6 * Kazunori MIYAZAWA @USAGI
7 * Kunihiro Ishiguro <kunihiro@ipinfusion.com>
9 * Kazunori MIYAZAWA @USAGI
11 * Split up af-specific portion
12 * Derek Atkins <derek@ihtfp.com> Add the post_input processor
17 #include <linux/config.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/module.h>
29 DECLARE_MUTEX(xfrm_cfg_sem
);
30 EXPORT_SYMBOL(xfrm_cfg_sem
);
32 static DEFINE_RWLOCK(xfrm_policy_lock
);
34 struct xfrm_policy
*xfrm_policy_list
[XFRM_POLICY_MAX
*2];
35 EXPORT_SYMBOL(xfrm_policy_list
);
37 static DEFINE_RWLOCK(xfrm_policy_afinfo_lock
);
38 static struct xfrm_policy_afinfo
*xfrm_policy_afinfo
[NPROTO
];
40 static kmem_cache_t
*xfrm_dst_cache
;
42 static struct work_struct xfrm_policy_gc_work
;
43 static struct list_head xfrm_policy_gc_list
=
44 LIST_HEAD_INIT(xfrm_policy_gc_list
);
45 static DEFINE_SPINLOCK(xfrm_policy_gc_lock
);
47 static struct xfrm_policy_afinfo
*xfrm_policy_get_afinfo(unsigned short family
);
48 static void xfrm_policy_put_afinfo(struct xfrm_policy_afinfo
*afinfo
);
50 int xfrm_register_type(struct xfrm_type
*type
, unsigned short family
)
52 struct xfrm_policy_afinfo
*afinfo
= xfrm_policy_get_afinfo(family
);
53 struct xfrm_type_map
*typemap
;
56 if (unlikely(afinfo
== NULL
))
58 typemap
= afinfo
->type_map
;
60 write_lock(&typemap
->lock
);
61 if (likely(typemap
->map
[type
->proto
] == NULL
))
62 typemap
->map
[type
->proto
] = type
;
65 write_unlock(&typemap
->lock
);
66 xfrm_policy_put_afinfo(afinfo
);
69 EXPORT_SYMBOL(xfrm_register_type
);
71 int xfrm_unregister_type(struct xfrm_type
*type
, unsigned short family
)
73 struct xfrm_policy_afinfo
*afinfo
= xfrm_policy_get_afinfo(family
);
74 struct xfrm_type_map
*typemap
;
77 if (unlikely(afinfo
== NULL
))
79 typemap
= afinfo
->type_map
;
81 write_lock(&typemap
->lock
);
82 if (unlikely(typemap
->map
[type
->proto
] != type
))
85 typemap
->map
[type
->proto
] = NULL
;
86 write_unlock(&typemap
->lock
);
87 xfrm_policy_put_afinfo(afinfo
);
90 EXPORT_SYMBOL(xfrm_unregister_type
);
92 struct xfrm_type
*xfrm_get_type(u8 proto
, unsigned short family
)
94 struct xfrm_policy_afinfo
*afinfo
;
95 struct xfrm_type_map
*typemap
;
96 struct xfrm_type
*type
;
97 int modload_attempted
= 0;
100 afinfo
= xfrm_policy_get_afinfo(family
);
101 if (unlikely(afinfo
== NULL
))
103 typemap
= afinfo
->type_map
;
105 read_lock(&typemap
->lock
);
106 type
= typemap
->map
[proto
];
107 if (unlikely(type
&& !try_module_get(type
->owner
)))
109 read_unlock(&typemap
->lock
);
110 if (!type
&& !modload_attempted
) {
111 xfrm_policy_put_afinfo(afinfo
);
112 request_module("xfrm-type-%d-%d",
113 (int) family
, (int) proto
);
114 modload_attempted
= 1;
118 xfrm_policy_put_afinfo(afinfo
);
121 EXPORT_SYMBOL(xfrm_get_type
);
123 int xfrm_dst_lookup(struct xfrm_dst
**dst
, struct flowi
*fl
,
124 unsigned short family
)
126 struct xfrm_policy_afinfo
*afinfo
= xfrm_policy_get_afinfo(family
);
129 if (unlikely(afinfo
== NULL
))
130 return -EAFNOSUPPORT
;
132 if (likely(afinfo
->dst_lookup
!= NULL
))
133 err
= afinfo
->dst_lookup(dst
, fl
);
136 xfrm_policy_put_afinfo(afinfo
);
139 EXPORT_SYMBOL(xfrm_dst_lookup
);
141 void xfrm_put_type(struct xfrm_type
*type
)
143 module_put(type
->owner
);
146 static inline unsigned long make_jiffies(long secs
)
148 if (secs
>= (MAX_SCHEDULE_TIMEOUT
-1)/HZ
)
149 return MAX_SCHEDULE_TIMEOUT
-1;
154 static void xfrm_policy_timer(unsigned long data
)
156 struct xfrm_policy
*xp
= (struct xfrm_policy
*)data
;
157 unsigned long now
= (unsigned long)xtime
.tv_sec
;
158 long next
= LONG_MAX
;
162 read_lock(&xp
->lock
);
169 if (xp
->lft
.hard_add_expires_seconds
) {
170 long tmo
= xp
->lft
.hard_add_expires_seconds
+
171 xp
->curlft
.add_time
- now
;
177 if (xp
->lft
.hard_use_expires_seconds
) {
178 long tmo
= xp
->lft
.hard_use_expires_seconds
+
179 (xp
->curlft
.use_time
? : xp
->curlft
.add_time
) - now
;
185 if (xp
->lft
.soft_add_expires_seconds
) {
186 long tmo
= xp
->lft
.soft_add_expires_seconds
+
187 xp
->curlft
.add_time
- now
;
190 tmo
= XFRM_KM_TIMEOUT
;
195 if (xp
->lft
.soft_use_expires_seconds
) {
196 long tmo
= xp
->lft
.soft_use_expires_seconds
+
197 (xp
->curlft
.use_time
? : xp
->curlft
.add_time
) - now
;
200 tmo
= XFRM_KM_TIMEOUT
;
207 km_policy_expired(xp
, dir
, 0);
208 if (next
!= LONG_MAX
&&
209 !mod_timer(&xp
->timer
, jiffies
+ make_jiffies(next
)))
213 read_unlock(&xp
->lock
);
218 read_unlock(&xp
->lock
);
219 km_policy_expired(xp
, dir
, 1);
220 xfrm_policy_delete(xp
, dir
);
225 /* Allocate xfrm_policy. Not used here, it is supposed to be used by pfkeyv2
229 struct xfrm_policy
*xfrm_policy_alloc(int gfp
)
231 struct xfrm_policy
*policy
;
233 policy
= kmalloc(sizeof(struct xfrm_policy
), gfp
);
236 memset(policy
, 0, sizeof(struct xfrm_policy
));
237 atomic_set(&policy
->refcnt
, 1);
238 rwlock_init(&policy
->lock
);
239 init_timer(&policy
->timer
);
240 policy
->timer
.data
= (unsigned long)policy
;
241 policy
->timer
.function
= xfrm_policy_timer
;
245 EXPORT_SYMBOL(xfrm_policy_alloc
);
247 /* Destroy xfrm_policy: descendant resources must be released to this moment. */
249 void __xfrm_policy_destroy(struct xfrm_policy
*policy
)
257 if (del_timer(&policy
->timer
))
262 EXPORT_SYMBOL(__xfrm_policy_destroy
);
264 static void xfrm_policy_gc_kill(struct xfrm_policy
*policy
)
266 struct dst_entry
*dst
;
268 while ((dst
= policy
->bundles
) != NULL
) {
269 policy
->bundles
= dst
->next
;
273 if (del_timer(&policy
->timer
))
274 atomic_dec(&policy
->refcnt
);
276 if (atomic_read(&policy
->refcnt
) > 1)
279 xfrm_pol_put(policy
);
282 static void xfrm_policy_gc_task(void *data
)
284 struct xfrm_policy
*policy
;
285 struct list_head
*entry
, *tmp
;
286 struct list_head gc_list
= LIST_HEAD_INIT(gc_list
);
288 spin_lock_bh(&xfrm_policy_gc_lock
);
289 list_splice_init(&xfrm_policy_gc_list
, &gc_list
);
290 spin_unlock_bh(&xfrm_policy_gc_lock
);
292 list_for_each_safe(entry
, tmp
, &gc_list
) {
293 policy
= list_entry(entry
, struct xfrm_policy
, list
);
294 xfrm_policy_gc_kill(policy
);
298 /* Rule must be locked. Release descentant resources, announce
299 * entry dead. The rule must be unlinked from lists to the moment.
302 static void xfrm_policy_kill(struct xfrm_policy
*policy
)
306 write_lock_bh(&policy
->lock
);
309 write_unlock_bh(&policy
->lock
);
311 if (unlikely(dead
)) {
316 spin_lock(&xfrm_policy_gc_lock
);
317 list_add(&policy
->list
, &xfrm_policy_gc_list
);
318 spin_unlock(&xfrm_policy_gc_lock
);
320 schedule_work(&xfrm_policy_gc_work
);
323 /* Generate new index... KAME seems to generate them ordered by cost
324 * of an absolute inpredictability of ordering of rules. This will not pass. */
325 static u32
xfrm_gen_index(int dir
)
328 struct xfrm_policy
*p
;
329 static u32 idx_generator
;
332 idx
= (idx_generator
| dir
);
336 for (p
= xfrm_policy_list
[dir
]; p
; p
= p
->next
) {
345 int xfrm_policy_insert(int dir
, struct xfrm_policy
*policy
, int excl
)
347 struct xfrm_policy
*pol
, **p
;
348 struct xfrm_policy
*delpol
= NULL
;
349 struct xfrm_policy
**newpos
= NULL
;
351 write_lock_bh(&xfrm_policy_lock
);
352 for (p
= &xfrm_policy_list
[dir
]; (pol
=*p
)!=NULL
;) {
353 if (!delpol
&& memcmp(&policy
->selector
, &pol
->selector
, sizeof(pol
->selector
)) == 0) {
355 write_unlock_bh(&xfrm_policy_lock
);
360 if (policy
->priority
> pol
->priority
)
362 } else if (policy
->priority
>= pol
->priority
) {
374 xfrm_pol_hold(policy
);
377 atomic_inc(&flow_cache_genid
);
378 policy
->index
= delpol
? delpol
->index
: xfrm_gen_index(dir
);
379 policy
->curlft
.add_time
= (unsigned long)xtime
.tv_sec
;
380 policy
->curlft
.use_time
= 0;
381 if (!mod_timer(&policy
->timer
, jiffies
+ HZ
))
382 xfrm_pol_hold(policy
);
383 write_unlock_bh(&xfrm_policy_lock
);
386 xfrm_policy_kill(delpol
);
390 EXPORT_SYMBOL(xfrm_policy_insert
);
392 struct xfrm_policy
*xfrm_policy_bysel(int dir
, struct xfrm_selector
*sel
,
395 struct xfrm_policy
*pol
, **p
;
397 write_lock_bh(&xfrm_policy_lock
);
398 for (p
= &xfrm_policy_list
[dir
]; (pol
=*p
)!=NULL
; p
= &pol
->next
) {
399 if (memcmp(sel
, &pol
->selector
, sizeof(*sel
)) == 0) {
406 write_unlock_bh(&xfrm_policy_lock
);
409 atomic_inc(&flow_cache_genid
);
410 xfrm_policy_kill(pol
);
414 EXPORT_SYMBOL(xfrm_policy_bysel
);
416 struct xfrm_policy
*xfrm_policy_byid(int dir
, u32 id
, int delete)
418 struct xfrm_policy
*pol
, **p
;
420 write_lock_bh(&xfrm_policy_lock
);
421 for (p
= &xfrm_policy_list
[id
& 7]; (pol
=*p
)!=NULL
; p
= &pol
->next
) {
422 if (pol
->index
== id
) {
429 write_unlock_bh(&xfrm_policy_lock
);
432 atomic_inc(&flow_cache_genid
);
433 xfrm_policy_kill(pol
);
437 EXPORT_SYMBOL(xfrm_policy_byid
);
439 void xfrm_policy_flush(void)
441 struct xfrm_policy
*xp
;
444 write_lock_bh(&xfrm_policy_lock
);
445 for (dir
= 0; dir
< XFRM_POLICY_MAX
; dir
++) {
446 while ((xp
= xfrm_policy_list
[dir
]) != NULL
) {
447 xfrm_policy_list
[dir
] = xp
->next
;
448 write_unlock_bh(&xfrm_policy_lock
);
450 xfrm_policy_kill(xp
);
452 write_lock_bh(&xfrm_policy_lock
);
455 atomic_inc(&flow_cache_genid
);
456 write_unlock_bh(&xfrm_policy_lock
);
458 EXPORT_SYMBOL(xfrm_policy_flush
);
460 int xfrm_policy_walk(int (*func
)(struct xfrm_policy
*, int, int, void*),
463 struct xfrm_policy
*xp
;
468 read_lock_bh(&xfrm_policy_lock
);
469 for (dir
= 0; dir
< 2*XFRM_POLICY_MAX
; dir
++) {
470 for (xp
= xfrm_policy_list
[dir
]; xp
; xp
= xp
->next
)
479 for (dir
= 0; dir
< 2*XFRM_POLICY_MAX
; dir
++) {
480 for (xp
= xfrm_policy_list
[dir
]; xp
; xp
= xp
->next
) {
481 error
= func(xp
, dir
%XFRM_POLICY_MAX
, --count
, data
);
488 read_unlock_bh(&xfrm_policy_lock
);
491 EXPORT_SYMBOL(xfrm_policy_walk
);
493 /* Find policy to apply to this flow. */
495 static void xfrm_policy_lookup(struct flowi
*fl
, u16 family
, u8 dir
,
496 void **objp
, atomic_t
**obj_refp
)
498 struct xfrm_policy
*pol
;
500 read_lock_bh(&xfrm_policy_lock
);
501 for (pol
= xfrm_policy_list
[dir
]; pol
; pol
= pol
->next
) {
502 struct xfrm_selector
*sel
= &pol
->selector
;
505 if (pol
->family
!= family
)
508 match
= xfrm_selector_match(sel
, fl
, family
);
514 read_unlock_bh(&xfrm_policy_lock
);
515 if ((*objp
= (void *) pol
) != NULL
)
516 *obj_refp
= &pol
->refcnt
;
519 static struct xfrm_policy
*xfrm_sk_policy_lookup(struct sock
*sk
, int dir
, struct flowi
*fl
)
521 struct xfrm_policy
*pol
;
523 read_lock_bh(&xfrm_policy_lock
);
524 if ((pol
= sk
->sk_policy
[dir
]) != NULL
) {
525 int match
= xfrm_selector_match(&pol
->selector
, fl
,
532 read_unlock_bh(&xfrm_policy_lock
);
536 static void __xfrm_policy_link(struct xfrm_policy
*pol
, int dir
)
538 pol
->next
= xfrm_policy_list
[dir
];
539 xfrm_policy_list
[dir
] = pol
;
543 static struct xfrm_policy
*__xfrm_policy_unlink(struct xfrm_policy
*pol
,
546 struct xfrm_policy
**polp
;
548 for (polp
= &xfrm_policy_list
[dir
];
549 *polp
!= NULL
; polp
= &(*polp
)->next
) {
558 void xfrm_policy_delete(struct xfrm_policy
*pol
, int dir
)
560 write_lock_bh(&xfrm_policy_lock
);
561 pol
= __xfrm_policy_unlink(pol
, dir
);
562 write_unlock_bh(&xfrm_policy_lock
);
564 if (dir
< XFRM_POLICY_MAX
)
565 atomic_inc(&flow_cache_genid
);
566 xfrm_policy_kill(pol
);
570 int xfrm_sk_policy_insert(struct sock
*sk
, int dir
, struct xfrm_policy
*pol
)
572 struct xfrm_policy
*old_pol
;
574 write_lock_bh(&xfrm_policy_lock
);
575 old_pol
= sk
->sk_policy
[dir
];
576 sk
->sk_policy
[dir
] = pol
;
578 pol
->curlft
.add_time
= (unsigned long)xtime
.tv_sec
;
579 pol
->index
= xfrm_gen_index(XFRM_POLICY_MAX
+dir
);
580 __xfrm_policy_link(pol
, XFRM_POLICY_MAX
+dir
);
583 __xfrm_policy_unlink(old_pol
, XFRM_POLICY_MAX
+dir
);
584 write_unlock_bh(&xfrm_policy_lock
);
587 xfrm_policy_kill(old_pol
);
592 static struct xfrm_policy
*clone_policy(struct xfrm_policy
*old
, int dir
)
594 struct xfrm_policy
*newp
= xfrm_policy_alloc(GFP_ATOMIC
);
597 newp
->selector
= old
->selector
;
598 newp
->lft
= old
->lft
;
599 newp
->curlft
= old
->curlft
;
600 newp
->action
= old
->action
;
601 newp
->flags
= old
->flags
;
602 newp
->xfrm_nr
= old
->xfrm_nr
;
603 newp
->index
= old
->index
;
604 memcpy(newp
->xfrm_vec
, old
->xfrm_vec
,
605 newp
->xfrm_nr
*sizeof(struct xfrm_tmpl
));
606 write_lock_bh(&xfrm_policy_lock
);
607 __xfrm_policy_link(newp
, XFRM_POLICY_MAX
+dir
);
608 write_unlock_bh(&xfrm_policy_lock
);
614 int __xfrm_sk_clone_policy(struct sock
*sk
)
616 struct xfrm_policy
*p0
= sk
->sk_policy
[0],
617 *p1
= sk
->sk_policy
[1];
619 sk
->sk_policy
[0] = sk
->sk_policy
[1] = NULL
;
620 if (p0
&& (sk
->sk_policy
[0] = clone_policy(p0
, 0)) == NULL
)
622 if (p1
&& (sk
->sk_policy
[1] = clone_policy(p1
, 1)) == NULL
)
627 /* Resolve list of templates for the flow, given policy. */
630 xfrm_tmpl_resolve(struct xfrm_policy
*policy
, struct flowi
*fl
,
631 struct xfrm_state
**xfrm
,
632 unsigned short family
)
636 xfrm_address_t
*daddr
= xfrm_flowi_daddr(fl
, family
);
637 xfrm_address_t
*saddr
= xfrm_flowi_saddr(fl
, family
);
639 for (nx
=0, i
= 0; i
< policy
->xfrm_nr
; i
++) {
640 struct xfrm_state
*x
;
641 xfrm_address_t
*remote
= daddr
;
642 xfrm_address_t
*local
= saddr
;
643 struct xfrm_tmpl
*tmpl
= &policy
->xfrm_vec
[i
];
646 remote
= &tmpl
->id
.daddr
;
647 local
= &tmpl
->saddr
;
650 x
= xfrm_state_find(remote
, local
, fl
, tmpl
, policy
, &error
, family
);
652 if (x
&& x
->km
.state
== XFRM_STATE_VALID
) {
659 error
= (x
->km
.state
== XFRM_STATE_ERROR
?
670 for (nx
--; nx
>=0; nx
--)
671 xfrm_state_put(xfrm
[nx
]);
675 /* Check that the bundle accepts the flow and its components are
679 static struct dst_entry
*
680 xfrm_find_bundle(struct flowi
*fl
, struct xfrm_policy
*policy
, unsigned short family
)
683 struct xfrm_policy_afinfo
*afinfo
= xfrm_policy_get_afinfo(family
);
684 if (unlikely(afinfo
== NULL
))
685 return ERR_PTR(-EINVAL
);
686 x
= afinfo
->find_bundle(fl
, policy
);
687 xfrm_policy_put_afinfo(afinfo
);
691 /* Allocate chain of dst_entry's, attach known xfrm's, calculate
692 * all the metrics... Shortly, bundle a bundle.
696 xfrm_bundle_create(struct xfrm_policy
*policy
, struct xfrm_state
**xfrm
, int nx
,
697 struct flowi
*fl
, struct dst_entry
**dst_p
,
698 unsigned short family
)
701 struct xfrm_policy_afinfo
*afinfo
= xfrm_policy_get_afinfo(family
);
702 if (unlikely(afinfo
== NULL
))
704 err
= afinfo
->bundle_create(policy
, xfrm
, nx
, fl
, dst_p
);
705 xfrm_policy_put_afinfo(afinfo
);
709 static inline int policy_to_flow_dir(int dir
)
711 if (XFRM_POLICY_IN
== FLOW_DIR_IN
&&
712 XFRM_POLICY_OUT
== FLOW_DIR_OUT
&&
713 XFRM_POLICY_FWD
== FLOW_DIR_FWD
)
719 case XFRM_POLICY_OUT
:
721 case XFRM_POLICY_FWD
:
726 static int stale_bundle(struct dst_entry
*dst
);
728 /* Main function: finds/creates a bundle for given flow.
730 * At the moment we eat a raw IP route. Mostly to speed up lookups
731 * on interfaces with disabled IPsec.
733 int xfrm_lookup(struct dst_entry
**dst_p
, struct flowi
*fl
,
734 struct sock
*sk
, int flags
)
736 struct xfrm_policy
*policy
;
737 struct xfrm_state
*xfrm
[XFRM_MAX_DEPTH
];
738 struct dst_entry
*dst
, *dst_orig
= *dst_p
;
742 u16 family
= dst_orig
->ops
->family
;
744 genid
= atomic_read(&flow_cache_genid
);
746 if (sk
&& sk
->sk_policy
[1])
747 policy
= xfrm_sk_policy_lookup(sk
, XFRM_POLICY_OUT
, fl
);
750 /* To accelerate a bit... */
751 if ((dst_orig
->flags
& DST_NOXFRM
) || !xfrm_policy_list
[XFRM_POLICY_OUT
])
754 policy
= flow_cache_lookup(fl
, family
,
755 policy_to_flow_dir(XFRM_POLICY_OUT
),
762 policy
->curlft
.use_time
= (unsigned long)xtime
.tv_sec
;
764 switch (policy
->action
) {
765 case XFRM_POLICY_BLOCK
:
766 /* Prohibit the flow */
767 xfrm_pol_put(policy
);
770 case XFRM_POLICY_ALLOW
:
771 if (policy
->xfrm_nr
== 0) {
772 /* Flow passes not transformed. */
773 xfrm_pol_put(policy
);
777 /* Try to find matching bundle.
779 * LATER: help from flow cache. It is optional, this
780 * is required only for output policy.
782 dst
= xfrm_find_bundle(fl
, policy
, family
);
784 xfrm_pol_put(policy
);
791 nx
= xfrm_tmpl_resolve(policy
, fl
, xfrm
, family
);
793 if (unlikely(nx
<0)) {
795 if (err
== -EAGAIN
&& flags
) {
796 DECLARE_WAITQUEUE(wait
, current
);
798 add_wait_queue(&km_waitq
, &wait
);
799 set_current_state(TASK_INTERRUPTIBLE
);
801 set_current_state(TASK_RUNNING
);
802 remove_wait_queue(&km_waitq
, &wait
);
804 nx
= xfrm_tmpl_resolve(policy
, fl
, xfrm
, family
);
806 if (nx
== -EAGAIN
&& signal_pending(current
)) {
811 genid
!= atomic_read(&flow_cache_genid
)) {
812 xfrm_pol_put(policy
);
821 /* Flow passes not transformed. */
822 xfrm_pol_put(policy
);
827 err
= xfrm_bundle_create(policy
, xfrm
, nx
, fl
, &dst
, family
);
832 xfrm_state_put(xfrm
[i
]);
836 write_lock_bh(&policy
->lock
);
837 if (unlikely(policy
->dead
|| stale_bundle(dst
))) {
838 /* Wow! While we worked on resolving, this
839 * policy has gone. Retry. It is not paranoia,
840 * we just cannot enlist new bundle to dead object.
841 * We can't enlist stable bundles either.
843 write_unlock_bh(&policy
->lock
);
845 xfrm_pol_put(policy
);
850 dst
->next
= policy
->bundles
;
851 policy
->bundles
= dst
;
853 write_unlock_bh(&policy
->lock
);
856 dst_release(dst_orig
);
857 xfrm_pol_put(policy
);
861 dst_release(dst_orig
);
862 xfrm_pol_put(policy
);
866 EXPORT_SYMBOL(xfrm_lookup
);
868 /* When skb is transformed back to its "native" form, we have to
869 * check policy restrictions. At the moment we make this in maximally
870 * stupid way. Shame on me. :-) Of course, connected sockets must
871 * have policy cached at them.
875 xfrm_state_ok(struct xfrm_tmpl
*tmpl
, struct xfrm_state
*x
,
876 unsigned short family
)
878 if (xfrm_state_kern(x
))
879 return tmpl
->optional
&& !xfrm_state_addr_cmp(tmpl
, x
, family
);
880 return x
->id
.proto
== tmpl
->id
.proto
&&
881 (x
->id
.spi
== tmpl
->id
.spi
|| !tmpl
->id
.spi
) &&
882 (x
->props
.reqid
== tmpl
->reqid
|| !tmpl
->reqid
) &&
883 x
->props
.mode
== tmpl
->mode
&&
884 (tmpl
->aalgos
& (1<<x
->props
.aalgo
)) &&
885 !(x
->props
.mode
&& xfrm_state_addr_cmp(tmpl
, x
, family
));
889 xfrm_policy_ok(struct xfrm_tmpl
*tmpl
, struct sec_path
*sp
, int start
,
890 unsigned short family
)
894 if (tmpl
->optional
) {
899 for (; idx
< sp
->len
; idx
++) {
900 if (xfrm_state_ok(tmpl
, sp
->x
[idx
].xvec
, family
))
902 if (sp
->x
[idx
].xvec
->props
.mode
)
909 _decode_session(struct sk_buff
*skb
, struct flowi
*fl
, unsigned short family
)
911 struct xfrm_policy_afinfo
*afinfo
= xfrm_policy_get_afinfo(family
);
913 if (unlikely(afinfo
== NULL
))
914 return -EAFNOSUPPORT
;
916 afinfo
->decode_session(skb
, fl
);
917 xfrm_policy_put_afinfo(afinfo
);
921 static inline int secpath_has_tunnel(struct sec_path
*sp
, int k
)
923 for (; k
< sp
->len
; k
++) {
924 if (sp
->x
[k
].xvec
->props
.mode
)
931 int __xfrm_policy_check(struct sock
*sk
, int dir
, struct sk_buff
*skb
,
932 unsigned short family
)
934 struct xfrm_policy
*pol
;
937 if (_decode_session(skb
, &fl
, family
) < 0)
940 /* First, check used SA against their selectors. */
944 for (i
=skb
->sp
->len
-1; i
>=0; i
--) {
945 struct sec_decap_state
*xvec
= &(skb
->sp
->x
[i
]);
946 if (!xfrm_selector_match(&xvec
->xvec
->sel
, &fl
, family
))
949 /* If there is a post_input processor, try running it */
950 if (xvec
->xvec
->type
->post_input
&&
951 (xvec
->xvec
->type
->post_input
)(xvec
->xvec
,
959 if (sk
&& sk
->sk_policy
[dir
])
960 pol
= xfrm_sk_policy_lookup(sk
, dir
, &fl
);
963 pol
= flow_cache_lookup(&fl
, family
,
964 policy_to_flow_dir(dir
),
968 return !skb
->sp
|| !secpath_has_tunnel(skb
->sp
, 0);
970 pol
->curlft
.use_time
= (unsigned long)xtime
.tv_sec
;
972 if (pol
->action
== XFRM_POLICY_ALLOW
) {
974 static struct sec_path dummy
;
977 if ((sp
= skb
->sp
) == NULL
)
980 /* For each tunnel xfrm, find the first matching tmpl.
981 * For each tmpl before that, find corresponding xfrm.
982 * Order is _important_. Later we will implement
983 * some barriers, but at the moment barriers
984 * are implied between each two transformations.
986 for (i
= pol
->xfrm_nr
-1, k
= 0; i
>= 0; i
--) {
987 k
= xfrm_policy_ok(pol
->xfrm_vec
+i
, sp
, k
, family
);
992 if (secpath_has_tunnel(sp
, k
))
1003 EXPORT_SYMBOL(__xfrm_policy_check
);
1005 int __xfrm_route_forward(struct sk_buff
*skb
, unsigned short family
)
1009 if (_decode_session(skb
, &fl
, family
) < 0)
1012 return xfrm_lookup(&skb
->dst
, &fl
, NULL
, 0) == 0;
1014 EXPORT_SYMBOL(__xfrm_route_forward
);
1016 /* Optimize later using cookies and generation ids. */
1018 static struct dst_entry
*xfrm_dst_check(struct dst_entry
*dst
, u32 cookie
)
1020 if (!stale_bundle(dst
))
1026 static int stale_bundle(struct dst_entry
*dst
)
1028 return !xfrm_bundle_ok((struct xfrm_dst
*)dst
, NULL
, AF_UNSPEC
);
1031 void xfrm_dst_ifdown(struct dst_entry
*dst
, struct net_device
*dev
)
1033 while ((dst
= dst
->child
) && dst
->xfrm
&& dst
->dev
== dev
) {
1034 dst
->dev
= &loopback_dev
;
1035 dev_hold(&loopback_dev
);
1039 EXPORT_SYMBOL(xfrm_dst_ifdown
);
1041 static void xfrm_link_failure(struct sk_buff
*skb
)
1043 /* Impossible. Such dst must be popped before reaches point of failure. */
1047 static struct dst_entry
*xfrm_negative_advice(struct dst_entry
*dst
)
1050 if (dst
->obsolete
) {
1058 static void xfrm_prune_bundles(int (*func
)(struct dst_entry
*))
1061 struct xfrm_policy
*pol
;
1062 struct dst_entry
*dst
, **dstp
, *gc_list
= NULL
;
1064 read_lock_bh(&xfrm_policy_lock
);
1065 for (i
=0; i
<2*XFRM_POLICY_MAX
; i
++) {
1066 for (pol
= xfrm_policy_list
[i
]; pol
; pol
= pol
->next
) {
1067 write_lock(&pol
->lock
);
1068 dstp
= &pol
->bundles
;
1069 while ((dst
=*dstp
) != NULL
) {
1072 dst
->next
= gc_list
;
1078 write_unlock(&pol
->lock
);
1081 read_unlock_bh(&xfrm_policy_lock
);
1085 gc_list
= dst
->next
;
1090 static int unused_bundle(struct dst_entry
*dst
)
1092 return !atomic_read(&dst
->__refcnt
);
1095 static void __xfrm_garbage_collect(void)
1097 xfrm_prune_bundles(unused_bundle
);
1100 int xfrm_flush_bundles(void)
1102 xfrm_prune_bundles(stale_bundle
);
1106 void xfrm_init_pmtu(struct dst_entry
*dst
)
1109 struct xfrm_dst
*xdst
= (struct xfrm_dst
*)dst
;
1110 u32 pmtu
, route_mtu_cached
;
1112 pmtu
= dst_mtu(dst
->child
);
1113 xdst
->child_mtu_cached
= pmtu
;
1115 pmtu
= xfrm_state_mtu(dst
->xfrm
, pmtu
);
1117 route_mtu_cached
= dst_mtu(xdst
->route
);
1118 xdst
->route_mtu_cached
= route_mtu_cached
;
1120 if (pmtu
> route_mtu_cached
)
1121 pmtu
= route_mtu_cached
;
1123 dst
->metrics
[RTAX_MTU
-1] = pmtu
;
1124 } while ((dst
= dst
->next
));
1127 EXPORT_SYMBOL(xfrm_init_pmtu
);
1129 /* Check that the bundle accepts the flow and its components are
1133 int xfrm_bundle_ok(struct xfrm_dst
*first
, struct flowi
*fl
, int family
)
1135 struct dst_entry
*dst
= &first
->u
.dst
;
1136 struct xfrm_dst
*last
;
1139 if (!dst_check(dst
->path
, 0) ||
1140 (dst
->dev
&& !netif_running(dst
->dev
)))
1146 struct xfrm_dst
*xdst
= (struct xfrm_dst
*)dst
;
1148 if (fl
&& !xfrm_selector_match(&dst
->xfrm
->sel
, fl
, family
))
1150 if (dst
->xfrm
->km
.state
!= XFRM_STATE_VALID
)
1153 mtu
= dst_mtu(dst
->child
);
1154 if (xdst
->child_mtu_cached
!= mtu
) {
1156 xdst
->child_mtu_cached
= mtu
;
1159 if (!dst_check(xdst
->route
, 0))
1161 mtu
= dst_mtu(xdst
->route
);
1162 if (xdst
->route_mtu_cached
!= mtu
) {
1164 xdst
->route_mtu_cached
= mtu
;
1168 } while (dst
->xfrm
);
1173 mtu
= last
->child_mtu_cached
;
1177 mtu
= xfrm_state_mtu(dst
->xfrm
, mtu
);
1178 if (mtu
> last
->route_mtu_cached
)
1179 mtu
= last
->route_mtu_cached
;
1180 dst
->metrics
[RTAX_MTU
-1] = mtu
;
1185 last
= last
->u
.next
;
1186 last
->child_mtu_cached
= mtu
;
1192 EXPORT_SYMBOL(xfrm_bundle_ok
);
1194 /* Well... that's _TASK_. We need to scan through transformation
1195 * list and figure out what mss tcp should generate in order to
1196 * final datagram fit to mtu. Mama mia... :-)
1198 * Apparently, some easy way exists, but we used to choose the most
1199 * bizarre ones. :-) So, raising Kalashnikov... tra-ta-ta.
1201 * Consider this function as something like dark humour. :-)
1203 static int xfrm_get_mss(struct dst_entry
*dst
, u32 mtu
)
1205 int res
= mtu
- dst
->header_len
;
1208 struct dst_entry
*d
= dst
;
1212 struct xfrm_state
*x
= d
->xfrm
;
1214 spin_lock_bh(&x
->lock
);
1215 if (x
->km
.state
== XFRM_STATE_VALID
&&
1216 x
->type
&& x
->type
->get_max_size
)
1217 m
= x
->type
->get_max_size(d
->xfrm
, m
);
1219 m
+= x
->props
.header_len
;
1220 spin_unlock_bh(&x
->lock
);
1222 } while ((d
= d
->child
) != NULL
);
1231 return res
+ dst
->header_len
;
1234 int xfrm_policy_register_afinfo(struct xfrm_policy_afinfo
*afinfo
)
1237 if (unlikely(afinfo
== NULL
))
1239 if (unlikely(afinfo
->family
>= NPROTO
))
1240 return -EAFNOSUPPORT
;
1241 write_lock(&xfrm_policy_afinfo_lock
);
1242 if (unlikely(xfrm_policy_afinfo
[afinfo
->family
] != NULL
))
1245 struct dst_ops
*dst_ops
= afinfo
->dst_ops
;
1246 if (likely(dst_ops
->kmem_cachep
== NULL
))
1247 dst_ops
->kmem_cachep
= xfrm_dst_cache
;
1248 if (likely(dst_ops
->check
== NULL
))
1249 dst_ops
->check
= xfrm_dst_check
;
1250 if (likely(dst_ops
->negative_advice
== NULL
))
1251 dst_ops
->negative_advice
= xfrm_negative_advice
;
1252 if (likely(dst_ops
->link_failure
== NULL
))
1253 dst_ops
->link_failure
= xfrm_link_failure
;
1254 if (likely(dst_ops
->get_mss
== NULL
))
1255 dst_ops
->get_mss
= xfrm_get_mss
;
1256 if (likely(afinfo
->garbage_collect
== NULL
))
1257 afinfo
->garbage_collect
= __xfrm_garbage_collect
;
1258 xfrm_policy_afinfo
[afinfo
->family
] = afinfo
;
1260 write_unlock(&xfrm_policy_afinfo_lock
);
1263 EXPORT_SYMBOL(xfrm_policy_register_afinfo
);
1265 int xfrm_policy_unregister_afinfo(struct xfrm_policy_afinfo
*afinfo
)
1268 if (unlikely(afinfo
== NULL
))
1270 if (unlikely(afinfo
->family
>= NPROTO
))
1271 return -EAFNOSUPPORT
;
1272 write_lock(&xfrm_policy_afinfo_lock
);
1273 if (likely(xfrm_policy_afinfo
[afinfo
->family
] != NULL
)) {
1274 if (unlikely(xfrm_policy_afinfo
[afinfo
->family
] != afinfo
))
1277 struct dst_ops
*dst_ops
= afinfo
->dst_ops
;
1278 xfrm_policy_afinfo
[afinfo
->family
] = NULL
;
1279 dst_ops
->kmem_cachep
= NULL
;
1280 dst_ops
->check
= NULL
;
1281 dst_ops
->negative_advice
= NULL
;
1282 dst_ops
->link_failure
= NULL
;
1283 dst_ops
->get_mss
= NULL
;
1284 afinfo
->garbage_collect
= NULL
;
1287 write_unlock(&xfrm_policy_afinfo_lock
);
1290 EXPORT_SYMBOL(xfrm_policy_unregister_afinfo
);
1292 static struct xfrm_policy_afinfo
*xfrm_policy_get_afinfo(unsigned short family
)
1294 struct xfrm_policy_afinfo
*afinfo
;
1295 if (unlikely(family
>= NPROTO
))
1297 read_lock(&xfrm_policy_afinfo_lock
);
1298 afinfo
= xfrm_policy_afinfo
[family
];
1299 if (likely(afinfo
!= NULL
))
1300 read_lock(&afinfo
->lock
);
1301 read_unlock(&xfrm_policy_afinfo_lock
);
1305 static void xfrm_policy_put_afinfo(struct xfrm_policy_afinfo
*afinfo
)
1307 if (unlikely(afinfo
== NULL
))
1309 read_unlock(&afinfo
->lock
);
1312 static int xfrm_dev_event(struct notifier_block
*this, unsigned long event
, void *ptr
)
1316 xfrm_flush_bundles();
1321 static struct notifier_block xfrm_dev_notifier
= {
1327 static void __init
xfrm_policy_init(void)
1329 xfrm_dst_cache
= kmem_cache_create("xfrm_dst_cache",
1330 sizeof(struct xfrm_dst
),
1331 0, SLAB_HWCACHE_ALIGN
,
1333 if (!xfrm_dst_cache
)
1334 panic("XFRM: failed to allocate xfrm_dst_cache\n");
1336 INIT_WORK(&xfrm_policy_gc_work
, xfrm_policy_gc_task
, NULL
);
1337 register_netdevice_notifier(&xfrm_dev_notifier
);
1340 void __init
xfrm_init(void)