2 * NetLabel Domain Hash Table
4 * This file manages the domain hash table that NetLabel uses to determine
5 * which network labeling protocol to use for a given domain. The NetLabel
6 * system manages static and dynamic label mappings for network protocols such
9 * Author: Paul Moore <paul@paul-moore.com>
14 * (c) Copyright Hewlett-Packard Development Company, L.P., 2006, 2008
16 * This program is free software; you can redistribute it and/or modify
17 * it under the terms of the GNU General Public License as published by
18 * the Free Software Foundation; either version 2 of the License, or
19 * (at your option) any later version.
21 * This program is distributed in the hope that it will be useful,
22 * but WITHOUT ANY WARRANTY; without even the implied warranty of
23 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
24 * the GNU General Public License for more details.
26 * You should have received a copy of the GNU General Public License
27 * along with this program; if not, see <http://www.gnu.org/licenses/>.
31 #include <linux/types.h>
32 #include <linux/rculist.h>
33 #include <linux/skbuff.h>
34 #include <linux/spinlock.h>
35 #include <linux/string.h>
36 #include <linux/audit.h>
37 #include <linux/slab.h>
38 #include <net/netlabel.h>
39 #include <net/cipso_ipv4.h>
40 #include <net/calipso.h>
43 #include "netlabel_mgmt.h"
44 #include "netlabel_addrlist.h"
45 #include "netlabel_calipso.h"
46 #include "netlabel_domainhash.h"
47 #include "netlabel_user.h"
49 struct netlbl_domhsh_tbl
{
50 struct list_head
*tbl
;
54 /* Domain hash table */
55 /* updates should be so rare that having one spinlock for the entire hash table
57 static DEFINE_SPINLOCK(netlbl_domhsh_lock
);
58 #define netlbl_domhsh_rcu_deref(p) \
59 rcu_dereference_check(p, lockdep_is_held(&netlbl_domhsh_lock))
60 static struct netlbl_domhsh_tbl __rcu
*netlbl_domhsh
;
61 static struct netlbl_dom_map __rcu
*netlbl_domhsh_def_ipv4
;
62 static struct netlbl_dom_map __rcu
*netlbl_domhsh_def_ipv6
;
65 * Domain Hash Table Helper Functions
69 * netlbl_domhsh_free_entry - Frees a domain hash table entry
70 * @entry: the entry's RCU field
73 * This function is designed to be used as a callback to the call_rcu()
74 * function so that the memory allocated to a hash table entry can be released
78 static void netlbl_domhsh_free_entry(struct rcu_head
*entry
)
80 struct netlbl_dom_map
*ptr
;
81 struct netlbl_af4list
*iter4
;
82 struct netlbl_af4list
*tmp4
;
83 #if IS_ENABLED(CONFIG_IPV6)
84 struct netlbl_af6list
*iter6
;
85 struct netlbl_af6list
*tmp6
;
88 ptr
= container_of(entry
, struct netlbl_dom_map
, rcu
);
89 if (ptr
->def
.type
== NETLBL_NLTYPE_ADDRSELECT
) {
90 netlbl_af4list_foreach_safe(iter4
, tmp4
,
91 &ptr
->def
.addrsel
->list4
) {
92 netlbl_af4list_remove_entry(iter4
);
93 kfree(netlbl_domhsh_addr4_entry(iter4
));
95 #if IS_ENABLED(CONFIG_IPV6)
96 netlbl_af6list_foreach_safe(iter6
, tmp6
,
97 &ptr
->def
.addrsel
->list6
) {
98 netlbl_af6list_remove_entry(iter6
);
99 kfree(netlbl_domhsh_addr6_entry(iter6
));
108 * netlbl_domhsh_hash - Hashing function for the domain hash table
109 * @domain: the domain name to hash
112 * This is the hashing function for the domain hash table, it returns the
113 * correct bucket number for the domain. The caller is responsible for
114 * ensuring that the hash table is protected with either a RCU read lock or the
118 static u32
netlbl_domhsh_hash(const char *key
)
124 /* This is taken (with slight modification) from
125 * security/selinux/ss/symtab.c:symhash() */
127 for (iter
= 0, val
= 0, len
= strlen(key
); iter
< len
; iter
++)
128 val
= (val
<< 4 | (val
>> (8 * sizeof(u32
) - 4))) ^ key
[iter
];
129 return val
& (netlbl_domhsh_rcu_deref(netlbl_domhsh
)->size
- 1);
132 static bool netlbl_family_match(u16 f1
, u16 f2
)
134 return (f1
== f2
) || (f1
== AF_UNSPEC
) || (f2
== AF_UNSPEC
);
138 * netlbl_domhsh_search - Search for a domain entry
139 * @domain: the domain
140 * @family: the address family
143 * Searches the domain hash table and returns a pointer to the hash table
144 * entry if found, otherwise NULL is returned. @family may be %AF_UNSPEC
145 * which matches any address family entries. The caller is responsible for
146 * ensuring that the hash table is protected with either a RCU read lock or the
150 static struct netlbl_dom_map
*netlbl_domhsh_search(const char *domain
,
154 struct list_head
*bkt_list
;
155 struct netlbl_dom_map
*iter
;
157 if (domain
!= NULL
) {
158 bkt
= netlbl_domhsh_hash(domain
);
159 bkt_list
= &netlbl_domhsh_rcu_deref(netlbl_domhsh
)->tbl
[bkt
];
160 list_for_each_entry_rcu(iter
, bkt_list
, list
)
162 netlbl_family_match(iter
->family
, family
) &&
163 strcmp(iter
->domain
, domain
) == 0)
171 * netlbl_domhsh_search_def - Search for a domain entry
172 * @domain: the domain
173 * @family: the address family
176 * Searches the domain hash table and returns a pointer to the hash table
177 * entry if an exact match is found, if an exact match is not present in the
178 * hash table then the default entry is returned if valid otherwise NULL is
179 * returned. @family may be %AF_UNSPEC which matches any address family
180 * entries. The caller is responsible ensuring that the hash table is
181 * protected with either a RCU read lock or the hash table lock.
184 static struct netlbl_dom_map
*netlbl_domhsh_search_def(const char *domain
,
187 struct netlbl_dom_map
*entry
;
189 entry
= netlbl_domhsh_search(domain
, family
);
192 if (family
== AF_INET
|| family
== AF_UNSPEC
) {
193 entry
= netlbl_domhsh_rcu_deref(netlbl_domhsh_def_ipv4
);
194 if (entry
!= NULL
&& entry
->valid
)
197 if (family
== AF_INET6
|| family
== AF_UNSPEC
) {
198 entry
= netlbl_domhsh_rcu_deref(netlbl_domhsh_def_ipv6
);
199 if (entry
!= NULL
&& entry
->valid
)
207 * netlbl_domhsh_audit_add - Generate an audit entry for an add event
208 * @entry: the entry being added
209 * @addr4: the IPv4 address information
210 * @addr6: the IPv6 address information
211 * @result: the result code
212 * @audit_info: NetLabel audit information
215 * Generate an audit record for adding a new NetLabel/LSM mapping entry with
216 * the given information. Caller is responsible for holding the necessary
220 static void netlbl_domhsh_audit_add(struct netlbl_dom_map
*entry
,
221 struct netlbl_af4list
*addr4
,
222 struct netlbl_af6list
*addr6
,
224 struct netlbl_audit
*audit_info
)
226 struct audit_buffer
*audit_buf
;
227 struct cipso_v4_doi
*cipsov4
= NULL
;
228 struct calipso_doi
*calipso
= NULL
;
231 audit_buf
= netlbl_audit_start_common(AUDIT_MAC_MAP_ADD
, audit_info
);
232 if (audit_buf
!= NULL
) {
233 audit_log_format(audit_buf
, " nlbl_domain=%s",
234 entry
->domain
? entry
->domain
: "(default)");
236 struct netlbl_domaddr4_map
*map4
;
237 map4
= netlbl_domhsh_addr4_entry(addr4
);
238 type
= map4
->def
.type
;
239 cipsov4
= map4
->def
.cipso
;
240 netlbl_af4list_audit_addr(audit_buf
, 0, NULL
,
241 addr4
->addr
, addr4
->mask
);
242 #if IS_ENABLED(CONFIG_IPV6)
243 } else if (addr6
!= NULL
) {
244 struct netlbl_domaddr6_map
*map6
;
245 map6
= netlbl_domhsh_addr6_entry(addr6
);
246 type
= map6
->def
.type
;
247 calipso
= map6
->def
.calipso
;
248 netlbl_af6list_audit_addr(audit_buf
, 0, NULL
,
249 &addr6
->addr
, &addr6
->mask
);
252 type
= entry
->def
.type
;
253 cipsov4
= entry
->def
.cipso
;
254 calipso
= entry
->def
.calipso
;
257 case NETLBL_NLTYPE_UNLABELED
:
258 audit_log_format(audit_buf
, " nlbl_protocol=unlbl");
260 case NETLBL_NLTYPE_CIPSOV4
:
261 BUG_ON(cipsov4
== NULL
);
262 audit_log_format(audit_buf
,
263 " nlbl_protocol=cipsov4 cipso_doi=%u",
266 case NETLBL_NLTYPE_CALIPSO
:
267 BUG_ON(calipso
== NULL
);
268 audit_log_format(audit_buf
,
269 " nlbl_protocol=calipso calipso_doi=%u",
273 audit_log_format(audit_buf
, " res=%u", result
== 0 ? 1 : 0);
274 audit_log_end(audit_buf
);
279 * netlbl_domhsh_validate - Validate a new domain mapping entry
280 * @entry: the entry to validate
282 * This function validates the new domain mapping entry to ensure that it is
283 * a valid entry. Returns zero on success, negative values on failure.
286 static int netlbl_domhsh_validate(const struct netlbl_dom_map
*entry
)
288 struct netlbl_af4list
*iter4
;
289 struct netlbl_domaddr4_map
*map4
;
290 #if IS_ENABLED(CONFIG_IPV6)
291 struct netlbl_af6list
*iter6
;
292 struct netlbl_domaddr6_map
*map6
;
298 if (entry
->family
!= AF_INET
&& entry
->family
!= AF_INET6
&&
299 (entry
->family
!= AF_UNSPEC
||
300 entry
->def
.type
!= NETLBL_NLTYPE_UNLABELED
))
303 switch (entry
->def
.type
) {
304 case NETLBL_NLTYPE_UNLABELED
:
305 if (entry
->def
.cipso
!= NULL
|| entry
->def
.calipso
!= NULL
||
306 entry
->def
.addrsel
!= NULL
)
309 case NETLBL_NLTYPE_CIPSOV4
:
310 if (entry
->family
!= AF_INET
||
311 entry
->def
.cipso
== NULL
)
314 case NETLBL_NLTYPE_CALIPSO
:
315 if (entry
->family
!= AF_INET6
||
316 entry
->def
.calipso
== NULL
)
319 case NETLBL_NLTYPE_ADDRSELECT
:
320 netlbl_af4list_foreach(iter4
, &entry
->def
.addrsel
->list4
) {
321 map4
= netlbl_domhsh_addr4_entry(iter4
);
322 switch (map4
->def
.type
) {
323 case NETLBL_NLTYPE_UNLABELED
:
324 if (map4
->def
.cipso
!= NULL
)
327 case NETLBL_NLTYPE_CIPSOV4
:
328 if (map4
->def
.cipso
== NULL
)
335 #if IS_ENABLED(CONFIG_IPV6)
336 netlbl_af6list_foreach(iter6
, &entry
->def
.addrsel
->list6
) {
337 map6
= netlbl_domhsh_addr6_entry(iter6
);
338 switch (map6
->def
.type
) {
339 case NETLBL_NLTYPE_UNLABELED
:
340 if (map6
->def
.calipso
!= NULL
)
343 case NETLBL_NLTYPE_CALIPSO
:
344 if (map6
->def
.calipso
== NULL
)
361 * Domain Hash Table Functions
365 * netlbl_domhsh_init - Init for the domain hash
366 * @size: the number of bits to use for the hash buckets
369 * Initializes the domain hash table, should be called only by
370 * netlbl_user_init() during initialization. Returns zero on success, non-zero
374 int __init
netlbl_domhsh_init(u32 size
)
377 struct netlbl_domhsh_tbl
*hsh_tbl
;
382 hsh_tbl
= kmalloc(sizeof(*hsh_tbl
), GFP_KERNEL
);
385 hsh_tbl
->size
= 1 << size
;
386 hsh_tbl
->tbl
= kcalloc(hsh_tbl
->size
,
387 sizeof(struct list_head
),
389 if (hsh_tbl
->tbl
== NULL
) {
393 for (iter
= 0; iter
< hsh_tbl
->size
; iter
++)
394 INIT_LIST_HEAD(&hsh_tbl
->tbl
[iter
]);
396 spin_lock(&netlbl_domhsh_lock
);
397 rcu_assign_pointer(netlbl_domhsh
, hsh_tbl
);
398 spin_unlock(&netlbl_domhsh_lock
);
404 * netlbl_domhsh_add - Adds a entry to the domain hash table
405 * @entry: the entry to add
406 * @audit_info: NetLabel audit information
409 * Adds a new entry to the domain hash table and handles any updates to the
410 * lower level protocol handler (i.e. CIPSO). @entry->family may be set to
411 * %AF_UNSPEC which will add an entry that matches all address families. This
412 * is only useful for the unlabelled type and will only succeed if there is no
413 * existing entry for any address family with the same domain. Returns zero
414 * on success, negative on failure.
417 int netlbl_domhsh_add(struct netlbl_dom_map
*entry
,
418 struct netlbl_audit
*audit_info
)
421 struct netlbl_dom_map
*entry_old
, *entry_b
;
422 struct netlbl_af4list
*iter4
;
423 struct netlbl_af4list
*tmp4
;
424 #if IS_ENABLED(CONFIG_IPV6)
425 struct netlbl_af6list
*iter6
;
426 struct netlbl_af6list
*tmp6
;
429 ret_val
= netlbl_domhsh_validate(entry
);
433 /* XXX - we can remove this RCU read lock as the spinlock protects the
434 * entire function, but before we do we need to fixup the
435 * netlbl_af[4,6]list RCU functions to do "the right thing" with
436 * respect to rcu_dereference() when only a spinlock is held. */
438 spin_lock(&netlbl_domhsh_lock
);
439 if (entry
->domain
!= NULL
)
440 entry_old
= netlbl_domhsh_search(entry
->domain
, entry
->family
);
442 entry_old
= netlbl_domhsh_search_def(entry
->domain
,
444 if (entry_old
== NULL
) {
447 if (entry
->domain
!= NULL
) {
448 u32 bkt
= netlbl_domhsh_hash(entry
->domain
);
449 list_add_tail_rcu(&entry
->list
,
450 &rcu_dereference(netlbl_domhsh
)->tbl
[bkt
]);
452 INIT_LIST_HEAD(&entry
->list
);
453 switch (entry
->family
) {
455 rcu_assign_pointer(netlbl_domhsh_def_ipv4
,
459 rcu_assign_pointer(netlbl_domhsh_def_ipv6
,
463 if (entry
->def
.type
!=
464 NETLBL_NLTYPE_UNLABELED
) {
468 entry_b
= kzalloc(sizeof(*entry_b
), GFP_ATOMIC
);
469 if (entry_b
== NULL
) {
473 entry_b
->family
= AF_INET6
;
474 entry_b
->def
.type
= NETLBL_NLTYPE_UNLABELED
;
476 entry
->family
= AF_INET
;
477 rcu_assign_pointer(netlbl_domhsh_def_ipv4
,
479 rcu_assign_pointer(netlbl_domhsh_def_ipv6
,
483 /* Already checked in
484 * netlbl_domhsh_validate(). */
490 if (entry
->def
.type
== NETLBL_NLTYPE_ADDRSELECT
) {
491 netlbl_af4list_foreach_rcu(iter4
,
492 &entry
->def
.addrsel
->list4
)
493 netlbl_domhsh_audit_add(entry
, iter4
, NULL
,
494 ret_val
, audit_info
);
495 #if IS_ENABLED(CONFIG_IPV6)
496 netlbl_af6list_foreach_rcu(iter6
,
497 &entry
->def
.addrsel
->list6
)
498 netlbl_domhsh_audit_add(entry
, NULL
, iter6
,
499 ret_val
, audit_info
);
502 netlbl_domhsh_audit_add(entry
, NULL
, NULL
,
503 ret_val
, audit_info
);
504 } else if (entry_old
->def
.type
== NETLBL_NLTYPE_ADDRSELECT
&&
505 entry
->def
.type
== NETLBL_NLTYPE_ADDRSELECT
) {
506 struct list_head
*old_list4
;
507 struct list_head
*old_list6
;
509 old_list4
= &entry_old
->def
.addrsel
->list4
;
510 old_list6
= &entry_old
->def
.addrsel
->list6
;
512 /* we only allow the addition of address selectors if all of
513 * the selectors do not exist in the existing domain map */
514 netlbl_af4list_foreach_rcu(iter4
, &entry
->def
.addrsel
->list4
)
515 if (netlbl_af4list_search_exact(iter4
->addr
,
521 #if IS_ENABLED(CONFIG_IPV6)
522 netlbl_af6list_foreach_rcu(iter6
, &entry
->def
.addrsel
->list6
)
523 if (netlbl_af6list_search_exact(&iter6
->addr
,
531 netlbl_af4list_foreach_safe(iter4
, tmp4
,
532 &entry
->def
.addrsel
->list4
) {
533 netlbl_af4list_remove_entry(iter4
);
535 ret_val
= netlbl_af4list_add(iter4
, old_list4
);
536 netlbl_domhsh_audit_add(entry_old
, iter4
, NULL
,
537 ret_val
, audit_info
);
541 #if IS_ENABLED(CONFIG_IPV6)
542 netlbl_af6list_foreach_safe(iter6
, tmp6
,
543 &entry
->def
.addrsel
->list6
) {
544 netlbl_af6list_remove_entry(iter6
);
546 ret_val
= netlbl_af6list_add(iter6
, old_list6
);
547 netlbl_domhsh_audit_add(entry_old
, NULL
, iter6
,
548 ret_val
, audit_info
);
557 spin_unlock(&netlbl_domhsh_lock
);
563 * netlbl_domhsh_add_default - Adds the default entry to the domain hash table
564 * @entry: the entry to add
565 * @audit_info: NetLabel audit information
568 * Adds a new default entry to the domain hash table and handles any updates
569 * to the lower level protocol handler (i.e. CIPSO). Returns zero on success,
570 * negative on failure.
573 int netlbl_domhsh_add_default(struct netlbl_dom_map
*entry
,
574 struct netlbl_audit
*audit_info
)
576 return netlbl_domhsh_add(entry
, audit_info
);
580 * netlbl_domhsh_remove_entry - Removes a given entry from the domain table
581 * @entry: the entry to remove
582 * @audit_info: NetLabel audit information
585 * Removes an entry from the domain hash table and handles any updates to the
586 * lower level protocol handler (i.e. CIPSO). Caller is responsible for
587 * ensuring that the RCU read lock is held. Returns zero on success, negative
591 int netlbl_domhsh_remove_entry(struct netlbl_dom_map
*entry
,
592 struct netlbl_audit
*audit_info
)
595 struct audit_buffer
*audit_buf
;
600 spin_lock(&netlbl_domhsh_lock
);
603 if (entry
== rcu_dereference(netlbl_domhsh_def_ipv4
))
604 RCU_INIT_POINTER(netlbl_domhsh_def_ipv4
, NULL
);
605 else if (entry
== rcu_dereference(netlbl_domhsh_def_ipv6
))
606 RCU_INIT_POINTER(netlbl_domhsh_def_ipv6
, NULL
);
608 list_del_rcu(&entry
->list
);
611 spin_unlock(&netlbl_domhsh_lock
);
613 audit_buf
= netlbl_audit_start_common(AUDIT_MAC_MAP_DEL
, audit_info
);
614 if (audit_buf
!= NULL
) {
615 audit_log_format(audit_buf
,
616 " nlbl_domain=%s res=%u",
617 entry
->domain
? entry
->domain
: "(default)",
618 ret_val
== 0 ? 1 : 0);
619 audit_log_end(audit_buf
);
623 struct netlbl_af4list
*iter4
;
624 struct netlbl_domaddr4_map
*map4
;
625 #if IS_ENABLED(CONFIG_IPV6)
626 struct netlbl_af6list
*iter6
;
627 struct netlbl_domaddr6_map
*map6
;
630 switch (entry
->def
.type
) {
631 case NETLBL_NLTYPE_ADDRSELECT
:
632 netlbl_af4list_foreach_rcu(iter4
,
633 &entry
->def
.addrsel
->list4
) {
634 map4
= netlbl_domhsh_addr4_entry(iter4
);
635 cipso_v4_doi_putdef(map4
->def
.cipso
);
637 #if IS_ENABLED(CONFIG_IPV6)
638 netlbl_af6list_foreach_rcu(iter6
,
639 &entry
->def
.addrsel
->list6
) {
640 map6
= netlbl_domhsh_addr6_entry(iter6
);
641 calipso_doi_putdef(map6
->def
.calipso
);
645 case NETLBL_NLTYPE_CIPSOV4
:
646 cipso_v4_doi_putdef(entry
->def
.cipso
);
648 #if IS_ENABLED(CONFIG_IPV6)
649 case NETLBL_NLTYPE_CALIPSO
:
650 calipso_doi_putdef(entry
->def
.calipso
);
654 call_rcu(&entry
->rcu
, netlbl_domhsh_free_entry
);
661 * netlbl_domhsh_remove_af4 - Removes an address selector entry
662 * @domain: the domain
663 * @addr: IPv4 address
664 * @mask: IPv4 address mask
665 * @audit_info: NetLabel audit information
668 * Removes an individual address selector from a domain mapping and potentially
669 * the entire mapping if it is empty. Returns zero on success, negative values
673 int netlbl_domhsh_remove_af4(const char *domain
,
674 const struct in_addr
*addr
,
675 const struct in_addr
*mask
,
676 struct netlbl_audit
*audit_info
)
678 struct netlbl_dom_map
*entry_map
;
679 struct netlbl_af4list
*entry_addr
;
680 struct netlbl_af4list
*iter4
;
681 #if IS_ENABLED(CONFIG_IPV6)
682 struct netlbl_af6list
*iter6
;
684 struct netlbl_domaddr4_map
*entry
;
689 entry_map
= netlbl_domhsh_search(domain
, AF_INET
);
691 entry_map
= netlbl_domhsh_search_def(domain
, AF_INET
);
692 if (entry_map
== NULL
||
693 entry_map
->def
.type
!= NETLBL_NLTYPE_ADDRSELECT
)
694 goto remove_af4_failure
;
696 spin_lock(&netlbl_domhsh_lock
);
697 entry_addr
= netlbl_af4list_remove(addr
->s_addr
, mask
->s_addr
,
698 &entry_map
->def
.addrsel
->list4
);
699 spin_unlock(&netlbl_domhsh_lock
);
701 if (entry_addr
== NULL
)
702 goto remove_af4_failure
;
703 netlbl_af4list_foreach_rcu(iter4
, &entry_map
->def
.addrsel
->list4
)
704 goto remove_af4_single_addr
;
705 #if IS_ENABLED(CONFIG_IPV6)
706 netlbl_af6list_foreach_rcu(iter6
, &entry_map
->def
.addrsel
->list6
)
707 goto remove_af4_single_addr
;
709 /* the domain mapping is empty so remove it from the mapping table */
710 netlbl_domhsh_remove_entry(entry_map
, audit_info
);
712 remove_af4_single_addr
:
714 /* yick, we can't use call_rcu here because we don't have a rcu head
715 * pointer but hopefully this should be a rare case so the pause
716 * shouldn't be a problem */
718 entry
= netlbl_domhsh_addr4_entry(entry_addr
);
719 cipso_v4_doi_putdef(entry
->def
.cipso
);
728 #if IS_ENABLED(CONFIG_IPV6)
730 * netlbl_domhsh_remove_af6 - Removes an address selector entry
731 * @domain: the domain
732 * @addr: IPv6 address
733 * @mask: IPv6 address mask
734 * @audit_info: NetLabel audit information
737 * Removes an individual address selector from a domain mapping and potentially
738 * the entire mapping if it is empty. Returns zero on success, negative values
742 int netlbl_domhsh_remove_af6(const char *domain
,
743 const struct in6_addr
*addr
,
744 const struct in6_addr
*mask
,
745 struct netlbl_audit
*audit_info
)
747 struct netlbl_dom_map
*entry_map
;
748 struct netlbl_af6list
*entry_addr
;
749 struct netlbl_af4list
*iter4
;
750 struct netlbl_af6list
*iter6
;
751 struct netlbl_domaddr6_map
*entry
;
756 entry_map
= netlbl_domhsh_search(domain
, AF_INET6
);
758 entry_map
= netlbl_domhsh_search_def(domain
, AF_INET6
);
759 if (entry_map
== NULL
||
760 entry_map
->def
.type
!= NETLBL_NLTYPE_ADDRSELECT
)
761 goto remove_af6_failure
;
763 spin_lock(&netlbl_domhsh_lock
);
764 entry_addr
= netlbl_af6list_remove(addr
, mask
,
765 &entry_map
->def
.addrsel
->list6
);
766 spin_unlock(&netlbl_domhsh_lock
);
768 if (entry_addr
== NULL
)
769 goto remove_af6_failure
;
770 netlbl_af4list_foreach_rcu(iter4
, &entry_map
->def
.addrsel
->list4
)
771 goto remove_af6_single_addr
;
772 netlbl_af6list_foreach_rcu(iter6
, &entry_map
->def
.addrsel
->list6
)
773 goto remove_af6_single_addr
;
774 /* the domain mapping is empty so remove it from the mapping table */
775 netlbl_domhsh_remove_entry(entry_map
, audit_info
);
777 remove_af6_single_addr
:
779 /* yick, we can't use call_rcu here because we don't have a rcu head
780 * pointer but hopefully this should be a rare case so the pause
781 * shouldn't be a problem */
783 entry
= netlbl_domhsh_addr6_entry(entry_addr
);
784 calipso_doi_putdef(entry
->def
.calipso
);
795 * netlbl_domhsh_remove - Removes an entry from the domain hash table
796 * @domain: the domain to remove
797 * @family: address family
798 * @audit_info: NetLabel audit information
801 * Removes an entry from the domain hash table and handles any updates to the
802 * lower level protocol handler (i.e. CIPSO). @family may be %AF_UNSPEC which
803 * removes all address family entries. Returns zero on success, negative on
807 int netlbl_domhsh_remove(const char *domain
, u16 family
,
808 struct netlbl_audit
*audit_info
)
810 int ret_val
= -EINVAL
;
811 struct netlbl_dom_map
*entry
;
815 if (family
== AF_INET
|| family
== AF_UNSPEC
) {
817 entry
= netlbl_domhsh_search(domain
, AF_INET
);
819 entry
= netlbl_domhsh_search_def(domain
, AF_INET
);
820 ret_val
= netlbl_domhsh_remove_entry(entry
, audit_info
);
821 if (ret_val
&& ret_val
!= -ENOENT
)
824 if (family
== AF_INET6
|| family
== AF_UNSPEC
) {
828 entry
= netlbl_domhsh_search(domain
, AF_INET6
);
830 entry
= netlbl_domhsh_search_def(domain
, AF_INET6
);
831 ret_val2
= netlbl_domhsh_remove_entry(entry
, audit_info
);
832 if (ret_val2
!= -ENOENT
)
842 * netlbl_domhsh_remove_default - Removes the default entry from the table
843 * @family: address family
844 * @audit_info: NetLabel audit information
847 * Removes/resets the default entry corresponding to @family from the domain
848 * hash table and handles any updates to the lower level protocol handler
849 * (i.e. CIPSO). @family may be %AF_UNSPEC which removes all address family
850 * entries. Returns zero on success, negative on failure.
853 int netlbl_domhsh_remove_default(u16 family
, struct netlbl_audit
*audit_info
)
855 return netlbl_domhsh_remove(NULL
, family
, audit_info
);
859 * netlbl_domhsh_getentry - Get an entry from the domain hash table
860 * @domain: the domain name to search for
861 * @family: address family
864 * Look through the domain hash table searching for an entry to match @domain,
865 * with address family @family, return a pointer to a copy of the entry or
866 * NULL. The caller is responsible for ensuring that rcu_read_[un]lock() is
870 struct netlbl_dom_map
*netlbl_domhsh_getentry(const char *domain
, u16 family
)
872 if (family
== AF_UNSPEC
)
874 return netlbl_domhsh_search_def(domain
, family
);
878 * netlbl_domhsh_getentry_af4 - Get an entry from the domain hash table
879 * @domain: the domain name to search for
880 * @addr: the IP address to search for
883 * Look through the domain hash table searching for an entry to match @domain
884 * and @addr, return a pointer to a copy of the entry or NULL. The caller is
885 * responsible for ensuring that rcu_read_[un]lock() is called.
888 struct netlbl_dommap_def
*netlbl_domhsh_getentry_af4(const char *domain
,
891 struct netlbl_dom_map
*dom_iter
;
892 struct netlbl_af4list
*addr_iter
;
894 dom_iter
= netlbl_domhsh_search_def(domain
, AF_INET
);
895 if (dom_iter
== NULL
)
898 if (dom_iter
->def
.type
!= NETLBL_NLTYPE_ADDRSELECT
)
899 return &dom_iter
->def
;
900 addr_iter
= netlbl_af4list_search(addr
, &dom_iter
->def
.addrsel
->list4
);
901 if (addr_iter
== NULL
)
903 return &(netlbl_domhsh_addr4_entry(addr_iter
)->def
);
906 #if IS_ENABLED(CONFIG_IPV6)
908 * netlbl_domhsh_getentry_af6 - Get an entry from the domain hash table
909 * @domain: the domain name to search for
910 * @addr: the IP address to search for
913 * Look through the domain hash table searching for an entry to match @domain
914 * and @addr, return a pointer to a copy of the entry or NULL. The caller is
915 * responsible for ensuring that rcu_read_[un]lock() is called.
918 struct netlbl_dommap_def
*netlbl_domhsh_getentry_af6(const char *domain
,
919 const struct in6_addr
*addr
)
921 struct netlbl_dom_map
*dom_iter
;
922 struct netlbl_af6list
*addr_iter
;
924 dom_iter
= netlbl_domhsh_search_def(domain
, AF_INET6
);
925 if (dom_iter
== NULL
)
928 if (dom_iter
->def
.type
!= NETLBL_NLTYPE_ADDRSELECT
)
929 return &dom_iter
->def
;
930 addr_iter
= netlbl_af6list_search(addr
, &dom_iter
->def
.addrsel
->list6
);
931 if (addr_iter
== NULL
)
933 return &(netlbl_domhsh_addr6_entry(addr_iter
)->def
);
938 * netlbl_domhsh_walk - Iterate through the domain mapping hash table
939 * @skip_bkt: the number of buckets to skip at the start
940 * @skip_chain: the number of entries to skip in the first iterated bucket
941 * @callback: callback for each entry
942 * @cb_arg: argument for the callback function
945 * Interate over the domain mapping hash table, skipping the first @skip_bkt
946 * buckets and @skip_chain entries. For each entry in the table call
947 * @callback, if @callback returns a negative value stop 'walking' through the
948 * table and return. Updates the values in @skip_bkt and @skip_chain on
949 * return. Returns zero on success, negative values on failure.
952 int netlbl_domhsh_walk(u32
*skip_bkt
,
954 int (*callback
) (struct netlbl_dom_map
*entry
, void *arg
),
957 int ret_val
= -ENOENT
;
959 struct list_head
*iter_list
;
960 struct netlbl_dom_map
*iter_entry
;
964 for (iter_bkt
= *skip_bkt
;
965 iter_bkt
< rcu_dereference(netlbl_domhsh
)->size
;
966 iter_bkt
++, chain_cnt
= 0) {
967 iter_list
= &rcu_dereference(netlbl_domhsh
)->tbl
[iter_bkt
];
968 list_for_each_entry_rcu(iter_entry
, iter_list
, list
)
969 if (iter_entry
->valid
) {
970 if (chain_cnt
++ < *skip_chain
)
972 ret_val
= callback(iter_entry
, cb_arg
);
982 *skip_bkt
= iter_bkt
;
983 *skip_chain
= chain_cnt
;