authencesn.c 14 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. * authencesn.c - AEAD wrapper for IPsec with extended sequence numbers,
  4. * derived from authenc.c
  5. *
  6. * Copyright (C) 2010 secunet Security Networks AG
  7. * Copyright (C) 2010 Steffen Klassert <steffen.klassert@secunet.com>
  8. * Copyright (c) 2015 Herbert Xu <herbert@gondor.apana.org.au>
  9. */
  10. #include <crypto/internal/aead.h>
  11. #include <crypto/internal/hash.h>
  12. #include <crypto/internal/skcipher.h>
  13. #include <crypto/authenc.h>
  14. #include <crypto/null.h>
  15. #include <crypto/scatterwalk.h>
  16. #include <linux/err.h>
  17. #include <linux/init.h>
  18. #include <linux/kernel.h>
  19. #include <linux/module.h>
  20. #include <linux/rtnetlink.h>
  21. #include <linux/slab.h>
  22. #include <linux/spinlock.h>
  23. struct authenc_esn_instance_ctx {
  24. struct crypto_ahash_spawn auth;
  25. struct crypto_skcipher_spawn enc;
  26. };
  27. struct crypto_authenc_esn_ctx {
  28. unsigned int reqoff;
  29. struct crypto_ahash *auth;
  30. struct crypto_skcipher *enc;
  31. struct crypto_sync_skcipher *null;
  32. };
  33. struct authenc_esn_request_ctx {
  34. struct scatterlist src[2];
  35. struct scatterlist dst[2];
  36. char tail[];
  37. };
  38. static void authenc_esn_request_complete(struct aead_request *req, int err)
  39. {
  40. if (err != -EINPROGRESS)
  41. aead_request_complete(req, err);
  42. }
  43. static int crypto_authenc_esn_setauthsize(struct crypto_aead *authenc_esn,
  44. unsigned int authsize)
  45. {
  46. if (authsize > 0 && authsize < 4)
  47. return -EINVAL;
  48. return 0;
  49. }
  50. static int crypto_authenc_esn_setkey(struct crypto_aead *authenc_esn, const u8 *key,
  51. unsigned int keylen)
  52. {
  53. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(authenc_esn);
  54. struct crypto_ahash *auth = ctx->auth;
  55. struct crypto_skcipher *enc = ctx->enc;
  56. struct crypto_authenc_keys keys;
  57. int err = -EINVAL;
  58. if (crypto_authenc_extractkeys(&keys, key, keylen) != 0)
  59. goto out;
  60. crypto_ahash_clear_flags(auth, CRYPTO_TFM_REQ_MASK);
  61. crypto_ahash_set_flags(auth, crypto_aead_get_flags(authenc_esn) &
  62. CRYPTO_TFM_REQ_MASK);
  63. err = crypto_ahash_setkey(auth, keys.authkey, keys.authkeylen);
  64. if (err)
  65. goto out;
  66. crypto_skcipher_clear_flags(enc, CRYPTO_TFM_REQ_MASK);
  67. crypto_skcipher_set_flags(enc, crypto_aead_get_flags(authenc_esn) &
  68. CRYPTO_TFM_REQ_MASK);
  69. err = crypto_skcipher_setkey(enc, keys.enckey, keys.enckeylen);
  70. out:
  71. memzero_explicit(&keys, sizeof(keys));
  72. return err;
  73. }
  74. static int crypto_authenc_esn_genicv_tail(struct aead_request *req,
  75. unsigned int flags)
  76. {
  77. struct crypto_aead *authenc_esn = crypto_aead_reqtfm(req);
  78. struct authenc_esn_request_ctx *areq_ctx = aead_request_ctx(req);
  79. u8 *hash = areq_ctx->tail;
  80. unsigned int authsize = crypto_aead_authsize(authenc_esn);
  81. unsigned int assoclen = req->assoclen;
  82. unsigned int cryptlen = req->cryptlen;
  83. struct scatterlist *dst = req->dst;
  84. u32 tmp[2];
  85. /* Move high-order bits of sequence number back. */
  86. scatterwalk_map_and_copy(tmp, dst, 4, 4, 0);
  87. scatterwalk_map_and_copy(tmp + 1, dst, assoclen + cryptlen, 4, 0);
  88. scatterwalk_map_and_copy(tmp, dst, 0, 8, 1);
  89. scatterwalk_map_and_copy(hash, dst, assoclen + cryptlen, authsize, 1);
  90. return 0;
  91. }
  92. static void authenc_esn_geniv_ahash_done(void *data, int err)
  93. {
  94. struct aead_request *req = data;
  95. err = err ?: crypto_authenc_esn_genicv_tail(req, 0);
  96. aead_request_complete(req, err);
  97. }
  98. static int crypto_authenc_esn_genicv(struct aead_request *req,
  99. unsigned int flags)
  100. {
  101. struct crypto_aead *authenc_esn = crypto_aead_reqtfm(req);
  102. struct authenc_esn_request_ctx *areq_ctx = aead_request_ctx(req);
  103. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(authenc_esn);
  104. struct crypto_ahash *auth = ctx->auth;
  105. u8 *hash = areq_ctx->tail;
  106. struct ahash_request *ahreq = (void *)(areq_ctx->tail + ctx->reqoff);
  107. unsigned int authsize = crypto_aead_authsize(authenc_esn);
  108. unsigned int assoclen = req->assoclen;
  109. unsigned int cryptlen = req->cryptlen;
  110. struct scatterlist *dst = req->dst;
  111. u32 tmp[2];
  112. if (!authsize)
  113. return 0;
  114. /* Move high-order bits of sequence number to the end. */
  115. scatterwalk_map_and_copy(tmp, dst, 0, 8, 0);
  116. scatterwalk_map_and_copy(tmp, dst, 4, 4, 1);
  117. scatterwalk_map_and_copy(tmp + 1, dst, assoclen + cryptlen, 4, 1);
  118. sg_init_table(areq_ctx->dst, 2);
  119. dst = scatterwalk_ffwd(areq_ctx->dst, dst, 4);
  120. ahash_request_set_tfm(ahreq, auth);
  121. ahash_request_set_crypt(ahreq, dst, hash, assoclen + cryptlen);
  122. ahash_request_set_callback(ahreq, flags,
  123. authenc_esn_geniv_ahash_done, req);
  124. return crypto_ahash_digest(ahreq) ?:
  125. crypto_authenc_esn_genicv_tail(req, aead_request_flags(req));
  126. }
  127. static void crypto_authenc_esn_encrypt_done(void *data, int err)
  128. {
  129. struct aead_request *areq = data;
  130. if (!err)
  131. err = crypto_authenc_esn_genicv(areq, 0);
  132. authenc_esn_request_complete(areq, err);
  133. }
  134. static int crypto_authenc_esn_copy(struct aead_request *req, unsigned int len)
  135. {
  136. struct crypto_aead *authenc_esn = crypto_aead_reqtfm(req);
  137. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(authenc_esn);
  138. SYNC_SKCIPHER_REQUEST_ON_STACK(skreq, ctx->null);
  139. skcipher_request_set_sync_tfm(skreq, ctx->null);
  140. skcipher_request_set_callback(skreq, aead_request_flags(req),
  141. NULL, NULL);
  142. skcipher_request_set_crypt(skreq, req->src, req->dst, len, NULL);
  143. return crypto_skcipher_encrypt(skreq);
  144. }
  145. static int crypto_authenc_esn_encrypt(struct aead_request *req)
  146. {
  147. struct crypto_aead *authenc_esn = crypto_aead_reqtfm(req);
  148. struct authenc_esn_request_ctx *areq_ctx = aead_request_ctx(req);
  149. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(authenc_esn);
  150. struct skcipher_request *skreq = (void *)(areq_ctx->tail +
  151. ctx->reqoff);
  152. struct crypto_skcipher *enc = ctx->enc;
  153. unsigned int assoclen = req->assoclen;
  154. unsigned int cryptlen = req->cryptlen;
  155. struct scatterlist *src, *dst;
  156. int err;
  157. sg_init_table(areq_ctx->src, 2);
  158. src = scatterwalk_ffwd(areq_ctx->src, req->src, assoclen);
  159. dst = src;
  160. if (req->src != req->dst) {
  161. err = crypto_authenc_esn_copy(req, assoclen);
  162. if (err)
  163. return err;
  164. sg_init_table(areq_ctx->dst, 2);
  165. dst = scatterwalk_ffwd(areq_ctx->dst, req->dst, assoclen);
  166. }
  167. skcipher_request_set_tfm(skreq, enc);
  168. skcipher_request_set_callback(skreq, aead_request_flags(req),
  169. crypto_authenc_esn_encrypt_done, req);
  170. skcipher_request_set_crypt(skreq, src, dst, cryptlen, req->iv);
  171. err = crypto_skcipher_encrypt(skreq);
  172. if (err)
  173. return err;
  174. return crypto_authenc_esn_genicv(req, aead_request_flags(req));
  175. }
  176. static int crypto_authenc_esn_decrypt_tail(struct aead_request *req,
  177. unsigned int flags)
  178. {
  179. struct crypto_aead *authenc_esn = crypto_aead_reqtfm(req);
  180. unsigned int authsize = crypto_aead_authsize(authenc_esn);
  181. struct authenc_esn_request_ctx *areq_ctx = aead_request_ctx(req);
  182. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(authenc_esn);
  183. struct skcipher_request *skreq = (void *)(areq_ctx->tail +
  184. ctx->reqoff);
  185. struct crypto_ahash *auth = ctx->auth;
  186. u8 *ohash = areq_ctx->tail;
  187. unsigned int cryptlen = req->cryptlen - authsize;
  188. unsigned int assoclen = req->assoclen;
  189. struct scatterlist *dst = req->dst;
  190. u8 *ihash = ohash + crypto_ahash_digestsize(auth);
  191. u32 tmp[2];
  192. if (!authsize)
  193. goto decrypt;
  194. /* Move high-order bits of sequence number back. */
  195. scatterwalk_map_and_copy(tmp, dst, 4, 4, 0);
  196. scatterwalk_map_and_copy(tmp + 1, dst, assoclen + cryptlen, 4, 0);
  197. scatterwalk_map_and_copy(tmp, dst, 0, 8, 1);
  198. if (crypto_memneq(ihash, ohash, authsize))
  199. return -EBADMSG;
  200. decrypt:
  201. sg_init_table(areq_ctx->dst, 2);
  202. dst = scatterwalk_ffwd(areq_ctx->dst, dst, assoclen);
  203. skcipher_request_set_tfm(skreq, ctx->enc);
  204. skcipher_request_set_callback(skreq, flags,
  205. req->base.complete, req->base.data);
  206. skcipher_request_set_crypt(skreq, dst, dst, cryptlen, req->iv);
  207. return crypto_skcipher_decrypt(skreq);
  208. }
  209. static void authenc_esn_verify_ahash_done(void *data, int err)
  210. {
  211. struct aead_request *req = data;
  212. err = err ?: crypto_authenc_esn_decrypt_tail(req, 0);
  213. authenc_esn_request_complete(req, err);
  214. }
  215. static int crypto_authenc_esn_decrypt(struct aead_request *req)
  216. {
  217. struct crypto_aead *authenc_esn = crypto_aead_reqtfm(req);
  218. struct authenc_esn_request_ctx *areq_ctx = aead_request_ctx(req);
  219. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(authenc_esn);
  220. struct ahash_request *ahreq = (void *)(areq_ctx->tail + ctx->reqoff);
  221. unsigned int authsize = crypto_aead_authsize(authenc_esn);
  222. struct crypto_ahash *auth = ctx->auth;
  223. u8 *ohash = areq_ctx->tail;
  224. unsigned int assoclen = req->assoclen;
  225. unsigned int cryptlen = req->cryptlen;
  226. u8 *ihash = ohash + crypto_ahash_digestsize(auth);
  227. struct scatterlist *dst = req->dst;
  228. u32 tmp[2];
  229. int err;
  230. cryptlen -= authsize;
  231. if (req->src != dst) {
  232. err = crypto_authenc_esn_copy(req, assoclen + cryptlen);
  233. if (err)
  234. return err;
  235. }
  236. scatterwalk_map_and_copy(ihash, req->src, assoclen + cryptlen,
  237. authsize, 0);
  238. if (!authsize)
  239. goto tail;
  240. /* Move high-order bits of sequence number to the end. */
  241. scatterwalk_map_and_copy(tmp, dst, 0, 8, 0);
  242. scatterwalk_map_and_copy(tmp, dst, 4, 4, 1);
  243. scatterwalk_map_and_copy(tmp + 1, dst, assoclen + cryptlen, 4, 1);
  244. sg_init_table(areq_ctx->dst, 2);
  245. dst = scatterwalk_ffwd(areq_ctx->dst, dst, 4);
  246. ahash_request_set_tfm(ahreq, auth);
  247. ahash_request_set_crypt(ahreq, dst, ohash, assoclen + cryptlen);
  248. ahash_request_set_callback(ahreq, aead_request_flags(req),
  249. authenc_esn_verify_ahash_done, req);
  250. err = crypto_ahash_digest(ahreq);
  251. if (err)
  252. return err;
  253. tail:
  254. return crypto_authenc_esn_decrypt_tail(req, aead_request_flags(req));
  255. }
  256. static int crypto_authenc_esn_init_tfm(struct crypto_aead *tfm)
  257. {
  258. struct aead_instance *inst = aead_alg_instance(tfm);
  259. struct authenc_esn_instance_ctx *ictx = aead_instance_ctx(inst);
  260. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(tfm);
  261. struct crypto_ahash *auth;
  262. struct crypto_skcipher *enc;
  263. struct crypto_sync_skcipher *null;
  264. int err;
  265. auth = crypto_spawn_ahash(&ictx->auth);
  266. if (IS_ERR(auth))
  267. return PTR_ERR(auth);
  268. enc = crypto_spawn_skcipher(&ictx->enc);
  269. err = PTR_ERR(enc);
  270. if (IS_ERR(enc))
  271. goto err_free_ahash;
  272. null = crypto_get_default_null_skcipher();
  273. err = PTR_ERR(null);
  274. if (IS_ERR(null))
  275. goto err_free_skcipher;
  276. ctx->auth = auth;
  277. ctx->enc = enc;
  278. ctx->null = null;
  279. ctx->reqoff = 2 * crypto_ahash_digestsize(auth);
  280. crypto_aead_set_reqsize(
  281. tfm,
  282. sizeof(struct authenc_esn_request_ctx) +
  283. ctx->reqoff +
  284. max_t(unsigned int,
  285. crypto_ahash_reqsize(auth) +
  286. sizeof(struct ahash_request),
  287. sizeof(struct skcipher_request) +
  288. crypto_skcipher_reqsize(enc)));
  289. return 0;
  290. err_free_skcipher:
  291. crypto_free_skcipher(enc);
  292. err_free_ahash:
  293. crypto_free_ahash(auth);
  294. return err;
  295. }
  296. static void crypto_authenc_esn_exit_tfm(struct crypto_aead *tfm)
  297. {
  298. struct crypto_authenc_esn_ctx *ctx = crypto_aead_ctx(tfm);
  299. crypto_free_ahash(ctx->auth);
  300. crypto_free_skcipher(ctx->enc);
  301. crypto_put_default_null_skcipher();
  302. }
  303. static void crypto_authenc_esn_free(struct aead_instance *inst)
  304. {
  305. struct authenc_esn_instance_ctx *ctx = aead_instance_ctx(inst);
  306. crypto_drop_skcipher(&ctx->enc);
  307. crypto_drop_ahash(&ctx->auth);
  308. kfree(inst);
  309. }
  310. static int crypto_authenc_esn_create(struct crypto_template *tmpl,
  311. struct rtattr **tb)
  312. {
  313. u32 mask;
  314. struct aead_instance *inst;
  315. struct authenc_esn_instance_ctx *ctx;
  316. struct skcipher_alg_common *enc;
  317. struct hash_alg_common *auth;
  318. struct crypto_alg *auth_base;
  319. int err;
  320. err = crypto_check_attr_type(tb, CRYPTO_ALG_TYPE_AEAD, &mask);
  321. if (err)
  322. return err;
  323. inst = kzalloc(sizeof(*inst) + sizeof(*ctx), GFP_KERNEL);
  324. if (!inst)
  325. return -ENOMEM;
  326. ctx = aead_instance_ctx(inst);
  327. err = crypto_grab_ahash(&ctx->auth, aead_crypto_instance(inst),
  328. crypto_attr_alg_name(tb[1]), 0, mask);
  329. if (err)
  330. goto err_free_inst;
  331. auth = crypto_spawn_ahash_alg(&ctx->auth);
  332. auth_base = &auth->base;
  333. err = crypto_grab_skcipher(&ctx->enc, aead_crypto_instance(inst),
  334. crypto_attr_alg_name(tb[2]), 0, mask);
  335. if (err)
  336. goto err_free_inst;
  337. enc = crypto_spawn_skcipher_alg_common(&ctx->enc);
  338. err = -ENAMETOOLONG;
  339. if (snprintf(inst->alg.base.cra_name, CRYPTO_MAX_ALG_NAME,
  340. "authencesn(%s,%s)", auth_base->cra_name,
  341. enc->base.cra_name) >= CRYPTO_MAX_ALG_NAME)
  342. goto err_free_inst;
  343. if (snprintf(inst->alg.base.cra_driver_name, CRYPTO_MAX_ALG_NAME,
  344. "authencesn(%s,%s)", auth_base->cra_driver_name,
  345. enc->base.cra_driver_name) >= CRYPTO_MAX_ALG_NAME)
  346. goto err_free_inst;
  347. inst->alg.base.cra_priority = enc->base.cra_priority * 10 +
  348. auth_base->cra_priority;
  349. inst->alg.base.cra_blocksize = enc->base.cra_blocksize;
  350. inst->alg.base.cra_alignmask = enc->base.cra_alignmask;
  351. inst->alg.base.cra_ctxsize = sizeof(struct crypto_authenc_esn_ctx);
  352. inst->alg.ivsize = enc->ivsize;
  353. inst->alg.chunksize = enc->chunksize;
  354. inst->alg.maxauthsize = auth->digestsize;
  355. inst->alg.init = crypto_authenc_esn_init_tfm;
  356. inst->alg.exit = crypto_authenc_esn_exit_tfm;
  357. inst->alg.setkey = crypto_authenc_esn_setkey;
  358. inst->alg.setauthsize = crypto_authenc_esn_setauthsize;
  359. inst->alg.encrypt = crypto_authenc_esn_encrypt;
  360. inst->alg.decrypt = crypto_authenc_esn_decrypt;
  361. inst->free = crypto_authenc_esn_free;
  362. err = aead_register_instance(tmpl, inst);
  363. if (err) {
  364. err_free_inst:
  365. crypto_authenc_esn_free(inst);
  366. }
  367. return err;
  368. }
  369. static struct crypto_template crypto_authenc_esn_tmpl = {
  370. .name = "authencesn",
  371. .create = crypto_authenc_esn_create,
  372. .module = THIS_MODULE,
  373. };
  374. static int __init crypto_authenc_esn_module_init(void)
  375. {
  376. return crypto_register_template(&crypto_authenc_esn_tmpl);
  377. }
  378. static void __exit crypto_authenc_esn_module_exit(void)
  379. {
  380. crypto_unregister_template(&crypto_authenc_esn_tmpl);
  381. }
  382. subsys_initcall(crypto_authenc_esn_module_init);
  383. module_exit(crypto_authenc_esn_module_exit);
  384. MODULE_LICENSE("GPL");
  385. MODULE_AUTHOR("Steffen Klassert <steffen.klassert@secunet.com>");
  386. MODULE_DESCRIPTION("AEAD wrapper for IPsec with extended sequence numbers");
  387. MODULE_ALIAS_CRYPTO("authencesn");