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1 /*
2  * GCM: Galois/Counter Mode.
3  *
4  * Copyright (c) 2007 Nokia Siemens Networks - Mikko Herranen <mh1@iki.fi>
5  *
6  * This program is free software; you can redistribute it and/or modify it
7  * under the terms of the GNU General Public License version 2 as published
8  * by the Free Software Foundation.
9  */
10 
11 #include <crypto/gf128mul.h>
12 #include <crypto/internal/aead.h>
13 #include <crypto/internal/skcipher.h>
14 #include <crypto/internal/hash.h>
15 #include <crypto/null.h>
16 #include <crypto/scatterwalk.h>
17 #include <crypto/hash.h>
18 #include "internal.h"
19 #include <linux/completion.h>
20 #include <linux/err.h>
21 #include <linux/init.h>
22 #include <linux/kernel.h>
23 #include <linux/module.h>
24 #include <linux/slab.h>
25 
26 struct gcm_instance_ctx {
27 	struct crypto_skcipher_spawn ctr;
28 	struct crypto_ahash_spawn ghash;
29 };
30 
31 struct crypto_gcm_ctx {
32 	struct crypto_ablkcipher *ctr;
33 	struct crypto_ahash *ghash;
34 };
35 
36 struct crypto_rfc4106_ctx {
37 	struct crypto_aead *child;
38 	u8 nonce[4];
39 };
40 
41 struct crypto_rfc4106_req_ctx {
42 	struct scatterlist src[3];
43 	struct scatterlist dst[3];
44 	struct aead_request subreq;
45 };
46 
47 struct crypto_rfc4543_instance_ctx {
48 	struct crypto_aead_spawn aead;
49 };
50 
51 struct crypto_rfc4543_ctx {
52 	struct crypto_aead *child;
53 	struct crypto_blkcipher *null;
54 	u8 nonce[4];
55 };
56 
57 struct crypto_rfc4543_req_ctx {
58 	struct aead_request subreq;
59 };
60 
61 struct crypto_gcm_ghash_ctx {
62 	unsigned int cryptlen;
63 	struct scatterlist *src;
64 	int (*complete)(struct aead_request *req, u32 flags);
65 };
66 
67 struct crypto_gcm_req_priv_ctx {
68 	u8 iv[16];
69 	u8 auth_tag[16];
70 	u8 iauth_tag[16];
71 	struct scatterlist src[3];
72 	struct scatterlist dst[3];
73 	struct scatterlist sg;
74 	struct crypto_gcm_ghash_ctx ghash_ctx;
75 	union {
76 		struct ahash_request ahreq;
77 		struct ablkcipher_request abreq;
78 	} u;
79 };
80 
81 struct crypto_gcm_setkey_result {
82 	int err;
83 	struct completion completion;
84 };
85 
86 static struct {
87 	u8 buf[16];
88 	struct scatterlist sg;
89 } *gcm_zeroes;
90 
91 static int crypto_rfc4543_copy_src_to_dst(struct aead_request *req, bool enc);
92 
crypto_gcm_reqctx(struct aead_request * req)93 static inline struct crypto_gcm_req_priv_ctx *crypto_gcm_reqctx(
94 	struct aead_request *req)
95 {
96 	unsigned long align = crypto_aead_alignmask(crypto_aead_reqtfm(req));
97 
98 	return (void *)PTR_ALIGN((u8 *)aead_request_ctx(req), align + 1);
99 }
100 
crypto_gcm_setkey_done(struct crypto_async_request * req,int err)101 static void crypto_gcm_setkey_done(struct crypto_async_request *req, int err)
102 {
103 	struct crypto_gcm_setkey_result *result = req->data;
104 
105 	if (err == -EINPROGRESS)
106 		return;
107 
108 	result->err = err;
109 	complete(&result->completion);
110 }
111 
crypto_gcm_setkey(struct crypto_aead * aead,const u8 * key,unsigned int keylen)112 static int crypto_gcm_setkey(struct crypto_aead *aead, const u8 *key,
113 			     unsigned int keylen)
114 {
115 	struct crypto_gcm_ctx *ctx = crypto_aead_ctx(aead);
116 	struct crypto_ahash *ghash = ctx->ghash;
117 	struct crypto_ablkcipher *ctr = ctx->ctr;
118 	struct {
119 		be128 hash;
120 		u8 iv[16];
121 
122 		struct crypto_gcm_setkey_result result;
123 
124 		struct scatterlist sg[1];
125 		struct ablkcipher_request req;
126 	} *data;
127 	int err;
128 
129 	crypto_ablkcipher_clear_flags(ctr, CRYPTO_TFM_REQ_MASK);
130 	crypto_ablkcipher_set_flags(ctr, crypto_aead_get_flags(aead) &
131 					 CRYPTO_TFM_REQ_MASK);
132 	err = crypto_ablkcipher_setkey(ctr, key, keylen);
133 	crypto_aead_set_flags(aead, crypto_ablkcipher_get_flags(ctr) &
134 				    CRYPTO_TFM_RES_MASK);
135 	if (err)
136 		return err;
137 
138 	data = kzalloc(sizeof(*data) + crypto_ablkcipher_reqsize(ctr),
139 		       GFP_KERNEL);
140 	if (!data)
141 		return -ENOMEM;
142 
143 	init_completion(&data->result.completion);
144 	sg_init_one(data->sg, &data->hash, sizeof(data->hash));
145 	ablkcipher_request_set_tfm(&data->req, ctr);
146 	ablkcipher_request_set_callback(&data->req, CRYPTO_TFM_REQ_MAY_SLEEP |
147 						    CRYPTO_TFM_REQ_MAY_BACKLOG,
148 					crypto_gcm_setkey_done,
149 					&data->result);
150 	ablkcipher_request_set_crypt(&data->req, data->sg, data->sg,
151 				     sizeof(data->hash), data->iv);
152 
153 	err = crypto_ablkcipher_encrypt(&data->req);
154 	if (err == -EINPROGRESS || err == -EBUSY) {
155 		wait_for_completion(&data->result.completion);
156 		err = data->result.err;
157 	}
158 
159 	if (err)
160 		goto out;
161 
162 	crypto_ahash_clear_flags(ghash, CRYPTO_TFM_REQ_MASK);
163 	crypto_ahash_set_flags(ghash, crypto_aead_get_flags(aead) &
164 			       CRYPTO_TFM_REQ_MASK);
165 	err = crypto_ahash_setkey(ghash, (u8 *)&data->hash, sizeof(be128));
166 	crypto_aead_set_flags(aead, crypto_ahash_get_flags(ghash) &
167 			      CRYPTO_TFM_RES_MASK);
168 
169 out:
170 	kzfree(data);
171 	return err;
172 }
173 
crypto_gcm_setauthsize(struct crypto_aead * tfm,unsigned int authsize)174 static int crypto_gcm_setauthsize(struct crypto_aead *tfm,
175 				  unsigned int authsize)
176 {
177 	switch (authsize) {
178 	case 4:
179 	case 8:
180 	case 12:
181 	case 13:
182 	case 14:
183 	case 15:
184 	case 16:
185 		break;
186 	default:
187 		return -EINVAL;
188 	}
189 
190 	return 0;
191 }
192 
crypto_gcm_init_common(struct aead_request * req)193 static void crypto_gcm_init_common(struct aead_request *req)
194 {
195 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
196 	__be32 counter = cpu_to_be32(1);
197 	struct scatterlist *sg;
198 
199 	memset(pctx->auth_tag, 0, sizeof(pctx->auth_tag));
200 	memcpy(pctx->iv, req->iv, 12);
201 	memcpy(pctx->iv + 12, &counter, 4);
202 
203 	sg_init_table(pctx->src, 3);
204 	sg_set_buf(pctx->src, pctx->auth_tag, sizeof(pctx->auth_tag));
205 	sg = scatterwalk_ffwd(pctx->src + 1, req->src, req->assoclen);
206 	if (sg != pctx->src + 1)
207 		sg_chain(pctx->src, 2, sg);
208 
209 	if (req->src != req->dst) {
210 		sg_init_table(pctx->dst, 3);
211 		sg_set_buf(pctx->dst, pctx->auth_tag, sizeof(pctx->auth_tag));
212 		sg = scatterwalk_ffwd(pctx->dst + 1, req->dst, req->assoclen);
213 		if (sg != pctx->dst + 1)
214 			sg_chain(pctx->dst, 2, sg);
215 	}
216 }
217 
crypto_gcm_init_crypt(struct aead_request * req,unsigned int cryptlen)218 static void crypto_gcm_init_crypt(struct aead_request *req,
219 				  unsigned int cryptlen)
220 {
221 	struct crypto_aead *aead = crypto_aead_reqtfm(req);
222 	struct crypto_gcm_ctx *ctx = crypto_aead_ctx(aead);
223 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
224 	struct ablkcipher_request *ablk_req = &pctx->u.abreq;
225 	struct scatterlist *dst;
226 
227 	dst = req->src == req->dst ? pctx->src : pctx->dst;
228 
229 	ablkcipher_request_set_tfm(ablk_req, ctx->ctr);
230 	ablkcipher_request_set_crypt(ablk_req, pctx->src, dst,
231 				     cryptlen + sizeof(pctx->auth_tag),
232 				     pctx->iv);
233 }
234 
gcm_remain(unsigned int len)235 static inline unsigned int gcm_remain(unsigned int len)
236 {
237 	len &= 0xfU;
238 	return len ? 16 - len : 0;
239 }
240 
241 static void gcm_hash_len_done(struct crypto_async_request *areq, int err);
242 
gcm_hash_update(struct aead_request * req,crypto_completion_t compl,struct scatterlist * src,unsigned int len,u32 flags)243 static int gcm_hash_update(struct aead_request *req,
244 			   crypto_completion_t compl,
245 			   struct scatterlist *src,
246 			   unsigned int len, u32 flags)
247 {
248 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
249 	struct ahash_request *ahreq = &pctx->u.ahreq;
250 
251 	ahash_request_set_callback(ahreq, flags, compl, req);
252 	ahash_request_set_crypt(ahreq, src, NULL, len);
253 
254 	return crypto_ahash_update(ahreq);
255 }
256 
gcm_hash_remain(struct aead_request * req,unsigned int remain,crypto_completion_t compl,u32 flags)257 static int gcm_hash_remain(struct aead_request *req,
258 			   unsigned int remain,
259 			   crypto_completion_t compl, u32 flags)
260 {
261 	return gcm_hash_update(req, compl, &gcm_zeroes->sg, remain, flags);
262 }
263 
gcm_hash_len(struct aead_request * req,u32 flags)264 static int gcm_hash_len(struct aead_request *req, u32 flags)
265 {
266 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
267 	struct ahash_request *ahreq = &pctx->u.ahreq;
268 	struct crypto_gcm_ghash_ctx *gctx = &pctx->ghash_ctx;
269 	u128 lengths;
270 
271 	lengths.a = cpu_to_be64(req->assoclen * 8);
272 	lengths.b = cpu_to_be64(gctx->cryptlen * 8);
273 	memcpy(pctx->iauth_tag, &lengths, 16);
274 	sg_init_one(&pctx->sg, pctx->iauth_tag, 16);
275 	ahash_request_set_callback(ahreq, flags, gcm_hash_len_done, req);
276 	ahash_request_set_crypt(ahreq, &pctx->sg,
277 				pctx->iauth_tag, sizeof(lengths));
278 
279 	return crypto_ahash_finup(ahreq);
280 }
281 
gcm_hash_len_continue(struct aead_request * req,u32 flags)282 static int gcm_hash_len_continue(struct aead_request *req, u32 flags)
283 {
284 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
285 	struct crypto_gcm_ghash_ctx *gctx = &pctx->ghash_ctx;
286 
287 	return gctx->complete(req, flags);
288 }
289 
gcm_hash_len_done(struct crypto_async_request * areq,int err)290 static void gcm_hash_len_done(struct crypto_async_request *areq, int err)
291 {
292 	struct aead_request *req = areq->data;
293 
294 	if (err)
295 		goto out;
296 
297 	err = gcm_hash_len_continue(req, 0);
298 	if (err == -EINPROGRESS)
299 		return;
300 
301 out:
302 	aead_request_complete(req, err);
303 }
304 
gcm_hash_crypt_remain_continue(struct aead_request * req,u32 flags)305 static int gcm_hash_crypt_remain_continue(struct aead_request *req, u32 flags)
306 {
307 	return gcm_hash_len(req, flags) ?:
308 	       gcm_hash_len_continue(req, flags);
309 }
310 
gcm_hash_crypt_remain_done(struct crypto_async_request * areq,int err)311 static void gcm_hash_crypt_remain_done(struct crypto_async_request *areq,
312 				       int err)
313 {
314 	struct aead_request *req = areq->data;
315 
316 	if (err)
317 		goto out;
318 
319 	err = gcm_hash_crypt_remain_continue(req, 0);
320 	if (err == -EINPROGRESS)
321 		return;
322 
323 out:
324 	aead_request_complete(req, err);
325 }
326 
gcm_hash_crypt_continue(struct aead_request * req,u32 flags)327 static int gcm_hash_crypt_continue(struct aead_request *req, u32 flags)
328 {
329 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
330 	struct crypto_gcm_ghash_ctx *gctx = &pctx->ghash_ctx;
331 	unsigned int remain;
332 
333 	remain = gcm_remain(gctx->cryptlen);
334 	if (remain)
335 		return gcm_hash_remain(req, remain,
336 				       gcm_hash_crypt_remain_done, flags) ?:
337 		       gcm_hash_crypt_remain_continue(req, flags);
338 
339 	return gcm_hash_crypt_remain_continue(req, flags);
340 }
341 
gcm_hash_crypt_done(struct crypto_async_request * areq,int err)342 static void gcm_hash_crypt_done(struct crypto_async_request *areq, int err)
343 {
344 	struct aead_request *req = areq->data;
345 
346 	if (err)
347 		goto out;
348 
349 	err = gcm_hash_crypt_continue(req, 0);
350 	if (err == -EINPROGRESS)
351 		return;
352 
353 out:
354 	aead_request_complete(req, err);
355 }
356 
gcm_hash_assoc_remain_continue(struct aead_request * req,u32 flags)357 static int gcm_hash_assoc_remain_continue(struct aead_request *req, u32 flags)
358 {
359 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
360 	struct crypto_gcm_ghash_ctx *gctx = &pctx->ghash_ctx;
361 
362 	if (gctx->cryptlen)
363 		return gcm_hash_update(req, gcm_hash_crypt_done,
364 				       gctx->src, gctx->cryptlen, flags) ?:
365 		       gcm_hash_crypt_continue(req, flags);
366 
367 	return gcm_hash_crypt_remain_continue(req, flags);
368 }
369 
gcm_hash_assoc_remain_done(struct crypto_async_request * areq,int err)370 static void gcm_hash_assoc_remain_done(struct crypto_async_request *areq,
371 				       int err)
372 {
373 	struct aead_request *req = areq->data;
374 
375 	if (err)
376 		goto out;
377 
378 	err = gcm_hash_assoc_remain_continue(req, 0);
379 	if (err == -EINPROGRESS)
380 		return;
381 
382 out:
383 	aead_request_complete(req, err);
384 }
385 
gcm_hash_assoc_continue(struct aead_request * req,u32 flags)386 static int gcm_hash_assoc_continue(struct aead_request *req, u32 flags)
387 {
388 	unsigned int remain;
389 
390 	remain = gcm_remain(req->assoclen);
391 	if (remain)
392 		return gcm_hash_remain(req, remain,
393 				       gcm_hash_assoc_remain_done, flags) ?:
394 		       gcm_hash_assoc_remain_continue(req, flags);
395 
396 	return gcm_hash_assoc_remain_continue(req, flags);
397 }
398 
gcm_hash_assoc_done(struct crypto_async_request * areq,int err)399 static void gcm_hash_assoc_done(struct crypto_async_request *areq, int err)
400 {
401 	struct aead_request *req = areq->data;
402 
403 	if (err)
404 		goto out;
405 
406 	err = gcm_hash_assoc_continue(req, 0);
407 	if (err == -EINPROGRESS)
408 		return;
409 
410 out:
411 	aead_request_complete(req, err);
412 }
413 
gcm_hash_init_continue(struct aead_request * req,u32 flags)414 static int gcm_hash_init_continue(struct aead_request *req, u32 flags)
415 {
416 	if (req->assoclen)
417 		return gcm_hash_update(req, gcm_hash_assoc_done,
418 				       req->src, req->assoclen, flags) ?:
419 		       gcm_hash_assoc_continue(req, flags);
420 
421 	return gcm_hash_assoc_remain_continue(req, flags);
422 }
423 
gcm_hash_init_done(struct crypto_async_request * areq,int err)424 static void gcm_hash_init_done(struct crypto_async_request *areq, int err)
425 {
426 	struct aead_request *req = areq->data;
427 
428 	if (err)
429 		goto out;
430 
431 	err = gcm_hash_init_continue(req, 0);
432 	if (err == -EINPROGRESS)
433 		return;
434 
435 out:
436 	aead_request_complete(req, err);
437 }
438 
gcm_hash(struct aead_request * req,u32 flags)439 static int gcm_hash(struct aead_request *req, u32 flags)
440 {
441 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
442 	struct ahash_request *ahreq = &pctx->u.ahreq;
443 	struct crypto_gcm_ctx *ctx = crypto_aead_ctx(crypto_aead_reqtfm(req));
444 
445 	ahash_request_set_tfm(ahreq, ctx->ghash);
446 
447 	ahash_request_set_callback(ahreq, flags, gcm_hash_init_done, req);
448 	return crypto_ahash_init(ahreq) ?:
449 	       gcm_hash_init_continue(req, flags);
450 }
451 
gcm_enc_copy_hash(struct aead_request * req,u32 flags)452 static int gcm_enc_copy_hash(struct aead_request *req, u32 flags)
453 {
454 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
455 	struct crypto_aead *aead = crypto_aead_reqtfm(req);
456 	u8 *auth_tag = pctx->auth_tag;
457 
458 	crypto_xor(auth_tag, pctx->iauth_tag, 16);
459 	scatterwalk_map_and_copy(auth_tag, req->dst,
460 				 req->assoclen + req->cryptlen,
461 				 crypto_aead_authsize(aead), 1);
462 	return 0;
463 }
464 
gcm_encrypt_continue(struct aead_request * req,u32 flags)465 static int gcm_encrypt_continue(struct aead_request *req, u32 flags)
466 {
467 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
468 	struct crypto_gcm_ghash_ctx *gctx = &pctx->ghash_ctx;
469 
470 	gctx->src = sg_next(req->src == req->dst ? pctx->src : pctx->dst);
471 	gctx->cryptlen = req->cryptlen;
472 	gctx->complete = gcm_enc_copy_hash;
473 
474 	return gcm_hash(req, flags);
475 }
476 
gcm_encrypt_done(struct crypto_async_request * areq,int err)477 static void gcm_encrypt_done(struct crypto_async_request *areq, int err)
478 {
479 	struct aead_request *req = areq->data;
480 
481 	if (err)
482 		goto out;
483 
484 	err = gcm_encrypt_continue(req, 0);
485 	if (err == -EINPROGRESS)
486 		return;
487 
488 out:
489 	aead_request_complete(req, err);
490 }
491 
crypto_gcm_encrypt(struct aead_request * req)492 static int crypto_gcm_encrypt(struct aead_request *req)
493 {
494 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
495 	struct ablkcipher_request *abreq = &pctx->u.abreq;
496 	u32 flags = aead_request_flags(req);
497 
498 	crypto_gcm_init_common(req);
499 	crypto_gcm_init_crypt(req, req->cryptlen);
500 	ablkcipher_request_set_callback(abreq, flags, gcm_encrypt_done, req);
501 
502 	return crypto_ablkcipher_encrypt(abreq) ?:
503 	       gcm_encrypt_continue(req, flags);
504 }
505 
crypto_gcm_verify(struct aead_request * req)506 static int crypto_gcm_verify(struct aead_request *req)
507 {
508 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
509 	struct crypto_aead *aead = crypto_aead_reqtfm(req);
510 	u8 *auth_tag = pctx->auth_tag;
511 	u8 *iauth_tag = pctx->iauth_tag;
512 	unsigned int authsize = crypto_aead_authsize(aead);
513 	unsigned int cryptlen = req->cryptlen - authsize;
514 
515 	crypto_xor(auth_tag, iauth_tag, 16);
516 	scatterwalk_map_and_copy(iauth_tag, req->src,
517 				 req->assoclen + cryptlen, authsize, 0);
518 	return crypto_memneq(iauth_tag, auth_tag, authsize) ? -EBADMSG : 0;
519 }
520 
gcm_decrypt_done(struct crypto_async_request * areq,int err)521 static void gcm_decrypt_done(struct crypto_async_request *areq, int err)
522 {
523 	struct aead_request *req = areq->data;
524 
525 	if (!err)
526 		err = crypto_gcm_verify(req);
527 
528 	aead_request_complete(req, err);
529 }
530 
gcm_dec_hash_continue(struct aead_request * req,u32 flags)531 static int gcm_dec_hash_continue(struct aead_request *req, u32 flags)
532 {
533 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
534 	struct ablkcipher_request *abreq = &pctx->u.abreq;
535 	struct crypto_gcm_ghash_ctx *gctx = &pctx->ghash_ctx;
536 
537 	crypto_gcm_init_crypt(req, gctx->cryptlen);
538 	ablkcipher_request_set_callback(abreq, flags, gcm_decrypt_done, req);
539 	return crypto_ablkcipher_decrypt(abreq) ?: crypto_gcm_verify(req);
540 }
541 
crypto_gcm_decrypt(struct aead_request * req)542 static int crypto_gcm_decrypt(struct aead_request *req)
543 {
544 	struct crypto_aead *aead = crypto_aead_reqtfm(req);
545 	struct crypto_gcm_req_priv_ctx *pctx = crypto_gcm_reqctx(req);
546 	struct crypto_gcm_ghash_ctx *gctx = &pctx->ghash_ctx;
547 	unsigned int authsize = crypto_aead_authsize(aead);
548 	unsigned int cryptlen = req->cryptlen;
549 	u32 flags = aead_request_flags(req);
550 
551 	cryptlen -= authsize;
552 
553 	crypto_gcm_init_common(req);
554 
555 	gctx->src = sg_next(pctx->src);
556 	gctx->cryptlen = cryptlen;
557 	gctx->complete = gcm_dec_hash_continue;
558 
559 	return gcm_hash(req, flags);
560 }
561 
crypto_gcm_init_tfm(struct crypto_aead * tfm)562 static int crypto_gcm_init_tfm(struct crypto_aead *tfm)
563 {
564 	struct aead_instance *inst = aead_alg_instance(tfm);
565 	struct gcm_instance_ctx *ictx = aead_instance_ctx(inst);
566 	struct crypto_gcm_ctx *ctx = crypto_aead_ctx(tfm);
567 	struct crypto_ablkcipher *ctr;
568 	struct crypto_ahash *ghash;
569 	unsigned long align;
570 	int err;
571 
572 	ghash = crypto_spawn_ahash(&ictx->ghash);
573 	if (IS_ERR(ghash))
574 		return PTR_ERR(ghash);
575 
576 	ctr = crypto_spawn_skcipher(&ictx->ctr);
577 	err = PTR_ERR(ctr);
578 	if (IS_ERR(ctr))
579 		goto err_free_hash;
580 
581 	ctx->ctr = ctr;
582 	ctx->ghash = ghash;
583 
584 	align = crypto_aead_alignmask(tfm);
585 	align &= ~(crypto_tfm_ctx_alignment() - 1);
586 	crypto_aead_set_reqsize(tfm,
587 		align + offsetof(struct crypto_gcm_req_priv_ctx, u) +
588 		max(sizeof(struct ablkcipher_request) +
589 		    crypto_ablkcipher_reqsize(ctr),
590 		    sizeof(struct ahash_request) +
591 		    crypto_ahash_reqsize(ghash)));
592 
593 	return 0;
594 
595 err_free_hash:
596 	crypto_free_ahash(ghash);
597 	return err;
598 }
599 
crypto_gcm_exit_tfm(struct crypto_aead * tfm)600 static void crypto_gcm_exit_tfm(struct crypto_aead *tfm)
601 {
602 	struct crypto_gcm_ctx *ctx = crypto_aead_ctx(tfm);
603 
604 	crypto_free_ahash(ctx->ghash);
605 	crypto_free_ablkcipher(ctx->ctr);
606 }
607 
crypto_gcm_free(struct aead_instance * inst)608 static void crypto_gcm_free(struct aead_instance *inst)
609 {
610 	struct gcm_instance_ctx *ctx = aead_instance_ctx(inst);
611 
612 	crypto_drop_skcipher(&ctx->ctr);
613 	crypto_drop_ahash(&ctx->ghash);
614 	kfree(inst);
615 }
616 
crypto_gcm_create_common(struct crypto_template * tmpl,struct rtattr ** tb,const char * ctr_name,const char * ghash_name)617 static int crypto_gcm_create_common(struct crypto_template *tmpl,
618 				    struct rtattr **tb,
619 				    const char *ctr_name,
620 				    const char *ghash_name)
621 {
622 	struct crypto_attr_type *algt;
623 	struct aead_instance *inst;
624 	struct crypto_alg *ctr;
625 	struct crypto_alg *ghash_alg;
626 	struct hash_alg_common *ghash;
627 	struct gcm_instance_ctx *ctx;
628 	int err;
629 
630 	algt = crypto_get_attr_type(tb);
631 	if (IS_ERR(algt))
632 		return PTR_ERR(algt);
633 
634 	if ((algt->type ^ CRYPTO_ALG_TYPE_AEAD) & algt->mask)
635 		return -EINVAL;
636 
637 	ghash_alg = crypto_find_alg(ghash_name, &crypto_ahash_type,
638 				    CRYPTO_ALG_TYPE_HASH,
639 				    CRYPTO_ALG_TYPE_AHASH_MASK |
640 				    crypto_requires_sync(algt->type,
641 							 algt->mask));
642 	if (IS_ERR(ghash_alg))
643 		return PTR_ERR(ghash_alg);
644 
645 	ghash = __crypto_hash_alg_common(ghash_alg);
646 
647 	err = -ENOMEM;
648 	inst = kzalloc(sizeof(*inst) + sizeof(*ctx), GFP_KERNEL);
649 	if (!inst)
650 		goto out_put_ghash;
651 
652 	ctx = aead_instance_ctx(inst);
653 	err = crypto_init_ahash_spawn(&ctx->ghash, ghash,
654 				      aead_crypto_instance(inst));
655 	if (err)
656 		goto err_free_inst;
657 
658 	err = -EINVAL;
659 	if (strcmp(ghash->base.cra_name, "ghash") != 0 ||
660 	    ghash->digestsize != 16)
661 		goto err_drop_ghash;
662 
663 	crypto_set_skcipher_spawn(&ctx->ctr, aead_crypto_instance(inst));
664 	err = crypto_grab_skcipher(&ctx->ctr, ctr_name, 0,
665 				   crypto_requires_sync(algt->type,
666 							algt->mask));
667 	if (err)
668 		goto err_drop_ghash;
669 
670 	ctr = crypto_skcipher_spawn_alg(&ctx->ctr);
671 
672 	/* The skcipher algorithm must be CTR mode, using 16-byte blocks. */
673 	err = -EINVAL;
674 	if (strncmp(ctr->cra_name, "ctr(", 4) != 0 ||
675 	    ctr->cra_ablkcipher.ivsize != 16 ||
676 	    ctr->cra_blocksize != 1)
677 		goto out_put_ctr;
678 
679 	err = -ENAMETOOLONG;
680 	if (snprintf(inst->alg.base.cra_name, CRYPTO_MAX_ALG_NAME,
681 		     "gcm(%s", ctr->cra_name + 4) >= CRYPTO_MAX_ALG_NAME)
682 		goto out_put_ctr;
683 
684 	if (snprintf(inst->alg.base.cra_driver_name, CRYPTO_MAX_ALG_NAME,
685 		     "gcm_base(%s,%s)", ctr->cra_driver_name,
686 		     ghash_alg->cra_driver_name) >=
687 	    CRYPTO_MAX_ALG_NAME)
688 		goto out_put_ctr;
689 
690 	inst->alg.base.cra_flags = (ghash->base.cra_flags | ctr->cra_flags) &
691 				   CRYPTO_ALG_ASYNC;
692 	inst->alg.base.cra_priority = (ghash->base.cra_priority +
693 				       ctr->cra_priority) / 2;
694 	inst->alg.base.cra_blocksize = 1;
695 	inst->alg.base.cra_alignmask = ghash->base.cra_alignmask |
696 				       ctr->cra_alignmask;
697 	inst->alg.base.cra_ctxsize = sizeof(struct crypto_gcm_ctx);
698 	inst->alg.ivsize = 12;
699 	inst->alg.maxauthsize = 16;
700 	inst->alg.init = crypto_gcm_init_tfm;
701 	inst->alg.exit = crypto_gcm_exit_tfm;
702 	inst->alg.setkey = crypto_gcm_setkey;
703 	inst->alg.setauthsize = crypto_gcm_setauthsize;
704 	inst->alg.encrypt = crypto_gcm_encrypt;
705 	inst->alg.decrypt = crypto_gcm_decrypt;
706 
707 	inst->free = crypto_gcm_free;
708 
709 	err = aead_register_instance(tmpl, inst);
710 	if (err)
711 		goto out_put_ctr;
712 
713 out_put_ghash:
714 	crypto_mod_put(ghash_alg);
715 	return err;
716 
717 out_put_ctr:
718 	crypto_drop_skcipher(&ctx->ctr);
719 err_drop_ghash:
720 	crypto_drop_ahash(&ctx->ghash);
721 err_free_inst:
722 	kfree(inst);
723 	goto out_put_ghash;
724 }
725 
crypto_gcm_create(struct crypto_template * tmpl,struct rtattr ** tb)726 static int crypto_gcm_create(struct crypto_template *tmpl, struct rtattr **tb)
727 {
728 	const char *cipher_name;
729 	char ctr_name[CRYPTO_MAX_ALG_NAME];
730 
731 	cipher_name = crypto_attr_alg_name(tb[1]);
732 	if (IS_ERR(cipher_name))
733 		return PTR_ERR(cipher_name);
734 
735 	if (snprintf(ctr_name, CRYPTO_MAX_ALG_NAME, "ctr(%s)", cipher_name) >=
736 	    CRYPTO_MAX_ALG_NAME)
737 		return -ENAMETOOLONG;
738 
739 	return crypto_gcm_create_common(tmpl, tb, ctr_name, "ghash");
740 }
741 
742 static struct crypto_template crypto_gcm_tmpl = {
743 	.name = "gcm",
744 	.create = crypto_gcm_create,
745 	.module = THIS_MODULE,
746 };
747 
crypto_gcm_base_create(struct crypto_template * tmpl,struct rtattr ** tb)748 static int crypto_gcm_base_create(struct crypto_template *tmpl,
749 				  struct rtattr **tb)
750 {
751 	const char *ctr_name;
752 	const char *ghash_name;
753 
754 	ctr_name = crypto_attr_alg_name(tb[1]);
755 	if (IS_ERR(ctr_name))
756 		return PTR_ERR(ctr_name);
757 
758 	ghash_name = crypto_attr_alg_name(tb[2]);
759 	if (IS_ERR(ghash_name))
760 		return PTR_ERR(ghash_name);
761 
762 	return crypto_gcm_create_common(tmpl, tb, ctr_name, ghash_name);
763 }
764 
765 static struct crypto_template crypto_gcm_base_tmpl = {
766 	.name = "gcm_base",
767 	.create = crypto_gcm_base_create,
768 	.module = THIS_MODULE,
769 };
770 
crypto_rfc4106_setkey(struct crypto_aead * parent,const u8 * key,unsigned int keylen)771 static int crypto_rfc4106_setkey(struct crypto_aead *parent, const u8 *key,
772 				 unsigned int keylen)
773 {
774 	struct crypto_rfc4106_ctx *ctx = crypto_aead_ctx(parent);
775 	struct crypto_aead *child = ctx->child;
776 	int err;
777 
778 	if (keylen < 4)
779 		return -EINVAL;
780 
781 	keylen -= 4;
782 	memcpy(ctx->nonce, key + keylen, 4);
783 
784 	crypto_aead_clear_flags(child, CRYPTO_TFM_REQ_MASK);
785 	crypto_aead_set_flags(child, crypto_aead_get_flags(parent) &
786 				     CRYPTO_TFM_REQ_MASK);
787 	err = crypto_aead_setkey(child, key, keylen);
788 	crypto_aead_set_flags(parent, crypto_aead_get_flags(child) &
789 				      CRYPTO_TFM_RES_MASK);
790 
791 	return err;
792 }
793 
crypto_rfc4106_setauthsize(struct crypto_aead * parent,unsigned int authsize)794 static int crypto_rfc4106_setauthsize(struct crypto_aead *parent,
795 				      unsigned int authsize)
796 {
797 	struct crypto_rfc4106_ctx *ctx = crypto_aead_ctx(parent);
798 
799 	switch (authsize) {
800 	case 8:
801 	case 12:
802 	case 16:
803 		break;
804 	default:
805 		return -EINVAL;
806 	}
807 
808 	return crypto_aead_setauthsize(ctx->child, authsize);
809 }
810 
crypto_rfc4106_crypt(struct aead_request * req)811 static struct aead_request *crypto_rfc4106_crypt(struct aead_request *req)
812 {
813 	struct crypto_rfc4106_req_ctx *rctx = aead_request_ctx(req);
814 	struct crypto_aead *aead = crypto_aead_reqtfm(req);
815 	struct crypto_rfc4106_ctx *ctx = crypto_aead_ctx(aead);
816 	struct aead_request *subreq = &rctx->subreq;
817 	struct crypto_aead *child = ctx->child;
818 	struct scatterlist *sg;
819 	u8 *iv = PTR_ALIGN((u8 *)(subreq + 1) + crypto_aead_reqsize(child),
820 			   crypto_aead_alignmask(child) + 1);
821 
822 	scatterwalk_map_and_copy(iv + 12, req->src, 0, req->assoclen - 8, 0);
823 
824 	memcpy(iv, ctx->nonce, 4);
825 	memcpy(iv + 4, req->iv, 8);
826 
827 	sg_init_table(rctx->src, 3);
828 	sg_set_buf(rctx->src, iv + 12, req->assoclen - 8);
829 	sg = scatterwalk_ffwd(rctx->src + 1, req->src, req->assoclen);
830 	if (sg != rctx->src + 1)
831 		sg_chain(rctx->src, 2, sg);
832 
833 	if (req->src != req->dst) {
834 		sg_init_table(rctx->dst, 3);
835 		sg_set_buf(rctx->dst, iv + 12, req->assoclen - 8);
836 		sg = scatterwalk_ffwd(rctx->dst + 1, req->dst, req->assoclen);
837 		if (sg != rctx->dst + 1)
838 			sg_chain(rctx->dst, 2, sg);
839 	}
840 
841 	aead_request_set_tfm(subreq, child);
842 	aead_request_set_callback(subreq, req->base.flags, req->base.complete,
843 				  req->base.data);
844 	aead_request_set_crypt(subreq, rctx->src,
845 			       req->src == req->dst ? rctx->src : rctx->dst,
846 			       req->cryptlen, iv);
847 	aead_request_set_ad(subreq, req->assoclen - 8);
848 
849 	return subreq;
850 }
851 
crypto_rfc4106_encrypt(struct aead_request * req)852 static int crypto_rfc4106_encrypt(struct aead_request *req)
853 {
854 	if (req->assoclen != 16 && req->assoclen != 20)
855 		return -EINVAL;
856 
857 	req = crypto_rfc4106_crypt(req);
858 
859 	return crypto_aead_encrypt(req);
860 }
861 
crypto_rfc4106_decrypt(struct aead_request * req)862 static int crypto_rfc4106_decrypt(struct aead_request *req)
863 {
864 	if (req->assoclen != 16 && req->assoclen != 20)
865 		return -EINVAL;
866 
867 	req = crypto_rfc4106_crypt(req);
868 
869 	return crypto_aead_decrypt(req);
870 }
871 
crypto_rfc4106_init_tfm(struct crypto_aead * tfm)872 static int crypto_rfc4106_init_tfm(struct crypto_aead *tfm)
873 {
874 	struct aead_instance *inst = aead_alg_instance(tfm);
875 	struct crypto_aead_spawn *spawn = aead_instance_ctx(inst);
876 	struct crypto_rfc4106_ctx *ctx = crypto_aead_ctx(tfm);
877 	struct crypto_aead *aead;
878 	unsigned long align;
879 
880 	aead = crypto_spawn_aead(spawn);
881 	if (IS_ERR(aead))
882 		return PTR_ERR(aead);
883 
884 	ctx->child = aead;
885 
886 	align = crypto_aead_alignmask(aead);
887 	align &= ~(crypto_tfm_ctx_alignment() - 1);
888 	crypto_aead_set_reqsize(
889 		tfm,
890 		sizeof(struct crypto_rfc4106_req_ctx) +
891 		ALIGN(crypto_aead_reqsize(aead), crypto_tfm_ctx_alignment()) +
892 		align + 24);
893 
894 	return 0;
895 }
896 
crypto_rfc4106_exit_tfm(struct crypto_aead * tfm)897 static void crypto_rfc4106_exit_tfm(struct crypto_aead *tfm)
898 {
899 	struct crypto_rfc4106_ctx *ctx = crypto_aead_ctx(tfm);
900 
901 	crypto_free_aead(ctx->child);
902 }
903 
crypto_rfc4106_free(struct aead_instance * inst)904 static void crypto_rfc4106_free(struct aead_instance *inst)
905 {
906 	crypto_drop_aead(aead_instance_ctx(inst));
907 	kfree(inst);
908 }
909 
crypto_rfc4106_create(struct crypto_template * tmpl,struct rtattr ** tb)910 static int crypto_rfc4106_create(struct crypto_template *tmpl,
911 				 struct rtattr **tb)
912 {
913 	struct crypto_attr_type *algt;
914 	struct aead_instance *inst;
915 	struct crypto_aead_spawn *spawn;
916 	struct aead_alg *alg;
917 	const char *ccm_name;
918 	int err;
919 
920 	algt = crypto_get_attr_type(tb);
921 	if (IS_ERR(algt))
922 		return PTR_ERR(algt);
923 
924 	if ((algt->type ^ CRYPTO_ALG_TYPE_AEAD) & algt->mask)
925 		return -EINVAL;
926 
927 	ccm_name = crypto_attr_alg_name(tb[1]);
928 	if (IS_ERR(ccm_name))
929 		return PTR_ERR(ccm_name);
930 
931 	inst = kzalloc(sizeof(*inst) + sizeof(*spawn), GFP_KERNEL);
932 	if (!inst)
933 		return -ENOMEM;
934 
935 	spawn = aead_instance_ctx(inst);
936 	crypto_set_aead_spawn(spawn, aead_crypto_instance(inst));
937 	err = crypto_grab_aead(spawn, ccm_name, 0,
938 			       crypto_requires_sync(algt->type, algt->mask));
939 	if (err)
940 		goto out_free_inst;
941 
942 	alg = crypto_spawn_aead_alg(spawn);
943 
944 	err = -EINVAL;
945 
946 	/* Underlying IV size must be 12. */
947 	if (crypto_aead_alg_ivsize(alg) != 12)
948 		goto out_drop_alg;
949 
950 	/* Not a stream cipher? */
951 	if (alg->base.cra_blocksize != 1)
952 		goto out_drop_alg;
953 
954 	err = -ENAMETOOLONG;
955 	if (snprintf(inst->alg.base.cra_name, CRYPTO_MAX_ALG_NAME,
956 		     "rfc4106(%s)", alg->base.cra_name) >=
957 	    CRYPTO_MAX_ALG_NAME ||
958 	    snprintf(inst->alg.base.cra_driver_name, CRYPTO_MAX_ALG_NAME,
959 		     "rfc4106(%s)", alg->base.cra_driver_name) >=
960 	    CRYPTO_MAX_ALG_NAME)
961 		goto out_drop_alg;
962 
963 	inst->alg.base.cra_flags = alg->base.cra_flags & CRYPTO_ALG_ASYNC;
964 	inst->alg.base.cra_priority = alg->base.cra_priority;
965 	inst->alg.base.cra_blocksize = 1;
966 	inst->alg.base.cra_alignmask = alg->base.cra_alignmask;
967 
968 	inst->alg.base.cra_ctxsize = sizeof(struct crypto_rfc4106_ctx);
969 
970 	inst->alg.ivsize = 8;
971 	inst->alg.maxauthsize = crypto_aead_alg_maxauthsize(alg);
972 
973 	inst->alg.init = crypto_rfc4106_init_tfm;
974 	inst->alg.exit = crypto_rfc4106_exit_tfm;
975 
976 	inst->alg.setkey = crypto_rfc4106_setkey;
977 	inst->alg.setauthsize = crypto_rfc4106_setauthsize;
978 	inst->alg.encrypt = crypto_rfc4106_encrypt;
979 	inst->alg.decrypt = crypto_rfc4106_decrypt;
980 
981 	inst->free = crypto_rfc4106_free;
982 
983 	err = aead_register_instance(tmpl, inst);
984 	if (err)
985 		goto out_drop_alg;
986 
987 out:
988 	return err;
989 
990 out_drop_alg:
991 	crypto_drop_aead(spawn);
992 out_free_inst:
993 	kfree(inst);
994 	goto out;
995 }
996 
997 static struct crypto_template crypto_rfc4106_tmpl = {
998 	.name = "rfc4106",
999 	.create = crypto_rfc4106_create,
1000 	.module = THIS_MODULE,
1001 };
1002 
crypto_rfc4543_setkey(struct crypto_aead * parent,const u8 * key,unsigned int keylen)1003 static int crypto_rfc4543_setkey(struct crypto_aead *parent, const u8 *key,
1004 				 unsigned int keylen)
1005 {
1006 	struct crypto_rfc4543_ctx *ctx = crypto_aead_ctx(parent);
1007 	struct crypto_aead *child = ctx->child;
1008 	int err;
1009 
1010 	if (keylen < 4)
1011 		return -EINVAL;
1012 
1013 	keylen -= 4;
1014 	memcpy(ctx->nonce, key + keylen, 4);
1015 
1016 	crypto_aead_clear_flags(child, CRYPTO_TFM_REQ_MASK);
1017 	crypto_aead_set_flags(child, crypto_aead_get_flags(parent) &
1018 				     CRYPTO_TFM_REQ_MASK);
1019 	err = crypto_aead_setkey(child, key, keylen);
1020 	crypto_aead_set_flags(parent, crypto_aead_get_flags(child) &
1021 				      CRYPTO_TFM_RES_MASK);
1022 
1023 	return err;
1024 }
1025 
crypto_rfc4543_setauthsize(struct crypto_aead * parent,unsigned int authsize)1026 static int crypto_rfc4543_setauthsize(struct crypto_aead *parent,
1027 				      unsigned int authsize)
1028 {
1029 	struct crypto_rfc4543_ctx *ctx = crypto_aead_ctx(parent);
1030 
1031 	if (authsize != 16)
1032 		return -EINVAL;
1033 
1034 	return crypto_aead_setauthsize(ctx->child, authsize);
1035 }
1036 
crypto_rfc4543_crypt(struct aead_request * req,bool enc)1037 static int crypto_rfc4543_crypt(struct aead_request *req, bool enc)
1038 {
1039 	struct crypto_aead *aead = crypto_aead_reqtfm(req);
1040 	struct crypto_rfc4543_ctx *ctx = crypto_aead_ctx(aead);
1041 	struct crypto_rfc4543_req_ctx *rctx = aead_request_ctx(req);
1042 	struct aead_request *subreq = &rctx->subreq;
1043 	unsigned int authsize = crypto_aead_authsize(aead);
1044 	u8 *iv = PTR_ALIGN((u8 *)(rctx + 1) + crypto_aead_reqsize(ctx->child),
1045 			   crypto_aead_alignmask(ctx->child) + 1);
1046 	int err;
1047 
1048 	if (req->src != req->dst) {
1049 		err = crypto_rfc4543_copy_src_to_dst(req, enc);
1050 		if (err)
1051 			return err;
1052 	}
1053 
1054 	memcpy(iv, ctx->nonce, 4);
1055 	memcpy(iv + 4, req->iv, 8);
1056 
1057 	aead_request_set_tfm(subreq, ctx->child);
1058 	aead_request_set_callback(subreq, req->base.flags,
1059 				  req->base.complete, req->base.data);
1060 	aead_request_set_crypt(subreq, req->src, req->dst,
1061 			       enc ? 0 : authsize, iv);
1062 	aead_request_set_ad(subreq, req->assoclen + req->cryptlen -
1063 				    subreq->cryptlen);
1064 
1065 	return enc ? crypto_aead_encrypt(subreq) : crypto_aead_decrypt(subreq);
1066 }
1067 
crypto_rfc4543_copy_src_to_dst(struct aead_request * req,bool enc)1068 static int crypto_rfc4543_copy_src_to_dst(struct aead_request *req, bool enc)
1069 {
1070 	struct crypto_aead *aead = crypto_aead_reqtfm(req);
1071 	struct crypto_rfc4543_ctx *ctx = crypto_aead_ctx(aead);
1072 	unsigned int authsize = crypto_aead_authsize(aead);
1073 	unsigned int nbytes = req->assoclen + req->cryptlen -
1074 			      (enc ? 0 : authsize);
1075 	struct blkcipher_desc desc = {
1076 		.tfm = ctx->null,
1077 	};
1078 
1079 	return crypto_blkcipher_encrypt(&desc, req->dst, req->src, nbytes);
1080 }
1081 
crypto_rfc4543_encrypt(struct aead_request * req)1082 static int crypto_rfc4543_encrypt(struct aead_request *req)
1083 {
1084 	return crypto_rfc4543_crypt(req, true);
1085 }
1086 
crypto_rfc4543_decrypt(struct aead_request * req)1087 static int crypto_rfc4543_decrypt(struct aead_request *req)
1088 {
1089 	return crypto_rfc4543_crypt(req, false);
1090 }
1091 
crypto_rfc4543_init_tfm(struct crypto_aead * tfm)1092 static int crypto_rfc4543_init_tfm(struct crypto_aead *tfm)
1093 {
1094 	struct aead_instance *inst = aead_alg_instance(tfm);
1095 	struct crypto_rfc4543_instance_ctx *ictx = aead_instance_ctx(inst);
1096 	struct crypto_aead_spawn *spawn = &ictx->aead;
1097 	struct crypto_rfc4543_ctx *ctx = crypto_aead_ctx(tfm);
1098 	struct crypto_aead *aead;
1099 	struct crypto_blkcipher *null;
1100 	unsigned long align;
1101 	int err = 0;
1102 
1103 	aead = crypto_spawn_aead(spawn);
1104 	if (IS_ERR(aead))
1105 		return PTR_ERR(aead);
1106 
1107 	null = crypto_get_default_null_skcipher();
1108 	err = PTR_ERR(null);
1109 	if (IS_ERR(null))
1110 		goto err_free_aead;
1111 
1112 	ctx->child = aead;
1113 	ctx->null = null;
1114 
1115 	align = crypto_aead_alignmask(aead);
1116 	align &= ~(crypto_tfm_ctx_alignment() - 1);
1117 	crypto_aead_set_reqsize(
1118 		tfm,
1119 		sizeof(struct crypto_rfc4543_req_ctx) +
1120 		ALIGN(crypto_aead_reqsize(aead), crypto_tfm_ctx_alignment()) +
1121 		align + 12);
1122 
1123 	return 0;
1124 
1125 err_free_aead:
1126 	crypto_free_aead(aead);
1127 	return err;
1128 }
1129 
crypto_rfc4543_exit_tfm(struct crypto_aead * tfm)1130 static void crypto_rfc4543_exit_tfm(struct crypto_aead *tfm)
1131 {
1132 	struct crypto_rfc4543_ctx *ctx = crypto_aead_ctx(tfm);
1133 
1134 	crypto_free_aead(ctx->child);
1135 	crypto_put_default_null_skcipher();
1136 }
1137 
crypto_rfc4543_free(struct aead_instance * inst)1138 static void crypto_rfc4543_free(struct aead_instance *inst)
1139 {
1140 	struct crypto_rfc4543_instance_ctx *ctx = aead_instance_ctx(inst);
1141 
1142 	crypto_drop_aead(&ctx->aead);
1143 
1144 	kfree(inst);
1145 }
1146 
crypto_rfc4543_create(struct crypto_template * tmpl,struct rtattr ** tb)1147 static int crypto_rfc4543_create(struct crypto_template *tmpl,
1148 				struct rtattr **tb)
1149 {
1150 	struct crypto_attr_type *algt;
1151 	struct aead_instance *inst;
1152 	struct crypto_aead_spawn *spawn;
1153 	struct aead_alg *alg;
1154 	struct crypto_rfc4543_instance_ctx *ctx;
1155 	const char *ccm_name;
1156 	int err;
1157 
1158 	algt = crypto_get_attr_type(tb);
1159 	if (IS_ERR(algt))
1160 		return PTR_ERR(algt);
1161 
1162 	if ((algt->type ^ CRYPTO_ALG_TYPE_AEAD) & algt->mask)
1163 		return -EINVAL;
1164 
1165 	ccm_name = crypto_attr_alg_name(tb[1]);
1166 	if (IS_ERR(ccm_name))
1167 		return PTR_ERR(ccm_name);
1168 
1169 	inst = kzalloc(sizeof(*inst) + sizeof(*ctx), GFP_KERNEL);
1170 	if (!inst)
1171 		return -ENOMEM;
1172 
1173 	ctx = aead_instance_ctx(inst);
1174 	spawn = &ctx->aead;
1175 	crypto_set_aead_spawn(spawn, aead_crypto_instance(inst));
1176 	err = crypto_grab_aead(spawn, ccm_name, 0,
1177 			       crypto_requires_sync(algt->type, algt->mask));
1178 	if (err)
1179 		goto out_free_inst;
1180 
1181 	alg = crypto_spawn_aead_alg(spawn);
1182 
1183 	err = -EINVAL;
1184 
1185 	/* Underlying IV size must be 12. */
1186 	if (crypto_aead_alg_ivsize(alg) != 12)
1187 		goto out_drop_alg;
1188 
1189 	/* Not a stream cipher? */
1190 	if (alg->base.cra_blocksize != 1)
1191 		goto out_drop_alg;
1192 
1193 	err = -ENAMETOOLONG;
1194 	if (snprintf(inst->alg.base.cra_name, CRYPTO_MAX_ALG_NAME,
1195 		     "rfc4543(%s)", alg->base.cra_name) >=
1196 	    CRYPTO_MAX_ALG_NAME ||
1197 	    snprintf(inst->alg.base.cra_driver_name, CRYPTO_MAX_ALG_NAME,
1198 		     "rfc4543(%s)", alg->base.cra_driver_name) >=
1199 	    CRYPTO_MAX_ALG_NAME)
1200 		goto out_drop_alg;
1201 
1202 	inst->alg.base.cra_flags = alg->base.cra_flags & CRYPTO_ALG_ASYNC;
1203 	inst->alg.base.cra_priority = alg->base.cra_priority;
1204 	inst->alg.base.cra_blocksize = 1;
1205 	inst->alg.base.cra_alignmask = alg->base.cra_alignmask;
1206 
1207 	inst->alg.base.cra_ctxsize = sizeof(struct crypto_rfc4543_ctx);
1208 
1209 	inst->alg.ivsize = 8;
1210 	inst->alg.maxauthsize = crypto_aead_alg_maxauthsize(alg);
1211 
1212 	inst->alg.init = crypto_rfc4543_init_tfm;
1213 	inst->alg.exit = crypto_rfc4543_exit_tfm;
1214 
1215 	inst->alg.setkey = crypto_rfc4543_setkey;
1216 	inst->alg.setauthsize = crypto_rfc4543_setauthsize;
1217 	inst->alg.encrypt = crypto_rfc4543_encrypt;
1218 	inst->alg.decrypt = crypto_rfc4543_decrypt;
1219 
1220 	inst->free = crypto_rfc4543_free,
1221 
1222 	err = aead_register_instance(tmpl, inst);
1223 	if (err)
1224 		goto out_drop_alg;
1225 
1226 out:
1227 	return err;
1228 
1229 out_drop_alg:
1230 	crypto_drop_aead(spawn);
1231 out_free_inst:
1232 	kfree(inst);
1233 	goto out;
1234 }
1235 
1236 static struct crypto_template crypto_rfc4543_tmpl = {
1237 	.name = "rfc4543",
1238 	.create = crypto_rfc4543_create,
1239 	.module = THIS_MODULE,
1240 };
1241 
crypto_gcm_module_init(void)1242 static int __init crypto_gcm_module_init(void)
1243 {
1244 	int err;
1245 
1246 	gcm_zeroes = kzalloc(sizeof(*gcm_zeroes), GFP_KERNEL);
1247 	if (!gcm_zeroes)
1248 		return -ENOMEM;
1249 
1250 	sg_init_one(&gcm_zeroes->sg, gcm_zeroes->buf, sizeof(gcm_zeroes->buf));
1251 
1252 	err = crypto_register_template(&crypto_gcm_base_tmpl);
1253 	if (err)
1254 		goto out;
1255 
1256 	err = crypto_register_template(&crypto_gcm_tmpl);
1257 	if (err)
1258 		goto out_undo_base;
1259 
1260 	err = crypto_register_template(&crypto_rfc4106_tmpl);
1261 	if (err)
1262 		goto out_undo_gcm;
1263 
1264 	err = crypto_register_template(&crypto_rfc4543_tmpl);
1265 	if (err)
1266 		goto out_undo_rfc4106;
1267 
1268 	return 0;
1269 
1270 out_undo_rfc4106:
1271 	crypto_unregister_template(&crypto_rfc4106_tmpl);
1272 out_undo_gcm:
1273 	crypto_unregister_template(&crypto_gcm_tmpl);
1274 out_undo_base:
1275 	crypto_unregister_template(&crypto_gcm_base_tmpl);
1276 out:
1277 	kfree(gcm_zeroes);
1278 	return err;
1279 }
1280 
crypto_gcm_module_exit(void)1281 static void __exit crypto_gcm_module_exit(void)
1282 {
1283 	kfree(gcm_zeroes);
1284 	crypto_unregister_template(&crypto_rfc4543_tmpl);
1285 	crypto_unregister_template(&crypto_rfc4106_tmpl);
1286 	crypto_unregister_template(&crypto_gcm_tmpl);
1287 	crypto_unregister_template(&crypto_gcm_base_tmpl);
1288 }
1289 
1290 module_init(crypto_gcm_module_init);
1291 module_exit(crypto_gcm_module_exit);
1292 
1293 MODULE_LICENSE("GPL");
1294 MODULE_DESCRIPTION("Galois/Counter Mode");
1295 MODULE_AUTHOR("Mikko Herranen <mh1@iki.fi>");
1296 MODULE_ALIAS_CRYPTO("gcm_base");
1297 MODULE_ALIAS_CRYPTO("rfc4106");
1298 MODULE_ALIAS_CRYPTO("rfc4543");
1299 MODULE_ALIAS_CRYPTO("gcm");
1300