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Commit | Line | Data |
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1da177e4 LT |
1 | /* |
2 | * Scatterlist Cryptographic API. | |
3 | * | |
4 | * Copyright (c) 2002 James Morris <[email protected]> | |
5 | * Copyright (c) 2002 David S. Miller ([email protected]) | |
5cb1454b | 6 | * Copyright (c) 2005 Herbert Xu <[email protected]> |
1da177e4 LT |
7 | * |
8 | * Portions derived from Cryptoapi, by Alexander Kjeldaas <[email protected]> | |
991d1740 | 9 | * and Nettle, by Niels Möller. |
1da177e4 LT |
10 | * |
11 | * This program is free software; you can redistribute it and/or modify it | |
12 | * under the terms of the GNU General Public License as published by the Free | |
3d01a33b | 13 | * Software Foundation; either version 2 of the License, or (at your option) |
1da177e4 LT |
14 | * any later version. |
15 | * | |
16 | */ | |
a61cc448 | 17 | |
6bfd4809 | 18 | #include <linux/err.h> |
1da177e4 | 19 | #include <linux/errno.h> |
5cb1454b | 20 | #include <linux/kernel.h> |
176c3652 | 21 | #include <linux/kmod.h> |
2b8c19db | 22 | #include <linux/module.h> |
2825982d | 23 | #include <linux/param.h> |
6bfd4809 | 24 | #include <linux/sched.h> |
1da177e4 | 25 | #include <linux/slab.h> |
5cb1454b | 26 | #include <linux/string.h> |
1da177e4 LT |
27 | #include "internal.h" |
28 | ||
29 | LIST_HEAD(crypto_alg_list); | |
cce9e06d | 30 | EXPORT_SYMBOL_GPL(crypto_alg_list); |
1da177e4 | 31 | DECLARE_RWSEM(crypto_alg_sem); |
cce9e06d | 32 | EXPORT_SYMBOL_GPL(crypto_alg_sem); |
1da177e4 | 33 | |
2825982d HX |
34 | BLOCKING_NOTIFIER_HEAD(crypto_chain); |
35 | EXPORT_SYMBOL_GPL(crypto_chain); | |
36 | ||
6521f302 | 37 | static inline struct crypto_alg *crypto_alg_get(struct crypto_alg *alg) |
1da177e4 | 38 | { |
6521f302 HX |
39 | atomic_inc(&alg->cra_refcnt); |
40 | return alg; | |
41 | } | |
42 | ||
2825982d | 43 | struct crypto_alg *crypto_mod_get(struct crypto_alg *alg) |
6521f302 HX |
44 | { |
45 | return try_module_get(alg->cra_module) ? crypto_alg_get(alg) : NULL; | |
1da177e4 | 46 | } |
2825982d | 47 | EXPORT_SYMBOL_GPL(crypto_mod_get); |
1da177e4 | 48 | |
2825982d | 49 | void crypto_mod_put(struct crypto_alg *alg) |
1da177e4 | 50 | { |
da7cd59a HX |
51 | struct module *module = alg->cra_module; |
52 | ||
6521f302 | 53 | crypto_alg_put(alg); |
da7cd59a | 54 | module_put(module); |
1da177e4 | 55 | } |
2825982d | 56 | EXPORT_SYMBOL_GPL(crypto_mod_put); |
1da177e4 | 57 | |
73d3864a HX |
58 | static inline int crypto_is_test_larval(struct crypto_larval *larval) |
59 | { | |
60 | return larval->alg.cra_driver_name[0]; | |
61 | } | |
62 | ||
c51b6c81 HX |
63 | static struct crypto_alg *__crypto_alg_lookup(const char *name, u32 type, |
64 | u32 mask) | |
1da177e4 LT |
65 | { |
66 | struct crypto_alg *q, *alg = NULL; | |
2825982d | 67 | int best = -2; |
1da177e4 | 68 | |
1da177e4 | 69 | list_for_each_entry(q, &crypto_alg_list, cra_list) { |
5cb1454b HX |
70 | int exact, fuzzy; |
71 | ||
6bfd4809 HX |
72 | if (crypto_is_moribund(q)) |
73 | continue; | |
74 | ||
492e2b63 HX |
75 | if ((q->cra_flags ^ type) & mask) |
76 | continue; | |
77 | ||
78 | if (crypto_is_larval(q) && | |
73d3864a | 79 | !crypto_is_test_larval((struct crypto_larval *)q) && |
492e2b63 HX |
80 | ((struct crypto_larval *)q)->mask != mask) |
81 | continue; | |
82 | ||
5cb1454b HX |
83 | exact = !strcmp(q->cra_driver_name, name); |
84 | fuzzy = !strcmp(q->cra_name, name); | |
85 | if (!exact && !(fuzzy && q->cra_priority > best)) | |
86 | continue; | |
87 | ||
72fa4919 | 88 | if (unlikely(!crypto_mod_get(q))) |
5cb1454b HX |
89 | continue; |
90 | ||
91 | best = q->cra_priority; | |
92 | if (alg) | |
72fa4919 | 93 | crypto_mod_put(alg); |
5cb1454b HX |
94 | alg = q; |
95 | ||
96 | if (exact) | |
1da177e4 | 97 | break; |
1da177e4 | 98 | } |
2825982d HX |
99 | |
100 | return alg; | |
101 | } | |
2825982d HX |
102 | |
103 | static void crypto_larval_destroy(struct crypto_alg *alg) | |
104 | { | |
105 | struct crypto_larval *larval = (void *)alg; | |
106 | ||
107 | BUG_ON(!crypto_is_larval(alg)); | |
108 | if (larval->adult) | |
109 | crypto_mod_put(larval->adult); | |
110 | kfree(larval); | |
111 | } | |
112 | ||
73d3864a | 113 | struct crypto_larval *crypto_larval_alloc(const char *name, u32 type, u32 mask) |
2825982d | 114 | { |
2825982d HX |
115 | struct crypto_larval *larval; |
116 | ||
117 | larval = kzalloc(sizeof(*larval), GFP_KERNEL); | |
118 | if (!larval) | |
6bfd4809 | 119 | return ERR_PTR(-ENOMEM); |
2825982d | 120 | |
492e2b63 HX |
121 | larval->mask = mask; |
122 | larval->alg.cra_flags = CRYPTO_ALG_LARVAL | type; | |
2825982d HX |
123 | larval->alg.cra_priority = -1; |
124 | larval->alg.cra_destroy = crypto_larval_destroy; | |
125 | ||
2825982d HX |
126 | strlcpy(larval->alg.cra_name, name, CRYPTO_MAX_ALG_NAME); |
127 | init_completion(&larval->completion); | |
128 | ||
73d3864a HX |
129 | return larval; |
130 | } | |
131 | EXPORT_SYMBOL_GPL(crypto_larval_alloc); | |
132 | ||
133 | static struct crypto_alg *crypto_larval_add(const char *name, u32 type, | |
134 | u32 mask) | |
135 | { | |
136 | struct crypto_alg *alg; | |
137 | struct crypto_larval *larval; | |
138 | ||
139 | larval = crypto_larval_alloc(name, type, mask); | |
140 | if (IS_ERR(larval)) | |
141 | return ERR_CAST(larval); | |
142 | ||
143 | atomic_set(&larval->alg.cra_refcnt, 2); | |
144 | ||
2825982d | 145 | down_write(&crypto_alg_sem); |
492e2b63 | 146 | alg = __crypto_alg_lookup(name, type, mask); |
2825982d HX |
147 | if (!alg) { |
148 | alg = &larval->alg; | |
149 | list_add(&alg->cra_list, &crypto_alg_list); | |
150 | } | |
151 | up_write(&crypto_alg_sem); | |
152 | ||
153 | if (alg != &larval->alg) | |
154 | kfree(larval); | |
155 | ||
156 | return alg; | |
157 | } | |
158 | ||
b9c55aa4 | 159 | void crypto_larval_kill(struct crypto_alg *alg) |
2825982d HX |
160 | { |
161 | struct crypto_larval *larval = (void *)alg; | |
162 | ||
163 | down_write(&crypto_alg_sem); | |
164 | list_del(&alg->cra_list); | |
165 | up_write(&crypto_alg_sem); | |
fe3c5206 | 166 | complete_all(&larval->completion); |
2825982d HX |
167 | crypto_alg_put(alg); |
168 | } | |
b9c55aa4 | 169 | EXPORT_SYMBOL_GPL(crypto_larval_kill); |
2825982d HX |
170 | |
171 | static struct crypto_alg *crypto_larval_wait(struct crypto_alg *alg) | |
172 | { | |
173 | struct crypto_larval *larval = (void *)alg; | |
73d3864a HX |
174 | long timeout; |
175 | ||
176 | timeout = wait_for_completion_interruptible_timeout( | |
177 | &larval->completion, 60 * HZ); | |
2825982d | 178 | |
2825982d | 179 | alg = larval->adult; |
73d3864a HX |
180 | if (timeout < 0) |
181 | alg = ERR_PTR(-EINTR); | |
182 | else if (!timeout) | |
183 | alg = ERR_PTR(-ETIMEDOUT); | |
184 | else if (!alg) | |
6bfd4809 | 185 | alg = ERR_PTR(-ENOENT); |
73d3864a HX |
186 | else if (crypto_is_test_larval(larval) && |
187 | !(alg->cra_flags & CRYPTO_ALG_TESTED)) | |
188 | alg = ERR_PTR(-EAGAIN); | |
189 | else if (!crypto_mod_get(alg)) | |
190 | alg = ERR_PTR(-EAGAIN); | |
2825982d HX |
191 | crypto_mod_put(&larval->alg); |
192 | ||
193 | return alg; | |
194 | } | |
195 | ||
c51b6c81 | 196 | struct crypto_alg *crypto_alg_lookup(const char *name, u32 type, u32 mask) |
2825982d HX |
197 | { |
198 | struct crypto_alg *alg; | |
199 | ||
2825982d | 200 | down_read(&crypto_alg_sem); |
492e2b63 | 201 | alg = __crypto_alg_lookup(name, type, mask); |
1da177e4 | 202 | up_read(&crypto_alg_sem); |
2825982d | 203 | |
1da177e4 LT |
204 | return alg; |
205 | } | |
c51b6c81 | 206 | EXPORT_SYMBOL_GPL(crypto_alg_lookup); |
1da177e4 | 207 | |
b9c55aa4 | 208 | struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) |
176c3652 | 209 | { |
2825982d | 210 | struct crypto_alg *alg; |
2825982d | 211 | |
6bfd4809 HX |
212 | if (!name) |
213 | return ERR_PTR(-ENOENT); | |
214 | ||
215 | mask &= ~(CRYPTO_ALG_LARVAL | CRYPTO_ALG_DEAD); | |
492e2b63 HX |
216 | type &= mask; |
217 | ||
a760a665 HX |
218 | alg = crypto_alg_lookup(name, type, mask); |
219 | if (!alg) { | |
aa07a699 | 220 | request_module("%s", name); |
a760a665 | 221 | |
37fc334c | 222 | if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & |
aa07a699 AR |
223 | CRYPTO_ALG_NEED_FALLBACK)) |
224 | request_module("%s-all", name); | |
a760a665 HX |
225 | |
226 | alg = crypto_alg_lookup(name, type, mask); | |
227 | } | |
228 | ||
2825982d HX |
229 | if (alg) |
230 | return crypto_is_larval(alg) ? crypto_larval_wait(alg) : alg; | |
231 | ||
73d3864a | 232 | return crypto_larval_add(name, type, mask); |
b9c55aa4 HX |
233 | } |
234 | EXPORT_SYMBOL_GPL(crypto_larval_lookup); | |
235 | ||
73d3864a HX |
236 | int crypto_probing_notify(unsigned long val, void *v) |
237 | { | |
238 | int ok; | |
239 | ||
240 | ok = blocking_notifier_call_chain(&crypto_chain, val, v); | |
241 | if (ok == NOTIFY_DONE) { | |
242 | request_module("cryptomgr"); | |
243 | ok = blocking_notifier_call_chain(&crypto_chain, val, v); | |
244 | } | |
245 | ||
246 | return ok; | |
247 | } | |
248 | EXPORT_SYMBOL_GPL(crypto_probing_notify); | |
249 | ||
b9c55aa4 HX |
250 | struct crypto_alg *crypto_alg_mod_lookup(const char *name, u32 type, u32 mask) |
251 | { | |
252 | struct crypto_alg *alg; | |
253 | struct crypto_alg *larval; | |
254 | int ok; | |
255 | ||
ff753308 | 256 | if (!((type | mask) & CRYPTO_ALG_TESTED)) { |
73d3864a HX |
257 | type |= CRYPTO_ALG_TESTED; |
258 | mask |= CRYPTO_ALG_TESTED; | |
259 | } | |
260 | ||
b9c55aa4 | 261 | larval = crypto_larval_lookup(name, type, mask); |
6bfd4809 | 262 | if (IS_ERR(larval) || !crypto_is_larval(larval)) |
2825982d HX |
263 | return larval; |
264 | ||
73d3864a | 265 | ok = crypto_probing_notify(CRYPTO_MSG_ALG_REQUEST, larval); |
2b8c19db HX |
266 | |
267 | if (ok == NOTIFY_STOP) | |
2825982d HX |
268 | alg = crypto_larval_wait(larval); |
269 | else { | |
270 | crypto_mod_put(larval); | |
6bfd4809 | 271 | alg = ERR_PTR(-ENOENT); |
2825982d HX |
272 | } |
273 | crypto_larval_kill(larval); | |
274 | return alg; | |
176c3652 | 275 | } |
492e2b63 | 276 | EXPORT_SYMBOL_GPL(crypto_alg_mod_lookup); |
176c3652 | 277 | |
27d2a330 | 278 | static int crypto_init_ops(struct crypto_tfm *tfm, u32 type, u32 mask) |
1da177e4 | 279 | { |
27d2a330 | 280 | const struct crypto_type *type_obj = tfm->__crt_alg->cra_type; |
e853c3cf | 281 | |
27d2a330 HX |
282 | if (type_obj) |
283 | return type_obj->init(tfm, type, mask); | |
e853c3cf | 284 | |
1da177e4 LT |
285 | switch (crypto_tfm_alg_type(tfm)) { |
286 | case CRYPTO_ALG_TYPE_CIPHER: | |
287 | return crypto_init_cipher_ops(tfm); | |
004a403c | 288 | |
1da177e4 LT |
289 | case CRYPTO_ALG_TYPE_COMPRESS: |
290 | return crypto_init_compress_ops(tfm); | |
3d01a33b | 291 | |
1da177e4 LT |
292 | default: |
293 | break; | |
294 | } | |
3d01a33b | 295 | |
1da177e4 LT |
296 | BUG(); |
297 | return -EINVAL; | |
298 | } | |
299 | ||
300 | static void crypto_exit_ops(struct crypto_tfm *tfm) | |
301 | { | |
e853c3cf HX |
302 | const struct crypto_type *type = tfm->__crt_alg->cra_type; |
303 | ||
304 | if (type) { | |
4a779486 HX |
305 | if (tfm->exit) |
306 | tfm->exit(tfm); | |
e853c3cf HX |
307 | return; |
308 | } | |
309 | ||
1da177e4 LT |
310 | switch (crypto_tfm_alg_type(tfm)) { |
311 | case CRYPTO_ALG_TYPE_CIPHER: | |
312 | crypto_exit_cipher_ops(tfm); | |
313 | break; | |
6941c3a0 | 314 | |
1da177e4 LT |
315 | case CRYPTO_ALG_TYPE_COMPRESS: |
316 | crypto_exit_compress_ops(tfm); | |
317 | break; | |
3d01a33b | 318 | |
1da177e4 LT |
319 | default: |
320 | BUG(); | |
1da177e4 LT |
321 | } |
322 | } | |
323 | ||
27d2a330 | 324 | static unsigned int crypto_ctxsize(struct crypto_alg *alg, u32 type, u32 mask) |
fbdae9f3 | 325 | { |
27d2a330 | 326 | const struct crypto_type *type_obj = alg->cra_type; |
fbdae9f3 HX |
327 | unsigned int len; |
328 | ||
e853c3cf | 329 | len = alg->cra_alignmask & ~(crypto_tfm_ctx_alignment() - 1); |
27d2a330 HX |
330 | if (type_obj) |
331 | return len + type_obj->ctxsize(alg, type, mask); | |
e853c3cf | 332 | |
fbdae9f3 HX |
333 | switch (alg->cra_flags & CRYPTO_ALG_TYPE_MASK) { |
334 | default: | |
335 | BUG(); | |
336 | ||
337 | case CRYPTO_ALG_TYPE_CIPHER: | |
f1ddcaf3 | 338 | len += crypto_cipher_ctxsize(alg); |
fbdae9f3 | 339 | break; |
6941c3a0 | 340 | |
fbdae9f3 | 341 | case CRYPTO_ALG_TYPE_COMPRESS: |
f1ddcaf3 | 342 | len += crypto_compress_ctxsize(alg); |
fbdae9f3 HX |
343 | break; |
344 | } | |
345 | ||
e853c3cf | 346 | return len; |
fbdae9f3 HX |
347 | } |
348 | ||
6bfd4809 HX |
349 | void crypto_shoot_alg(struct crypto_alg *alg) |
350 | { | |
351 | down_write(&crypto_alg_sem); | |
352 | alg->cra_flags |= CRYPTO_ALG_DYING; | |
353 | up_write(&crypto_alg_sem); | |
354 | } | |
355 | EXPORT_SYMBOL_GPL(crypto_shoot_alg); | |
356 | ||
27d2a330 HX |
357 | struct crypto_tfm *__crypto_alloc_tfm(struct crypto_alg *alg, u32 type, |
358 | u32 mask) | |
1da177e4 LT |
359 | { |
360 | struct crypto_tfm *tfm = NULL; | |
fbdae9f3 | 361 | unsigned int tfm_size; |
6bfd4809 | 362 | int err = -ENOMEM; |
fbdae9f3 | 363 | |
27d2a330 | 364 | tfm_size = sizeof(*tfm) + crypto_ctxsize(alg, type, mask); |
bbeb563f | 365 | tfm = kzalloc(tfm_size, GFP_KERNEL); |
1da177e4 | 366 | if (tfm == NULL) |
9765d262 | 367 | goto out_err; |
1da177e4 | 368 | |
1da177e4 | 369 | tfm->__crt_alg = alg; |
6bfd4809 | 370 | |
27d2a330 | 371 | err = crypto_init_ops(tfm, type, mask); |
6bfd4809 | 372 | if (err) |
1da177e4 | 373 | goto out_free_tfm; |
c7fc0599 | 374 | |
4a779486 | 375 | if (!tfm->exit && alg->cra_init && (err = alg->cra_init(tfm))) |
c7fc0599 | 376 | goto cra_init_failed; |
1da177e4 LT |
377 | |
378 | goto out; | |
379 | ||
c7fc0599 HX |
380 | cra_init_failed: |
381 | crypto_exit_ops(tfm); | |
1da177e4 | 382 | out_free_tfm: |
4a779486 HX |
383 | if (err == -EAGAIN) |
384 | crypto_shoot_alg(alg); | |
1da177e4 | 385 | kfree(tfm); |
9765d262 | 386 | out_err: |
6bfd4809 | 387 | tfm = ERR_PTR(err); |
1da177e4 LT |
388 | out: |
389 | return tfm; | |
390 | } | |
6bfd4809 HX |
391 | EXPORT_SYMBOL_GPL(__crypto_alloc_tfm); |
392 | ||
6d7d684d HX |
393 | /* |
394 | * crypto_alloc_base - Locate algorithm and allocate transform | |
395 | * @alg_name: Name of algorithm | |
396 | * @type: Type of algorithm | |
397 | * @mask: Mask for type comparison | |
398 | * | |
7b0bac64 HX |
399 | * This function should not be used by new algorithm types. |
400 | * Plesae use crypto_alloc_tfm instead. | |
401 | * | |
6d7d684d HX |
402 | * crypto_alloc_base() will first attempt to locate an already loaded |
403 | * algorithm. If that fails and the kernel supports dynamically loadable | |
404 | * modules, it will then attempt to load a module of the same name or | |
405 | * alias. If that fails it will send a query to any loaded crypto manager | |
406 | * to construct an algorithm on the fly. A refcount is grabbed on the | |
407 | * algorithm which is then associated with the new transform. | |
408 | * | |
409 | * The returned transform is of a non-determinate type. Most people | |
410 | * should use one of the more specific allocation functions such as | |
411 | * crypto_alloc_blkcipher. | |
412 | * | |
413 | * In case of error the return value is an error pointer. | |
414 | */ | |
415 | struct crypto_tfm *crypto_alloc_base(const char *alg_name, u32 type, u32 mask) | |
416 | { | |
417 | struct crypto_tfm *tfm; | |
418 | int err; | |
419 | ||
420 | for (;;) { | |
421 | struct crypto_alg *alg; | |
422 | ||
423 | alg = crypto_alg_mod_lookup(alg_name, type, mask); | |
9765d262 AM |
424 | if (IS_ERR(alg)) { |
425 | err = PTR_ERR(alg); | |
6d7d684d | 426 | goto err; |
9765d262 | 427 | } |
6d7d684d | 428 | |
27d2a330 | 429 | tfm = __crypto_alloc_tfm(alg, type, mask); |
6d7d684d | 430 | if (!IS_ERR(tfm)) |
9765d262 | 431 | return tfm; |
6d7d684d HX |
432 | |
433 | crypto_mod_put(alg); | |
434 | err = PTR_ERR(tfm); | |
435 | ||
436 | err: | |
437 | if (err != -EAGAIN) | |
438 | break; | |
439 | if (signal_pending(current)) { | |
440 | err = -EINTR; | |
441 | break; | |
442 | } | |
9765d262 | 443 | } |
6d7d684d | 444 | |
9765d262 | 445 | return ERR_PTR(err); |
6d7d684d HX |
446 | } |
447 | EXPORT_SYMBOL_GPL(crypto_alloc_base); | |
7b0bac64 | 448 | |
3f683d61 HX |
449 | void *crypto_create_tfm(struct crypto_alg *alg, |
450 | const struct crypto_type *frontend) | |
7b0bac64 HX |
451 | { |
452 | char *mem; | |
453 | struct crypto_tfm *tfm = NULL; | |
454 | unsigned int tfmsize; | |
455 | unsigned int total; | |
456 | int err = -ENOMEM; | |
457 | ||
458 | tfmsize = frontend->tfmsize; | |
2ca33da1 | 459 | total = tfmsize + sizeof(*tfm) + frontend->extsize(alg); |
7b0bac64 HX |
460 | |
461 | mem = kzalloc(total, GFP_KERNEL); | |
462 | if (mem == NULL) | |
463 | goto out_err; | |
464 | ||
465 | tfm = (struct crypto_tfm *)(mem + tfmsize); | |
466 | tfm->__crt_alg = alg; | |
467 | ||
2ca33da1 | 468 | err = frontend->init_tfm(tfm); |
7b0bac64 HX |
469 | if (err) |
470 | goto out_free_tfm; | |
471 | ||
472 | if (!tfm->exit && alg->cra_init && (err = alg->cra_init(tfm))) | |
473 | goto cra_init_failed; | |
474 | ||
475 | goto out; | |
476 | ||
477 | cra_init_failed: | |
478 | crypto_exit_ops(tfm); | |
479 | out_free_tfm: | |
480 | if (err == -EAGAIN) | |
481 | crypto_shoot_alg(alg); | |
482 | kfree(mem); | |
483 | out_err: | |
3f683d61 | 484 | mem = ERR_PTR(err); |
7b0bac64 | 485 | out: |
3f683d61 | 486 | return mem; |
7b0bac64 HX |
487 | } |
488 | EXPORT_SYMBOL_GPL(crypto_create_tfm); | |
489 | ||
d06854f0 HX |
490 | struct crypto_alg *crypto_find_alg(const char *alg_name, |
491 | const struct crypto_type *frontend, | |
492 | u32 type, u32 mask) | |
493 | { | |
494 | struct crypto_alg *(*lookup)(const char *name, u32 type, u32 mask) = | |
495 | crypto_alg_mod_lookup; | |
496 | ||
497 | if (frontend) { | |
498 | type &= frontend->maskclear; | |
499 | mask &= frontend->maskclear; | |
500 | type |= frontend->type; | |
501 | mask |= frontend->maskset; | |
502 | ||
503 | if (frontend->lookup) | |
504 | lookup = frontend->lookup; | |
505 | } | |
506 | ||
507 | return lookup(alg_name, type, mask); | |
508 | } | |
509 | EXPORT_SYMBOL_GPL(crypto_find_alg); | |
510 | ||
7b0bac64 HX |
511 | /* |
512 | * crypto_alloc_tfm - Locate algorithm and allocate transform | |
513 | * @alg_name: Name of algorithm | |
514 | * @frontend: Frontend algorithm type | |
515 | * @type: Type of algorithm | |
516 | * @mask: Mask for type comparison | |
517 | * | |
518 | * crypto_alloc_tfm() will first attempt to locate an already loaded | |
519 | * algorithm. If that fails and the kernel supports dynamically loadable | |
520 | * modules, it will then attempt to load a module of the same name or | |
521 | * alias. If that fails it will send a query to any loaded crypto manager | |
522 | * to construct an algorithm on the fly. A refcount is grabbed on the | |
523 | * algorithm which is then associated with the new transform. | |
524 | * | |
525 | * The returned transform is of a non-determinate type. Most people | |
526 | * should use one of the more specific allocation functions such as | |
527 | * crypto_alloc_blkcipher. | |
528 | * | |
529 | * In case of error the return value is an error pointer. | |
530 | */ | |
3f683d61 HX |
531 | void *crypto_alloc_tfm(const char *alg_name, |
532 | const struct crypto_type *frontend, u32 type, u32 mask) | |
7b0bac64 | 533 | { |
3f683d61 | 534 | void *tfm; |
7b0bac64 HX |
535 | int err; |
536 | ||
7b0bac64 HX |
537 | for (;;) { |
538 | struct crypto_alg *alg; | |
539 | ||
d06854f0 | 540 | alg = crypto_find_alg(alg_name, frontend, type, mask); |
7b0bac64 HX |
541 | if (IS_ERR(alg)) { |
542 | err = PTR_ERR(alg); | |
543 | goto err; | |
544 | } | |
545 | ||
546 | tfm = crypto_create_tfm(alg, frontend); | |
547 | if (!IS_ERR(tfm)) | |
548 | return tfm; | |
549 | ||
550 | crypto_mod_put(alg); | |
551 | err = PTR_ERR(tfm); | |
552 | ||
553 | err: | |
554 | if (err != -EAGAIN) | |
555 | break; | |
556 | if (signal_pending(current)) { | |
557 | err = -EINTR; | |
558 | break; | |
559 | } | |
560 | } | |
561 | ||
562 | return ERR_PTR(err); | |
563 | } | |
564 | EXPORT_SYMBOL_GPL(crypto_alloc_tfm); | |
7b2cd92a | 565 | |
6d7d684d | 566 | /* |
7b2cd92a HX |
567 | * crypto_destroy_tfm - Free crypto transform |
568 | * @mem: Start of tfm slab | |
6d7d684d HX |
569 | * @tfm: Transform to free |
570 | * | |
7b2cd92a | 571 | * This function frees up the transform and any associated resources, |
6d7d684d HX |
572 | * then drops the refcount on the associated algorithm. |
573 | */ | |
7b2cd92a | 574 | void crypto_destroy_tfm(void *mem, struct crypto_tfm *tfm) |
1da177e4 | 575 | { |
a61cc448 | 576 | struct crypto_alg *alg; |
a61cc448 | 577 | |
7b2cd92a | 578 | if (unlikely(!mem)) |
a61cc448 JJ |
579 | return; |
580 | ||
581 | alg = tfm->__crt_alg; | |
1da177e4 | 582 | |
4a779486 | 583 | if (!tfm->exit && alg->cra_exit) |
c7fc0599 | 584 | alg->cra_exit(tfm); |
1da177e4 | 585 | crypto_exit_ops(tfm); |
72fa4919 | 586 | crypto_mod_put(alg); |
811d8f06 | 587 | kzfree(mem); |
1da177e4 | 588 | } |
7b2cd92a | 589 | EXPORT_SYMBOL_GPL(crypto_destroy_tfm); |
fce32d70 HX |
590 | |
591 | int crypto_has_alg(const char *name, u32 type, u32 mask) | |
592 | { | |
593 | int ret = 0; | |
594 | struct crypto_alg *alg = crypto_alg_mod_lookup(name, type, mask); | |
3d01a33b | 595 | |
fce32d70 HX |
596 | if (!IS_ERR(alg)) { |
597 | crypto_mod_put(alg); | |
598 | ret = 1; | |
599 | } | |
3d01a33b | 600 | |
fce32d70 HX |
601 | return ret; |
602 | } | |
603 | EXPORT_SYMBOL_GPL(crypto_has_alg); | |
c3715cb9 SS |
604 | |
605 | MODULE_DESCRIPTION("Cryptographic core API"); | |
606 | MODULE_LICENSE("GPL"); |