2 * Software async crypto daemon.
4 * Copyright (c) 2006 Herbert Xu <herbert@gondor.apana.org.au>
6 * Added AEAD support to cryptd.
7 * Authors: Tadeusz Struk (tadeusz.struk@intel.com)
8 * Adrian Hoban <adrian.hoban@intel.com>
9 * Gabriele Paoloni <gabriele.paoloni@intel.com>
10 * Aidan O'Mahony (aidan.o.mahony@intel.com)
11 * Copyright (c) 2010, Intel Corporation.
13 * This program is free software; you can redistribute it and/or modify it
14 * under the terms of the GNU General Public License as published by the Free
15 * Software Foundation; either version 2 of the License, or (at your option)
20 #include <crypto/algapi.h>
21 #include <crypto/internal/hash.h>
22 #include <crypto/internal/aead.h>
23 #include <crypto/cryptd.h>
24 #include <crypto/crypto_wq.h>
25 #include <linux/err.h>
26 #include <linux/init.h>
27 #include <linux/kernel.h>
28 #include <linux/list.h>
29 #include <linux/module.h>
30 #include <linux/scatterlist.h>
31 #include <linux/sched.h>
32 #include <linux/slab.h>
34 #define CRYPTD_MAX_CPU_QLEN 100
36 struct cryptd_cpu_queue
{
37 struct crypto_queue queue
;
38 struct work_struct work
;
42 struct cryptd_cpu_queue __percpu
*cpu_queue
;
45 struct cryptd_instance_ctx
{
46 struct crypto_spawn spawn
;
47 struct cryptd_queue
*queue
;
50 struct hashd_instance_ctx
{
51 struct crypto_shash_spawn spawn
;
52 struct cryptd_queue
*queue
;
55 struct aead_instance_ctx
{
56 struct crypto_aead_spawn aead_spawn
;
57 struct cryptd_queue
*queue
;
60 struct cryptd_blkcipher_ctx
{
61 struct crypto_blkcipher
*child
;
64 struct cryptd_blkcipher_request_ctx
{
65 crypto_completion_t complete
;
68 struct cryptd_hash_ctx
{
69 struct crypto_shash
*child
;
72 struct cryptd_hash_request_ctx
{
73 crypto_completion_t complete
;
74 struct shash_desc desc
;
77 struct cryptd_aead_ctx
{
78 struct crypto_aead
*child
;
81 struct cryptd_aead_request_ctx
{
82 crypto_completion_t complete
;
85 static void cryptd_queue_worker(struct work_struct
*work
);
87 static int cryptd_init_queue(struct cryptd_queue
*queue
,
88 unsigned int max_cpu_qlen
)
91 struct cryptd_cpu_queue
*cpu_queue
;
93 queue
->cpu_queue
= alloc_percpu(struct cryptd_cpu_queue
);
94 if (!queue
->cpu_queue
)
96 for_each_possible_cpu(cpu
) {
97 cpu_queue
= per_cpu_ptr(queue
->cpu_queue
, cpu
);
98 crypto_init_queue(&cpu_queue
->queue
, max_cpu_qlen
);
99 INIT_WORK(&cpu_queue
->work
, cryptd_queue_worker
);
104 static void cryptd_fini_queue(struct cryptd_queue
*queue
)
107 struct cryptd_cpu_queue
*cpu_queue
;
109 for_each_possible_cpu(cpu
) {
110 cpu_queue
= per_cpu_ptr(queue
->cpu_queue
, cpu
);
111 BUG_ON(cpu_queue
->queue
.qlen
);
113 free_percpu(queue
->cpu_queue
);
116 static int cryptd_enqueue_request(struct cryptd_queue
*queue
,
117 struct crypto_async_request
*request
)
120 struct cryptd_cpu_queue
*cpu_queue
;
123 cpu_queue
= this_cpu_ptr(queue
->cpu_queue
);
124 err
= crypto_enqueue_request(&cpu_queue
->queue
, request
);
125 queue_work_on(cpu
, kcrypto_wq
, &cpu_queue
->work
);
131 /* Called in workqueue context, do one real cryption work (via
132 * req->complete) and reschedule itself if there are more work to
134 static void cryptd_queue_worker(struct work_struct
*work
)
136 struct cryptd_cpu_queue
*cpu_queue
;
137 struct crypto_async_request
*req
, *backlog
;
139 cpu_queue
= container_of(work
, struct cryptd_cpu_queue
, work
);
141 * Only handle one request at a time to avoid hogging crypto workqueue.
142 * preempt_disable/enable is used to prevent being preempted by
143 * cryptd_enqueue_request(). local_bh_disable/enable is used to prevent
144 * cryptd_enqueue_request() being accessed from software interrupts.
148 backlog
= crypto_get_backlog(&cpu_queue
->queue
);
149 req
= crypto_dequeue_request(&cpu_queue
->queue
);
157 backlog
->complete(backlog
, -EINPROGRESS
);
158 req
->complete(req
, 0);
160 if (cpu_queue
->queue
.qlen
)
161 queue_work(kcrypto_wq
, &cpu_queue
->work
);
164 static inline struct cryptd_queue
*cryptd_get_queue(struct crypto_tfm
*tfm
)
166 struct crypto_instance
*inst
= crypto_tfm_alg_instance(tfm
);
167 struct cryptd_instance_ctx
*ictx
= crypto_instance_ctx(inst
);
171 static inline void cryptd_check_internal(struct rtattr
**tb
, u32
*type
,
174 struct crypto_attr_type
*algt
;
176 algt
= crypto_get_attr_type(tb
);
179 if ((algt
->type
& CRYPTO_ALG_INTERNAL
))
180 *type
|= CRYPTO_ALG_INTERNAL
;
181 if ((algt
->mask
& CRYPTO_ALG_INTERNAL
))
182 *mask
|= CRYPTO_ALG_INTERNAL
;
185 static int cryptd_blkcipher_setkey(struct crypto_ablkcipher
*parent
,
186 const u8
*key
, unsigned int keylen
)
188 struct cryptd_blkcipher_ctx
*ctx
= crypto_ablkcipher_ctx(parent
);
189 struct crypto_blkcipher
*child
= ctx
->child
;
192 crypto_blkcipher_clear_flags(child
, CRYPTO_TFM_REQ_MASK
);
193 crypto_blkcipher_set_flags(child
, crypto_ablkcipher_get_flags(parent
) &
194 CRYPTO_TFM_REQ_MASK
);
195 err
= crypto_blkcipher_setkey(child
, key
, keylen
);
196 crypto_ablkcipher_set_flags(parent
, crypto_blkcipher_get_flags(child
) &
197 CRYPTO_TFM_RES_MASK
);
201 static void cryptd_blkcipher_crypt(struct ablkcipher_request
*req
,
202 struct crypto_blkcipher
*child
,
204 int (*crypt
)(struct blkcipher_desc
*desc
,
205 struct scatterlist
*dst
,
206 struct scatterlist
*src
,
209 struct cryptd_blkcipher_request_ctx
*rctx
;
210 struct blkcipher_desc desc
;
212 rctx
= ablkcipher_request_ctx(req
);
214 if (unlikely(err
== -EINPROGRESS
))
218 desc
.info
= req
->info
;
219 desc
.flags
= CRYPTO_TFM_REQ_MAY_SLEEP
;
221 err
= crypt(&desc
, req
->dst
, req
->src
, req
->nbytes
);
223 req
->base
.complete
= rctx
->complete
;
227 rctx
->complete(&req
->base
, err
);
231 static void cryptd_blkcipher_encrypt(struct crypto_async_request
*req
, int err
)
233 struct cryptd_blkcipher_ctx
*ctx
= crypto_tfm_ctx(req
->tfm
);
234 struct crypto_blkcipher
*child
= ctx
->child
;
236 cryptd_blkcipher_crypt(ablkcipher_request_cast(req
), child
, err
,
237 crypto_blkcipher_crt(child
)->encrypt
);
240 static void cryptd_blkcipher_decrypt(struct crypto_async_request
*req
, int err
)
242 struct cryptd_blkcipher_ctx
*ctx
= crypto_tfm_ctx(req
->tfm
);
243 struct crypto_blkcipher
*child
= ctx
->child
;
245 cryptd_blkcipher_crypt(ablkcipher_request_cast(req
), child
, err
,
246 crypto_blkcipher_crt(child
)->decrypt
);
249 static int cryptd_blkcipher_enqueue(struct ablkcipher_request
*req
,
250 crypto_completion_t
compl)
252 struct cryptd_blkcipher_request_ctx
*rctx
= ablkcipher_request_ctx(req
);
253 struct crypto_ablkcipher
*tfm
= crypto_ablkcipher_reqtfm(req
);
254 struct cryptd_queue
*queue
;
256 queue
= cryptd_get_queue(crypto_ablkcipher_tfm(tfm
));
257 rctx
->complete
= req
->base
.complete
;
258 req
->base
.complete
= compl;
260 return cryptd_enqueue_request(queue
, &req
->base
);
263 static int cryptd_blkcipher_encrypt_enqueue(struct ablkcipher_request
*req
)
265 return cryptd_blkcipher_enqueue(req
, cryptd_blkcipher_encrypt
);
268 static int cryptd_blkcipher_decrypt_enqueue(struct ablkcipher_request
*req
)
270 return cryptd_blkcipher_enqueue(req
, cryptd_blkcipher_decrypt
);
273 static int cryptd_blkcipher_init_tfm(struct crypto_tfm
*tfm
)
275 struct crypto_instance
*inst
= crypto_tfm_alg_instance(tfm
);
276 struct cryptd_instance_ctx
*ictx
= crypto_instance_ctx(inst
);
277 struct crypto_spawn
*spawn
= &ictx
->spawn
;
278 struct cryptd_blkcipher_ctx
*ctx
= crypto_tfm_ctx(tfm
);
279 struct crypto_blkcipher
*cipher
;
281 cipher
= crypto_spawn_blkcipher(spawn
);
283 return PTR_ERR(cipher
);
286 tfm
->crt_ablkcipher
.reqsize
=
287 sizeof(struct cryptd_blkcipher_request_ctx
);
291 static void cryptd_blkcipher_exit_tfm(struct crypto_tfm
*tfm
)
293 struct cryptd_blkcipher_ctx
*ctx
= crypto_tfm_ctx(tfm
);
295 crypto_free_blkcipher(ctx
->child
);
298 static void *cryptd_alloc_instance(struct crypto_alg
*alg
, unsigned int head
,
302 struct crypto_instance
*inst
;
305 p
= kzalloc(head
+ sizeof(*inst
) + tail
, GFP_KERNEL
);
307 return ERR_PTR(-ENOMEM
);
309 inst
= (void *)(p
+ head
);
312 if (snprintf(inst
->alg
.cra_driver_name
, CRYPTO_MAX_ALG_NAME
,
313 "cryptd(%s)", alg
->cra_driver_name
) >= CRYPTO_MAX_ALG_NAME
)
316 memcpy(inst
->alg
.cra_name
, alg
->cra_name
, CRYPTO_MAX_ALG_NAME
);
318 inst
->alg
.cra_priority
= alg
->cra_priority
+ 50;
319 inst
->alg
.cra_blocksize
= alg
->cra_blocksize
;
320 inst
->alg
.cra_alignmask
= alg
->cra_alignmask
;
331 static int cryptd_create_blkcipher(struct crypto_template
*tmpl
,
333 struct cryptd_queue
*queue
)
335 struct cryptd_instance_ctx
*ctx
;
336 struct crypto_instance
*inst
;
337 struct crypto_alg
*alg
;
338 u32 type
= CRYPTO_ALG_TYPE_BLKCIPHER
;
339 u32 mask
= CRYPTO_ALG_TYPE_MASK
;
342 cryptd_check_internal(tb
, &type
, &mask
);
344 alg
= crypto_get_attr_alg(tb
, type
, mask
);
348 inst
= cryptd_alloc_instance(alg
, 0, sizeof(*ctx
));
353 ctx
= crypto_instance_ctx(inst
);
356 err
= crypto_init_spawn(&ctx
->spawn
, alg
, inst
,
357 CRYPTO_ALG_TYPE_MASK
| CRYPTO_ALG_ASYNC
);
361 type
= CRYPTO_ALG_TYPE_ABLKCIPHER
| CRYPTO_ALG_ASYNC
;
362 if (alg
->cra_flags
& CRYPTO_ALG_INTERNAL
)
363 type
|= CRYPTO_ALG_INTERNAL
;
364 inst
->alg
.cra_flags
= type
;
365 inst
->alg
.cra_type
= &crypto_ablkcipher_type
;
367 inst
->alg
.cra_ablkcipher
.ivsize
= alg
->cra_blkcipher
.ivsize
;
368 inst
->alg
.cra_ablkcipher
.min_keysize
= alg
->cra_blkcipher
.min_keysize
;
369 inst
->alg
.cra_ablkcipher
.max_keysize
= alg
->cra_blkcipher
.max_keysize
;
371 inst
->alg
.cra_ablkcipher
.geniv
= alg
->cra_blkcipher
.geniv
;
373 inst
->alg
.cra_ctxsize
= sizeof(struct cryptd_blkcipher_ctx
);
375 inst
->alg
.cra_init
= cryptd_blkcipher_init_tfm
;
376 inst
->alg
.cra_exit
= cryptd_blkcipher_exit_tfm
;
378 inst
->alg
.cra_ablkcipher
.setkey
= cryptd_blkcipher_setkey
;
379 inst
->alg
.cra_ablkcipher
.encrypt
= cryptd_blkcipher_encrypt_enqueue
;
380 inst
->alg
.cra_ablkcipher
.decrypt
= cryptd_blkcipher_decrypt_enqueue
;
382 err
= crypto_register_instance(tmpl
, inst
);
384 crypto_drop_spawn(&ctx
->spawn
);
394 static int cryptd_hash_init_tfm(struct crypto_tfm
*tfm
)
396 struct crypto_instance
*inst
= crypto_tfm_alg_instance(tfm
);
397 struct hashd_instance_ctx
*ictx
= crypto_instance_ctx(inst
);
398 struct crypto_shash_spawn
*spawn
= &ictx
->spawn
;
399 struct cryptd_hash_ctx
*ctx
= crypto_tfm_ctx(tfm
);
400 struct crypto_shash
*hash
;
402 hash
= crypto_spawn_shash(spawn
);
404 return PTR_ERR(hash
);
407 crypto_ahash_set_reqsize(__crypto_ahash_cast(tfm
),
408 sizeof(struct cryptd_hash_request_ctx
) +
409 crypto_shash_descsize(hash
));
413 static void cryptd_hash_exit_tfm(struct crypto_tfm
*tfm
)
415 struct cryptd_hash_ctx
*ctx
= crypto_tfm_ctx(tfm
);
417 crypto_free_shash(ctx
->child
);
420 static int cryptd_hash_setkey(struct crypto_ahash
*parent
,
421 const u8
*key
, unsigned int keylen
)
423 struct cryptd_hash_ctx
*ctx
= crypto_ahash_ctx(parent
);
424 struct crypto_shash
*child
= ctx
->child
;
427 crypto_shash_clear_flags(child
, CRYPTO_TFM_REQ_MASK
);
428 crypto_shash_set_flags(child
, crypto_ahash_get_flags(parent
) &
429 CRYPTO_TFM_REQ_MASK
);
430 err
= crypto_shash_setkey(child
, key
, keylen
);
431 crypto_ahash_set_flags(parent
, crypto_shash_get_flags(child
) &
432 CRYPTO_TFM_RES_MASK
);
436 static int cryptd_hash_enqueue(struct ahash_request
*req
,
437 crypto_completion_t
compl)
439 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
440 struct crypto_ahash
*tfm
= crypto_ahash_reqtfm(req
);
441 struct cryptd_queue
*queue
=
442 cryptd_get_queue(crypto_ahash_tfm(tfm
));
444 rctx
->complete
= req
->base
.complete
;
445 req
->base
.complete
= compl;
447 return cryptd_enqueue_request(queue
, &req
->base
);
450 static void cryptd_hash_init(struct crypto_async_request
*req_async
, int err
)
452 struct cryptd_hash_ctx
*ctx
= crypto_tfm_ctx(req_async
->tfm
);
453 struct crypto_shash
*child
= ctx
->child
;
454 struct ahash_request
*req
= ahash_request_cast(req_async
);
455 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
456 struct shash_desc
*desc
= &rctx
->desc
;
458 if (unlikely(err
== -EINPROGRESS
))
462 desc
->flags
= CRYPTO_TFM_REQ_MAY_SLEEP
;
464 err
= crypto_shash_init(desc
);
466 req
->base
.complete
= rctx
->complete
;
470 rctx
->complete(&req
->base
, err
);
474 static int cryptd_hash_init_enqueue(struct ahash_request
*req
)
476 return cryptd_hash_enqueue(req
, cryptd_hash_init
);
479 static void cryptd_hash_update(struct crypto_async_request
*req_async
, int err
)
481 struct ahash_request
*req
= ahash_request_cast(req_async
);
482 struct cryptd_hash_request_ctx
*rctx
;
484 rctx
= ahash_request_ctx(req
);
486 if (unlikely(err
== -EINPROGRESS
))
489 err
= shash_ahash_update(req
, &rctx
->desc
);
491 req
->base
.complete
= rctx
->complete
;
495 rctx
->complete(&req
->base
, err
);
499 static int cryptd_hash_update_enqueue(struct ahash_request
*req
)
501 return cryptd_hash_enqueue(req
, cryptd_hash_update
);
504 static void cryptd_hash_final(struct crypto_async_request
*req_async
, int err
)
506 struct ahash_request
*req
= ahash_request_cast(req_async
);
507 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
509 if (unlikely(err
== -EINPROGRESS
))
512 err
= crypto_shash_final(&rctx
->desc
, req
->result
);
514 req
->base
.complete
= rctx
->complete
;
518 rctx
->complete(&req
->base
, err
);
522 static int cryptd_hash_final_enqueue(struct ahash_request
*req
)
524 return cryptd_hash_enqueue(req
, cryptd_hash_final
);
527 static void cryptd_hash_finup(struct crypto_async_request
*req_async
, int err
)
529 struct ahash_request
*req
= ahash_request_cast(req_async
);
530 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
532 if (unlikely(err
== -EINPROGRESS
))
535 err
= shash_ahash_finup(req
, &rctx
->desc
);
537 req
->base
.complete
= rctx
->complete
;
541 rctx
->complete(&req
->base
, err
);
545 static int cryptd_hash_finup_enqueue(struct ahash_request
*req
)
547 return cryptd_hash_enqueue(req
, cryptd_hash_finup
);
550 static void cryptd_hash_digest(struct crypto_async_request
*req_async
, int err
)
552 struct cryptd_hash_ctx
*ctx
= crypto_tfm_ctx(req_async
->tfm
);
553 struct crypto_shash
*child
= ctx
->child
;
554 struct ahash_request
*req
= ahash_request_cast(req_async
);
555 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
556 struct shash_desc
*desc
= &rctx
->desc
;
558 if (unlikely(err
== -EINPROGRESS
))
562 desc
->flags
= CRYPTO_TFM_REQ_MAY_SLEEP
;
564 err
= shash_ahash_digest(req
, desc
);
566 req
->base
.complete
= rctx
->complete
;
570 rctx
->complete(&req
->base
, err
);
574 static int cryptd_hash_digest_enqueue(struct ahash_request
*req
)
576 return cryptd_hash_enqueue(req
, cryptd_hash_digest
);
579 static int cryptd_hash_export(struct ahash_request
*req
, void *out
)
581 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
583 return crypto_shash_export(&rctx
->desc
, out
);
586 static int cryptd_hash_import(struct ahash_request
*req
, const void *in
)
588 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
590 return crypto_shash_import(&rctx
->desc
, in
);
593 static int cryptd_create_hash(struct crypto_template
*tmpl
, struct rtattr
**tb
,
594 struct cryptd_queue
*queue
)
596 struct hashd_instance_ctx
*ctx
;
597 struct ahash_instance
*inst
;
598 struct shash_alg
*salg
;
599 struct crypto_alg
*alg
;
604 cryptd_check_internal(tb
, &type
, &mask
);
606 salg
= shash_attr_alg(tb
[1], type
, mask
);
608 return PTR_ERR(salg
);
611 inst
= cryptd_alloc_instance(alg
, ahash_instance_headroom(),
617 ctx
= ahash_instance_ctx(inst
);
620 err
= crypto_init_shash_spawn(&ctx
->spawn
, salg
,
621 ahash_crypto_instance(inst
));
625 type
= CRYPTO_ALG_ASYNC
;
626 if (alg
->cra_flags
& CRYPTO_ALG_INTERNAL
)
627 type
|= CRYPTO_ALG_INTERNAL
;
628 inst
->alg
.halg
.base
.cra_flags
= type
;
630 inst
->alg
.halg
.digestsize
= salg
->digestsize
;
631 inst
->alg
.halg
.base
.cra_ctxsize
= sizeof(struct cryptd_hash_ctx
);
633 inst
->alg
.halg
.base
.cra_init
= cryptd_hash_init_tfm
;
634 inst
->alg
.halg
.base
.cra_exit
= cryptd_hash_exit_tfm
;
636 inst
->alg
.init
= cryptd_hash_init_enqueue
;
637 inst
->alg
.update
= cryptd_hash_update_enqueue
;
638 inst
->alg
.final
= cryptd_hash_final_enqueue
;
639 inst
->alg
.finup
= cryptd_hash_finup_enqueue
;
640 inst
->alg
.export
= cryptd_hash_export
;
641 inst
->alg
.import
= cryptd_hash_import
;
642 inst
->alg
.setkey
= cryptd_hash_setkey
;
643 inst
->alg
.digest
= cryptd_hash_digest_enqueue
;
645 err
= ahash_register_instance(tmpl
, inst
);
647 crypto_drop_shash(&ctx
->spawn
);
657 static void cryptd_aead_crypt(struct aead_request
*req
,
658 struct crypto_aead
*child
,
660 int (*crypt
)(struct aead_request
*req
))
662 struct cryptd_aead_request_ctx
*rctx
;
663 rctx
= aead_request_ctx(req
);
665 if (unlikely(err
== -EINPROGRESS
))
667 aead_request_set_tfm(req
, child
);
669 req
->base
.complete
= rctx
->complete
;
672 rctx
->complete(&req
->base
, err
);
676 static void cryptd_aead_encrypt(struct crypto_async_request
*areq
, int err
)
678 struct cryptd_aead_ctx
*ctx
= crypto_tfm_ctx(areq
->tfm
);
679 struct crypto_aead
*child
= ctx
->child
;
680 struct aead_request
*req
;
682 req
= container_of(areq
, struct aead_request
, base
);
683 cryptd_aead_crypt(req
, child
, err
, crypto_aead_crt(child
)->encrypt
);
686 static void cryptd_aead_decrypt(struct crypto_async_request
*areq
, int err
)
688 struct cryptd_aead_ctx
*ctx
= crypto_tfm_ctx(areq
->tfm
);
689 struct crypto_aead
*child
= ctx
->child
;
690 struct aead_request
*req
;
692 req
= container_of(areq
, struct aead_request
, base
);
693 cryptd_aead_crypt(req
, child
, err
, crypto_aead_crt(child
)->decrypt
);
696 static int cryptd_aead_enqueue(struct aead_request
*req
,
697 crypto_completion_t
compl)
699 struct cryptd_aead_request_ctx
*rctx
= aead_request_ctx(req
);
700 struct crypto_aead
*tfm
= crypto_aead_reqtfm(req
);
701 struct cryptd_queue
*queue
= cryptd_get_queue(crypto_aead_tfm(tfm
));
703 rctx
->complete
= req
->base
.complete
;
704 req
->base
.complete
= compl;
705 return cryptd_enqueue_request(queue
, &req
->base
);
708 static int cryptd_aead_encrypt_enqueue(struct aead_request
*req
)
710 return cryptd_aead_enqueue(req
, cryptd_aead_encrypt
);
713 static int cryptd_aead_decrypt_enqueue(struct aead_request
*req
)
715 return cryptd_aead_enqueue(req
, cryptd_aead_decrypt
);
718 static int cryptd_aead_init_tfm(struct crypto_tfm
*tfm
)
720 struct crypto_instance
*inst
= crypto_tfm_alg_instance(tfm
);
721 struct aead_instance_ctx
*ictx
= crypto_instance_ctx(inst
);
722 struct crypto_aead_spawn
*spawn
= &ictx
->aead_spawn
;
723 struct cryptd_aead_ctx
*ctx
= crypto_tfm_ctx(tfm
);
724 struct crypto_aead
*cipher
;
726 cipher
= crypto_spawn_aead(spawn
);
728 return PTR_ERR(cipher
);
730 crypto_aead_set_flags(cipher
, CRYPTO_TFM_REQ_MAY_SLEEP
);
732 tfm
->crt_aead
.reqsize
= sizeof(struct cryptd_aead_request_ctx
);
736 static void cryptd_aead_exit_tfm(struct crypto_tfm
*tfm
)
738 struct cryptd_aead_ctx
*ctx
= crypto_tfm_ctx(tfm
);
739 crypto_free_aead(ctx
->child
);
742 static int cryptd_create_aead(struct crypto_template
*tmpl
,
744 struct cryptd_queue
*queue
)
746 struct aead_instance_ctx
*ctx
;
747 struct crypto_instance
*inst
;
748 struct crypto_alg
*alg
;
749 u32 type
= CRYPTO_ALG_TYPE_AEAD
;
750 u32 mask
= CRYPTO_ALG_TYPE_MASK
;
753 cryptd_check_internal(tb
, &type
, &mask
);
755 alg
= crypto_get_attr_alg(tb
, type
, mask
);
759 inst
= cryptd_alloc_instance(alg
, 0, sizeof(*ctx
));
764 ctx
= crypto_instance_ctx(inst
);
767 err
= crypto_init_spawn(&ctx
->aead_spawn
.base
, alg
, inst
,
768 CRYPTO_ALG_TYPE_MASK
| CRYPTO_ALG_ASYNC
);
772 type
= CRYPTO_ALG_TYPE_AEAD
| CRYPTO_ALG_ASYNC
;
773 if (alg
->cra_flags
& CRYPTO_ALG_INTERNAL
)
774 type
|= CRYPTO_ALG_INTERNAL
;
775 inst
->alg
.cra_flags
= type
;
776 inst
->alg
.cra_type
= alg
->cra_type
;
777 inst
->alg
.cra_ctxsize
= sizeof(struct cryptd_aead_ctx
);
778 inst
->alg
.cra_init
= cryptd_aead_init_tfm
;
779 inst
->alg
.cra_exit
= cryptd_aead_exit_tfm
;
780 inst
->alg
.cra_aead
.setkey
= alg
->cra_aead
.setkey
;
781 inst
->alg
.cra_aead
.setauthsize
= alg
->cra_aead
.setauthsize
;
782 inst
->alg
.cra_aead
.geniv
= alg
->cra_aead
.geniv
;
783 inst
->alg
.cra_aead
.ivsize
= alg
->cra_aead
.ivsize
;
784 inst
->alg
.cra_aead
.maxauthsize
= alg
->cra_aead
.maxauthsize
;
785 inst
->alg
.cra_aead
.encrypt
= cryptd_aead_encrypt_enqueue
;
786 inst
->alg
.cra_aead
.decrypt
= cryptd_aead_decrypt_enqueue
;
787 inst
->alg
.cra_aead
.givencrypt
= alg
->cra_aead
.givencrypt
;
788 inst
->alg
.cra_aead
.givdecrypt
= alg
->cra_aead
.givdecrypt
;
790 err
= crypto_register_instance(tmpl
, inst
);
792 crypto_drop_spawn(&ctx
->aead_spawn
.base
);
801 static struct cryptd_queue queue
;
803 static int cryptd_create(struct crypto_template
*tmpl
, struct rtattr
**tb
)
805 struct crypto_attr_type
*algt
;
807 algt
= crypto_get_attr_type(tb
);
809 return PTR_ERR(algt
);
811 switch (algt
->type
& algt
->mask
& CRYPTO_ALG_TYPE_MASK
) {
812 case CRYPTO_ALG_TYPE_BLKCIPHER
:
813 return cryptd_create_blkcipher(tmpl
, tb
, &queue
);
814 case CRYPTO_ALG_TYPE_DIGEST
:
815 return cryptd_create_hash(tmpl
, tb
, &queue
);
816 case CRYPTO_ALG_TYPE_AEAD
:
817 return cryptd_create_aead(tmpl
, tb
, &queue
);
823 static void cryptd_free(struct crypto_instance
*inst
)
825 struct cryptd_instance_ctx
*ctx
= crypto_instance_ctx(inst
);
826 struct hashd_instance_ctx
*hctx
= crypto_instance_ctx(inst
);
827 struct aead_instance_ctx
*aead_ctx
= crypto_instance_ctx(inst
);
829 switch (inst
->alg
.cra_flags
& CRYPTO_ALG_TYPE_MASK
) {
830 case CRYPTO_ALG_TYPE_AHASH
:
831 crypto_drop_shash(&hctx
->spawn
);
832 kfree(ahash_instance(inst
));
834 case CRYPTO_ALG_TYPE_AEAD
:
835 crypto_drop_spawn(&aead_ctx
->aead_spawn
.base
);
839 crypto_drop_spawn(&ctx
->spawn
);
844 static struct crypto_template cryptd_tmpl
= {
846 .create
= cryptd_create
,
848 .module
= THIS_MODULE
,
851 struct cryptd_ablkcipher
*cryptd_alloc_ablkcipher(const char *alg_name
,
854 char cryptd_alg_name
[CRYPTO_MAX_ALG_NAME
];
855 struct crypto_tfm
*tfm
;
857 if (snprintf(cryptd_alg_name
, CRYPTO_MAX_ALG_NAME
,
858 "cryptd(%s)", alg_name
) >= CRYPTO_MAX_ALG_NAME
)
859 return ERR_PTR(-EINVAL
);
860 type
&= ~(CRYPTO_ALG_TYPE_MASK
| CRYPTO_ALG_GENIV
);
861 type
|= CRYPTO_ALG_TYPE_BLKCIPHER
;
862 mask
&= ~CRYPTO_ALG_TYPE_MASK
;
863 mask
|= (CRYPTO_ALG_GENIV
| CRYPTO_ALG_TYPE_BLKCIPHER_MASK
);
864 tfm
= crypto_alloc_base(cryptd_alg_name
, type
, mask
);
866 return ERR_CAST(tfm
);
867 if (tfm
->__crt_alg
->cra_module
!= THIS_MODULE
) {
868 crypto_free_tfm(tfm
);
869 return ERR_PTR(-EINVAL
);
872 return __cryptd_ablkcipher_cast(__crypto_ablkcipher_cast(tfm
));
874 EXPORT_SYMBOL_GPL(cryptd_alloc_ablkcipher
);
876 struct crypto_blkcipher
*cryptd_ablkcipher_child(struct cryptd_ablkcipher
*tfm
)
878 struct cryptd_blkcipher_ctx
*ctx
= crypto_ablkcipher_ctx(&tfm
->base
);
881 EXPORT_SYMBOL_GPL(cryptd_ablkcipher_child
);
883 void cryptd_free_ablkcipher(struct cryptd_ablkcipher
*tfm
)
885 crypto_free_ablkcipher(&tfm
->base
);
887 EXPORT_SYMBOL_GPL(cryptd_free_ablkcipher
);
889 struct cryptd_ahash
*cryptd_alloc_ahash(const char *alg_name
,
892 char cryptd_alg_name
[CRYPTO_MAX_ALG_NAME
];
893 struct crypto_ahash
*tfm
;
895 if (snprintf(cryptd_alg_name
, CRYPTO_MAX_ALG_NAME
,
896 "cryptd(%s)", alg_name
) >= CRYPTO_MAX_ALG_NAME
)
897 return ERR_PTR(-EINVAL
);
898 tfm
= crypto_alloc_ahash(cryptd_alg_name
, type
, mask
);
900 return ERR_CAST(tfm
);
901 if (tfm
->base
.__crt_alg
->cra_module
!= THIS_MODULE
) {
902 crypto_free_ahash(tfm
);
903 return ERR_PTR(-EINVAL
);
906 return __cryptd_ahash_cast(tfm
);
908 EXPORT_SYMBOL_GPL(cryptd_alloc_ahash
);
910 struct crypto_shash
*cryptd_ahash_child(struct cryptd_ahash
*tfm
)
912 struct cryptd_hash_ctx
*ctx
= crypto_ahash_ctx(&tfm
->base
);
916 EXPORT_SYMBOL_GPL(cryptd_ahash_child
);
918 struct shash_desc
*cryptd_shash_desc(struct ahash_request
*req
)
920 struct cryptd_hash_request_ctx
*rctx
= ahash_request_ctx(req
);
923 EXPORT_SYMBOL_GPL(cryptd_shash_desc
);
925 void cryptd_free_ahash(struct cryptd_ahash
*tfm
)
927 crypto_free_ahash(&tfm
->base
);
929 EXPORT_SYMBOL_GPL(cryptd_free_ahash
);
931 struct cryptd_aead
*cryptd_alloc_aead(const char *alg_name
,
934 char cryptd_alg_name
[CRYPTO_MAX_ALG_NAME
];
935 struct crypto_aead
*tfm
;
937 if (snprintf(cryptd_alg_name
, CRYPTO_MAX_ALG_NAME
,
938 "cryptd(%s)", alg_name
) >= CRYPTO_MAX_ALG_NAME
)
939 return ERR_PTR(-EINVAL
);
940 tfm
= crypto_alloc_aead(cryptd_alg_name
, type
, mask
);
942 return ERR_CAST(tfm
);
943 if (tfm
->base
.__crt_alg
->cra_module
!= THIS_MODULE
) {
944 crypto_free_aead(tfm
);
945 return ERR_PTR(-EINVAL
);
947 return __cryptd_aead_cast(tfm
);
949 EXPORT_SYMBOL_GPL(cryptd_alloc_aead
);
951 struct crypto_aead
*cryptd_aead_child(struct cryptd_aead
*tfm
)
953 struct cryptd_aead_ctx
*ctx
;
954 ctx
= crypto_aead_ctx(&tfm
->base
);
957 EXPORT_SYMBOL_GPL(cryptd_aead_child
);
959 void cryptd_free_aead(struct cryptd_aead
*tfm
)
961 crypto_free_aead(&tfm
->base
);
963 EXPORT_SYMBOL_GPL(cryptd_free_aead
);
965 static int __init
cryptd_init(void)
969 err
= cryptd_init_queue(&queue
, CRYPTD_MAX_CPU_QLEN
);
973 err
= crypto_register_template(&cryptd_tmpl
);
975 cryptd_fini_queue(&queue
);
980 static void __exit
cryptd_exit(void)
982 cryptd_fini_queue(&queue
);
983 crypto_unregister_template(&cryptd_tmpl
);
986 subsys_initcall(cryptd_init
);
987 module_exit(cryptd_exit
);
989 MODULE_LICENSE("GPL");
990 MODULE_DESCRIPTION("Software async crypto daemon");
991 MODULE_ALIAS_CRYPTO("cryptd");