845 matched_d = 0;
846
847 list_for_each_entry_reverse(policy, &net->xfrm.policy_all, walk.all) {
848 struct hlist_node *newpos = NULL;
849 bool matches_s, matches_d;
850
851 if (!policy->bydst_reinsert)
852 continue;
853
854 WARN_ON_ONCE(policy->family != family);
855
856 policy->bydst_reinsert = false;
857 hlist_for_each_entry(p, &n->hhead, bydst) {
858 if (policy->priority > p->priority)
859 newpos = &p->bydst;
860 else if (policy->priority == p->priority &&
861 policy->pos > p->pos)
862 newpos = &p->bydst;
863 else
864 break;
865 }
866
867 if (newpos)
868 hlist_add_behind_rcu(&policy->bydst, newpos);
869 else
870 hlist_add_head_rcu(&policy->bydst, &n->hhead);
871
872 /* paranoia checks follow.
873 * Check that the reinserted policy matches at least
874 * saddr or daddr for current node prefix.
875 *
876 * Matching both is fine, matching saddr in one policy
877 * (but not daddr) and then matching only daddr in another
878 * is a bug.
879 */
880 matches_s = xfrm_policy_addr_delta(&policy->selector.saddr,
881 &n->addr,
882 n->prefixlen,
883 family) == 0;
884 matches_d = xfrm_policy_addr_delta(&policy->selector.daddr,
885 &n->addr,
886 n->prefixlen,
887 family) == 0;
888 if (matches_s && matches_d)
889 continue;
890
891 WARN_ON_ONCE(!matches_s && !matches_d);
892 if (matches_s)
893 matched_s++;
894 if (matches_d)
895 matched_d++;
896 WARN_ON_ONCE(matched_s && matched_d);
897 }
898}
899
900static void xfrm_policy_inexact_node_reinsert(struct net *net,
901 struct xfrm_pol_inexact_node *n,
902 struct rb_root *new,
903 u16 family)
904{
905 struct xfrm_pol_inexact_node *node;
906 struct rb_node **p, *parent;
907
908 /* we should not have another subtree here */
909 WARN_ON_ONCE(!RB_EMPTY_ROOT(&n->root));
910restart:
911 parent = NULL;
912 p = &new->rb_node;
913 while (*p) {
914 u8 prefixlen;
915 int delta;
916
917 parent = *p;
918 node = rb_entry(*p, struct xfrm_pol_inexact_node, node);
919
920 prefixlen = min(node->prefixlen, n->prefixlen);
921
922 delta = xfrm_policy_addr_delta(&n->addr, &node->addr,
923 prefixlen, family);
924 if (delta < 0) {
925 p = &parent->rb_left;
926 } else if (delta > 0) {
927 p = &parent->rb_right;
928 } else {
929 bool same_prefixlen = node->prefixlen == n->prefixlen;
930 struct xfrm_policy *tmp;
931
932 hlist_for_each_entry(tmp, &n->hhead, bydst) {
933 tmp->bydst_reinsert = true;
934 hlist_del_rcu(&tmp->bydst);
935 }
936
937 node->prefixlen = prefixlen;
938
939 xfrm_policy_inexact_list_reinsert(net, node, family);
940
941 if (same_prefixlen) {
942 kfree_rcu(n, rcu);
943 return;
944 }
945
946 rb_erase(*p, new);
947 kfree_rcu(n, rcu);
948 n = node;
949 goto restart;
950 }
951 }
952
953 rb_link_node_rcu(&n->node, parent, p);
954 rb_insert_color(&n->node, new);
955}
956
957/* merge nodes v and n */
958static void xfrm_policy_inexact_node_merge(struct net *net,
959 struct xfrm_pol_inexact_node *v,
960 struct xfrm_pol_inexact_node *n,
961 u16 family)
962{
963 struct xfrm_pol_inexact_node *node;
964 struct xfrm_policy *tmp;
965 struct rb_node *rnode;
966
967 /* To-be-merged node v has a subtree.
968 *
969 * Dismantle it and insert its nodes to n->root.
970 */
971 while ((rnode = rb_first(&v->root)) != NULL) {
972 node = rb_entry(rnode, struct xfrm_pol_inexact_node, node);
973 rb_erase(&node->node, &v->root);
974 xfrm_policy_inexact_node_reinsert(net, node, &n->root,
975 family);
976 }
977
978 hlist_for_each_entry(tmp, &v->hhead, bydst) {
979 tmp->bydst_reinsert = true;
980 hlist_del_rcu(&tmp->bydst);
981 }
982
983 xfrm_policy_inexact_list_reinsert(net, n, family);
984}
985
986static struct xfrm_pol_inexact_node *
987xfrm_policy_inexact_insert_node(struct net *net,
988 struct rb_root *root,
989 xfrm_address_t *addr,
990 u16 family, u8 prefixlen, u8 dir)
991{
992 struct xfrm_pol_inexact_node *cached = NULL;
993 struct rb_node **p, *parent = NULL;
994 struct xfrm_pol_inexact_node *node;
995
996 p = &root->rb_node;
997 while (*p) {
998 int delta;
999
1000 parent = *p;
1001 node = rb_entry(*p, struct xfrm_pol_inexact_node, node);
1002
1003 delta = xfrm_policy_addr_delta(addr, &node->addr,
1004 node->prefixlen,
1005 family);
1006 if (delta == 0 && prefixlen >= node->prefixlen) {
1007 WARN_ON_ONCE(cached); /* ipsec policies got lost */
1008 return node;
1009 }
1010
1011 if (delta < 0)
1012 p = &parent->rb_left;
1013 else
1014 p = &parent->rb_right;
1015
1016 if (prefixlen < node->prefixlen) {
1017 delta = xfrm_policy_addr_delta(addr, &node->addr,
1018 prefixlen,
1019 family);
1020 if (delta)
1021 continue;
1022
1023 /* This node is a subnet of the new prefix. It needs
1024 * to be removed and re-inserted with the smaller
1025 * prefix and all nodes that are now also covered
1026 * by the reduced prefixlen.
1027 */
1028 rb_erase(&node->node, root);
1029
1030 if (!cached) {
1031 xfrm_pol_inexact_node_init(node, addr,
1032 prefixlen);
1033 cached = node;
1034 } else {
1035 /* This node also falls within the new
1036 * prefixlen. Merge the to-be-reinserted
1037 * node and this one.
1038 */
1039 xfrm_policy_inexact_node_merge(net, node,
1040 cached, family);
1041 kfree_rcu(node, rcu);
1042 }
1043
1044 /* restart */
1045 p = &root->rb_node;
1046 parent = NULL;
1047 }
1048 }
1049
1050 node = cached;
1051 if (!node) {
1052 node = xfrm_pol_inexact_node_alloc(addr, prefixlen);
1053 if (!node)
1054 return NULL;
1055 }
1056
1057 rb_link_node_rcu(&node->node, parent, p);
1058 rb_insert_color(&node->node, root);
1059
1060 return node;
1061}
1062
1063static void xfrm_policy_inexact_gc_tree(struct rb_root *r, bool rm)
1064{
1065 struct xfrm_pol_inexact_node *node;
1066 struct rb_node *rn = rb_first(r);
1067
1068 while (rn) {
1069 node = rb_entry(rn, struct xfrm_pol_inexact_node, node);
1070
1071 xfrm_policy_inexact_gc_tree(&node->root, rm);
1072 rn = rb_next(rn);
1073
1074 if (!hlist_empty(&node->hhead) || !RB_EMPTY_ROOT(&node->root)) {
1075 WARN_ON_ONCE(rm);
1076 continue;
1077 }
1078
1079 rb_erase(&node->node, r);
1080 kfree_rcu(node, rcu);
1081 }
1082}
1083
1084static void __xfrm_policy_inexact_prune_bin(struct xfrm_pol_inexact_bin *b, bool net_exit)
1085{
1086 write_seqcount_begin(&b->count);
1087 xfrm_policy_inexact_gc_tree(&b->root_d, net_exit);
1088 xfrm_policy_inexact_gc_tree(&b->root_s, net_exit);
1089 write_seqcount_end(&b->count);
1090
1091 if (!RB_EMPTY_ROOT(&b->root_d) || !RB_EMPTY_ROOT(&b->root_s) ||
1092 !hlist_empty(&b->hhead)) {
1093 WARN_ON_ONCE(net_exit);
1094 return;
1095 }
1096
1097 if (rhashtable_remove_fast(&xfrm_policy_inexact_table, &b->head,
1098 xfrm_pol_inexact_params) == 0) {
1099 list_del(&b->inexact_bins);
1100 kfree_rcu(b, rcu);
1101 }
1102}
1103
1104static void xfrm_policy_inexact_prune_bin(struct xfrm_pol_inexact_bin *b)
1105{
1106 struct net *net = read_pnet(&b->k.net);
1107
1108 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1109 __xfrm_policy_inexact_prune_bin(b, false);
1110 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1111}
1112
1113static void __xfrm_policy_inexact_flush(struct net *net)
1114{
1115 struct xfrm_pol_inexact_bin *bin, *t;
1116
1117 lockdep_assert_held(&net->xfrm.xfrm_policy_lock);
1118
1119 list_for_each_entry_safe(bin, t, &net->xfrm.inexact_bins, inexact_bins)
1120 __xfrm_policy_inexact_prune_bin(bin, false);
1121}
1122
1123static struct hlist_head *
1124xfrm_policy_inexact_alloc_chain(struct xfrm_pol_inexact_bin *bin,
1125 struct xfrm_policy *policy, u8 dir)
1126{
1127 struct xfrm_pol_inexact_node *n;
1128 struct net *net;
1129
1130 net = xp_net(policy);
1131 lockdep_assert_held(&net->xfrm.xfrm_policy_lock);
1132
1133 if (xfrm_policy_inexact_insert_use_any_list(policy))
1134 return &bin->hhead;
1135
1136 if (xfrm_pol_inexact_addr_use_any_list(&policy->selector.daddr,
1137 policy->family,
1138 policy->selector.prefixlen_d)) {
1139 write_seqcount_begin(&bin->count);
1140 n = xfrm_policy_inexact_insert_node(net,
1141 &bin->root_s,
1142 &policy->selector.saddr,
1143 policy->family,
1144 policy->selector.prefixlen_s,
1145 dir);
1146 write_seqcount_end(&bin->count);
1147 if (!n)
1148 return NULL;
1149
1150 return &n->hhead;
1151 }
1152
1153 /* daddr is fixed */
1154 write_seqcount_begin(&bin->count);
1155 n = xfrm_policy_inexact_insert_node(net,
1156 &bin->root_d,
1157 &policy->selector.daddr,
1158 policy->family,
1159 policy->selector.prefixlen_d, dir);
1160 write_seqcount_end(&bin->count);
1161 if (!n)
1162 return NULL;
1163
1164 /* saddr is wildcard */
1165 if (xfrm_pol_inexact_addr_use_any_list(&policy->selector.saddr,
1166 policy->family,
1167 policy->selector.prefixlen_s))
1168 return &n->hhead;
1169
1170 write_seqcount_begin(&bin->count);
1171 n = xfrm_policy_inexact_insert_node(net,
1172 &n->root,
1173 &policy->selector.saddr,
1174 policy->family,
1175 policy->selector.prefixlen_s, dir);
1176 write_seqcount_end(&bin->count);
1177 if (!n)
1178 return NULL;
1179
1180 return &n->hhead;
1181}
1182
1183static struct xfrm_policy *
1184xfrm_policy_inexact_insert(struct xfrm_policy *policy, u8 dir, int excl)
1185{
1186 struct xfrm_pol_inexact_bin *bin;
1187 struct xfrm_policy *delpol;
1188 struct hlist_head *chain;
1189 struct net *net;
1190
1191 bin = xfrm_policy_inexact_alloc_bin(policy, dir);
1192 if (!bin)
1193 return ERR_PTR(-ENOMEM);
1194
1195 net = xp_net(policy);
1196 lockdep_assert_held(&net->xfrm.xfrm_policy_lock);
1197
1198 chain = xfrm_policy_inexact_alloc_chain(bin, policy, dir);
1199 if (!chain) {
1200 __xfrm_policy_inexact_prune_bin(bin, false);
1201 return ERR_PTR(-ENOMEM);
1202 }
1203
1204 delpol = xfrm_policy_insert_list(chain, policy, excl);
1205 if (delpol && excl) {
1206 __xfrm_policy_inexact_prune_bin(bin, false);
1207 return ERR_PTR(-EEXIST);
1208 }
1209
1210 chain = &net->xfrm.policy_inexact[dir];
1211 xfrm_policy_insert_inexact_list(chain, policy);
1212
1213 if (delpol)
1214 __xfrm_policy_inexact_prune_bin(bin, false);
1215
1216 return delpol;
1217}
1218
1219static void xfrm_hash_rebuild(struct work_struct *work)
1220{
1221 struct net *net = container_of(work, struct net,
1222 xfrm.policy_hthresh.work);
1223 unsigned int hmask;
1224 struct xfrm_policy *pol;
1225 struct xfrm_policy *policy;
1226 struct hlist_head *chain;
1227 struct hlist_head *odst;
1228 struct hlist_node *newpos;
1229 int i;
1230 int dir;
1231 unsigned seq;
1232 u8 lbits4, rbits4, lbits6, rbits6;
1233
1234 mutex_lock(&hash_resize_mutex);
1235
1236 /* read selector prefixlen thresholds */
1237 do {
1238 seq = read_seqbegin(&net->xfrm.policy_hthresh.lock);
1239
1240 lbits4 = net->xfrm.policy_hthresh.lbits4;
1241 rbits4 = net->xfrm.policy_hthresh.rbits4;
1242 lbits6 = net->xfrm.policy_hthresh.lbits6;
1243 rbits6 = net->xfrm.policy_hthresh.rbits6;
1244 } while (read_seqretry(&net->xfrm.policy_hthresh.lock, seq));
1245
1246 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1247 write_seqcount_begin(&xfrm_policy_hash_generation);
1248
1249 /* make sure that we can insert the indirect policies again before
1250 * we start with destructive action.
1251 */
1252 list_for_each_entry(policy, &net->xfrm.policy_all, walk.all) {
1253 struct xfrm_pol_inexact_bin *bin;
1254 u8 dbits, sbits;
1255
1256 dir = xfrm_policy_id2dir(policy->index);
1257 if (policy->walk.dead || dir >= XFRM_POLICY_MAX)
1258 continue;
1259
1260 if ((dir & XFRM_POLICY_MASK) == XFRM_POLICY_OUT) {
1261 if (policy->family == AF_INET) {
1262 dbits = rbits4;
1263 sbits = lbits4;
1264 } else {
1265 dbits = rbits6;
1266 sbits = lbits6;
1267 }
1268 } else {
1269 if (policy->family == AF_INET) {
1270 dbits = lbits4;
1271 sbits = rbits4;
1272 } else {
1273 dbits = lbits6;
1274 sbits = rbits6;
1275 }
1276 }
1277
1278 if (policy->selector.prefixlen_d < dbits ||
1279 policy->selector.prefixlen_s < sbits)
1280 continue;
1281
1282 bin = xfrm_policy_inexact_alloc_bin(policy, dir);
1283 if (!bin)
1284 goto out_unlock;
1285
1286 if (!xfrm_policy_inexact_alloc_chain(bin, policy, dir))
1287 goto out_unlock;
1288 }
1289
1290 /* reset the bydst and inexact table in all directions */
1291 for (dir = 0; dir < XFRM_POLICY_MAX; dir++) {
1292 struct hlist_node *n;
1293
1294 hlist_for_each_entry_safe(policy, n,
1295 &net->xfrm.policy_inexact[dir],
1296 bydst_inexact_list) {
1297 hlist_del_rcu(&policy->bydst);
1298 hlist_del_init(&policy->bydst_inexact_list);
1299 }
1300
1301 hmask = net->xfrm.policy_bydst[dir].hmask;
1302 odst = net->xfrm.policy_bydst[dir].table;
1303 for (i = hmask; i >= 0; i--) {
1304 hlist_for_each_entry_safe(policy, n, odst + i, bydst)
1305 hlist_del_rcu(&policy->bydst);
1306 }
1307 if ((dir & XFRM_POLICY_MASK) == XFRM_POLICY_OUT) {
1308 /* dir out => dst = remote, src = local */
1309 net->xfrm.policy_bydst[dir].dbits4 = rbits4;
1310 net->xfrm.policy_bydst[dir].sbits4 = lbits4;
1311 net->xfrm.policy_bydst[dir].dbits6 = rbits6;
1312 net->xfrm.policy_bydst[dir].sbits6 = lbits6;
1313 } else {
1314 /* dir in/fwd => dst = local, src = remote */
1315 net->xfrm.policy_bydst[dir].dbits4 = lbits4;
1316 net->xfrm.policy_bydst[dir].sbits4 = rbits4;
1317 net->xfrm.policy_bydst[dir].dbits6 = lbits6;
1318 net->xfrm.policy_bydst[dir].sbits6 = rbits6;
1319 }
1320 }
1321
1322 /* re-insert all policies by order of creation */
1323 list_for_each_entry_reverse(policy, &net->xfrm.policy_all, walk.all) {
1324 if (policy->walk.dead)
1325 continue;
1326 dir = xfrm_policy_id2dir(policy->index);
1327 if (dir >= XFRM_POLICY_MAX) {
1328 /* skip socket policies */
1329 continue;
1330 }
1331 newpos = NULL;
1332 chain = policy_hash_bysel(net, &policy->selector,
1333 policy->family, dir);
1334
1335 if (!chain) {
1336 void *p = xfrm_policy_inexact_insert(policy, dir, 0);
1337
1338 WARN_ONCE(IS_ERR(p), "reinsert: %ld\n", PTR_ERR(p));
1339 continue;
1340 }
1341
1342 hlist_for_each_entry(pol, chain, bydst) {
1343 if (policy->priority >= pol->priority)
1344 newpos = &pol->bydst;
1345 else
1346 break;
1347 }
1348 if (newpos)
1349 hlist_add_behind_rcu(&policy->bydst, newpos);
1350 else
1351 hlist_add_head_rcu(&policy->bydst, chain);
1352 }
1353
1354out_unlock:
1355 __xfrm_policy_inexact_flush(net);
1356 write_seqcount_end(&xfrm_policy_hash_generation);
1357 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1358
1359 mutex_unlock(&hash_resize_mutex);
1360}
1361
1362void xfrm_policy_hash_rebuild(struct net *net)
1363{
1364 schedule_work(&net->xfrm.policy_hthresh.work);
1365}
1366EXPORT_SYMBOL(xfrm_policy_hash_rebuild);
1367
1368/* Generate new index... KAME seems to generate them ordered by cost
1369 * of an absolute inpredictability of ordering of rules. This will not pass. */
1370static u32 xfrm_gen_index(struct net *net, int dir, u32 index)
1371{
1372 for (;;) {
1373 struct hlist_head *list;
1374 struct xfrm_policy *p;
1375 u32 idx;
1376 int found;
1377
1378 if (!index) {
1379 idx = (net->xfrm.idx_generator | dir);
1380 net->xfrm.idx_generator += 8;
1381 } else {
1382 idx = index;
1383 index = 0;
1384 }
1385
1386 if (idx == 0)
1387 idx = 8;
1388 list = net->xfrm.policy_byidx + idx_hash(net, idx);
1389 found = 0;
1390 hlist_for_each_entry(p, list, byidx) {
1391 if (p->index == idx) {
1392 found = 1;
1393 break;
1394 }
1395 }
1396 if (!found)
1397 return idx;
1398 }
1399}
1400
1401static inline int selector_cmp(struct xfrm_selector *s1, struct xfrm_selector *s2)
1402{
1403 u32 *p1 = (u32 *) s1;
1404 u32 *p2 = (u32 *) s2;
1405 int len = sizeof(struct xfrm_selector) / sizeof(u32);
1406 int i;
1407
1408 for (i = 0; i < len; i++) {
1409 if (p1[i] != p2[i])
1410 return 1;
1411 }
1412
1413 return 0;
1414}
1415
1416static void xfrm_policy_requeue(struct xfrm_policy *old,
1417 struct xfrm_policy *new)
1418{
1419 struct xfrm_policy_queue *pq = &old->polq;
1420 struct sk_buff_head list;
1421
1422 if (skb_queue_empty(&pq->hold_queue))
1423 return;
1424
1425 __skb_queue_head_init(&list);
1426
1427 spin_lock_bh(&pq->hold_queue.lock);
1428 skb_queue_splice_init(&pq->hold_queue, &list);
1429 if (del_timer(&pq->hold_timer))
1430 xfrm_pol_put(old);
1431 spin_unlock_bh(&pq->hold_queue.lock);
1432
1433 pq = &new->polq;
1434
1435 spin_lock_bh(&pq->hold_queue.lock);
1436 skb_queue_splice(&list, &pq->hold_queue);
1437 pq->timeout = XFRM_QUEUE_TMO_MIN;
1438 if (!mod_timer(&pq->hold_timer, jiffies))
1439 xfrm_pol_hold(new);
1440 spin_unlock_bh(&pq->hold_queue.lock);
1441}
1442
1443static inline bool xfrm_policy_mark_match(const struct xfrm_mark *mark,
1444 struct xfrm_policy *pol)
1445{
1446 return mark->v == pol->mark.v && mark->m == pol->mark.m;
1447}
1448
1449static u32 xfrm_pol_bin_key(const void *data, u32 len, u32 seed)
1450{
1451 const struct xfrm_pol_inexact_key *k = data;
1452 u32 a = k->type << 24 | k->dir << 16 | k->family;
1453
1454 return jhash_3words(a, k->if_id, net_hash_mix(read_pnet(&k->net)),
1455 seed);
1456}
1457
1458static u32 xfrm_pol_bin_obj(const void *data, u32 len, u32 seed)
1459{
1460 const struct xfrm_pol_inexact_bin *b = data;
1461
1462 return xfrm_pol_bin_key(&b->k, 0, seed);
1463}
1464
1465static int xfrm_pol_bin_cmp(struct rhashtable_compare_arg *arg,
1466 const void *ptr)
1467{
1468 const struct xfrm_pol_inexact_key *key = arg->key;
1469 const struct xfrm_pol_inexact_bin *b = ptr;
1470 int ret;
1471
1472 if (!net_eq(read_pnet(&b->k.net), read_pnet(&key->net)))
1473 return -1;
1474
1475 ret = b->k.dir ^ key->dir;
1476 if (ret)
1477 return ret;
1478
1479 ret = b->k.type ^ key->type;
1480 if (ret)
1481 return ret;
1482
1483 ret = b->k.family ^ key->family;
1484 if (ret)
1485 return ret;
1486
1487 return b->k.if_id ^ key->if_id;
1488}
1489
1490static const struct rhashtable_params xfrm_pol_inexact_params = {
1491 .head_offset = offsetof(struct xfrm_pol_inexact_bin, head),
1492 .hashfn = xfrm_pol_bin_key,
1493 .obj_hashfn = xfrm_pol_bin_obj,
1494 .obj_cmpfn = xfrm_pol_bin_cmp,
1495 .automatic_shrinking = true,
1496};
1497
1498static void xfrm_policy_insert_inexact_list(struct hlist_head *chain,
1499 struct xfrm_policy *policy)
1500{
1501 struct xfrm_policy *pol, *delpol = NULL;
1502 struct hlist_node *newpos = NULL;
1503 int i = 0;
1504
1505 hlist_for_each_entry(pol, chain, bydst_inexact_list) {
1506 if (pol->type == policy->type &&
1507 pol->if_id == policy->if_id &&
1508 !selector_cmp(&pol->selector, &policy->selector) &&
1509 xfrm_policy_mark_match(&policy->mark, pol) &&
1510 xfrm_sec_ctx_match(pol->security, policy->security) &&
1511 !WARN_ON(delpol)) {
1512 delpol = pol;
1513 if (policy->priority > pol->priority)
1514 continue;
1515 } else if (policy->priority >= pol->priority) {
1516 newpos = &pol->bydst_inexact_list;
1517 continue;
1518 }
1519 if (delpol)
1520 break;
1521 }
1522
1523 if (newpos)
1524 hlist_add_behind_rcu(&policy->bydst_inexact_list, newpos);
1525 else
1526 hlist_add_head_rcu(&policy->bydst_inexact_list, chain);
1527
1528 hlist_for_each_entry(pol, chain, bydst_inexact_list) {
1529 pol->pos = i;
1530 i++;
1531 }
1532}
1533
1534static struct xfrm_policy *xfrm_policy_insert_list(struct hlist_head *chain,
1535 struct xfrm_policy *policy,
1536 bool excl)
1537{
1538 struct xfrm_policy *pol, *newpos = NULL, *delpol = NULL;
1539
1540 hlist_for_each_entry(pol, chain, bydst) {
1541 if (pol->type == policy->type &&
1542 pol->if_id == policy->if_id &&
1543 !selector_cmp(&pol->selector, &policy->selector) &&
1544 xfrm_policy_mark_match(&policy->mark, pol) &&
1545 xfrm_sec_ctx_match(pol->security, policy->security) &&
1546 !WARN_ON(delpol)) {
1547 if (excl)
1548 return ERR_PTR(-EEXIST);
1549 delpol = pol;
1550 if (policy->priority > pol->priority)
1551 continue;
1552 } else if (policy->priority >= pol->priority) {
1553 newpos = pol;
1554 continue;
1555 }
1556 if (delpol)
1557 break;
1558 }
1559
1560 if (newpos)
1561 hlist_add_behind_rcu(&policy->bydst, &newpos->bydst);
1562 else
1563 hlist_add_head_rcu(&policy->bydst, chain);
1564
1565 return delpol;
1566}
1567
1568int xfrm_policy_insert(int dir, struct xfrm_policy *policy, int excl)
1569{
1570 struct net *net = xp_net(policy);
1571 struct xfrm_policy *delpol;
1572 struct hlist_head *chain;
1573
1574 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1575 chain = policy_hash_bysel(net, &policy->selector, policy->family, dir);
1576 if (chain)
1577 delpol = xfrm_policy_insert_list(chain, policy, excl);
1578 else
1579 delpol = xfrm_policy_inexact_insert(policy, dir, excl);
1580
1581 if (IS_ERR(delpol)) {
1582 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1583 return PTR_ERR(delpol);
1584 }
1585
1586 __xfrm_policy_link(policy, dir);
1587
1588 /* After previous checking, family can either be AF_INET or AF_INET6 */
1589 if (policy->family == AF_INET)
1590 rt_genid_bump_ipv4(net);
1591 else
1592 rt_genid_bump_ipv6(net);
1593
1594 if (delpol) {
1595 xfrm_policy_requeue(delpol, policy);
1596 __xfrm_policy_unlink(delpol, dir);
1597 }
1598 policy->index = delpol ? delpol->index : xfrm_gen_index(net, dir, policy->index);
1599 hlist_add_head(&policy->byidx, net->xfrm.policy_byidx+idx_hash(net, policy->index));
1600 policy->curlft.add_time = ktime_get_real_seconds();
1601 policy->curlft.use_time = 0;
1602 if (!mod_timer(&policy->timer, jiffies + HZ))
1603 xfrm_pol_hold(policy);
1604 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1605
1606 if (delpol)
1607 xfrm_policy_kill(delpol);
1608 else if (xfrm_bydst_should_resize(net, dir, NULL))
1609 schedule_work(&net->xfrm.policy_hash_work);
1610
1611 return 0;
1612}
1613EXPORT_SYMBOL(xfrm_policy_insert);
1614
1615static struct xfrm_policy *
1616__xfrm_policy_bysel_ctx(struct hlist_head *chain, const struct xfrm_mark *mark,
1617 u32 if_id, u8 type, int dir, struct xfrm_selector *sel,
1618 struct xfrm_sec_ctx *ctx)
1619{
1620 struct xfrm_policy *pol;
1621
1622 if (!chain)
1623 return NULL;
1624
1625 hlist_for_each_entry(pol, chain, bydst) {
1626 if (pol->type == type &&
1627 pol->if_id == if_id &&
1628 xfrm_policy_mark_match(mark, pol) &&
1629 !selector_cmp(sel, &pol->selector) &&
1630 xfrm_sec_ctx_match(ctx, pol->security))
1631 return pol;
1632 }
1633
1634 return NULL;
1635}
1636
1637struct xfrm_policy *
1638xfrm_policy_bysel_ctx(struct net *net, const struct xfrm_mark *mark, u32 if_id,
1639 u8 type, int dir, struct xfrm_selector *sel,
1640 struct xfrm_sec_ctx *ctx, int delete, int *err)
1641{
1642 struct xfrm_pol_inexact_bin *bin = NULL;
1643 struct xfrm_policy *pol, *ret = NULL;
1644 struct hlist_head *chain;
1645
1646 *err = 0;
1647 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1648 chain = policy_hash_bysel(net, sel, sel->family, dir);
1649 if (!chain) {
1650 struct xfrm_pol_inexact_candidates cand;
1651 int i;
1652
1653 bin = xfrm_policy_inexact_lookup(net, type,
1654 sel->family, dir, if_id);
1655 if (!bin) {
1656 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1657 return NULL;
1658 }
1659
1660 if (!xfrm_policy_find_inexact_candidates(&cand, bin,
1661 &sel->saddr,
1662 &sel->daddr)) {
1663 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1664 return NULL;
1665 }
1666
1667 pol = NULL;
1668 for (i = 0; i < ARRAY_SIZE(cand.res); i++) {
1669 struct xfrm_policy *tmp;
1670
1671 tmp = __xfrm_policy_bysel_ctx(cand.res[i], mark,
1672 if_id, type, dir,
1673 sel, ctx);
1674 if (!tmp)
1675 continue;
1676
1677 if (!pol || tmp->pos < pol->pos)
1678 pol = tmp;
1679 }
1680 } else {
1681 pol = __xfrm_policy_bysel_ctx(chain, mark, if_id, type, dir,
1682 sel, ctx);
1683 }
1684
1685 if (pol) {
1686 xfrm_pol_hold(pol);
1687 if (delete) {
1688 *err = security_xfrm_policy_delete(pol->security);
1689 if (*err) {
1690 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1691 return pol;
1692 }
1693 __xfrm_policy_unlink(pol, dir);
1694 }
1695 ret = pol;
1696 }
1697 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1698
1699 if (ret && delete)
1700 xfrm_policy_kill(ret);
1701 if (bin && delete)
1702 xfrm_policy_inexact_prune_bin(bin);
1703 return ret;
1704}
1705EXPORT_SYMBOL(xfrm_policy_bysel_ctx);
1706
1707struct xfrm_policy *
1708xfrm_policy_byid(struct net *net, const struct xfrm_mark *mark, u32 if_id,
1709 u8 type, int dir, u32 id, int delete, int *err)
1710{
1711 struct xfrm_policy *pol, *ret;
1712 struct hlist_head *chain;
1713
1714 *err = -ENOENT;
1715 if (xfrm_policy_id2dir(id) != dir)
1716 return NULL;
1717
1718 *err = 0;
1719 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1720 chain = net->xfrm.policy_byidx + idx_hash(net, id);
1721 ret = NULL;
1722 hlist_for_each_entry(pol, chain, byidx) {
1723 if (pol->type == type && pol->index == id &&
1724 pol->if_id == if_id && xfrm_policy_mark_match(mark, pol)) {
1725 xfrm_pol_hold(pol);
1726 if (delete) {
1727 *err = security_xfrm_policy_delete(
1728 pol->security);
1729 if (*err) {
1730 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1731 return pol;
1732 }
1733 __xfrm_policy_unlink(pol, dir);
1734 }
1735 ret = pol;
1736 break;
1737 }
1738 }
1739 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1740
1741 if (ret && delete)
1742 xfrm_policy_kill(ret);
1743 return ret;
1744}
1745EXPORT_SYMBOL(xfrm_policy_byid);
1746
1747#ifdef CONFIG_SECURITY_NETWORK_XFRM
1748static inline int
1749xfrm_policy_flush_secctx_check(struct net *net, u8 type, bool task_valid)
1750{
1751 struct xfrm_policy *pol;
1752 int err = 0;
1753
1754 list_for_each_entry(pol, &net->xfrm.policy_all, walk.all) {
1755 if (pol->walk.dead ||
1756 xfrm_policy_id2dir(pol->index) >= XFRM_POLICY_MAX ||
1757 pol->type != type)
1758 continue;
1759
1760 err = security_xfrm_policy_delete(pol->security);
1761 if (err) {
1762 xfrm_audit_policy_delete(pol, 0, task_valid);
1763 return err;
1764 }
1765 }
1766 return err;
1767}
1768#else
1769static inline int
1770xfrm_policy_flush_secctx_check(struct net *net, u8 type, bool task_valid)
1771{
1772 return 0;
1773}
1774#endif
1775
1776int xfrm_policy_flush(struct net *net, u8 type, bool task_valid)
1777{
1778 int dir, err = 0, cnt = 0;
1779 struct xfrm_policy *pol;
1780
1781 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1782
1783 err = xfrm_policy_flush_secctx_check(net, type, task_valid);
1784 if (err)
1785 goto out;
1786
1787again:
1788 list_for_each_entry(pol, &net->xfrm.policy_all, walk.all) {
1789 dir = xfrm_policy_id2dir(pol->index);
1790 if (pol->walk.dead ||
1791 dir >= XFRM_POLICY_MAX ||
1792 pol->type != type)
1793 continue;
1794
1795 __xfrm_policy_unlink(pol, dir);
1796 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1797 cnt++;
1798 xfrm_audit_policy_delete(pol, 1, task_valid);
1799 xfrm_policy_kill(pol);
1800 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1801 goto again;
1802 }
1803 if (cnt)
1804 __xfrm_policy_inexact_flush(net);
1805 else
1806 err = -ESRCH;
1807out:
1808 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1809 return err;
1810}
1811EXPORT_SYMBOL(xfrm_policy_flush);
1812
1813int xfrm_policy_walk(struct net *net, struct xfrm_policy_walk *walk,
1814 int (*func)(struct xfrm_policy *, int, int, void*),
1815 void *data)
1816{
1817 struct xfrm_policy *pol;
1818 struct xfrm_policy_walk_entry *x;
1819 int error = 0;
1820
1821 if (walk->type >= XFRM_POLICY_TYPE_MAX &&
1822 walk->type != XFRM_POLICY_TYPE_ANY)
1823 return -EINVAL;
1824
1825 if (list_empty(&walk->walk.all) && walk->seq != 0)
1826 return 0;
1827
1828 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
1829 if (list_empty(&walk->walk.all))
1830 x = list_first_entry(&net->xfrm.policy_all, struct xfrm_policy_walk_entry, all);
1831 else
1832 x = list_first_entry(&walk->walk.all,
1833 struct xfrm_policy_walk_entry, all);
1834
1835 list_for_each_entry_from(x, &net->xfrm.policy_all, all) {
1836 if (x->dead)
1837 continue;
1838 pol = container_of(x, struct xfrm_policy, walk);
1839 if (walk->type != XFRM_POLICY_TYPE_ANY &&
1840 walk->type != pol->type)
1841 continue;
1842 error = func(pol, xfrm_policy_id2dir(pol->index),
1843 walk->seq, data);
1844 if (error) {
1845 list_move_tail(&walk->walk.all, &x->all);
1846 goto out;
1847 }
1848 walk->seq++;
1849 }
1850 if (walk->seq == 0) {
1851 error = -ENOENT;
1852 goto out;
1853 }
1854 list_del_init(&walk->walk.all);
1855out:
1856 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1857 return error;
1858}
1859EXPORT_SYMBOL(xfrm_policy_walk);
1860
1861void xfrm_policy_walk_init(struct xfrm_policy_walk *walk, u8 type)
1862{
1863 INIT_LIST_HEAD(&walk->walk.all);
1864 walk->walk.dead = 1;
1865 walk->type = type;
1866 walk->seq = 0;
1867}
1868EXPORT_SYMBOL(xfrm_policy_walk_init);
1869
1870void xfrm_policy_walk_done(struct xfrm_policy_walk *walk, struct net *net)
1871{
1872 if (list_empty(&walk->walk.all))
1873 return;
1874
1875 spin_lock_bh(&net->xfrm.xfrm_policy_lock); /*FIXME where is net? */
1876 list_del(&walk->walk.all);
1877 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
1878}
1879EXPORT_SYMBOL(xfrm_policy_walk_done);
1880
1881/*
1882 * Find policy to apply to this flow.
1883 *
1884 * Returns 0 if policy found, else an -errno.
1885 */
1886static int xfrm_policy_match(const struct xfrm_policy *pol,
1887 const struct flowi *fl,
1888 u8 type, u16 family, int dir, u32 if_id)
1889{
1890 const struct xfrm_selector *sel = &pol->selector;
1891 int ret = -ESRCH;
1892 bool match;
1893
1894 if (pol->family != family ||
1895 pol->if_id != if_id ||
1896 (fl->flowi_mark & pol->mark.m) != pol->mark.v ||
1897 pol->type != type)
1898 return ret;
1899
1900 match = xfrm_selector_match(sel, fl, family);
1901 if (match)
1902 ret = security_xfrm_policy_lookup(pol->security, fl->flowi_secid,
1903 dir);
1904 return ret;
1905}
1906
1907static struct xfrm_pol_inexact_node *
1908xfrm_policy_lookup_inexact_addr(const struct rb_root *r,
1909 seqcount_t *count,
1910 const xfrm_address_t *addr, u16 family)
1911{
1912 const struct rb_node *parent;
1913 int seq;
1914
1915again:
1916 seq = read_seqcount_begin(count);
1917
1918 parent = rcu_dereference_raw(r->rb_node);
1919 while (parent) {
1920 struct xfrm_pol_inexact_node *node;
1921 int delta;
1922
1923 node = rb_entry(parent, struct xfrm_pol_inexact_node, node);
1924
1925 delta = xfrm_policy_addr_delta(addr, &node->addr,
1926 node->prefixlen, family);
1927 if (delta < 0) {
1928 parent = rcu_dereference_raw(parent->rb_left);
1929 continue;
1930 } else if (delta > 0) {
1931 parent = rcu_dereference_raw(parent->rb_right);
1932 continue;
1933 }
1934
1935 return node;
1936 }
1937
1938 if (read_seqcount_retry(count, seq))
1939 goto again;
1940
1941 return NULL;
1942}
1943
1944static bool
1945xfrm_policy_find_inexact_candidates(struct xfrm_pol_inexact_candidates *cand,
1946 struct xfrm_pol_inexact_bin *b,
1947 const xfrm_address_t *saddr,
1948 const xfrm_address_t *daddr)
1949{
1950 struct xfrm_pol_inexact_node *n;
1951 u16 family;
1952
1953 if (!b)
1954 return false;
1955
1956 family = b->k.family;
1957 memset(cand, 0, sizeof(*cand));
1958 cand->res[XFRM_POL_CAND_ANY] = &b->hhead;
1959
1960 n = xfrm_policy_lookup_inexact_addr(&b->root_d, &b->count, daddr,
1961 family);
1962 if (n) {
1963 cand->res[XFRM_POL_CAND_DADDR] = &n->hhead;
1964 n = xfrm_policy_lookup_inexact_addr(&n->root, &b->count, saddr,
1965 family);
1966 if (n)
1967 cand->res[XFRM_POL_CAND_BOTH] = &n->hhead;
1968 }
1969
1970 n = xfrm_policy_lookup_inexact_addr(&b->root_s, &b->count, saddr,
1971 family);
1972 if (n)
1973 cand->res[XFRM_POL_CAND_SADDR] = &n->hhead;
1974
1975 return true;
1976}
1977
1978static struct xfrm_pol_inexact_bin *
1979xfrm_policy_inexact_lookup_rcu(struct net *net, u8 type, u16 family,
1980 u8 dir, u32 if_id)
1981{
1982 struct xfrm_pol_inexact_key k = {
1983 .family = family,
1984 .type = type,
1985 .dir = dir,
1986 .if_id = if_id,
1987 };
1988
1989 write_pnet(&k.net, net);
1990
1991 return rhashtable_lookup(&xfrm_policy_inexact_table, &k,
1992 xfrm_pol_inexact_params);
1993}
1994
1995static struct xfrm_pol_inexact_bin *
1996xfrm_policy_inexact_lookup(struct net *net, u8 type, u16 family,
1997 u8 dir, u32 if_id)
1998{
1999 struct xfrm_pol_inexact_bin *bin;
2000
2001 lockdep_assert_held(&net->xfrm.xfrm_policy_lock);
2002
2003 rcu_read_lock();
2004 bin = xfrm_policy_inexact_lookup_rcu(net, type, family, dir, if_id);
2005 rcu_read_unlock();
2006
2007 return bin;
2008}
2009
2010static struct xfrm_policy *
2011__xfrm_policy_eval_candidates(struct hlist_head *chain,
2012 struct xfrm_policy *prefer,
2013 const struct flowi *fl,
2014 u8 type, u16 family, int dir, u32 if_id)
2015{
2016 u32 priority = prefer ? prefer->priority : ~0u;
2017 struct xfrm_policy *pol;
2018
2019 if (!chain)
2020 return NULL;
2021
2022 hlist_for_each_entry_rcu(pol, chain, bydst) {
2023 int err;
2024
2025 if (pol->priority > priority)
2026 break;
2027
2028 err = xfrm_policy_match(pol, fl, type, family, dir, if_id);
2029 if (err) {
2030 if (err != -ESRCH)
2031 return ERR_PTR(err);
2032
2033 continue;
2034 }
2035
2036 if (prefer) {
2037 /* matches. Is it older than *prefer? */
2038 if (pol->priority == priority &&
2039 prefer->pos < pol->pos)
2040 return prefer;
2041 }
2042
2043 return pol;
2044 }
2045
2046 return NULL;
2047}
2048
2049static struct xfrm_policy *
2050xfrm_policy_eval_candidates(struct xfrm_pol_inexact_candidates *cand,
2051 struct xfrm_policy *prefer,
2052 const struct flowi *fl,
2053 u8 type, u16 family, int dir, u32 if_id)
2054{
2055 struct xfrm_policy *tmp;
2056 int i;
2057
2058 for (i = 0; i < ARRAY_SIZE(cand->res); i++) {
2059 tmp = __xfrm_policy_eval_candidates(cand->res[i],
2060 prefer,
2061 fl, type, family, dir,
2062 if_id);
2063 if (!tmp)
2064 continue;
2065
2066 if (IS_ERR(tmp))
2067 return tmp;
2068 prefer = tmp;
2069 }
2070
2071 return prefer;
2072}
2073
2074static struct xfrm_policy *xfrm_policy_lookup_bytype(struct net *net, u8 type,
2075 const struct flowi *fl,
2076 u16 family, u8 dir,
2077 u32 if_id)
2078{
2079 struct xfrm_pol_inexact_candidates cand;
2080 const xfrm_address_t *daddr, *saddr;
2081 struct xfrm_pol_inexact_bin *bin;
2082 struct xfrm_policy *pol, *ret;
2083 struct hlist_head *chain;
2084 unsigned int sequence;
2085 int err;
2086
2087 daddr = xfrm_flowi_daddr(fl, family);
2088 saddr = xfrm_flowi_saddr(fl, family);
2089 if (unlikely(!daddr || !saddr))
2090 return NULL;
2091
2092 rcu_read_lock();
2093 retry:
2094 do {
2095 sequence = read_seqcount_begin(&xfrm_policy_hash_generation);
2096 chain = policy_hash_direct(net, daddr, saddr, family, dir);
2097 } while (read_seqcount_retry(&xfrm_policy_hash_generation, sequence));
2098
2099 ret = NULL;
2100 hlist_for_each_entry_rcu(pol, chain, bydst) {
2101 err = xfrm_policy_match(pol, fl, type, family, dir, if_id);
2102 if (err) {
2103 if (err == -ESRCH)
2104 continue;
2105 else {
2106 ret = ERR_PTR(err);
2107 goto fail;
2108 }
2109 } else {
2110 ret = pol;
2111 break;
2112 }
2113 }
2114 bin = xfrm_policy_inexact_lookup_rcu(net, type, family, dir, if_id);
2115 if (!bin || !xfrm_policy_find_inexact_candidates(&cand, bin, saddr,
2116 daddr))
2117 goto skip_inexact;
2118
2119 pol = xfrm_policy_eval_candidates(&cand, ret, fl, type,
2120 family, dir, if_id);
2121 if (pol) {
2122 ret = pol;
2123 if (IS_ERR(pol))
2124 goto fail;
2125 }
2126
2127skip_inexact:
2128 if (read_seqcount_retry(&xfrm_policy_hash_generation, sequence))
2129 goto retry;
2130
2131 if (ret && !xfrm_pol_hold_rcu(ret))
2132 goto retry;
2133fail:
2134 rcu_read_unlock();
2135
2136 return ret;
2137}
2138
2139static struct xfrm_policy *xfrm_policy_lookup(struct net *net,
2140 const struct flowi *fl,
2141 u16 family, u8 dir, u32 if_id)
2142{
2143#ifdef CONFIG_XFRM_SUB_POLICY
2144 struct xfrm_policy *pol;
2145
2146 pol = xfrm_policy_lookup_bytype(net, XFRM_POLICY_TYPE_SUB, fl, family,
2147 dir, if_id);
2148 if (pol != NULL)
2149 return pol;
2150#endif
2151 return xfrm_policy_lookup_bytype(net, XFRM_POLICY_TYPE_MAIN, fl, family,
2152 dir, if_id);
2153}
2154
2155static struct xfrm_policy *xfrm_sk_policy_lookup(const struct sock *sk, int dir,
2156 const struct flowi *fl,
2157 u16 family, u32 if_id)
2158{
2159 struct xfrm_policy *pol;
2160
2161 rcu_read_lock();
2162 again:
2163 pol = rcu_dereference(sk->sk_policy[dir]);
2164 if (pol != NULL) {
2165 bool match;
2166 int err = 0;
2167
2168 if (pol->family != family) {
2169 pol = NULL;
2170 goto out;
2171 }
2172
2173 match = xfrm_selector_match(&pol->selector, fl, family);
2174 if (match) {
2175 if ((sk->sk_mark & pol->mark.m) != pol->mark.v ||
2176 pol->if_id != if_id) {
2177 pol = NULL;
2178 goto out;
2179 }
2180 err = security_xfrm_policy_lookup(pol->security,
2181 fl->flowi_secid,
2182 dir);
2183 if (!err) {
2184 if (!xfrm_pol_hold_rcu(pol))
2185 goto again;
2186 } else if (err == -ESRCH) {
2187 pol = NULL;
2188 } else {
2189 pol = ERR_PTR(err);
2190 }
2191 } else
2192 pol = NULL;
2193 }
2194out:
2195 rcu_read_unlock();
2196 return pol;
2197}
2198
2199static void __xfrm_policy_link(struct xfrm_policy *pol, int dir)
2200{
2201 struct net *net = xp_net(pol);
2202
2203 list_add(&pol->walk.all, &net->xfrm.policy_all);
2204 net->xfrm.policy_count[dir]++;
2205 xfrm_pol_hold(pol);
2206}
2207
2208static struct xfrm_policy *__xfrm_policy_unlink(struct xfrm_policy *pol,
2209 int dir)
2210{
2211 struct net *net = xp_net(pol);
2212
2213 if (list_empty(&pol->walk.all))
2214 return NULL;
2215
2216 /* Socket policies are not hashed. */
2217 if (!hlist_unhashed(&pol->bydst)) {
2218 hlist_del_rcu(&pol->bydst);
2219 hlist_del_init(&pol->bydst_inexact_list);
2220 hlist_del(&pol->byidx);
2221 }
2222
2223 list_del_init(&pol->walk.all);
2224 net->xfrm.policy_count[dir]--;
2225
2226 return pol;
2227}
2228
2229static void xfrm_sk_policy_link(struct xfrm_policy *pol, int dir)
2230{
2231 __xfrm_policy_link(pol, XFRM_POLICY_MAX + dir);
2232}
2233
2234static void xfrm_sk_policy_unlink(struct xfrm_policy *pol, int dir)
2235{
2236 __xfrm_policy_unlink(pol, XFRM_POLICY_MAX + dir);
2237}
2238
2239int xfrm_policy_delete(struct xfrm_policy *pol, int dir)
2240{
2241 struct net *net = xp_net(pol);
2242
2243 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
2244 pol = __xfrm_policy_unlink(pol, dir);
2245 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
2246 if (pol) {
2247 xfrm_policy_kill(pol);
2248 return 0;
2249 }
2250 return -ENOENT;
2251}
2252EXPORT_SYMBOL(xfrm_policy_delete);
2253
2254int xfrm_sk_policy_insert(struct sock *sk, int dir, struct xfrm_policy *pol)
2255{
2256 struct net *net = sock_net(sk);
2257 struct xfrm_policy *old_pol;
2258
2259#ifdef CONFIG_XFRM_SUB_POLICY
2260 if (pol && pol->type != XFRM_POLICY_TYPE_MAIN)
2261 return -EINVAL;
2262#endif
2263
2264 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
2265 old_pol = rcu_dereference_protected(sk->sk_policy[dir],
2266 lockdep_is_held(&net->xfrm.xfrm_policy_lock));
2267 if (pol) {
2268 pol->curlft.add_time = ktime_get_real_seconds();
2269 pol->index = xfrm_gen_index(net, XFRM_POLICY_MAX+dir, 0);
2270 xfrm_sk_policy_link(pol, dir);
2271 }
2272 rcu_assign_pointer(sk->sk_policy[dir], pol);
2273 if (old_pol) {
2274 if (pol)
2275 xfrm_policy_requeue(old_pol, pol);
2276
2277 /* Unlinking succeeds always. This is the only function
2278 * allowed to delete or replace socket policy.
2279 */
2280 xfrm_sk_policy_unlink(old_pol, dir);
2281 }
2282 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
2283
2284 if (old_pol) {
2285 xfrm_policy_kill(old_pol);
2286 }
2287 return 0;
2288}
2289
2290static struct xfrm_policy *clone_policy(const struct xfrm_policy *old, int dir)
2291{
2292 struct xfrm_policy *newp = xfrm_policy_alloc(xp_net(old), GFP_ATOMIC);
2293 struct net *net = xp_net(old);
2294
2295 if (newp) {
2296 newp->selector = old->selector;
2297 if (security_xfrm_policy_clone(old->security,
2298 &newp->security)) {
2299 kfree(newp);
2300 return NULL; /* ENOMEM */
2301 }
2302 newp->lft = old->lft;
2303 newp->curlft = old->curlft;
2304 newp->mark = old->mark;
2305 newp->if_id = old->if_id;
2306 newp->action = old->action;
2307 newp->flags = old->flags;
2308 newp->xfrm_nr = old->xfrm_nr;
2309 newp->index = old->index;
2310 newp->type = old->type;
2311 newp->family = old->family;
2312 memcpy(newp->xfrm_vec, old->xfrm_vec,
2313 newp->xfrm_nr*sizeof(struct xfrm_tmpl));
2314 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
2315 xfrm_sk_policy_link(newp, dir);
2316 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
2317 xfrm_pol_put(newp);
2318 }
2319 return newp;
2320}
2321
2322int __xfrm_sk_clone_policy(struct sock *sk, const struct sock *osk)
2323{
2324 const struct xfrm_policy *p;
2325 struct xfrm_policy *np;
2326 int i, ret = 0;
2327
2328 rcu_read_lock();
2329 for (i = 0; i < 2; i++) {
2330 p = rcu_dereference(osk->sk_policy[i]);
2331 if (p) {
2332 np = clone_policy(p, i);
2333 if (unlikely(!np)) {
2334 ret = -ENOMEM;
2335 break;
2336 }
2337 rcu_assign_pointer(sk->sk_policy[i], np);
2338 }
2339 }
2340 rcu_read_unlock();
2341 return ret;
2342}
2343
2344static int
2345xfrm_get_saddr(struct net *net, int oif, xfrm_address_t *local,
2346 xfrm_address_t *remote, unsigned short family, u32 mark)
2347{
2348 int err;
2349 const struct xfrm_policy_afinfo *afinfo = xfrm_policy_get_afinfo(family);
2350
2351 if (unlikely(afinfo == NULL))
2352 return -EINVAL;
2353 err = afinfo->get_saddr(net, oif, local, remote, mark);
2354 rcu_read_unlock();
2355 return err;
2356}
2357
2358/* Resolve list of templates for the flow, given policy. */
2359
2360static int
2361xfrm_tmpl_resolve_one(struct xfrm_policy *policy, const struct flowi *fl,
2362 struct xfrm_state **xfrm, unsigned short family)
2363{
2364 struct net *net = xp_net(policy);
2365 int nx;
2366 int i, error;
2367 xfrm_address_t *daddr = xfrm_flowi_daddr(fl, family);
2368 xfrm_address_t *saddr = xfrm_flowi_saddr(fl, family);
2369 xfrm_address_t tmp;
2370
2371 for (nx = 0, i = 0; i < policy->xfrm_nr; i++) {
2372 struct xfrm_state *x;
2373 xfrm_address_t *remote = daddr;
2374 xfrm_address_t *local = saddr;
2375 struct xfrm_tmpl *tmpl = &policy->xfrm_vec[i];
2376
2377 if (tmpl->mode == XFRM_MODE_TUNNEL ||
2378 tmpl->mode == XFRM_MODE_BEET) {
2379 remote = &tmpl->id.daddr;
2380 local = &tmpl->saddr;
2381 if (xfrm_addr_any(local, tmpl->encap_family)) {
2382 error = xfrm_get_saddr(net, fl->flowi_oif,
2383 &tmp, remote,
2384 tmpl->encap_family, 0);
2385 if (error)
2386 goto fail;
2387 local = &tmp;
2388 }
2389 }
2390
2391 x = xfrm_state_find(remote, local, fl, tmpl, policy, &error,
2392 family, policy->if_id);
2393
2394 if (x && x->km.state == XFRM_STATE_VALID) {
2395 xfrm[nx++] = x;
2396 daddr = remote;
2397 saddr = local;
2398 continue;
2399 }
2400 if (x) {
2401 error = (x->km.state == XFRM_STATE_ERROR ?
2402 -EINVAL : -EAGAIN);
2403 xfrm_state_put(x);
2404 } else if (error == -ESRCH) {
2405 error = -EAGAIN;
2406 }
2407
2408 if (!tmpl->optional)
2409 goto fail;
2410 }
2411 return nx;
2412
2413fail:
2414 for (nx--; nx >= 0; nx--)
2415 xfrm_state_put(xfrm[nx]);
2416 return error;
2417}
2418
2419static int
2420xfrm_tmpl_resolve(struct xfrm_policy **pols, int npols, const struct flowi *fl,
2421 struct xfrm_state **xfrm, unsigned short family)
2422{
2423 struct xfrm_state *tp[XFRM_MAX_DEPTH];
2424 struct xfrm_state **tpp = (npols > 1) ? tp : xfrm;
2425 int cnx = 0;
2426 int error;
2427 int ret;
2428 int i;
2429
2430 for (i = 0; i < npols; i++) {
2431 if (cnx + pols[i]->xfrm_nr >= XFRM_MAX_DEPTH) {
2432 error = -ENOBUFS;
2433 goto fail;
2434 }
2435
2436 ret = xfrm_tmpl_resolve_one(pols[i], fl, &tpp[cnx], family);
2437 if (ret < 0) {
2438 error = ret;
2439 goto fail;
2440 } else
2441 cnx += ret;
2442 }
2443
2444 /* found states are sorted for outbound processing */
2445 if (npols > 1)
2446 xfrm_state_sort(xfrm, tpp, cnx, family);
2447
2448 return cnx;
2449
2450 fail:
2451 for (cnx--; cnx >= 0; cnx--)
2452 xfrm_state_put(tpp[cnx]);
2453 return error;
2454
2455}
2456
2457static int xfrm_get_tos(const struct flowi *fl, int family)
2458{
2459 if (family == AF_INET)
2460 return IPTOS_RT_MASK & fl->u.ip4.flowi4_tos;
2461
2462 return 0;
2463}
2464
2465static inline struct xfrm_dst *xfrm_alloc_dst(struct net *net, int family)
2466{
2467 const struct xfrm_policy_afinfo *afinfo = xfrm_policy_get_afinfo(family);
2468 struct dst_ops *dst_ops;
2469 struct xfrm_dst *xdst;
2470
2471 if (!afinfo)
2472 return ERR_PTR(-EINVAL);
2473
2474 switch (family) {
2475 case AF_INET:
2476 dst_ops = &net->xfrm.xfrm4_dst_ops;
2477 break;
2478#if IS_ENABLED(CONFIG_IPV6)
2479 case AF_INET6:
2480 dst_ops = &net->xfrm.xfrm6_dst_ops;
2481 break;
2482#endif
2483 default:
2484 BUG();
2485 }
2486 xdst = dst_alloc(dst_ops, NULL, 1, DST_OBSOLETE_NONE, 0);
2487
2488 if (likely(xdst)) {
2489 struct dst_entry *dst = &xdst->u.dst;
2490
2491 memset(dst + 1, 0, sizeof(*xdst) - sizeof(*dst));
2492 } else
2493 xdst = ERR_PTR(-ENOBUFS);
2494
2495 rcu_read_unlock();
2496
2497 return xdst;
2498}
2499
2500static void xfrm_init_path(struct xfrm_dst *path, struct dst_entry *dst,
2501 int nfheader_len)
2502{
2503 if (dst->ops->family == AF_INET6) {
2504 struct rt6_info *rt = (struct rt6_info *)dst;
2505 path->path_cookie = rt6_get_cookie(rt);
2506 path->u.rt6.rt6i_nfheader_len = nfheader_len;
2507 }
2508}
2509
2510static inline int xfrm_fill_dst(struct xfrm_dst *xdst, struct net_device *dev,
2511 const struct flowi *fl)
2512{
2513 const struct xfrm_policy_afinfo *afinfo =
2514 xfrm_policy_get_afinfo(xdst->u.dst.ops->family);
2515 int err;
2516
2517 if (!afinfo)
2518 return -EINVAL;
2519
2520 err = afinfo->fill_dst(xdst, dev, fl);
2521
2522 rcu_read_unlock();
2523
2524 return err;
2525}
2526
2527
2528/* Allocate chain of dst_entry's, attach known xfrm's, calculate
2529 * all the metrics... Shortly, bundle a bundle.
2530 */
2531
2532static struct dst_entry *xfrm_bundle_create(struct xfrm_policy *policy,
2533 struct xfrm_state **xfrm,
2534 struct xfrm_dst **bundle,
2535 int nx,
2536 const struct flowi *fl,
2537 struct dst_entry *dst)
2538{
2539 const struct xfrm_state_afinfo *afinfo;
2540 const struct xfrm_mode *inner_mode;
2541 struct net *net = xp_net(policy);
2542 unsigned long now = jiffies;
2543 struct net_device *dev;
2544 struct xfrm_dst *xdst_prev = NULL;
2545 struct xfrm_dst *xdst0 = NULL;
2546 int i = 0;
2547 int err;
2548 int header_len = 0;
2549 int nfheader_len = 0;
2550 int trailer_len = 0;
2551 int tos;
2552 int family = policy->selector.family;
2553 xfrm_address_t saddr, daddr;
2554
2555 xfrm_flowi_addr_get(fl, &saddr, &daddr, family);
2556
2557 tos = xfrm_get_tos(fl, family);
2558
2559 dst_hold(dst);
2560
2561 for (; i < nx; i++) {
2562 struct xfrm_dst *xdst = xfrm_alloc_dst(net, family);
2563 struct dst_entry *dst1 = &xdst->u.dst;
2564
2565 err = PTR_ERR(xdst);
2566 if (IS_ERR(xdst)) {
2567 dst_release(dst);
2568 goto put_states;
2569 }
2570
2571 bundle[i] = xdst;
2572 if (!xdst_prev)
2573 xdst0 = xdst;
2574 else
2575 /* Ref count is taken during xfrm_alloc_dst()
2576 * No need to do dst_clone() on dst1
2577 */
2578 xfrm_dst_set_child(xdst_prev, &xdst->u.dst);
2579
2580 if (xfrm[i]->sel.family == AF_UNSPEC) {
2581 inner_mode = xfrm_ip2inner_mode(xfrm[i],
2582 xfrm_af2proto(family));
2583 if (!inner_mode) {
2584 err = -EAFNOSUPPORT;
2585 dst_release(dst);
2586 goto put_states;
2587 }
2588 } else
2589 inner_mode = &xfrm[i]->inner_mode;
2590
2591 xdst->route = dst;
2592 dst_copy_metrics(dst1, dst);
2593
2594 if (xfrm[i]->props.mode != XFRM_MODE_TRANSPORT) {
2595 __u32 mark = 0;
2596
2597 if (xfrm[i]->props.smark.v || xfrm[i]->props.smark.m)
2598 mark = xfrm_smark_get(fl->flowi_mark, xfrm[i]);
2599
2600 family = xfrm[i]->props.family;
2601 dst = xfrm_dst_lookup(xfrm[i], tos, fl->flowi_oif,
2602 &saddr, &daddr, family, mark);
2603 err = PTR_ERR(dst);
2604 if (IS_ERR(dst))
2605 goto put_states;
2606 } else
2607 dst_hold(dst);
2608
2609 dst1->xfrm = xfrm[i];
2610 xdst->xfrm_genid = xfrm[i]->genid;
2611
2612 dst1->obsolete = DST_OBSOLETE_FORCE_CHK;
2613 dst1->flags |= DST_HOST;
2614 dst1->lastuse = now;
2615
2616 dst1->input = dst_discard;
2617
2618 rcu_read_lock();
2619 afinfo = xfrm_state_afinfo_get_rcu(inner_mode->family);
2620 if (likely(afinfo))
2621 dst1->output = afinfo->output;
2622 else
2623 dst1->output = dst_discard_out;
2624 rcu_read_unlock();
2625
2626 xdst_prev = xdst;
2627
2628 header_len += xfrm[i]->props.header_len;
2629 if (xfrm[i]->type->flags & XFRM_TYPE_NON_FRAGMENT)
2630 nfheader_len += xfrm[i]->props.header_len;
2631 trailer_len += xfrm[i]->props.trailer_len;
2632 }
2633
2634 xfrm_dst_set_child(xdst_prev, dst);
2635 xdst0->path = dst;
2636
2637 err = -ENODEV;
2638 dev = dst->dev;
2639 if (!dev)
2640 goto free_dst;
2641
2642 xfrm_init_path(xdst0, dst, nfheader_len);
2643 xfrm_init_pmtu(bundle, nx);
2644
2645 for (xdst_prev = xdst0; xdst_prev != (struct xfrm_dst *)dst;
2646 xdst_prev = (struct xfrm_dst *) xfrm_dst_child(&xdst_prev->u.dst)) {
2647 err = xfrm_fill_dst(xdst_prev, dev, fl);
2648 if (err)
2649 goto free_dst;
2650
2651 xdst_prev->u.dst.header_len = header_len;
2652 xdst_prev->u.dst.trailer_len = trailer_len;
2653 header_len -= xdst_prev->u.dst.xfrm->props.header_len;
2654 trailer_len -= xdst_prev->u.dst.xfrm->props.trailer_len;
2655 }
2656
2657 return &xdst0->u.dst;
2658
2659put_states:
2660 for (; i < nx; i++)
2661 xfrm_state_put(xfrm[i]);
2662free_dst:
2663 if (xdst0)
2664 dst_release_immediate(&xdst0->u.dst);
2665
2666 return ERR_PTR(err);
2667}
2668
2669static int xfrm_expand_policies(const struct flowi *fl, u16 family,
2670 struct xfrm_policy **pols,
2671 int *num_pols, int *num_xfrms)
2672{
2673 int i;
2674
2675 if (*num_pols == 0 || !pols[0]) {
2676 *num_pols = 0;
2677 *num_xfrms = 0;
2678 return 0;
2679 }
2680 if (IS_ERR(pols[0])) {
2681 *num_pols = 0;
2682 return PTR_ERR(pols[0]);
2683 }
2684
2685 *num_xfrms = pols[0]->xfrm_nr;
2686
2687#ifdef CONFIG_XFRM_SUB_POLICY
2688 if (pols[0] && pols[0]->action == XFRM_POLICY_ALLOW &&
2689 pols[0]->type != XFRM_POLICY_TYPE_MAIN) {
2690 pols[1] = xfrm_policy_lookup_bytype(xp_net(pols[0]),
2691 XFRM_POLICY_TYPE_MAIN,
2692 fl, family,
2693 XFRM_POLICY_OUT,
2694 pols[0]->if_id);
2695 if (pols[1]) {
2696 if (IS_ERR(pols[1])) {
2697 xfrm_pols_put(pols, *num_pols);
2698 *num_pols = 0;
2699 return PTR_ERR(pols[1]);
2700 }
2701 (*num_pols)++;
2702 (*num_xfrms) += pols[1]->xfrm_nr;
2703 }
2704 }
2705#endif
2706 for (i = 0; i < *num_pols; i++) {
2707 if (pols[i]->action != XFRM_POLICY_ALLOW) {
2708 *num_xfrms = -1;
2709 break;
2710 }
2711 }
2712
2713 return 0;
2714
2715}
2716
2717static struct xfrm_dst *
2718xfrm_resolve_and_create_bundle(struct xfrm_policy **pols, int num_pols,
2719 const struct flowi *fl, u16 family,
2720 struct dst_entry *dst_orig)
2721{
2722 struct net *net = xp_net(pols[0]);
2723 struct xfrm_state *xfrm[XFRM_MAX_DEPTH];
2724 struct xfrm_dst *bundle[XFRM_MAX_DEPTH];
2725 struct xfrm_dst *xdst;
2726 struct dst_entry *dst;
2727 int err;
2728
2729 /* Try to instantiate a bundle */
2730 err = xfrm_tmpl_resolve(pols, num_pols, fl, xfrm, family);
2731 if (err <= 0) {
2732 if (err == 0)
2733 return NULL;
2734
2735 if (err != -EAGAIN)
2736 XFRM_INC_STATS(net, LINUX_MIB_XFRMOUTPOLERROR);
2737 return ERR_PTR(err);
2738 }
2739
2740 dst = xfrm_bundle_create(pols[0], xfrm, bundle, err, fl, dst_orig);
2741 if (IS_ERR(dst)) {
2742 XFRM_INC_STATS(net, LINUX_MIB_XFRMOUTBUNDLEGENERROR);
2743 return ERR_CAST(dst);
2744 }
2745
2746 xdst = (struct xfrm_dst *)dst;
2747 xdst->num_xfrms = err;
2748 xdst->num_pols = num_pols;
2749 memcpy(xdst->pols, pols, sizeof(struct xfrm_policy *) * num_pols);
2750 xdst->policy_genid = atomic_read(&pols[0]->genid);
2751
2752 return xdst;
2753}
2754
2755static void xfrm_policy_queue_process(struct timer_list *t)
2756{
2757 struct sk_buff *skb;
2758 struct sock *sk;
2759 struct dst_entry *dst;
2760 struct xfrm_policy *pol = from_timer(pol, t, polq.hold_timer);
2761 struct net *net = xp_net(pol);
2762 struct xfrm_policy_queue *pq = &pol->polq;
2763 struct flowi fl;
2764 struct sk_buff_head list;
2765
2766 spin_lock(&pq->hold_queue.lock);
2767 skb = skb_peek(&pq->hold_queue);
2768 if (!skb) {
2769 spin_unlock(&pq->hold_queue.lock);
2770 goto out;
2771 }
2772 dst = skb_dst(skb);
2773 sk = skb->sk;
2774 xfrm_decode_session(skb, &fl, dst->ops->family);
2775 spin_unlock(&pq->hold_queue.lock);
2776
2777 dst_hold(xfrm_dst_path(dst));
2778 dst = xfrm_lookup(net, xfrm_dst_path(dst), &fl, sk, XFRM_LOOKUP_QUEUE);
2779 if (IS_ERR(dst))
2780 goto purge_queue;
2781
2782 if (dst->flags & DST_XFRM_QUEUE) {
2783 dst_release(dst);
2784
2785 if (pq->timeout >= XFRM_QUEUE_TMO_MAX)
2786 goto purge_queue;
2787
2788 pq->timeout = pq->timeout << 1;
2789 if (!mod_timer(&pq->hold_timer, jiffies + pq->timeout))
2790 xfrm_pol_hold(pol);
2791 goto out;
2792 }
2793
2794 dst_release(dst);
2795
2796 __skb_queue_head_init(&list);
2797
2798 spin_lock(&pq->hold_queue.lock);
2799 pq->timeout = 0;
2800 skb_queue_splice_init(&pq->hold_queue, &list);
2801 spin_unlock(&pq->hold_queue.lock);
2802
2803 while (!skb_queue_empty(&list)) {
2804 skb = __skb_dequeue(&list);
2805
2806 xfrm_decode_session(skb, &fl, skb_dst(skb)->ops->family);
2807 dst_hold(xfrm_dst_path(skb_dst(skb)));
2808 dst = xfrm_lookup(net, xfrm_dst_path(skb_dst(skb)), &fl, skb->sk, 0);
2809 if (IS_ERR(dst)) {
2810 kfree_skb(skb);
2811 continue;
2812 }
2813
2814 nf_reset_ct(skb);
2815 skb_dst_drop(skb);
2816 skb_dst_set(skb, dst);
2817
2818 dst_output(net, skb->sk, skb);
2819 }
2820
2821out:
2822 xfrm_pol_put(pol);
2823 return;
2824
2825purge_queue:
2826 pq->timeout = 0;
2827 skb_queue_purge(&pq->hold_queue);
2828 xfrm_pol_put(pol);
2829}
2830
2831static int xdst_queue_output(struct net *net, struct sock *sk, struct sk_buff *skb)
2832{
2833 unsigned long sched_next;
2834 struct dst_entry *dst = skb_dst(skb);
2835 struct xfrm_dst *xdst = (struct xfrm_dst *) dst;
2836 struct xfrm_policy *pol = xdst->pols[0];
2837 struct xfrm_policy_queue *pq = &pol->polq;
2838
2839 if (unlikely(skb_fclone_busy(sk, skb))) {
2840 kfree_skb(skb);
2841 return 0;
2842 }
2843
2844 if (pq->hold_queue.qlen > XFRM_MAX_QUEUE_LEN) {
2845 kfree_skb(skb);
2846 return -EAGAIN;
2847 }
2848
2849 skb_dst_force(skb);
2850
2851 spin_lock_bh(&pq->hold_queue.lock);
2852
2853 if (!pq->timeout)
2854 pq->timeout = XFRM_QUEUE_TMO_MIN;
2855
2856 sched_next = jiffies + pq->timeout;
2857
2858 if (del_timer(&pq->hold_timer)) {
2859 if (time_before(pq->hold_timer.expires, sched_next))
2860 sched_next = pq->hold_timer.expires;
2861 xfrm_pol_put(pol);
2862 }
2863
2864 __skb_queue_tail(&pq->hold_queue, skb);
2865 if (!mod_timer(&pq->hold_timer, sched_next))
2866 xfrm_pol_hold(pol);
2867
2868 spin_unlock_bh(&pq->hold_queue.lock);
2869
2870 return 0;
2871}
2872
2873static struct xfrm_dst *xfrm_create_dummy_bundle(struct net *net,
2874 struct xfrm_flo *xflo,
2875 const struct flowi *fl,
2876 int num_xfrms,
2877 u16 family)
2878{
2879 int err;
2880 struct net_device *dev;
2881 struct dst_entry *dst;
2882 struct dst_entry *dst1;
2883 struct xfrm_dst *xdst;
2884
2885 xdst = xfrm_alloc_dst(net, family);
2886 if (IS_ERR(xdst))
2887 return xdst;
2888
2889 if (!(xflo->flags & XFRM_LOOKUP_QUEUE) ||
2890 net->xfrm.sysctl_larval_drop ||
2891 num_xfrms <= 0)
2892 return xdst;
2893
2894 dst = xflo->dst_orig;
2895 dst1 = &xdst->u.dst;
2896 dst_hold(dst);
2897 xdst->route = dst;
2898
2899 dst_copy_metrics(dst1, dst);
2900
2901 dst1->obsolete = DST_OBSOLETE_FORCE_CHK;
2902 dst1->flags |= DST_HOST | DST_XFRM_QUEUE;
2903 dst1->lastuse = jiffies;
2904
2905 dst1->input = dst_discard;
2906 dst1->output = xdst_queue_output;
2907
2908 dst_hold(dst);
2909 xfrm_dst_set_child(xdst, dst);
2910 xdst->path = dst;
2911
2912 xfrm_init_path((struct xfrm_dst *)dst1, dst, 0);
2913
2914 err = -ENODEV;
2915 dev = dst->dev;
2916 if (!dev)
2917 goto free_dst;
2918
2919 err = xfrm_fill_dst(xdst, dev, fl);
2920 if (err)
2921 goto free_dst;
2922
2923out:
2924 return xdst;
2925
2926free_dst:
2927 dst_release(dst1);
2928 xdst = ERR_PTR(err);
2929 goto out;
2930}
2931
2932static struct xfrm_dst *xfrm_bundle_lookup(struct net *net,
2933 const struct flowi *fl,
2934 u16 family, u8 dir,
2935 struct xfrm_flo *xflo, u32 if_id)
2936{
2937 struct xfrm_policy *pols[XFRM_POLICY_TYPE_MAX];
2938 int num_pols = 0, num_xfrms = 0, err;
2939 struct xfrm_dst *xdst;
2940
2941 /* Resolve policies to use if we couldn't get them from
2942 * previous cache entry */
2943 num_pols = 1;
2944 pols[0] = xfrm_policy_lookup(net, fl, family, dir, if_id);
2945 err = xfrm_expand_policies(fl, family, pols,
2946 &num_pols, &num_xfrms);
2947 if (err < 0)
2948 goto inc_error;
2949 if (num_pols == 0)
2950 return NULL;
2951 if (num_xfrms <= 0)
2952 goto make_dummy_bundle;
2953
2954 xdst = xfrm_resolve_and_create_bundle(pols, num_pols, fl, family,
2955 xflo->dst_orig);
2956 if (IS_ERR(xdst)) {
2957 err = PTR_ERR(xdst);
2958 if (err == -EREMOTE) {
2959 xfrm_pols_put(pols, num_pols);
2960 return NULL;
2961 }
2962
2963 if (err != -EAGAIN)
2964 goto error;
2965 goto make_dummy_bundle;
2966 } else if (xdst == NULL) {
2967 num_xfrms = 0;
2968 goto make_dummy_bundle;
2969 }
2970
2971 return xdst;
2972
2973make_dummy_bundle:
2974 /* We found policies, but there's no bundles to instantiate:
2975 * either because the policy blocks, has no transformations or
2976 * we could not build template (no xfrm_states).*/
2977 xdst = xfrm_create_dummy_bundle(net, xflo, fl, num_xfrms, family);
2978 if (IS_ERR(xdst)) {
2979 xfrm_pols_put(pols, num_pols);
2980 return ERR_CAST(xdst);
2981 }
2982 xdst->num_pols = num_pols;
2983 xdst->num_xfrms = num_xfrms;
2984 memcpy(xdst->pols, pols, sizeof(struct xfrm_policy *) * num_pols);
2985
2986 return xdst;
2987
2988inc_error:
2989 XFRM_INC_STATS(net, LINUX_MIB_XFRMOUTPOLERROR);
2990error:
2991 xfrm_pols_put(pols, num_pols);
2992 return ERR_PTR(err);
2993}
2994
2995static struct dst_entry *make_blackhole(struct net *net, u16 family,
2996 struct dst_entry *dst_orig)
2997{
2998 const struct xfrm_policy_afinfo *afinfo = xfrm_policy_get_afinfo(family);
2999 struct dst_entry *ret;
3000
3001 if (!afinfo) {
3002 dst_release(dst_orig);
3003 return ERR_PTR(-EINVAL);
3004 } else {
3005 ret = afinfo->blackhole_route(net, dst_orig);
3006 }
3007 rcu_read_unlock();
3008
3009 return ret;
3010}
3011
3012/* Finds/creates a bundle for given flow and if_id
3013 *
3014 * At the moment we eat a raw IP route. Mostly to speed up lookups
3015 * on interfaces with disabled IPsec.
3016 *
3017 * xfrm_lookup uses an if_id of 0 by default, and is provided for
3018 * compatibility
3019 */
3020struct dst_entry *xfrm_lookup_with_ifid(struct net *net,
3021 struct dst_entry *dst_orig,
3022 const struct flowi *fl,
3023 const struct sock *sk,
3024 int flags, u32 if_id)
3025{
3026 struct xfrm_policy *pols[XFRM_POLICY_TYPE_MAX];
3027 struct xfrm_dst *xdst;
3028 struct dst_entry *dst, *route;
3029 u16 family = dst_orig->ops->family;
3030 u8 dir = XFRM_POLICY_OUT;
3031 int i, err, num_pols, num_xfrms = 0, drop_pols = 0;
3032
3033 dst = NULL;
3034 xdst = NULL;
3035 route = NULL;
3036
3037 sk = sk_const_to_full_sk(sk);
3038 if (sk && sk->sk_policy[XFRM_POLICY_OUT]) {
3039 num_pols = 1;
3040 pols[0] = xfrm_sk_policy_lookup(sk, XFRM_POLICY_OUT, fl, family,
3041 if_id);
3042 err = xfrm_expand_policies(fl, family, pols,
3043 &num_pols, &num_xfrms);
3044 if (err < 0)
3045 goto dropdst;
3046
3047 if (num_pols) {
3048 if (num_xfrms <= 0) {
3049 drop_pols = num_pols;
3050 goto no_transform;
3051 }
3052
3053 xdst = xfrm_resolve_and_create_bundle(
3054 pols, num_pols, fl,
3055 family, dst_orig);
3056
3057 if (IS_ERR(xdst)) {
3058 xfrm_pols_put(pols, num_pols);
3059 err = PTR_ERR(xdst);
3060 if (err == -EREMOTE)
3061 goto nopol;
3062
3063 goto dropdst;
3064 } else if (xdst == NULL) {
3065 num_xfrms = 0;
3066 drop_pols = num_pols;
3067 goto no_transform;
3068 }
3069
3070 route = xdst->route;
3071 }
3072 }
3073
3074 if (xdst == NULL) {
3075 struct xfrm_flo xflo;
3076
3077 xflo.dst_orig = dst_orig;
3078 xflo.flags = flags;
3079
3080 /* To accelerate a bit... */
3081 if (!if_id && ((dst_orig->flags & DST_NOXFRM) ||
3082 !net->xfrm.policy_count[XFRM_POLICY_OUT]))
3083 goto nopol;
3084
3085 xdst = xfrm_bundle_lookup(net, fl, family, dir, &xflo, if_id);
3086 if (xdst == NULL)
3087 goto nopol;
3088 if (IS_ERR(xdst)) {
3089 err = PTR_ERR(xdst);
3090 goto dropdst;
3091 }
3092
3093 num_pols = xdst->num_pols;
3094 num_xfrms = xdst->num_xfrms;
3095 memcpy(pols, xdst->pols, sizeof(struct xfrm_policy *) * num_pols);
3096 route = xdst->route;
3097 }
3098
3099 dst = &xdst->u.dst;
3100 if (route == NULL && num_xfrms > 0) {
3101 /* The only case when xfrm_bundle_lookup() returns a
3102 * bundle with null route, is when the template could
3103 * not be resolved. It means policies are there, but
3104 * bundle could not be created, since we don't yet
3105 * have the xfrm_state's. We need to wait for KM to
3106 * negotiate new SA's or bail out with error.*/
3107 if (net->xfrm.sysctl_larval_drop) {
3108 XFRM_INC_STATS(net, LINUX_MIB_XFRMOUTNOSTATES);
3109 err = -EREMOTE;
3110 goto error;
3111 }
3112
3113 err = -EAGAIN;
3114
3115 XFRM_INC_STATS(net, LINUX_MIB_XFRMOUTNOSTATES);
3116 goto error;
3117 }
3118
3119no_transform:
3120 if (num_pols == 0)
3121 goto nopol;
3122
3123 if ((flags & XFRM_LOOKUP_ICMP) &&
3124 !(pols[0]->flags & XFRM_POLICY_ICMP)) {
3125 err = -ENOENT;
3126 goto error;
3127 }
3128
3129 for (i = 0; i < num_pols; i++)
3130 pols[i]->curlft.use_time = ktime_get_real_seconds();
3131
3132 if (num_xfrms < 0) {
3133 /* Prohibit the flow */
3134 XFRM_INC_STATS(net, LINUX_MIB_XFRMOUTPOLBLOCK);
3135 err = -EPERM;
3136 goto error;
3137 } else if (num_xfrms > 0) {
3138 /* Flow transformed */
3139 dst_release(dst_orig);
3140 } else {
3141 /* Flow passes untransformed */
3142 dst_release(dst);
3143 dst = dst_orig;
3144 }
3145ok:
3146 xfrm_pols_put(pols, drop_pols);
3147 if (dst && dst->xfrm &&
3148 dst->xfrm->props.mode == XFRM_MODE_TUNNEL)
3149 dst->flags |= DST_XFRM_TUNNEL;
3150 return dst;
3151
3152nopol:
3153 if (!(flags & XFRM_LOOKUP_ICMP)) {
3154 dst = dst_orig;
3155 goto ok;
3156 }
3157 err = -ENOENT;
3158error:
3159 dst_release(dst);
3160dropdst:
3161 if (!(flags & XFRM_LOOKUP_KEEP_DST_REF))
3162 dst_release(dst_orig);
3163 xfrm_pols_put(pols, drop_pols);
3164 return ERR_PTR(err);
3165}
3166EXPORT_SYMBOL(xfrm_lookup_with_ifid);
3167
3168/* Main function: finds/creates a bundle for given flow.
3169 *
3170 * At the moment we eat a raw IP route. Mostly to speed up lookups
3171 * on interfaces with disabled IPsec.
3172 */
3173struct dst_entry *xfrm_lookup(struct net *net, struct dst_entry *dst_orig,
3174 const struct flowi *fl, const struct sock *sk,
3175 int flags)
3176{
3177 return xfrm_lookup_with_ifid(net, dst_orig, fl, sk, flags, 0);
3178}
3179EXPORT_SYMBOL(xfrm_lookup);
3180
3181/* Callers of xfrm_lookup_route() must ensure a call to dst_output().
3182 * Otherwise we may send out blackholed packets.
3183 */
3184struct dst_entry *xfrm_lookup_route(struct net *net, struct dst_entry *dst_orig,
3185 const struct flowi *fl,
3186 const struct sock *sk, int flags)
3187{
3188 struct dst_entry *dst = xfrm_lookup(net, dst_orig, fl, sk,
3189 flags | XFRM_LOOKUP_QUEUE |
3190 XFRM_LOOKUP_KEEP_DST_REF);
3191
3192 if (IS_ERR(dst) && PTR_ERR(dst) == -EREMOTE)
3193 return make_blackhole(net, dst_orig->ops->family, dst_orig);
3194
3195 if (IS_ERR(dst))
3196 dst_release(dst_orig);
3197
3198 return dst;
3199}
3200EXPORT_SYMBOL(xfrm_lookup_route);
3201
3202static inline int
3203xfrm_secpath_reject(int idx, struct sk_buff *skb, const struct flowi *fl)
3204{
3205 struct sec_path *sp = skb_sec_path(skb);
3206 struct xfrm_state *x;
3207
3208 if (!sp || idx < 0 || idx >= sp->len)
3209 return 0;
3210 x = sp->xvec[idx];
3211 if (!x->type->reject)
3212 return 0;
3213 return x->type->reject(x, skb, fl);
3214}
3215
3216/* When skb is transformed back to its "native" form, we have to
3217 * check policy restrictions. At the moment we make this in maximally
3218 * stupid way. Shame on me. :-) Of course, connected sockets must
3219 * have policy cached at them.
3220 */
3221
3222static inline int
3223xfrm_state_ok(const struct xfrm_tmpl *tmpl, const struct xfrm_state *x,
3224 unsigned short family, u32 if_id)
3225{
3226 if (xfrm_state_kern(x))
3227 return tmpl->optional && !xfrm_state_addr_cmp(tmpl, x, tmpl->encap_family);
3228 return x->id.proto == tmpl->id.proto &&
3229 (x->id.spi == tmpl->id.spi || !tmpl->id.spi) &&
3230 (x->props.reqid == tmpl->reqid || !tmpl->reqid) &&
3231 x->props.mode == tmpl->mode &&
3232 (tmpl->allalgs || (tmpl->aalgos & (1<<x->props.aalgo)) ||
3233 !(xfrm_id_proto_match(tmpl->id.proto, IPSEC_PROTO_ANY))) &&
3234 !(x->props.mode != XFRM_MODE_TRANSPORT &&
3235 xfrm_state_addr_cmp(tmpl, x, family)) &&
3236 (if_id == 0 || if_id == x->if_id);
3237}
3238
3239/*
3240 * 0 or more than 0 is returned when validation is succeeded (either bypass
3241 * because of optional transport mode, or next index of the mathced secpath
3242 * state with the template.
3243 * -1 is returned when no matching template is found.
3244 * Otherwise "-2 - errored_index" is returned.
3245 */
3246static inline int
3247xfrm_policy_ok(const struct xfrm_tmpl *tmpl, const struct sec_path *sp, int start,
3248 unsigned short family, u32 if_id)
3249{
3250 int idx = start;
3251
3252 if (tmpl->optional) {
3253 if (tmpl->mode == XFRM_MODE_TRANSPORT)
3254 return start;
3255 } else
3256 start = -1;
3257 for (; idx < sp->len; idx++) {
3258 if (xfrm_state_ok(tmpl, sp->xvec[idx], family, if_id))
3259 return ++idx;
3260 if (sp->xvec[idx]->props.mode != XFRM_MODE_TRANSPORT) {
3261 if (start == -1)
3262 start = -2-idx;
3263 break;
3264 }
3265 }
3266 return start;
3267}
3268
3269static void
3270decode_session4(struct sk_buff *skb, struct flowi *fl, bool reverse)
3271{
3272 const struct iphdr *iph = ip_hdr(skb);
3273 int ihl = iph->ihl;
3274 u8 *xprth = skb_network_header(skb) + ihl * 4;
3275 struct flowi4 *fl4 = &fl->u.ip4;
3276 int oif = 0;
3277
3278 if (skb_dst(skb) && skb_dst(skb)->dev)
3279 oif = skb_dst(skb)->dev->ifindex;
3280
3281 memset(fl4, 0, sizeof(struct flowi4));
3282 fl4->flowi4_mark = skb->mark;
3283 fl4->flowi4_oif = reverse ? skb->skb_iif : oif;
3284
3285 fl4->flowi4_proto = iph->protocol;
3286 fl4->daddr = reverse ? iph->saddr : iph->daddr;
3287 fl4->saddr = reverse ? iph->daddr : iph->saddr;
3288 fl4->flowi4_tos = iph->tos & ~INET_ECN_MASK;
3289
3290 if (!ip_is_fragment(iph)) {
3291 switch (iph->protocol) {
3292 case IPPROTO_UDP:
3293 case IPPROTO_UDPLITE:
3294 case IPPROTO_TCP:
3295 case IPPROTO_SCTP:
3296 case IPPROTO_DCCP:
3297 if (xprth + 4 < skb->data ||
3298 pskb_may_pull(skb, xprth + 4 - skb->data)) {
3299 __be16 *ports;
3300
3301 xprth = skb_network_header(skb) + ihl * 4;
3302 ports = (__be16 *)xprth;
3303
3304 fl4->fl4_sport = ports[!!reverse];
3305 fl4->fl4_dport = ports[!reverse];
3306 }
3307 break;
3308 case IPPROTO_ICMP:
3309 if (xprth + 2 < skb->data ||
3310 pskb_may_pull(skb, xprth + 2 - skb->data)) {
3311 u8 *icmp;
3312
3313 xprth = skb_network_header(skb) + ihl * 4;
3314 icmp = xprth;
3315
3316 fl4->fl4_icmp_type = icmp[0];
3317 fl4->fl4_icmp_code = icmp[1];
3318 }
3319 break;
3320 case IPPROTO_ESP:
3321 if (xprth + 4 < skb->data ||
3322 pskb_may_pull(skb, xprth + 4 - skb->data)) {
3323 __be32 *ehdr;
3324
3325 xprth = skb_network_header(skb) + ihl * 4;
3326 ehdr = (__be32 *)xprth;
3327
3328 fl4->fl4_ipsec_spi = ehdr[0];
3329 }
3330 break;
3331 case IPPROTO_AH:
3332 if (xprth + 8 < skb->data ||
3333 pskb_may_pull(skb, xprth + 8 - skb->data)) {
3334 __be32 *ah_hdr;
3335
3336 xprth = skb_network_header(skb) + ihl * 4;
3337 ah_hdr = (__be32 *)xprth;
3338
3339 fl4->fl4_ipsec_spi = ah_hdr[1];
3340 }
3341 break;
3342 case IPPROTO_COMP:
3343 if (xprth + 4 < skb->data ||
3344 pskb_may_pull(skb, xprth + 4 - skb->data)) {
3345 __be16 *ipcomp_hdr;
3346
3347 xprth = skb_network_header(skb) + ihl * 4;
3348 ipcomp_hdr = (__be16 *)xprth;
3349
3350 fl4->fl4_ipsec_spi = htonl(ntohs(ipcomp_hdr[1]));
3351 }
3352 break;
3353 case IPPROTO_GRE:
3354 if (xprth + 12 < skb->data ||
3355 pskb_may_pull(skb, xprth + 12 - skb->data)) {
3356 __be16 *greflags;
3357 __be32 *gre_hdr;
3358
3359 xprth = skb_network_header(skb) + ihl * 4;
3360 greflags = (__be16 *)xprth;
3361 gre_hdr = (__be32 *)xprth;
3362
3363 if (greflags[0] & GRE_KEY) {
3364 if (greflags[0] & GRE_CSUM)
3365 gre_hdr++;
3366 fl4->fl4_gre_key = gre_hdr[1];
3367 }
3368 }
3369 break;
3370 default:
3371 fl4->fl4_ipsec_spi = 0;
3372 break;
3373 }
3374 }
3375}
3376
3377#if IS_ENABLED(CONFIG_IPV6)
3378static void
3379decode_session6(struct sk_buff *skb, struct flowi *fl, bool reverse)
3380{
3381 struct flowi6 *fl6 = &fl->u.ip6;
3382 int onlyproto = 0;
3383 const struct ipv6hdr *hdr = ipv6_hdr(skb);
3384 u32 offset = sizeof(*hdr);
3385 struct ipv6_opt_hdr *exthdr;
3386 const unsigned char *nh = skb_network_header(skb);
3387 u16 nhoff = IP6CB(skb)->nhoff;
3388 int oif = 0;
3389 u8 nexthdr;
3390
3391 if (!nhoff)
3392 nhoff = offsetof(struct ipv6hdr, nexthdr);
3393
3394 nexthdr = nh[nhoff];
3395
3396 if (skb_dst(skb) && skb_dst(skb)->dev)
3397 oif = skb_dst(skb)->dev->ifindex;
3398
3399 memset(fl6, 0, sizeof(struct flowi6));
3400 fl6->flowi6_mark = skb->mark;
3401 fl6->flowi6_oif = reverse ? skb->skb_iif : oif;
3402
3403 fl6->daddr = reverse ? hdr->saddr : hdr->daddr;
3404 fl6->saddr = reverse ? hdr->daddr : hdr->saddr;
3405
3406 while (nh + offset + sizeof(*exthdr) < skb->data ||
3407 pskb_may_pull(skb, nh + offset + sizeof(*exthdr) - skb->data)) {
3408 nh = skb_network_header(skb);
3409 exthdr = (struct ipv6_opt_hdr *)(nh + offset);
3410
3411 switch (nexthdr) {
3412 case NEXTHDR_FRAGMENT:
3413 onlyproto = 1;
3414 /* fall through */
3415 case NEXTHDR_ROUTING:
3416 case NEXTHDR_HOP:
3417 case NEXTHDR_DEST:
3418 offset += ipv6_optlen(exthdr);
3419 nexthdr = exthdr->nexthdr;
3420 exthdr = (struct ipv6_opt_hdr *)(nh + offset);
3421 break;
3422 case IPPROTO_UDP:
3423 case IPPROTO_UDPLITE:
3424 case IPPROTO_TCP:
3425 case IPPROTO_SCTP:
3426 case IPPROTO_DCCP:
3427 if (!onlyproto && (nh + offset + 4 < skb->data ||
3428 pskb_may_pull(skb, nh + offset + 4 - skb->data))) {
3429 __be16 *ports;
3430
3431 nh = skb_network_header(skb);
3432 ports = (__be16 *)(nh + offset);
3433 fl6->fl6_sport = ports[!!reverse];
3434 fl6->fl6_dport = ports[!reverse];
3435 }
3436 fl6->flowi6_proto = nexthdr;
3437 return;
3438 case IPPROTO_ICMPV6:
3439 if (!onlyproto && (nh + offset + 2 < skb->data ||
3440 pskb_may_pull(skb, nh + offset + 2 - skb->data))) {
3441 u8 *icmp;
3442
3443 nh = skb_network_header(skb);
3444 icmp = (u8 *)(nh + offset);
3445 fl6->fl6_icmp_type = icmp[0];
3446 fl6->fl6_icmp_code = icmp[1];
3447 }
3448 fl6->flowi6_proto = nexthdr;
3449 return;
3450 case IPPROTO_GRE:
3451 if (!onlyproto &&
3452 (nh + offset + 12 < skb->data ||
3453 pskb_may_pull(skb, nh + offset + 12 - skb->data))) {
3454 struct gre_base_hdr *gre_hdr;
3455 __be32 *gre_key;
3456
3457 nh = skb_network_header(skb);
3458 gre_hdr = (struct gre_base_hdr *)(nh + offset);
3459 gre_key = (__be32 *)(gre_hdr + 1);
3460
3461 if (gre_hdr->flags & GRE_KEY) {
3462 if (gre_hdr->flags & GRE_CSUM)
3463 gre_key++;
3464 fl6->fl6_gre_key = *gre_key;
3465 }
3466 }
3467 fl6->flowi6_proto = nexthdr;
3468 return;
3469
3470#if IS_ENABLED(CONFIG_IPV6_MIP6)
3471 case IPPROTO_MH:
3472 offset += ipv6_optlen(exthdr);
3473 if (!onlyproto && (nh + offset + 3 < skb->data ||
3474 pskb_may_pull(skb, nh + offset + 3 - skb->data))) {
3475 struct ip6_mh *mh;
3476
3477 nh = skb_network_header(skb);
3478 mh = (struct ip6_mh *)(nh + offset);
3479 fl6->fl6_mh_type = mh->ip6mh_type;
3480 }
3481 fl6->flowi6_proto = nexthdr;
3482 return;
3483#endif
3484 /* XXX Why are there these headers? */
3485 case IPPROTO_AH:
3486 case IPPROTO_ESP:
3487 case IPPROTO_COMP:
3488 default:
3489 fl6->fl6_ipsec_spi = 0;
3490 fl6->flowi6_proto = nexthdr;
3491 return;
3492 }
3493 }
3494}
3495#endif
3496
3497int __xfrm_decode_session(struct sk_buff *skb, struct flowi *fl,
3498 unsigned int family, int reverse)
3499{
3500 switch (family) {
3501 case AF_INET:
3502 decode_session4(skb, fl, reverse);
3503 break;
3504#if IS_ENABLED(CONFIG_IPV6)
3505 case AF_INET6:
3506 decode_session6(skb, fl, reverse);
3507 break;
3508#endif
3509 default:
3510 return -EAFNOSUPPORT;
3511 }
3512
3513 return security_xfrm_decode_session(skb, &fl->flowi_secid);
3514}
3515EXPORT_SYMBOL(__xfrm_decode_session);
3516
3517static inline int secpath_has_nontransport(const struct sec_path *sp, int k, int *idxp)
3518{
3519 for (; k < sp->len; k++) {
3520 if (sp->xvec[k]->props.mode != XFRM_MODE_TRANSPORT) {
3521 *idxp = k;
3522 return 1;
3523 }
3524 }
3525
3526 return 0;
3527}
3528
3529int __xfrm_policy_check(struct sock *sk, int dir, struct sk_buff *skb,
3530 unsigned short family)
3531{
3532 struct net *net = dev_net(skb->dev);
3533 struct xfrm_policy *pol;
3534 struct xfrm_policy *pols[XFRM_POLICY_TYPE_MAX];
3535 int npols = 0;
3536 int xfrm_nr;
3537 int pi;
3538 int reverse;
3539 struct flowi fl;
3540 int xerr_idx = -1;
3541 const struct xfrm_if_cb *ifcb;
3542 struct sec_path *sp;
3543 struct xfrm_if *xi;
3544 u32 if_id = 0;
3545
3546 rcu_read_lock();
3547 ifcb = xfrm_if_get_cb();
3548
3549 if (ifcb) {
3550 xi = ifcb->decode_session(skb, family);
3551 if (xi) {
3552 if_id = xi->p.if_id;
3553 net = xi->net;
3554 }
3555 }
3556 rcu_read_unlock();
3557
3558 reverse = dir & ~XFRM_POLICY_MASK;
3559 dir &= XFRM_POLICY_MASK;
3560
3561 if (__xfrm_decode_session(skb, &fl, family, reverse) < 0) {
3562 XFRM_INC_STATS(net, LINUX_MIB_XFRMINHDRERROR);
3563 return 0;
3564 }
3565
3566 nf_nat_decode_session(skb, &fl, family);
3567
3568 /* First, check used SA against their selectors. */
3569 sp = skb_sec_path(skb);
3570 if (sp) {
3571 int i;
3572
3573 for (i = sp->len - 1; i >= 0; i--) {
3574 struct xfrm_state *x = sp->xvec[i];
3575 if (!xfrm_selector_match(&x->sel, &fl, family)) {
3576 XFRM_INC_STATS(net, LINUX_MIB_XFRMINSTATEMISMATCH);
3577 return 0;
3578 }
3579 }
3580 }
3581
3582 pol = NULL;
3583 sk = sk_to_full_sk(sk);
3584 if (sk && sk->sk_policy[dir]) {
3585 pol = xfrm_sk_policy_lookup(sk, dir, &fl, family, if_id);
3586 if (IS_ERR(pol)) {
3587 XFRM_INC_STATS(net, LINUX_MIB_XFRMINPOLERROR);
3588 return 0;
3589 }
3590 }
3591
3592 if (!pol)
3593 pol = xfrm_policy_lookup(net, &fl, family, dir, if_id);
3594
3595 if (IS_ERR(pol)) {
3596 XFRM_INC_STATS(net, LINUX_MIB_XFRMINPOLERROR);
3597 return 0;
3598 }
3599
3600 if (!pol) {
3601 if (sp && secpath_has_nontransport(sp, 0, &xerr_idx)) {
3602 xfrm_secpath_reject(xerr_idx, skb, &fl);
3603 XFRM_INC_STATS(net, LINUX_MIB_XFRMINNOPOLS);
3604 return 0;
3605 }
3606 return 1;
3607 }
3608
3609 pol->curlft.use_time = ktime_get_real_seconds();
3610
3611 pols[0] = pol;
3612 npols++;
3613#ifdef CONFIG_XFRM_SUB_POLICY
3614 if (pols[0]->type != XFRM_POLICY_TYPE_MAIN) {
3615 pols[1] = xfrm_policy_lookup_bytype(net, XFRM_POLICY_TYPE_MAIN,
3616 &fl, family,
3617 XFRM_POLICY_IN, if_id);
3618 if (pols[1]) {
3619 if (IS_ERR(pols[1])) {
3620 XFRM_INC_STATS(net, LINUX_MIB_XFRMINPOLERROR);
3621 xfrm_pol_put(pols[0]);
3622 return 0;
3623 }
3624 pols[1]->curlft.use_time = ktime_get_real_seconds();
3625 npols++;
3626 }
3627 }
3628#endif
3629
3630 if (pol->action == XFRM_POLICY_ALLOW) {
3631 static struct sec_path dummy;
3632 struct xfrm_tmpl *tp[XFRM_MAX_DEPTH];
3633 struct xfrm_tmpl *stp[XFRM_MAX_DEPTH];
3634 struct xfrm_tmpl **tpp = tp;
3635 int ti = 0;
3636 int i, k;
3637
3638 sp = skb_sec_path(skb);
3639 if (!sp)
3640 sp = &dummy;
3641
3642 for (pi = 0; pi < npols; pi++) {
3643 if (pols[pi] != pol &&
3644 pols[pi]->action != XFRM_POLICY_ALLOW) {
3645 XFRM_INC_STATS(net, LINUX_MIB_XFRMINPOLBLOCK);
3646 goto reject;
3647 }
3648 if (ti + pols[pi]->xfrm_nr >= XFRM_MAX_DEPTH) {
3649 XFRM_INC_STATS(net, LINUX_MIB_XFRMINBUFFERERROR);
3650 goto reject_error;
3651 }
3652 for (i = 0; i < pols[pi]->xfrm_nr; i++)
3653 tpp[ti++] = &pols[pi]->xfrm_vec[i];
3654 }
3655 xfrm_nr = ti;
3656 if (npols > 1) {
3657 xfrm_tmpl_sort(stp, tpp, xfrm_nr, family);
3658 tpp = stp;
3659 }
3660
3661 /* For each tunnel xfrm, find the first matching tmpl.
3662 * For each tmpl before that, find corresponding xfrm.
3663 * Order is _important_. Later we will implement
3664 * some barriers, but at the moment barriers
3665 * are implied between each two transformations.
3666 */
3667 for (i = xfrm_nr-1, k = 0; i >= 0; i--) {
3668 k = xfrm_policy_ok(tpp[i], sp, k, family, if_id);
3669 if (k < 0) {
3670 if (k < -1)
3671 /* "-2 - errored_index" returned */
3672 xerr_idx = -(2+k);
3673 XFRM_INC_STATS(net, LINUX_MIB_XFRMINTMPLMISMATCH);
3674 goto reject;
3675 }
3676 }
3677
3678 if (secpath_has_nontransport(sp, k, &xerr_idx)) {
3679 XFRM_INC_STATS(net, LINUX_MIB_XFRMINTMPLMISMATCH);
3680 goto reject;
3681 }
3682
3683 xfrm_pols_put(pols, npols);
3684 return 1;
3685 }
3686 XFRM_INC_STATS(net, LINUX_MIB_XFRMINPOLBLOCK);
3687
3688reject:
3689 xfrm_secpath_reject(xerr_idx, skb, &fl);
3690reject_error:
3691 xfrm_pols_put(pols, npols);
3692 return 0;
3693}
3694EXPORT_SYMBOL(__xfrm_policy_check);
3695
3696int __xfrm_route_forward(struct sk_buff *skb, unsigned short family)
3697{
3698 struct net *net = dev_net(skb->dev);
3699 struct flowi fl;
3700 struct dst_entry *dst;
3701 int res = 1;
3702
3703 if (xfrm_decode_session(skb, &fl, family) < 0) {
3704 XFRM_INC_STATS(net, LINUX_MIB_XFRMFWDHDRERROR);
3705 return 0;
3706 }
3707
3708 skb_dst_force(skb);
3709 if (!skb_dst(skb)) {
3710 XFRM_INC_STATS(net, LINUX_MIB_XFRMFWDHDRERROR);
3711 return 0;
3712 }
3713
3714 dst = xfrm_lookup(net, skb_dst(skb), &fl, NULL, XFRM_LOOKUP_QUEUE);
3715 if (IS_ERR(dst)) {
3716 res = 0;
3717 dst = NULL;
3718 }
3719 skb_dst_set(skb, dst);
3720 return res;
3721}
3722EXPORT_SYMBOL(__xfrm_route_forward);
3723
3724/* Optimize later using cookies and generation ids. */
3725
3726static struct dst_entry *xfrm_dst_check(struct dst_entry *dst, u32 cookie)
3727{
3728 /* Code (such as __xfrm4_bundle_create()) sets dst->obsolete
3729 * to DST_OBSOLETE_FORCE_CHK to force all XFRM destinations to
3730 * get validated by dst_ops->check on every use. We do this
3731 * because when a normal route referenced by an XFRM dst is
3732 * obsoleted we do not go looking around for all parent
3733 * referencing XFRM dsts so that we can invalidate them. It
3734 * is just too much work. Instead we make the checks here on
3735 * every use. For example:
3736 *
3737 * XFRM dst A --> IPv4 dst X
3738 *
3739 * X is the "xdst->route" of A (X is also the "dst->path" of A
3740 * in this example). If X is marked obsolete, "A" will not
3741 * notice. That's what we are validating here via the
3742 * stale_bundle() check.
3743 *
3744 * When a dst is removed from the fib tree, DST_OBSOLETE_DEAD will
3745 * be marked on it.
3746 * This will force stale_bundle() to fail on any xdst bundle with
3747 * this dst linked in it.
3748 */
3749 if (dst->obsolete < 0 && !stale_bundle(dst))
3750 return dst;
3751
3752 return NULL;
3753}
3754
3755static int stale_bundle(struct dst_entry *dst)
3756{
3757 return !xfrm_bundle_ok((struct xfrm_dst *)dst);
3758}
3759
3760void xfrm_dst_ifdown(struct dst_entry *dst, struct net_device *dev)
3761{
3762 while ((dst = xfrm_dst_child(dst)) && dst->xfrm && dst->dev == dev) {
3763 dst->dev = dev_net(dev)->loopback_dev;
3764 dev_hold(dst->dev);
3765 dev_put(dev);
3766 }
3767}
3768EXPORT_SYMBOL(xfrm_dst_ifdown);
3769
3770static void xfrm_link_failure(struct sk_buff *skb)
3771{
3772 /* Impossible. Such dst must be popped before reaches point of failure. */
3773}
3774
3775static void xfrm_negative_advice(struct sock *sk, struct dst_entry *dst)
3776{
3777 if (dst->obsolete)
3778 sk_dst_reset(sk);
3779}
3780
3781static void xfrm_init_pmtu(struct xfrm_dst **bundle, int nr)
3782{
3783 while (nr--) {
3784 struct xfrm_dst *xdst = bundle[nr];
3785 u32 pmtu, route_mtu_cached;
3786 struct dst_entry *dst;
3787
3788 dst = &xdst->u.dst;
3789 pmtu = dst_mtu(xfrm_dst_child(dst));
3790 xdst->child_mtu_cached = pmtu;
3791
3792 pmtu = xfrm_state_mtu(dst->xfrm, pmtu);
3793
3794 route_mtu_cached = dst_mtu(xdst->route);
3795 xdst->route_mtu_cached = route_mtu_cached;
3796
3797 if (pmtu > route_mtu_cached)
3798 pmtu = route_mtu_cached;
3799
3800 dst_metric_set(dst, RTAX_MTU, pmtu);
3801 }
3802}
3803
3804/* Check that the bundle accepts the flow and its components are
3805 * still valid.
3806 */
3807
3808static int xfrm_bundle_ok(struct xfrm_dst *first)
3809{
3810 struct xfrm_dst *bundle[XFRM_MAX_DEPTH];
3811 struct dst_entry *dst = &first->u.dst;
3812 struct xfrm_dst *xdst;
3813 int start_from, nr;
3814 u32 mtu;
3815
3816 if (!dst_check(xfrm_dst_path(dst), ((struct xfrm_dst *)dst)->path_cookie) ||
3817 (dst->dev && !netif_running(dst->dev)))
3818 return 0;
3819
3820 if (dst->flags & DST_XFRM_QUEUE)
3821 return 1;
3822
3823 start_from = nr = 0;
3824 do {
3825 struct xfrm_dst *xdst = (struct xfrm_dst *)dst;
3826
3827 if (dst->xfrm->km.state != XFRM_STATE_VALID)
3828 return 0;
3829 if (xdst->xfrm_genid != dst->xfrm->genid)
3830 return 0;
3831 if (xdst->num_pols > 0 &&
3832 xdst->policy_genid != atomic_read(&xdst->pols[0]->genid))
3833 return 0;
3834
3835 bundle[nr++] = xdst;
3836
3837 mtu = dst_mtu(xfrm_dst_child(dst));
3838 if (xdst->child_mtu_cached != mtu) {
3839 start_from = nr;
3840 xdst->child_mtu_cached = mtu;
3841 }
3842
3843 if (!dst_check(xdst->route, xdst->route_cookie))
3844 return 0;
3845 mtu = dst_mtu(xdst->route);
3846 if (xdst->route_mtu_cached != mtu) {
3847 start_from = nr;
3848 xdst->route_mtu_cached = mtu;
3849 }
3850
3851 dst = xfrm_dst_child(dst);
3852 } while (dst->xfrm);
3853
3854 if (likely(!start_from))
3855 return 1;
3856
3857 xdst = bundle[start_from - 1];
3858 mtu = xdst->child_mtu_cached;
3859 while (start_from--) {
3860 dst = &xdst->u.dst;
3861
3862 mtu = xfrm_state_mtu(dst->xfrm, mtu);
3863 if (mtu > xdst->route_mtu_cached)
3864 mtu = xdst->route_mtu_cached;
3865 dst_metric_set(dst, RTAX_MTU, mtu);
3866 if (!start_from)
3867 break;
3868
3869 xdst = bundle[start_from - 1];
3870 xdst->child_mtu_cached = mtu;
3871 }
3872
3873 return 1;
3874}
3875
3876static unsigned int xfrm_default_advmss(const struct dst_entry *dst)
3877{
3878 return dst_metric_advmss(xfrm_dst_path(dst));
3879}
3880
3881static unsigned int xfrm_mtu(const struct dst_entry *dst)
3882{
3883 unsigned int mtu = dst_metric_raw(dst, RTAX_MTU);
3884
3885 return mtu ? : dst_mtu(xfrm_dst_path(dst));
3886}
3887
3888static const void *xfrm_get_dst_nexthop(const struct dst_entry *dst,
3889 const void *daddr)
3890{
3891 while (dst->xfrm) {
3892 const struct xfrm_state *xfrm = dst->xfrm;
3893
3894 dst = xfrm_dst_child(dst);
3895
3896 if (xfrm->props.mode == XFRM_MODE_TRANSPORT)
3897 continue;
3898 if (xfrm->type->flags & XFRM_TYPE_REMOTE_COADDR)
3899 daddr = xfrm->coaddr;
3900 else if (!(xfrm->type->flags & XFRM_TYPE_LOCAL_COADDR))
3901 daddr = &xfrm->id.daddr;
3902 }
3903 return daddr;
3904}
3905
3906static struct neighbour *xfrm_neigh_lookup(const struct dst_entry *dst,
3907 struct sk_buff *skb,
3908 const void *daddr)
3909{
3910 const struct dst_entry *path = xfrm_dst_path(dst);
3911
3912 if (!skb)
3913 daddr = xfrm_get_dst_nexthop(dst, daddr);
3914 return path->ops->neigh_lookup(path, skb, daddr);
3915}
3916
3917static void xfrm_confirm_neigh(const struct dst_entry *dst, const void *daddr)
3918{
3919 const struct dst_entry *path = xfrm_dst_path(dst);
3920
3921 daddr = xfrm_get_dst_nexthop(dst, daddr);
3922 path->ops->confirm_neigh(path, daddr);
3923}
3924
3925int xfrm_policy_register_afinfo(const struct xfrm_policy_afinfo *afinfo, int family)
3926{
3927 int err = 0;
3928
3929 if (WARN_ON(family >= ARRAY_SIZE(xfrm_policy_afinfo)))
3930 return -EAFNOSUPPORT;
3931
3932 spin_lock(&xfrm_policy_afinfo_lock);
3933 if (unlikely(xfrm_policy_afinfo[family] != NULL))
3934 err = -EEXIST;
3935 else {
3936 struct dst_ops *dst_ops = afinfo->dst_ops;
3937 if (likely(dst_ops->kmem_cachep == NULL))
3938 dst_ops->kmem_cachep = xfrm_dst_cache;
3939 if (likely(dst_ops->check == NULL))
3940 dst_ops->check = xfrm_dst_check;
3941 if (likely(dst_ops->default_advmss == NULL))
3942 dst_ops->default_advmss = xfrm_default_advmss;
3943 if (likely(dst_ops->mtu == NULL))
3944 dst_ops->mtu = xfrm_mtu;
3945 if (likely(dst_ops->negative_advice == NULL))
3946 dst_ops->negative_advice = xfrm_negative_advice;
3947 if (likely(dst_ops->link_failure == NULL))
3948 dst_ops->link_failure = xfrm_link_failure;
3949 if (likely(dst_ops->neigh_lookup == NULL))
3950 dst_ops->neigh_lookup = xfrm_neigh_lookup;
3951 if (likely(!dst_ops->confirm_neigh))
3952 dst_ops->confirm_neigh = xfrm_confirm_neigh;
3953 rcu_assign_pointer(xfrm_policy_afinfo[family], afinfo);
3954 }
3955 spin_unlock(&xfrm_policy_afinfo_lock);
3956
3957 return err;
3958}
3959EXPORT_SYMBOL(xfrm_policy_register_afinfo);
3960
3961void xfrm_policy_unregister_afinfo(const struct xfrm_policy_afinfo *afinfo)
3962{
3963 struct dst_ops *dst_ops = afinfo->dst_ops;
3964 int i;
3965
3966 for (i = 0; i < ARRAY_SIZE(xfrm_policy_afinfo); i++) {
3967 if (xfrm_policy_afinfo[i] != afinfo)
3968 continue;
3969 RCU_INIT_POINTER(xfrm_policy_afinfo[i], NULL);
3970 break;
3971 }
3972
3973 synchronize_rcu();
3974
3975 dst_ops->kmem_cachep = NULL;
3976 dst_ops->check = NULL;
3977 dst_ops->negative_advice = NULL;
3978 dst_ops->link_failure = NULL;
3979}
3980EXPORT_SYMBOL(xfrm_policy_unregister_afinfo);
3981
3982void xfrm_if_register_cb(const struct xfrm_if_cb *ifcb)
3983{
3984 spin_lock(&xfrm_if_cb_lock);
3985 rcu_assign_pointer(xfrm_if_cb, ifcb);
3986 spin_unlock(&xfrm_if_cb_lock);
3987}
3988EXPORT_SYMBOL(xfrm_if_register_cb);
3989
3990void xfrm_if_unregister_cb(void)
3991{
3992 RCU_INIT_POINTER(xfrm_if_cb, NULL);
3993 synchronize_rcu();
3994}
3995EXPORT_SYMBOL(xfrm_if_unregister_cb);
3996
3997#ifdef CONFIG_XFRM_STATISTICS
3998static int __net_init xfrm_statistics_init(struct net *net)
3999{
4000 int rv;
4001 net->mib.xfrm_statistics = alloc_percpu(struct linux_xfrm_mib);
4002 if (!net->mib.xfrm_statistics)
4003 return -ENOMEM;
4004 rv = xfrm_proc_init(net);
4005 if (rv < 0)
4006 free_percpu(net->mib.xfrm_statistics);
4007 return rv;
4008}
4009
4010static void xfrm_statistics_fini(struct net *net)
4011{
4012 xfrm_proc_fini(net);
4013 free_percpu(net->mib.xfrm_statistics);
4014}
4015#else
4016static int __net_init xfrm_statistics_init(struct net *net)
4017{
4018 return 0;
4019}
4020
4021static void xfrm_statistics_fini(struct net *net)
4022{
4023}
4024#endif
4025
4026static int __net_init xfrm_policy_init(struct net *net)
4027{
4028 unsigned int hmask, sz;
4029 int dir, err;
4030
4031 if (net_eq(net, &init_net)) {
4032 xfrm_dst_cache = kmem_cache_create("xfrm_dst_cache",
4033 sizeof(struct xfrm_dst),
4034 0, SLAB_HWCACHE_ALIGN|SLAB_PANIC,
4035 NULL);
4036 err = rhashtable_init(&xfrm_policy_inexact_table,
4037 &xfrm_pol_inexact_params);
4038 BUG_ON(err);
4039 }
4040
4041 hmask = 8 - 1;
4042 sz = (hmask+1) * sizeof(struct hlist_head);
4043
4044 net->xfrm.policy_byidx = xfrm_hash_alloc(sz);
4045 if (!net->xfrm.policy_byidx)
4046 goto out_byidx;
4047 net->xfrm.policy_idx_hmask = hmask;
4048
4049 for (dir = 0; dir < XFRM_POLICY_MAX; dir++) {
4050 struct xfrm_policy_hash *htab;
4051
4052 net->xfrm.policy_count[dir] = 0;
4053 net->xfrm.policy_count[XFRM_POLICY_MAX + dir] = 0;
4054 INIT_HLIST_HEAD(&net->xfrm.policy_inexact[dir]);
4055
4056 htab = &net->xfrm.policy_bydst[dir];
4057 htab->table = xfrm_hash_alloc(sz);
4058 if (!htab->table)
4059 goto out_bydst;
4060 htab->hmask = hmask;
4061 htab->dbits4 = 32;
4062 htab->sbits4 = 32;
4063 htab->dbits6 = 128;
4064 htab->sbits6 = 128;
4065 }
4066 net->xfrm.policy_hthresh.lbits4 = 32;
4067 net->xfrm.policy_hthresh.rbits4 = 32;
4068 net->xfrm.policy_hthresh.lbits6 = 128;
4069 net->xfrm.policy_hthresh.rbits6 = 128;
4070
4071 seqlock_init(&net->xfrm.policy_hthresh.lock);
4072
4073 INIT_LIST_HEAD(&net->xfrm.policy_all);
4074 INIT_LIST_HEAD(&net->xfrm.inexact_bins);
4075 INIT_WORK(&net->xfrm.policy_hash_work, xfrm_hash_resize);
4076 INIT_WORK(&net->xfrm.policy_hthresh.work, xfrm_hash_rebuild);
4077 return 0;
4078
4079out_bydst:
4080 for (dir--; dir >= 0; dir--) {
4081 struct xfrm_policy_hash *htab;
4082
4083 htab = &net->xfrm.policy_bydst[dir];
4084 xfrm_hash_free(htab->table, sz);
4085 }
4086 xfrm_hash_free(net->xfrm.policy_byidx, sz);
4087out_byidx:
4088 return -ENOMEM;
4089}
4090
4091static void xfrm_policy_fini(struct net *net)
4092{
4093 struct xfrm_pol_inexact_bin *b, *t;
4094 unsigned int sz;
4095 int dir;
4096
4097 flush_work(&net->xfrm.policy_hash_work);
4098#ifdef CONFIG_XFRM_SUB_POLICY
4099 xfrm_policy_flush(net, XFRM_POLICY_TYPE_SUB, false);
4100#endif
4101 xfrm_policy_flush(net, XFRM_POLICY_TYPE_MAIN, false);
4102
4103 WARN_ON(!list_empty(&net->xfrm.policy_all));
4104
4105 for (dir = 0; dir < XFRM_POLICY_MAX; dir++) {
4106 struct xfrm_policy_hash *htab;
4107
4108 WARN_ON(!hlist_empty(&net->xfrm.policy_inexact[dir]));
4109
4110 htab = &net->xfrm.policy_bydst[dir];
4111 sz = (htab->hmask + 1) * sizeof(struct hlist_head);
4112 WARN_ON(!hlist_empty(htab->table));
4113 xfrm_hash_free(htab->table, sz);
4114 }
4115
4116 sz = (net->xfrm.policy_idx_hmask + 1) * sizeof(struct hlist_head);
4117 WARN_ON(!hlist_empty(net->xfrm.policy_byidx));
4118 xfrm_hash_free(net->xfrm.policy_byidx, sz);
4119
4120 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
4121 list_for_each_entry_safe(b, t, &net->xfrm.inexact_bins, inexact_bins)
4122 __xfrm_policy_inexact_prune_bin(b, true);
4123 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
4124}
4125
4126static int __net_init xfrm_net_init(struct net *net)
4127{
4128 int rv;
4129
4130 /* Initialize the per-net locks here */
4131 spin_lock_init(&net->xfrm.xfrm_state_lock);
4132 spin_lock_init(&net->xfrm.xfrm_policy_lock);
4133 mutex_init(&net->xfrm.xfrm_cfg_mutex);
4134
4135 rv = xfrm_statistics_init(net);
4136 if (rv < 0)
4137 goto out_statistics;
4138 rv = xfrm_state_init(net);
4139 if (rv < 0)
4140 goto out_state;
4141 rv = xfrm_policy_init(net);
4142 if (rv < 0)
4143 goto out_policy;
4144 rv = xfrm_sysctl_init(net);
4145 if (rv < 0)
4146 goto out_sysctl;
4147
4148 return 0;
4149
4150out_sysctl:
4151 xfrm_policy_fini(net);
4152out_policy:
4153 xfrm_state_fini(net);
4154out_state:
4155 xfrm_statistics_fini(net);
4156out_statistics:
4157 return rv;
4158}
4159
4160static void __net_exit xfrm_net_exit(struct net *net)
4161{
4162 xfrm_sysctl_fini(net);
4163 xfrm_policy_fini(net);
4164 xfrm_state_fini(net);
4165 xfrm_statistics_fini(net);
4166}
4167
4168static struct pernet_operations __net_initdata xfrm_net_ops = {
4169 .init = xfrm_net_init,
4170 .exit = xfrm_net_exit,
4171};
4172
4173void __init xfrm_init(void)
4174{
4175 register_pernet_subsys(&xfrm_net_ops);
4176 xfrm_dev_init();
4177 seqcount_init(&xfrm_policy_hash_generation);
4178 xfrm_input_init();
4179
4180 RCU_INIT_POINTER(xfrm_if_cb, NULL);
4181 synchronize_rcu();
4182}
4183
4184#ifdef CONFIG_AUDITSYSCALL
4185static void xfrm_audit_common_policyinfo(struct xfrm_policy *xp,
4186 struct audit_buffer *audit_buf)
4187{
4188 struct xfrm_sec_ctx *ctx = xp->security;
4189 struct xfrm_selector *sel = &xp->selector;
4190
4191 if (ctx)
4192 audit_log_format(audit_buf, " sec_alg=%u sec_doi=%u sec_obj=%s",
4193 ctx->ctx_alg, ctx->ctx_doi, ctx->ctx_str);
4194
4195 switch (sel->family) {
4196 case AF_INET:
4197 audit_log_format(audit_buf, " src=%pI4", &sel->saddr.a4);
4198 if (sel->prefixlen_s != 32)
4199 audit_log_format(audit_buf, " src_prefixlen=%d",
4200 sel->prefixlen_s);
4201 audit_log_format(audit_buf, " dst=%pI4", &sel->daddr.a4);
4202 if (sel->prefixlen_d != 32)
4203 audit_log_format(audit_buf, " dst_prefixlen=%d",
4204 sel->prefixlen_d);
4205 break;
4206 case AF_INET6:
4207 audit_log_format(audit_buf, " src=%pI6", sel->saddr.a6);
4208 if (sel->prefixlen_s != 128)
4209 audit_log_format(audit_buf, " src_prefixlen=%d",
4210 sel->prefixlen_s);
4211 audit_log_format(audit_buf, " dst=%pI6", sel->daddr.a6);
4212 if (sel->prefixlen_d != 128)
4213 audit_log_format(audit_buf, " dst_prefixlen=%d",
4214 sel->prefixlen_d);
4215 break;
4216 }
4217}
4218
4219void xfrm_audit_policy_add(struct xfrm_policy *xp, int result, bool task_valid)
4220{
4221 struct audit_buffer *audit_buf;
4222
4223 audit_buf = xfrm_audit_start("SPD-add");
4224 if (audit_buf == NULL)
4225 return;
4226 xfrm_audit_helper_usrinfo(task_valid, audit_buf);
4227 audit_log_format(audit_buf, " res=%u", result);
4228 xfrm_audit_common_policyinfo(xp, audit_buf);
4229 audit_log_end(audit_buf);
4230}
4231EXPORT_SYMBOL_GPL(xfrm_audit_policy_add);
4232
4233void xfrm_audit_policy_delete(struct xfrm_policy *xp, int result,
4234 bool task_valid)
4235{
4236 struct audit_buffer *audit_buf;
4237
4238 audit_buf = xfrm_audit_start("SPD-delete");
4239 if (audit_buf == NULL)
4240 return;
4241 xfrm_audit_helper_usrinfo(task_valid, audit_buf);
4242 audit_log_format(audit_buf, " res=%u", result);
4243 xfrm_audit_common_policyinfo(xp, audit_buf);
4244 audit_log_end(audit_buf);
4245}
4246EXPORT_SYMBOL_GPL(xfrm_audit_policy_delete);
4247#endif
4248
4249#ifdef CONFIG_XFRM_MIGRATE
4250static bool xfrm_migrate_selector_match(const struct xfrm_selector *sel_cmp,
4251 const struct xfrm_selector *sel_tgt)
4252{
4253 if (sel_cmp->proto == IPSEC_ULPROTO_ANY) {
4254 if (sel_tgt->family == sel_cmp->family &&
4255 xfrm_addr_equal(&sel_tgt->daddr, &sel_cmp->daddr,
4256 sel_cmp->family) &&
4257 xfrm_addr_equal(&sel_tgt->saddr, &sel_cmp->saddr,
4258 sel_cmp->family) &&
4259 sel_tgt->prefixlen_d == sel_cmp->prefixlen_d &&
4260 sel_tgt->prefixlen_s == sel_cmp->prefixlen_s) {
4261 return true;
4262 }
4263 } else {
4264 if (memcmp(sel_tgt, sel_cmp, sizeof(*sel_tgt)) == 0) {
4265 return true;
4266 }
4267 }
4268 return false;
4269}
4270
4271static struct xfrm_policy *xfrm_migrate_policy_find(const struct xfrm_selector *sel,
4272 u8 dir, u8 type, struct net *net, u32 if_id)
4273{
4274 struct xfrm_policy *pol, *ret = NULL;
4275 struct hlist_head *chain;
4276 u32 priority = ~0U;
4277
4278 spin_lock_bh(&net->xfrm.xfrm_policy_lock);
4279 chain = policy_hash_direct(net, &sel->daddr, &sel->saddr, sel->family, dir);
4280 hlist_for_each_entry(pol, chain, bydst) {
4281 if ((if_id == 0 || pol->if_id == if_id) &&
4282 xfrm_migrate_selector_match(sel, &pol->selector) &&
4283 pol->type == type) {
4284 ret = pol;
4285 priority = ret->priority;
4286 break;
4287 }
4288 }
4289 chain = &net->xfrm.policy_inexact[dir];
4290 hlist_for_each_entry(pol, chain, bydst_inexact_list) {
4291 if ((pol->priority >= priority) && ret)
4292 break;
4293
4294 if ((if_id == 0 || pol->if_id == if_id) &&
4295 xfrm_migrate_selector_match(sel, &pol->selector) &&
4296 pol->type == type) {
4297 ret = pol;
4298 break;
4299 }
4300 }
4301
4302 xfrm_pol_hold(ret);
4303
4304 spin_unlock_bh(&net->xfrm.xfrm_policy_lock);
4305
4306 return ret;
4307}
4308
4309static int migrate_tmpl_match(const struct xfrm_migrate *m, const struct xfrm_tmpl *t)
4310{
4311 int match = 0;
4312
4313 if (t->mode == m->mode && t->id.proto == m->proto &&
4314 (m->reqid == 0 || t->reqid == m->reqid)) {
4315 switch (t->mode) {
4316 case XFRM_MODE_TUNNEL:
4317 case XFRM_MODE_BEET:
4318 if (xfrm_addr_equal(&t->id.daddr, &m->old_daddr,
4319 m->old_family) &&
4320 xfrm_addr_equal(&t->saddr, &m->old_saddr,
4321 m->old_family)) {
4322 match = 1;
4323 }
4324 break;
4325 case XFRM_MODE_TRANSPORT:
4326 /* in case of transport mode, template does not store
4327 any IP addresses, hence we just compare mode and
4328 protocol */
4329 match = 1;
4330 break;
4331 default:
4332 break;
4333 }
4334 }
4335 return match;
4336}
4337
4338/* update endpoint address(es) of template(s) */
4339static int xfrm_policy_migrate(struct xfrm_policy *pol,
4340 struct xfrm_migrate *m, int num_migrate)
4341{
4342 struct xfrm_migrate *mp;
4343 int i, j, n = 0;
4344
4345 write_lock_bh(&pol->lock);
4346 if (unlikely(pol->walk.dead)) {
4347 /* target policy has been deleted */
4348 write_unlock_bh(&pol->lock);
4349 return -ENOENT;
4350 }
4351
4352 for (i = 0; i < pol->xfrm_nr; i++) {
4353 for (j = 0, mp = m; j < num_migrate; j++, mp++) {
4354 if (!migrate_tmpl_match(mp, &pol->xfrm_vec[i]))
4355 continue;
4356 n++;
4357 if (pol->xfrm_vec[i].mode != XFRM_MODE_TUNNEL &&
4358 pol->xfrm_vec[i].mode != XFRM_MODE_BEET)
4359 continue;
4360 /* update endpoints */
4361 memcpy(&pol->xfrm_vec[i].id.daddr, &mp->new_daddr,
4362 sizeof(pol->xfrm_vec[i].id.daddr));
4363 memcpy(&pol->xfrm_vec[i].saddr, &mp->new_saddr,
4364 sizeof(pol->xfrm_vec[i].saddr));
4365 pol->xfrm_vec[i].encap_family = mp->new_family;
4366 /* flush bundles */
4367 atomic_inc(&pol->genid);
4368 }
4369 }
4370
4371 write_unlock_bh(&pol->lock);
4372
4373 if (!n)
4374 return -ENODATA;
4375
4376 return 0;
4377}
4378
4379static int xfrm_migrate_check(const struct xfrm_migrate *m, int num_migrate)
4380{
4381 int i, j;
4382
4383 if (num_migrate < 1 || num_migrate > XFRM_MAX_DEPTH)
4384 return -EINVAL;
4385
4386 for (i = 0; i < num_migrate; i++) {
4387 if (xfrm_addr_any(&m[i].new_daddr, m[i].new_family) ||
4388 xfrm_addr_any(&m[i].new_saddr, m[i].new_family))
4389 return -EINVAL;
4390
4391 /* check if there is any duplicated entry */
4392 for (j = i + 1; j < num_migrate; j++) {
4393 if (!memcmp(&m[i].old_daddr, &m[j].old_daddr,
4394 sizeof(m[i].old_daddr)) &&
4395 !memcmp(&m[i].old_saddr, &m[j].old_saddr,
4396 sizeof(m[i].old_saddr)) &&
4397 m[i].proto == m[j].proto &&
4398 m[i].mode == m[j].mode &&
4399 m[i].reqid == m[j].reqid &&
4400 m[i].old_family == m[j].old_family)
4401 return -EINVAL;
4402 }
4403 }
4404
4405 return 0;
4406}
4407
4408int xfrm_migrate(const struct xfrm_selector *sel, u8 dir, u8 type,
4409 struct xfrm_migrate *m, int num_migrate,
4410 struct xfrm_kmaddress *k, struct net *net,
4411 struct xfrm_encap_tmpl *encap, u32 if_id)
4412{
4413 int i, err, nx_cur = 0, nx_new = 0;
4414 struct xfrm_policy *pol = NULL;
4415 struct xfrm_state *x, *xc;
4416 struct xfrm_state *x_cur[XFRM_MAX_DEPTH];
4417 struct xfrm_state *x_new[XFRM_MAX_DEPTH];
4418 struct xfrm_migrate *mp;
4419
4420 /* Stage 0 - sanity checks */
4421 if ((err = xfrm_migrate_check(m, num_migrate)) < 0)
4422 goto out;
4423
4424 if (dir >= XFRM_POLICY_MAX) {
4425 err = -EINVAL;
4426 goto out;
4427 }
4428
4429 /* Stage 1 - find policy */
4430 if ((pol = xfrm_migrate_policy_find(sel, dir, type, net, if_id)) == NULL) {
4431 err = -ENOENT;
4432 goto out;
4433 }
4434
4435 /* Stage 2 - find and update state(s) */
4436 for (i = 0, mp = m; i < num_migrate; i++, mp++) {
4437 if ((x = xfrm_migrate_state_find(mp, net, if_id))) {
4438 x_cur[nx_cur] = x;
4439 nx_cur++;
4440 xc = xfrm_state_migrate(x, mp, encap);
4441 if (xc) {
4442 x_new[nx_new] = xc;
4443 nx_new++;
4444 } else {
4445 err = -ENODATA;
4446 goto restore_state;
4447 }
4448 }
4449 }
4450
4451 /* Stage 3 - update policy */
4452 if ((err = xfrm_policy_migrate(pol, m, num_migrate)) < 0)
4453 goto restore_state;
4454
4455 /* Stage 4 - delete old state(s) */
4456 if (nx_cur) {
4457 xfrm_states_put(x_cur, nx_cur);
4458 xfrm_states_delete(x_cur, nx_cur);
4459 }
4460
4461 /* Stage 5 - announce */
4462 km_migrate(sel, dir, type, m, num_migrate, k, encap);
4463
4464 xfrm_pol_put(pol);
4465
4466 return 0;
4467out:
4468 return err;
4469
4470restore_state:
4471 if (pol)
4472 xfrm_pol_put(pol);
4473 if (nx_cur)
4474 xfrm_states_put(x_cur, nx_cur);
4475 if (nx_new)
4476 xfrm_states_delete(x_new, nx_new);
4477
4478 return err;
4479}
4480EXPORT_SYMBOL(xfrm_migrate);
4481#endif