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76181c13 1/* Basic authentication token and access key management
1da177e4 2 *
69664cf1 3 * Copyright (C) 2004-2008 Red Hat, Inc. All Rights Reserved.
1da177e4
LT
4 * Written by David Howells (dhowells@redhat.com)
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 */
11
12#include <linux/module.h>
13#include <linux/init.h>
a7807a32 14#include <linux/poison.h>
1da177e4
LT
15#include <linux/sched.h>
16#include <linux/slab.h>
29db9190 17#include <linux/security.h>
1da177e4 18#include <linux/workqueue.h>
e51f6d34 19#include <linux/random.h>
1da177e4
LT
20#include <linux/err.h>
21#include "internal.h"
22
8bc16dea 23struct kmem_cache *key_jar;
1da177e4
LT
24struct rb_root key_serial_tree; /* tree of keys indexed by serial */
25DEFINE_SPINLOCK(key_serial_lock);
26
27struct rb_root key_user_tree; /* tree of quota records indexed by UID */
28DEFINE_SPINLOCK(key_user_lock);
29
738c5d19
SD
30unsigned int key_quota_root_maxkeys = 1000000; /* root's key count quota */
31unsigned int key_quota_root_maxbytes = 25000000; /* root's key space quota */
0b77f5bf
DH
32unsigned int key_quota_maxkeys = 200; /* general key count quota */
33unsigned int key_quota_maxbytes = 20000; /* general key space quota */
34
1da177e4
LT
35static LIST_HEAD(key_types_list);
36static DECLARE_RWSEM(key_types_sem);
37
973c9f4f 38/* We serialise key instantiation and link */
76181c13 39DEFINE_MUTEX(key_construction_mutex);
1da177e4 40
1da177e4
LT
41#ifdef KEY_DEBUGGING
42void __key_check(const struct key *key)
43{
44 printk("__key_check: key %p {%08x} should be {%08x}\n",
45 key, key->magic, KEY_DEBUG_MAGIC);
46 BUG();
47}
48#endif
49
1da177e4 50/*
973c9f4f
DH
51 * Get the key quota record for a user, allocating a new record if one doesn't
52 * already exist.
1da177e4 53 */
9a56c2db 54struct key_user *key_user_lookup(kuid_t uid)
1da177e4
LT
55{
56 struct key_user *candidate = NULL, *user;
57 struct rb_node *parent = NULL;
58 struct rb_node **p;
59
973c9f4f 60try_again:
1da177e4
LT
61 p = &key_user_tree.rb_node;
62 spin_lock(&key_user_lock);
63
64 /* search the tree for a user record with a matching UID */
65 while (*p) {
66 parent = *p;
67 user = rb_entry(parent, struct key_user, node);
68
9a56c2db 69 if (uid_lt(uid, user->uid))
1da177e4 70 p = &(*p)->rb_left;
9a56c2db 71 else if (uid_gt(uid, user->uid))
1d1e9756 72 p = &(*p)->rb_right;
1da177e4
LT
73 else
74 goto found;
75 }
76
77 /* if we get here, we failed to find a match in the tree */
78 if (!candidate) {
79 /* allocate a candidate user record if we don't already have
80 * one */
81 spin_unlock(&key_user_lock);
82
83 user = NULL;
84 candidate = kmalloc(sizeof(struct key_user), GFP_KERNEL);
85 if (unlikely(!candidate))
86 goto out;
87
88 /* the allocation may have scheduled, so we need to repeat the
89 * search lest someone else added the record whilst we were
90 * asleep */
91 goto try_again;
92 }
93
94 /* if we get here, then the user record still hadn't appeared on the
95 * second pass - so we use the candidate record */
96 atomic_set(&candidate->usage, 1);
97 atomic_set(&candidate->nkeys, 0);
98 atomic_set(&candidate->nikeys, 0);
99 candidate->uid = uid;
100 candidate->qnkeys = 0;
101 candidate->qnbytes = 0;
102 spin_lock_init(&candidate->lock);
76181c13 103 mutex_init(&candidate->cons_lock);
1da177e4
LT
104
105 rb_link_node(&candidate->node, parent, p);
106 rb_insert_color(&candidate->node, &key_user_tree);
107 spin_unlock(&key_user_lock);
108 user = candidate;
109 goto out;
110
111 /* okay - we found a user record for this UID */
973c9f4f 112found:
1da177e4
LT
113 atomic_inc(&user->usage);
114 spin_unlock(&key_user_lock);
a7f988ba 115 kfree(candidate);
973c9f4f 116out:
1da177e4 117 return user;
a8b17ed0 118}
1da177e4 119
1da177e4 120/*
973c9f4f 121 * Dispose of a user structure
1da177e4
LT
122 */
123void key_user_put(struct key_user *user)
124{
125 if (atomic_dec_and_lock(&user->usage, &key_user_lock)) {
126 rb_erase(&user->node, &key_user_tree);
127 spin_unlock(&key_user_lock);
128
129 kfree(user);
130 }
a8b17ed0 131}
1da177e4 132
1da177e4 133/*
973c9f4f
DH
134 * Allocate a serial number for a key. These are assigned randomly to avoid
135 * security issues through covert channel problems.
1da177e4
LT
136 */
137static inline void key_alloc_serial(struct key *key)
138{
139 struct rb_node *parent, **p;
140 struct key *xkey;
141
e51f6d34 142 /* propose a random serial number and look for a hole for it in the
1da177e4 143 * serial number tree */
e51f6d34
ML
144 do {
145 get_random_bytes(&key->serial, sizeof(key->serial));
146
147 key->serial >>= 1; /* negative numbers are not permitted */
148 } while (key->serial < 3);
149
150 spin_lock(&key_serial_lock);
1da177e4 151
9ad0830f 152attempt_insertion:
1da177e4
LT
153 parent = NULL;
154 p = &key_serial_tree.rb_node;
155
156 while (*p) {
157 parent = *p;
158 xkey = rb_entry(parent, struct key, serial_node);
159
160 if (key->serial < xkey->serial)
161 p = &(*p)->rb_left;
162 else if (key->serial > xkey->serial)
163 p = &(*p)->rb_right;
164 else
165 goto serial_exists;
166 }
9ad0830f
DH
167
168 /* we've found a suitable hole - arrange for this key to occupy it */
169 rb_link_node(&key->serial_node, parent, p);
170 rb_insert_color(&key->serial_node, &key_serial_tree);
171
172 spin_unlock(&key_serial_lock);
173 return;
1da177e4
LT
174
175 /* we found a key with the proposed serial number - walk the tree from
176 * that point looking for the next unused serial number */
e51f6d34 177serial_exists:
1da177e4 178 for (;;) {
e51f6d34 179 key->serial++;
9ad0830f
DH
180 if (key->serial < 3) {
181 key->serial = 3;
182 goto attempt_insertion;
183 }
1da177e4
LT
184
185 parent = rb_next(parent);
186 if (!parent)
9ad0830f 187 goto attempt_insertion;
1da177e4
LT
188
189 xkey = rb_entry(parent, struct key, serial_node);
190 if (key->serial < xkey->serial)
9ad0830f 191 goto attempt_insertion;
1da177e4 192 }
a8b17ed0 193}
1da177e4 194
973c9f4f
DH
195/**
196 * key_alloc - Allocate a key of the specified type.
197 * @type: The type of key to allocate.
198 * @desc: The key description to allow the key to be searched out.
199 * @uid: The owner of the new key.
200 * @gid: The group ID for the new key's group permissions.
201 * @cred: The credentials specifying UID namespace.
202 * @perm: The permissions mask of the new key.
203 * @flags: Flags specifying quota properties.
204 *
205 * Allocate a key of the specified type with the attributes given. The key is
206 * returned in an uninstantiated state and the caller needs to instantiate the
207 * key before returning.
208 *
209 * The user's key count quota is updated to reflect the creation of the key and
210 * the user's key data quota has the default for the key type reserved. The
211 * instantiation function should amend this as necessary. If insufficient
212 * quota is available, -EDQUOT will be returned.
213 *
214 * The LSM security modules can prevent a key being created, in which case
215 * -EACCES will be returned.
216 *
217 * Returns a pointer to the new key if successful and an error code otherwise.
218 *
219 * Note that the caller needs to ensure the key type isn't uninstantiated.
220 * Internally this can be done by locking key_types_sem. Externally, this can
221 * be done by either never unregistering the key type, or making sure
222 * key_alloc() calls don't race with module unloading.
1da177e4
LT
223 */
224struct key *key_alloc(struct key_type *type, const char *desc,
9a56c2db 225 kuid_t uid, kgid_t gid, const struct cred *cred,
7e047ef5 226 key_perm_t perm, unsigned long flags)
1da177e4
LT
227{
228 struct key_user *user = NULL;
229 struct key *key;
230 size_t desclen, quotalen;
29db9190 231 int ret;
1da177e4
LT
232
233 key = ERR_PTR(-EINVAL);
234 if (!desc || !*desc)
235 goto error;
236
b9fffa38
DH
237 if (type->vet_description) {
238 ret = type->vet_description(desc);
239 if (ret < 0) {
240 key = ERR_PTR(ret);
241 goto error;
242 }
243 }
244
16feef43
DH
245 desclen = strlen(desc);
246 quotalen = desclen + 1 + type->def_datalen;
1da177e4
LT
247
248 /* get hold of the key tracking for this user */
9a56c2db 249 user = key_user_lookup(uid);
1da177e4
LT
250 if (!user)
251 goto no_memory_1;
252
253 /* check that the user's quota permits allocation of another key and
254 * its description */
7e047ef5 255 if (!(flags & KEY_ALLOC_NOT_IN_QUOTA)) {
9a56c2db 256 unsigned maxkeys = uid_eq(uid, GLOBAL_ROOT_UID) ?
0b77f5bf 257 key_quota_root_maxkeys : key_quota_maxkeys;
9a56c2db 258 unsigned maxbytes = uid_eq(uid, GLOBAL_ROOT_UID) ?
0b77f5bf
DH
259 key_quota_root_maxbytes : key_quota_maxbytes;
260
1da177e4 261 spin_lock(&user->lock);
7e047ef5 262 if (!(flags & KEY_ALLOC_QUOTA_OVERRUN)) {
0b77f5bf
DH
263 if (user->qnkeys + 1 >= maxkeys ||
264 user->qnbytes + quotalen >= maxbytes ||
265 user->qnbytes + quotalen < user->qnbytes)
7e047ef5
DH
266 goto no_quota;
267 }
1da177e4
LT
268
269 user->qnkeys++;
270 user->qnbytes += quotalen;
271 spin_unlock(&user->lock);
272 }
273
274 /* allocate and initialise the key and its description */
2480f57f 275 key = kmem_cache_zalloc(key_jar, GFP_KERNEL);
1da177e4
LT
276 if (!key)
277 goto no_memory_2;
278
5057975a
DC
279 key->index_key.desc_len = desclen;
280 key->index_key.description = kmemdup(desc, desclen + 1, GFP_KERNEL);
27720e75 281 if (!key->index_key.description)
5057975a 282 goto no_memory_3;
1da177e4
LT
283
284 atomic_set(&key->usage, 1);
1da177e4 285 init_rwsem(&key->sem);
7845bc39 286 lockdep_set_class(&key->sem, &type->lock_class);
16feef43 287 key->index_key.type = type;
1da177e4
LT
288 key->user = user;
289 key->quotalen = quotalen;
290 key->datalen = type->def_datalen;
291 key->uid = uid;
292 key->gid = gid;
293 key->perm = perm;
1da177e4 294
7e047ef5 295 if (!(flags & KEY_ALLOC_NOT_IN_QUOTA))
76d8aeab 296 key->flags |= 1 << KEY_FLAG_IN_QUOTA;
008643b8
DH
297 if (flags & KEY_ALLOC_TRUSTED)
298 key->flags |= 1 << KEY_FLAG_TRUSTED;
1da177e4 299
1da177e4
LT
300#ifdef KEY_DEBUGGING
301 key->magic = KEY_DEBUG_MAGIC;
302#endif
303
29db9190 304 /* let the security module know about the key */
d84f4f99 305 ret = security_key_alloc(key, cred, flags);
29db9190
DH
306 if (ret < 0)
307 goto security_error;
308
1da177e4
LT
309 /* publish the key by giving it a serial number */
310 atomic_inc(&user->nkeys);
311 key_alloc_serial(key);
312
29db9190 313error:
1da177e4
LT
314 return key;
315
29db9190
DH
316security_error:
317 kfree(key->description);
1da177e4 318 kmem_cache_free(key_jar, key);
7e047ef5 319 if (!(flags & KEY_ALLOC_NOT_IN_QUOTA)) {
1da177e4
LT
320 spin_lock(&user->lock);
321 user->qnkeys--;
322 user->qnbytes -= quotalen;
323 spin_unlock(&user->lock);
324 }
325 key_user_put(user);
29db9190
DH
326 key = ERR_PTR(ret);
327 goto error;
328
329no_memory_3:
330 kmem_cache_free(key_jar, key);
331no_memory_2:
7e047ef5 332 if (!(flags & KEY_ALLOC_NOT_IN_QUOTA)) {
29db9190
DH
333 spin_lock(&user->lock);
334 user->qnkeys--;
335 user->qnbytes -= quotalen;
336 spin_unlock(&user->lock);
337 }
338 key_user_put(user);
339no_memory_1:
1da177e4
LT
340 key = ERR_PTR(-ENOMEM);
341 goto error;
342
29db9190 343no_quota:
1da177e4
LT
344 spin_unlock(&user->lock);
345 key_user_put(user);
346 key = ERR_PTR(-EDQUOT);
347 goto error;
a8b17ed0 348}
1da177e4
LT
349EXPORT_SYMBOL(key_alloc);
350
973c9f4f
DH
351/**
352 * key_payload_reserve - Adjust data quota reservation for the key's payload
353 * @key: The key to make the reservation for.
354 * @datalen: The amount of data payload the caller now wants.
355 *
356 * Adjust the amount of the owning user's key data quota that a key reserves.
357 * If the amount is increased, then -EDQUOT may be returned if there isn't
358 * enough free quota available.
359 *
360 * If successful, 0 is returned.
1da177e4
LT
361 */
362int key_payload_reserve(struct key *key, size_t datalen)
363{
c5b60b5e 364 int delta = (int)datalen - key->datalen;
1da177e4
LT
365 int ret = 0;
366
367 key_check(key);
368
369 /* contemplate the quota adjustment */
76d8aeab 370 if (delta != 0 && test_bit(KEY_FLAG_IN_QUOTA, &key->flags)) {
9a56c2db 371 unsigned maxbytes = uid_eq(key->user->uid, GLOBAL_ROOT_UID) ?
0b77f5bf
DH
372 key_quota_root_maxbytes : key_quota_maxbytes;
373
1da177e4
LT
374 spin_lock(&key->user->lock);
375
376 if (delta > 0 &&
0b77f5bf
DH
377 (key->user->qnbytes + delta >= maxbytes ||
378 key->user->qnbytes + delta < key->user->qnbytes)) {
1da177e4
LT
379 ret = -EDQUOT;
380 }
381 else {
382 key->user->qnbytes += delta;
383 key->quotalen += delta;
384 }
385 spin_unlock(&key->user->lock);
386 }
387
388 /* change the recorded data length if that didn't generate an error */
389 if (ret == 0)
390 key->datalen = datalen;
391
392 return ret;
a8b17ed0 393}
1da177e4
LT
394EXPORT_SYMBOL(key_payload_reserve);
395
1da177e4 396/*
973c9f4f
DH
397 * Instantiate a key and link it into the target keyring atomically. Must be
398 * called with the target keyring's semaphore writelocked. The target key's
399 * semaphore need not be locked as instantiation is serialised by
400 * key_construction_mutex.
1da177e4
LT
401 */
402static int __key_instantiate_and_link(struct key *key,
cf7f601c 403 struct key_preparsed_payload *prep,
3e30148c 404 struct key *keyring,
f70e2e06 405 struct key *authkey,
b2a4df20 406 struct assoc_array_edit **_edit)
1da177e4
LT
407{
408 int ret, awaken;
409
410 key_check(key);
411 key_check(keyring);
412
413 awaken = 0;
414 ret = -EBUSY;
415
76181c13 416 mutex_lock(&key_construction_mutex);
1da177e4
LT
417
418 /* can't instantiate twice */
76d8aeab 419 if (!test_bit(KEY_FLAG_INSTANTIATED, &key->flags)) {
1da177e4 420 /* instantiate the key */
cf7f601c 421 ret = key->type->instantiate(key, prep);
1da177e4
LT
422
423 if (ret == 0) {
424 /* mark the key as being instantiated */
1da177e4 425 atomic_inc(&key->user->nikeys);
76d8aeab 426 set_bit(KEY_FLAG_INSTANTIATED, &key->flags);
1da177e4 427
76d8aeab 428 if (test_and_clear_bit(KEY_FLAG_USER_CONSTRUCT, &key->flags))
1da177e4 429 awaken = 1;
1da177e4
LT
430
431 /* and link it into the destination keyring */
d3600bcf 432 if (keyring) {
1d6d167c 433 set_bit(KEY_FLAG_KEEP, &key->flags);
d3600bcf 434
b2a4df20 435 __key_link(key, _edit);
d3600bcf 436 }
3e30148c
DH
437
438 /* disable the authorisation key */
d84f4f99
DH
439 if (authkey)
440 key_revoke(authkey);
7dfa0ca6
DH
441
442 if (prep->expiry != TIME_T_MAX) {
443 key->expiry = prep->expiry;
444 key_schedule_gc(prep->expiry + key_gc_delay);
445 }
1da177e4
LT
446 }
447 }
448
76181c13 449 mutex_unlock(&key_construction_mutex);
1da177e4
LT
450
451 /* wake up anyone waiting for a key to be constructed */
452 if (awaken)
76181c13 453 wake_up_bit(&key->flags, KEY_FLAG_USER_CONSTRUCT);
1da177e4
LT
454
455 return ret;
a8b17ed0 456}
1da177e4 457
973c9f4f
DH
458/**
459 * key_instantiate_and_link - Instantiate a key and link it into the keyring.
460 * @key: The key to instantiate.
461 * @data: The data to use to instantiate the keyring.
462 * @datalen: The length of @data.
463 * @keyring: Keyring to create a link in on success (or NULL).
464 * @authkey: The authorisation token permitting instantiation.
465 *
466 * Instantiate a key that's in the uninstantiated state using the provided data
467 * and, if successful, link it in to the destination keyring if one is
468 * supplied.
469 *
470 * If successful, 0 is returned, the authorisation token is revoked and anyone
471 * waiting for the key is woken up. If the key was already instantiated,
472 * -EBUSY will be returned.
1da177e4
LT
473 */
474int key_instantiate_and_link(struct key *key,
475 const void *data,
476 size_t datalen,
3e30148c 477 struct key *keyring,
d84f4f99 478 struct key *authkey)
1da177e4 479{
cf7f601c 480 struct key_preparsed_payload prep;
b2a4df20 481 struct assoc_array_edit *edit;
1da177e4
LT
482 int ret;
483
cf7f601c
DH
484 memset(&prep, 0, sizeof(prep));
485 prep.data = data;
486 prep.datalen = datalen;
487 prep.quotalen = key->type->def_datalen;
7dfa0ca6 488 prep.expiry = TIME_T_MAX;
cf7f601c
DH
489 if (key->type->preparse) {
490 ret = key->type->preparse(&prep);
491 if (ret < 0)
492 goto error;
493 }
494
f70e2e06 495 if (keyring) {
b2a4df20 496 ret = __key_link_begin(keyring, &key->index_key, &edit);
f70e2e06 497 if (ret < 0)
4d8c0250 498 goto error;
f70e2e06 499 }
1da177e4 500
b2a4df20 501 ret = __key_instantiate_and_link(key, &prep, keyring, authkey, &edit);
1da177e4
LT
502
503 if (keyring)
b2a4df20 504 __key_link_end(keyring, &key->index_key, edit);
1da177e4 505
4d8c0250 506error:
cf7f601c
DH
507 if (key->type->preparse)
508 key->type->free_preparse(&prep);
1da177e4 509 return ret;
a8b17ed0 510}
1da177e4
LT
511
512EXPORT_SYMBOL(key_instantiate_and_link);
513
973c9f4f 514/**
fdd1b945 515 * key_reject_and_link - Negatively instantiate a key and link it into the keyring.
973c9f4f
DH
516 * @key: The key to instantiate.
517 * @timeout: The timeout on the negative key.
fdd1b945 518 * @error: The error to return when the key is hit.
973c9f4f
DH
519 * @keyring: Keyring to create a link in on success (or NULL).
520 * @authkey: The authorisation token permitting instantiation.
521 *
522 * Negatively instantiate a key that's in the uninstantiated state and, if
fdd1b945
DH
523 * successful, set its timeout and stored error and link it in to the
524 * destination keyring if one is supplied. The key and any links to the key
525 * will be automatically garbage collected after the timeout expires.
973c9f4f
DH
526 *
527 * Negative keys are used to rate limit repeated request_key() calls by causing
fdd1b945
DH
528 * them to return the stored error code (typically ENOKEY) until the negative
529 * key expires.
973c9f4f
DH
530 *
531 * If successful, 0 is returned, the authorisation token is revoked and anyone
532 * waiting for the key is woken up. If the key was already instantiated,
533 * -EBUSY will be returned.
1da177e4 534 */
fdd1b945 535int key_reject_and_link(struct key *key,
1da177e4 536 unsigned timeout,
fdd1b945 537 unsigned error,
3e30148c 538 struct key *keyring,
d84f4f99 539 struct key *authkey)
1da177e4 540{
b2a4df20 541 struct assoc_array_edit *edit;
1da177e4 542 struct timespec now;
f70e2e06 543 int ret, awaken, link_ret = 0;
1da177e4
LT
544
545 key_check(key);
546 key_check(keyring);
547
548 awaken = 0;
549 ret = -EBUSY;
550
551 if (keyring)
b2a4df20 552 link_ret = __key_link_begin(keyring, &key->index_key, &edit);
1da177e4 553
76181c13 554 mutex_lock(&key_construction_mutex);
1da177e4
LT
555
556 /* can't instantiate twice */
76d8aeab 557 if (!test_bit(KEY_FLAG_INSTANTIATED, &key->flags)) {
1da177e4 558 /* mark the key as being negatively instantiated */
1da177e4 559 atomic_inc(&key->user->nikeys);
146aa8b1 560 key->reject_error = -error;
74792b00 561 smp_wmb();
76d8aeab
DH
562 set_bit(KEY_FLAG_NEGATIVE, &key->flags);
563 set_bit(KEY_FLAG_INSTANTIATED, &key->flags);
1da177e4
LT
564 now = current_kernel_time();
565 key->expiry = now.tv_sec + timeout;
c08ef808 566 key_schedule_gc(key->expiry + key_gc_delay);
1da177e4 567
76d8aeab 568 if (test_and_clear_bit(KEY_FLAG_USER_CONSTRUCT, &key->flags))
1da177e4 569 awaken = 1;
1da177e4 570
1da177e4
LT
571 ret = 0;
572
573 /* and link it into the destination keyring */
f70e2e06 574 if (keyring && link_ret == 0)
b2a4df20 575 __key_link(key, &edit);
3e30148c
DH
576
577 /* disable the authorisation key */
d84f4f99
DH
578 if (authkey)
579 key_revoke(authkey);
1da177e4
LT
580 }
581
76181c13 582 mutex_unlock(&key_construction_mutex);
1da177e4
LT
583
584 if (keyring)
b2a4df20 585 __key_link_end(keyring, &key->index_key, edit);
1da177e4
LT
586
587 /* wake up anyone waiting for a key to be constructed */
588 if (awaken)
76181c13 589 wake_up_bit(&key->flags, KEY_FLAG_USER_CONSTRUCT);
1da177e4 590
f70e2e06 591 return ret == 0 ? link_ret : ret;
a8b17ed0 592}
fdd1b945 593EXPORT_SYMBOL(key_reject_and_link);
1da177e4 594
973c9f4f
DH
595/**
596 * key_put - Discard a reference to a key.
597 * @key: The key to discard a reference from.
598 *
599 * Discard a reference to a key, and when all the references are gone, we
600 * schedule the cleanup task to come and pull it out of the tree in process
601 * context at some later time.
1da177e4
LT
602 */
603void key_put(struct key *key)
604{
605 if (key) {
606 key_check(key);
607
608 if (atomic_dec_and_test(&key->usage))
3b07e9ca 609 schedule_work(&key_gc_work);
1da177e4 610 }
a8b17ed0 611}
1da177e4
LT
612EXPORT_SYMBOL(key_put);
613
1da177e4 614/*
973c9f4f 615 * Find a key by its serial number.
1da177e4
LT
616 */
617struct key *key_lookup(key_serial_t id)
618{
619 struct rb_node *n;
620 struct key *key;
621
622 spin_lock(&key_serial_lock);
623
624 /* search the tree for the specified key */
625 n = key_serial_tree.rb_node;
626 while (n) {
627 key = rb_entry(n, struct key, serial_node);
628
629 if (id < key->serial)
630 n = n->rb_left;
631 else if (id > key->serial)
632 n = n->rb_right;
633 else
634 goto found;
635 }
636
973c9f4f 637not_found:
1da177e4
LT
638 key = ERR_PTR(-ENOKEY);
639 goto error;
640
973c9f4f 641found:
5593122e
DH
642 /* pretend it doesn't exist if it is awaiting deletion */
643 if (atomic_read(&key->usage) == 0)
1da177e4
LT
644 goto not_found;
645
646 /* this races with key_put(), but that doesn't matter since key_put()
647 * doesn't actually change the key
648 */
ccc3e6d9 649 __key_get(key);
1da177e4 650
973c9f4f 651error:
1da177e4
LT
652 spin_unlock(&key_serial_lock);
653 return key;
a8b17ed0 654}
1da177e4 655
1da177e4 656/*
973c9f4f
DH
657 * Find and lock the specified key type against removal.
658 *
659 * We return with the sem read-locked if successful. If the type wasn't
660 * available -ENOKEY is returned instead.
1da177e4
LT
661 */
662struct key_type *key_type_lookup(const char *type)
663{
664 struct key_type *ktype;
665
666 down_read(&key_types_sem);
667
668 /* look up the key type to see if it's one of the registered kernel
669 * types */
670 list_for_each_entry(ktype, &key_types_list, link) {
671 if (strcmp(ktype->name, type) == 0)
672 goto found_kernel_type;
673 }
674
675 up_read(&key_types_sem);
676 ktype = ERR_PTR(-ENOKEY);
677
973c9f4f 678found_kernel_type:
1da177e4 679 return ktype;
a8b17ed0 680}
1da177e4 681
59e6b9c1
BS
682void key_set_timeout(struct key *key, unsigned timeout)
683{
684 struct timespec now;
685 time_t expiry = 0;
686
687 /* make the changes with the locks held to prevent races */
688 down_write(&key->sem);
689
690 if (timeout > 0) {
691 now = current_kernel_time();
692 expiry = now.tv_sec + timeout;
693 }
694
695 key->expiry = expiry;
696 key_schedule_gc(key->expiry + key_gc_delay);
697
698 up_write(&key->sem);
699}
700EXPORT_SYMBOL_GPL(key_set_timeout);
701
1da177e4 702/*
973c9f4f 703 * Unlock a key type locked by key_type_lookup().
1da177e4
LT
704 */
705void key_type_put(struct key_type *ktype)
706{
707 up_read(&key_types_sem);
a8b17ed0 708}
1da177e4 709
1da177e4 710/*
973c9f4f
DH
711 * Attempt to update an existing key.
712 *
713 * The key is given to us with an incremented refcount that we need to discard
714 * if we get an error.
1da177e4 715 */
664cceb0 716static inline key_ref_t __key_update(key_ref_t key_ref,
cf7f601c 717 struct key_preparsed_payload *prep)
1da177e4 718{
664cceb0 719 struct key *key = key_ref_to_ptr(key_ref);
1da177e4
LT
720 int ret;
721
722 /* need write permission on the key to update it */
f5895943 723 ret = key_permission(key_ref, KEY_NEED_WRITE);
29db9190 724 if (ret < 0)
1da177e4
LT
725 goto error;
726
727 ret = -EEXIST;
728 if (!key->type->update)
729 goto error;
730
731 down_write(&key->sem);
732
cf7f601c 733 ret = key->type->update(key, prep);
76d8aeab 734 if (ret == 0)
1da177e4 735 /* updating a negative key instantiates it */
76d8aeab 736 clear_bit(KEY_FLAG_NEGATIVE, &key->flags);
1da177e4
LT
737
738 up_write(&key->sem);
739
740 if (ret < 0)
741 goto error;
664cceb0
DH
742out:
743 return key_ref;
1da177e4 744
664cceb0 745error:
1da177e4 746 key_put(key);
664cceb0 747 key_ref = ERR_PTR(ret);
1da177e4 748 goto out;
a8b17ed0 749}
1da177e4 750
973c9f4f
DH
751/**
752 * key_create_or_update - Update or create and instantiate a key.
753 * @keyring_ref: A pointer to the destination keyring with possession flag.
754 * @type: The type of key.
755 * @description: The searchable description for the key.
756 * @payload: The data to use to instantiate or update the key.
757 * @plen: The length of @payload.
758 * @perm: The permissions mask for a new key.
759 * @flags: The quota flags for a new key.
760 *
761 * Search the destination keyring for a key of the same description and if one
762 * is found, update it, otherwise create and instantiate a new one and create a
763 * link to it from that keyring.
764 *
765 * If perm is KEY_PERM_UNDEF then an appropriate key permissions mask will be
766 * concocted.
767 *
768 * Returns a pointer to the new key if successful, -ENODEV if the key type
769 * wasn't available, -ENOTDIR if the keyring wasn't a keyring, -EACCES if the
770 * caller isn't permitted to modify the keyring or the LSM did not permit
771 * creation of the key.
772 *
773 * On success, the possession flag from the keyring ref will be tacked on to
774 * the key ref before it is returned.
1da177e4 775 */
664cceb0
DH
776key_ref_t key_create_or_update(key_ref_t keyring_ref,
777 const char *type,
778 const char *description,
779 const void *payload,
780 size_t plen,
6b79ccb5 781 key_perm_t perm,
7e047ef5 782 unsigned long flags)
1da177e4 783{
16feef43
DH
784 struct keyring_index_key index_key = {
785 .description = description,
786 };
cf7f601c 787 struct key_preparsed_payload prep;
b2a4df20 788 struct assoc_array_edit *edit;
d84f4f99 789 const struct cred *cred = current_cred();
664cceb0 790 struct key *keyring, *key = NULL;
664cceb0 791 key_ref_t key_ref;
1da177e4
LT
792 int ret;
793
1da177e4
LT
794 /* look up the key type to see if it's one of the registered kernel
795 * types */
16feef43
DH
796 index_key.type = key_type_lookup(type);
797 if (IS_ERR(index_key.type)) {
664cceb0 798 key_ref = ERR_PTR(-ENODEV);
1da177e4
LT
799 goto error;
800 }
801
664cceb0 802 key_ref = ERR_PTR(-EINVAL);
c06cfb08 803 if (!index_key.type->instantiate ||
16feef43 804 (!index_key.description && !index_key.type->preparse))
cf7f601c 805 goto error_put_type;
1da177e4 806
664cceb0
DH
807 keyring = key_ref_to_ptr(keyring_ref);
808
809 key_check(keyring);
810
c3a9d654
DH
811 key_ref = ERR_PTR(-ENOTDIR);
812 if (keyring->type != &key_type_keyring)
cf7f601c
DH
813 goto error_put_type;
814
815 memset(&prep, 0, sizeof(prep));
816 prep.data = payload;
817 prep.datalen = plen;
16feef43 818 prep.quotalen = index_key.type->def_datalen;
008643b8 819 prep.trusted = flags & KEY_ALLOC_TRUSTED;
7dfa0ca6 820 prep.expiry = TIME_T_MAX;
16feef43
DH
821 if (index_key.type->preparse) {
822 ret = index_key.type->preparse(&prep);
cf7f601c
DH
823 if (ret < 0) {
824 key_ref = ERR_PTR(ret);
4d8c0250 825 goto error_free_prep;
cf7f601c 826 }
16feef43
DH
827 if (!index_key.description)
828 index_key.description = prep.description;
cf7f601c 829 key_ref = ERR_PTR(-EINVAL);
16feef43 830 if (!index_key.description)
cf7f601c
DH
831 goto error_free_prep;
832 }
16feef43 833 index_key.desc_len = strlen(index_key.description);
c3a9d654 834
008643b8
DH
835 key_ref = ERR_PTR(-EPERM);
836 if (!prep.trusted && test_bit(KEY_FLAG_TRUSTED_ONLY, &keyring->flags))
837 goto error_free_prep;
838 flags |= prep.trusted ? KEY_ALLOC_TRUSTED : 0;
839
b2a4df20 840 ret = __key_link_begin(keyring, &index_key, &edit);
cf7f601c
DH
841 if (ret < 0) {
842 key_ref = ERR_PTR(ret);
843 goto error_free_prep;
844 }
664cceb0
DH
845
846 /* if we're going to allocate a new key, we're going to have
847 * to modify the keyring */
f5895943 848 ret = key_permission(keyring_ref, KEY_NEED_WRITE);
29db9190
DH
849 if (ret < 0) {
850 key_ref = ERR_PTR(ret);
cf7f601c 851 goto error_link_end;
29db9190 852 }
664cceb0 853
1d9b7d97
DH
854 /* if it's possible to update this type of key, search for an existing
855 * key of the same type and description in the destination keyring and
856 * update that instead if possible
1da177e4 857 */
16feef43 858 if (index_key.type->update) {
b2a4df20
DH
859 key_ref = find_key_to_update(keyring_ref, &index_key);
860 if (key_ref)
1d9b7d97
DH
861 goto found_matching_key;
862 }
1da177e4 863
6b79ccb5
AR
864 /* if the client doesn't provide, decide on the permissions we want */
865 if (perm == KEY_PERM_UNDEF) {
866 perm = KEY_POS_VIEW | KEY_POS_SEARCH | KEY_POS_LINK | KEY_POS_SETATTR;
96b5c8fe 867 perm |= KEY_USR_VIEW;
1da177e4 868
16feef43 869 if (index_key.type->read)
96b5c8fe 870 perm |= KEY_POS_READ;
1da177e4 871
16feef43
DH
872 if (index_key.type == &key_type_keyring ||
873 index_key.type->update)
96b5c8fe 874 perm |= KEY_POS_WRITE;
6b79ccb5 875 }
1da177e4
LT
876
877 /* allocate a new key */
16feef43
DH
878 key = key_alloc(index_key.type, index_key.description,
879 cred->fsuid, cred->fsgid, cred, perm, flags);
1da177e4 880 if (IS_ERR(key)) {
e231c2ee 881 key_ref = ERR_CAST(key);
cf7f601c 882 goto error_link_end;
1da177e4
LT
883 }
884
885 /* instantiate it and link it into the target keyring */
b2a4df20 886 ret = __key_instantiate_and_link(key, &prep, keyring, NULL, &edit);
1da177e4
LT
887 if (ret < 0) {
888 key_put(key);
664cceb0 889 key_ref = ERR_PTR(ret);
cf7f601c 890 goto error_link_end;
1da177e4
LT
891 }
892
664cceb0
DH
893 key_ref = make_key_ref(key, is_key_possessed(keyring_ref));
894
cf7f601c 895error_link_end:
b2a4df20 896 __key_link_end(keyring, &index_key, edit);
cf7f601c 897error_free_prep:
16feef43
DH
898 if (index_key.type->preparse)
899 index_key.type->free_preparse(&prep);
cf7f601c 900error_put_type:
16feef43 901 key_type_put(index_key.type);
cf7f601c 902error:
664cceb0 903 return key_ref;
1da177e4
LT
904
905 found_matching_key:
906 /* we found a matching key, so we're going to try to update it
907 * - we can drop the locks first as we have the key pinned
908 */
b2a4df20 909 __key_link_end(keyring, &index_key, edit);
1da177e4 910
cf7f601c
DH
911 key_ref = __key_update(key_ref, &prep);
912 goto error_free_prep;
a8b17ed0 913}
1da177e4
LT
914EXPORT_SYMBOL(key_create_or_update);
915
973c9f4f
DH
916/**
917 * key_update - Update a key's contents.
918 * @key_ref: The pointer (plus possession flag) to the key.
919 * @payload: The data to be used to update the key.
920 * @plen: The length of @payload.
921 *
922 * Attempt to update the contents of a key with the given payload data. The
923 * caller must be granted Write permission on the key. Negative keys can be
924 * instantiated by this method.
925 *
926 * Returns 0 on success, -EACCES if not permitted and -EOPNOTSUPP if the key
927 * type does not support updating. The key type may return other errors.
1da177e4 928 */
664cceb0 929int key_update(key_ref_t key_ref, const void *payload, size_t plen)
1da177e4 930{
cf7f601c 931 struct key_preparsed_payload prep;
664cceb0 932 struct key *key = key_ref_to_ptr(key_ref);
1da177e4
LT
933 int ret;
934
935 key_check(key);
936
937 /* the key must be writable */
f5895943 938 ret = key_permission(key_ref, KEY_NEED_WRITE);
29db9190 939 if (ret < 0)
1da177e4
LT
940 goto error;
941
942 /* attempt to update it if supported */
943 ret = -EOPNOTSUPP;
cf7f601c
DH
944 if (!key->type->update)
945 goto error;
1da177e4 946
cf7f601c
DH
947 memset(&prep, 0, sizeof(prep));
948 prep.data = payload;
949 prep.datalen = plen;
950 prep.quotalen = key->type->def_datalen;
7dfa0ca6 951 prep.expiry = TIME_T_MAX;
cf7f601c
DH
952 if (key->type->preparse) {
953 ret = key->type->preparse(&prep);
954 if (ret < 0)
955 goto error;
1da177e4
LT
956 }
957
cf7f601c
DH
958 down_write(&key->sem);
959
960 ret = key->type->update(key, &prep);
961 if (ret == 0)
962 /* updating a negative key instantiates it */
963 clear_bit(KEY_FLAG_NEGATIVE, &key->flags);
964
965 up_write(&key->sem);
966
4d8c0250 967error:
cf7f601c
DH
968 if (key->type->preparse)
969 key->type->free_preparse(&prep);
1da177e4 970 return ret;
a8b17ed0 971}
1da177e4
LT
972EXPORT_SYMBOL(key_update);
973
973c9f4f
DH
974/**
975 * key_revoke - Revoke a key.
976 * @key: The key to be revoked.
977 *
978 * Mark a key as being revoked and ask the type to free up its resources. The
979 * revocation timeout is set and the key and all its links will be
980 * automatically garbage collected after key_gc_delay amount of time if they
981 * are not manually dealt with first.
1da177e4
LT
982 */
983void key_revoke(struct key *key)
984{
5d135440
DH
985 struct timespec now;
986 time_t time;
987
1da177e4
LT
988 key_check(key);
989
76181c13
DH
990 /* make sure no one's trying to change or use the key when we mark it
991 * - we tell lockdep that we might nest because we might be revoking an
992 * authorisation key whilst holding the sem on a key we've just
993 * instantiated
994 */
995 down_write_nested(&key->sem, 1);
996 if (!test_and_set_bit(KEY_FLAG_REVOKED, &key->flags) &&
997 key->type->revoke)
04c567d9
DH
998 key->type->revoke(key);
999
5d135440
DH
1000 /* set the death time to no more than the expiry time */
1001 now = current_kernel_time();
1002 time = now.tv_sec;
1003 if (key->revoked_at == 0 || key->revoked_at > time) {
1004 key->revoked_at = time;
c08ef808 1005 key_schedule_gc(key->revoked_at + key_gc_delay);
5d135440
DH
1006 }
1007
1da177e4 1008 up_write(&key->sem);
a8b17ed0 1009}
1da177e4
LT
1010EXPORT_SYMBOL(key_revoke);
1011
fd75815f
DH
1012/**
1013 * key_invalidate - Invalidate a key.
1014 * @key: The key to be invalidated.
1015 *
1016 * Mark a key as being invalidated and have it cleaned up immediately. The key
1017 * is ignored by all searches and other operations from this point.
1018 */
1019void key_invalidate(struct key *key)
1020{
1021 kenter("%d", key_serial(key));
1022
1023 key_check(key);
1024
1025 if (!test_bit(KEY_FLAG_INVALIDATED, &key->flags)) {
1026 down_write_nested(&key->sem, 1);
1027 if (!test_and_set_bit(KEY_FLAG_INVALIDATED, &key->flags))
1028 key_schedule_gc_links();
1029 up_write(&key->sem);
1030 }
1031}
1032EXPORT_SYMBOL(key_invalidate);
1033
6a09d17b
DH
1034/**
1035 * generic_key_instantiate - Simple instantiation of a key from preparsed data
1036 * @key: The key to be instantiated
1037 * @prep: The preparsed data to load.
1038 *
1039 * Instantiate a key from preparsed data. We assume we can just copy the data
1040 * in directly and clear the old pointers.
1041 *
1042 * This can be pointed to directly by the key type instantiate op pointer.
1043 */
1044int generic_key_instantiate(struct key *key, struct key_preparsed_payload *prep)
1045{
1046 int ret;
1047
1048 pr_devel("==>%s()\n", __func__);
1049
1050 ret = key_payload_reserve(key, prep->quotalen);
1051 if (ret == 0) {
146aa8b1
DH
1052 rcu_assign_keypointer(key, prep->payload.data[0]);
1053 key->payload.data[1] = prep->payload.data[1];
1054 key->payload.data[2] = prep->payload.data[2];
1055 key->payload.data[3] = prep->payload.data[3];
1056 prep->payload.data[0] = NULL;
1057 prep->payload.data[1] = NULL;
1058 prep->payload.data[2] = NULL;
1059 prep->payload.data[3] = NULL;
6a09d17b
DH
1060 }
1061 pr_devel("<==%s() = %d\n", __func__, ret);
1062 return ret;
1063}
1064EXPORT_SYMBOL(generic_key_instantiate);
1065
973c9f4f
DH
1066/**
1067 * register_key_type - Register a type of key.
1068 * @ktype: The new key type.
1069 *
1070 * Register a new key type.
1071 *
1072 * Returns 0 on success or -EEXIST if a type of this name already exists.
1da177e4
LT
1073 */
1074int register_key_type(struct key_type *ktype)
1075{
1076 struct key_type *p;
1077 int ret;
1078
7845bc39
DH
1079 memset(&ktype->lock_class, 0, sizeof(ktype->lock_class));
1080
1da177e4
LT
1081 ret = -EEXIST;
1082 down_write(&key_types_sem);
1083
1084 /* disallow key types with the same name */
1085 list_for_each_entry(p, &key_types_list, link) {
1086 if (strcmp(p->name, ktype->name) == 0)
1087 goto out;
1088 }
1089
1090 /* store the type */
1091 list_add(&ktype->link, &key_types_list);
1eb1bcf5
DH
1092
1093 pr_notice("Key type %s registered\n", ktype->name);
1da177e4
LT
1094 ret = 0;
1095
973c9f4f 1096out:
1da177e4
LT
1097 up_write(&key_types_sem);
1098 return ret;
a8b17ed0 1099}
1da177e4
LT
1100EXPORT_SYMBOL(register_key_type);
1101
973c9f4f
DH
1102/**
1103 * unregister_key_type - Unregister a type of key.
1104 * @ktype: The key type.
1105 *
1106 * Unregister a key type and mark all the extant keys of this type as dead.
1107 * Those keys of this type are then destroyed to get rid of their payloads and
1108 * they and their links will be garbage collected as soon as possible.
1da177e4
LT
1109 */
1110void unregister_key_type(struct key_type *ktype)
1111{
1da177e4 1112 down_write(&key_types_sem);
1da177e4 1113 list_del_init(&ktype->link);
0c061b57
DH
1114 downgrade_write(&key_types_sem);
1115 key_gc_keytype(ktype);
1eb1bcf5 1116 pr_notice("Key type %s unregistered\n", ktype->name);
0c061b57 1117 up_read(&key_types_sem);
a8b17ed0 1118}
1da177e4
LT
1119EXPORT_SYMBOL(unregister_key_type);
1120
1da177e4 1121/*
973c9f4f 1122 * Initialise the key management state.
1da177e4
LT
1123 */
1124void __init key_init(void)
1125{
1126 /* allocate a slab in which we can store keys */
1127 key_jar = kmem_cache_create("key_jar", sizeof(struct key),
20c2df83 1128 0, SLAB_HWCACHE_ALIGN|SLAB_PANIC, NULL);
1da177e4
LT
1129
1130 /* add the special key types */
1131 list_add_tail(&key_type_keyring.link, &key_types_list);
1132 list_add_tail(&key_type_dead.link, &key_types_list);
1133 list_add_tail(&key_type_user.link, &key_types_list);
9f6ed2ca 1134 list_add_tail(&key_type_logon.link, &key_types_list);
1da177e4
LT
1135
1136 /* record the root user tracking */
1137 rb_link_node(&root_key_user.node,
1138 NULL,
1139 &key_user_tree.rb_node);
1140
1141 rb_insert_color(&root_key_user.node,
1142 &key_user_tree);
a8b17ed0 1143}