rsa_kmgmt.c 25 KB

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  1. /*
  2. * Copyright 2019-2021 The OpenSSL Project Authors. All Rights Reserved.
  3. *
  4. * Licensed under the Apache License 2.0 (the "License"). You may not use
  5. * this file except in compliance with the License. You can obtain a copy
  6. * in the file LICENSE in the source distribution or at
  7. * https://www.openssl.org/source/license.html
  8. */
  9. /*
  10. * RSA low level APIs are deprecated for public use, but still ok for
  11. * internal use.
  12. */
  13. #include "internal/deprecated.h"
  14. #include <openssl/core_dispatch.h>
  15. #include <openssl/core_names.h>
  16. #include <openssl/bn.h>
  17. #include <openssl/err.h>
  18. #include <openssl/rsa.h>
  19. #include <openssl/evp.h>
  20. #include <openssl/proverr.h>
  21. #include "prov/implementations.h"
  22. #include "prov/providercommon.h"
  23. #include "prov/provider_ctx.h"
  24. #include "crypto/rsa.h"
  25. #include "crypto/cryptlib.h"
  26. #include "internal/param_build_set.h"
  27. static OSSL_FUNC_keymgmt_new_fn rsa_newdata;
  28. static OSSL_FUNC_keymgmt_new_fn rsapss_newdata;
  29. static OSSL_FUNC_keymgmt_gen_init_fn rsa_gen_init;
  30. static OSSL_FUNC_keymgmt_gen_init_fn rsapss_gen_init;
  31. static OSSL_FUNC_keymgmt_gen_set_params_fn rsa_gen_set_params;
  32. static OSSL_FUNC_keymgmt_gen_settable_params_fn rsa_gen_settable_params;
  33. static OSSL_FUNC_keymgmt_gen_settable_params_fn rsapss_gen_settable_params;
  34. static OSSL_FUNC_keymgmt_gen_fn rsa_gen;
  35. static OSSL_FUNC_keymgmt_gen_cleanup_fn rsa_gen_cleanup;
  36. static OSSL_FUNC_keymgmt_load_fn rsa_load;
  37. static OSSL_FUNC_keymgmt_load_fn rsapss_load;
  38. static OSSL_FUNC_keymgmt_free_fn rsa_freedata;
  39. static OSSL_FUNC_keymgmt_get_params_fn rsa_get_params;
  40. static OSSL_FUNC_keymgmt_gettable_params_fn rsa_gettable_params;
  41. static OSSL_FUNC_keymgmt_has_fn rsa_has;
  42. static OSSL_FUNC_keymgmt_match_fn rsa_match;
  43. static OSSL_FUNC_keymgmt_validate_fn rsa_validate;
  44. static OSSL_FUNC_keymgmt_import_fn rsa_import;
  45. static OSSL_FUNC_keymgmt_import_types_fn rsa_import_types;
  46. static OSSL_FUNC_keymgmt_export_fn rsa_export;
  47. static OSSL_FUNC_keymgmt_export_types_fn rsa_export_types;
  48. static OSSL_FUNC_keymgmt_query_operation_name_fn rsa_query_operation_name;
  49. static OSSL_FUNC_keymgmt_dup_fn rsa_dup;
  50. #define RSA_DEFAULT_MD "SHA256"
  51. #define RSA_PSS_DEFAULT_MD OSSL_DIGEST_NAME_SHA1
  52. #define RSA_POSSIBLE_SELECTIONS \
  53. (OSSL_KEYMGMT_SELECT_KEYPAIR | OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS)
  54. DEFINE_STACK_OF(BIGNUM)
  55. DEFINE_SPECIAL_STACK_OF_CONST(BIGNUM_const, BIGNUM)
  56. static int pss_params_fromdata(RSA_PSS_PARAMS_30 *pss_params, int *defaults_set,
  57. const OSSL_PARAM params[], int rsa_type,
  58. OSSL_LIB_CTX *libctx)
  59. {
  60. if (!ossl_rsa_pss_params_30_fromdata(pss_params, defaults_set,
  61. params, libctx))
  62. return 0;
  63. /* If not a PSS type RSA, sending us PSS parameters is wrong */
  64. if (rsa_type != RSA_FLAG_TYPE_RSASSAPSS
  65. && !ossl_rsa_pss_params_30_is_unrestricted(pss_params))
  66. return 0;
  67. return 1;
  68. }
  69. static void *rsa_newdata(void *provctx)
  70. {
  71. OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx);
  72. RSA *rsa;
  73. if (!ossl_prov_is_running())
  74. return NULL;
  75. rsa = ossl_rsa_new_with_ctx(libctx);
  76. if (rsa != NULL) {
  77. RSA_clear_flags(rsa, RSA_FLAG_TYPE_MASK);
  78. RSA_set_flags(rsa, RSA_FLAG_TYPE_RSA);
  79. }
  80. return rsa;
  81. }
  82. static void *rsapss_newdata(void *provctx)
  83. {
  84. OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx);
  85. RSA *rsa;
  86. if (!ossl_prov_is_running())
  87. return NULL;
  88. rsa = ossl_rsa_new_with_ctx(libctx);
  89. if (rsa != NULL) {
  90. RSA_clear_flags(rsa, RSA_FLAG_TYPE_MASK);
  91. RSA_set_flags(rsa, RSA_FLAG_TYPE_RSASSAPSS);
  92. }
  93. return rsa;
  94. }
  95. static void rsa_freedata(void *keydata)
  96. {
  97. RSA_free(keydata);
  98. }
  99. static int rsa_has(const void *keydata, int selection)
  100. {
  101. const RSA *rsa = keydata;
  102. int ok = 1;
  103. if (rsa == NULL || !ossl_prov_is_running())
  104. return 0;
  105. if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
  106. return 1; /* the selection is not missing */
  107. if ((selection & OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS) != 0)
  108. /* This will change with OAEP */
  109. ok = ok && (RSA_test_flags(rsa, RSA_FLAG_TYPE_RSASSAPSS) != 0);
  110. if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
  111. ok = ok && (RSA_get0_e(rsa) != NULL);
  112. if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0)
  113. ok = ok && (RSA_get0_n(rsa) != NULL);
  114. if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0)
  115. ok = ok && (RSA_get0_d(rsa) != NULL);
  116. return ok;
  117. }
  118. static int rsa_match(const void *keydata1, const void *keydata2, int selection)
  119. {
  120. const RSA *rsa1 = keydata1;
  121. const RSA *rsa2 = keydata2;
  122. int ok = 1;
  123. if (!ossl_prov_is_running())
  124. return 0;
  125. /* There is always an |e| */
  126. ok = ok && BN_cmp(RSA_get0_e(rsa1), RSA_get0_e(rsa2)) == 0;
  127. if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0)
  128. ok = ok && BN_cmp(RSA_get0_n(rsa1), RSA_get0_n(rsa2)) == 0;
  129. if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0)
  130. ok = ok && BN_cmp(RSA_get0_d(rsa1), RSA_get0_d(rsa2)) == 0;
  131. return ok;
  132. }
  133. static int rsa_import(void *keydata, int selection, const OSSL_PARAM params[])
  134. {
  135. RSA *rsa = keydata;
  136. int rsa_type;
  137. int ok = 1;
  138. int pss_defaults_set = 0;
  139. if (!ossl_prov_is_running() || rsa == NULL)
  140. return 0;
  141. if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
  142. return 0;
  143. rsa_type = RSA_test_flags(rsa, RSA_FLAG_TYPE_MASK);
  144. if ((selection & OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS) != 0)
  145. ok = ok && pss_params_fromdata(ossl_rsa_get0_pss_params_30(rsa),
  146. &pss_defaults_set,
  147. params, rsa_type,
  148. ossl_rsa_get0_libctx(rsa));
  149. if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
  150. ok = ok && ossl_rsa_fromdata(rsa, params);
  151. return ok;
  152. }
  153. static int rsa_export(void *keydata, int selection,
  154. OSSL_CALLBACK *param_callback, void *cbarg)
  155. {
  156. RSA *rsa = keydata;
  157. const RSA_PSS_PARAMS_30 *pss_params = ossl_rsa_get0_pss_params_30(rsa);
  158. OSSL_PARAM_BLD *tmpl;
  159. OSSL_PARAM *params = NULL;
  160. int ok = 1;
  161. if (!ossl_prov_is_running() || rsa == NULL)
  162. return 0;
  163. if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
  164. return 0;
  165. tmpl = OSSL_PARAM_BLD_new();
  166. if (tmpl == NULL)
  167. return 0;
  168. if ((selection & OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS) != 0)
  169. ok = ok && (ossl_rsa_pss_params_30_is_unrestricted(pss_params)
  170. || ossl_rsa_pss_params_30_todata(pss_params, tmpl, NULL));
  171. if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
  172. ok = ok && ossl_rsa_todata(rsa, tmpl, NULL);
  173. if (!ok
  174. || (params = OSSL_PARAM_BLD_to_param(tmpl)) == NULL)
  175. goto err;
  176. ok = param_callback(params, cbarg);
  177. OSSL_PARAM_free(params);
  178. err:
  179. OSSL_PARAM_BLD_free(tmpl);
  180. return ok;
  181. }
  182. #ifdef FIPS_MODULE
  183. /* In fips mode there are no multi-primes. */
  184. # define RSA_KEY_MP_TYPES() \
  185. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR1, NULL, 0), \
  186. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR2, NULL, 0), \
  187. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT1, NULL, 0), \
  188. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT2, NULL, 0), \
  189. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT1, NULL, 0),
  190. #else
  191. /*
  192. * We allow up to 10 prime factors (starting with p, q).
  193. * NOTE: there is only 9 OSSL_PKEY_PARAM_RSA_COEFFICIENT
  194. */
  195. # define RSA_KEY_MP_TYPES() \
  196. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR1, NULL, 0), \
  197. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR2, NULL, 0), \
  198. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR3, NULL, 0), \
  199. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR4, NULL, 0), \
  200. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR5, NULL, 0), \
  201. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR6, NULL, 0), \
  202. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR7, NULL, 0), \
  203. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR8, NULL, 0), \
  204. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR9, NULL, 0), \
  205. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR10, NULL, 0), \
  206. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT1, NULL, 0), \
  207. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT2, NULL, 0), \
  208. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT3, NULL, 0), \
  209. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT4, NULL, 0), \
  210. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT5, NULL, 0), \
  211. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT6, NULL, 0), \
  212. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT7, NULL, 0), \
  213. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT8, NULL, 0), \
  214. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT9, NULL, 0), \
  215. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT10, NULL, 0), \
  216. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT1, NULL, 0), \
  217. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT2, NULL, 0), \
  218. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT3, NULL, 0), \
  219. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT4, NULL, 0), \
  220. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT5, NULL, 0), \
  221. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT6, NULL, 0), \
  222. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT7, NULL, 0), \
  223. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT8, NULL, 0), \
  224. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT9, NULL, 0),
  225. #endif
  226. #define RSA_KEY_TYPES() \
  227. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_N, NULL, 0), \
  228. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_E, NULL, 0), \
  229. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_D, NULL, 0), \
  230. RSA_KEY_MP_TYPES()
  231. /*
  232. * This provider can export everything in an RSA key, so we use the exact
  233. * same type description for export as for import. Other providers might
  234. * choose to import full keys, but only export the public parts, and will
  235. * therefore have the importkey_types and importkey_types functions return
  236. * different arrays.
  237. */
  238. static const OSSL_PARAM rsa_key_types[] = {
  239. RSA_KEY_TYPES()
  240. OSSL_PARAM_END
  241. };
  242. /*
  243. * We lied about the amount of factors, exponents and coefficients, the
  244. * export and import functions can really deal with an infinite amount
  245. * of these numbers. However, RSA keys with too many primes are futile,
  246. * so we at least pretend to have some limits.
  247. */
  248. static const OSSL_PARAM *rsa_imexport_types(int selection)
  249. {
  250. if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
  251. return rsa_key_types;
  252. return NULL;
  253. }
  254. static const OSSL_PARAM *rsa_import_types(int selection)
  255. {
  256. return rsa_imexport_types(selection);
  257. }
  258. static const OSSL_PARAM *rsa_export_types(int selection)
  259. {
  260. return rsa_imexport_types(selection);
  261. }
  262. static int rsa_get_params(void *key, OSSL_PARAM params[])
  263. {
  264. RSA *rsa = key;
  265. const RSA_PSS_PARAMS_30 *pss_params = ossl_rsa_get0_pss_params_30(rsa);
  266. int rsa_type = RSA_test_flags(rsa, RSA_FLAG_TYPE_MASK);
  267. OSSL_PARAM *p;
  268. if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_BITS)) != NULL
  269. && !OSSL_PARAM_set_int(p, RSA_bits(rsa)))
  270. return 0;
  271. if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_SECURITY_BITS)) != NULL
  272. && !OSSL_PARAM_set_int(p, RSA_security_bits(rsa)))
  273. return 0;
  274. if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_MAX_SIZE)) != NULL
  275. && !OSSL_PARAM_set_int(p, RSA_size(rsa)))
  276. return 0;
  277. /*
  278. * For restricted RSA-PSS keys, we ignore the default digest request.
  279. * With RSA-OAEP keys, this may need to be amended.
  280. */
  281. if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_DEFAULT_DIGEST)) != NULL
  282. && (rsa_type != RSA_FLAG_TYPE_RSASSAPSS
  283. || ossl_rsa_pss_params_30_is_unrestricted(pss_params))) {
  284. if (!OSSL_PARAM_set_utf8_string(p, RSA_DEFAULT_MD))
  285. return 0;
  286. }
  287. /*
  288. * For non-RSA-PSS keys, we ignore the mandatory digest request.
  289. * With RSA-OAEP keys, this may need to be amended.
  290. */
  291. if ((p = OSSL_PARAM_locate(params,
  292. OSSL_PKEY_PARAM_MANDATORY_DIGEST)) != NULL
  293. && rsa_type == RSA_FLAG_TYPE_RSASSAPSS
  294. && !ossl_rsa_pss_params_30_is_unrestricted(pss_params)) {
  295. const char *mdname =
  296. ossl_rsa_oaeppss_nid2name(ossl_rsa_pss_params_30_hashalg(pss_params));
  297. if (mdname == NULL || !OSSL_PARAM_set_utf8_string(p, mdname))
  298. return 0;
  299. }
  300. return (rsa_type != RSA_FLAG_TYPE_RSASSAPSS
  301. || ossl_rsa_pss_params_30_todata(pss_params, NULL, params))
  302. && ossl_rsa_todata(rsa, NULL, params);
  303. }
  304. static const OSSL_PARAM rsa_params[] = {
  305. OSSL_PARAM_int(OSSL_PKEY_PARAM_BITS, NULL),
  306. OSSL_PARAM_int(OSSL_PKEY_PARAM_SECURITY_BITS, NULL),
  307. OSSL_PARAM_int(OSSL_PKEY_PARAM_MAX_SIZE, NULL),
  308. OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_DEFAULT_DIGEST, NULL, 0),
  309. RSA_KEY_TYPES()
  310. OSSL_PARAM_END
  311. };
  312. static const OSSL_PARAM *rsa_gettable_params(void *provctx)
  313. {
  314. return rsa_params;
  315. }
  316. static int rsa_validate(const void *keydata, int selection, int checktype)
  317. {
  318. const RSA *rsa = keydata;
  319. int ok = 1;
  320. if (!ossl_prov_is_running())
  321. return 0;
  322. if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
  323. return 1; /* nothing to validate */
  324. /* If the whole key is selected, we do a pairwise validation */
  325. if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR)
  326. == OSSL_KEYMGMT_SELECT_KEYPAIR) {
  327. ok = ok && ossl_rsa_validate_pairwise(rsa);
  328. } else {
  329. if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0)
  330. ok = ok && ossl_rsa_validate_private(rsa);
  331. if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0)
  332. ok = ok && ossl_rsa_validate_public(rsa);
  333. }
  334. return ok;
  335. }
  336. struct rsa_gen_ctx {
  337. OSSL_LIB_CTX *libctx;
  338. const char *propq;
  339. int rsa_type;
  340. size_t nbits;
  341. BIGNUM *pub_exp;
  342. size_t primes;
  343. /* For PSS */
  344. RSA_PSS_PARAMS_30 pss_params;
  345. int pss_defaults_set;
  346. /* For generation callback */
  347. OSSL_CALLBACK *cb;
  348. void *cbarg;
  349. #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
  350. /* ACVP test parameters */
  351. OSSL_PARAM *acvp_test_params;
  352. #endif
  353. };
  354. static int rsa_gencb(int p, int n, BN_GENCB *cb)
  355. {
  356. struct rsa_gen_ctx *gctx = BN_GENCB_get_arg(cb);
  357. OSSL_PARAM params[] = { OSSL_PARAM_END, OSSL_PARAM_END, OSSL_PARAM_END };
  358. params[0] = OSSL_PARAM_construct_int(OSSL_GEN_PARAM_POTENTIAL, &p);
  359. params[1] = OSSL_PARAM_construct_int(OSSL_GEN_PARAM_ITERATION, &n);
  360. return gctx->cb(params, gctx->cbarg);
  361. }
  362. static void *gen_init(void *provctx, int selection, int rsa_type,
  363. const OSSL_PARAM params[])
  364. {
  365. OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx);
  366. struct rsa_gen_ctx *gctx = NULL;
  367. if (!ossl_prov_is_running())
  368. return NULL;
  369. if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) == 0)
  370. return NULL;
  371. if ((gctx = OPENSSL_zalloc(sizeof(*gctx))) != NULL) {
  372. gctx->libctx = libctx;
  373. if ((gctx->pub_exp = BN_new()) == NULL
  374. || !BN_set_word(gctx->pub_exp, RSA_F4)) {
  375. BN_free(gctx->pub_exp);
  376. OPENSSL_free(gctx);
  377. return NULL;
  378. }
  379. gctx->nbits = 2048;
  380. gctx->primes = RSA_DEFAULT_PRIME_NUM;
  381. gctx->rsa_type = rsa_type;
  382. }
  383. if (!rsa_gen_set_params(gctx, params)) {
  384. OPENSSL_free(gctx);
  385. return NULL;
  386. }
  387. return gctx;
  388. }
  389. static void *rsa_gen_init(void *provctx, int selection,
  390. const OSSL_PARAM params[])
  391. {
  392. return gen_init(provctx, selection, RSA_FLAG_TYPE_RSA, params);
  393. }
  394. static void *rsapss_gen_init(void *provctx, int selection,
  395. const OSSL_PARAM params[])
  396. {
  397. return gen_init(provctx, selection, RSA_FLAG_TYPE_RSASSAPSS, params);
  398. }
  399. /*
  400. * This function is common for all RSA sub-types, to detect possible
  401. * misuse, such as PSS parameters being passed when a plain RSA key
  402. * is generated.
  403. */
  404. static int rsa_gen_set_params(void *genctx, const OSSL_PARAM params[])
  405. {
  406. struct rsa_gen_ctx *gctx = genctx;
  407. const OSSL_PARAM *p;
  408. if (params == NULL)
  409. return 1;
  410. if ((p = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_RSA_BITS)) != NULL) {
  411. if (!OSSL_PARAM_get_size_t(p, &gctx->nbits))
  412. return 0;
  413. if (gctx->nbits < RSA_MIN_MODULUS_BITS) {
  414. ERR_raise(ERR_LIB_PROV, PROV_R_KEY_SIZE_TOO_SMALL);
  415. return 0;
  416. }
  417. }
  418. if ((p = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_RSA_PRIMES)) != NULL
  419. && !OSSL_PARAM_get_size_t(p, &gctx->primes))
  420. return 0;
  421. if ((p = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_RSA_E)) != NULL
  422. && !OSSL_PARAM_get_BN(p, &gctx->pub_exp))
  423. return 0;
  424. /* Only attempt to get PSS parameters when generating an RSA-PSS key */
  425. if (gctx->rsa_type == RSA_FLAG_TYPE_RSASSAPSS
  426. && !pss_params_fromdata(&gctx->pss_params, &gctx->pss_defaults_set, params,
  427. gctx->rsa_type, gctx->libctx))
  428. return 0;
  429. #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
  430. /* Any ACVP test related parameters are copied into a params[] */
  431. if (!ossl_rsa_acvp_test_gen_params_new(&gctx->acvp_test_params, params))
  432. return 0;
  433. #endif
  434. return 1;
  435. }
  436. #define rsa_gen_basic \
  437. OSSL_PARAM_size_t(OSSL_PKEY_PARAM_RSA_BITS, NULL), \
  438. OSSL_PARAM_size_t(OSSL_PKEY_PARAM_RSA_PRIMES, NULL), \
  439. OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_E, NULL, 0)
  440. /*
  441. * The following must be kept in sync with ossl_rsa_pss_params_30_fromdata()
  442. * in crypto/rsa/rsa_backend.c
  443. */
  444. #define rsa_gen_pss \
  445. OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_DIGEST, NULL, 0), \
  446. OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_DIGEST_PROPS, NULL, 0), \
  447. OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_MASKGENFUNC, NULL, 0), \
  448. OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_MGF1_DIGEST, NULL, 0), \
  449. OSSL_PARAM_int(OSSL_PKEY_PARAM_RSA_PSS_SALTLEN, NULL)
  450. static const OSSL_PARAM *rsa_gen_settable_params(ossl_unused void *genctx,
  451. ossl_unused void *provctx)
  452. {
  453. static OSSL_PARAM settable[] = {
  454. rsa_gen_basic,
  455. OSSL_PARAM_END
  456. };
  457. return settable;
  458. }
  459. static const OSSL_PARAM *rsapss_gen_settable_params(ossl_unused void *genctx,
  460. ossl_unused void *provctx)
  461. {
  462. static OSSL_PARAM settable[] = {
  463. rsa_gen_basic,
  464. rsa_gen_pss,
  465. OSSL_PARAM_END
  466. };
  467. return settable;
  468. }
  469. static void *rsa_gen(void *genctx, OSSL_CALLBACK *osslcb, void *cbarg)
  470. {
  471. struct rsa_gen_ctx *gctx = genctx;
  472. RSA *rsa = NULL, *rsa_tmp = NULL;
  473. BN_GENCB *gencb = NULL;
  474. if (!ossl_prov_is_running() || gctx == NULL)
  475. return NULL;
  476. switch (gctx->rsa_type) {
  477. case RSA_FLAG_TYPE_RSA:
  478. /* For plain RSA keys, PSS parameters must not be set */
  479. if (!ossl_rsa_pss_params_30_is_unrestricted(&gctx->pss_params))
  480. goto err;
  481. break;
  482. case RSA_FLAG_TYPE_RSASSAPSS:
  483. /*
  484. * For plain RSA-PSS keys, PSS parameters may be set but don't have
  485. * to, so not check.
  486. */
  487. break;
  488. default:
  489. /* Unsupported RSA key sub-type... */
  490. return NULL;
  491. }
  492. if ((rsa_tmp = ossl_rsa_new_with_ctx(gctx->libctx)) == NULL)
  493. return NULL;
  494. gctx->cb = osslcb;
  495. gctx->cbarg = cbarg;
  496. gencb = BN_GENCB_new();
  497. if (gencb != NULL)
  498. BN_GENCB_set(gencb, rsa_gencb, genctx);
  499. #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
  500. if (gctx->acvp_test_params != NULL) {
  501. if (!ossl_rsa_acvp_test_set_params(rsa_tmp, gctx->acvp_test_params))
  502. goto err;
  503. }
  504. #endif
  505. if (!RSA_generate_multi_prime_key(rsa_tmp,
  506. (int)gctx->nbits, (int)gctx->primes,
  507. gctx->pub_exp, gencb))
  508. goto err;
  509. if (!ossl_rsa_pss_params_30_copy(ossl_rsa_get0_pss_params_30(rsa_tmp),
  510. &gctx->pss_params))
  511. goto err;
  512. RSA_clear_flags(rsa_tmp, RSA_FLAG_TYPE_MASK);
  513. RSA_set_flags(rsa_tmp, gctx->rsa_type);
  514. rsa = rsa_tmp;
  515. rsa_tmp = NULL;
  516. err:
  517. BN_GENCB_free(gencb);
  518. RSA_free(rsa_tmp);
  519. return rsa;
  520. }
  521. static void rsa_gen_cleanup(void *genctx)
  522. {
  523. struct rsa_gen_ctx *gctx = genctx;
  524. if (gctx == NULL)
  525. return;
  526. #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
  527. ossl_rsa_acvp_test_gen_params_free(gctx->acvp_test_params);
  528. gctx->acvp_test_params = NULL;
  529. #endif
  530. BN_clear_free(gctx->pub_exp);
  531. OPENSSL_free(gctx);
  532. }
  533. static void *common_load(const void *reference, size_t reference_sz,
  534. int expected_rsa_type)
  535. {
  536. RSA *rsa = NULL;
  537. if (ossl_prov_is_running() && reference_sz == sizeof(rsa)) {
  538. /* The contents of the reference is the address to our object */
  539. rsa = *(RSA **)reference;
  540. if (RSA_test_flags(rsa, RSA_FLAG_TYPE_MASK) != expected_rsa_type)
  541. return NULL;
  542. /* We grabbed, so we detach it */
  543. *(RSA **)reference = NULL;
  544. return rsa;
  545. }
  546. return NULL;
  547. }
  548. static void *rsa_load(const void *reference, size_t reference_sz)
  549. {
  550. return common_load(reference, reference_sz, RSA_FLAG_TYPE_RSA);
  551. }
  552. static void *rsapss_load(const void *reference, size_t reference_sz)
  553. {
  554. return common_load(reference, reference_sz, RSA_FLAG_TYPE_RSASSAPSS);
  555. }
  556. static void *rsa_dup(const void *keydata_from, int selection)
  557. {
  558. if (ossl_prov_is_running())
  559. return ossl_rsa_dup(keydata_from, selection);
  560. return NULL;
  561. }
  562. /* For any RSA key, we use the "RSA" algorithms regardless of sub-type. */
  563. static const char *rsa_query_operation_name(int operation_id)
  564. {
  565. return "RSA";
  566. }
  567. const OSSL_DISPATCH ossl_rsa_keymgmt_functions[] = {
  568. { OSSL_FUNC_KEYMGMT_NEW, (void (*)(void))rsa_newdata },
  569. { OSSL_FUNC_KEYMGMT_GEN_INIT, (void (*)(void))rsa_gen_init },
  570. { OSSL_FUNC_KEYMGMT_GEN_SET_PARAMS,
  571. (void (*)(void))rsa_gen_set_params },
  572. { OSSL_FUNC_KEYMGMT_GEN_SETTABLE_PARAMS,
  573. (void (*)(void))rsa_gen_settable_params },
  574. { OSSL_FUNC_KEYMGMT_GEN, (void (*)(void))rsa_gen },
  575. { OSSL_FUNC_KEYMGMT_GEN_CLEANUP, (void (*)(void))rsa_gen_cleanup },
  576. { OSSL_FUNC_KEYMGMT_LOAD, (void (*)(void))rsa_load },
  577. { OSSL_FUNC_KEYMGMT_FREE, (void (*)(void))rsa_freedata },
  578. { OSSL_FUNC_KEYMGMT_GET_PARAMS, (void (*) (void))rsa_get_params },
  579. { OSSL_FUNC_KEYMGMT_GETTABLE_PARAMS, (void (*) (void))rsa_gettable_params },
  580. { OSSL_FUNC_KEYMGMT_HAS, (void (*)(void))rsa_has },
  581. { OSSL_FUNC_KEYMGMT_MATCH, (void (*)(void))rsa_match },
  582. { OSSL_FUNC_KEYMGMT_VALIDATE, (void (*)(void))rsa_validate },
  583. { OSSL_FUNC_KEYMGMT_IMPORT, (void (*)(void))rsa_import },
  584. { OSSL_FUNC_KEYMGMT_IMPORT_TYPES, (void (*)(void))rsa_import_types },
  585. { OSSL_FUNC_KEYMGMT_EXPORT, (void (*)(void))rsa_export },
  586. { OSSL_FUNC_KEYMGMT_EXPORT_TYPES, (void (*)(void))rsa_export_types },
  587. { OSSL_FUNC_KEYMGMT_DUP, (void (*)(void))rsa_dup },
  588. { 0, NULL }
  589. };
  590. const OSSL_DISPATCH ossl_rsapss_keymgmt_functions[] = {
  591. { OSSL_FUNC_KEYMGMT_NEW, (void (*)(void))rsapss_newdata },
  592. { OSSL_FUNC_KEYMGMT_GEN_INIT, (void (*)(void))rsapss_gen_init },
  593. { OSSL_FUNC_KEYMGMT_GEN_SET_PARAMS, (void (*)(void))rsa_gen_set_params },
  594. { OSSL_FUNC_KEYMGMT_GEN_SETTABLE_PARAMS,
  595. (void (*)(void))rsapss_gen_settable_params },
  596. { OSSL_FUNC_KEYMGMT_GEN, (void (*)(void))rsa_gen },
  597. { OSSL_FUNC_KEYMGMT_GEN_CLEANUP, (void (*)(void))rsa_gen_cleanup },
  598. { OSSL_FUNC_KEYMGMT_LOAD, (void (*)(void))rsapss_load },
  599. { OSSL_FUNC_KEYMGMT_FREE, (void (*)(void))rsa_freedata },
  600. { OSSL_FUNC_KEYMGMT_GET_PARAMS, (void (*) (void))rsa_get_params },
  601. { OSSL_FUNC_KEYMGMT_GETTABLE_PARAMS, (void (*) (void))rsa_gettable_params },
  602. { OSSL_FUNC_KEYMGMT_HAS, (void (*)(void))rsa_has },
  603. { OSSL_FUNC_KEYMGMT_MATCH, (void (*)(void))rsa_match },
  604. { OSSL_FUNC_KEYMGMT_VALIDATE, (void (*)(void))rsa_validate },
  605. { OSSL_FUNC_KEYMGMT_IMPORT, (void (*)(void))rsa_import },
  606. { OSSL_FUNC_KEYMGMT_IMPORT_TYPES, (void (*)(void))rsa_import_types },
  607. { OSSL_FUNC_KEYMGMT_EXPORT, (void (*)(void))rsa_export },
  608. { OSSL_FUNC_KEYMGMT_EXPORT_TYPES, (void (*)(void))rsa_export_types },
  609. { OSSL_FUNC_KEYMGMT_QUERY_OPERATION_NAME,
  610. (void (*)(void))rsa_query_operation_name },
  611. { OSSL_FUNC_KEYMGMT_DUP, (void (*)(void))rsa_dup },
  612. { 0, NULL }
  613. };