Merge tag 'drm-misc-fixes-2023-05-11' of git://anongit.freedesktop.org/drm/drm-misc...
[linux-block.git] / crypto / cryptd.c
CommitLineData
2874c5fd 1// SPDX-License-Identifier: GPL-2.0-or-later
124b53d0
HX
2/*
3 * Software async crypto daemon.
4 *
5 * Copyright (c) 2006 Herbert Xu <herbert@gondor.apana.org.au>
6 *
298c926c
AH
7 * Added AEAD support to cryptd.
8 * Authors: Tadeusz Struk (tadeusz.struk@intel.com)
9 * Adrian Hoban <adrian.hoban@intel.com>
10 * Gabriele Paoloni <gabriele.paoloni@intel.com>
11 * Aidan O'Mahony (aidan.o.mahony@intel.com)
12 * Copyright (c) 2010, Intel Corporation.
124b53d0
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13 */
14
18e33e6d 15#include <crypto/internal/hash.h>
298c926c 16#include <crypto/internal/aead.h>
4e0958d1 17#include <crypto/internal/skcipher.h>
1cac2cbc 18#include <crypto/cryptd.h>
43b970fa 19#include <linux/refcount.h>
124b53d0
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20#include <linux/err.h>
21#include <linux/init.h>
22#include <linux/kernel.h>
124b53d0
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23#include <linux/list.h>
24#include <linux/module.h>
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25#include <linux/scatterlist.h>
26#include <linux/sched.h>
27#include <linux/slab.h>
3e56e168 28#include <linux/workqueue.h>
124b53d0 29
eaf356e4 30static unsigned int cryptd_max_cpu_qlen = 1000;
c3a53605
JM
31module_param(cryptd_max_cpu_qlen, uint, 0);
32MODULE_PARM_DESC(cryptd_max_cpu_qlen, "Set cryptd Max queue depth");
124b53d0 33
3e56e168
EB
34static struct workqueue_struct *cryptd_wq;
35
254eff77 36struct cryptd_cpu_queue {
124b53d0 37 struct crypto_queue queue;
254eff77
HY
38 struct work_struct work;
39};
40
41struct cryptd_queue {
91e8bcd7
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42 /*
43 * Protected by disabling BH to allow enqueueing from softinterrupt and
44 * dequeuing from kworker (cryptd_queue_worker()).
45 */
a29d8b8e 46 struct cryptd_cpu_queue __percpu *cpu_queue;
124b53d0
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47};
48
49struct cryptd_instance_ctx {
50 struct crypto_spawn spawn;
254eff77 51 struct cryptd_queue *queue;
124b53d0
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52};
53
4e0958d1
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54struct skcipherd_instance_ctx {
55 struct crypto_skcipher_spawn spawn;
56 struct cryptd_queue *queue;
57};
58
46309d89
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59struct hashd_instance_ctx {
60 struct crypto_shash_spawn spawn;
61 struct cryptd_queue *queue;
62};
63
298c926c
AH
64struct aead_instance_ctx {
65 struct crypto_aead_spawn aead_spawn;
66 struct cryptd_queue *queue;
67};
68
4e0958d1 69struct cryptd_skcipher_ctx {
43b970fa 70 refcount_t refcnt;
3a58c231 71 struct crypto_skcipher *child;
4e0958d1
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72};
73
74struct cryptd_skcipher_request_ctx {
3a58c231 75 struct skcipher_request req;
4e0958d1
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76};
77
b8a28251 78struct cryptd_hash_ctx {
43b970fa 79 refcount_t refcnt;
46309d89 80 struct crypto_shash *child;
b8a28251
LH
81};
82
83struct cryptd_hash_request_ctx {
84 crypto_completion_t complete;
f27c94aa 85 void *data;
46309d89 86 struct shash_desc desc;
b8a28251 87};
124b53d0 88
298c926c 89struct cryptd_aead_ctx {
43b970fa 90 refcount_t refcnt;
298c926c
AH
91 struct crypto_aead *child;
92};
93
94struct cryptd_aead_request_ctx {
256f9e53 95 struct aead_request req;
298c926c
AH
96};
97
254eff77
HY
98static void cryptd_queue_worker(struct work_struct *work);
99
100static int cryptd_init_queue(struct cryptd_queue *queue,
101 unsigned int max_cpu_qlen)
102{
103 int cpu;
104 struct cryptd_cpu_queue *cpu_queue;
105
106 queue->cpu_queue = alloc_percpu(struct cryptd_cpu_queue);
107 if (!queue->cpu_queue)
108 return -ENOMEM;
109 for_each_possible_cpu(cpu) {
110 cpu_queue = per_cpu_ptr(queue->cpu_queue, cpu);
111 crypto_init_queue(&cpu_queue->queue, max_cpu_qlen);
112 INIT_WORK(&cpu_queue->work, cryptd_queue_worker);
113 }
c3a53605 114 pr_info("cryptd: max_cpu_qlen set to %d\n", max_cpu_qlen);
254eff77
HY
115 return 0;
116}
117
118static void cryptd_fini_queue(struct cryptd_queue *queue)
119{
120 int cpu;
121 struct cryptd_cpu_queue *cpu_queue;
122
123 for_each_possible_cpu(cpu) {
124 cpu_queue = per_cpu_ptr(queue->cpu_queue, cpu);
125 BUG_ON(cpu_queue->queue.qlen);
126 }
127 free_percpu(queue->cpu_queue);
128}
129
130static int cryptd_enqueue_request(struct cryptd_queue *queue,
131 struct crypto_async_request *request)
132{
91e8bcd7 133 int err;
254eff77 134 struct cryptd_cpu_queue *cpu_queue;
43b970fa 135 refcount_t *refcnt;
254eff77 136
91e8bcd7 137 local_bh_disable();
0b44f486 138 cpu_queue = this_cpu_ptr(queue->cpu_queue);
254eff77 139 err = crypto_enqueue_request(&cpu_queue->queue, request);
81760ea6
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140
141 refcnt = crypto_tfm_ctx(request->tfm);
81760ea6 142
6b80ea38 143 if (err == -ENOSPC)
91e8bcd7 144 goto out;
81760ea6 145
91e8bcd7 146 queue_work_on(smp_processor_id(), cryptd_wq, &cpu_queue->work);
81760ea6 147
43b970fa 148 if (!refcount_read(refcnt))
91e8bcd7 149 goto out;
81760ea6 150
43b970fa 151 refcount_inc(refcnt);
81760ea6 152
91e8bcd7
SAS
153out:
154 local_bh_enable();
254eff77
HY
155
156 return err;
157}
158
159/* Called in workqueue context, do one real cryption work (via
160 * req->complete) and reschedule itself if there are more work to
161 * do. */
162static void cryptd_queue_worker(struct work_struct *work)
163{
164 struct cryptd_cpu_queue *cpu_queue;
165 struct crypto_async_request *req, *backlog;
166
167 cpu_queue = container_of(work, struct cryptd_cpu_queue, work);
9efade1b
JK
168 /*
169 * Only handle one request at a time to avoid hogging crypto workqueue.
9efade1b
JK
170 */
171 local_bh_disable();
254eff77
HY
172 backlog = crypto_get_backlog(&cpu_queue->queue);
173 req = crypto_dequeue_request(&cpu_queue->queue);
9efade1b 174 local_bh_enable();
254eff77
HY
175
176 if (!req)
177 return;
178
179 if (backlog)
f27c94aa
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180 crypto_request_complete(backlog, -EINPROGRESS);
181 crypto_request_complete(req, 0);
254eff77
HY
182
183 if (cpu_queue->queue.qlen)
3e56e168 184 queue_work(cryptd_wq, &cpu_queue->work);
254eff77
HY
185}
186
187static inline struct cryptd_queue *cryptd_get_queue(struct crypto_tfm *tfm)
124b53d0
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188{
189 struct crypto_instance *inst = crypto_tfm_alg_instance(tfm);
190 struct cryptd_instance_ctx *ictx = crypto_instance_ctx(inst);
254eff77 191 return ictx->queue;
124b53d0
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192}
193
7bcb2c99
EB
194static void cryptd_type_and_mask(struct crypto_attr_type *algt,
195 u32 *type, u32 *mask)
466a7b9e 196{
7bcb2c99
EB
197 /*
198 * cryptd is allowed to wrap internal algorithms, but in that case the
199 * resulting cryptd instance will be marked as internal as well.
200 */
201 *type = algt->type & CRYPTO_ALG_INTERNAL;
202 *mask = algt->mask & CRYPTO_ALG_INTERNAL;
466a7b9e 203
7bcb2c99
EB
204 /* No point in cryptd wrapping an algorithm that's already async. */
205 *mask |= CRYPTO_ALG_ASYNC;
f6da3205 206
7bcb2c99 207 *mask |= crypto_algt_inherited_mask(algt);
466a7b9e
SM
208}
209
9b8c456e
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210static int cryptd_init_instance(struct crypto_instance *inst,
211 struct crypto_alg *alg)
212{
213 if (snprintf(inst->alg.cra_driver_name, CRYPTO_MAX_ALG_NAME,
214 "cryptd(%s)",
215 alg->cra_driver_name) >= CRYPTO_MAX_ALG_NAME)
216 return -ENAMETOOLONG;
217
218 memcpy(inst->alg.cra_name, alg->cra_name, CRYPTO_MAX_ALG_NAME);
219
220 inst->alg.cra_priority = alg->cra_priority + 50;
221 inst->alg.cra_blocksize = alg->cra_blocksize;
222 inst->alg.cra_alignmask = alg->cra_alignmask;
223
224 return 0;
225}
226
4e0958d1
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227static int cryptd_skcipher_setkey(struct crypto_skcipher *parent,
228 const u8 *key, unsigned int keylen)
229{
230 struct cryptd_skcipher_ctx *ctx = crypto_skcipher_ctx(parent);
3a58c231 231 struct crypto_skcipher *child = ctx->child;
4e0958d1 232
3a58c231
HX
233 crypto_skcipher_clear_flags(child, CRYPTO_TFM_REQ_MASK);
234 crypto_skcipher_set_flags(child,
235 crypto_skcipher_get_flags(parent) &
236 CRYPTO_TFM_REQ_MASK);
237 return crypto_skcipher_setkey(child, key, keylen);
4e0958d1
HX
238}
239
f27c94aa
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240static struct skcipher_request *cryptd_skcipher_prepare(
241 struct skcipher_request *req, int err)
4e0958d1 242{
f27c94aa
HX
243 struct cryptd_skcipher_request_ctx *rctx = skcipher_request_ctx(req);
244 struct skcipher_request *subreq = &rctx->req;
245 struct cryptd_skcipher_ctx *ctx;
246 struct crypto_skcipher *child;
247
248 req->base.complete = subreq->base.complete;
249 req->base.data = subreq->base.data;
250
251 if (unlikely(err == -EINPROGRESS))
252 return NULL;
253
254 ctx = crypto_skcipher_ctx(crypto_skcipher_reqtfm(req));
255 child = ctx->child;
256
257 skcipher_request_set_tfm(subreq, child);
258 skcipher_request_set_callback(subreq, CRYPTO_TFM_REQ_MAY_SLEEP,
259 NULL, NULL);
260 skcipher_request_set_crypt(subreq, req->src, req->dst, req->cryptlen,
261 req->iv);
262
263 return subreq;
264}
265
266static void cryptd_skcipher_complete(struct skcipher_request *req, int err,
267 crypto_completion_t complete)
268{
269 struct cryptd_skcipher_request_ctx *rctx = skcipher_request_ctx(req);
4e0958d1
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270 struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
271 struct cryptd_skcipher_ctx *ctx = crypto_skcipher_ctx(tfm);
f27c94aa 272 struct skcipher_request *subreq = &rctx->req;
43b970fa 273 int refcnt = refcount_read(&ctx->refcnt);
4e0958d1
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274
275 local_bh_disable();
f27c94aa 276 skcipher_request_complete(req, err);
4e0958d1
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277 local_bh_enable();
278
f27c94aa
HX
279 if (unlikely(err == -EINPROGRESS)) {
280 subreq->base.complete = req->base.complete;
281 subreq->base.data = req->base.data;
282 req->base.complete = complete;
283 req->base.data = req;
284 } else if (refcnt && refcount_dec_and_test(&ctx->refcnt))
4e0958d1
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285 crypto_free_skcipher(tfm);
286}
287
255e48eb 288static void cryptd_skcipher_encrypt(void *data, int err)
4e0958d1 289{
255e48eb 290 struct skcipher_request *req = data;
f27c94aa 291 struct skcipher_request *subreq;
4e0958d1 292
f27c94aa
HX
293 subreq = cryptd_skcipher_prepare(req, err);
294 if (likely(subreq))
295 err = crypto_skcipher_encrypt(subreq);
4e0958d1 296
f27c94aa 297 cryptd_skcipher_complete(req, err, cryptd_skcipher_encrypt);
4e0958d1
HX
298}
299
255e48eb 300static void cryptd_skcipher_decrypt(void *data, int err)
4e0958d1 301{
255e48eb 302 struct skcipher_request *req = data;
f27c94aa 303 struct skcipher_request *subreq;
4e0958d1 304
f27c94aa
HX
305 subreq = cryptd_skcipher_prepare(req, err);
306 if (likely(subreq))
307 err = crypto_skcipher_decrypt(subreq);
4e0958d1 308
f27c94aa 309 cryptd_skcipher_complete(req, err, cryptd_skcipher_decrypt);
4e0958d1
HX
310}
311
312static int cryptd_skcipher_enqueue(struct skcipher_request *req,
313 crypto_completion_t compl)
314{
315 struct cryptd_skcipher_request_ctx *rctx = skcipher_request_ctx(req);
316 struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
f27c94aa 317 struct skcipher_request *subreq = &rctx->req;
4e0958d1
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318 struct cryptd_queue *queue;
319
320 queue = cryptd_get_queue(crypto_skcipher_tfm(tfm));
f27c94aa
HX
321 subreq->base.complete = req->base.complete;
322 subreq->base.data = req->base.data;
4e0958d1 323 req->base.complete = compl;
f27c94aa 324 req->base.data = req;
4e0958d1
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325
326 return cryptd_enqueue_request(queue, &req->base);
327}
328
329static int cryptd_skcipher_encrypt_enqueue(struct skcipher_request *req)
330{
331 return cryptd_skcipher_enqueue(req, cryptd_skcipher_encrypt);
332}
333
334static int cryptd_skcipher_decrypt_enqueue(struct skcipher_request *req)
335{
336 return cryptd_skcipher_enqueue(req, cryptd_skcipher_decrypt);
337}
338
339static int cryptd_skcipher_init_tfm(struct crypto_skcipher *tfm)
340{
341 struct skcipher_instance *inst = skcipher_alg_instance(tfm);
342 struct skcipherd_instance_ctx *ictx = skcipher_instance_ctx(inst);
343 struct crypto_skcipher_spawn *spawn = &ictx->spawn;
344 struct cryptd_skcipher_ctx *ctx = crypto_skcipher_ctx(tfm);
345 struct crypto_skcipher *cipher;
346
347 cipher = crypto_spawn_skcipher(spawn);
348 if (IS_ERR(cipher))
349 return PTR_ERR(cipher);
350
3a58c231 351 ctx->child = cipher;
4e0958d1 352 crypto_skcipher_set_reqsize(
3a58c231
HX
353 tfm, sizeof(struct cryptd_skcipher_request_ctx) +
354 crypto_skcipher_reqsize(cipher));
4e0958d1
HX
355 return 0;
356}
357
358static void cryptd_skcipher_exit_tfm(struct crypto_skcipher *tfm)
359{
360 struct cryptd_skcipher_ctx *ctx = crypto_skcipher_ctx(tfm);
361
3a58c231 362 crypto_free_skcipher(ctx->child);
4e0958d1
HX
363}
364
365static void cryptd_skcipher_free(struct skcipher_instance *inst)
366{
367 struct skcipherd_instance_ctx *ctx = skcipher_instance_ctx(inst);
368
369 crypto_drop_skcipher(&ctx->spawn);
1a0fad63 370 kfree(inst);
4e0958d1
HX
371}
372
373static int cryptd_create_skcipher(struct crypto_template *tmpl,
374 struct rtattr **tb,
7bcb2c99 375 struct crypto_attr_type *algt,
4e0958d1
HX
376 struct cryptd_queue *queue)
377{
378 struct skcipherd_instance_ctx *ctx;
379 struct skcipher_instance *inst;
380 struct skcipher_alg *alg;
4e0958d1
HX
381 u32 type;
382 u32 mask;
383 int err;
384
7bcb2c99 385 cryptd_type_and_mask(algt, &type, &mask);
4e0958d1 386
4e0958d1
HX
387 inst = kzalloc(sizeof(*inst) + sizeof(*ctx), GFP_KERNEL);
388 if (!inst)
389 return -ENOMEM;
390
391 ctx = skcipher_instance_ctx(inst);
392 ctx->queue = queue;
393
b9f76ddd 394 err = crypto_grab_skcipher(&ctx->spawn, skcipher_crypto_instance(inst),
b8c0d74a 395 crypto_attr_alg_name(tb[1]), type, mask);
4e0958d1 396 if (err)
b8c0d74a 397 goto err_free_inst;
4e0958d1
HX
398
399 alg = crypto_spawn_skcipher_alg(&ctx->spawn);
400 err = cryptd_init_instance(skcipher_crypto_instance(inst), &alg->base);
401 if (err)
b8c0d74a 402 goto err_free_inst;
4e0958d1 403
7bcb2c99
EB
404 inst->alg.base.cra_flags |= CRYPTO_ALG_ASYNC |
405 (alg->base.cra_flags & CRYPTO_ALG_INTERNAL);
4e0958d1
HX
406 inst->alg.ivsize = crypto_skcipher_alg_ivsize(alg);
407 inst->alg.chunksize = crypto_skcipher_alg_chunksize(alg);
408 inst->alg.min_keysize = crypto_skcipher_alg_min_keysize(alg);
409 inst->alg.max_keysize = crypto_skcipher_alg_max_keysize(alg);
410
411 inst->alg.base.cra_ctxsize = sizeof(struct cryptd_skcipher_ctx);
412
413 inst->alg.init = cryptd_skcipher_init_tfm;
414 inst->alg.exit = cryptd_skcipher_exit_tfm;
415
416 inst->alg.setkey = cryptd_skcipher_setkey;
417 inst->alg.encrypt = cryptd_skcipher_encrypt_enqueue;
418 inst->alg.decrypt = cryptd_skcipher_decrypt_enqueue;
419
420 inst->free = cryptd_skcipher_free;
421
422 err = skcipher_register_instance(tmpl, inst);
423 if (err) {
b8c0d74a
EB
424err_free_inst:
425 cryptd_skcipher_free(inst);
4e0958d1
HX
426 }
427 return err;
428}
429
0303b7f5 430static int cryptd_hash_init_tfm(struct crypto_ahash *tfm)
b8a28251 431{
0303b7f5
HX
432 struct ahash_instance *inst = ahash_alg_instance(tfm);
433 struct hashd_instance_ctx *ictx = ahash_instance_ctx(inst);
46309d89 434 struct crypto_shash_spawn *spawn = &ictx->spawn;
0303b7f5 435 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(tfm);
46309d89 436 struct crypto_shash *hash;
b8a28251 437
46309d89
HX
438 hash = crypto_spawn_shash(spawn);
439 if (IS_ERR(hash))
440 return PTR_ERR(hash);
b8a28251 441
46309d89 442 ctx->child = hash;
0303b7f5 443 crypto_ahash_set_reqsize(tfm,
0d6669e2
HX
444 sizeof(struct cryptd_hash_request_ctx) +
445 crypto_shash_descsize(hash));
b8a28251
LH
446 return 0;
447}
448
cfbda734
HX
449static int cryptd_hash_clone_tfm(struct crypto_ahash *ntfm,
450 struct crypto_ahash *tfm)
451{
452 struct cryptd_hash_ctx *nctx = crypto_ahash_ctx(ntfm);
453 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(tfm);
454 struct crypto_shash *hash;
455
456 hash = crypto_clone_shash(ctx->child);
457 if (IS_ERR(hash))
458 return PTR_ERR(hash);
459
460 nctx->child = hash;
461 return 0;
462}
463
0303b7f5 464static void cryptd_hash_exit_tfm(struct crypto_ahash *tfm)
b8a28251 465{
0303b7f5 466 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(tfm);
b8a28251 467
46309d89 468 crypto_free_shash(ctx->child);
b8a28251
LH
469}
470
471static int cryptd_hash_setkey(struct crypto_ahash *parent,
472 const u8 *key, unsigned int keylen)
473{
474 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(parent);
46309d89 475 struct crypto_shash *child = ctx->child;
b8a28251 476
46309d89
HX
477 crypto_shash_clear_flags(child, CRYPTO_TFM_REQ_MASK);
478 crypto_shash_set_flags(child, crypto_ahash_get_flags(parent) &
479 CRYPTO_TFM_REQ_MASK);
af5034e8 480 return crypto_shash_setkey(child, key, keylen);
b8a28251
LH
481}
482
483static int cryptd_hash_enqueue(struct ahash_request *req,
3e3dc25f 484 crypto_completion_t compl)
b8a28251
LH
485{
486 struct cryptd_hash_request_ctx *rctx = ahash_request_ctx(req);
487 struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
254eff77
HY
488 struct cryptd_queue *queue =
489 cryptd_get_queue(crypto_ahash_tfm(tfm));
b8a28251
LH
490
491 rctx->complete = req->base.complete;
f27c94aa 492 rctx->data = req->base.data;
3e3dc25f 493 req->base.complete = compl;
f27c94aa 494 req->base.data = req;
b8a28251 495
254eff77 496 return cryptd_enqueue_request(queue, &req->base);
b8a28251
LH
497}
498
f27c94aa
HX
499static struct shash_desc *cryptd_hash_prepare(struct ahash_request *req,
500 int err)
501{
502 struct cryptd_hash_request_ctx *rctx = ahash_request_ctx(req);
503
504 req->base.complete = rctx->complete;
505 req->base.data = rctx->data;
506
507 if (unlikely(err == -EINPROGRESS))
508 return NULL;
509
510 return &rctx->desc;
511}
512
513static void cryptd_hash_complete(struct ahash_request *req, int err,
514 crypto_completion_t complete)
81760ea6
HX
515{
516 struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
517 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(tfm);
43b970fa 518 int refcnt = refcount_read(&ctx->refcnt);
81760ea6
HX
519
520 local_bh_disable();
f27c94aa 521 ahash_request_complete(req, err);
81760ea6
HX
522 local_bh_enable();
523
f27c94aa
HX
524 if (err == -EINPROGRESS) {
525 req->base.complete = complete;
526 req->base.data = req;
527 } else if (refcnt && refcount_dec_and_test(&ctx->refcnt))
81760ea6
HX
528 crypto_free_ahash(tfm);
529}
530
255e48eb 531static void cryptd_hash_init(void *data, int err)
b8a28251 532{
255e48eb 533 struct ahash_request *req = data;
f27c94aa
HX
534 struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
535 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(tfm);
536 struct crypto_shash *child = ctx->child;
537 struct shash_desc *desc;
b8a28251 538
f27c94aa
HX
539 desc = cryptd_hash_prepare(req, err);
540 if (unlikely(!desc))
b8a28251
LH
541 goto out;
542
46309d89 543 desc->tfm = child;
b8a28251 544
46309d89 545 err = crypto_shash_init(desc);
b8a28251 546
b8a28251 547out:
f27c94aa 548 cryptd_hash_complete(req, err, cryptd_hash_init);
b8a28251
LH
549}
550
551static int cryptd_hash_init_enqueue(struct ahash_request *req)
552{
553 return cryptd_hash_enqueue(req, cryptd_hash_init);
554}
555
255e48eb 556static void cryptd_hash_update(void *data, int err)
b8a28251 557{
255e48eb 558 struct ahash_request *req = data;
f27c94aa 559 struct shash_desc *desc;
b8a28251 560
f27c94aa
HX
561 desc = cryptd_hash_prepare(req, err);
562 if (likely(desc))
563 err = shash_ahash_update(req, desc);
b8a28251 564
f27c94aa 565 cryptd_hash_complete(req, err, cryptd_hash_update);
b8a28251
LH
566}
567
568static int cryptd_hash_update_enqueue(struct ahash_request *req)
569{
570 return cryptd_hash_enqueue(req, cryptd_hash_update);
571}
572
255e48eb 573static void cryptd_hash_final(void *data, int err)
b8a28251 574{
255e48eb 575 struct ahash_request *req = data;
f27c94aa 576 struct shash_desc *desc;
b8a28251 577
f27c94aa
HX
578 desc = cryptd_hash_prepare(req, err);
579 if (likely(desc))
580 err = crypto_shash_final(desc, req->result);
b8a28251 581
f27c94aa 582 cryptd_hash_complete(req, err, cryptd_hash_final);
b8a28251
LH
583}
584
585static int cryptd_hash_final_enqueue(struct ahash_request *req)
586{
587 return cryptd_hash_enqueue(req, cryptd_hash_final);
588}
589
255e48eb 590static void cryptd_hash_finup(void *data, int err)
6fba00d1 591{
255e48eb 592 struct ahash_request *req = data;
f27c94aa 593 struct shash_desc *desc;
6fba00d1 594
f27c94aa
HX
595 desc = cryptd_hash_prepare(req, err);
596 if (likely(desc))
597 err = shash_ahash_finup(req, desc);
6fba00d1 598
f27c94aa 599 cryptd_hash_complete(req, err, cryptd_hash_finup);
6fba00d1
HX
600}
601
602static int cryptd_hash_finup_enqueue(struct ahash_request *req)
603{
604 return cryptd_hash_enqueue(req, cryptd_hash_finup);
605}
606
255e48eb 607static void cryptd_hash_digest(void *data, int err)
b8a28251 608{
255e48eb 609 struct ahash_request *req = data;
f27c94aa
HX
610 struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
611 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(tfm);
612 struct crypto_shash *child = ctx->child;
613 struct shash_desc *desc;
b8a28251 614
f27c94aa
HX
615 desc = cryptd_hash_prepare(req, err);
616 if (unlikely(!desc))
b8a28251
LH
617 goto out;
618
46309d89 619 desc->tfm = child;
b8a28251 620
46309d89 621 err = shash_ahash_digest(req, desc);
b8a28251 622
b8a28251 623out:
f27c94aa 624 cryptd_hash_complete(req, err, cryptd_hash_digest);
b8a28251
LH
625}
626
627static int cryptd_hash_digest_enqueue(struct ahash_request *req)
628{
629 return cryptd_hash_enqueue(req, cryptd_hash_digest);
630}
631
6fba00d1
HX
632static int cryptd_hash_export(struct ahash_request *req, void *out)
633{
634 struct cryptd_hash_request_ctx *rctx = ahash_request_ctx(req);
635
636 return crypto_shash_export(&rctx->desc, out);
637}
638
639static int cryptd_hash_import(struct ahash_request *req, const void *in)
640{
0bd22235
AB
641 struct crypto_ahash *tfm = crypto_ahash_reqtfm(req);
642 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(tfm);
643 struct shash_desc *desc = cryptd_shash_desc(req);
644
645 desc->tfm = ctx->child;
6fba00d1 646
0bd22235 647 return crypto_shash_import(desc, in);
6fba00d1
HX
648}
649
758ec5ac
EB
650static void cryptd_hash_free(struct ahash_instance *inst)
651{
652 struct hashd_instance_ctx *ctx = ahash_instance_ctx(inst);
653
654 crypto_drop_shash(&ctx->spawn);
655 kfree(inst);
656}
657
9cd899a3 658static int cryptd_create_hash(struct crypto_template *tmpl, struct rtattr **tb,
7bcb2c99 659 struct crypto_attr_type *algt,
9cd899a3 660 struct cryptd_queue *queue)
b8a28251 661{
46309d89 662 struct hashd_instance_ctx *ctx;
0b535adf 663 struct ahash_instance *inst;
218c5035 664 struct shash_alg *alg;
7bcb2c99
EB
665 u32 type;
666 u32 mask;
46309d89 667 int err;
b8a28251 668
7bcb2c99 669 cryptd_type_and_mask(algt, &type, &mask);
466a7b9e 670
218c5035
EB
671 inst = kzalloc(sizeof(*inst) + sizeof(*ctx), GFP_KERNEL);
672 if (!inst)
673 return -ENOMEM;
b8a28251 674
0b535adf 675 ctx = ahash_instance_ctx(inst);
46309d89
HX
676 ctx->queue = queue;
677
218c5035
EB
678 err = crypto_grab_shash(&ctx->spawn, ahash_crypto_instance(inst),
679 crypto_attr_alg_name(tb[1]), type, mask);
46309d89 680 if (err)
218c5035
EB
681 goto err_free_inst;
682 alg = crypto_spawn_shash_alg(&ctx->spawn);
683
684 err = cryptd_init_instance(ahash_crypto_instance(inst), &alg->base);
685 if (err)
686 goto err_free_inst;
46309d89 687
7bcb2c99
EB
688 inst->alg.halg.base.cra_flags |= CRYPTO_ALG_ASYNC |
689 (alg->base.cra_flags & (CRYPTO_ALG_INTERNAL|
218c5035 690 CRYPTO_ALG_OPTIONAL_KEY));
218c5035
EB
691 inst->alg.halg.digestsize = alg->digestsize;
692 inst->alg.halg.statesize = alg->statesize;
0b535adf 693 inst->alg.halg.base.cra_ctxsize = sizeof(struct cryptd_hash_ctx);
b8a28251 694
0303b7f5 695 inst->alg.init_tfm = cryptd_hash_init_tfm;
cfbda734 696 inst->alg.clone_tfm = cryptd_hash_clone_tfm;
0303b7f5 697 inst->alg.exit_tfm = cryptd_hash_exit_tfm;
b8a28251 698
0b535adf
HX
699 inst->alg.init = cryptd_hash_init_enqueue;
700 inst->alg.update = cryptd_hash_update_enqueue;
701 inst->alg.final = cryptd_hash_final_enqueue;
6fba00d1
HX
702 inst->alg.finup = cryptd_hash_finup_enqueue;
703 inst->alg.export = cryptd_hash_export;
704 inst->alg.import = cryptd_hash_import;
218c5035 705 if (crypto_shash_alg_has_setkey(alg))
841a3ff3 706 inst->alg.setkey = cryptd_hash_setkey;
0b535adf 707 inst->alg.digest = cryptd_hash_digest_enqueue;
b8a28251 708
758ec5ac
EB
709 inst->free = cryptd_hash_free;
710
0b535adf 711 err = ahash_register_instance(tmpl, inst);
9cd899a3 712 if (err) {
218c5035 713err_free_inst:
b8c0d74a 714 cryptd_hash_free(inst);
9cd899a3 715 }
9cd899a3 716 return err;
b8a28251
LH
717}
718
92b9876b
HX
719static int cryptd_aead_setkey(struct crypto_aead *parent,
720 const u8 *key, unsigned int keylen)
721{
722 struct cryptd_aead_ctx *ctx = crypto_aead_ctx(parent);
723 struct crypto_aead *child = ctx->child;
724
725 return crypto_aead_setkey(child, key, keylen);
726}
727
728static int cryptd_aead_setauthsize(struct crypto_aead *parent,
729 unsigned int authsize)
730{
731 struct cryptd_aead_ctx *ctx = crypto_aead_ctx(parent);
732 struct crypto_aead *child = ctx->child;
733
734 return crypto_aead_setauthsize(child, authsize);
735}
736
298c926c 737static void cryptd_aead_crypt(struct aead_request *req,
f27c94aa
HX
738 struct crypto_aead *child, int err,
739 int (*crypt)(struct aead_request *req),
740 crypto_completion_t compl)
298c926c
AH
741{
742 struct cryptd_aead_request_ctx *rctx;
256f9e53 743 struct aead_request *subreq;
81760ea6 744 struct cryptd_aead_ctx *ctx;
81760ea6
HX
745 struct crypto_aead *tfm;
746 int refcnt;
ec9f2006 747
298c926c 748 rctx = aead_request_ctx(req);
256f9e53 749 subreq = &rctx->req;
f27c94aa
HX
750 req->base.complete = subreq->base.complete;
751 req->base.data = subreq->base.data;
298c926c 752
31bd44e7
HX
753 tfm = crypto_aead_reqtfm(req);
754
298c926c
AH
755 if (unlikely(err == -EINPROGRESS))
756 goto out;
256f9e53
HX
757
758 aead_request_set_tfm(subreq, child);
759 aead_request_set_callback(subreq, CRYPTO_TFM_REQ_MAY_SLEEP,
760 NULL, NULL);
761 aead_request_set_crypt(subreq, req->src, req->dst, req->cryptlen,
762 req->iv);
763 aead_request_set_ad(subreq, req->assoclen);
764
765 err = crypt(subreq);
766
298c926c 767out:
81760ea6 768 ctx = crypto_aead_ctx(tfm);
43b970fa 769 refcnt = refcount_read(&ctx->refcnt);
81760ea6 770
298c926c 771 local_bh_disable();
f27c94aa 772 aead_request_complete(req, err);
298c926c 773 local_bh_enable();
81760ea6 774
f27c94aa
HX
775 if (err == -EINPROGRESS) {
776 subreq->base.complete = req->base.complete;
777 subreq->base.data = req->base.data;
778 req->base.complete = compl;
779 req->base.data = req;
780 } else if (refcnt && refcount_dec_and_test(&ctx->refcnt))
81760ea6 781 crypto_free_aead(tfm);
298c926c
AH
782}
783
255e48eb 784static void cryptd_aead_encrypt(void *data, int err)
298c926c 785{
255e48eb
HX
786 struct aead_request *req = data;
787 struct cryptd_aead_ctx *ctx;
788 struct crypto_aead *child;
298c926c 789
255e48eb
HX
790 ctx = crypto_aead_ctx(crypto_aead_reqtfm(req));
791 child = ctx->child;
f27c94aa
HX
792 cryptd_aead_crypt(req, child, err, crypto_aead_alg(child)->encrypt,
793 cryptd_aead_encrypt);
298c926c
AH
794}
795
255e48eb 796static void cryptd_aead_decrypt(void *data, int err)
298c926c 797{
255e48eb
HX
798 struct aead_request *req = data;
799 struct cryptd_aead_ctx *ctx;
800 struct crypto_aead *child;
298c926c 801
255e48eb
HX
802 ctx = crypto_aead_ctx(crypto_aead_reqtfm(req));
803 child = ctx->child;
f27c94aa
HX
804 cryptd_aead_crypt(req, child, err, crypto_aead_alg(child)->decrypt,
805 cryptd_aead_decrypt);
298c926c
AH
806}
807
808static int cryptd_aead_enqueue(struct aead_request *req,
3e3dc25f 809 crypto_completion_t compl)
298c926c
AH
810{
811 struct cryptd_aead_request_ctx *rctx = aead_request_ctx(req);
812 struct crypto_aead *tfm = crypto_aead_reqtfm(req);
813 struct cryptd_queue *queue = cryptd_get_queue(crypto_aead_tfm(tfm));
f27c94aa 814 struct aead_request *subreq = &rctx->req;
298c926c 815
f27c94aa
HX
816 subreq->base.complete = req->base.complete;
817 subreq->base.data = req->base.data;
3e3dc25f 818 req->base.complete = compl;
f27c94aa 819 req->base.data = req;
298c926c
AH
820 return cryptd_enqueue_request(queue, &req->base);
821}
822
823static int cryptd_aead_encrypt_enqueue(struct aead_request *req)
824{
825 return cryptd_aead_enqueue(req, cryptd_aead_encrypt );
826}
827
828static int cryptd_aead_decrypt_enqueue(struct aead_request *req)
829{
830 return cryptd_aead_enqueue(req, cryptd_aead_decrypt );
831}
832
f614e546 833static int cryptd_aead_init_tfm(struct crypto_aead *tfm)
298c926c 834{
f614e546
HX
835 struct aead_instance *inst = aead_alg_instance(tfm);
836 struct aead_instance_ctx *ictx = aead_instance_ctx(inst);
298c926c 837 struct crypto_aead_spawn *spawn = &ictx->aead_spawn;
f614e546 838 struct cryptd_aead_ctx *ctx = crypto_aead_ctx(tfm);
298c926c
AH
839 struct crypto_aead *cipher;
840
841 cipher = crypto_spawn_aead(spawn);
842 if (IS_ERR(cipher))
843 return PTR_ERR(cipher);
844
298c926c 845 ctx->child = cipher;
ec9f2006 846 crypto_aead_set_reqsize(
256f9e53
HX
847 tfm, sizeof(struct cryptd_aead_request_ctx) +
848 crypto_aead_reqsize(cipher));
298c926c
AH
849 return 0;
850}
851
f614e546 852static void cryptd_aead_exit_tfm(struct crypto_aead *tfm)
298c926c 853{
f614e546 854 struct cryptd_aead_ctx *ctx = crypto_aead_ctx(tfm);
298c926c
AH
855 crypto_free_aead(ctx->child);
856}
857
758ec5ac
EB
858static void cryptd_aead_free(struct aead_instance *inst)
859{
860 struct aead_instance_ctx *ctx = aead_instance_ctx(inst);
861
862 crypto_drop_aead(&ctx->aead_spawn);
863 kfree(inst);
864}
865
298c926c
AH
866static int cryptd_create_aead(struct crypto_template *tmpl,
867 struct rtattr **tb,
7bcb2c99 868 struct crypto_attr_type *algt,
298c926c
AH
869 struct cryptd_queue *queue)
870{
871 struct aead_instance_ctx *ctx;
f614e546
HX
872 struct aead_instance *inst;
873 struct aead_alg *alg;
7bcb2c99
EB
874 u32 type;
875 u32 mask;
298c926c
AH
876 int err;
877
7bcb2c99 878 cryptd_type_and_mask(algt, &type, &mask);
466a7b9e 879
9b8c456e
HX
880 inst = kzalloc(sizeof(*inst) + sizeof(*ctx), GFP_KERNEL);
881 if (!inst)
882 return -ENOMEM;
298c926c 883
f614e546 884 ctx = aead_instance_ctx(inst);
298c926c
AH
885 ctx->queue = queue;
886
cd900f0c 887 err = crypto_grab_aead(&ctx->aead_spawn, aead_crypto_instance(inst),
b8c0d74a 888 crypto_attr_alg_name(tb[1]), type, mask);
298c926c 889 if (err)
b8c0d74a 890 goto err_free_inst;
298c926c 891
f614e546
HX
892 alg = crypto_spawn_aead_alg(&ctx->aead_spawn);
893 err = cryptd_init_instance(aead_crypto_instance(inst), &alg->base);
9b8c456e 894 if (err)
b8c0d74a 895 goto err_free_inst;
9b8c456e 896
7bcb2c99
EB
897 inst->alg.base.cra_flags |= CRYPTO_ALG_ASYNC |
898 (alg->base.cra_flags & CRYPTO_ALG_INTERNAL);
f614e546 899 inst->alg.base.cra_ctxsize = sizeof(struct cryptd_aead_ctx);
298c926c 900
f614e546
HX
901 inst->alg.ivsize = crypto_aead_alg_ivsize(alg);
902 inst->alg.maxauthsize = crypto_aead_alg_maxauthsize(alg);
903
904 inst->alg.init = cryptd_aead_init_tfm;
905 inst->alg.exit = cryptd_aead_exit_tfm;
906 inst->alg.setkey = cryptd_aead_setkey;
907 inst->alg.setauthsize = cryptd_aead_setauthsize;
908 inst->alg.encrypt = cryptd_aead_encrypt_enqueue;
909 inst->alg.decrypt = cryptd_aead_decrypt_enqueue;
910
758ec5ac
EB
911 inst->free = cryptd_aead_free;
912
f614e546 913 err = aead_register_instance(tmpl, inst);
298c926c 914 if (err) {
b8c0d74a
EB
915err_free_inst:
916 cryptd_aead_free(inst);
298c926c 917 }
298c926c
AH
918 return err;
919}
920
254eff77 921static struct cryptd_queue queue;
124b53d0 922
9cd899a3 923static int cryptd_create(struct crypto_template *tmpl, struct rtattr **tb)
124b53d0
HX
924{
925 struct crypto_attr_type *algt;
926
927 algt = crypto_get_attr_type(tb);
928 if (IS_ERR(algt))
9cd899a3 929 return PTR_ERR(algt);
124b53d0
HX
930
931 switch (algt->type & algt->mask & CRYPTO_ALG_TYPE_MASK) {
c65058b7 932 case CRYPTO_ALG_TYPE_SKCIPHER:
7bcb2c99 933 return cryptd_create_skcipher(tmpl, tb, algt, &queue);
84ede58d 934 case CRYPTO_ALG_TYPE_HASH:
7bcb2c99 935 return cryptd_create_hash(tmpl, tb, algt, &queue);
298c926c 936 case CRYPTO_ALG_TYPE_AEAD:
7bcb2c99 937 return cryptd_create_aead(tmpl, tb, algt, &queue);
124b53d0
HX
938 }
939
9cd899a3 940 return -EINVAL;
124b53d0
HX
941}
942
124b53d0
HX
943static struct crypto_template cryptd_tmpl = {
944 .name = "cryptd",
9cd899a3 945 .create = cryptd_create,
124b53d0
HX
946 .module = THIS_MODULE,
947};
948
4e0958d1
HX
949struct cryptd_skcipher *cryptd_alloc_skcipher(const char *alg_name,
950 u32 type, u32 mask)
951{
952 char cryptd_alg_name[CRYPTO_MAX_ALG_NAME];
953 struct cryptd_skcipher_ctx *ctx;
954 struct crypto_skcipher *tfm;
955
956 if (snprintf(cryptd_alg_name, CRYPTO_MAX_ALG_NAME,
957 "cryptd(%s)", alg_name) >= CRYPTO_MAX_ALG_NAME)
958 return ERR_PTR(-EINVAL);
959
960 tfm = crypto_alloc_skcipher(cryptd_alg_name, type, mask);
961 if (IS_ERR(tfm))
962 return ERR_CAST(tfm);
963
964 if (tfm->base.__crt_alg->cra_module != THIS_MODULE) {
965 crypto_free_skcipher(tfm);
966 return ERR_PTR(-EINVAL);
967 }
968
969 ctx = crypto_skcipher_ctx(tfm);
43b970fa 970 refcount_set(&ctx->refcnt, 1);
4e0958d1
HX
971
972 return container_of(tfm, struct cryptd_skcipher, base);
973}
974EXPORT_SYMBOL_GPL(cryptd_alloc_skcipher);
975
976struct crypto_skcipher *cryptd_skcipher_child(struct cryptd_skcipher *tfm)
977{
978 struct cryptd_skcipher_ctx *ctx = crypto_skcipher_ctx(&tfm->base);
979
3a58c231 980 return ctx->child;
4e0958d1
HX
981}
982EXPORT_SYMBOL_GPL(cryptd_skcipher_child);
983
984bool cryptd_skcipher_queued(struct cryptd_skcipher *tfm)
985{
986 struct cryptd_skcipher_ctx *ctx = crypto_skcipher_ctx(&tfm->base);
987
43b970fa 988 return refcount_read(&ctx->refcnt) - 1;
4e0958d1
HX
989}
990EXPORT_SYMBOL_GPL(cryptd_skcipher_queued);
991
992void cryptd_free_skcipher(struct cryptd_skcipher *tfm)
993{
994 struct cryptd_skcipher_ctx *ctx = crypto_skcipher_ctx(&tfm->base);
995
43b970fa 996 if (refcount_dec_and_test(&ctx->refcnt))
4e0958d1
HX
997 crypto_free_skcipher(&tfm->base);
998}
999EXPORT_SYMBOL_GPL(cryptd_free_skcipher);
1000
ace13663
HY
1001struct cryptd_ahash *cryptd_alloc_ahash(const char *alg_name,
1002 u32 type, u32 mask)
1003{
1004 char cryptd_alg_name[CRYPTO_MAX_ALG_NAME];
81760ea6 1005 struct cryptd_hash_ctx *ctx;
ace13663
HY
1006 struct crypto_ahash *tfm;
1007
1008 if (snprintf(cryptd_alg_name, CRYPTO_MAX_ALG_NAME,
1009 "cryptd(%s)", alg_name) >= CRYPTO_MAX_ALG_NAME)
1010 return ERR_PTR(-EINVAL);
1011 tfm = crypto_alloc_ahash(cryptd_alg_name, type, mask);
1012 if (IS_ERR(tfm))
1013 return ERR_CAST(tfm);
1014 if (tfm->base.__crt_alg->cra_module != THIS_MODULE) {
1015 crypto_free_ahash(tfm);
1016 return ERR_PTR(-EINVAL);
1017 }
1018
81760ea6 1019 ctx = crypto_ahash_ctx(tfm);
43b970fa 1020 refcount_set(&ctx->refcnt, 1);
81760ea6 1021
ace13663
HY
1022 return __cryptd_ahash_cast(tfm);
1023}
1024EXPORT_SYMBOL_GPL(cryptd_alloc_ahash);
1025
1026struct crypto_shash *cryptd_ahash_child(struct cryptd_ahash *tfm)
1027{
1028 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(&tfm->base);
1029
1030 return ctx->child;
1031}
1032EXPORT_SYMBOL_GPL(cryptd_ahash_child);
1033
0e1227d3
HY
1034struct shash_desc *cryptd_shash_desc(struct ahash_request *req)
1035{
1036 struct cryptd_hash_request_ctx *rctx = ahash_request_ctx(req);
1037 return &rctx->desc;
1038}
1039EXPORT_SYMBOL_GPL(cryptd_shash_desc);
1040
81760ea6
HX
1041bool cryptd_ahash_queued(struct cryptd_ahash *tfm)
1042{
1043 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(&tfm->base);
1044
43b970fa 1045 return refcount_read(&ctx->refcnt) - 1;
81760ea6
HX
1046}
1047EXPORT_SYMBOL_GPL(cryptd_ahash_queued);
1048
ace13663
HY
1049void cryptd_free_ahash(struct cryptd_ahash *tfm)
1050{
81760ea6
HX
1051 struct cryptd_hash_ctx *ctx = crypto_ahash_ctx(&tfm->base);
1052
43b970fa 1053 if (refcount_dec_and_test(&ctx->refcnt))
81760ea6 1054 crypto_free_ahash(&tfm->base);
ace13663
HY
1055}
1056EXPORT_SYMBOL_GPL(cryptd_free_ahash);
1057
298c926c
AH
1058struct cryptd_aead *cryptd_alloc_aead(const char *alg_name,
1059 u32 type, u32 mask)
1060{
1061 char cryptd_alg_name[CRYPTO_MAX_ALG_NAME];
81760ea6 1062 struct cryptd_aead_ctx *ctx;
298c926c
AH
1063 struct crypto_aead *tfm;
1064
1065 if (snprintf(cryptd_alg_name, CRYPTO_MAX_ALG_NAME,
1066 "cryptd(%s)", alg_name) >= CRYPTO_MAX_ALG_NAME)
1067 return ERR_PTR(-EINVAL);
1068 tfm = crypto_alloc_aead(cryptd_alg_name, type, mask);
1069 if (IS_ERR(tfm))
1070 return ERR_CAST(tfm);
1071 if (tfm->base.__crt_alg->cra_module != THIS_MODULE) {
1072 crypto_free_aead(tfm);
1073 return ERR_PTR(-EINVAL);
1074 }
81760ea6
HX
1075
1076 ctx = crypto_aead_ctx(tfm);
43b970fa 1077 refcount_set(&ctx->refcnt, 1);
81760ea6 1078
298c926c
AH
1079 return __cryptd_aead_cast(tfm);
1080}
1081EXPORT_SYMBOL_GPL(cryptd_alloc_aead);
1082
1083struct crypto_aead *cryptd_aead_child(struct cryptd_aead *tfm)
1084{
1085 struct cryptd_aead_ctx *ctx;
1086 ctx = crypto_aead_ctx(&tfm->base);
1087 return ctx->child;
1088}
1089EXPORT_SYMBOL_GPL(cryptd_aead_child);
1090
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1091bool cryptd_aead_queued(struct cryptd_aead *tfm)
1092{
1093 struct cryptd_aead_ctx *ctx = crypto_aead_ctx(&tfm->base);
1094
43b970fa 1095 return refcount_read(&ctx->refcnt) - 1;
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1096}
1097EXPORT_SYMBOL_GPL(cryptd_aead_queued);
1098
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1099void cryptd_free_aead(struct cryptd_aead *tfm)
1100{
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1101 struct cryptd_aead_ctx *ctx = crypto_aead_ctx(&tfm->base);
1102
43b970fa 1103 if (refcount_dec_and_test(&ctx->refcnt))
81760ea6 1104 crypto_free_aead(&tfm->base);
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1105}
1106EXPORT_SYMBOL_GPL(cryptd_free_aead);
1107
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1108static int __init cryptd_init(void)
1109{
1110 int err;
1111
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1112 cryptd_wq = alloc_workqueue("cryptd", WQ_MEM_RECLAIM | WQ_CPU_INTENSIVE,
1113 1);
1114 if (!cryptd_wq)
1115 return -ENOMEM;
1116
c3a53605 1117 err = cryptd_init_queue(&queue, cryptd_max_cpu_qlen);
124b53d0 1118 if (err)
3e56e168 1119 goto err_destroy_wq;
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1120
1121 err = crypto_register_template(&cryptd_tmpl);
1122 if (err)
3e56e168 1123 goto err_fini_queue;
124b53d0 1124
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1125 return 0;
1126
1127err_fini_queue:
1128 cryptd_fini_queue(&queue);
1129err_destroy_wq:
1130 destroy_workqueue(cryptd_wq);
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1131 return err;
1132}
1133
1134static void __exit cryptd_exit(void)
1135{
3e56e168 1136 destroy_workqueue(cryptd_wq);
254eff77 1137 cryptd_fini_queue(&queue);
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1138 crypto_unregister_template(&cryptd_tmpl);
1139}
1140
b2bac6ac 1141subsys_initcall(cryptd_init);
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1142module_exit(cryptd_exit);
1143
1144MODULE_LICENSE("GPL");
1145MODULE_DESCRIPTION("Software async crypto daemon");
4943ba16 1146MODULE_ALIAS_CRYPTO("cryptd");