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Implement pem_read_key directly through OSSL_DECODER
[thirdparty/openssl.git] / providers / implementations / keymgmt / rsa_kmgmt.c
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 /*
11 * RSA low level APIs are deprecated for public use, but still ok for
12 * internal use.
13 */
14 #include "internal/deprecated.h"
15
16 #include <openssl/core_dispatch.h>
17 #include <openssl/core_names.h>
18 #include <openssl/bn.h>
19 #include <openssl/err.h>
20 #include <openssl/rsa.h>
21 #include <openssl/evp.h>
22 #include <openssl/proverr.h>
23 #include "prov/implementations.h"
24 #include "prov/providercommon.h"
25 #include "prov/provider_ctx.h"
26 #include "crypto/rsa.h"
27 #include "crypto/cryptlib.h"
28 #include "internal/param_build_set.h"
29
30 static OSSL_FUNC_keymgmt_new_fn rsa_newdata;
31 static OSSL_FUNC_keymgmt_new_fn rsapss_newdata;
32 static OSSL_FUNC_keymgmt_gen_init_fn rsa_gen_init;
33 static OSSL_FUNC_keymgmt_gen_init_fn rsapss_gen_init;
34 static OSSL_FUNC_keymgmt_gen_set_params_fn rsa_gen_set_params;
35 static OSSL_FUNC_keymgmt_gen_settable_params_fn rsa_gen_settable_params;
36 static OSSL_FUNC_keymgmt_gen_settable_params_fn rsapss_gen_settable_params;
37 static OSSL_FUNC_keymgmt_gen_fn rsa_gen;
38 static OSSL_FUNC_keymgmt_gen_cleanup_fn rsa_gen_cleanup;
39 static OSSL_FUNC_keymgmt_load_fn rsa_load;
40 static OSSL_FUNC_keymgmt_load_fn rsapss_load;
41 static OSSL_FUNC_keymgmt_free_fn rsa_freedata;
42 static OSSL_FUNC_keymgmt_get_params_fn rsa_get_params;
43 static OSSL_FUNC_keymgmt_gettable_params_fn rsa_gettable_params;
44 static OSSL_FUNC_keymgmt_has_fn rsa_has;
45 static OSSL_FUNC_keymgmt_match_fn rsa_match;
46 static OSSL_FUNC_keymgmt_validate_fn rsa_validate;
47 static OSSL_FUNC_keymgmt_import_fn rsa_import;
48 static OSSL_FUNC_keymgmt_import_types_fn rsa_import_types;
49 static OSSL_FUNC_keymgmt_export_fn rsa_export;
50 static OSSL_FUNC_keymgmt_export_types_fn rsa_export_types;
51 static OSSL_FUNC_keymgmt_query_operation_name_fn rsa_query_operation_name;
52 static OSSL_FUNC_keymgmt_dup_fn rsa_dup;
53
54 #define RSA_DEFAULT_MD "SHA256"
55 #define RSA_PSS_DEFAULT_MD OSSL_DIGEST_NAME_SHA1
56 #define RSA_POSSIBLE_SELECTIONS \
57 (OSSL_KEYMGMT_SELECT_KEYPAIR | OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS)
58
59 DEFINE_STACK_OF(BIGNUM)
60 DEFINE_SPECIAL_STACK_OF_CONST(BIGNUM_const, BIGNUM)
61
62 static int pss_params_fromdata(RSA_PSS_PARAMS_30 *pss_params, int *defaults_set,
63 const OSSL_PARAM params[], int rsa_type,
64 OSSL_LIB_CTX *libctx)
65 {
66 if (!ossl_rsa_pss_params_30_fromdata(pss_params, defaults_set,
67 params, libctx))
68 return 0;
69
70 /* If not a PSS type RSA, sending us PSS parameters is wrong */
71 if (rsa_type != RSA_FLAG_TYPE_RSASSAPSS
72 && !ossl_rsa_pss_params_30_is_unrestricted(pss_params))
73 return 0;
74
75 return 1;
76 }
77
78 static void *rsa_newdata(void *provctx)
79 {
80 OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx);
81 RSA *rsa;
82
83 if (!ossl_prov_is_running())
84 return NULL;
85
86 rsa = ossl_rsa_new_with_ctx(libctx);
87 if (rsa != NULL) {
88 RSA_clear_flags(rsa, RSA_FLAG_TYPE_MASK);
89 RSA_set_flags(rsa, RSA_FLAG_TYPE_RSA);
90 }
91 return rsa;
92 }
93
94 static void *rsapss_newdata(void *provctx)
95 {
96 OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx);
97 RSA *rsa;
98
99 if (!ossl_prov_is_running())
100 return NULL;
101
102 rsa = ossl_rsa_new_with_ctx(libctx);
103 if (rsa != NULL) {
104 RSA_clear_flags(rsa, RSA_FLAG_TYPE_MASK);
105 RSA_set_flags(rsa, RSA_FLAG_TYPE_RSASSAPSS);
106 }
107 return rsa;
108 }
109
110 static void rsa_freedata(void *keydata)
111 {
112 RSA_free(keydata);
113 }
114
115 static int rsa_has(const void *keydata, int selection)
116 {
117 const RSA *rsa = keydata;
118 int ok = 1;
119
120 if (rsa == NULL || !ossl_prov_is_running())
121 return 0;
122 if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
123 return 1; /* the selection is not missing */
124
125 /* OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS are always available even if empty */
126 if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
127 ok = ok && (RSA_get0_e(rsa) != NULL);
128 if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0)
129 ok = ok && (RSA_get0_n(rsa) != NULL);
130 if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0)
131 ok = ok && (RSA_get0_d(rsa) != NULL);
132 return ok;
133 }
134
135 static int rsa_match(const void *keydata1, const void *keydata2, int selection)
136 {
137 const RSA *rsa1 = keydata1;
138 const RSA *rsa2 = keydata2;
139 int ok = 1;
140
141 if (!ossl_prov_is_running())
142 return 0;
143
144 /* There is always an |e| */
145 ok = ok && BN_cmp(RSA_get0_e(rsa1), RSA_get0_e(rsa2)) == 0;
146 if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0)
147 ok = ok && BN_cmp(RSA_get0_n(rsa1), RSA_get0_n(rsa2)) == 0;
148 if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0)
149 ok = ok && BN_cmp(RSA_get0_d(rsa1), RSA_get0_d(rsa2)) == 0;
150 return ok;
151 }
152
153 static int rsa_import(void *keydata, int selection, const OSSL_PARAM params[])
154 {
155 RSA *rsa = keydata;
156 int rsa_type;
157 int ok = 1;
158 int pss_defaults_set = 0;
159
160 if (!ossl_prov_is_running() || rsa == NULL)
161 return 0;
162
163 if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
164 return 0;
165
166 rsa_type = RSA_test_flags(rsa, RSA_FLAG_TYPE_MASK);
167
168 if ((selection & OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS) != 0)
169 ok = ok && pss_params_fromdata(ossl_rsa_get0_pss_params_30(rsa),
170 &pss_defaults_set,
171 params, rsa_type,
172 ossl_rsa_get0_libctx(rsa));
173 if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
174 ok = ok && ossl_rsa_fromdata(rsa, params);
175
176 return ok;
177 }
178
179 static int rsa_export(void *keydata, int selection,
180 OSSL_CALLBACK *param_callback, void *cbarg)
181 {
182 RSA *rsa = keydata;
183 const RSA_PSS_PARAMS_30 *pss_params = ossl_rsa_get0_pss_params_30(rsa);
184 OSSL_PARAM_BLD *tmpl;
185 OSSL_PARAM *params = NULL;
186 int ok = 1;
187
188 if (!ossl_prov_is_running() || rsa == NULL)
189 return 0;
190
191 if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
192 return 0;
193
194 tmpl = OSSL_PARAM_BLD_new();
195 if (tmpl == NULL)
196 return 0;
197
198 if ((selection & OSSL_KEYMGMT_SELECT_OTHER_PARAMETERS) != 0)
199 ok = ok && (ossl_rsa_pss_params_30_is_unrestricted(pss_params)
200 || ossl_rsa_pss_params_30_todata(pss_params, tmpl, NULL));
201 if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
202 ok = ok && ossl_rsa_todata(rsa, tmpl, NULL);
203
204 if (!ok
205 || (params = OSSL_PARAM_BLD_to_param(tmpl)) == NULL)
206 goto err;
207
208 ok = param_callback(params, cbarg);
209 OSSL_PARAM_free(params);
210 err:
211 OSSL_PARAM_BLD_free(tmpl);
212 return ok;
213 }
214
215 #ifdef FIPS_MODULE
216 /* In fips mode there are no multi-primes. */
217 # define RSA_KEY_MP_TYPES() \
218 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR1, NULL, 0), \
219 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR2, NULL, 0), \
220 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT1, NULL, 0), \
221 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT2, NULL, 0), \
222 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT1, NULL, 0),
223 #else
224 /*
225 * We allow up to 10 prime factors (starting with p, q).
226 * NOTE: there is only 9 OSSL_PKEY_PARAM_RSA_COEFFICIENT
227 */
228 # define RSA_KEY_MP_TYPES() \
229 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR1, NULL, 0), \
230 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR2, NULL, 0), \
231 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR3, NULL, 0), \
232 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR4, NULL, 0), \
233 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR5, NULL, 0), \
234 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR6, NULL, 0), \
235 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR7, NULL, 0), \
236 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR8, NULL, 0), \
237 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR9, NULL, 0), \
238 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_FACTOR10, NULL, 0), \
239 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT1, NULL, 0), \
240 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT2, NULL, 0), \
241 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT3, NULL, 0), \
242 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT4, NULL, 0), \
243 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT5, NULL, 0), \
244 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT6, NULL, 0), \
245 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT7, NULL, 0), \
246 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT8, NULL, 0), \
247 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT9, NULL, 0), \
248 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_EXPONENT10, NULL, 0), \
249 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT1, NULL, 0), \
250 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT2, NULL, 0), \
251 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT3, NULL, 0), \
252 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT4, NULL, 0), \
253 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT5, NULL, 0), \
254 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT6, NULL, 0), \
255 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT7, NULL, 0), \
256 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT8, NULL, 0), \
257 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_COEFFICIENT9, NULL, 0),
258 #endif
259
260 #define RSA_KEY_TYPES() \
261 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_N, NULL, 0), \
262 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_E, NULL, 0), \
263 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_D, NULL, 0), \
264 RSA_KEY_MP_TYPES()
265
266 /*
267 * This provider can export everything in an RSA key, so we use the exact
268 * same type description for export as for import. Other providers might
269 * choose to import full keys, but only export the public parts, and will
270 * therefore have the importkey_types and importkey_types functions return
271 * different arrays.
272 */
273 static const OSSL_PARAM rsa_key_types[] = {
274 RSA_KEY_TYPES()
275 OSSL_PARAM_END
276 };
277 /*
278 * We lied about the amount of factors, exponents and coefficients, the
279 * export and import functions can really deal with an infinite amount
280 * of these numbers. However, RSA keys with too many primes are futile,
281 * so we at least pretend to have some limits.
282 */
283
284 static const OSSL_PARAM *rsa_imexport_types(int selection)
285 {
286 if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
287 return rsa_key_types;
288 return NULL;
289 }
290
291 static const OSSL_PARAM *rsa_import_types(int selection)
292 {
293 return rsa_imexport_types(selection);
294 }
295
296 static const OSSL_PARAM *rsa_export_types(int selection)
297 {
298 return rsa_imexport_types(selection);
299 }
300
301 static int rsa_get_params(void *key, OSSL_PARAM params[])
302 {
303 RSA *rsa = key;
304 const RSA_PSS_PARAMS_30 *pss_params = ossl_rsa_get0_pss_params_30(rsa);
305 int rsa_type = RSA_test_flags(rsa, RSA_FLAG_TYPE_MASK);
306 OSSL_PARAM *p;
307 int empty = RSA_get0_n(rsa) == NULL;
308
309 if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_BITS)) != NULL
310 && (empty || !OSSL_PARAM_set_int(p, RSA_bits(rsa))))
311 return 0;
312 if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_SECURITY_BITS)) != NULL
313 && (empty || !OSSL_PARAM_set_int(p, RSA_security_bits(rsa))))
314 return 0;
315 if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_MAX_SIZE)) != NULL
316 && (empty || !OSSL_PARAM_set_int(p, RSA_size(rsa))))
317 return 0;
318
319 /*
320 * For restricted RSA-PSS keys, we ignore the default digest request.
321 * With RSA-OAEP keys, this may need to be amended.
322 */
323 if ((p = OSSL_PARAM_locate(params, OSSL_PKEY_PARAM_DEFAULT_DIGEST)) != NULL
324 && (rsa_type != RSA_FLAG_TYPE_RSASSAPSS
325 || ossl_rsa_pss_params_30_is_unrestricted(pss_params))) {
326 if (!OSSL_PARAM_set_utf8_string(p, RSA_DEFAULT_MD))
327 return 0;
328 }
329
330 /*
331 * For non-RSA-PSS keys, we ignore the mandatory digest request.
332 * With RSA-OAEP keys, this may need to be amended.
333 */
334 if ((p = OSSL_PARAM_locate(params,
335 OSSL_PKEY_PARAM_MANDATORY_DIGEST)) != NULL
336 && rsa_type == RSA_FLAG_TYPE_RSASSAPSS
337 && !ossl_rsa_pss_params_30_is_unrestricted(pss_params)) {
338 const char *mdname =
339 ossl_rsa_oaeppss_nid2name(ossl_rsa_pss_params_30_hashalg(pss_params));
340
341 if (mdname == NULL || !OSSL_PARAM_set_utf8_string(p, mdname))
342 return 0;
343 }
344 return (rsa_type != RSA_FLAG_TYPE_RSASSAPSS
345 || ossl_rsa_pss_params_30_todata(pss_params, NULL, params))
346 && ossl_rsa_todata(rsa, NULL, params);
347 }
348
349 static const OSSL_PARAM rsa_params[] = {
350 OSSL_PARAM_int(OSSL_PKEY_PARAM_BITS, NULL),
351 OSSL_PARAM_int(OSSL_PKEY_PARAM_SECURITY_BITS, NULL),
352 OSSL_PARAM_int(OSSL_PKEY_PARAM_MAX_SIZE, NULL),
353 OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_DEFAULT_DIGEST, NULL, 0),
354 RSA_KEY_TYPES()
355 OSSL_PARAM_END
356 };
357
358 static const OSSL_PARAM *rsa_gettable_params(void *provctx)
359 {
360 return rsa_params;
361 }
362
363 static int rsa_validate(const void *keydata, int selection, int checktype)
364 {
365 const RSA *rsa = keydata;
366 int ok = 1;
367
368 if (!ossl_prov_is_running())
369 return 0;
370
371 if ((selection & RSA_POSSIBLE_SELECTIONS) == 0)
372 return 1; /* nothing to validate */
373
374 /* If the whole key is selected, we do a pairwise validation */
375 if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR)
376 == OSSL_KEYMGMT_SELECT_KEYPAIR) {
377 ok = ok && ossl_rsa_validate_pairwise(rsa);
378 } else {
379 if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0)
380 ok = ok && ossl_rsa_validate_private(rsa);
381 if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0)
382 ok = ok && ossl_rsa_validate_public(rsa);
383 }
384 return ok;
385 }
386
387 struct rsa_gen_ctx {
388 OSSL_LIB_CTX *libctx;
389 const char *propq;
390
391 int rsa_type;
392
393 size_t nbits;
394 BIGNUM *pub_exp;
395 size_t primes;
396
397 /* For PSS */
398 RSA_PSS_PARAMS_30 pss_params;
399 int pss_defaults_set;
400
401 /* For generation callback */
402 OSSL_CALLBACK *cb;
403 void *cbarg;
404
405 #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
406 /* ACVP test parameters */
407 OSSL_PARAM *acvp_test_params;
408 #endif
409 };
410
411 static int rsa_gencb(int p, int n, BN_GENCB *cb)
412 {
413 struct rsa_gen_ctx *gctx = BN_GENCB_get_arg(cb);
414 OSSL_PARAM params[] = { OSSL_PARAM_END, OSSL_PARAM_END, OSSL_PARAM_END };
415
416 params[0] = OSSL_PARAM_construct_int(OSSL_GEN_PARAM_POTENTIAL, &p);
417 params[1] = OSSL_PARAM_construct_int(OSSL_GEN_PARAM_ITERATION, &n);
418 return gctx->cb(params, gctx->cbarg);
419 }
420
421 static void *gen_init(void *provctx, int selection, int rsa_type,
422 const OSSL_PARAM params[])
423 {
424 OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx);
425 struct rsa_gen_ctx *gctx = NULL;
426
427 if (!ossl_prov_is_running())
428 return NULL;
429
430 if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) == 0)
431 return NULL;
432
433 if ((gctx = OPENSSL_zalloc(sizeof(*gctx))) != NULL) {
434 gctx->libctx = libctx;
435 if ((gctx->pub_exp = BN_new()) == NULL
436 || !BN_set_word(gctx->pub_exp, RSA_F4)) {
437 BN_free(gctx->pub_exp);
438 OPENSSL_free(gctx);
439 return NULL;
440 }
441 gctx->nbits = 2048;
442 gctx->primes = RSA_DEFAULT_PRIME_NUM;
443 gctx->rsa_type = rsa_type;
444 }
445 if (!rsa_gen_set_params(gctx, params)) {
446 OPENSSL_free(gctx);
447 return NULL;
448 }
449 return gctx;
450 }
451
452 static void *rsa_gen_init(void *provctx, int selection,
453 const OSSL_PARAM params[])
454 {
455 return gen_init(provctx, selection, RSA_FLAG_TYPE_RSA, params);
456 }
457
458 static void *rsapss_gen_init(void *provctx, int selection,
459 const OSSL_PARAM params[])
460 {
461 return gen_init(provctx, selection, RSA_FLAG_TYPE_RSASSAPSS, params);
462 }
463
464 /*
465 * This function is common for all RSA sub-types, to detect possible
466 * misuse, such as PSS parameters being passed when a plain RSA key
467 * is generated.
468 */
469 static int rsa_gen_set_params(void *genctx, const OSSL_PARAM params[])
470 {
471 struct rsa_gen_ctx *gctx = genctx;
472 const OSSL_PARAM *p;
473
474 if (params == NULL)
475 return 1;
476
477 if ((p = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_RSA_BITS)) != NULL) {
478 if (!OSSL_PARAM_get_size_t(p, &gctx->nbits))
479 return 0;
480 if (gctx->nbits < RSA_MIN_MODULUS_BITS) {
481 ERR_raise(ERR_LIB_PROV, PROV_R_KEY_SIZE_TOO_SMALL);
482 return 0;
483 }
484 }
485 if ((p = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_RSA_PRIMES)) != NULL
486 && !OSSL_PARAM_get_size_t(p, &gctx->primes))
487 return 0;
488 if ((p = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_RSA_E)) != NULL
489 && !OSSL_PARAM_get_BN(p, &gctx->pub_exp))
490 return 0;
491 /* Only attempt to get PSS parameters when generating an RSA-PSS key */
492 if (gctx->rsa_type == RSA_FLAG_TYPE_RSASSAPSS
493 && !pss_params_fromdata(&gctx->pss_params, &gctx->pss_defaults_set, params,
494 gctx->rsa_type, gctx->libctx))
495 return 0;
496 #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
497 /* Any ACVP test related parameters are copied into a params[] */
498 if (!ossl_rsa_acvp_test_gen_params_new(&gctx->acvp_test_params, params))
499 return 0;
500 #endif
501 return 1;
502 }
503
504 #define rsa_gen_basic \
505 OSSL_PARAM_size_t(OSSL_PKEY_PARAM_RSA_BITS, NULL), \
506 OSSL_PARAM_size_t(OSSL_PKEY_PARAM_RSA_PRIMES, NULL), \
507 OSSL_PARAM_BN(OSSL_PKEY_PARAM_RSA_E, NULL, 0)
508
509 /*
510 * The following must be kept in sync with ossl_rsa_pss_params_30_fromdata()
511 * in crypto/rsa/rsa_backend.c
512 */
513 #define rsa_gen_pss \
514 OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_DIGEST, NULL, 0), \
515 OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_DIGEST_PROPS, NULL, 0), \
516 OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_MASKGENFUNC, NULL, 0), \
517 OSSL_PARAM_utf8_string(OSSL_PKEY_PARAM_RSA_MGF1_DIGEST, NULL, 0), \
518 OSSL_PARAM_int(OSSL_PKEY_PARAM_RSA_PSS_SALTLEN, NULL)
519
520 static const OSSL_PARAM *rsa_gen_settable_params(ossl_unused void *genctx,
521 ossl_unused void *provctx)
522 {
523 static OSSL_PARAM settable[] = {
524 rsa_gen_basic,
525 OSSL_PARAM_END
526 };
527
528 return settable;
529 }
530
531 static const OSSL_PARAM *rsapss_gen_settable_params(ossl_unused void *genctx,
532 ossl_unused void *provctx)
533 {
534 static OSSL_PARAM settable[] = {
535 rsa_gen_basic,
536 rsa_gen_pss,
537 OSSL_PARAM_END
538 };
539
540 return settable;
541 }
542
543 static void *rsa_gen(void *genctx, OSSL_CALLBACK *osslcb, void *cbarg)
544 {
545 struct rsa_gen_ctx *gctx = genctx;
546 RSA *rsa = NULL, *rsa_tmp = NULL;
547 BN_GENCB *gencb = NULL;
548
549 if (!ossl_prov_is_running() || gctx == NULL)
550 return NULL;
551
552 switch (gctx->rsa_type) {
553 case RSA_FLAG_TYPE_RSA:
554 /* For plain RSA keys, PSS parameters must not be set */
555 if (!ossl_rsa_pss_params_30_is_unrestricted(&gctx->pss_params))
556 goto err;
557 break;
558 case RSA_FLAG_TYPE_RSASSAPSS:
559 /*
560 * For plain RSA-PSS keys, PSS parameters may be set but don't have
561 * to, so not check.
562 */
563 break;
564 default:
565 /* Unsupported RSA key sub-type... */
566 return NULL;
567 }
568
569 if ((rsa_tmp = ossl_rsa_new_with_ctx(gctx->libctx)) == NULL)
570 return NULL;
571
572 gctx->cb = osslcb;
573 gctx->cbarg = cbarg;
574 gencb = BN_GENCB_new();
575 if (gencb != NULL)
576 BN_GENCB_set(gencb, rsa_gencb, genctx);
577
578 #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
579 if (gctx->acvp_test_params != NULL) {
580 if (!ossl_rsa_acvp_test_set_params(rsa_tmp, gctx->acvp_test_params))
581 goto err;
582 }
583 #endif
584
585 if (!RSA_generate_multi_prime_key(rsa_tmp,
586 (int)gctx->nbits, (int)gctx->primes,
587 gctx->pub_exp, gencb))
588 goto err;
589
590 if (!ossl_rsa_pss_params_30_copy(ossl_rsa_get0_pss_params_30(rsa_tmp),
591 &gctx->pss_params))
592 goto err;
593
594 RSA_clear_flags(rsa_tmp, RSA_FLAG_TYPE_MASK);
595 RSA_set_flags(rsa_tmp, gctx->rsa_type);
596
597 rsa = rsa_tmp;
598 rsa_tmp = NULL;
599 err:
600 BN_GENCB_free(gencb);
601 RSA_free(rsa_tmp);
602 return rsa;
603 }
604
605 static void rsa_gen_cleanup(void *genctx)
606 {
607 struct rsa_gen_ctx *gctx = genctx;
608
609 if (gctx == NULL)
610 return;
611 #if defined(FIPS_MODULE) && !defined(OPENSSL_NO_ACVP_TESTS)
612 ossl_rsa_acvp_test_gen_params_free(gctx->acvp_test_params);
613 gctx->acvp_test_params = NULL;
614 #endif
615 BN_clear_free(gctx->pub_exp);
616 OPENSSL_free(gctx);
617 }
618
619 static void *common_load(const void *reference, size_t reference_sz,
620 int expected_rsa_type)
621 {
622 RSA *rsa = NULL;
623
624 if (ossl_prov_is_running() && reference_sz == sizeof(rsa)) {
625 /* The contents of the reference is the address to our object */
626 rsa = *(RSA **)reference;
627
628 if (RSA_test_flags(rsa, RSA_FLAG_TYPE_MASK) != expected_rsa_type)
629 return NULL;
630
631 /* We grabbed, so we detach it */
632 *(RSA **)reference = NULL;
633 return rsa;
634 }
635 return NULL;
636 }
637
638 static void *rsa_load(const void *reference, size_t reference_sz)
639 {
640 return common_load(reference, reference_sz, RSA_FLAG_TYPE_RSA);
641 }
642
643 static void *rsapss_load(const void *reference, size_t reference_sz)
644 {
645 return common_load(reference, reference_sz, RSA_FLAG_TYPE_RSASSAPSS);
646 }
647
648 static void *rsa_dup(const void *keydata_from, int selection)
649 {
650 if (ossl_prov_is_running()
651 /* do not allow creating empty keys by duplication */
652 && (selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0)
653 return ossl_rsa_dup(keydata_from, selection);
654 return NULL;
655 }
656
657 /* For any RSA key, we use the "RSA" algorithms regardless of sub-type. */
658 static const char *rsa_query_operation_name(int operation_id)
659 {
660 return "RSA";
661 }
662
663 const OSSL_DISPATCH ossl_rsa_keymgmt_functions[] = {
664 { OSSL_FUNC_KEYMGMT_NEW, (void (*)(void))rsa_newdata },
665 { OSSL_FUNC_KEYMGMT_GEN_INIT, (void (*)(void))rsa_gen_init },
666 { OSSL_FUNC_KEYMGMT_GEN_SET_PARAMS,
667 (void (*)(void))rsa_gen_set_params },
668 { OSSL_FUNC_KEYMGMT_GEN_SETTABLE_PARAMS,
669 (void (*)(void))rsa_gen_settable_params },
670 { OSSL_FUNC_KEYMGMT_GEN, (void (*)(void))rsa_gen },
671 { OSSL_FUNC_KEYMGMT_GEN_CLEANUP, (void (*)(void))rsa_gen_cleanup },
672 { OSSL_FUNC_KEYMGMT_LOAD, (void (*)(void))rsa_load },
673 { OSSL_FUNC_KEYMGMT_FREE, (void (*)(void))rsa_freedata },
674 { OSSL_FUNC_KEYMGMT_GET_PARAMS, (void (*) (void))rsa_get_params },
675 { OSSL_FUNC_KEYMGMT_GETTABLE_PARAMS, (void (*) (void))rsa_gettable_params },
676 { OSSL_FUNC_KEYMGMT_HAS, (void (*)(void))rsa_has },
677 { OSSL_FUNC_KEYMGMT_MATCH, (void (*)(void))rsa_match },
678 { OSSL_FUNC_KEYMGMT_VALIDATE, (void (*)(void))rsa_validate },
679 { OSSL_FUNC_KEYMGMT_IMPORT, (void (*)(void))rsa_import },
680 { OSSL_FUNC_KEYMGMT_IMPORT_TYPES, (void (*)(void))rsa_import_types },
681 { OSSL_FUNC_KEYMGMT_EXPORT, (void (*)(void))rsa_export },
682 { OSSL_FUNC_KEYMGMT_EXPORT_TYPES, (void (*)(void))rsa_export_types },
683 { OSSL_FUNC_KEYMGMT_DUP, (void (*)(void))rsa_dup },
684 { 0, NULL }
685 };
686
687 const OSSL_DISPATCH ossl_rsapss_keymgmt_functions[] = {
688 { OSSL_FUNC_KEYMGMT_NEW, (void (*)(void))rsapss_newdata },
689 { OSSL_FUNC_KEYMGMT_GEN_INIT, (void (*)(void))rsapss_gen_init },
690 { OSSL_FUNC_KEYMGMT_GEN_SET_PARAMS, (void (*)(void))rsa_gen_set_params },
691 { OSSL_FUNC_KEYMGMT_GEN_SETTABLE_PARAMS,
692 (void (*)(void))rsapss_gen_settable_params },
693 { OSSL_FUNC_KEYMGMT_GEN, (void (*)(void))rsa_gen },
694 { OSSL_FUNC_KEYMGMT_GEN_CLEANUP, (void (*)(void))rsa_gen_cleanup },
695 { OSSL_FUNC_KEYMGMT_LOAD, (void (*)(void))rsapss_load },
696 { OSSL_FUNC_KEYMGMT_FREE, (void (*)(void))rsa_freedata },
697 { OSSL_FUNC_KEYMGMT_GET_PARAMS, (void (*) (void))rsa_get_params },
698 { OSSL_FUNC_KEYMGMT_GETTABLE_PARAMS, (void (*) (void))rsa_gettable_params },
699 { OSSL_FUNC_KEYMGMT_HAS, (void (*)(void))rsa_has },
700 { OSSL_FUNC_KEYMGMT_MATCH, (void (*)(void))rsa_match },
701 { OSSL_FUNC_KEYMGMT_VALIDATE, (void (*)(void))rsa_validate },
702 { OSSL_FUNC_KEYMGMT_IMPORT, (void (*)(void))rsa_import },
703 { OSSL_FUNC_KEYMGMT_IMPORT_TYPES, (void (*)(void))rsa_import_types },
704 { OSSL_FUNC_KEYMGMT_EXPORT, (void (*)(void))rsa_export },
705 { OSSL_FUNC_KEYMGMT_EXPORT_TYPES, (void (*)(void))rsa_export_types },
706 { OSSL_FUNC_KEYMGMT_QUERY_OPERATION_NAME,
707 (void (*)(void))rsa_query_operation_name },
708 { OSSL_FUNC_KEYMGMT_DUP, (void (*)(void))rsa_dup },
709 { 0, NULL }
710 };