1 // SPDX-License-Identifier: GPL-2.0-only
3 * GCM: Galois/Counter Mode.
5 * Copyright (c) 2007 Nokia Siemens Networks - Mikko Herranen <mh1@iki.fi>
8 #include <crypto/gf128mul.h>
9 #include <crypto/internal/aead.h>
10 #include <crypto/internal/skcipher.h>
11 #include <crypto/internal/hash.h>
12 #include <crypto/null.h>
13 #include <crypto/scatterwalk.h>
14 #include <crypto/gcm.h>
15 #include <crypto/hash.h>
16 #include <linux/err.h>
17 #include <linux/init.h>
18 #include <linux/kernel.h>
19 #include <linux/module.h>
20 #include <linux/slab.h>
22 struct gcm_instance_ctx
{
23 struct crypto_skcipher_spawn ctr
;
24 struct crypto_ahash_spawn ghash
;
27 struct crypto_gcm_ctx
{
28 struct crypto_skcipher
*ctr
;
29 struct crypto_ahash
*ghash
;
32 struct crypto_rfc4106_ctx
{
33 struct crypto_aead
*child
;
37 struct crypto_rfc4106_req_ctx
{
38 struct scatterlist src
[3];
39 struct scatterlist dst
[3];
40 struct aead_request subreq
;
43 struct crypto_rfc4543_instance_ctx
{
44 struct crypto_aead_spawn aead
;
47 struct crypto_rfc4543_ctx
{
48 struct crypto_aead
*child
;
49 struct crypto_sync_skcipher
*null
;
53 struct crypto_rfc4543_req_ctx
{
54 struct aead_request subreq
;
57 struct crypto_gcm_ghash_ctx
{
58 unsigned int cryptlen
;
59 struct scatterlist
*src
;
60 int (*complete
)(struct aead_request
*req
, u32 flags
);
63 struct crypto_gcm_req_priv_ctx
{
67 struct scatterlist src
[3];
68 struct scatterlist dst
[3];
69 struct scatterlist sg
;
70 struct crypto_gcm_ghash_ctx ghash_ctx
;
72 struct ahash_request ahreq
;
73 struct skcipher_request skreq
;
79 struct scatterlist sg
;
82 static int crypto_rfc4543_copy_src_to_dst(struct aead_request
*req
, bool enc
);
84 static inline struct crypto_gcm_req_priv_ctx
*crypto_gcm_reqctx(
85 struct aead_request
*req
)
87 unsigned long align
= crypto_aead_alignmask(crypto_aead_reqtfm(req
));
89 return (void *)PTR_ALIGN((u8
*)aead_request_ctx(req
), align
+ 1);
92 static int crypto_gcm_setkey(struct crypto_aead
*aead
, const u8
*key
,
95 struct crypto_gcm_ctx
*ctx
= crypto_aead_ctx(aead
);
96 struct crypto_ahash
*ghash
= ctx
->ghash
;
97 struct crypto_skcipher
*ctr
= ctx
->ctr
;
102 struct crypto_wait wait
;
104 struct scatterlist sg
[1];
105 struct skcipher_request req
;
109 crypto_skcipher_clear_flags(ctr
, CRYPTO_TFM_REQ_MASK
);
110 crypto_skcipher_set_flags(ctr
, crypto_aead_get_flags(aead
) &
111 CRYPTO_TFM_REQ_MASK
);
112 err
= crypto_skcipher_setkey(ctr
, key
, keylen
);
116 data
= kzalloc(sizeof(*data
) + crypto_skcipher_reqsize(ctr
),
121 crypto_init_wait(&data
->wait
);
122 sg_init_one(data
->sg
, &data
->hash
, sizeof(data
->hash
));
123 skcipher_request_set_tfm(&data
->req
, ctr
);
124 skcipher_request_set_callback(&data
->req
, CRYPTO_TFM_REQ_MAY_SLEEP
|
125 CRYPTO_TFM_REQ_MAY_BACKLOG
,
128 skcipher_request_set_crypt(&data
->req
, data
->sg
, data
->sg
,
129 sizeof(data
->hash
), data
->iv
);
131 err
= crypto_wait_req(crypto_skcipher_encrypt(&data
->req
),
137 crypto_ahash_clear_flags(ghash
, CRYPTO_TFM_REQ_MASK
);
138 crypto_ahash_set_flags(ghash
, crypto_aead_get_flags(aead
) &
139 CRYPTO_TFM_REQ_MASK
);
140 err
= crypto_ahash_setkey(ghash
, (u8
*)&data
->hash
, sizeof(be128
));
142 kfree_sensitive(data
);
146 static int crypto_gcm_setauthsize(struct crypto_aead
*tfm
,
147 unsigned int authsize
)
149 return crypto_gcm_check_authsize(authsize
);
152 static void crypto_gcm_init_common(struct aead_request
*req
)
154 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
155 __be32 counter
= cpu_to_be32(1);
156 struct scatterlist
*sg
;
158 memset(pctx
->auth_tag
, 0, sizeof(pctx
->auth_tag
));
159 memcpy(pctx
->iv
, req
->iv
, GCM_AES_IV_SIZE
);
160 memcpy(pctx
->iv
+ GCM_AES_IV_SIZE
, &counter
, 4);
162 sg_init_table(pctx
->src
, 3);
163 sg_set_buf(pctx
->src
, pctx
->auth_tag
, sizeof(pctx
->auth_tag
));
164 sg
= scatterwalk_ffwd(pctx
->src
+ 1, req
->src
, req
->assoclen
);
165 if (sg
!= pctx
->src
+ 1)
166 sg_chain(pctx
->src
, 2, sg
);
168 if (req
->src
!= req
->dst
) {
169 sg_init_table(pctx
->dst
, 3);
170 sg_set_buf(pctx
->dst
, pctx
->auth_tag
, sizeof(pctx
->auth_tag
));
171 sg
= scatterwalk_ffwd(pctx
->dst
+ 1, req
->dst
, req
->assoclen
);
172 if (sg
!= pctx
->dst
+ 1)
173 sg_chain(pctx
->dst
, 2, sg
);
177 static void crypto_gcm_init_crypt(struct aead_request
*req
,
178 unsigned int cryptlen
)
180 struct crypto_aead
*aead
= crypto_aead_reqtfm(req
);
181 struct crypto_gcm_ctx
*ctx
= crypto_aead_ctx(aead
);
182 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
183 struct skcipher_request
*skreq
= &pctx
->u
.skreq
;
184 struct scatterlist
*dst
;
186 dst
= req
->src
== req
->dst
? pctx
->src
: pctx
->dst
;
188 skcipher_request_set_tfm(skreq
, ctx
->ctr
);
189 skcipher_request_set_crypt(skreq
, pctx
->src
, dst
,
190 cryptlen
+ sizeof(pctx
->auth_tag
),
194 static inline unsigned int gcm_remain(unsigned int len
)
197 return len
? 16 - len
: 0;
200 static void gcm_hash_len_done(struct crypto_async_request
*areq
, int err
);
202 static int gcm_hash_update(struct aead_request
*req
,
203 crypto_completion_t
compl,
204 struct scatterlist
*src
,
205 unsigned int len
, u32 flags
)
207 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
208 struct ahash_request
*ahreq
= &pctx
->u
.ahreq
;
210 ahash_request_set_callback(ahreq
, flags
, compl, req
);
211 ahash_request_set_crypt(ahreq
, src
, NULL
, len
);
213 return crypto_ahash_update(ahreq
);
216 static int gcm_hash_remain(struct aead_request
*req
,
218 crypto_completion_t
compl, u32 flags
)
220 return gcm_hash_update(req
, compl, &gcm_zeroes
->sg
, remain
, flags
);
223 static int gcm_hash_len(struct aead_request
*req
, u32 flags
)
225 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
226 struct ahash_request
*ahreq
= &pctx
->u
.ahreq
;
227 struct crypto_gcm_ghash_ctx
*gctx
= &pctx
->ghash_ctx
;
230 lengths
.a
= cpu_to_be64(req
->assoclen
* 8);
231 lengths
.b
= cpu_to_be64(gctx
->cryptlen
* 8);
232 memcpy(pctx
->iauth_tag
, &lengths
, 16);
233 sg_init_one(&pctx
->sg
, pctx
->iauth_tag
, 16);
234 ahash_request_set_callback(ahreq
, flags
, gcm_hash_len_done
, req
);
235 ahash_request_set_crypt(ahreq
, &pctx
->sg
,
236 pctx
->iauth_tag
, sizeof(lengths
));
238 return crypto_ahash_finup(ahreq
);
241 static int gcm_hash_len_continue(struct aead_request
*req
, u32 flags
)
243 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
244 struct crypto_gcm_ghash_ctx
*gctx
= &pctx
->ghash_ctx
;
246 return gctx
->complete(req
, flags
);
249 static void gcm_hash_len_done(struct crypto_async_request
*areq
, int err
)
251 struct aead_request
*req
= areq
->data
;
256 err
= gcm_hash_len_continue(req
, 0);
257 if (err
== -EINPROGRESS
)
261 aead_request_complete(req
, err
);
264 static int gcm_hash_crypt_remain_continue(struct aead_request
*req
, u32 flags
)
266 return gcm_hash_len(req
, flags
) ?:
267 gcm_hash_len_continue(req
, flags
);
270 static void gcm_hash_crypt_remain_done(struct crypto_async_request
*areq
,
273 struct aead_request
*req
= areq
->data
;
278 err
= gcm_hash_crypt_remain_continue(req
, 0);
279 if (err
== -EINPROGRESS
)
283 aead_request_complete(req
, err
);
286 static int gcm_hash_crypt_continue(struct aead_request
*req
, u32 flags
)
288 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
289 struct crypto_gcm_ghash_ctx
*gctx
= &pctx
->ghash_ctx
;
292 remain
= gcm_remain(gctx
->cryptlen
);
294 return gcm_hash_remain(req
, remain
,
295 gcm_hash_crypt_remain_done
, flags
) ?:
296 gcm_hash_crypt_remain_continue(req
, flags
);
298 return gcm_hash_crypt_remain_continue(req
, flags
);
301 static void gcm_hash_crypt_done(struct crypto_async_request
*areq
, int err
)
303 struct aead_request
*req
= areq
->data
;
308 err
= gcm_hash_crypt_continue(req
, 0);
309 if (err
== -EINPROGRESS
)
313 aead_request_complete(req
, err
);
316 static int gcm_hash_assoc_remain_continue(struct aead_request
*req
, u32 flags
)
318 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
319 struct crypto_gcm_ghash_ctx
*gctx
= &pctx
->ghash_ctx
;
322 return gcm_hash_update(req
, gcm_hash_crypt_done
,
323 gctx
->src
, gctx
->cryptlen
, flags
) ?:
324 gcm_hash_crypt_continue(req
, flags
);
326 return gcm_hash_crypt_remain_continue(req
, flags
);
329 static void gcm_hash_assoc_remain_done(struct crypto_async_request
*areq
,
332 struct aead_request
*req
= areq
->data
;
337 err
= gcm_hash_assoc_remain_continue(req
, 0);
338 if (err
== -EINPROGRESS
)
342 aead_request_complete(req
, err
);
345 static int gcm_hash_assoc_continue(struct aead_request
*req
, u32 flags
)
349 remain
= gcm_remain(req
->assoclen
);
351 return gcm_hash_remain(req
, remain
,
352 gcm_hash_assoc_remain_done
, flags
) ?:
353 gcm_hash_assoc_remain_continue(req
, flags
);
355 return gcm_hash_assoc_remain_continue(req
, flags
);
358 static void gcm_hash_assoc_done(struct crypto_async_request
*areq
, int err
)
360 struct aead_request
*req
= areq
->data
;
365 err
= gcm_hash_assoc_continue(req
, 0);
366 if (err
== -EINPROGRESS
)
370 aead_request_complete(req
, err
);
373 static int gcm_hash_init_continue(struct aead_request
*req
, u32 flags
)
376 return gcm_hash_update(req
, gcm_hash_assoc_done
,
377 req
->src
, req
->assoclen
, flags
) ?:
378 gcm_hash_assoc_continue(req
, flags
);
380 return gcm_hash_assoc_remain_continue(req
, flags
);
383 static void gcm_hash_init_done(struct crypto_async_request
*areq
, int err
)
385 struct aead_request
*req
= areq
->data
;
390 err
= gcm_hash_init_continue(req
, 0);
391 if (err
== -EINPROGRESS
)
395 aead_request_complete(req
, err
);
398 static int gcm_hash(struct aead_request
*req
, u32 flags
)
400 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
401 struct ahash_request
*ahreq
= &pctx
->u
.ahreq
;
402 struct crypto_gcm_ctx
*ctx
= crypto_aead_ctx(crypto_aead_reqtfm(req
));
404 ahash_request_set_tfm(ahreq
, ctx
->ghash
);
406 ahash_request_set_callback(ahreq
, flags
, gcm_hash_init_done
, req
);
407 return crypto_ahash_init(ahreq
) ?:
408 gcm_hash_init_continue(req
, flags
);
411 static int gcm_enc_copy_hash(struct aead_request
*req
, u32 flags
)
413 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
414 struct crypto_aead
*aead
= crypto_aead_reqtfm(req
);
415 u8
*auth_tag
= pctx
->auth_tag
;
417 crypto_xor(auth_tag
, pctx
->iauth_tag
, 16);
418 scatterwalk_map_and_copy(auth_tag
, req
->dst
,
419 req
->assoclen
+ req
->cryptlen
,
420 crypto_aead_authsize(aead
), 1);
424 static int gcm_encrypt_continue(struct aead_request
*req
, u32 flags
)
426 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
427 struct crypto_gcm_ghash_ctx
*gctx
= &pctx
->ghash_ctx
;
429 gctx
->src
= sg_next(req
->src
== req
->dst
? pctx
->src
: pctx
->dst
);
430 gctx
->cryptlen
= req
->cryptlen
;
431 gctx
->complete
= gcm_enc_copy_hash
;
433 return gcm_hash(req
, flags
);
436 static void gcm_encrypt_done(struct crypto_async_request
*areq
, int err
)
438 struct aead_request
*req
= areq
->data
;
443 err
= gcm_encrypt_continue(req
, 0);
444 if (err
== -EINPROGRESS
)
448 aead_request_complete(req
, err
);
451 static int crypto_gcm_encrypt(struct aead_request
*req
)
453 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
454 struct skcipher_request
*skreq
= &pctx
->u
.skreq
;
455 u32 flags
= aead_request_flags(req
);
457 crypto_gcm_init_common(req
);
458 crypto_gcm_init_crypt(req
, req
->cryptlen
);
459 skcipher_request_set_callback(skreq
, flags
, gcm_encrypt_done
, req
);
461 return crypto_skcipher_encrypt(skreq
) ?:
462 gcm_encrypt_continue(req
, flags
);
465 static int crypto_gcm_verify(struct aead_request
*req
)
467 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
468 struct crypto_aead
*aead
= crypto_aead_reqtfm(req
);
469 u8
*auth_tag
= pctx
->auth_tag
;
470 u8
*iauth_tag
= pctx
->iauth_tag
;
471 unsigned int authsize
= crypto_aead_authsize(aead
);
472 unsigned int cryptlen
= req
->cryptlen
- authsize
;
474 crypto_xor(auth_tag
, iauth_tag
, 16);
475 scatterwalk_map_and_copy(iauth_tag
, req
->src
,
476 req
->assoclen
+ cryptlen
, authsize
, 0);
477 return crypto_memneq(iauth_tag
, auth_tag
, authsize
) ? -EBADMSG
: 0;
480 static void gcm_decrypt_done(struct crypto_async_request
*areq
, int err
)
482 struct aead_request
*req
= areq
->data
;
485 err
= crypto_gcm_verify(req
);
487 aead_request_complete(req
, err
);
490 static int gcm_dec_hash_continue(struct aead_request
*req
, u32 flags
)
492 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
493 struct skcipher_request
*skreq
= &pctx
->u
.skreq
;
494 struct crypto_gcm_ghash_ctx
*gctx
= &pctx
->ghash_ctx
;
496 crypto_gcm_init_crypt(req
, gctx
->cryptlen
);
497 skcipher_request_set_callback(skreq
, flags
, gcm_decrypt_done
, req
);
498 return crypto_skcipher_decrypt(skreq
) ?: crypto_gcm_verify(req
);
501 static int crypto_gcm_decrypt(struct aead_request
*req
)
503 struct crypto_aead
*aead
= crypto_aead_reqtfm(req
);
504 struct crypto_gcm_req_priv_ctx
*pctx
= crypto_gcm_reqctx(req
);
505 struct crypto_gcm_ghash_ctx
*gctx
= &pctx
->ghash_ctx
;
506 unsigned int authsize
= crypto_aead_authsize(aead
);
507 unsigned int cryptlen
= req
->cryptlen
;
508 u32 flags
= aead_request_flags(req
);
510 cryptlen
-= authsize
;
512 crypto_gcm_init_common(req
);
514 gctx
->src
= sg_next(pctx
->src
);
515 gctx
->cryptlen
= cryptlen
;
516 gctx
->complete
= gcm_dec_hash_continue
;
518 return gcm_hash(req
, flags
);
521 static int crypto_gcm_init_tfm(struct crypto_aead
*tfm
)
523 struct aead_instance
*inst
= aead_alg_instance(tfm
);
524 struct gcm_instance_ctx
*ictx
= aead_instance_ctx(inst
);
525 struct crypto_gcm_ctx
*ctx
= crypto_aead_ctx(tfm
);
526 struct crypto_skcipher
*ctr
;
527 struct crypto_ahash
*ghash
;
531 ghash
= crypto_spawn_ahash(&ictx
->ghash
);
533 return PTR_ERR(ghash
);
535 ctr
= crypto_spawn_skcipher(&ictx
->ctr
);
543 align
= crypto_aead_alignmask(tfm
);
544 align
&= ~(crypto_tfm_ctx_alignment() - 1);
545 crypto_aead_set_reqsize(tfm
,
546 align
+ offsetof(struct crypto_gcm_req_priv_ctx
, u
) +
547 max(sizeof(struct skcipher_request
) +
548 crypto_skcipher_reqsize(ctr
),
549 sizeof(struct ahash_request
) +
550 crypto_ahash_reqsize(ghash
)));
555 crypto_free_ahash(ghash
);
559 static void crypto_gcm_exit_tfm(struct crypto_aead
*tfm
)
561 struct crypto_gcm_ctx
*ctx
= crypto_aead_ctx(tfm
);
563 crypto_free_ahash(ctx
->ghash
);
564 crypto_free_skcipher(ctx
->ctr
);
567 static void crypto_gcm_free(struct aead_instance
*inst
)
569 struct gcm_instance_ctx
*ctx
= aead_instance_ctx(inst
);
571 crypto_drop_skcipher(&ctx
->ctr
);
572 crypto_drop_ahash(&ctx
->ghash
);
576 static int crypto_gcm_create_common(struct crypto_template
*tmpl
,
578 const char *ctr_name
,
579 const char *ghash_name
)
582 struct aead_instance
*inst
;
583 struct gcm_instance_ctx
*ctx
;
584 struct skcipher_alg
*ctr
;
585 struct hash_alg_common
*ghash
;
588 err
= crypto_check_attr_type(tb
, CRYPTO_ALG_TYPE_AEAD
, &mask
);
592 inst
= kzalloc(sizeof(*inst
) + sizeof(*ctx
), GFP_KERNEL
);
595 ctx
= aead_instance_ctx(inst
);
597 err
= crypto_grab_ahash(&ctx
->ghash
, aead_crypto_instance(inst
),
598 ghash_name
, 0, mask
);
601 ghash
= crypto_spawn_ahash_alg(&ctx
->ghash
);
604 if (strcmp(ghash
->base
.cra_name
, "ghash") != 0 ||
605 ghash
->digestsize
!= 16)
608 err
= crypto_grab_skcipher(&ctx
->ctr
, aead_crypto_instance(inst
),
612 ctr
= crypto_spawn_skcipher_alg(&ctx
->ctr
);
614 /* The skcipher algorithm must be CTR mode, using 16-byte blocks. */
616 if (strncmp(ctr
->base
.cra_name
, "ctr(", 4) != 0 ||
617 crypto_skcipher_alg_ivsize(ctr
) != 16 ||
618 ctr
->base
.cra_blocksize
!= 1)
622 if (snprintf(inst
->alg
.base
.cra_name
, CRYPTO_MAX_ALG_NAME
,
623 "gcm(%s", ctr
->base
.cra_name
+ 4) >= CRYPTO_MAX_ALG_NAME
)
626 if (snprintf(inst
->alg
.base
.cra_driver_name
, CRYPTO_MAX_ALG_NAME
,
627 "gcm_base(%s,%s)", ctr
->base
.cra_driver_name
,
628 ghash
->base
.cra_driver_name
) >=
632 inst
->alg
.base
.cra_priority
= (ghash
->base
.cra_priority
+
633 ctr
->base
.cra_priority
) / 2;
634 inst
->alg
.base
.cra_blocksize
= 1;
635 inst
->alg
.base
.cra_alignmask
= ghash
->base
.cra_alignmask
|
636 ctr
->base
.cra_alignmask
;
637 inst
->alg
.base
.cra_ctxsize
= sizeof(struct crypto_gcm_ctx
);
638 inst
->alg
.ivsize
= GCM_AES_IV_SIZE
;
639 inst
->alg
.chunksize
= crypto_skcipher_alg_chunksize(ctr
);
640 inst
->alg
.maxauthsize
= 16;
641 inst
->alg
.init
= crypto_gcm_init_tfm
;
642 inst
->alg
.exit
= crypto_gcm_exit_tfm
;
643 inst
->alg
.setkey
= crypto_gcm_setkey
;
644 inst
->alg
.setauthsize
= crypto_gcm_setauthsize
;
645 inst
->alg
.encrypt
= crypto_gcm_encrypt
;
646 inst
->alg
.decrypt
= crypto_gcm_decrypt
;
648 inst
->free
= crypto_gcm_free
;
650 err
= aead_register_instance(tmpl
, inst
);
653 crypto_gcm_free(inst
);
658 static int crypto_gcm_create(struct crypto_template
*tmpl
, struct rtattr
**tb
)
660 const char *cipher_name
;
661 char ctr_name
[CRYPTO_MAX_ALG_NAME
];
663 cipher_name
= crypto_attr_alg_name(tb
[1]);
664 if (IS_ERR(cipher_name
))
665 return PTR_ERR(cipher_name
);
667 if (snprintf(ctr_name
, CRYPTO_MAX_ALG_NAME
, "ctr(%s)", cipher_name
) >=
669 return -ENAMETOOLONG
;
671 return crypto_gcm_create_common(tmpl
, tb
, ctr_name
, "ghash");
674 static int crypto_gcm_base_create(struct crypto_template
*tmpl
,
677 const char *ctr_name
;
678 const char *ghash_name
;
680 ctr_name
= crypto_attr_alg_name(tb
[1]);
681 if (IS_ERR(ctr_name
))
682 return PTR_ERR(ctr_name
);
684 ghash_name
= crypto_attr_alg_name(tb
[2]);
685 if (IS_ERR(ghash_name
))
686 return PTR_ERR(ghash_name
);
688 return crypto_gcm_create_common(tmpl
, tb
, ctr_name
, ghash_name
);
691 static int crypto_rfc4106_setkey(struct crypto_aead
*parent
, const u8
*key
,
694 struct crypto_rfc4106_ctx
*ctx
= crypto_aead_ctx(parent
);
695 struct crypto_aead
*child
= ctx
->child
;
701 memcpy(ctx
->nonce
, key
+ keylen
, 4);
703 crypto_aead_clear_flags(child
, CRYPTO_TFM_REQ_MASK
);
704 crypto_aead_set_flags(child
, crypto_aead_get_flags(parent
) &
705 CRYPTO_TFM_REQ_MASK
);
706 return crypto_aead_setkey(child
, key
, keylen
);
709 static int crypto_rfc4106_setauthsize(struct crypto_aead
*parent
,
710 unsigned int authsize
)
712 struct crypto_rfc4106_ctx
*ctx
= crypto_aead_ctx(parent
);
715 err
= crypto_rfc4106_check_authsize(authsize
);
719 return crypto_aead_setauthsize(ctx
->child
, authsize
);
722 static struct aead_request
*crypto_rfc4106_crypt(struct aead_request
*req
)
724 struct crypto_rfc4106_req_ctx
*rctx
= aead_request_ctx(req
);
725 struct crypto_aead
*aead
= crypto_aead_reqtfm(req
);
726 struct crypto_rfc4106_ctx
*ctx
= crypto_aead_ctx(aead
);
727 struct aead_request
*subreq
= &rctx
->subreq
;
728 struct crypto_aead
*child
= ctx
->child
;
729 struct scatterlist
*sg
;
730 u8
*iv
= PTR_ALIGN((u8
*)(subreq
+ 1) + crypto_aead_reqsize(child
),
731 crypto_aead_alignmask(child
) + 1);
733 scatterwalk_map_and_copy(iv
+ GCM_AES_IV_SIZE
, req
->src
, 0, req
->assoclen
- 8, 0);
735 memcpy(iv
, ctx
->nonce
, 4);
736 memcpy(iv
+ 4, req
->iv
, 8);
738 sg_init_table(rctx
->src
, 3);
739 sg_set_buf(rctx
->src
, iv
+ GCM_AES_IV_SIZE
, req
->assoclen
- 8);
740 sg
= scatterwalk_ffwd(rctx
->src
+ 1, req
->src
, req
->assoclen
);
741 if (sg
!= rctx
->src
+ 1)
742 sg_chain(rctx
->src
, 2, sg
);
744 if (req
->src
!= req
->dst
) {
745 sg_init_table(rctx
->dst
, 3);
746 sg_set_buf(rctx
->dst
, iv
+ GCM_AES_IV_SIZE
, req
->assoclen
- 8);
747 sg
= scatterwalk_ffwd(rctx
->dst
+ 1, req
->dst
, req
->assoclen
);
748 if (sg
!= rctx
->dst
+ 1)
749 sg_chain(rctx
->dst
, 2, sg
);
752 aead_request_set_tfm(subreq
, child
);
753 aead_request_set_callback(subreq
, req
->base
.flags
, req
->base
.complete
,
755 aead_request_set_crypt(subreq
, rctx
->src
,
756 req
->src
== req
->dst
? rctx
->src
: rctx
->dst
,
758 aead_request_set_ad(subreq
, req
->assoclen
- 8);
763 static int crypto_rfc4106_encrypt(struct aead_request
*req
)
767 err
= crypto_ipsec_check_assoclen(req
->assoclen
);
771 req
= crypto_rfc4106_crypt(req
);
773 return crypto_aead_encrypt(req
);
776 static int crypto_rfc4106_decrypt(struct aead_request
*req
)
780 err
= crypto_ipsec_check_assoclen(req
->assoclen
);
784 req
= crypto_rfc4106_crypt(req
);
786 return crypto_aead_decrypt(req
);
789 static int crypto_rfc4106_init_tfm(struct crypto_aead
*tfm
)
791 struct aead_instance
*inst
= aead_alg_instance(tfm
);
792 struct crypto_aead_spawn
*spawn
= aead_instance_ctx(inst
);
793 struct crypto_rfc4106_ctx
*ctx
= crypto_aead_ctx(tfm
);
794 struct crypto_aead
*aead
;
797 aead
= crypto_spawn_aead(spawn
);
799 return PTR_ERR(aead
);
803 align
= crypto_aead_alignmask(aead
);
804 align
&= ~(crypto_tfm_ctx_alignment() - 1);
805 crypto_aead_set_reqsize(
807 sizeof(struct crypto_rfc4106_req_ctx
) +
808 ALIGN(crypto_aead_reqsize(aead
), crypto_tfm_ctx_alignment()) +
814 static void crypto_rfc4106_exit_tfm(struct crypto_aead
*tfm
)
816 struct crypto_rfc4106_ctx
*ctx
= crypto_aead_ctx(tfm
);
818 crypto_free_aead(ctx
->child
);
821 static void crypto_rfc4106_free(struct aead_instance
*inst
)
823 crypto_drop_aead(aead_instance_ctx(inst
));
827 static int crypto_rfc4106_create(struct crypto_template
*tmpl
,
831 struct aead_instance
*inst
;
832 struct crypto_aead_spawn
*spawn
;
833 struct aead_alg
*alg
;
836 err
= crypto_check_attr_type(tb
, CRYPTO_ALG_TYPE_AEAD
, &mask
);
840 inst
= kzalloc(sizeof(*inst
) + sizeof(*spawn
), GFP_KERNEL
);
844 spawn
= aead_instance_ctx(inst
);
845 err
= crypto_grab_aead(spawn
, aead_crypto_instance(inst
),
846 crypto_attr_alg_name(tb
[1]), 0, mask
);
850 alg
= crypto_spawn_aead_alg(spawn
);
854 /* Underlying IV size must be 12. */
855 if (crypto_aead_alg_ivsize(alg
) != GCM_AES_IV_SIZE
)
858 /* Not a stream cipher? */
859 if (alg
->base
.cra_blocksize
!= 1)
863 if (snprintf(inst
->alg
.base
.cra_name
, CRYPTO_MAX_ALG_NAME
,
864 "rfc4106(%s)", alg
->base
.cra_name
) >=
865 CRYPTO_MAX_ALG_NAME
||
866 snprintf(inst
->alg
.base
.cra_driver_name
, CRYPTO_MAX_ALG_NAME
,
867 "rfc4106(%s)", alg
->base
.cra_driver_name
) >=
871 inst
->alg
.base
.cra_priority
= alg
->base
.cra_priority
;
872 inst
->alg
.base
.cra_blocksize
= 1;
873 inst
->alg
.base
.cra_alignmask
= alg
->base
.cra_alignmask
;
875 inst
->alg
.base
.cra_ctxsize
= sizeof(struct crypto_rfc4106_ctx
);
877 inst
->alg
.ivsize
= GCM_RFC4106_IV_SIZE
;
878 inst
->alg
.chunksize
= crypto_aead_alg_chunksize(alg
);
879 inst
->alg
.maxauthsize
= crypto_aead_alg_maxauthsize(alg
);
881 inst
->alg
.init
= crypto_rfc4106_init_tfm
;
882 inst
->alg
.exit
= crypto_rfc4106_exit_tfm
;
884 inst
->alg
.setkey
= crypto_rfc4106_setkey
;
885 inst
->alg
.setauthsize
= crypto_rfc4106_setauthsize
;
886 inst
->alg
.encrypt
= crypto_rfc4106_encrypt
;
887 inst
->alg
.decrypt
= crypto_rfc4106_decrypt
;
889 inst
->free
= crypto_rfc4106_free
;
891 err
= aead_register_instance(tmpl
, inst
);
894 crypto_rfc4106_free(inst
);
899 static int crypto_rfc4543_setkey(struct crypto_aead
*parent
, const u8
*key
,
902 struct crypto_rfc4543_ctx
*ctx
= crypto_aead_ctx(parent
);
903 struct crypto_aead
*child
= ctx
->child
;
909 memcpy(ctx
->nonce
, key
+ keylen
, 4);
911 crypto_aead_clear_flags(child
, CRYPTO_TFM_REQ_MASK
);
912 crypto_aead_set_flags(child
, crypto_aead_get_flags(parent
) &
913 CRYPTO_TFM_REQ_MASK
);
914 return crypto_aead_setkey(child
, key
, keylen
);
917 static int crypto_rfc4543_setauthsize(struct crypto_aead
*parent
,
918 unsigned int authsize
)
920 struct crypto_rfc4543_ctx
*ctx
= crypto_aead_ctx(parent
);
925 return crypto_aead_setauthsize(ctx
->child
, authsize
);
928 static int crypto_rfc4543_crypt(struct aead_request
*req
, bool enc
)
930 struct crypto_aead
*aead
= crypto_aead_reqtfm(req
);
931 struct crypto_rfc4543_ctx
*ctx
= crypto_aead_ctx(aead
);
932 struct crypto_rfc4543_req_ctx
*rctx
= aead_request_ctx(req
);
933 struct aead_request
*subreq
= &rctx
->subreq
;
934 unsigned int authsize
= crypto_aead_authsize(aead
);
935 u8
*iv
= PTR_ALIGN((u8
*)(rctx
+ 1) + crypto_aead_reqsize(ctx
->child
),
936 crypto_aead_alignmask(ctx
->child
) + 1);
939 if (req
->src
!= req
->dst
) {
940 err
= crypto_rfc4543_copy_src_to_dst(req
, enc
);
945 memcpy(iv
, ctx
->nonce
, 4);
946 memcpy(iv
+ 4, req
->iv
, 8);
948 aead_request_set_tfm(subreq
, ctx
->child
);
949 aead_request_set_callback(subreq
, req
->base
.flags
,
950 req
->base
.complete
, req
->base
.data
);
951 aead_request_set_crypt(subreq
, req
->src
, req
->dst
,
952 enc
? 0 : authsize
, iv
);
953 aead_request_set_ad(subreq
, req
->assoclen
+ req
->cryptlen
-
956 return enc
? crypto_aead_encrypt(subreq
) : crypto_aead_decrypt(subreq
);
959 static int crypto_rfc4543_copy_src_to_dst(struct aead_request
*req
, bool enc
)
961 struct crypto_aead
*aead
= crypto_aead_reqtfm(req
);
962 struct crypto_rfc4543_ctx
*ctx
= crypto_aead_ctx(aead
);
963 unsigned int authsize
= crypto_aead_authsize(aead
);
964 unsigned int nbytes
= req
->assoclen
+ req
->cryptlen
-
965 (enc
? 0 : authsize
);
966 SYNC_SKCIPHER_REQUEST_ON_STACK(nreq
, ctx
->null
);
968 skcipher_request_set_sync_tfm(nreq
, ctx
->null
);
969 skcipher_request_set_callback(nreq
, req
->base
.flags
, NULL
, NULL
);
970 skcipher_request_set_crypt(nreq
, req
->src
, req
->dst
, nbytes
, NULL
);
972 return crypto_skcipher_encrypt(nreq
);
975 static int crypto_rfc4543_encrypt(struct aead_request
*req
)
977 return crypto_ipsec_check_assoclen(req
->assoclen
) ?:
978 crypto_rfc4543_crypt(req
, true);
981 static int crypto_rfc4543_decrypt(struct aead_request
*req
)
983 return crypto_ipsec_check_assoclen(req
->assoclen
) ?:
984 crypto_rfc4543_crypt(req
, false);
987 static int crypto_rfc4543_init_tfm(struct crypto_aead
*tfm
)
989 struct aead_instance
*inst
= aead_alg_instance(tfm
);
990 struct crypto_rfc4543_instance_ctx
*ictx
= aead_instance_ctx(inst
);
991 struct crypto_aead_spawn
*spawn
= &ictx
->aead
;
992 struct crypto_rfc4543_ctx
*ctx
= crypto_aead_ctx(tfm
);
993 struct crypto_aead
*aead
;
994 struct crypto_sync_skcipher
*null
;
998 aead
= crypto_spawn_aead(spawn
);
1000 return PTR_ERR(aead
);
1002 null
= crypto_get_default_null_skcipher();
1003 err
= PTR_ERR(null
);
1010 align
= crypto_aead_alignmask(aead
);
1011 align
&= ~(crypto_tfm_ctx_alignment() - 1);
1012 crypto_aead_set_reqsize(
1014 sizeof(struct crypto_rfc4543_req_ctx
) +
1015 ALIGN(crypto_aead_reqsize(aead
), crypto_tfm_ctx_alignment()) +
1016 align
+ GCM_AES_IV_SIZE
);
1021 crypto_free_aead(aead
);
1025 static void crypto_rfc4543_exit_tfm(struct crypto_aead
*tfm
)
1027 struct crypto_rfc4543_ctx
*ctx
= crypto_aead_ctx(tfm
);
1029 crypto_free_aead(ctx
->child
);
1030 crypto_put_default_null_skcipher();
1033 static void crypto_rfc4543_free(struct aead_instance
*inst
)
1035 struct crypto_rfc4543_instance_ctx
*ctx
= aead_instance_ctx(inst
);
1037 crypto_drop_aead(&ctx
->aead
);
1042 static int crypto_rfc4543_create(struct crypto_template
*tmpl
,
1046 struct aead_instance
*inst
;
1047 struct aead_alg
*alg
;
1048 struct crypto_rfc4543_instance_ctx
*ctx
;
1051 err
= crypto_check_attr_type(tb
, CRYPTO_ALG_TYPE_AEAD
, &mask
);
1055 inst
= kzalloc(sizeof(*inst
) + sizeof(*ctx
), GFP_KERNEL
);
1059 ctx
= aead_instance_ctx(inst
);
1060 err
= crypto_grab_aead(&ctx
->aead
, aead_crypto_instance(inst
),
1061 crypto_attr_alg_name(tb
[1]), 0, mask
);
1065 alg
= crypto_spawn_aead_alg(&ctx
->aead
);
1069 /* Underlying IV size must be 12. */
1070 if (crypto_aead_alg_ivsize(alg
) != GCM_AES_IV_SIZE
)
1073 /* Not a stream cipher? */
1074 if (alg
->base
.cra_blocksize
!= 1)
1077 err
= -ENAMETOOLONG
;
1078 if (snprintf(inst
->alg
.base
.cra_name
, CRYPTO_MAX_ALG_NAME
,
1079 "rfc4543(%s)", alg
->base
.cra_name
) >=
1080 CRYPTO_MAX_ALG_NAME
||
1081 snprintf(inst
->alg
.base
.cra_driver_name
, CRYPTO_MAX_ALG_NAME
,
1082 "rfc4543(%s)", alg
->base
.cra_driver_name
) >=
1083 CRYPTO_MAX_ALG_NAME
)
1086 inst
->alg
.base
.cra_priority
= alg
->base
.cra_priority
;
1087 inst
->alg
.base
.cra_blocksize
= 1;
1088 inst
->alg
.base
.cra_alignmask
= alg
->base
.cra_alignmask
;
1090 inst
->alg
.base
.cra_ctxsize
= sizeof(struct crypto_rfc4543_ctx
);
1092 inst
->alg
.ivsize
= GCM_RFC4543_IV_SIZE
;
1093 inst
->alg
.chunksize
= crypto_aead_alg_chunksize(alg
);
1094 inst
->alg
.maxauthsize
= crypto_aead_alg_maxauthsize(alg
);
1096 inst
->alg
.init
= crypto_rfc4543_init_tfm
;
1097 inst
->alg
.exit
= crypto_rfc4543_exit_tfm
;
1099 inst
->alg
.setkey
= crypto_rfc4543_setkey
;
1100 inst
->alg
.setauthsize
= crypto_rfc4543_setauthsize
;
1101 inst
->alg
.encrypt
= crypto_rfc4543_encrypt
;
1102 inst
->alg
.decrypt
= crypto_rfc4543_decrypt
;
1104 inst
->free
= crypto_rfc4543_free
;
1106 err
= aead_register_instance(tmpl
, inst
);
1109 crypto_rfc4543_free(inst
);
1114 static struct crypto_template crypto_gcm_tmpls
[] = {
1117 .create
= crypto_gcm_base_create
,
1118 .module
= THIS_MODULE
,
1121 .create
= crypto_gcm_create
,
1122 .module
= THIS_MODULE
,
1125 .create
= crypto_rfc4106_create
,
1126 .module
= THIS_MODULE
,
1129 .create
= crypto_rfc4543_create
,
1130 .module
= THIS_MODULE
,
1134 static int __init
crypto_gcm_module_init(void)
1138 gcm_zeroes
= kzalloc(sizeof(*gcm_zeroes
), GFP_KERNEL
);
1142 sg_init_one(&gcm_zeroes
->sg
, gcm_zeroes
->buf
, sizeof(gcm_zeroes
->buf
));
1144 err
= crypto_register_templates(crypto_gcm_tmpls
,
1145 ARRAY_SIZE(crypto_gcm_tmpls
));
1152 static void __exit
crypto_gcm_module_exit(void)
1155 crypto_unregister_templates(crypto_gcm_tmpls
,
1156 ARRAY_SIZE(crypto_gcm_tmpls
));
1159 subsys_initcall(crypto_gcm_module_init
);
1160 module_exit(crypto_gcm_module_exit
);
1162 MODULE_LICENSE("GPL");
1163 MODULE_DESCRIPTION("Galois/Counter Mode");
1164 MODULE_AUTHOR("Mikko Herranen <mh1@iki.fi>");
1165 MODULE_ALIAS_CRYPTO("gcm_base");
1166 MODULE_ALIAS_CRYPTO("rfc4106");
1167 MODULE_ALIAS_CRYPTO("rfc4543");
1168 MODULE_ALIAS_CRYPTO("gcm");