1 /*
2  * Asynchronous Cryptographic Hash operations.
3  *
4  * This is the asynchronous version of hash.c with notification of
5  * completion via a callback.
6  *
7  * Copyright (c) 2008 Loc Ho <lho@amcc.com>
8  *
9  * This program is free software; you can redistribute it and/or modify it
10  * under the terms of the GNU General Public License as published by the Free
11  * Software Foundation; either version 2 of the License, or (at your option)
12  * any later version.
13  *
14  */
15 
16 #include <crypto/internal/hash.h>
17 #include <crypto/scatterwalk.h>
18 #include <linux/bug.h>
19 #include <linux/err.h>
20 #include <linux/kernel.h>
21 #include <linux/module.h>
22 #include <linux/sched.h>
23 #include <linux/slab.h>
24 #include <linux/seq_file.h>
25 #include <linux/cryptouser.h>
26 #include <net/netlink.h>
27 
28 #include "internal.h"
29 
30 struct ahash_request_priv {
31 	crypto_completion_t complete;
32 	void *data;
33 	u8 *result;
34 	void *ubuf[] CRYPTO_MINALIGN_ATTR;
35 };
36 
crypto_ahash_alg(struct crypto_ahash * hash)37 static inline struct ahash_alg *crypto_ahash_alg(struct crypto_ahash *hash)
38 {
39 	return container_of(crypto_hash_alg_common(hash), struct ahash_alg,
40 			    halg);
41 }
42 
hash_walk_next(struct crypto_hash_walk * walk)43 static int hash_walk_next(struct crypto_hash_walk *walk)
44 {
45 	unsigned int alignmask = walk->alignmask;
46 	unsigned int offset = walk->offset;
47 	unsigned int nbytes = min(walk->entrylen,
48 				  ((unsigned int)(PAGE_SIZE)) - offset);
49 
50 	if (walk->flags & CRYPTO_ALG_ASYNC)
51 		walk->data = kmap(walk->pg);
52 	else
53 		walk->data = kmap_atomic(walk->pg);
54 	walk->data += offset;
55 
56 	if (offset & alignmask) {
57 		unsigned int unaligned = alignmask + 1 - (offset & alignmask);
58 
59 		if (nbytes > unaligned)
60 			nbytes = unaligned;
61 	}
62 
63 	walk->entrylen -= nbytes;
64 	return nbytes;
65 }
66 
hash_walk_new_entry(struct crypto_hash_walk * walk)67 static int hash_walk_new_entry(struct crypto_hash_walk *walk)
68 {
69 	struct scatterlist *sg;
70 
71 	sg = walk->sg;
72 	walk->offset = sg->offset;
73 	walk->pg = sg_page(walk->sg) + (walk->offset >> PAGE_SHIFT);
74 	walk->offset = offset_in_page(walk->offset);
75 	walk->entrylen = sg->length;
76 
77 	if (walk->entrylen > walk->total)
78 		walk->entrylen = walk->total;
79 	walk->total -= walk->entrylen;
80 
81 	return hash_walk_next(walk);
82 }
83 
crypto_hash_walk_done(struct crypto_hash_walk * walk,int err)84 int crypto_hash_walk_done(struct crypto_hash_walk *walk, int err)
85 {
86 	unsigned int alignmask = walk->alignmask;
87 	unsigned int nbytes = walk->entrylen;
88 
89 	walk->data -= walk->offset;
90 
91 	if (nbytes && walk->offset & alignmask && !err) {
92 		walk->offset = ALIGN(walk->offset, alignmask + 1);
93 		walk->data += walk->offset;
94 
95 		nbytes = min(nbytes,
96 			     ((unsigned int)(PAGE_SIZE)) - walk->offset);
97 		walk->entrylen -= nbytes;
98 
99 		return nbytes;
100 	}
101 
102 	if (walk->flags & CRYPTO_ALG_ASYNC)
103 		kunmap(walk->pg);
104 	else {
105 		kunmap_atomic(walk->data);
106 		/*
107 		 * The may sleep test only makes sense for sync users.
108 		 * Async users don't need to sleep here anyway.
109 		 */
110 		crypto_yield(walk->flags);
111 	}
112 
113 	if (err)
114 		return err;
115 
116 	if (nbytes) {
117 		walk->offset = 0;
118 		walk->pg++;
119 		return hash_walk_next(walk);
120 	}
121 
122 	if (!walk->total)
123 		return 0;
124 
125 	walk->sg = sg_next(walk->sg);
126 
127 	return hash_walk_new_entry(walk);
128 }
129 EXPORT_SYMBOL_GPL(crypto_hash_walk_done);
130 
crypto_hash_walk_first(struct ahash_request * req,struct crypto_hash_walk * walk)131 int crypto_hash_walk_first(struct ahash_request *req,
132 			   struct crypto_hash_walk *walk)
133 {
134 	walk->total = req->nbytes;
135 
136 	if (!walk->total) {
137 		walk->entrylen = 0;
138 		return 0;
139 	}
140 
141 	walk->alignmask = crypto_ahash_alignmask(crypto_ahash_reqtfm(req));
142 	walk->sg = req->src;
143 	walk->flags = req->base.flags & CRYPTO_TFM_REQ_MASK;
144 
145 	return hash_walk_new_entry(walk);
146 }
147 EXPORT_SYMBOL_GPL(crypto_hash_walk_first);
148 
crypto_ahash_walk_first(struct ahash_request * req,struct crypto_hash_walk * walk)149 int crypto_ahash_walk_first(struct ahash_request *req,
150 			    struct crypto_hash_walk *walk)
151 {
152 	walk->total = req->nbytes;
153 
154 	if (!walk->total) {
155 		walk->entrylen = 0;
156 		return 0;
157 	}
158 
159 	walk->alignmask = crypto_ahash_alignmask(crypto_ahash_reqtfm(req));
160 	walk->sg = req->src;
161 	walk->flags = req->base.flags & CRYPTO_TFM_REQ_MASK;
162 	walk->flags |= CRYPTO_ALG_ASYNC;
163 
164 	BUILD_BUG_ON(CRYPTO_TFM_REQ_MASK & CRYPTO_ALG_ASYNC);
165 
166 	return hash_walk_new_entry(walk);
167 }
168 EXPORT_SYMBOL_GPL(crypto_ahash_walk_first);
169 
crypto_hash_walk_first_compat(struct hash_desc * hdesc,struct crypto_hash_walk * walk,struct scatterlist * sg,unsigned int len)170 int crypto_hash_walk_first_compat(struct hash_desc *hdesc,
171 				  struct crypto_hash_walk *walk,
172 				  struct scatterlist *sg, unsigned int len)
173 {
174 	walk->total = len;
175 
176 	if (!walk->total) {
177 		walk->entrylen = 0;
178 		return 0;
179 	}
180 
181 	walk->alignmask = crypto_hash_alignmask(hdesc->tfm);
182 	walk->sg = sg;
183 	walk->flags = hdesc->flags & CRYPTO_TFM_REQ_MASK;
184 
185 	return hash_walk_new_entry(walk);
186 }
187 
ahash_setkey_unaligned(struct crypto_ahash * tfm,const u8 * key,unsigned int keylen)188 static int ahash_setkey_unaligned(struct crypto_ahash *tfm, const u8 *key,
189 				unsigned int keylen)
190 {
191 	unsigned long alignmask = crypto_ahash_alignmask(tfm);
192 	int ret;
193 	u8 *buffer, *alignbuffer;
194 	unsigned long absize;
195 
196 	absize = keylen + alignmask;
197 	buffer = kmalloc(absize, GFP_KERNEL);
198 	if (!buffer)
199 		return -ENOMEM;
200 
201 	alignbuffer = (u8 *)ALIGN((unsigned long)buffer, alignmask + 1);
202 	memcpy(alignbuffer, key, keylen);
203 	ret = tfm->setkey(tfm, alignbuffer, keylen);
204 	kzfree(buffer);
205 	return ret;
206 }
207 
crypto_ahash_setkey(struct crypto_ahash * tfm,const u8 * key,unsigned int keylen)208 int crypto_ahash_setkey(struct crypto_ahash *tfm, const u8 *key,
209 			unsigned int keylen)
210 {
211 	unsigned long alignmask = crypto_ahash_alignmask(tfm);
212 
213 	if ((unsigned long)key & alignmask)
214 		return ahash_setkey_unaligned(tfm, key, keylen);
215 
216 	return tfm->setkey(tfm, key, keylen);
217 }
218 EXPORT_SYMBOL_GPL(crypto_ahash_setkey);
219 
ahash_nosetkey(struct crypto_ahash * tfm,const u8 * key,unsigned int keylen)220 static int ahash_nosetkey(struct crypto_ahash *tfm, const u8 *key,
221 			  unsigned int keylen)
222 {
223 	return -ENOSYS;
224 }
225 
ahash_align_buffer_size(unsigned len,unsigned long mask)226 static inline unsigned int ahash_align_buffer_size(unsigned len,
227 						   unsigned long mask)
228 {
229 	return len + (mask & ~(crypto_tfm_ctx_alignment() - 1));
230 }
231 
ahash_save_req(struct ahash_request * req,crypto_completion_t cplt)232 static int ahash_save_req(struct ahash_request *req, crypto_completion_t cplt)
233 {
234 	struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
235 	unsigned long alignmask = crypto_ahash_alignmask(tfm);
236 	unsigned int ds = crypto_ahash_digestsize(tfm);
237 	struct ahash_request_priv *priv;
238 
239 	priv = kmalloc(sizeof(*priv) + ahash_align_buffer_size(ds, alignmask),
240 		       (req->base.flags & CRYPTO_TFM_REQ_MAY_SLEEP) ?
241 		       GFP_KERNEL : GFP_ATOMIC);
242 	if (!priv)
243 		return -ENOMEM;
244 
245 	/*
246 	 * WARNING: Voodoo programming below!
247 	 *
248 	 * The code below is obscure and hard to understand, thus explanation
249 	 * is necessary. See include/crypto/hash.h and include/linux/crypto.h
250 	 * to understand the layout of structures used here!
251 	 *
252 	 * The code here will replace portions of the ORIGINAL request with
253 	 * pointers to new code and buffers so the hashing operation can store
254 	 * the result in aligned buffer. We will call the modified request
255 	 * an ADJUSTED request.
256 	 *
257 	 * The newly mangled request will look as such:
258 	 *
259 	 * req {
260 	 *   .result        = ADJUSTED[new aligned buffer]
261 	 *   .base.complete = ADJUSTED[pointer to completion function]
262 	 *   .base.data     = ADJUSTED[*req (pointer to self)]
263 	 *   .priv          = ADJUSTED[new priv] {
264 	 *           .result   = ORIGINAL(result)
265 	 *           .complete = ORIGINAL(base.complete)
266 	 *           .data     = ORIGINAL(base.data)
267 	 *   }
268 	 */
269 
270 	priv->result = req->result;
271 	priv->complete = req->base.complete;
272 	priv->data = req->base.data;
273 	/*
274 	 * WARNING: We do not backup req->priv here! The req->priv
275 	 *          is for internal use of the Crypto API and the
276 	 *          user must _NOT_ _EVER_ depend on it's content!
277 	 */
278 
279 	req->result = PTR_ALIGN((u8 *)priv->ubuf, alignmask + 1);
280 	req->base.complete = cplt;
281 	req->base.data = req;
282 	req->priv = priv;
283 
284 	return 0;
285 }
286 
ahash_restore_req(struct ahash_request * req)287 static void ahash_restore_req(struct ahash_request *req)
288 {
289 	struct ahash_request_priv *priv = req->priv;
290 
291 	/* Restore the original crypto request. */
292 	req->result = priv->result;
293 	req->base.complete = priv->complete;
294 	req->base.data = priv->data;
295 	req->priv = NULL;
296 
297 	/* Free the req->priv.priv from the ADJUSTED request. */
298 	kzfree(priv);
299 }
300 
ahash_op_unaligned_finish(struct ahash_request * req,int err)301 static void ahash_op_unaligned_finish(struct ahash_request *req, int err)
302 {
303 	struct ahash_request_priv *priv = req->priv;
304 
305 	if (err == -EINPROGRESS)
306 		return;
307 
308 	if (!err)
309 		memcpy(priv->result, req->result,
310 		       crypto_ahash_digestsize(crypto_ahash_reqtfm(req)));
311 
312 	ahash_restore_req(req);
313 }
314 
ahash_op_unaligned_done(struct crypto_async_request * req,int err)315 static void ahash_op_unaligned_done(struct crypto_async_request *req, int err)
316 {
317 	struct ahash_request *areq = req->data;
318 
319 	/*
320 	 * Restore the original request, see ahash_op_unaligned() for what
321 	 * goes where.
322 	 *
323 	 * The "struct ahash_request *req" here is in fact the "req.base"
324 	 * from the ADJUSTED request from ahash_op_unaligned(), thus as it
325 	 * is a pointer to self, it is also the ADJUSTED "req" .
326 	 */
327 
328 	/* First copy req->result into req->priv.result */
329 	ahash_op_unaligned_finish(areq, err);
330 
331 	/* Complete the ORIGINAL request. */
332 	areq->base.complete(&areq->base, err);
333 }
334 
ahash_op_unaligned(struct ahash_request * req,int (* op)(struct ahash_request *))335 static int ahash_op_unaligned(struct ahash_request *req,
336 			      int (*op)(struct ahash_request *))
337 {
338 	int err;
339 
340 	err = ahash_save_req(req, ahash_op_unaligned_done);
341 	if (err)
342 		return err;
343 
344 	err = op(req);
345 	ahash_op_unaligned_finish(req, err);
346 
347 	return err;
348 }
349 
crypto_ahash_op(struct ahash_request * req,int (* op)(struct ahash_request *))350 static int crypto_ahash_op(struct ahash_request *req,
351 			   int (*op)(struct ahash_request *))
352 {
353 	struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
354 	unsigned long alignmask = crypto_ahash_alignmask(tfm);
355 
356 	if ((unsigned long)req->result & alignmask)
357 		return ahash_op_unaligned(req, op);
358 
359 	return op(req);
360 }
361 
crypto_ahash_final(struct ahash_request * req)362 int crypto_ahash_final(struct ahash_request *req)
363 {
364 	return crypto_ahash_op(req, crypto_ahash_reqtfm(req)->final);
365 }
366 EXPORT_SYMBOL_GPL(crypto_ahash_final);
367 
crypto_ahash_finup(struct ahash_request * req)368 int crypto_ahash_finup(struct ahash_request *req)
369 {
370 	return crypto_ahash_op(req, crypto_ahash_reqtfm(req)->finup);
371 }
372 EXPORT_SYMBOL_GPL(crypto_ahash_finup);
373 
crypto_ahash_digest(struct ahash_request * req)374 int crypto_ahash_digest(struct ahash_request *req)
375 {
376 	return crypto_ahash_op(req, crypto_ahash_reqtfm(req)->digest);
377 }
378 EXPORT_SYMBOL_GPL(crypto_ahash_digest);
379 
ahash_def_finup_finish2(struct ahash_request * req,int err)380 static void ahash_def_finup_finish2(struct ahash_request *req, int err)
381 {
382 	struct ahash_request_priv *priv = req->priv;
383 
384 	if (err == -EINPROGRESS)
385 		return;
386 
387 	if (!err)
388 		memcpy(priv->result, req->result,
389 		       crypto_ahash_digestsize(crypto_ahash_reqtfm(req)));
390 
391 	ahash_restore_req(req);
392 }
393 
ahash_def_finup_done2(struct crypto_async_request * req,int err)394 static void ahash_def_finup_done2(struct crypto_async_request *req, int err)
395 {
396 	struct ahash_request *areq = req->data;
397 
398 	ahash_def_finup_finish2(areq, err);
399 
400 	areq->base.complete(&areq->base, err);
401 }
402 
ahash_def_finup_finish1(struct ahash_request * req,int err)403 static int ahash_def_finup_finish1(struct ahash_request *req, int err)
404 {
405 	if (err)
406 		goto out;
407 
408 	req->base.complete = ahash_def_finup_done2;
409 	req->base.flags &= ~CRYPTO_TFM_REQ_MAY_SLEEP;
410 	err = crypto_ahash_reqtfm(req)->final(req);
411 
412 out:
413 	ahash_def_finup_finish2(req, err);
414 	return err;
415 }
416 
ahash_def_finup_done1(struct crypto_async_request * req,int err)417 static void ahash_def_finup_done1(struct crypto_async_request *req, int err)
418 {
419 	struct ahash_request *areq = req->data;
420 
421 	err = ahash_def_finup_finish1(areq, err);
422 
423 	areq->base.complete(&areq->base, err);
424 }
425 
ahash_def_finup(struct ahash_request * req)426 static int ahash_def_finup(struct ahash_request *req)
427 {
428 	struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
429 	int err;
430 
431 	err = ahash_save_req(req, ahash_def_finup_done1);
432 	if (err)
433 		return err;
434 
435 	err = tfm->update(req);
436 	return ahash_def_finup_finish1(req, err);
437 }
438 
ahash_no_export(struct ahash_request * req,void * out)439 static int ahash_no_export(struct ahash_request *req, void *out)
440 {
441 	return -ENOSYS;
442 }
443 
ahash_no_import(struct ahash_request * req,const void * in)444 static int ahash_no_import(struct ahash_request *req, const void *in)
445 {
446 	return -ENOSYS;
447 }
448 
crypto_ahash_init_tfm(struct crypto_tfm * tfm)449 static int crypto_ahash_init_tfm(struct crypto_tfm *tfm)
450 {
451 	struct crypto_ahash *hash = __crypto_ahash_cast(tfm);
452 	struct ahash_alg *alg = crypto_ahash_alg(hash);
453 
454 	hash->setkey = ahash_nosetkey;
455 	hash->has_setkey = false;
456 	hash->export = ahash_no_export;
457 	hash->import = ahash_no_import;
458 
459 	if (tfm->__crt_alg->cra_type != &crypto_ahash_type)
460 		return crypto_init_shash_ops_async(tfm);
461 
462 	hash->init = alg->init;
463 	hash->update = alg->update;
464 	hash->final = alg->final;
465 	hash->finup = alg->finup ?: ahash_def_finup;
466 	hash->digest = alg->digest;
467 
468 	if (alg->setkey) {
469 		hash->setkey = alg->setkey;
470 		hash->has_setkey = true;
471 	}
472 	if (alg->export)
473 		hash->export = alg->export;
474 	if (alg->import)
475 		hash->import = alg->import;
476 
477 	return 0;
478 }
479 
crypto_ahash_extsize(struct crypto_alg * alg)480 static unsigned int crypto_ahash_extsize(struct crypto_alg *alg)
481 {
482 	if (alg->cra_type == &crypto_ahash_type)
483 		return alg->cra_ctxsize;
484 
485 	return sizeof(struct crypto_shash *);
486 }
487 
488 #ifdef CONFIG_NET
crypto_ahash_report(struct sk_buff * skb,struct crypto_alg * alg)489 static int crypto_ahash_report(struct sk_buff *skb, struct crypto_alg *alg)
490 {
491 	struct crypto_report_hash rhash;
492 
493 	strncpy(rhash.type, "ahash", sizeof(rhash.type));
494 
495 	rhash.blocksize = alg->cra_blocksize;
496 	rhash.digestsize = __crypto_hash_alg_common(alg)->digestsize;
497 
498 	if (nla_put(skb, CRYPTOCFGA_REPORT_HASH,
499 		    sizeof(struct crypto_report_hash), &rhash))
500 		goto nla_put_failure;
501 	return 0;
502 
503 nla_put_failure:
504 	return -EMSGSIZE;
505 }
506 #else
crypto_ahash_report(struct sk_buff * skb,struct crypto_alg * alg)507 static int crypto_ahash_report(struct sk_buff *skb, struct crypto_alg *alg)
508 {
509 	return -ENOSYS;
510 }
511 #endif
512 
513 static void crypto_ahash_show(struct seq_file *m, struct crypto_alg *alg)
514 	__attribute__ ((unused));
crypto_ahash_show(struct seq_file * m,struct crypto_alg * alg)515 static void crypto_ahash_show(struct seq_file *m, struct crypto_alg *alg)
516 {
517 	seq_printf(m, "type         : ahash\n");
518 	seq_printf(m, "async        : %s\n", alg->cra_flags & CRYPTO_ALG_ASYNC ?
519 					     "yes" : "no");
520 	seq_printf(m, "blocksize    : %u\n", alg->cra_blocksize);
521 	seq_printf(m, "digestsize   : %u\n",
522 		   __crypto_hash_alg_common(alg)->digestsize);
523 }
524 
525 const struct crypto_type crypto_ahash_type = {
526 	.extsize = crypto_ahash_extsize,
527 	.init_tfm = crypto_ahash_init_tfm,
528 #ifdef CONFIG_PROC_FS
529 	.show = crypto_ahash_show,
530 #endif
531 	.report = crypto_ahash_report,
532 	.maskclear = ~CRYPTO_ALG_TYPE_MASK,
533 	.maskset = CRYPTO_ALG_TYPE_AHASH_MASK,
534 	.type = CRYPTO_ALG_TYPE_AHASH,
535 	.tfmsize = offsetof(struct crypto_ahash, base),
536 };
537 EXPORT_SYMBOL_GPL(crypto_ahash_type);
538 
crypto_alloc_ahash(const char * alg_name,u32 type,u32 mask)539 struct crypto_ahash *crypto_alloc_ahash(const char *alg_name, u32 type,
540 					u32 mask)
541 {
542 	return crypto_alloc_tfm(alg_name, &crypto_ahash_type, type, mask);
543 }
544 EXPORT_SYMBOL_GPL(crypto_alloc_ahash);
545 
ahash_prepare_alg(struct ahash_alg * alg)546 static int ahash_prepare_alg(struct ahash_alg *alg)
547 {
548 	struct crypto_alg *base = &alg->halg.base;
549 
550 	if (alg->halg.digestsize > PAGE_SIZE / 8 ||
551 	    alg->halg.statesize > PAGE_SIZE / 8 ||
552 	    alg->halg.statesize == 0)
553 		return -EINVAL;
554 
555 	base->cra_type = &crypto_ahash_type;
556 	base->cra_flags &= ~CRYPTO_ALG_TYPE_MASK;
557 	base->cra_flags |= CRYPTO_ALG_TYPE_AHASH;
558 
559 	return 0;
560 }
561 
crypto_register_ahash(struct ahash_alg * alg)562 int crypto_register_ahash(struct ahash_alg *alg)
563 {
564 	struct crypto_alg *base = &alg->halg.base;
565 	int err;
566 
567 	err = ahash_prepare_alg(alg);
568 	if (err)
569 		return err;
570 
571 	return crypto_register_alg(base);
572 }
573 EXPORT_SYMBOL_GPL(crypto_register_ahash);
574 
crypto_unregister_ahash(struct ahash_alg * alg)575 int crypto_unregister_ahash(struct ahash_alg *alg)
576 {
577 	return crypto_unregister_alg(&alg->halg.base);
578 }
579 EXPORT_SYMBOL_GPL(crypto_unregister_ahash);
580 
ahash_register_instance(struct crypto_template * tmpl,struct ahash_instance * inst)581 int ahash_register_instance(struct crypto_template *tmpl,
582 			    struct ahash_instance *inst)
583 {
584 	int err;
585 
586 	err = ahash_prepare_alg(&inst->alg);
587 	if (err)
588 		return err;
589 
590 	return crypto_register_instance(tmpl, ahash_crypto_instance(inst));
591 }
592 EXPORT_SYMBOL_GPL(ahash_register_instance);
593 
ahash_free_instance(struct crypto_instance * inst)594 void ahash_free_instance(struct crypto_instance *inst)
595 {
596 	crypto_drop_spawn(crypto_instance_ctx(inst));
597 	kfree(ahash_instance(inst));
598 }
599 EXPORT_SYMBOL_GPL(ahash_free_instance);
600 
crypto_init_ahash_spawn(struct crypto_ahash_spawn * spawn,struct hash_alg_common * alg,struct crypto_instance * inst)601 int crypto_init_ahash_spawn(struct crypto_ahash_spawn *spawn,
602 			    struct hash_alg_common *alg,
603 			    struct crypto_instance *inst)
604 {
605 	return crypto_init_spawn2(&spawn->base, &alg->base, inst,
606 				  &crypto_ahash_type);
607 }
608 EXPORT_SYMBOL_GPL(crypto_init_ahash_spawn);
609 
ahash_attr_alg(struct rtattr * rta,u32 type,u32 mask)610 struct hash_alg_common *ahash_attr_alg(struct rtattr *rta, u32 type, u32 mask)
611 {
612 	struct crypto_alg *alg;
613 
614 	alg = crypto_attr_alg2(rta, &crypto_ahash_type, type, mask);
615 	return IS_ERR(alg) ? ERR_CAST(alg) : __crypto_hash_alg_common(alg);
616 }
617 EXPORT_SYMBOL_GPL(ahash_attr_alg);
618 
619 MODULE_LICENSE("GPL");
620 MODULE_DESCRIPTION("Asynchronous cryptographic hash type");
621