1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * CIPSO - Commercial IP Security Option
4 *
5 * This is an implementation of the CIPSO 2.2 protocol as specified in
6 * draft-ietf-cipso-ipsecurity-01.txt with additional tag types as found in
7 * FIPS-188. While CIPSO never became a full IETF RFC standard many vendors
8 * have chosen to adopt the protocol and over the years it has become a
9 * de-facto standard for labeled networking.
10 *
11 * The CIPSO draft specification can be found in the kernel's Documentation
12 * directory as well as the following URL:
13 * https://tools.ietf.org/id/draft-ietf-cipso-ipsecurity-01.txt
14 * The FIPS-188 specification can be found at the following URL:
15 * https://www.itl.nist.gov/fipspubs/fip188.htm
16 *
17 * Author: Paul Moore <paul.moore@hp.com>
18 */
19
20 /*
21 * (c) Copyright Hewlett-Packard Development Company, L.P., 2006, 2008
22 */
23
24 #include <linux/init.h>
25 #include <linux/types.h>
26 #include <linux/rcupdate.h>
27 #include <linux/list.h>
28 #include <linux/spinlock.h>
29 #include <linux/string.h>
30 #include <linux/jhash.h>
31 #include <linux/audit.h>
32 #include <linux/slab.h>
33 #include <net/ip.h>
34 #include <net/icmp.h>
35 #include <net/tcp.h>
36 #include <net/netlabel.h>
37 #include <net/cipso_ipv4.h>
38 #include <linux/atomic.h>
39 #include <linux/bug.h>
40 #include <asm/unaligned.h>
41
42 /* List of available DOI definitions */
43 /* XXX - This currently assumes a minimal number of different DOIs in use,
44 * if in practice there are a lot of different DOIs this list should
45 * probably be turned into a hash table or something similar so we
46 * can do quick lookups. */
47 static DEFINE_SPINLOCK(cipso_v4_doi_list_lock);
48 static LIST_HEAD(cipso_v4_doi_list);
49
50 /* Label mapping cache */
51 int cipso_v4_cache_enabled = 1;
52 int cipso_v4_cache_bucketsize = 10;
53 #define CIPSO_V4_CACHE_BUCKETBITS 7
54 #define CIPSO_V4_CACHE_BUCKETS (1 << CIPSO_V4_CACHE_BUCKETBITS)
55 #define CIPSO_V4_CACHE_REORDERLIMIT 10
56 struct cipso_v4_map_cache_bkt {
57 spinlock_t lock;
58 u32 size;
59 struct list_head list;
60 };
61
62 struct cipso_v4_map_cache_entry {
63 u32 hash;
64 unsigned char *key;
65 size_t key_len;
66
67 struct netlbl_lsm_cache *lsm_data;
68
69 u32 activity;
70 struct list_head list;
71 };
72
73 static struct cipso_v4_map_cache_bkt *cipso_v4_cache;
74
75 /* Restricted bitmap (tag #1) flags */
76 int cipso_v4_rbm_optfmt = 0;
77 int cipso_v4_rbm_strictvalid = 1;
78
79 /*
80 * Protocol Constants
81 */
82
83 /* Maximum size of the CIPSO IP option, derived from the fact that the maximum
84 * IPv4 header size is 60 bytes and the base IPv4 header is 20 bytes long. */
85 #define CIPSO_V4_OPT_LEN_MAX 40
86
87 /* Length of the base CIPSO option, this includes the option type (1 byte), the
88 * option length (1 byte), and the DOI (4 bytes). */
89 #define CIPSO_V4_HDR_LEN 6
90
91 /* Base length of the restrictive category bitmap tag (tag #1). */
92 #define CIPSO_V4_TAG_RBM_BLEN 4
93
94 /* Base length of the enumerated category tag (tag #2). */
95 #define CIPSO_V4_TAG_ENUM_BLEN 4
96
97 /* Base length of the ranged categories bitmap tag (tag #5). */
98 #define CIPSO_V4_TAG_RNG_BLEN 4
99 /* The maximum number of category ranges permitted in the ranged category tag
100 * (tag #5). You may note that the IETF draft states that the maximum number
101 * of category ranges is 7, but if the low end of the last category range is
102 * zero then it is possible to fit 8 category ranges because the zero should
103 * be omitted. */
104 #define CIPSO_V4_TAG_RNG_CAT_MAX 8
105
106 /* Base length of the local tag (non-standard tag).
107 * Tag definition (may change between kernel versions)
108 *
109 * 0 8 16 24 32
110 * +----------+----------+----------+----------+
111 * | 10000000 | 00000110 | 32-bit secid value |
112 * +----------+----------+----------+----------+
113 * | in (host byte order)|
114 * +----------+----------+
115 *
116 */
117 #define CIPSO_V4_TAG_LOC_BLEN 6
118
119 /*
120 * Helper Functions
121 */
122
123 /**
124 * cipso_v4_cache_entry_free - Frees a cache entry
125 * @entry: the entry to free
126 *
127 * Description:
128 * This function frees the memory associated with a cache entry including the
129 * LSM cache data if there are no longer any users, i.e. reference count == 0.
130 *
131 */
cipso_v4_cache_entry_free(struct cipso_v4_map_cache_entry * entry)132 static void cipso_v4_cache_entry_free(struct cipso_v4_map_cache_entry *entry)
133 {
134 if (entry->lsm_data)
135 netlbl_secattr_cache_free(entry->lsm_data);
136 kfree(entry->key);
137 kfree(entry);
138 }
139
140 /**
141 * cipso_v4_map_cache_hash - Hashing function for the CIPSO cache
142 * @key: the hash key
143 * @key_len: the length of the key in bytes
144 *
145 * Description:
146 * The CIPSO tag hashing function. Returns a 32-bit hash value.
147 *
148 */
cipso_v4_map_cache_hash(const unsigned char * key,u32 key_len)149 static u32 cipso_v4_map_cache_hash(const unsigned char *key, u32 key_len)
150 {
151 return jhash(key, key_len, 0);
152 }
153
154 /*
155 * Label Mapping Cache Functions
156 */
157
158 /**
159 * cipso_v4_cache_init - Initialize the CIPSO cache
160 *
161 * Description:
162 * Initializes the CIPSO label mapping cache, this function should be called
163 * before any of the other functions defined in this file. Returns zero on
164 * success, negative values on error.
165 *
166 */
cipso_v4_cache_init(void)167 static int __init cipso_v4_cache_init(void)
168 {
169 u32 iter;
170
171 cipso_v4_cache = kcalloc(CIPSO_V4_CACHE_BUCKETS,
172 sizeof(struct cipso_v4_map_cache_bkt),
173 GFP_KERNEL);
174 if (!cipso_v4_cache)
175 return -ENOMEM;
176
177 for (iter = 0; iter < CIPSO_V4_CACHE_BUCKETS; iter++) {
178 spin_lock_init(&cipso_v4_cache[iter].lock);
179 cipso_v4_cache[iter].size = 0;
180 INIT_LIST_HEAD(&cipso_v4_cache[iter].list);
181 }
182
183 return 0;
184 }
185
186 /**
187 * cipso_v4_cache_invalidate - Invalidates the current CIPSO cache
188 *
189 * Description:
190 * Invalidates and frees any entries in the CIPSO cache. Returns zero on
191 * success and negative values on failure.
192 *
193 */
cipso_v4_cache_invalidate(void)194 void cipso_v4_cache_invalidate(void)
195 {
196 struct cipso_v4_map_cache_entry *entry, *tmp_entry;
197 u32 iter;
198
199 for (iter = 0; iter < CIPSO_V4_CACHE_BUCKETS; iter++) {
200 spin_lock_bh(&cipso_v4_cache[iter].lock);
201 list_for_each_entry_safe(entry,
202 tmp_entry,
203 &cipso_v4_cache[iter].list, list) {
204 list_del(&entry->list);
205 cipso_v4_cache_entry_free(entry);
206 }
207 cipso_v4_cache[iter].size = 0;
208 spin_unlock_bh(&cipso_v4_cache[iter].lock);
209 }
210 }
211
212 /**
213 * cipso_v4_cache_check - Check the CIPSO cache for a label mapping
214 * @key: the buffer to check
215 * @key_len: buffer length in bytes
216 * @secattr: the security attribute struct to use
217 *
218 * Description:
219 * This function checks the cache to see if a label mapping already exists for
220 * the given key. If there is a match then the cache is adjusted and the
221 * @secattr struct is populated with the correct LSM security attributes. The
222 * cache is adjusted in the following manner if the entry is not already the
223 * first in the cache bucket:
224 *
225 * 1. The cache entry's activity counter is incremented
226 * 2. The previous (higher ranking) entry's activity counter is decremented
227 * 3. If the difference between the two activity counters is geater than
228 * CIPSO_V4_CACHE_REORDERLIMIT the two entries are swapped
229 *
230 * Returns zero on success, -ENOENT for a cache miss, and other negative values
231 * on error.
232 *
233 */
cipso_v4_cache_check(const unsigned char * key,u32 key_len,struct netlbl_lsm_secattr * secattr)234 static int cipso_v4_cache_check(const unsigned char *key,
235 u32 key_len,
236 struct netlbl_lsm_secattr *secattr)
237 {
238 u32 bkt;
239 struct cipso_v4_map_cache_entry *entry;
240 struct cipso_v4_map_cache_entry *prev_entry = NULL;
241 u32 hash;
242
243 if (!cipso_v4_cache_enabled)
244 return -ENOENT;
245
246 hash = cipso_v4_map_cache_hash(key, key_len);
247 bkt = hash & (CIPSO_V4_CACHE_BUCKETS - 1);
248 spin_lock_bh(&cipso_v4_cache[bkt].lock);
249 list_for_each_entry(entry, &cipso_v4_cache[bkt].list, list) {
250 if (entry->hash == hash &&
251 entry->key_len == key_len &&
252 memcmp(entry->key, key, key_len) == 0) {
253 entry->activity += 1;
254 refcount_inc(&entry->lsm_data->refcount);
255 secattr->cache = entry->lsm_data;
256 secattr->flags |= NETLBL_SECATTR_CACHE;
257 secattr->type = NETLBL_NLTYPE_CIPSOV4;
258 if (!prev_entry) {
259 spin_unlock_bh(&cipso_v4_cache[bkt].lock);
260 return 0;
261 }
262
263 if (prev_entry->activity > 0)
264 prev_entry->activity -= 1;
265 if (entry->activity > prev_entry->activity &&
266 entry->activity - prev_entry->activity >
267 CIPSO_V4_CACHE_REORDERLIMIT) {
268 __list_del(entry->list.prev, entry->list.next);
269 __list_add(&entry->list,
270 prev_entry->list.prev,
271 &prev_entry->list);
272 }
273
274 spin_unlock_bh(&cipso_v4_cache[bkt].lock);
275 return 0;
276 }
277 prev_entry = entry;
278 }
279 spin_unlock_bh(&cipso_v4_cache[bkt].lock);
280
281 return -ENOENT;
282 }
283
284 /**
285 * cipso_v4_cache_add - Add an entry to the CIPSO cache
286 * @cipso_ptr: pointer to CIPSO IP option
287 * @secattr: the packet's security attributes
288 *
289 * Description:
290 * Add a new entry into the CIPSO label mapping cache. Add the new entry to
291 * head of the cache bucket's list, if the cache bucket is out of room remove
292 * the last entry in the list first. It is important to note that there is
293 * currently no checking for duplicate keys. Returns zero on success,
294 * negative values on failure.
295 *
296 */
cipso_v4_cache_add(const unsigned char * cipso_ptr,const struct netlbl_lsm_secattr * secattr)297 int cipso_v4_cache_add(const unsigned char *cipso_ptr,
298 const struct netlbl_lsm_secattr *secattr)
299 {
300 int ret_val = -EPERM;
301 u32 bkt;
302 struct cipso_v4_map_cache_entry *entry = NULL;
303 struct cipso_v4_map_cache_entry *old_entry = NULL;
304 u32 cipso_ptr_len;
305
306 if (!cipso_v4_cache_enabled || cipso_v4_cache_bucketsize <= 0)
307 return 0;
308
309 cipso_ptr_len = cipso_ptr[1];
310
311 entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
312 if (!entry)
313 return -ENOMEM;
314 entry->key = kmemdup(cipso_ptr, cipso_ptr_len, GFP_ATOMIC);
315 if (!entry->key) {
316 ret_val = -ENOMEM;
317 goto cache_add_failure;
318 }
319 entry->key_len = cipso_ptr_len;
320 entry->hash = cipso_v4_map_cache_hash(cipso_ptr, cipso_ptr_len);
321 refcount_inc(&secattr->cache->refcount);
322 entry->lsm_data = secattr->cache;
323
324 bkt = entry->hash & (CIPSO_V4_CACHE_BUCKETS - 1);
325 spin_lock_bh(&cipso_v4_cache[bkt].lock);
326 if (cipso_v4_cache[bkt].size < cipso_v4_cache_bucketsize) {
327 list_add(&entry->list, &cipso_v4_cache[bkt].list);
328 cipso_v4_cache[bkt].size += 1;
329 } else {
330 old_entry = list_entry(cipso_v4_cache[bkt].list.prev,
331 struct cipso_v4_map_cache_entry, list);
332 list_del(&old_entry->list);
333 list_add(&entry->list, &cipso_v4_cache[bkt].list);
334 cipso_v4_cache_entry_free(old_entry);
335 }
336 spin_unlock_bh(&cipso_v4_cache[bkt].lock);
337
338 return 0;
339
340 cache_add_failure:
341 if (entry)
342 cipso_v4_cache_entry_free(entry);
343 return ret_val;
344 }
345
346 /*
347 * DOI List Functions
348 */
349
350 /**
351 * cipso_v4_doi_search - Searches for a DOI definition
352 * @doi: the DOI to search for
353 *
354 * Description:
355 * Search the DOI definition list for a DOI definition with a DOI value that
356 * matches @doi. The caller is responsible for calling rcu_read_[un]lock().
357 * Returns a pointer to the DOI definition on success and NULL on failure.
358 */
cipso_v4_doi_search(u32 doi)359 static struct cipso_v4_doi *cipso_v4_doi_search(u32 doi)
360 {
361 struct cipso_v4_doi *iter;
362
363 list_for_each_entry_rcu(iter, &cipso_v4_doi_list, list)
364 if (iter->doi == doi && refcount_read(&iter->refcount))
365 return iter;
366 return NULL;
367 }
368
369 /**
370 * cipso_v4_doi_add - Add a new DOI to the CIPSO protocol engine
371 * @doi_def: the DOI structure
372 * @audit_info: NetLabel audit information
373 *
374 * Description:
375 * The caller defines a new DOI for use by the CIPSO engine and calls this
376 * function to add it to the list of acceptable domains. The caller must
377 * ensure that the mapping table specified in @doi_def->map meets all of the
378 * requirements of the mapping type (see cipso_ipv4.h for details). Returns
379 * zero on success and non-zero on failure.
380 *
381 */
cipso_v4_doi_add(struct cipso_v4_doi * doi_def,struct netlbl_audit * audit_info)382 int cipso_v4_doi_add(struct cipso_v4_doi *doi_def,
383 struct netlbl_audit *audit_info)
384 {
385 int ret_val = -EINVAL;
386 u32 iter;
387 u32 doi;
388 u32 doi_type;
389 struct audit_buffer *audit_buf;
390
391 doi = doi_def->doi;
392 doi_type = doi_def->type;
393
394 if (doi_def->doi == CIPSO_V4_DOI_UNKNOWN)
395 goto doi_add_return;
396 for (iter = 0; iter < CIPSO_V4_TAG_MAXCNT; iter++) {
397 switch (doi_def->tags[iter]) {
398 case CIPSO_V4_TAG_RBITMAP:
399 break;
400 case CIPSO_V4_TAG_RANGE:
401 case CIPSO_V4_TAG_ENUM:
402 if (doi_def->type != CIPSO_V4_MAP_PASS)
403 goto doi_add_return;
404 break;
405 case CIPSO_V4_TAG_LOCAL:
406 if (doi_def->type != CIPSO_V4_MAP_LOCAL)
407 goto doi_add_return;
408 break;
409 case CIPSO_V4_TAG_INVALID:
410 if (iter == 0)
411 goto doi_add_return;
412 break;
413 default:
414 goto doi_add_return;
415 }
416 }
417
418 refcount_set(&doi_def->refcount, 1);
419
420 spin_lock(&cipso_v4_doi_list_lock);
421 if (cipso_v4_doi_search(doi_def->doi)) {
422 spin_unlock(&cipso_v4_doi_list_lock);
423 ret_val = -EEXIST;
424 goto doi_add_return;
425 }
426 list_add_tail_rcu(&doi_def->list, &cipso_v4_doi_list);
427 spin_unlock(&cipso_v4_doi_list_lock);
428 ret_val = 0;
429
430 doi_add_return:
431 audit_buf = netlbl_audit_start(AUDIT_MAC_CIPSOV4_ADD, audit_info);
432 if (audit_buf) {
433 const char *type_str;
434 switch (doi_type) {
435 case CIPSO_V4_MAP_TRANS:
436 type_str = "trans";
437 break;
438 case CIPSO_V4_MAP_PASS:
439 type_str = "pass";
440 break;
441 case CIPSO_V4_MAP_LOCAL:
442 type_str = "local";
443 break;
444 default:
445 type_str = "(unknown)";
446 }
447 audit_log_format(audit_buf,
448 " cipso_doi=%u cipso_type=%s res=%u",
449 doi, type_str, ret_val == 0 ? 1 : 0);
450 audit_log_end(audit_buf);
451 }
452
453 return ret_val;
454 }
455
456 /**
457 * cipso_v4_doi_free - Frees a DOI definition
458 * @doi_def: the DOI definition
459 *
460 * Description:
461 * This function frees all of the memory associated with a DOI definition.
462 *
463 */
cipso_v4_doi_free(struct cipso_v4_doi * doi_def)464 void cipso_v4_doi_free(struct cipso_v4_doi *doi_def)
465 {
466 if (!doi_def)
467 return;
468
469 switch (doi_def->type) {
470 case CIPSO_V4_MAP_TRANS:
471 kfree(doi_def->map.std->lvl.cipso);
472 kfree(doi_def->map.std->lvl.local);
473 kfree(doi_def->map.std->cat.cipso);
474 kfree(doi_def->map.std->cat.local);
475 kfree(doi_def->map.std);
476 break;
477 }
478 kfree(doi_def);
479 }
480
481 /**
482 * cipso_v4_doi_free_rcu - Frees a DOI definition via the RCU pointer
483 * @entry: the entry's RCU field
484 *
485 * Description:
486 * This function is designed to be used as a callback to the call_rcu()
487 * function so that the memory allocated to the DOI definition can be released
488 * safely.
489 *
490 */
cipso_v4_doi_free_rcu(struct rcu_head * entry)491 static void cipso_v4_doi_free_rcu(struct rcu_head *entry)
492 {
493 struct cipso_v4_doi *doi_def;
494
495 doi_def = container_of(entry, struct cipso_v4_doi, rcu);
496 cipso_v4_doi_free(doi_def);
497 }
498
499 /**
500 * cipso_v4_doi_remove - Remove an existing DOI from the CIPSO protocol engine
501 * @doi: the DOI value
502 * @audit_info: NetLabel audit information
503 *
504 * Description:
505 * Removes a DOI definition from the CIPSO engine. The NetLabel routines will
506 * be called to release their own LSM domain mappings as well as our own
507 * domain list. Returns zero on success and negative values on failure.
508 *
509 */
cipso_v4_doi_remove(u32 doi,struct netlbl_audit * audit_info)510 int cipso_v4_doi_remove(u32 doi, struct netlbl_audit *audit_info)
511 {
512 int ret_val;
513 struct cipso_v4_doi *doi_def;
514 struct audit_buffer *audit_buf;
515
516 spin_lock(&cipso_v4_doi_list_lock);
517 doi_def = cipso_v4_doi_search(doi);
518 if (!doi_def) {
519 spin_unlock(&cipso_v4_doi_list_lock);
520 ret_val = -ENOENT;
521 goto doi_remove_return;
522 }
523 list_del_rcu(&doi_def->list);
524 spin_unlock(&cipso_v4_doi_list_lock);
525
526 cipso_v4_doi_putdef(doi_def);
527 ret_val = 0;
528
529 doi_remove_return:
530 audit_buf = netlbl_audit_start(AUDIT_MAC_CIPSOV4_DEL, audit_info);
531 if (audit_buf) {
532 audit_log_format(audit_buf,
533 " cipso_doi=%u res=%u",
534 doi, ret_val == 0 ? 1 : 0);
535 audit_log_end(audit_buf);
536 }
537
538 return ret_val;
539 }
540
541 /**
542 * cipso_v4_doi_getdef - Returns a reference to a valid DOI definition
543 * @doi: the DOI value
544 *
545 * Description:
546 * Searches for a valid DOI definition and if one is found it is returned to
547 * the caller. Otherwise NULL is returned. The caller must ensure that
548 * rcu_read_lock() is held while accessing the returned definition and the DOI
549 * definition reference count is decremented when the caller is done.
550 *
551 */
cipso_v4_doi_getdef(u32 doi)552 struct cipso_v4_doi *cipso_v4_doi_getdef(u32 doi)
553 {
554 struct cipso_v4_doi *doi_def;
555
556 rcu_read_lock();
557 doi_def = cipso_v4_doi_search(doi);
558 if (!doi_def)
559 goto doi_getdef_return;
560 if (!refcount_inc_not_zero(&doi_def->refcount))
561 doi_def = NULL;
562
563 doi_getdef_return:
564 rcu_read_unlock();
565 return doi_def;
566 }
567
568 /**
569 * cipso_v4_doi_putdef - Releases a reference for the given DOI definition
570 * @doi_def: the DOI definition
571 *
572 * Description:
573 * Releases a DOI definition reference obtained from cipso_v4_doi_getdef().
574 *
575 */
cipso_v4_doi_putdef(struct cipso_v4_doi * doi_def)576 void cipso_v4_doi_putdef(struct cipso_v4_doi *doi_def)
577 {
578 if (!doi_def)
579 return;
580
581 if (!refcount_dec_and_test(&doi_def->refcount))
582 return;
583
584 cipso_v4_cache_invalidate();
585 call_rcu(&doi_def->rcu, cipso_v4_doi_free_rcu);
586 }
587
588 /**
589 * cipso_v4_doi_walk - Iterate through the DOI definitions
590 * @skip_cnt: skip past this number of DOI definitions, updated
591 * @callback: callback for each DOI definition
592 * @cb_arg: argument for the callback function
593 *
594 * Description:
595 * Iterate over the DOI definition list, skipping the first @skip_cnt entries.
596 * For each entry call @callback, if @callback returns a negative value stop
597 * 'walking' through the list and return. Updates the value in @skip_cnt upon
598 * return. Returns zero on success, negative values on failure.
599 *
600 */
cipso_v4_doi_walk(u32 * skip_cnt,int (* callback)(struct cipso_v4_doi * doi_def,void * arg),void * cb_arg)601 int cipso_v4_doi_walk(u32 *skip_cnt,
602 int (*callback) (struct cipso_v4_doi *doi_def, void *arg),
603 void *cb_arg)
604 {
605 int ret_val = -ENOENT;
606 u32 doi_cnt = 0;
607 struct cipso_v4_doi *iter_doi;
608
609 rcu_read_lock();
610 list_for_each_entry_rcu(iter_doi, &cipso_v4_doi_list, list)
611 if (refcount_read(&iter_doi->refcount) > 0) {
612 if (doi_cnt++ < *skip_cnt)
613 continue;
614 ret_val = callback(iter_doi, cb_arg);
615 if (ret_val < 0) {
616 doi_cnt--;
617 goto doi_walk_return;
618 }
619 }
620
621 doi_walk_return:
622 rcu_read_unlock();
623 *skip_cnt = doi_cnt;
624 return ret_val;
625 }
626
627 /*
628 * Label Mapping Functions
629 */
630
631 /**
632 * cipso_v4_map_lvl_valid - Checks to see if the given level is understood
633 * @doi_def: the DOI definition
634 * @level: the level to check
635 *
636 * Description:
637 * Checks the given level against the given DOI definition and returns a
638 * negative value if the level does not have a valid mapping and a zero value
639 * if the level is defined by the DOI.
640 *
641 */
cipso_v4_map_lvl_valid(const struct cipso_v4_doi * doi_def,u8 level)642 static int cipso_v4_map_lvl_valid(const struct cipso_v4_doi *doi_def, u8 level)
643 {
644 switch (doi_def->type) {
645 case CIPSO_V4_MAP_PASS:
646 return 0;
647 case CIPSO_V4_MAP_TRANS:
648 if ((level < doi_def->map.std->lvl.cipso_size) &&
649 (doi_def->map.std->lvl.cipso[level] < CIPSO_V4_INV_LVL))
650 return 0;
651 break;
652 }
653
654 return -EFAULT;
655 }
656
657 /**
658 * cipso_v4_map_lvl_hton - Perform a level mapping from the host to the network
659 * @doi_def: the DOI definition
660 * @host_lvl: the host MLS level
661 * @net_lvl: the network/CIPSO MLS level
662 *
663 * Description:
664 * Perform a label mapping to translate a local MLS level to the correct
665 * CIPSO level using the given DOI definition. Returns zero on success,
666 * negative values otherwise.
667 *
668 */
cipso_v4_map_lvl_hton(const struct cipso_v4_doi * doi_def,u32 host_lvl,u32 * net_lvl)669 static int cipso_v4_map_lvl_hton(const struct cipso_v4_doi *doi_def,
670 u32 host_lvl,
671 u32 *net_lvl)
672 {
673 switch (doi_def->type) {
674 case CIPSO_V4_MAP_PASS:
675 *net_lvl = host_lvl;
676 return 0;
677 case CIPSO_V4_MAP_TRANS:
678 if (host_lvl < doi_def->map.std->lvl.local_size &&
679 doi_def->map.std->lvl.local[host_lvl] < CIPSO_V4_INV_LVL) {
680 *net_lvl = doi_def->map.std->lvl.local[host_lvl];
681 return 0;
682 }
683 return -EPERM;
684 }
685
686 return -EINVAL;
687 }
688
689 /**
690 * cipso_v4_map_lvl_ntoh - Perform a level mapping from the network to the host
691 * @doi_def: the DOI definition
692 * @net_lvl: the network/CIPSO MLS level
693 * @host_lvl: the host MLS level
694 *
695 * Description:
696 * Perform a label mapping to translate a CIPSO level to the correct local MLS
697 * level using the given DOI definition. Returns zero on success, negative
698 * values otherwise.
699 *
700 */
cipso_v4_map_lvl_ntoh(const struct cipso_v4_doi * doi_def,u32 net_lvl,u32 * host_lvl)701 static int cipso_v4_map_lvl_ntoh(const struct cipso_v4_doi *doi_def,
702 u32 net_lvl,
703 u32 *host_lvl)
704 {
705 struct cipso_v4_std_map_tbl *map_tbl;
706
707 switch (doi_def->type) {
708 case CIPSO_V4_MAP_PASS:
709 *host_lvl = net_lvl;
710 return 0;
711 case CIPSO_V4_MAP_TRANS:
712 map_tbl = doi_def->map.std;
713 if (net_lvl < map_tbl->lvl.cipso_size &&
714 map_tbl->lvl.cipso[net_lvl] < CIPSO_V4_INV_LVL) {
715 *host_lvl = doi_def->map.std->lvl.cipso[net_lvl];
716 return 0;
717 }
718 return -EPERM;
719 }
720
721 return -EINVAL;
722 }
723
724 /**
725 * cipso_v4_map_cat_rbm_valid - Checks to see if the category bitmap is valid
726 * @doi_def: the DOI definition
727 * @bitmap: category bitmap
728 * @bitmap_len: bitmap length in bytes
729 *
730 * Description:
731 * Checks the given category bitmap against the given DOI definition and
732 * returns a negative value if any of the categories in the bitmap do not have
733 * a valid mapping and a zero value if all of the categories are valid.
734 *
735 */
cipso_v4_map_cat_rbm_valid(const struct cipso_v4_doi * doi_def,const unsigned char * bitmap,u32 bitmap_len)736 static int cipso_v4_map_cat_rbm_valid(const struct cipso_v4_doi *doi_def,
737 const unsigned char *bitmap,
738 u32 bitmap_len)
739 {
740 int cat = -1;
741 u32 bitmap_len_bits = bitmap_len * 8;
742 u32 cipso_cat_size;
743 u32 *cipso_array;
744
745 switch (doi_def->type) {
746 case CIPSO_V4_MAP_PASS:
747 return 0;
748 case CIPSO_V4_MAP_TRANS:
749 cipso_cat_size = doi_def->map.std->cat.cipso_size;
750 cipso_array = doi_def->map.std->cat.cipso;
751 for (;;) {
752 cat = netlbl_bitmap_walk(bitmap,
753 bitmap_len_bits,
754 cat + 1,
755 1);
756 if (cat < 0)
757 break;
758 if (cat >= cipso_cat_size ||
759 cipso_array[cat] >= CIPSO_V4_INV_CAT)
760 return -EFAULT;
761 }
762
763 if (cat == -1)
764 return 0;
765 break;
766 }
767
768 return -EFAULT;
769 }
770
771 /**
772 * cipso_v4_map_cat_rbm_hton - Perform a category mapping from host to network
773 * @doi_def: the DOI definition
774 * @secattr: the security attributes
775 * @net_cat: the zero'd out category bitmap in network/CIPSO format
776 * @net_cat_len: the length of the CIPSO bitmap in bytes
777 *
778 * Description:
779 * Perform a label mapping to translate a local MLS category bitmap to the
780 * correct CIPSO bitmap using the given DOI definition. Returns the minimum
781 * size in bytes of the network bitmap on success, negative values otherwise.
782 *
783 */
cipso_v4_map_cat_rbm_hton(const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr,unsigned char * net_cat,u32 net_cat_len)784 static int cipso_v4_map_cat_rbm_hton(const struct cipso_v4_doi *doi_def,
785 const struct netlbl_lsm_secattr *secattr,
786 unsigned char *net_cat,
787 u32 net_cat_len)
788 {
789 int host_spot = -1;
790 u32 net_spot = CIPSO_V4_INV_CAT;
791 u32 net_spot_max = 0;
792 u32 net_clen_bits = net_cat_len * 8;
793 u32 host_cat_size = 0;
794 u32 *host_cat_array = NULL;
795
796 if (doi_def->type == CIPSO_V4_MAP_TRANS) {
797 host_cat_size = doi_def->map.std->cat.local_size;
798 host_cat_array = doi_def->map.std->cat.local;
799 }
800
801 for (;;) {
802 host_spot = netlbl_catmap_walk(secattr->attr.mls.cat,
803 host_spot + 1);
804 if (host_spot < 0)
805 break;
806
807 switch (doi_def->type) {
808 case CIPSO_V4_MAP_PASS:
809 net_spot = host_spot;
810 break;
811 case CIPSO_V4_MAP_TRANS:
812 if (host_spot >= host_cat_size)
813 return -EPERM;
814 net_spot = host_cat_array[host_spot];
815 if (net_spot >= CIPSO_V4_INV_CAT)
816 return -EPERM;
817 break;
818 }
819 if (net_spot >= net_clen_bits)
820 return -ENOSPC;
821 netlbl_bitmap_setbit(net_cat, net_spot, 1);
822
823 if (net_spot > net_spot_max)
824 net_spot_max = net_spot;
825 }
826
827 if (++net_spot_max % 8)
828 return net_spot_max / 8 + 1;
829 return net_spot_max / 8;
830 }
831
832 /**
833 * cipso_v4_map_cat_rbm_ntoh - Perform a category mapping from network to host
834 * @doi_def: the DOI definition
835 * @net_cat: the category bitmap in network/CIPSO format
836 * @net_cat_len: the length of the CIPSO bitmap in bytes
837 * @secattr: the security attributes
838 *
839 * Description:
840 * Perform a label mapping to translate a CIPSO bitmap to the correct local
841 * MLS category bitmap using the given DOI definition. Returns zero on
842 * success, negative values on failure.
843 *
844 */
cipso_v4_map_cat_rbm_ntoh(const struct cipso_v4_doi * doi_def,const unsigned char * net_cat,u32 net_cat_len,struct netlbl_lsm_secattr * secattr)845 static int cipso_v4_map_cat_rbm_ntoh(const struct cipso_v4_doi *doi_def,
846 const unsigned char *net_cat,
847 u32 net_cat_len,
848 struct netlbl_lsm_secattr *secattr)
849 {
850 int ret_val;
851 int net_spot = -1;
852 u32 host_spot = CIPSO_V4_INV_CAT;
853 u32 net_clen_bits = net_cat_len * 8;
854 u32 net_cat_size = 0;
855 u32 *net_cat_array = NULL;
856
857 if (doi_def->type == CIPSO_V4_MAP_TRANS) {
858 net_cat_size = doi_def->map.std->cat.cipso_size;
859 net_cat_array = doi_def->map.std->cat.cipso;
860 }
861
862 for (;;) {
863 net_spot = netlbl_bitmap_walk(net_cat,
864 net_clen_bits,
865 net_spot + 1,
866 1);
867 if (net_spot < 0) {
868 if (net_spot == -2)
869 return -EFAULT;
870 return 0;
871 }
872
873 switch (doi_def->type) {
874 case CIPSO_V4_MAP_PASS:
875 host_spot = net_spot;
876 break;
877 case CIPSO_V4_MAP_TRANS:
878 if (net_spot >= net_cat_size)
879 return -EPERM;
880 host_spot = net_cat_array[net_spot];
881 if (host_spot >= CIPSO_V4_INV_CAT)
882 return -EPERM;
883 break;
884 }
885 ret_val = netlbl_catmap_setbit(&secattr->attr.mls.cat,
886 host_spot,
887 GFP_ATOMIC);
888 if (ret_val != 0)
889 return ret_val;
890 }
891
892 return -EINVAL;
893 }
894
895 /**
896 * cipso_v4_map_cat_enum_valid - Checks to see if the categories are valid
897 * @doi_def: the DOI definition
898 * @enumcat: category list
899 * @enumcat_len: length of the category list in bytes
900 *
901 * Description:
902 * Checks the given categories against the given DOI definition and returns a
903 * negative value if any of the categories do not have a valid mapping and a
904 * zero value if all of the categories are valid.
905 *
906 */
cipso_v4_map_cat_enum_valid(const struct cipso_v4_doi * doi_def,const unsigned char * enumcat,u32 enumcat_len)907 static int cipso_v4_map_cat_enum_valid(const struct cipso_v4_doi *doi_def,
908 const unsigned char *enumcat,
909 u32 enumcat_len)
910 {
911 u16 cat;
912 int cat_prev = -1;
913 u32 iter;
914
915 if (doi_def->type != CIPSO_V4_MAP_PASS || enumcat_len & 0x01)
916 return -EFAULT;
917
918 for (iter = 0; iter < enumcat_len; iter += 2) {
919 cat = get_unaligned_be16(&enumcat[iter]);
920 if (cat <= cat_prev)
921 return -EFAULT;
922 cat_prev = cat;
923 }
924
925 return 0;
926 }
927
928 /**
929 * cipso_v4_map_cat_enum_hton - Perform a category mapping from host to network
930 * @doi_def: the DOI definition
931 * @secattr: the security attributes
932 * @net_cat: the zero'd out category list in network/CIPSO format
933 * @net_cat_len: the length of the CIPSO category list in bytes
934 *
935 * Description:
936 * Perform a label mapping to translate a local MLS category bitmap to the
937 * correct CIPSO category list using the given DOI definition. Returns the
938 * size in bytes of the network category bitmap on success, negative values
939 * otherwise.
940 *
941 */
cipso_v4_map_cat_enum_hton(const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr,unsigned char * net_cat,u32 net_cat_len)942 static int cipso_v4_map_cat_enum_hton(const struct cipso_v4_doi *doi_def,
943 const struct netlbl_lsm_secattr *secattr,
944 unsigned char *net_cat,
945 u32 net_cat_len)
946 {
947 int cat = -1;
948 u32 cat_iter = 0;
949
950 for (;;) {
951 cat = netlbl_catmap_walk(secattr->attr.mls.cat, cat + 1);
952 if (cat < 0)
953 break;
954 if ((cat_iter + 2) > net_cat_len)
955 return -ENOSPC;
956
957 *((__be16 *)&net_cat[cat_iter]) = htons(cat);
958 cat_iter += 2;
959 }
960
961 return cat_iter;
962 }
963
964 /**
965 * cipso_v4_map_cat_enum_ntoh - Perform a category mapping from network to host
966 * @doi_def: the DOI definition
967 * @net_cat: the category list in network/CIPSO format
968 * @net_cat_len: the length of the CIPSO bitmap in bytes
969 * @secattr: the security attributes
970 *
971 * Description:
972 * Perform a label mapping to translate a CIPSO category list to the correct
973 * local MLS category bitmap using the given DOI definition. Returns zero on
974 * success, negative values on failure.
975 *
976 */
cipso_v4_map_cat_enum_ntoh(const struct cipso_v4_doi * doi_def,const unsigned char * net_cat,u32 net_cat_len,struct netlbl_lsm_secattr * secattr)977 static int cipso_v4_map_cat_enum_ntoh(const struct cipso_v4_doi *doi_def,
978 const unsigned char *net_cat,
979 u32 net_cat_len,
980 struct netlbl_lsm_secattr *secattr)
981 {
982 int ret_val;
983 u32 iter;
984
985 for (iter = 0; iter < net_cat_len; iter += 2) {
986 ret_val = netlbl_catmap_setbit(&secattr->attr.mls.cat,
987 get_unaligned_be16(&net_cat[iter]),
988 GFP_ATOMIC);
989 if (ret_val != 0)
990 return ret_val;
991 }
992
993 return 0;
994 }
995
996 /**
997 * cipso_v4_map_cat_rng_valid - Checks to see if the categories are valid
998 * @doi_def: the DOI definition
999 * @rngcat: category list
1000 * @rngcat_len: length of the category list in bytes
1001 *
1002 * Description:
1003 * Checks the given categories against the given DOI definition and returns a
1004 * negative value if any of the categories do not have a valid mapping and a
1005 * zero value if all of the categories are valid.
1006 *
1007 */
cipso_v4_map_cat_rng_valid(const struct cipso_v4_doi * doi_def,const unsigned char * rngcat,u32 rngcat_len)1008 static int cipso_v4_map_cat_rng_valid(const struct cipso_v4_doi *doi_def,
1009 const unsigned char *rngcat,
1010 u32 rngcat_len)
1011 {
1012 u16 cat_high;
1013 u16 cat_low;
1014 u32 cat_prev = CIPSO_V4_MAX_REM_CATS + 1;
1015 u32 iter;
1016
1017 if (doi_def->type != CIPSO_V4_MAP_PASS || rngcat_len & 0x01)
1018 return -EFAULT;
1019
1020 for (iter = 0; iter < rngcat_len; iter += 4) {
1021 cat_high = get_unaligned_be16(&rngcat[iter]);
1022 if ((iter + 4) <= rngcat_len)
1023 cat_low = get_unaligned_be16(&rngcat[iter + 2]);
1024 else
1025 cat_low = 0;
1026
1027 if (cat_high > cat_prev)
1028 return -EFAULT;
1029
1030 cat_prev = cat_low;
1031 }
1032
1033 return 0;
1034 }
1035
1036 /**
1037 * cipso_v4_map_cat_rng_hton - Perform a category mapping from host to network
1038 * @doi_def: the DOI definition
1039 * @secattr: the security attributes
1040 * @net_cat: the zero'd out category list in network/CIPSO format
1041 * @net_cat_len: the length of the CIPSO category list in bytes
1042 *
1043 * Description:
1044 * Perform a label mapping to translate a local MLS category bitmap to the
1045 * correct CIPSO category list using the given DOI definition. Returns the
1046 * size in bytes of the network category bitmap on success, negative values
1047 * otherwise.
1048 *
1049 */
cipso_v4_map_cat_rng_hton(const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr,unsigned char * net_cat,u32 net_cat_len)1050 static int cipso_v4_map_cat_rng_hton(const struct cipso_v4_doi *doi_def,
1051 const struct netlbl_lsm_secattr *secattr,
1052 unsigned char *net_cat,
1053 u32 net_cat_len)
1054 {
1055 int iter = -1;
1056 u16 array[CIPSO_V4_TAG_RNG_CAT_MAX * 2];
1057 u32 array_cnt = 0;
1058 u32 cat_size = 0;
1059
1060 /* make sure we don't overflow the 'array[]' variable */
1061 if (net_cat_len >
1062 (CIPSO_V4_OPT_LEN_MAX - CIPSO_V4_HDR_LEN - CIPSO_V4_TAG_RNG_BLEN))
1063 return -ENOSPC;
1064
1065 for (;;) {
1066 iter = netlbl_catmap_walk(secattr->attr.mls.cat, iter + 1);
1067 if (iter < 0)
1068 break;
1069 cat_size += (iter == 0 ? 0 : sizeof(u16));
1070 if (cat_size > net_cat_len)
1071 return -ENOSPC;
1072 array[array_cnt++] = iter;
1073
1074 iter = netlbl_catmap_walkrng(secattr->attr.mls.cat, iter);
1075 if (iter < 0)
1076 return -EFAULT;
1077 cat_size += sizeof(u16);
1078 if (cat_size > net_cat_len)
1079 return -ENOSPC;
1080 array[array_cnt++] = iter;
1081 }
1082
1083 for (iter = 0; array_cnt > 0;) {
1084 *((__be16 *)&net_cat[iter]) = htons(array[--array_cnt]);
1085 iter += 2;
1086 array_cnt--;
1087 if (array[array_cnt] != 0) {
1088 *((__be16 *)&net_cat[iter]) = htons(array[array_cnt]);
1089 iter += 2;
1090 }
1091 }
1092
1093 return cat_size;
1094 }
1095
1096 /**
1097 * cipso_v4_map_cat_rng_ntoh - Perform a category mapping from network to host
1098 * @doi_def: the DOI definition
1099 * @net_cat: the category list in network/CIPSO format
1100 * @net_cat_len: the length of the CIPSO bitmap in bytes
1101 * @secattr: the security attributes
1102 *
1103 * Description:
1104 * Perform a label mapping to translate a CIPSO category list to the correct
1105 * local MLS category bitmap using the given DOI definition. Returns zero on
1106 * success, negative values on failure.
1107 *
1108 */
cipso_v4_map_cat_rng_ntoh(const struct cipso_v4_doi * doi_def,const unsigned char * net_cat,u32 net_cat_len,struct netlbl_lsm_secattr * secattr)1109 static int cipso_v4_map_cat_rng_ntoh(const struct cipso_v4_doi *doi_def,
1110 const unsigned char *net_cat,
1111 u32 net_cat_len,
1112 struct netlbl_lsm_secattr *secattr)
1113 {
1114 int ret_val;
1115 u32 net_iter;
1116 u16 cat_low;
1117 u16 cat_high;
1118
1119 for (net_iter = 0; net_iter < net_cat_len; net_iter += 4) {
1120 cat_high = get_unaligned_be16(&net_cat[net_iter]);
1121 if ((net_iter + 4) <= net_cat_len)
1122 cat_low = get_unaligned_be16(&net_cat[net_iter + 2]);
1123 else
1124 cat_low = 0;
1125
1126 ret_val = netlbl_catmap_setrng(&secattr->attr.mls.cat,
1127 cat_low,
1128 cat_high,
1129 GFP_ATOMIC);
1130 if (ret_val != 0)
1131 return ret_val;
1132 }
1133
1134 return 0;
1135 }
1136
1137 /*
1138 * Protocol Handling Functions
1139 */
1140
1141 /**
1142 * cipso_v4_gentag_hdr - Generate a CIPSO option header
1143 * @doi_def: the DOI definition
1144 * @len: the total tag length in bytes, not including this header
1145 * @buf: the CIPSO option buffer
1146 *
1147 * Description:
1148 * Write a CIPSO header into the beginning of @buffer.
1149 *
1150 */
cipso_v4_gentag_hdr(const struct cipso_v4_doi * doi_def,unsigned char * buf,u32 len)1151 static void cipso_v4_gentag_hdr(const struct cipso_v4_doi *doi_def,
1152 unsigned char *buf,
1153 u32 len)
1154 {
1155 buf[0] = IPOPT_CIPSO;
1156 buf[1] = CIPSO_V4_HDR_LEN + len;
1157 *(__be32 *)&buf[2] = htonl(doi_def->doi);
1158 }
1159
1160 /**
1161 * cipso_v4_gentag_rbm - Generate a CIPSO restricted bitmap tag (type #1)
1162 * @doi_def: the DOI definition
1163 * @secattr: the security attributes
1164 * @buffer: the option buffer
1165 * @buffer_len: length of buffer in bytes
1166 *
1167 * Description:
1168 * Generate a CIPSO option using the restricted bitmap tag, tag type #1. The
1169 * actual buffer length may be larger than the indicated size due to
1170 * translation between host and network category bitmaps. Returns the size of
1171 * the tag on success, negative values on failure.
1172 *
1173 */
cipso_v4_gentag_rbm(const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr,unsigned char * buffer,u32 buffer_len)1174 static int cipso_v4_gentag_rbm(const struct cipso_v4_doi *doi_def,
1175 const struct netlbl_lsm_secattr *secattr,
1176 unsigned char *buffer,
1177 u32 buffer_len)
1178 {
1179 int ret_val;
1180 u32 tag_len;
1181 u32 level;
1182
1183 if ((secattr->flags & NETLBL_SECATTR_MLS_LVL) == 0)
1184 return -EPERM;
1185
1186 ret_val = cipso_v4_map_lvl_hton(doi_def,
1187 secattr->attr.mls.lvl,
1188 &level);
1189 if (ret_val != 0)
1190 return ret_val;
1191
1192 if (secattr->flags & NETLBL_SECATTR_MLS_CAT) {
1193 ret_val = cipso_v4_map_cat_rbm_hton(doi_def,
1194 secattr,
1195 &buffer[4],
1196 buffer_len - 4);
1197 if (ret_val < 0)
1198 return ret_val;
1199
1200 /* This will send packets using the "optimized" format when
1201 * possible as specified in section 3.4.2.6 of the
1202 * CIPSO draft. */
1203 if (cipso_v4_rbm_optfmt && ret_val > 0 && ret_val <= 10)
1204 tag_len = 14;
1205 else
1206 tag_len = 4 + ret_val;
1207 } else
1208 tag_len = 4;
1209
1210 buffer[0] = CIPSO_V4_TAG_RBITMAP;
1211 buffer[1] = tag_len;
1212 buffer[3] = level;
1213
1214 return tag_len;
1215 }
1216
1217 /**
1218 * cipso_v4_parsetag_rbm - Parse a CIPSO restricted bitmap tag
1219 * @doi_def: the DOI definition
1220 * @tag: the CIPSO tag
1221 * @secattr: the security attributes
1222 *
1223 * Description:
1224 * Parse a CIPSO restricted bitmap tag (tag type #1) and return the security
1225 * attributes in @secattr. Return zero on success, negatives values on
1226 * failure.
1227 *
1228 */
cipso_v4_parsetag_rbm(const struct cipso_v4_doi * doi_def,const unsigned char * tag,struct netlbl_lsm_secattr * secattr)1229 static int cipso_v4_parsetag_rbm(const struct cipso_v4_doi *doi_def,
1230 const unsigned char *tag,
1231 struct netlbl_lsm_secattr *secattr)
1232 {
1233 int ret_val;
1234 u8 tag_len = tag[1];
1235 u32 level;
1236
1237 ret_val = cipso_v4_map_lvl_ntoh(doi_def, tag[3], &level);
1238 if (ret_val != 0)
1239 return ret_val;
1240 secattr->attr.mls.lvl = level;
1241 secattr->flags |= NETLBL_SECATTR_MLS_LVL;
1242
1243 if (tag_len > 4) {
1244 ret_val = cipso_v4_map_cat_rbm_ntoh(doi_def,
1245 &tag[4],
1246 tag_len - 4,
1247 secattr);
1248 if (ret_val != 0) {
1249 netlbl_catmap_free(secattr->attr.mls.cat);
1250 return ret_val;
1251 }
1252
1253 if (secattr->attr.mls.cat)
1254 secattr->flags |= NETLBL_SECATTR_MLS_CAT;
1255 }
1256
1257 return 0;
1258 }
1259
1260 /**
1261 * cipso_v4_gentag_enum - Generate a CIPSO enumerated tag (type #2)
1262 * @doi_def: the DOI definition
1263 * @secattr: the security attributes
1264 * @buffer: the option buffer
1265 * @buffer_len: length of buffer in bytes
1266 *
1267 * Description:
1268 * Generate a CIPSO option using the enumerated tag, tag type #2. Returns the
1269 * size of the tag on success, negative values on failure.
1270 *
1271 */
cipso_v4_gentag_enum(const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr,unsigned char * buffer,u32 buffer_len)1272 static int cipso_v4_gentag_enum(const struct cipso_v4_doi *doi_def,
1273 const struct netlbl_lsm_secattr *secattr,
1274 unsigned char *buffer,
1275 u32 buffer_len)
1276 {
1277 int ret_val;
1278 u32 tag_len;
1279 u32 level;
1280
1281 if (!(secattr->flags & NETLBL_SECATTR_MLS_LVL))
1282 return -EPERM;
1283
1284 ret_val = cipso_v4_map_lvl_hton(doi_def,
1285 secattr->attr.mls.lvl,
1286 &level);
1287 if (ret_val != 0)
1288 return ret_val;
1289
1290 if (secattr->flags & NETLBL_SECATTR_MLS_CAT) {
1291 ret_val = cipso_v4_map_cat_enum_hton(doi_def,
1292 secattr,
1293 &buffer[4],
1294 buffer_len - 4);
1295 if (ret_val < 0)
1296 return ret_val;
1297
1298 tag_len = 4 + ret_val;
1299 } else
1300 tag_len = 4;
1301
1302 buffer[0] = CIPSO_V4_TAG_ENUM;
1303 buffer[1] = tag_len;
1304 buffer[3] = level;
1305
1306 return tag_len;
1307 }
1308
1309 /**
1310 * cipso_v4_parsetag_enum - Parse a CIPSO enumerated tag
1311 * @doi_def: the DOI definition
1312 * @tag: the CIPSO tag
1313 * @secattr: the security attributes
1314 *
1315 * Description:
1316 * Parse a CIPSO enumerated tag (tag type #2) and return the security
1317 * attributes in @secattr. Return zero on success, negatives values on
1318 * failure.
1319 *
1320 */
cipso_v4_parsetag_enum(const struct cipso_v4_doi * doi_def,const unsigned char * tag,struct netlbl_lsm_secattr * secattr)1321 static int cipso_v4_parsetag_enum(const struct cipso_v4_doi *doi_def,
1322 const unsigned char *tag,
1323 struct netlbl_lsm_secattr *secattr)
1324 {
1325 int ret_val;
1326 u8 tag_len = tag[1];
1327 u32 level;
1328
1329 ret_val = cipso_v4_map_lvl_ntoh(doi_def, tag[3], &level);
1330 if (ret_val != 0)
1331 return ret_val;
1332 secattr->attr.mls.lvl = level;
1333 secattr->flags |= NETLBL_SECATTR_MLS_LVL;
1334
1335 if (tag_len > 4) {
1336 ret_val = cipso_v4_map_cat_enum_ntoh(doi_def,
1337 &tag[4],
1338 tag_len - 4,
1339 secattr);
1340 if (ret_val != 0) {
1341 netlbl_catmap_free(secattr->attr.mls.cat);
1342 return ret_val;
1343 }
1344
1345 secattr->flags |= NETLBL_SECATTR_MLS_CAT;
1346 }
1347
1348 return 0;
1349 }
1350
1351 /**
1352 * cipso_v4_gentag_rng - Generate a CIPSO ranged tag (type #5)
1353 * @doi_def: the DOI definition
1354 * @secattr: the security attributes
1355 * @buffer: the option buffer
1356 * @buffer_len: length of buffer in bytes
1357 *
1358 * Description:
1359 * Generate a CIPSO option using the ranged tag, tag type #5. Returns the
1360 * size of the tag on success, negative values on failure.
1361 *
1362 */
cipso_v4_gentag_rng(const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr,unsigned char * buffer,u32 buffer_len)1363 static int cipso_v4_gentag_rng(const struct cipso_v4_doi *doi_def,
1364 const struct netlbl_lsm_secattr *secattr,
1365 unsigned char *buffer,
1366 u32 buffer_len)
1367 {
1368 int ret_val;
1369 u32 tag_len;
1370 u32 level;
1371
1372 if (!(secattr->flags & NETLBL_SECATTR_MLS_LVL))
1373 return -EPERM;
1374
1375 ret_val = cipso_v4_map_lvl_hton(doi_def,
1376 secattr->attr.mls.lvl,
1377 &level);
1378 if (ret_val != 0)
1379 return ret_val;
1380
1381 if (secattr->flags & NETLBL_SECATTR_MLS_CAT) {
1382 ret_val = cipso_v4_map_cat_rng_hton(doi_def,
1383 secattr,
1384 &buffer[4],
1385 buffer_len - 4);
1386 if (ret_val < 0)
1387 return ret_val;
1388
1389 tag_len = 4 + ret_val;
1390 } else
1391 tag_len = 4;
1392
1393 buffer[0] = CIPSO_V4_TAG_RANGE;
1394 buffer[1] = tag_len;
1395 buffer[3] = level;
1396
1397 return tag_len;
1398 }
1399
1400 /**
1401 * cipso_v4_parsetag_rng - Parse a CIPSO ranged tag
1402 * @doi_def: the DOI definition
1403 * @tag: the CIPSO tag
1404 * @secattr: the security attributes
1405 *
1406 * Description:
1407 * Parse a CIPSO ranged tag (tag type #5) and return the security attributes
1408 * in @secattr. Return zero on success, negatives values on failure.
1409 *
1410 */
cipso_v4_parsetag_rng(const struct cipso_v4_doi * doi_def,const unsigned char * tag,struct netlbl_lsm_secattr * secattr)1411 static int cipso_v4_parsetag_rng(const struct cipso_v4_doi *doi_def,
1412 const unsigned char *tag,
1413 struct netlbl_lsm_secattr *secattr)
1414 {
1415 int ret_val;
1416 u8 tag_len = tag[1];
1417 u32 level;
1418
1419 ret_val = cipso_v4_map_lvl_ntoh(doi_def, tag[3], &level);
1420 if (ret_val != 0)
1421 return ret_val;
1422 secattr->attr.mls.lvl = level;
1423 secattr->flags |= NETLBL_SECATTR_MLS_LVL;
1424
1425 if (tag_len > 4) {
1426 ret_val = cipso_v4_map_cat_rng_ntoh(doi_def,
1427 &tag[4],
1428 tag_len - 4,
1429 secattr);
1430 if (ret_val != 0) {
1431 netlbl_catmap_free(secattr->attr.mls.cat);
1432 return ret_val;
1433 }
1434
1435 if (secattr->attr.mls.cat)
1436 secattr->flags |= NETLBL_SECATTR_MLS_CAT;
1437 }
1438
1439 return 0;
1440 }
1441
1442 /**
1443 * cipso_v4_gentag_loc - Generate a CIPSO local tag (non-standard)
1444 * @doi_def: the DOI definition
1445 * @secattr: the security attributes
1446 * @buffer: the option buffer
1447 * @buffer_len: length of buffer in bytes
1448 *
1449 * Description:
1450 * Generate a CIPSO option using the local tag. Returns the size of the tag
1451 * on success, negative values on failure.
1452 *
1453 */
cipso_v4_gentag_loc(const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr,unsigned char * buffer,u32 buffer_len)1454 static int cipso_v4_gentag_loc(const struct cipso_v4_doi *doi_def,
1455 const struct netlbl_lsm_secattr *secattr,
1456 unsigned char *buffer,
1457 u32 buffer_len)
1458 {
1459 if (!(secattr->flags & NETLBL_SECATTR_SECID))
1460 return -EPERM;
1461
1462 buffer[0] = CIPSO_V4_TAG_LOCAL;
1463 buffer[1] = CIPSO_V4_TAG_LOC_BLEN;
1464 *(u32 *)&buffer[2] = secattr->attr.secid;
1465
1466 return CIPSO_V4_TAG_LOC_BLEN;
1467 }
1468
1469 /**
1470 * cipso_v4_parsetag_loc - Parse a CIPSO local tag
1471 * @doi_def: the DOI definition
1472 * @tag: the CIPSO tag
1473 * @secattr: the security attributes
1474 *
1475 * Description:
1476 * Parse a CIPSO local tag and return the security attributes in @secattr.
1477 * Return zero on success, negatives values on failure.
1478 *
1479 */
cipso_v4_parsetag_loc(const struct cipso_v4_doi * doi_def,const unsigned char * tag,struct netlbl_lsm_secattr * secattr)1480 static int cipso_v4_parsetag_loc(const struct cipso_v4_doi *doi_def,
1481 const unsigned char *tag,
1482 struct netlbl_lsm_secattr *secattr)
1483 {
1484 secattr->attr.secid = *(u32 *)&tag[2];
1485 secattr->flags |= NETLBL_SECATTR_SECID;
1486
1487 return 0;
1488 }
1489
1490 /**
1491 * cipso_v4_optptr - Find the CIPSO option in the packet
1492 * @skb: the packet
1493 *
1494 * Description:
1495 * Parse the packet's IP header looking for a CIPSO option. Returns a pointer
1496 * to the start of the CIPSO option on success, NULL if one is not found.
1497 *
1498 */
cipso_v4_optptr(const struct sk_buff * skb)1499 unsigned char *cipso_v4_optptr(const struct sk_buff *skb)
1500 {
1501 const struct iphdr *iph = ip_hdr(skb);
1502 unsigned char *optptr = (unsigned char *)&(ip_hdr(skb)[1]);
1503 int optlen;
1504 int taglen;
1505
1506 for (optlen = iph->ihl*4 - sizeof(struct iphdr); optlen > 1; ) {
1507 switch (optptr[0]) {
1508 case IPOPT_END:
1509 return NULL;
1510 case IPOPT_NOOP:
1511 taglen = 1;
1512 break;
1513 default:
1514 taglen = optptr[1];
1515 }
1516 if (!taglen || taglen > optlen)
1517 return NULL;
1518 if (optptr[0] == IPOPT_CIPSO)
1519 return optptr;
1520
1521 optlen -= taglen;
1522 optptr += taglen;
1523 }
1524
1525 return NULL;
1526 }
1527
1528 /**
1529 * cipso_v4_validate - Validate a CIPSO option
1530 * @skb: the packet
1531 * @option: the start of the option, on error it is set to point to the error
1532 *
1533 * Description:
1534 * This routine is called to validate a CIPSO option, it checks all of the
1535 * fields to ensure that they are at least valid, see the draft snippet below
1536 * for details. If the option is valid then a zero value is returned and
1537 * the value of @option is unchanged. If the option is invalid then a
1538 * non-zero value is returned and @option is adjusted to point to the
1539 * offending portion of the option. From the IETF draft ...
1540 *
1541 * "If any field within the CIPSO options, such as the DOI identifier, is not
1542 * recognized the IP datagram is discarded and an ICMP 'parameter problem'
1543 * (type 12) is generated and returned. The ICMP code field is set to 'bad
1544 * parameter' (code 0) and the pointer is set to the start of the CIPSO field
1545 * that is unrecognized."
1546 *
1547 */
cipso_v4_validate(const struct sk_buff * skb,unsigned char ** option)1548 int cipso_v4_validate(const struct sk_buff *skb, unsigned char **option)
1549 {
1550 unsigned char *opt = *option;
1551 unsigned char *tag;
1552 unsigned char opt_iter;
1553 unsigned char err_offset = 0;
1554 u8 opt_len;
1555 u8 tag_len;
1556 struct cipso_v4_doi *doi_def = NULL;
1557 u32 tag_iter;
1558
1559 /* caller already checks for length values that are too large */
1560 opt_len = opt[1];
1561 if (opt_len < 8) {
1562 err_offset = 1;
1563 goto validate_return;
1564 }
1565
1566 rcu_read_lock();
1567 doi_def = cipso_v4_doi_search(get_unaligned_be32(&opt[2]));
1568 if (!doi_def) {
1569 err_offset = 2;
1570 goto validate_return_locked;
1571 }
1572
1573 opt_iter = CIPSO_V4_HDR_LEN;
1574 tag = opt + opt_iter;
1575 while (opt_iter < opt_len) {
1576 for (tag_iter = 0; doi_def->tags[tag_iter] != tag[0];)
1577 if (doi_def->tags[tag_iter] == CIPSO_V4_TAG_INVALID ||
1578 ++tag_iter == CIPSO_V4_TAG_MAXCNT) {
1579 err_offset = opt_iter;
1580 goto validate_return_locked;
1581 }
1582
1583 if (opt_iter + 1 == opt_len) {
1584 err_offset = opt_iter;
1585 goto validate_return_locked;
1586 }
1587 tag_len = tag[1];
1588 if (tag_len > (opt_len - opt_iter)) {
1589 err_offset = opt_iter + 1;
1590 goto validate_return_locked;
1591 }
1592
1593 switch (tag[0]) {
1594 case CIPSO_V4_TAG_RBITMAP:
1595 if (tag_len < CIPSO_V4_TAG_RBM_BLEN) {
1596 err_offset = opt_iter + 1;
1597 goto validate_return_locked;
1598 }
1599
1600 /* We are already going to do all the verification
1601 * necessary at the socket layer so from our point of
1602 * view it is safe to turn these checks off (and less
1603 * work), however, the CIPSO draft says we should do
1604 * all the CIPSO validations here but it doesn't
1605 * really specify _exactly_ what we need to validate
1606 * ... so, just make it a sysctl tunable. */
1607 if (cipso_v4_rbm_strictvalid) {
1608 if (cipso_v4_map_lvl_valid(doi_def,
1609 tag[3]) < 0) {
1610 err_offset = opt_iter + 3;
1611 goto validate_return_locked;
1612 }
1613 if (tag_len > CIPSO_V4_TAG_RBM_BLEN &&
1614 cipso_v4_map_cat_rbm_valid(doi_def,
1615 &tag[4],
1616 tag_len - 4) < 0) {
1617 err_offset = opt_iter + 4;
1618 goto validate_return_locked;
1619 }
1620 }
1621 break;
1622 case CIPSO_V4_TAG_ENUM:
1623 if (tag_len < CIPSO_V4_TAG_ENUM_BLEN) {
1624 err_offset = opt_iter + 1;
1625 goto validate_return_locked;
1626 }
1627
1628 if (cipso_v4_map_lvl_valid(doi_def,
1629 tag[3]) < 0) {
1630 err_offset = opt_iter + 3;
1631 goto validate_return_locked;
1632 }
1633 if (tag_len > CIPSO_V4_TAG_ENUM_BLEN &&
1634 cipso_v4_map_cat_enum_valid(doi_def,
1635 &tag[4],
1636 tag_len - 4) < 0) {
1637 err_offset = opt_iter + 4;
1638 goto validate_return_locked;
1639 }
1640 break;
1641 case CIPSO_V4_TAG_RANGE:
1642 if (tag_len < CIPSO_V4_TAG_RNG_BLEN) {
1643 err_offset = opt_iter + 1;
1644 goto validate_return_locked;
1645 }
1646
1647 if (cipso_v4_map_lvl_valid(doi_def,
1648 tag[3]) < 0) {
1649 err_offset = opt_iter + 3;
1650 goto validate_return_locked;
1651 }
1652 if (tag_len > CIPSO_V4_TAG_RNG_BLEN &&
1653 cipso_v4_map_cat_rng_valid(doi_def,
1654 &tag[4],
1655 tag_len - 4) < 0) {
1656 err_offset = opt_iter + 4;
1657 goto validate_return_locked;
1658 }
1659 break;
1660 case CIPSO_V4_TAG_LOCAL:
1661 /* This is a non-standard tag that we only allow for
1662 * local connections, so if the incoming interface is
1663 * not the loopback device drop the packet. Further,
1664 * there is no legitimate reason for setting this from
1665 * userspace so reject it if skb is NULL. */
1666 if (!skb || !(skb->dev->flags & IFF_LOOPBACK)) {
1667 err_offset = opt_iter;
1668 goto validate_return_locked;
1669 }
1670 if (tag_len != CIPSO_V4_TAG_LOC_BLEN) {
1671 err_offset = opt_iter + 1;
1672 goto validate_return_locked;
1673 }
1674 break;
1675 default:
1676 err_offset = opt_iter;
1677 goto validate_return_locked;
1678 }
1679
1680 tag += tag_len;
1681 opt_iter += tag_len;
1682 }
1683
1684 validate_return_locked:
1685 rcu_read_unlock();
1686 validate_return:
1687 *option = opt + err_offset;
1688 return err_offset;
1689 }
1690
1691 /**
1692 * cipso_v4_error - Send the correct response for a bad packet
1693 * @skb: the packet
1694 * @error: the error code
1695 * @gateway: CIPSO gateway flag
1696 *
1697 * Description:
1698 * Based on the error code given in @error, send an ICMP error message back to
1699 * the originating host. From the IETF draft ...
1700 *
1701 * "If the contents of the CIPSO [option] are valid but the security label is
1702 * outside of the configured host or port label range, the datagram is
1703 * discarded and an ICMP 'destination unreachable' (type 3) is generated and
1704 * returned. The code field of the ICMP is set to 'communication with
1705 * destination network administratively prohibited' (code 9) or to
1706 * 'communication with destination host administratively prohibited'
1707 * (code 10). The value of the code is dependent on whether the originator
1708 * of the ICMP message is acting as a CIPSO host or a CIPSO gateway. The
1709 * recipient of the ICMP message MUST be able to handle either value. The
1710 * same procedure is performed if a CIPSO [option] can not be added to an
1711 * IP packet because it is too large to fit in the IP options area."
1712 *
1713 * "If the error is triggered by receipt of an ICMP message, the message is
1714 * discarded and no response is permitted (consistent with general ICMP
1715 * processing rules)."
1716 *
1717 */
cipso_v4_error(struct sk_buff * skb,int error,u32 gateway)1718 void cipso_v4_error(struct sk_buff *skb, int error, u32 gateway)
1719 {
1720 unsigned char optbuf[sizeof(struct ip_options) + 40];
1721 struct ip_options *opt = (struct ip_options *)optbuf;
1722 int res;
1723
1724 if (ip_hdr(skb)->protocol == IPPROTO_ICMP || error != -EACCES)
1725 return;
1726
1727 /*
1728 * We might be called above the IP layer,
1729 * so we can not use icmp_send and IPCB here.
1730 */
1731
1732 memset(opt, 0, sizeof(struct ip_options));
1733 opt->optlen = ip_hdr(skb)->ihl*4 - sizeof(struct iphdr);
1734 rcu_read_lock();
1735 res = __ip_options_compile(dev_net(skb->dev), opt, skb, NULL);
1736 rcu_read_unlock();
1737
1738 if (res)
1739 return;
1740
1741 if (gateway)
1742 __icmp_send(skb, ICMP_DEST_UNREACH, ICMP_NET_ANO, 0, opt);
1743 else
1744 __icmp_send(skb, ICMP_DEST_UNREACH, ICMP_HOST_ANO, 0, opt);
1745 }
1746
1747 /**
1748 * cipso_v4_genopt - Generate a CIPSO option
1749 * @buf: the option buffer
1750 * @buf_len: the size of opt_buf
1751 * @doi_def: the CIPSO DOI to use
1752 * @secattr: the security attributes
1753 *
1754 * Description:
1755 * Generate a CIPSO option using the DOI definition and security attributes
1756 * passed to the function. Returns the length of the option on success and
1757 * negative values on failure.
1758 *
1759 */
cipso_v4_genopt(unsigned char * buf,u32 buf_len,const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr)1760 static int cipso_v4_genopt(unsigned char *buf, u32 buf_len,
1761 const struct cipso_v4_doi *doi_def,
1762 const struct netlbl_lsm_secattr *secattr)
1763 {
1764 int ret_val;
1765 u32 iter;
1766
1767 if (buf_len <= CIPSO_V4_HDR_LEN)
1768 return -ENOSPC;
1769
1770 /* XXX - This code assumes only one tag per CIPSO option which isn't
1771 * really a good assumption to make but since we only support the MAC
1772 * tags right now it is a safe assumption. */
1773 iter = 0;
1774 do {
1775 memset(buf, 0, buf_len);
1776 switch (doi_def->tags[iter]) {
1777 case CIPSO_V4_TAG_RBITMAP:
1778 ret_val = cipso_v4_gentag_rbm(doi_def,
1779 secattr,
1780 &buf[CIPSO_V4_HDR_LEN],
1781 buf_len - CIPSO_V4_HDR_LEN);
1782 break;
1783 case CIPSO_V4_TAG_ENUM:
1784 ret_val = cipso_v4_gentag_enum(doi_def,
1785 secattr,
1786 &buf[CIPSO_V4_HDR_LEN],
1787 buf_len - CIPSO_V4_HDR_LEN);
1788 break;
1789 case CIPSO_V4_TAG_RANGE:
1790 ret_val = cipso_v4_gentag_rng(doi_def,
1791 secattr,
1792 &buf[CIPSO_V4_HDR_LEN],
1793 buf_len - CIPSO_V4_HDR_LEN);
1794 break;
1795 case CIPSO_V4_TAG_LOCAL:
1796 ret_val = cipso_v4_gentag_loc(doi_def,
1797 secattr,
1798 &buf[CIPSO_V4_HDR_LEN],
1799 buf_len - CIPSO_V4_HDR_LEN);
1800 break;
1801 default:
1802 return -EPERM;
1803 }
1804
1805 iter++;
1806 } while (ret_val < 0 &&
1807 iter < CIPSO_V4_TAG_MAXCNT &&
1808 doi_def->tags[iter] != CIPSO_V4_TAG_INVALID);
1809 if (ret_val < 0)
1810 return ret_val;
1811 cipso_v4_gentag_hdr(doi_def, buf, ret_val);
1812 return CIPSO_V4_HDR_LEN + ret_val;
1813 }
1814
1815 /**
1816 * cipso_v4_sock_setattr - Add a CIPSO option to a socket
1817 * @sk: the socket
1818 * @doi_def: the CIPSO DOI to use
1819 * @secattr: the specific security attributes of the socket
1820 *
1821 * Description:
1822 * Set the CIPSO option on the given socket using the DOI definition and
1823 * security attributes passed to the function. This function requires
1824 * exclusive access to @sk, which means it either needs to be in the
1825 * process of being created or locked. Returns zero on success and negative
1826 * values on failure.
1827 *
1828 */
cipso_v4_sock_setattr(struct sock * sk,const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr)1829 int cipso_v4_sock_setattr(struct sock *sk,
1830 const struct cipso_v4_doi *doi_def,
1831 const struct netlbl_lsm_secattr *secattr)
1832 {
1833 int ret_val = -EPERM;
1834 unsigned char *buf = NULL;
1835 u32 buf_len;
1836 u32 opt_len;
1837 struct ip_options_rcu *old, *opt = NULL;
1838 struct inet_sock *sk_inet;
1839 struct inet_connection_sock *sk_conn;
1840
1841 /* In the case of sock_create_lite(), the sock->sk field is not
1842 * defined yet but it is not a problem as the only users of these
1843 * "lite" PF_INET sockets are functions which do an accept() call
1844 * afterwards so we will label the socket as part of the accept(). */
1845 if (!sk)
1846 return 0;
1847
1848 /* We allocate the maximum CIPSO option size here so we are probably
1849 * being a little wasteful, but it makes our life _much_ easier later
1850 * on and after all we are only talking about 40 bytes. */
1851 buf_len = CIPSO_V4_OPT_LEN_MAX;
1852 buf = kmalloc(buf_len, GFP_ATOMIC);
1853 if (!buf) {
1854 ret_val = -ENOMEM;
1855 goto socket_setattr_failure;
1856 }
1857
1858 ret_val = cipso_v4_genopt(buf, buf_len, doi_def, secattr);
1859 if (ret_val < 0)
1860 goto socket_setattr_failure;
1861 buf_len = ret_val;
1862
1863 /* We can't use ip_options_get() directly because it makes a call to
1864 * ip_options_get_alloc() which allocates memory with GFP_KERNEL and
1865 * we won't always have CAP_NET_RAW even though we _always_ want to
1866 * set the IPOPT_CIPSO option. */
1867 opt_len = (buf_len + 3) & ~3;
1868 opt = kzalloc(sizeof(*opt) + opt_len, GFP_ATOMIC);
1869 if (!opt) {
1870 ret_val = -ENOMEM;
1871 goto socket_setattr_failure;
1872 }
1873 memcpy(opt->opt.__data, buf, buf_len);
1874 opt->opt.optlen = opt_len;
1875 opt->opt.cipso = sizeof(struct iphdr);
1876 kfree(buf);
1877 buf = NULL;
1878
1879 sk_inet = inet_sk(sk);
1880
1881 old = rcu_dereference_protected(sk_inet->inet_opt,
1882 lockdep_sock_is_held(sk));
1883 if (sk_inet->is_icsk) {
1884 sk_conn = inet_csk(sk);
1885 if (old)
1886 sk_conn->icsk_ext_hdr_len -= old->opt.optlen;
1887 sk_conn->icsk_ext_hdr_len += opt->opt.optlen;
1888 sk_conn->icsk_sync_mss(sk, sk_conn->icsk_pmtu_cookie);
1889 }
1890 rcu_assign_pointer(sk_inet->inet_opt, opt);
1891 if (old)
1892 kfree_rcu(old, rcu);
1893
1894 return 0;
1895
1896 socket_setattr_failure:
1897 kfree(buf);
1898 kfree(opt);
1899 return ret_val;
1900 }
1901
1902 /**
1903 * cipso_v4_req_setattr - Add a CIPSO option to a connection request socket
1904 * @req: the connection request socket
1905 * @doi_def: the CIPSO DOI to use
1906 * @secattr: the specific security attributes of the socket
1907 *
1908 * Description:
1909 * Set the CIPSO option on the given socket using the DOI definition and
1910 * security attributes passed to the function. Returns zero on success and
1911 * negative values on failure.
1912 *
1913 */
cipso_v4_req_setattr(struct request_sock * req,const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr)1914 int cipso_v4_req_setattr(struct request_sock *req,
1915 const struct cipso_v4_doi *doi_def,
1916 const struct netlbl_lsm_secattr *secattr)
1917 {
1918 int ret_val = -EPERM;
1919 unsigned char *buf = NULL;
1920 u32 buf_len;
1921 u32 opt_len;
1922 struct ip_options_rcu *opt = NULL;
1923 struct inet_request_sock *req_inet;
1924
1925 /* We allocate the maximum CIPSO option size here so we are probably
1926 * being a little wasteful, but it makes our life _much_ easier later
1927 * on and after all we are only talking about 40 bytes. */
1928 buf_len = CIPSO_V4_OPT_LEN_MAX;
1929 buf = kmalloc(buf_len, GFP_ATOMIC);
1930 if (!buf) {
1931 ret_val = -ENOMEM;
1932 goto req_setattr_failure;
1933 }
1934
1935 ret_val = cipso_v4_genopt(buf, buf_len, doi_def, secattr);
1936 if (ret_val < 0)
1937 goto req_setattr_failure;
1938 buf_len = ret_val;
1939
1940 /* We can't use ip_options_get() directly because it makes a call to
1941 * ip_options_get_alloc() which allocates memory with GFP_KERNEL and
1942 * we won't always have CAP_NET_RAW even though we _always_ want to
1943 * set the IPOPT_CIPSO option. */
1944 opt_len = (buf_len + 3) & ~3;
1945 opt = kzalloc(sizeof(*opt) + opt_len, GFP_ATOMIC);
1946 if (!opt) {
1947 ret_val = -ENOMEM;
1948 goto req_setattr_failure;
1949 }
1950 memcpy(opt->opt.__data, buf, buf_len);
1951 opt->opt.optlen = opt_len;
1952 opt->opt.cipso = sizeof(struct iphdr);
1953 kfree(buf);
1954 buf = NULL;
1955
1956 req_inet = inet_rsk(req);
1957 opt = xchg((__force struct ip_options_rcu **)&req_inet->ireq_opt, opt);
1958 if (opt)
1959 kfree_rcu(opt, rcu);
1960
1961 return 0;
1962
1963 req_setattr_failure:
1964 kfree(buf);
1965 kfree(opt);
1966 return ret_val;
1967 }
1968
1969 /**
1970 * cipso_v4_delopt - Delete the CIPSO option from a set of IP options
1971 * @opt_ptr: IP option pointer
1972 *
1973 * Description:
1974 * Deletes the CIPSO IP option from a set of IP options and makes the necessary
1975 * adjustments to the IP option structure. Returns zero on success, negative
1976 * values on failure.
1977 *
1978 */
cipso_v4_delopt(struct ip_options_rcu __rcu ** opt_ptr)1979 static int cipso_v4_delopt(struct ip_options_rcu __rcu **opt_ptr)
1980 {
1981 struct ip_options_rcu *opt = rcu_dereference_protected(*opt_ptr, 1);
1982 int hdr_delta = 0;
1983
1984 if (!opt || opt->opt.cipso == 0)
1985 return 0;
1986 if (opt->opt.srr || opt->opt.rr || opt->opt.ts || opt->opt.router_alert) {
1987 u8 cipso_len;
1988 u8 cipso_off;
1989 unsigned char *cipso_ptr;
1990 int iter;
1991 int optlen_new;
1992
1993 cipso_off = opt->opt.cipso - sizeof(struct iphdr);
1994 cipso_ptr = &opt->opt.__data[cipso_off];
1995 cipso_len = cipso_ptr[1];
1996
1997 if (opt->opt.srr > opt->opt.cipso)
1998 opt->opt.srr -= cipso_len;
1999 if (opt->opt.rr > opt->opt.cipso)
2000 opt->opt.rr -= cipso_len;
2001 if (opt->opt.ts > opt->opt.cipso)
2002 opt->opt.ts -= cipso_len;
2003 if (opt->opt.router_alert > opt->opt.cipso)
2004 opt->opt.router_alert -= cipso_len;
2005 opt->opt.cipso = 0;
2006
2007 memmove(cipso_ptr, cipso_ptr + cipso_len,
2008 opt->opt.optlen - cipso_off - cipso_len);
2009
2010 /* determining the new total option length is tricky because of
2011 * the padding necessary, the only thing i can think to do at
2012 * this point is walk the options one-by-one, skipping the
2013 * padding at the end to determine the actual option size and
2014 * from there we can determine the new total option length */
2015 iter = 0;
2016 optlen_new = 0;
2017 while (iter < opt->opt.optlen)
2018 if (opt->opt.__data[iter] != IPOPT_NOP) {
2019 iter += opt->opt.__data[iter + 1];
2020 optlen_new = iter;
2021 } else
2022 iter++;
2023 hdr_delta = opt->opt.optlen;
2024 opt->opt.optlen = (optlen_new + 3) & ~3;
2025 hdr_delta -= opt->opt.optlen;
2026 } else {
2027 /* only the cipso option was present on the socket so we can
2028 * remove the entire option struct */
2029 *opt_ptr = NULL;
2030 hdr_delta = opt->opt.optlen;
2031 kfree_rcu(opt, rcu);
2032 }
2033
2034 return hdr_delta;
2035 }
2036
2037 /**
2038 * cipso_v4_sock_delattr - Delete the CIPSO option from a socket
2039 * @sk: the socket
2040 *
2041 * Description:
2042 * Removes the CIPSO option from a socket, if present.
2043 *
2044 */
cipso_v4_sock_delattr(struct sock * sk)2045 void cipso_v4_sock_delattr(struct sock *sk)
2046 {
2047 struct inet_sock *sk_inet;
2048 int hdr_delta;
2049
2050 sk_inet = inet_sk(sk);
2051
2052 hdr_delta = cipso_v4_delopt(&sk_inet->inet_opt);
2053 if (sk_inet->is_icsk && hdr_delta > 0) {
2054 struct inet_connection_sock *sk_conn = inet_csk(sk);
2055 sk_conn->icsk_ext_hdr_len -= hdr_delta;
2056 sk_conn->icsk_sync_mss(sk, sk_conn->icsk_pmtu_cookie);
2057 }
2058 }
2059
2060 /**
2061 * cipso_v4_req_delattr - Delete the CIPSO option from a request socket
2062 * @req: the request socket
2063 *
2064 * Description:
2065 * Removes the CIPSO option from a request socket, if present.
2066 *
2067 */
cipso_v4_req_delattr(struct request_sock * req)2068 void cipso_v4_req_delattr(struct request_sock *req)
2069 {
2070 cipso_v4_delopt(&inet_rsk(req)->ireq_opt);
2071 }
2072
2073 /**
2074 * cipso_v4_getattr - Helper function for the cipso_v4_*_getattr functions
2075 * @cipso: the CIPSO v4 option
2076 * @secattr: the security attributes
2077 *
2078 * Description:
2079 * Inspect @cipso and return the security attributes in @secattr. Returns zero
2080 * on success and negative values on failure.
2081 *
2082 */
cipso_v4_getattr(const unsigned char * cipso,struct netlbl_lsm_secattr * secattr)2083 int cipso_v4_getattr(const unsigned char *cipso,
2084 struct netlbl_lsm_secattr *secattr)
2085 {
2086 int ret_val = -ENOMSG;
2087 u32 doi;
2088 struct cipso_v4_doi *doi_def;
2089
2090 if (cipso_v4_cache_check(cipso, cipso[1], secattr) == 0)
2091 return 0;
2092
2093 doi = get_unaligned_be32(&cipso[2]);
2094 rcu_read_lock();
2095 doi_def = cipso_v4_doi_search(doi);
2096 if (!doi_def)
2097 goto getattr_return;
2098 /* XXX - This code assumes only one tag per CIPSO option which isn't
2099 * really a good assumption to make but since we only support the MAC
2100 * tags right now it is a safe assumption. */
2101 switch (cipso[6]) {
2102 case CIPSO_V4_TAG_RBITMAP:
2103 ret_val = cipso_v4_parsetag_rbm(doi_def, &cipso[6], secattr);
2104 break;
2105 case CIPSO_V4_TAG_ENUM:
2106 ret_val = cipso_v4_parsetag_enum(doi_def, &cipso[6], secattr);
2107 break;
2108 case CIPSO_V4_TAG_RANGE:
2109 ret_val = cipso_v4_parsetag_rng(doi_def, &cipso[6], secattr);
2110 break;
2111 case CIPSO_V4_TAG_LOCAL:
2112 ret_val = cipso_v4_parsetag_loc(doi_def, &cipso[6], secattr);
2113 break;
2114 }
2115 if (ret_val == 0)
2116 secattr->type = NETLBL_NLTYPE_CIPSOV4;
2117
2118 getattr_return:
2119 rcu_read_unlock();
2120 return ret_val;
2121 }
2122
2123 /**
2124 * cipso_v4_sock_getattr - Get the security attributes from a sock
2125 * @sk: the sock
2126 * @secattr: the security attributes
2127 *
2128 * Description:
2129 * Query @sk to see if there is a CIPSO option attached to the sock and if
2130 * there is return the CIPSO security attributes in @secattr. This function
2131 * requires that @sk be locked, or privately held, but it does not do any
2132 * locking itself. Returns zero on success and negative values on failure.
2133 *
2134 */
cipso_v4_sock_getattr(struct sock * sk,struct netlbl_lsm_secattr * secattr)2135 int cipso_v4_sock_getattr(struct sock *sk, struct netlbl_lsm_secattr *secattr)
2136 {
2137 struct ip_options_rcu *opt;
2138 int res = -ENOMSG;
2139
2140 rcu_read_lock();
2141 opt = rcu_dereference(inet_sk(sk)->inet_opt);
2142 if (opt && opt->opt.cipso)
2143 res = cipso_v4_getattr(opt->opt.__data +
2144 opt->opt.cipso -
2145 sizeof(struct iphdr),
2146 secattr);
2147 rcu_read_unlock();
2148 return res;
2149 }
2150
2151 /**
2152 * cipso_v4_skbuff_setattr - Set the CIPSO option on a packet
2153 * @skb: the packet
2154 * @doi_def: the DOI structure
2155 * @secattr: the security attributes
2156 *
2157 * Description:
2158 * Set the CIPSO option on the given packet based on the security attributes.
2159 * Returns a pointer to the IP header on success and NULL on failure.
2160 *
2161 */
cipso_v4_skbuff_setattr(struct sk_buff * skb,const struct cipso_v4_doi * doi_def,const struct netlbl_lsm_secattr * secattr)2162 int cipso_v4_skbuff_setattr(struct sk_buff *skb,
2163 const struct cipso_v4_doi *doi_def,
2164 const struct netlbl_lsm_secattr *secattr)
2165 {
2166 int ret_val;
2167 struct iphdr *iph;
2168 struct ip_options *opt = &IPCB(skb)->opt;
2169 unsigned char buf[CIPSO_V4_OPT_LEN_MAX];
2170 u32 buf_len = CIPSO_V4_OPT_LEN_MAX;
2171 u32 opt_len;
2172 int len_delta;
2173
2174 ret_val = cipso_v4_genopt(buf, buf_len, doi_def, secattr);
2175 if (ret_val < 0)
2176 return ret_val;
2177 buf_len = ret_val;
2178 opt_len = (buf_len + 3) & ~3;
2179
2180 /* we overwrite any existing options to ensure that we have enough
2181 * room for the CIPSO option, the reason is that we _need_ to guarantee
2182 * that the security label is applied to the packet - we do the same
2183 * thing when using the socket options and it hasn't caused a problem,
2184 * if we need to we can always revisit this choice later */
2185
2186 len_delta = opt_len - opt->optlen;
2187 /* if we don't ensure enough headroom we could panic on the skb_push()
2188 * call below so make sure we have enough, we are also "mangling" the
2189 * packet so we should probably do a copy-on-write call anyway */
2190 ret_val = skb_cow(skb, skb_headroom(skb) + len_delta);
2191 if (ret_val < 0)
2192 return ret_val;
2193
2194 if (len_delta > 0) {
2195 /* we assume that the header + opt->optlen have already been
2196 * "pushed" in ip_options_build() or similar */
2197 iph = ip_hdr(skb);
2198 skb_push(skb, len_delta);
2199 memmove((char *)iph - len_delta, iph, iph->ihl << 2);
2200 skb_reset_network_header(skb);
2201 iph = ip_hdr(skb);
2202 } else if (len_delta < 0) {
2203 iph = ip_hdr(skb);
2204 memset(iph + 1, IPOPT_NOP, opt->optlen);
2205 } else
2206 iph = ip_hdr(skb);
2207
2208 if (opt->optlen > 0)
2209 memset(opt, 0, sizeof(*opt));
2210 opt->optlen = opt_len;
2211 opt->cipso = sizeof(struct iphdr);
2212 opt->is_changed = 1;
2213
2214 /* we have to do the following because we are being called from a
2215 * netfilter hook which means the packet already has had the header
2216 * fields populated and the checksum calculated - yes this means we
2217 * are doing more work than needed but we do it to keep the core
2218 * stack clean and tidy */
2219 memcpy(iph + 1, buf, buf_len);
2220 if (opt_len > buf_len)
2221 memset((char *)(iph + 1) + buf_len, 0, opt_len - buf_len);
2222 if (len_delta != 0) {
2223 iph->ihl = 5 + (opt_len >> 2);
2224 iph->tot_len = htons(skb->len);
2225 }
2226 ip_send_check(iph);
2227
2228 return 0;
2229 }
2230
2231 /**
2232 * cipso_v4_skbuff_delattr - Delete any CIPSO options from a packet
2233 * @skb: the packet
2234 *
2235 * Description:
2236 * Removes any and all CIPSO options from the given packet. Returns zero on
2237 * success, negative values on failure.
2238 *
2239 */
cipso_v4_skbuff_delattr(struct sk_buff * skb)2240 int cipso_v4_skbuff_delattr(struct sk_buff *skb)
2241 {
2242 int ret_val;
2243 struct iphdr *iph;
2244 struct ip_options *opt = &IPCB(skb)->opt;
2245 unsigned char *cipso_ptr;
2246
2247 if (opt->cipso == 0)
2248 return 0;
2249
2250 /* since we are changing the packet we should make a copy */
2251 ret_val = skb_cow(skb, skb_headroom(skb));
2252 if (ret_val < 0)
2253 return ret_val;
2254
2255 /* the easiest thing to do is just replace the cipso option with noop
2256 * options since we don't change the size of the packet, although we
2257 * still need to recalculate the checksum */
2258
2259 iph = ip_hdr(skb);
2260 cipso_ptr = (unsigned char *)iph + opt->cipso;
2261 memset(cipso_ptr, IPOPT_NOOP, cipso_ptr[1]);
2262 opt->cipso = 0;
2263 opt->is_changed = 1;
2264
2265 ip_send_check(iph);
2266
2267 return 0;
2268 }
2269
2270 /*
2271 * Setup Functions
2272 */
2273
2274 /**
2275 * cipso_v4_init - Initialize the CIPSO module
2276 *
2277 * Description:
2278 * Initialize the CIPSO module and prepare it for use. Returns zero on success
2279 * and negative values on failure.
2280 *
2281 */
cipso_v4_init(void)2282 static int __init cipso_v4_init(void)
2283 {
2284 int ret_val;
2285
2286 ret_val = cipso_v4_cache_init();
2287 if (ret_val != 0)
2288 panic("Failed to initialize the CIPSO/IPv4 cache (%d)\n",
2289 ret_val);
2290
2291 return 0;
2292 }
2293
2294 subsys_initcall(cipso_v4_init);
2295