/src/gnutls/lib/nettle/pk.c
Line  | Count  | Source (jump to first uncovered line)  | 
1  |  | /*  | 
2  |  |  * Copyright (C) 2010-2012 Free Software Foundation, Inc.  | 
3  |  |  * Copyright (C) 2013-2017 Nikos Mavrogiannopoulos  | 
4  |  |  * Copyright (C) 2016-2017 Red Hat, Inc.  | 
5  |  |  *  | 
6  |  |  * Author: Nikos Mavrogiannopoulos  | 
7  |  |  *  | 
8  |  |  * This file is part of GNUTLS.  | 
9  |  |  *  | 
10  |  |  * The GNUTLS library is free software; you can redistribute it and/or  | 
11  |  |  * modify it under the terms of the GNU Lesser General Public License  | 
12  |  |  * as published by the Free Software Foundation; either version 2.1 of  | 
13  |  |  * the License, or (at your option) any later version.  | 
14  |  |  *  | 
15  |  |  * This library is distributed in the hope that it will be useful, but  | 
16  |  |  * WITHOUT ANY WARRANTY; without even the implied warranty of  | 
17  |  |  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU  | 
18  |  |  * Lesser General Public License for more details.  | 
19  |  |  *  | 
20  |  |  * You should have received a copy of the GNU Lesser General Public License  | 
21  |  |  * along with this program.  If not, see <https://www.gnu.org/licenses/>  | 
22  |  |  *  | 
23  |  |  */  | 
24  |  |  | 
25  |  | /* This file contains the functions needed for RSA/DSA public key  | 
26  |  |  * encryption and signatures.  | 
27  |  |  */  | 
28  |  |  | 
29  |  | #include "gnutls_int.h"  | 
30  |  | #include "mpi.h"  | 
31  |  | #include "pk.h"  | 
32  |  | #include "errors.h"  | 
33  |  | #include "datum.h"  | 
34  |  | #include "global.h"  | 
35  |  | #include "tls-sig.h"  | 
36  |  | #include "num.h"  | 
37  |  | #include "x509/x509_int.h"  | 
38  |  | #include "x509/common.h"  | 
39  |  | #include "random.h"  | 
40  |  | #include "pk.h"  | 
41  |  | #include <nettle/dsa.h>  | 
42  |  | #include "dsa-fips.h"  | 
43  |  | #include "rsa-fips.h"  | 
44  |  | #include <nettle/rsa.h>  | 
45  |  | #ifndef HAVE_NETTLE_RSA_OAEP_SHA256_ENCRYPT  | 
46  |  | #include "int/rsa-oaep.h"  | 
47  |  | #endif  | 
48  |  | #include <gnutls/crypto.h>  | 
49  |  | #include <nettle/bignum.h>  | 
50  |  | #include <nettle/ecc.h>  | 
51  |  | #include <nettle/ecdsa.h>  | 
52  |  | #include <nettle/ecc-curve.h>  | 
53  |  | #include <nettle/curve25519.h>  | 
54  |  | #include <nettle/curve448.h>  | 
55  |  | #include <nettle/eddsa.h>  | 
56  |  | #include <nettle/version.h>  | 
57  |  | #if ENABLE_GOST  | 
58  |  | #if NEED_INT_ECC  | 
59  |  | #include "ecc/gostdsa.h"  | 
60  |  | #include "ecc-gost-curve.h"  | 
61  |  | #else  | 
62  |  | #include <nettle/gostdsa.h>  | 
63  | 0  | #define gost_point_mul_g ecc_point_mul_g  | 
64  | 0  | #define gost_point_set ecc_point_set  | 
65  |  | #endif  | 
66  |  | #include "gost/gostdsa2.h"  | 
67  |  | #endif  | 
68  |  | #include "int/ecdsa-compute-k.h"  | 
69  |  | #include "int/dsa-compute-k.h"  | 
70  |  | #include "gnettle.h"  | 
71  |  | #include "fips.h"  | 
72  |  | #include "dh.h"  | 
73  |  | #ifdef HAVE_LEANCRYPTO  | 
74  |  | #include <leancrypto.h>  | 
75  |  | #elif defined HAVE_LIBOQS  | 
76  |  | #include "dlwrap/oqs.h"  | 
77  |  | #include "liboqs/liboqs.h"  | 
78  |  | #endif  | 
79  |  | #include "attribute.h"  | 
80  |  |  | 
81  |  | static inline const struct ecc_curve *get_supported_nist_curve(int curve);  | 
82  |  | static inline const struct ecc_curve *get_supported_gost_curve(int curve);  | 
83  |  |  | 
84  |  | static inline const char *get_supported_nist_curve_order(int curve);  | 
85  |  | static inline const char *get_supported_nist_curve_modulus(int curve);  | 
86  |  |  | 
87  |  | /* When these callbacks are used for a nettle operation, the  | 
88  |  |  * caller must check the macro HAVE_LIB_ERROR() after the operation  | 
89  |  |  * is complete. If the macro is true, the operation is to be considered  | 
90  |  |  * failed (meaning the random generation failed).  | 
91  |  |  */  | 
92  |  | static void rnd_key_func(void *_ctx, size_t length, uint8_t *data)  | 
93  | 0  | { | 
94  | 0  |   if (gnutls_rnd(GNUTLS_RND_KEY, data, length) < 0) { | 
95  | 0  |     _gnutls_switch_lib_state(LIB_STATE_ERROR);  | 
96  | 0  |   }  | 
97  | 0  | }  | 
98  |  |  | 
99  |  | static void rnd_tmpkey_func(void *_ctx, size_t length, uint8_t *data)  | 
100  | 0  | { | 
101  | 0  |   if (gnutls_rnd(GNUTLS_RND_RANDOM, data, length) < 0) { | 
102  | 0  |     _gnutls_switch_lib_state(LIB_STATE_ERROR);  | 
103  | 0  |   }  | 
104  | 0  | }  | 
105  |  |  | 
106  |  | static void rnd_nonce_func(void *_ctx, size_t length, uint8_t *data)  | 
107  | 0  | { | 
108  | 0  |   if (gnutls_rnd(GNUTLS_RND_NONCE, data, length) < 0) { | 
109  | 0  |     _gnutls_switch_lib_state(LIB_STATE_ERROR);  | 
110  | 0  |   }  | 
111  | 0  | }  | 
112  |  |  | 
113  |  | static void rnd_datum_func(void *ctx, size_t length, uint8_t *data)  | 
114  | 0  | { | 
115  | 0  |   gnutls_datum_t *d = ctx;  | 
116  |  | 
  | 
117  | 0  |   if (length > d->size) { | 
118  | 0  |     memset(data, 0, length - d->size);  | 
119  | 0  |     memcpy(data + (length - d->size), d->data, d->size);  | 
120  | 0  |   } else { | 
121  | 0  |     memcpy(data, d->data, length);  | 
122  | 0  |   }  | 
123  | 0  | }  | 
124  |  |  | 
125  |  | static void rnd_nonce_func_fallback(void *_ctx, size_t length, uint8_t *data)  | 
126  | 0  | { | 
127  | 0  |   if (unlikely(_gnutls_get_lib_state() != LIB_STATE_SELFTEST)) { | 
128  | 0  |     _gnutls_switch_lib_state(LIB_STATE_ERROR);  | 
129  | 0  |   }  | 
130  |  | 
  | 
131  | 0  |   memset(data, 0xAA, length);  | 
132  | 0  | }  | 
133  |  |  | 
134  |  | static void ecc_scalar_zclear(struct ecc_scalar *s)  | 
135  | 0  | { | 
136  | 0  |   zeroize_key(s->p, ecc_size(s->ecc) * sizeof(mp_limb_t));  | 
137  | 0  |   ecc_scalar_clear(s);  | 
138  | 0  | }  | 
139  |  |  | 
140  |  | static void ecc_point_zclear(struct ecc_point *p)  | 
141  | 0  | { | 
142  | 0  |   zeroize_key(p->p, ecc_size_a(p->ecc) * sizeof(mp_limb_t));  | 
143  | 0  |   ecc_point_clear(p);  | 
144  | 0  | }  | 
145  |  |  | 
146  |  | static void _dsa_params_get(const gnutls_pk_params_st *pk_params,  | 
147  |  |           struct dsa_params *pub)  | 
148  | 0  | { | 
149  | 0  |   memcpy(pub->p, pk_params->params[DSA_P], SIZEOF_MPZT);  | 
150  |  | 
  | 
151  | 0  |   if (pk_params->params[DSA_Q])  | 
152  | 0  |     memcpy(&pub->q, pk_params->params[DSA_Q], SIZEOF_MPZT);  | 
153  | 0  |   memcpy(pub->g, pk_params->params[DSA_G], SIZEOF_MPZT);  | 
154  | 0  | }  | 
155  |  |  | 
156  |  | static void _rsa_params_to_privkey(const gnutls_pk_params_st *pk_params,  | 
157  |  |            struct rsa_private_key *priv)  | 
158  | 0  | { | 
159  | 0  |   memcpy(priv->d, pk_params->params[RSA_PRIV], SIZEOF_MPZT);  | 
160  | 0  |   memcpy(priv->p, pk_params->params[RSA_PRIME1], SIZEOF_MPZT);  | 
161  | 0  |   memcpy(priv->q, pk_params->params[RSA_PRIME2], SIZEOF_MPZT);  | 
162  | 0  |   memcpy(priv->c, pk_params->params[RSA_COEF], SIZEOF_MPZT);  | 
163  | 0  |   memcpy(priv->a, pk_params->params[RSA_E1], SIZEOF_MPZT);  | 
164  | 0  |   memcpy(priv->b, pk_params->params[RSA_E2], SIZEOF_MPZT);  | 
165  |  |   /* we do not rsa_private_key_prepare() because it involves a multiplication.  | 
166  |  |    * we call it once when we import the parameters */  | 
167  | 0  |   priv->size = nettle_mpz_sizeinbase_256_u(  | 
168  | 0  |     TOMPZ(pk_params->params[RSA_MODULUS]));  | 
169  | 0  | }  | 
170  |  |  | 
171  |  | /* returns a negative value on invalid pubkey */  | 
172  |  | static int _rsa_params_to_pubkey(const gnutls_pk_params_st *pk_params,  | 
173  |  |          struct rsa_public_key *pub)  | 
174  | 0  | { | 
175  | 0  |   memcpy(pub->n, pk_params->params[RSA_MODULUS], SIZEOF_MPZT);  | 
176  | 0  |   memcpy(pub->e, pk_params->params[RSA_PUB], SIZEOF_MPZT);  | 
177  | 0  |   if (rsa_public_key_prepare(pub) == 0)  | 
178  | 0  |     return gnutls_assert_val(GNUTLS_E_PK_INVALID_PUBKEY);  | 
179  |  |  | 
180  | 0  |   return 0;  | 
181  | 0  | }  | 
182  |  |  | 
183  |  | static int _ecc_params_to_privkey(const gnutls_pk_params_st *pk_params,  | 
184  |  |           struct ecc_scalar *priv,  | 
185  |  |           const struct ecc_curve *curve)  | 
186  | 0  | { | 
187  | 0  |   ecc_scalar_init(priv, curve);  | 
188  | 0  |   if (ecc_scalar_set(priv, pk_params->params[ECC_K]) == 0) { | 
189  | 0  |     ecc_scalar_clear(priv);  | 
190  | 0  |     return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
191  | 0  |   }  | 
192  |  |  | 
193  | 0  |   return 0;  | 
194  | 0  | }  | 
195  |  |  | 
196  |  | static int _ecc_params_to_pubkey(const gnutls_pk_params_st *pk_params,  | 
197  |  |          struct ecc_point *pub,  | 
198  |  |          const struct ecc_curve *curve)  | 
199  | 0  | { | 
200  | 0  |   ecc_point_init(pub, curve);  | 
201  | 0  |   if (ecc_point_set(pub, pk_params->params[ECC_X],  | 
202  | 0  |         pk_params->params[ECC_Y]) == 0) { | 
203  | 0  |     ecc_point_clear(pub);  | 
204  | 0  |     return gnutls_assert_val(GNUTLS_E_PK_INVALID_PUBKEY);  | 
205  | 0  |   }  | 
206  |  |  | 
207  | 0  |   return 0;  | 
208  | 0  | }  | 
209  |  |  | 
210  |  | #if ENABLE_GOST  | 
211  |  | static int _gost_params_to_privkey(const gnutls_pk_params_st *pk_params,  | 
212  |  |            struct ecc_scalar *priv,  | 
213  |  |            const struct ecc_curve *curve)  | 
214  | 0  | { | 
215  | 0  |   ecc_scalar_init(priv, curve);  | 
216  | 0  |   if (ecc_scalar_set(priv, pk_params->params[GOST_K]) == 0) { | 
217  | 0  |     ecc_scalar_clear(priv);  | 
218  | 0  |     return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
219  | 0  |   }  | 
220  |  |  | 
221  | 0  |   return 0;  | 
222  | 0  | }  | 
223  |  |  | 
224  |  | static int _gost_params_to_pubkey(const gnutls_pk_params_st *pk_params,  | 
225  |  |           struct ecc_point *pub,  | 
226  |  |           const struct ecc_curve *curve)  | 
227  | 0  | { | 
228  | 0  |   ecc_point_init(pub, curve);  | 
229  | 0  |   if (gost_point_set(pub, pk_params->params[GOST_X],  | 
230  | 0  |          pk_params->params[GOST_Y]) == 0) { | 
231  | 0  |     ecc_point_clear(pub);  | 
232  | 0  |     return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
233  | 0  |   }  | 
234  |  |  | 
235  | 0  |   return 0;  | 
236  | 0  | }  | 
237  |  | #endif  | 
238  |  |  | 
239  |  | static int ecc_shared_secret(struct ecc_scalar *private_key,  | 
240  |  |            struct ecc_point *public_key, void *out,  | 
241  |  |            unsigned size)  | 
242  | 0  | { | 
243  | 0  |   struct ecc_point r;  | 
244  | 0  |   mpz_t x, y;  | 
245  | 0  |   int ret = 0;  | 
246  |  | 
  | 
247  | 0  |   mpz_init(x);  | 
248  | 0  |   mpz_init(y);  | 
249  | 0  |   ecc_point_init(&r, public_key->ecc);  | 
250  |  | 
  | 
251  | 0  |   ecc_point_mul(&r, private_key, public_key);  | 
252  |  | 
  | 
253  | 0  |   ecc_point_get(&r, x, y);  | 
254  |  |  | 
255  |  |   /* Check if the point is not an identity element.  Note that this cannot  | 
256  |  |    * happen in nettle implementation, because it cannot represent an  | 
257  |  |    * infinity point. */  | 
258  | 0  |   if (mpz_cmp_ui(x, 0) == 0 && mpz_cmp_ui(y, 0) == 0) { | 
259  | 0  |     ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
260  | 0  |     goto cleanup;  | 
261  | 0  |   }  | 
262  |  |  | 
263  | 0  |   nettle_mpz_get_str_256(size, out, x);  | 
264  |  | 
  | 
265  | 0  | cleanup:  | 
266  | 0  |   mpz_clear(x);  | 
267  | 0  |   mpz_clear(y);  | 
268  | 0  |   ecc_point_clear(&r);  | 
269  |  | 
  | 
270  | 0  |   return ret;  | 
271  | 0  | }  | 
272  |  |  | 
273  | 0  | #define MAX_DH_BITS DEFAULT_MAX_VERIFY_BITS  | 
274  |  | /* This is used when we have no idea on the structure  | 
275  |  |  * of p-1 used by the peer. It is still a conservative  | 
276  |  |  * choice, but small than what we've been using before.  | 
277  |  |  */  | 
278  |  | #define DH_EXPONENT_SIZE(p_size) (2 * _gnutls_pk_bits_to_subgroup_bits(p_size))  | 
279  |  |  | 
280  |  | static inline int edwards_curve_mul(gnutls_pk_algorithm_t algo, uint8_t *q,  | 
281  |  |             const uint8_t *n, const uint8_t *p)  | 
282  | 0  | { | 
283  | 0  |   switch (algo) { | 
284  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
285  | 0  |     curve25519_mul(q, n, p);  | 
286  | 0  |     return 0;  | 
287  | 0  |   case GNUTLS_PK_ECDH_X448:  | 
288  | 0  |     curve448_mul(q, n, p);  | 
289  | 0  |     return 0;  | 
290  | 0  |   default:  | 
291  | 0  |     return gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
292  | 0  |   }  | 
293  | 0  | }  | 
294  |  |  | 
295  |  | /* This is used for DH or ECDH key derivation. In DH for example  | 
296  |  |  * it is given the peers Y and our x, and calculates Y^x  | 
297  |  |  */  | 
298  |  | static int _wrap_nettle_pk_derive(gnutls_pk_algorithm_t algo,  | 
299  |  |           gnutls_datum_t *out,  | 
300  |  |           const gnutls_pk_params_st *priv,  | 
301  |  |           const gnutls_pk_params_st *pub,  | 
302  |  |           const gnutls_datum_t *nonce,  | 
303  |  |           unsigned int flags)  | 
304  | 0  | { | 
305  | 0  |   int ret;  | 
306  | 0  |   bool not_approved = false;  | 
307  |  | 
  | 
308  | 0  |   switch (algo) { | 
309  | 0  |   case GNUTLS_PK_DH: { | 
310  | 0  |     bigint_t f, x, q, prime;  | 
311  | 0  |     bigint_t k = NULL, primesub1 = NULL, r = NULL;  | 
312  | 0  |     unsigned int bits;  | 
313  |  | 
  | 
314  | 0  |     if (nonce != NULL) { | 
315  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
316  | 0  |       goto cleanup;  | 
317  | 0  |     }  | 
318  |  |  | 
319  | 0  |     f = pub->params[DH_Y];  | 
320  | 0  |     x = priv->params[DH_X];  | 
321  | 0  |     q = priv->params[DH_Q];  | 
322  | 0  |     prime = priv->params[DH_P];  | 
323  |  | 
  | 
324  | 0  |     ret = _gnutls_mpi_init_multi(&k, &primesub1, &r, NULL);  | 
325  | 0  |     if (ret < 0) { | 
326  | 0  |       gnutls_assert();  | 
327  | 0  |       goto cleanup;  | 
328  | 0  |     }  | 
329  |  |  | 
330  | 0  |     ret = _gnutls_mpi_sub_ui(primesub1, prime, 1);  | 
331  | 0  |     if (ret < 0) { | 
332  | 0  |       gnutls_assert();  | 
333  | 0  |       goto dh_cleanup;  | 
334  | 0  |     }  | 
335  |  |  | 
336  |  |     /* check if f==0,1, or f >= p-1 */  | 
337  | 0  |     if ((_gnutls_mpi_cmp_ui(f, 1) == 0) ||  | 
338  | 0  |         (_gnutls_mpi_cmp_ui(f, 0) == 0) ||  | 
339  | 0  |         (_gnutls_mpi_cmp(f, primesub1) >= 0)) { | 
340  | 0  |       gnutls_assert();  | 
341  | 0  |       ret = GNUTLS_E_RECEIVED_ILLEGAL_PARAMETER;  | 
342  | 0  |       goto dh_cleanup;  | 
343  | 0  |     }  | 
344  |  |  | 
345  |  |     /* if we have Q check that y ^ q mod p == 1 */  | 
346  | 0  |     if (q != NULL) { | 
347  | 0  |       ret = _gnutls_mpi_powm(r, f, q, prime);  | 
348  | 0  |       if (ret < 0) { | 
349  | 0  |         gnutls_assert();  | 
350  | 0  |         goto dh_cleanup;  | 
351  | 0  |       }  | 
352  | 0  |       ret = _gnutls_mpi_cmp_ui(r, 1);  | 
353  | 0  |       if (ret != 0) { | 
354  | 0  |         gnutls_assert();  | 
355  | 0  |         ret = GNUTLS_E_RECEIVED_ILLEGAL_PARAMETER;  | 
356  | 0  |         goto dh_cleanup;  | 
357  | 0  |       }  | 
358  | 0  |     } else if ((flags & PK_DERIVE_TLS13) &&  | 
359  | 0  |          _gnutls_fips_mode_enabled()) { | 
360  |  |       /* Mandatory in FIPS mode for TLS 1.3 */  | 
361  | 0  |       ret = gnutls_assert_val(  | 
362  | 0  |         GNUTLS_E_RECEIVED_ILLEGAL_PARAMETER);  | 
363  | 0  |       goto dh_cleanup;  | 
364  | 0  |     }  | 
365  |  |  | 
366  |  |     /* prevent denial of service */  | 
367  | 0  |     bits = _gnutls_mpi_get_nbits(prime);  | 
368  | 0  |     if (bits == 0 || bits > MAX_DH_BITS) { | 
369  | 0  |       gnutls_assert();  | 
370  | 0  |       ret = GNUTLS_E_RECEIVED_ILLEGAL_PARAMETER;  | 
371  | 0  |       goto dh_cleanup;  | 
372  | 0  |     }  | 
373  |  |  | 
374  | 0  |     if (bits < 2048) { | 
375  | 0  |       not_approved = true;  | 
376  | 0  |     }  | 
377  |  | 
  | 
378  | 0  |     ret = _gnutls_mpi_powm(k, f, x, prime);  | 
379  | 0  |     if (ret < 0) { | 
380  | 0  |       gnutls_assert();  | 
381  | 0  |       goto dh_cleanup;  | 
382  | 0  |     }  | 
383  |  |  | 
384  |  |     /* check if k==0,1, or k = p-1 */  | 
385  | 0  |     if ((_gnutls_mpi_cmp_ui(k, 1) == 0) ||  | 
386  | 0  |         (_gnutls_mpi_cmp_ui(k, 0) == 0) ||  | 
387  | 0  |         (_gnutls_mpi_cmp(k, primesub1) == 0)) { | 
388  | 0  |       ret = gnutls_assert_val(  | 
389  | 0  |         GNUTLS_E_RECEIVED_ILLEGAL_PARAMETER);  | 
390  | 0  |       goto dh_cleanup;  | 
391  | 0  |     }  | 
392  |  |  | 
393  | 0  |     if (flags & PK_DERIVE_TLS13) { | 
394  | 0  |       ret = _gnutls_mpi_dprint_size(k, out, (bits + 7) / 8);  | 
395  | 0  |     } else { | 
396  | 0  |       ret = _gnutls_mpi_dprint(k, out);  | 
397  | 0  |     }  | 
398  |  | 
  | 
399  | 0  |     if (ret < 0) { | 
400  | 0  |       gnutls_assert();  | 
401  | 0  |       goto dh_cleanup;  | 
402  | 0  |     }  | 
403  |  |  | 
404  | 0  |     ret = 0;  | 
405  | 0  |   dh_cleanup:  | 
406  | 0  |     _gnutls_mpi_release(&r);  | 
407  | 0  |     _gnutls_mpi_release(&primesub1);  | 
408  | 0  |     zrelease_temp_mpi_key(&k);  | 
409  | 0  |     if (ret < 0)  | 
410  | 0  |       goto cleanup;  | 
411  |  |  | 
412  | 0  |     break;  | 
413  | 0  |   }  | 
414  | 0  |   case GNUTLS_PK_EC: { | 
415  | 0  |     struct ecc_scalar ecc_priv;  | 
416  | 0  |     struct ecc_point ecc_pub;  | 
417  | 0  |     const struct ecc_curve *curve;  | 
418  | 0  |     struct ecc_scalar n;  | 
419  | 0  |     struct ecc_scalar m;  | 
420  | 0  |     struct ecc_point r;  | 
421  | 0  |     mpz_t x, y, xx, yy, nn, mm;  | 
422  |  | 
  | 
423  | 0  |     out->data = NULL;  | 
424  |  | 
  | 
425  | 0  |     if (nonce != NULL) { | 
426  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
427  | 0  |       goto cleanup;  | 
428  | 0  |     }  | 
429  |  |  | 
430  | 0  |     curve = get_supported_nist_curve(priv->curve);  | 
431  | 0  |     if (curve == NULL) { | 
432  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
433  | 0  |       goto cleanup;  | 
434  | 0  |     }  | 
435  |  |  | 
436  |  |     /* P-192 is not supported in FIPS 140-3 */  | 
437  | 0  |     if (priv->curve == GNUTLS_ECC_CURVE_SECP192R1) { | 
438  | 0  |       not_approved = true;  | 
439  | 0  |     }  | 
440  |  | 
  | 
441  | 0  |     mpz_init(x);  | 
442  | 0  |     mpz_init(y);  | 
443  | 0  |     mpz_init(xx);  | 
444  | 0  |     mpz_init(yy);  | 
445  | 0  |     mpz_init(nn);  | 
446  | 0  |     mpz_init(mm);  | 
447  |  | 
  | 
448  | 0  |     ecc_scalar_init(&n, curve);  | 
449  | 0  |     ecc_scalar_init(&m, curve);  | 
450  | 0  |     ecc_point_init(&r, curve);  | 
451  |  | 
  | 
452  | 0  |     ret = _ecc_params_to_pubkey(pub, &ecc_pub, curve);  | 
453  | 0  |     if (ret < 0) { | 
454  | 0  |       gnutls_assert();  | 
455  | 0  |       goto ecc_fail_cleanup;  | 
456  | 0  |     }  | 
457  |  |  | 
458  | 0  |     ret = _ecc_params_to_privkey(priv, &ecc_priv, curve);  | 
459  | 0  |     if (ret < 0) { | 
460  | 0  |       ecc_point_clear(&ecc_pub);  | 
461  | 0  |       gnutls_assert();  | 
462  | 0  |       goto ecc_fail_cleanup;  | 
463  | 0  |     }  | 
464  |  |  | 
465  | 0  |     out->size = gnutls_ecc_curve_get_size(priv->curve);  | 
466  |  |     /*ecc_size(curve)*sizeof(mp_limb_t); */  | 
467  | 0  |     out->data = gnutls_malloc(out->size);  | 
468  | 0  |     if (out->data == NULL) { | 
469  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
470  | 0  |       goto ecc_cleanup;  | 
471  | 0  |     }  | 
472  |  |  | 
473  |  |     /* Perform ECC Full Public-Key Validation Routine  | 
474  |  |        * according to SP800-56A (revision 3), 5.6.2.3.3.  | 
475  |  |        */  | 
476  |  |  | 
477  |  |     /* Step 1: verify that Q is not an identity  | 
478  |  |        * element (an infinity point). Note that this  | 
479  |  |        * cannot happen in the nettle implementation,  | 
480  |  |        * because it cannot represent an infinity point  | 
481  |  |        * on curves. */  | 
482  | 0  |     ret = ecc_shared_secret(&ecc_priv, &ecc_pub, out->data,  | 
483  | 0  |           out->size);  | 
484  | 0  |     if (ret < 0) { | 
485  | 0  |       gnutls_free(out->data);  | 
486  | 0  |       goto ecc_cleanup;  | 
487  | 0  |     }  | 
488  |  | #ifdef ENABLE_FIPS140  | 
489  |  |     if (_gnutls_fips_mode_enabled()) { | 
490  |  |       const char *order, *modulus;  | 
491  |  |  | 
492  |  |       ecc_point_mul(&r, &ecc_priv, &ecc_pub);  | 
493  |  |       ecc_point_get(&r, x, y);  | 
494  |  |  | 
495  |  |       /* Step 2: verify that both coordinates of Q are  | 
496  |  |          * in the range [0, p - 1].  | 
497  |  |          *  | 
498  |  |          * Step 3: verify that Q lie on the curve  | 
499  |  |          *  | 
500  |  |          * Both checks are performed in nettle.  */  | 
501  |  |       if (!ecc_point_set(&r, x, y)) { | 
502  |  |         ret = gnutls_assert_val(  | 
503  |  |           GNUTLS_E_ILLEGAL_PARAMETER);  | 
504  |  |         goto ecc_cleanup;  | 
505  |  |       }  | 
506  |  |  | 
507  |  |       /* Step 4: verify that n * Q, where n is the  | 
508  |  |          * curve order, result in an identity element  | 
509  |  |          *  | 
510  |  |          * Since nettle internally cannot represent an  | 
511  |  |          * identity element on curves, we validate this  | 
512  |  |          * instead:  | 
513  |  |          *  | 
514  |  |          *   (n - 1) * Q = -Q  | 
515  |  |          *  | 
516  |  |          * That effectively means: n * Q = -Q + Q = O  | 
517  |  |          */  | 
518  |  |       order = get_supported_nist_curve_order(priv->curve);  | 
519  |  |       if (unlikely(order == NULL)) { | 
520  |  |         ret = gnutls_assert_val(  | 
521  |  |           GNUTLS_E_INTERNAL_ERROR);  | 
522  |  |         goto ecc_cleanup;  | 
523  |  |       }  | 
524  |  |  | 
525  |  |       ret = mpz_set_str(nn, order, 16);  | 
526  |  |       if (unlikely(ret < 0)) { | 
527  |  |         ret = gnutls_assert_val(  | 
528  |  |           GNUTLS_E_MPI_SCAN_FAILED);  | 
529  |  |         goto ecc_cleanup;  | 
530  |  |       }  | 
531  |  |  | 
532  |  |       modulus = get_supported_nist_curve_modulus(priv->curve);  | 
533  |  |       if (unlikely(modulus == NULL)) { | 
534  |  |         ret = gnutls_assert_val(  | 
535  |  |           GNUTLS_E_INTERNAL_ERROR);  | 
536  |  |         goto ecc_cleanup;  | 
537  |  |       }  | 
538  |  |  | 
539  |  |       ret = mpz_set_str(mm, modulus, 16);  | 
540  |  |       if (unlikely(ret < 0)) { | 
541  |  |         ret = gnutls_assert_val(  | 
542  |  |           GNUTLS_E_MPI_SCAN_FAILED);  | 
543  |  |         goto ecc_cleanup;  | 
544  |  |       }  | 
545  |  |  | 
546  |  |       /* (n - 1) * Q = -Q */  | 
547  |  |       mpz_sub_ui(nn, nn, 1);  | 
548  |  |       ecc_scalar_set(&n, nn);  | 
549  |  |       ecc_point_mul(&r, &n, &r);  | 
550  |  |       ecc_point_get(&r, xx, yy);  | 
551  |  |       mpz_sub(mm, mm, y);  | 
552  |  |  | 
553  |  |       if (mpz_cmp(xx, x) != 0 || mpz_cmp(yy, mm) != 0) { | 
554  |  |         ret = gnutls_assert_val(  | 
555  |  |           GNUTLS_E_ILLEGAL_PARAMETER);  | 
556  |  |         goto ecc_cleanup;  | 
557  |  |       }  | 
558  |  |     } else { | 
559  |  |       not_approved = true;  | 
560  |  |     }  | 
561  |  | #endif  | 
562  |  |  | 
563  | 0  |   ecc_cleanup:  | 
564  | 0  |     ecc_point_clear(&ecc_pub);  | 
565  | 0  |     ecc_scalar_zclear(&ecc_priv);  | 
566  | 0  |   ecc_fail_cleanup:  | 
567  | 0  |     mpz_clear(x);  | 
568  | 0  |     mpz_clear(y);  | 
569  | 0  |     mpz_clear(xx);  | 
570  | 0  |     mpz_clear(yy);  | 
571  | 0  |     mpz_clear(nn);  | 
572  | 0  |     mpz_clear(mm);  | 
573  | 0  |     ecc_point_clear(&r);  | 
574  | 0  |     ecc_scalar_clear(&n);  | 
575  | 0  |     ecc_scalar_clear(&m);  | 
576  | 0  |     if (ret < 0)  | 
577  | 0  |       goto cleanup;  | 
578  | 0  |     break;  | 
579  | 0  |   }  | 
580  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
581  | 0  |   case GNUTLS_PK_ECDH_X448: { | 
582  | 0  |     unsigned size = gnutls_ecc_curve_get_size(priv->curve);  | 
583  |  |  | 
584  |  |     /* Edwards curves are not approved */  | 
585  | 0  |     not_approved = true;  | 
586  |  | 
  | 
587  | 0  |     if (nonce != NULL) { | 
588  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
589  | 0  |       goto cleanup;  | 
590  | 0  |     }  | 
591  |  |  | 
592  |  |     /* The point is in pub, while the private part (scalar) in priv. */  | 
593  |  |  | 
594  | 0  |     if (size == 0 || priv->raw_priv.size != size) { | 
595  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
596  | 0  |       goto cleanup;  | 
597  | 0  |     }  | 
598  |  |  | 
599  | 0  |     out->data = gnutls_malloc(size);  | 
600  | 0  |     if (out->data == NULL) { | 
601  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
602  | 0  |       goto cleanup;  | 
603  | 0  |     }  | 
604  |  |  | 
605  | 0  |     out->size = size;  | 
606  |  | 
  | 
607  | 0  |     ret = edwards_curve_mul(algo, out->data, priv->raw_priv.data,  | 
608  | 0  |           pub->raw_pub.data);  | 
609  | 0  |     if (ret < 0)  | 
610  | 0  |       goto cleanup;  | 
611  |  |  | 
612  | 0  |     if (_gnutls_mem_is_zero(out->data, out->size)) { | 
613  | 0  |       gnutls_free(out->data);  | 
614  | 0  |       gnutls_assert();  | 
615  | 0  |       ret = GNUTLS_E_RECEIVED_ILLEGAL_PARAMETER;  | 
616  | 0  |       goto cleanup;  | 
617  | 0  |     }  | 
618  | 0  |     break;  | 
619  | 0  |   }  | 
620  | 0  | #if ENABLE_GOST  | 
621  | 0  |   case GNUTLS_PK_GOST_01:  | 
622  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
623  | 0  |   case GNUTLS_PK_GOST_12_512: { | 
624  | 0  |     struct ecc_scalar ecc_priv;  | 
625  | 0  |     struct ecc_point ecc_pub;  | 
626  | 0  |     const struct ecc_curve *curve;  | 
627  |  |  | 
628  |  |     /* GOST curves are not approved */  | 
629  | 0  |     not_approved = true;  | 
630  |  | 
  | 
631  | 0  |     out->data = NULL;  | 
632  |  | 
  | 
633  | 0  |     curve = get_supported_gost_curve(priv->curve);  | 
634  | 0  |     if (curve == NULL) { | 
635  | 0  |       gnutls_assert();  | 
636  | 0  |       ret = GNUTLS_E_ECC_UNSUPPORTED_CURVE;  | 
637  | 0  |       goto cleanup;  | 
638  | 0  |     }  | 
639  |  |  | 
640  | 0  |     if (nonce == NULL) { | 
641  | 0  |       gnutls_assert();  | 
642  | 0  |       ret = GNUTLS_E_INVALID_REQUEST;  | 
643  | 0  |       goto cleanup;  | 
644  | 0  |     }  | 
645  |  |  | 
646  | 0  |     ret = _gost_params_to_pubkey(pub, &ecc_pub, curve);  | 
647  | 0  |     if (ret < 0) { | 
648  | 0  |       gnutls_assert();  | 
649  | 0  |       goto cleanup;  | 
650  | 0  |     }  | 
651  |  |  | 
652  | 0  |     ret = _gost_params_to_privkey(priv, &ecc_priv, curve);  | 
653  | 0  |     if (ret < 0) { | 
654  | 0  |       ecc_point_clear(&ecc_pub);  | 
655  | 0  |       gnutls_assert();  | 
656  | 0  |       goto cleanup;  | 
657  | 0  |     }  | 
658  |  |  | 
659  | 0  |     out->size = 2 * gnutls_ecc_curve_get_size(priv->curve);  | 
660  | 0  |     out->data = gnutls_malloc(out->size);  | 
661  | 0  |     if (out->data == NULL) { | 
662  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
663  | 0  |       goto gost_cleanup;  | 
664  | 0  |     }  | 
665  |  |  | 
666  | 0  |     gostdsa_vko(&ecc_priv, &ecc_pub, nonce->size, nonce->data,  | 
667  | 0  |           out->data);  | 
668  |  | 
  | 
669  | 0  |   gost_cleanup:  | 
670  | 0  |     ecc_point_clear(&ecc_pub);  | 
671  | 0  |     ecc_scalar_zclear(&ecc_priv);  | 
672  | 0  |     if (ret < 0)  | 
673  | 0  |       goto cleanup;  | 
674  | 0  |     break;  | 
675  | 0  |   }  | 
676  | 0  | #endif  | 
677  | 0  |   default:  | 
678  | 0  |     gnutls_assert();  | 
679  | 0  |     ret = GNUTLS_E_INTERNAL_ERROR;  | 
680  | 0  |     goto cleanup;  | 
681  | 0  |   }  | 
682  |  |  | 
683  | 0  |   ret = 0;  | 
684  |  | 
  | 
685  | 0  | cleanup:  | 
686  | 0  |   if (ret < 0) { | 
687  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_ERROR);  | 
688  | 0  |   } else if (not_approved) { | 
689  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_NOT_APPROVED);  | 
690  | 0  |   } else { | 
691  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_APPROVED);  | 
692  | 0  |   }  | 
693  |  | 
  | 
694  | 0  |   return ret;  | 
695  | 0  | }  | 
696  |  |  | 
697  |  | #ifdef HAVE_LEANCRYPTO  | 
698  |  | static enum lc_kyber_type ml_kem_pk_to_lc_kyber_type(gnutls_pk_algorithm_t algo)  | 
699  |  | { | 
700  |  |   switch (algo) { | 
701  |  | #ifdef LC_KYBER_768_ENABLED  | 
702  |  |   case GNUTLS_PK_MLKEM768:  | 
703  |  |     return LC_KYBER_768;  | 
704  |  | #endif  | 
705  |  | #ifdef LC_KYBER_1024_ENABLED  | 
706  |  |   case GNUTLS_PK_MLKEM1024:  | 
707  |  |     return LC_KYBER_1024;  | 
708  |  | #endif  | 
709  |  |   default:  | 
710  |  |     return gnutls_assert_val(LC_KYBER_UNKNOWN);  | 
711  |  |   }  | 
712  |  | }  | 
713  |  |  | 
714  |  | static int ml_kem_exists(gnutls_pk_algorithm_t algo)  | 
715  |  | { | 
716  |  |   return ml_kem_pk_to_lc_kyber_type(algo) != LC_KYBER_UNKNOWN;  | 
717  |  | }  | 
718  |  |  | 
719  |  | static int ml_kem_encaps(gnutls_pk_algorithm_t algo, gnutls_datum_t *ciphertext,  | 
720  |  |        gnutls_datum_t *shared_secret,  | 
721  |  |        const gnutls_datum_t *pub)  | 
722  |  | { | 
723  |  |   enum lc_kyber_type type;  | 
724  |  |   struct lc_kyber_ct ct;  | 
725  |  |   struct lc_kyber_ss ss;  | 
726  |  |   struct lc_kyber_pk pk;  | 
727  |  |   gnutls_datum_t tmp_ciphertext = { NULL, 0 }; | 
728  |  |   gnutls_datum_t tmp_shared_secret = { NULL, 0 }; | 
729  |  |   uint8_t *ptr;  | 
730  |  |   size_t len;  | 
731  |  |   int ret;  | 
732  |  |  | 
733  |  |   type = ml_kem_pk_to_lc_kyber_type(algo);  | 
734  |  |   if (type == LC_KYBER_UNKNOWN)  | 
735  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
736  |  |  | 
737  |  |   ret = lc_kyber_pk_load(&pk, pub->data, pub->size);  | 
738  |  |   if (ret < 0 || lc_kyber_pk_type(&pk) != type) { | 
739  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
740  |  |     goto cleanup;  | 
741  |  |   }  | 
742  |  |  | 
743  |  |   ret = lc_kyber_enc(&ct, &ss, &pk);  | 
744  |  |   if (ret < 0) { | 
745  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_ENCRYPTION_FAILED);  | 
746  |  |     goto cleanup;  | 
747  |  |   }  | 
748  |  |  | 
749  |  |   ret = lc_kyber_ct_ptr(&ptr, &len, &ct);  | 
750  |  |   if (ret < 0) { | 
751  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
752  |  |     goto cleanup;  | 
753  |  |   }  | 
754  |  |   ret = _gnutls_set_datum(&tmp_ciphertext, ptr, len);  | 
755  |  |   if (ret < 0) { | 
756  |  |     gnutls_assert();  | 
757  |  |     goto cleanup;  | 
758  |  |   }  | 
759  |  |  | 
760  |  |   ret = lc_kyber_ss_ptr(&ptr, &len, &ss);  | 
761  |  |   if (ret < 0) { | 
762  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
763  |  |     goto cleanup;  | 
764  |  |   }  | 
765  |  |   ret = _gnutls_set_datum(&tmp_shared_secret, ptr, len);  | 
766  |  |   if (ret < 0) { | 
767  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
768  |  |     goto cleanup;  | 
769  |  |   }  | 
770  |  |  | 
771  |  |   *ciphertext = _gnutls_steal_datum(&tmp_ciphertext);  | 
772  |  |   *shared_secret = _gnutls_steal_datum(&tmp_shared_secret);  | 
773  |  |  | 
774  |  |   ret = 0;  | 
775  |  |  | 
776  |  | cleanup:  | 
777  |  |   _gnutls_free_datum(&tmp_ciphertext);  | 
778  |  |   _gnutls_free_key_datum(&tmp_shared_secret);  | 
779  |  |   zeroize_key(&pk, sizeof(pk));  | 
780  |  |   return ret;  | 
781  |  | }  | 
782  |  |  | 
783  |  | static int ml_kem_decaps(gnutls_pk_algorithm_t algo,  | 
784  |  |        gnutls_datum_t *shared_secret,  | 
785  |  |        const gnutls_datum_t *ciphertext,  | 
786  |  |        const gnutls_datum_t *priv)  | 
787  |  | { | 
788  |  |   int ret;  | 
789  |  |   enum lc_kyber_type type;  | 
790  |  |   struct lc_kyber_ss ss;  | 
791  |  |   struct lc_kyber_ct ct;  | 
792  |  |   struct lc_kyber_sk sk;  | 
793  |  |   gnutls_datum_t tmp_shared_secret = { NULL, 0 }; | 
794  |  |   uint8_t *ptr;  | 
795  |  |   size_t len;  | 
796  |  |  | 
797  |  |   type = ml_kem_pk_to_lc_kyber_type(algo);  | 
798  |  |   if (type == LC_KYBER_UNKNOWN)  | 
799  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
800  |  |  | 
801  |  |   ret = lc_kyber_sk_load(&sk, priv->data, priv->size);  | 
802  |  |   if (ret < 0 || lc_kyber_sk_type(&sk) != type) { | 
803  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
804  |  |     goto cleanup;  | 
805  |  |   }  | 
806  |  |  | 
807  |  |   ret = lc_kyber_ct_load(&ct, ciphertext->data, ciphertext->size);  | 
808  |  |   if (ret < 0 || lc_kyber_ct_type(&ct) != type) { | 
809  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
810  |  |     goto cleanup;  | 
811  |  |   }  | 
812  |  |  | 
813  |  |   ret = lc_kyber_dec(&ss, &ct, &sk);  | 
814  |  |   if (ret < 0) { | 
815  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_DECRYPTION_FAILED);  | 
816  |  |     goto cleanup;  | 
817  |  |   }  | 
818  |  |  | 
819  |  |   ret = lc_kyber_ss_ptr(&ptr, &len, &ss);  | 
820  |  |   if (ret < 0) { | 
821  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
822  |  |     goto cleanup;  | 
823  |  |   }  | 
824  |  |  | 
825  |  |   ret = _gnutls_set_datum(&tmp_shared_secret, ptr, len);  | 
826  |  |   if (ret < 0) { | 
827  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
828  |  |     goto cleanup;  | 
829  |  |   }  | 
830  |  |  | 
831  |  |   *shared_secret = _gnutls_steal_datum(&tmp_shared_secret);  | 
832  |  |  | 
833  |  |   ret = 0;  | 
834  |  |  | 
835  |  | cleanup:  | 
836  |  |   _gnutls_free_key_datum(&tmp_shared_secret);  | 
837  |  |   zeroize_key(&ss, sizeof(ss));  | 
838  |  |   zeroize_key(&sk, sizeof(sk));  | 
839  |  |   return ret;  | 
840  |  | }  | 
841  |  |  | 
842  |  | static int ml_kem_generate_keypair(gnutls_pk_algorithm_t algo,  | 
843  |  |            gnutls_datum_t *raw_priv,  | 
844  |  |            gnutls_datum_t *raw_pub)  | 
845  |  | { | 
846  |  |   int ret;  | 
847  |  |   enum lc_kyber_type type;  | 
848  |  |   struct lc_kyber_sk sk;  | 
849  |  |   struct lc_kyber_pk pk;  | 
850  |  |   gnutls_datum_t tmp_raw_priv = { NULL, 0 }; | 
851  |  |   gnutls_datum_t tmp_raw_pub = { NULL, 0 }; | 
852  |  |   uint8_t *ptr;  | 
853  |  |   size_t len;  | 
854  |  |  | 
855  |  |   type = ml_kem_pk_to_lc_kyber_type(algo);  | 
856  |  |   if (type == LC_KYBER_UNKNOWN)  | 
857  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
858  |  |  | 
859  |  |   ret = lc_kyber_keypair(&pk, &sk, lc_seeded_rng, type);  | 
860  |  |   if (ret < 0) { | 
861  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
862  |  |     goto cleanup;  | 
863  |  |   }  | 
864  |  |  | 
865  |  |   ret = lc_kyber_sk_ptr(&ptr, &len, &sk);  | 
866  |  |   if (ret < 0) { | 
867  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
868  |  |     goto cleanup;  | 
869  |  |   }  | 
870  |  |  | 
871  |  |   ret = _gnutls_set_datum(&tmp_raw_priv, ptr, len);  | 
872  |  |   if (ret < 0) { | 
873  |  |     gnutls_assert();  | 
874  |  |     goto cleanup;  | 
875  |  |   }  | 
876  |  |  | 
877  |  |   ret = lc_kyber_pk_ptr(&ptr, &len, &pk);  | 
878  |  |   if (ret < 0) { | 
879  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
880  |  |     goto cleanup;  | 
881  |  |   }  | 
882  |  |  | 
883  |  |   ret = _gnutls_set_datum(&tmp_raw_pub, ptr, len);  | 
884  |  |   if (ret < 0) { | 
885  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
886  |  |     goto cleanup;  | 
887  |  |   }  | 
888  |  |  | 
889  |  |   *raw_priv = _gnutls_steal_datum(&tmp_raw_priv);  | 
890  |  |   *raw_pub = _gnutls_steal_datum(&tmp_raw_pub);  | 
891  |  |  | 
892  |  |   ret = 0;  | 
893  |  |  | 
894  |  | cleanup:  | 
895  |  |   _gnutls_free_key_datum(&tmp_raw_priv);  | 
896  |  |   _gnutls_free_key_datum(&tmp_raw_pub);  | 
897  |  |   zeroize_key(&pk, sizeof(pk));  | 
898  |  |   zeroize_key(&sk, sizeof(sk));  | 
899  |  |   return ret;  | 
900  |  | }  | 
901  |  | #elif defined HAVE_LIBOQS  | 
902  |  | static const char *ml_kem_pk_to_liboqs_algo(gnutls_pk_algorithm_t algo)  | 
903  |  | { | 
904  |  |   switch (algo) { | 
905  |  |   case GNUTLS_PK_MLKEM768:  | 
906  |  |     return OQS_KEM_alg_ml_kem_768;  | 
907  |  |   case GNUTLS_PK_EXP_KYBER768:  | 
908  |  |     return OQS_KEM_alg_kyber_768;  | 
909  |  |   case GNUTLS_PK_MLKEM1024:  | 
910  |  |     return OQS_KEM_alg_ml_kem_1024;  | 
911  |  |   default:  | 
912  |  |     gnutls_assert();  | 
913  |  |     return NULL;  | 
914  |  |   }  | 
915  |  | }  | 
916  |  |  | 
917  |  | static int ml_kem_exists(gnutls_pk_algorithm_t algo)  | 
918  |  | { | 
919  |  |   const char *algo_name;  | 
920  |  |  | 
921  |  |   if (_gnutls_liboqs_ensure() < 0)  | 
922  |  |     return 0;  | 
923  |  |  | 
924  |  |   algo_name = ml_kem_pk_to_liboqs_algo(algo);  | 
925  |  |   return algo_name != NULL &&  | 
926  |  |          GNUTLS_OQS_FUNC(OQS_KEM_alg_is_enabled)(algo_name);  | 
927  |  | }  | 
928  |  |  | 
929  |  | static int ml_kem_encaps(gnutls_pk_algorithm_t algo, gnutls_datum_t *ciphertext,  | 
930  |  |        gnutls_datum_t *shared_secret,  | 
931  |  |        const gnutls_datum_t *pub)  | 
932  |  | { | 
933  |  |   int ret;  | 
934  |  |   OQS_KEM *kem = NULL;  | 
935  |  |   const char *algo_name;  | 
936  |  |   gnutls_datum_t tmp_ciphertext = { NULL, 0 }; | 
937  |  |   gnutls_datum_t tmp_shared_secret = { NULL, 0 }; | 
938  |  |   OQS_STATUS rc;  | 
939  |  |  | 
940  |  |   if (_gnutls_liboqs_ensure() < 0)  | 
941  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
942  |  |  | 
943  |  |   algo_name = ml_kem_pk_to_liboqs_algo(algo);  | 
944  |  |   if (algo_name == NULL ||  | 
945  |  |       !GNUTLS_OQS_FUNC(OQS_KEM_alg_is_enabled)(algo_name))  | 
946  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
947  |  |  | 
948  |  |   kem = GNUTLS_OQS_FUNC(OQS_KEM_new)(algo_name);  | 
949  |  |   if (kem == NULL)  | 
950  |  |     return gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
951  |  |  | 
952  |  |   tmp_ciphertext.size = kem->length_ciphertext;  | 
953  |  |   tmp_ciphertext.data = gnutls_malloc(tmp_ciphertext.size);  | 
954  |  |   if (tmp_ciphertext.data == NULL) { | 
955  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
956  |  |     goto cleanup;  | 
957  |  |   }  | 
958  |  |  | 
959  |  |   tmp_shared_secret.size = kem->length_shared_secret;  | 
960  |  |   tmp_shared_secret.data = gnutls_malloc(tmp_shared_secret.size);  | 
961  |  |   if (tmp_shared_secret.data == NULL) { | 
962  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
963  |  |     goto cleanup;  | 
964  |  |   }  | 
965  |  |  | 
966  |  |   rc = GNUTLS_OQS_FUNC(OQS_KEM_encaps)(kem, tmp_ciphertext.data,  | 
967  |  |                tmp_shared_secret.data, pub->data);  | 
968  |  |   if (rc != OQS_SUCCESS) { | 
969  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
970  |  |     goto cleanup;  | 
971  |  |   }  | 
972  |  |  | 
973  |  |   *ciphertext = _gnutls_steal_datum(&tmp_ciphertext);  | 
974  |  |   *shared_secret = _gnutls_steal_datum(&tmp_shared_secret);  | 
975  |  |  | 
976  |  |   ret = 0;  | 
977  |  |  | 
978  |  | cleanup:  | 
979  |  |   _gnutls_free_datum(&tmp_ciphertext);  | 
980  |  |   _gnutls_free_key_datum(&tmp_shared_secret);  | 
981  |  |   GNUTLS_OQS_FUNC(OQS_KEM_free)(kem);  | 
982  |  |   return ret;  | 
983  |  | }  | 
984  |  |  | 
985  |  | static int ml_kem_decaps(gnutls_pk_algorithm_t algo,  | 
986  |  |        gnutls_datum_t *shared_secret,  | 
987  |  |        const gnutls_datum_t *ciphertext,  | 
988  |  |        const gnutls_datum_t *priv)  | 
989  |  | { | 
990  |  |   int ret;  | 
991  |  |   OQS_KEM *kem = NULL;  | 
992  |  |   const char *algo_name;  | 
993  |  |   gnutls_datum_t tmp_shared_secret = { NULL, 0 }; | 
994  |  |   OQS_STATUS rc;  | 
995  |  |  | 
996  |  |   if (_gnutls_liboqs_ensure() < 0)  | 
997  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
998  |  |  | 
999  |  |   algo_name = ml_kem_pk_to_liboqs_algo(algo);  | 
1000  |  |   if (algo_name == NULL ||  | 
1001  |  |       !GNUTLS_OQS_FUNC(OQS_KEM_alg_is_enabled)(algo_name))  | 
1002  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
1003  |  |  | 
1004  |  |   kem = GNUTLS_OQS_FUNC(OQS_KEM_new)(algo_name);  | 
1005  |  |   if (kem == NULL)  | 
1006  |  |     return gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1007  |  |  | 
1008  |  |   shared_secret->data = gnutls_malloc(kem->length_shared_secret);  | 
1009  |  |   if (shared_secret->data == NULL) { | 
1010  |  |     GNUTLS_OQS_FUNC(OQS_KEM_free)(kem);  | 
1011  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1012  |  |     goto cleanup;  | 
1013  |  |   }  | 
1014  |  |   shared_secret->size = kem->length_shared_secret;  | 
1015  |  |  | 
1016  |  |   rc = GNUTLS_OQS_FUNC(OQS_KEM_decaps)(kem, shared_secret->data,  | 
1017  |  |                ciphertext->data, priv->data);  | 
1018  |  |   if (rc != OQS_SUCCESS) { | 
1019  |  |     GNUTLS_OQS_FUNC(OQS_KEM_free)(kem);  | 
1020  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
1021  |  |     goto cleanup;  | 
1022  |  |   }  | 
1023  |  |  | 
1024  |  |   *shared_secret = _gnutls_steal_datum(&tmp_shared_secret);  | 
1025  |  |  | 
1026  |  |   ret = 0;  | 
1027  |  |  | 
1028  |  | cleanup:  | 
1029  |  |   _gnutls_free_key_datum(&tmp_shared_secret);  | 
1030  |  |   GNUTLS_OQS_FUNC(OQS_KEM_free)(kem);  | 
1031  |  |   return ret;  | 
1032  |  | }  | 
1033  |  |  | 
1034  |  | static int ml_kem_generate_keypair(gnutls_pk_algorithm_t algo,  | 
1035  |  |            gnutls_datum_t *raw_priv,  | 
1036  |  |            gnutls_datum_t *raw_pub)  | 
1037  |  | { | 
1038  |  |   int ret;  | 
1039  |  |   OQS_KEM *kem = NULL;  | 
1040  |  |   const char *algo_name;  | 
1041  |  |   gnutls_datum_t tmp_raw_priv = { NULL, 0 }; | 
1042  |  |   gnutls_datum_t tmp_raw_pub = { NULL, 0 }; | 
1043  |  |   OQS_STATUS rc;  | 
1044  |  |  | 
1045  |  |   if (_gnutls_liboqs_ensure() < 0) { | 
1046  |  |     ret = gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
1047  |  |     goto cleanup;  | 
1048  |  |   }  | 
1049  |  |  | 
1050  |  |   algo_name = ml_kem_pk_to_liboqs_algo(algo);  | 
1051  |  |   if (algo_name == NULL ||  | 
1052  |  |       !GNUTLS_OQS_FUNC(OQS_KEM_alg_is_enabled)(algo_name)) { | 
1053  |  |     ret = gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
1054  |  |     goto cleanup;  | 
1055  |  |   }  | 
1056  |  |  | 
1057  |  |   kem = GNUTLS_OQS_FUNC(OQS_KEM_new)(algo_name);  | 
1058  |  |   if (kem == NULL) { | 
1059  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1060  |  |     goto cleanup;  | 
1061  |  |   }  | 
1062  |  |  | 
1063  |  |   tmp_raw_priv.size = kem->length_secret_key;  | 
1064  |  |   tmp_raw_priv.data = gnutls_malloc(tmp_raw_priv.size);  | 
1065  |  |   if (tmp_raw_priv.data == NULL) { | 
1066  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1067  |  |     goto cleanup;  | 
1068  |  |   }  | 
1069  |  |  | 
1070  |  |   tmp_raw_pub.size = kem->length_public_key;  | 
1071  |  |   tmp_raw_pub.data = gnutls_malloc(tmp_raw_pub.size);  | 
1072  |  |   if (tmp_raw_pub.data == NULL) { | 
1073  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1074  |  |     goto cleanup;  | 
1075  |  |   }  | 
1076  |  |  | 
1077  |  |   rc = GNUTLS_OQS_FUNC(OQS_KEM_keypair)(kem, tmp_raw_pub.data,  | 
1078  |  |                 tmp_raw_priv.data);  | 
1079  |  |   if (rc != OQS_SUCCESS) { | 
1080  |  |     ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
1081  |  |     goto cleanup;  | 
1082  |  |   }  | 
1083  |  |  | 
1084  |  |   *raw_priv = _gnutls_steal_datum(&tmp_raw_priv);  | 
1085  |  |   *raw_pub = _gnutls_steal_datum(&tmp_raw_pub);  | 
1086  |  |  | 
1087  |  |   ret = 0;  | 
1088  |  |  | 
1089  |  | cleanup:  | 
1090  |  |   _gnutls_free_key_datum(&tmp_raw_priv);  | 
1091  |  |   _gnutls_free_key_datum(&tmp_raw_pub);  | 
1092  |  |   GNUTLS_OQS_FUNC(OQS_KEM_free)(kem);  | 
1093  |  |   return ret;  | 
1094  |  | }  | 
1095  |  | #else  | 
1096  |  | static int ml_kem_exists(gnutls_pk_algorithm_t algo MAYBE_UNUSED)  | 
1097  | 0  | { | 
1098  | 0  |   return 0;  | 
1099  | 0  | }  | 
1100  |  |  | 
1101  |  | static int ml_kem_encaps(gnutls_pk_algorithm_t algo MAYBE_UNUSED,  | 
1102  |  |        gnutls_datum_t *ciphertext MAYBE_UNUSED,  | 
1103  |  |        gnutls_datum_t *shared_secret MAYBE_UNUSED,  | 
1104  |  |        const gnutls_datum_t *pub MAYBE_UNUSED)  | 
1105  | 0  | { | 
1106  | 0  |   return gnutls_assert_val(GNUTLS_E_UNKNOWN_ALGORITHM);  | 
1107  | 0  | }  | 
1108  |  |  | 
1109  |  | static int ml_kem_decaps(gnutls_pk_algorithm_t algo MAYBE_UNUSED,  | 
1110  |  |        gnutls_datum_t *shared_secret MAYBE_UNUSED,  | 
1111  |  |        const gnutls_datum_t *ciphertext MAYBE_UNUSED,  | 
1112  |  |        const gnutls_datum_t *priv MAYBE_UNUSED)  | 
1113  | 0  | { | 
1114  | 0  |   return gnutls_assert_val(GNUTLS_E_UNKNOWN_ALGORITHM);  | 
1115  | 0  | }  | 
1116  |  |  | 
1117  |  | static int ml_kem_generate_keypair(gnutls_pk_algorithm_t algo MAYBE_UNUSED,  | 
1118  |  |            gnutls_datum_t *raw_priv MAYBE_UNUSED,  | 
1119  |  |            gnutls_datum_t *raw_pub MAYBE_UNUSED)  | 
1120  | 0  | { | 
1121  | 0  |   return gnutls_assert_val(GNUTLS_E_UNKNOWN_ALGORITHM);  | 
1122  | 0  | }  | 
1123  |  | #endif  | 
1124  |  |  | 
1125  |  | static int _wrap_nettle_pk_encaps(gnutls_pk_algorithm_t algo,  | 
1126  |  |           gnutls_datum_t *ciphertext,  | 
1127  |  |           gnutls_datum_t *shared_secret,  | 
1128  |  |           const gnutls_datum_t *pub)  | 
1129  | 0  | { | 
1130  | 0  |   switch (algo) { | 
1131  | 0  |   case GNUTLS_PK_MLKEM768:  | 
1132  | 0  |   case GNUTLS_PK_MLKEM1024:  | 
1133  |  | #ifdef HAVE_LIBOQS  | 
1134  |  |   case GNUTLS_PK_EXP_KYBER768:  | 
1135  |  | #endif  | 
1136  | 0  |     return ml_kem_encaps(algo, ciphertext, shared_secret, pub);  | 
1137  | 0  |   default:  | 
1138  | 0  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_ALGORITHM);  | 
1139  | 0  |   }  | 
1140  | 0  | }  | 
1141  |  |  | 
1142  |  | static int _wrap_nettle_pk_decaps(gnutls_pk_algorithm_t algo,  | 
1143  |  |           gnutls_datum_t *shared_secret,  | 
1144  |  |           const gnutls_datum_t *ciphertext,  | 
1145  |  |           const gnutls_datum_t *priv)  | 
1146  | 0  | { | 
1147  | 0  |   switch (algo) { | 
1148  | 0  |   case GNUTLS_PK_MLKEM768:  | 
1149  | 0  |   case GNUTLS_PK_MLKEM1024:  | 
1150  |  | #ifdef HAVE_LIBOQS  | 
1151  |  |   case GNUTLS_PK_EXP_KYBER768:  | 
1152  |  | #endif  | 
1153  | 0  |     return ml_kem_decaps(algo, shared_secret, ciphertext, priv);  | 
1154  | 0  |   default:  | 
1155  | 0  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_ALGORITHM);  | 
1156  | 0  |   }  | 
1157  | 0  | }  | 
1158  |  |  | 
1159  |  | /* This wraps nettle_rsa_encrypt so it returns ciphertext as a byte  | 
1160  |  |  * array instead of a mpz_t value.  Returns 1 on success; 0 otherwise.  | 
1161  |  |  */  | 
1162  |  | static inline int _rsa_encrypt(const struct rsa_public_key *key, void *rnd_ctx,  | 
1163  |  |              nettle_random_func *rnd_func, size_t length,  | 
1164  |  |              const uint8_t *message, uint8_t *ciphertext)  | 
1165  | 0  | { | 
1166  | 0  |   mpz_t p;  | 
1167  | 0  |   int ret;  | 
1168  |  | 
  | 
1169  | 0  |   mpz_init(p);  | 
1170  |  | 
  | 
1171  | 0  |   ret = rsa_encrypt(key, rnd_ctx, rnd_func, length, message, p);  | 
1172  |  | 
  | 
1173  | 0  |   if (ret == 0) { | 
1174  | 0  |     gnutls_assert();  | 
1175  | 0  |     goto cleanup;  | 
1176  | 0  |   }  | 
1177  |  |  | 
1178  | 0  |   if (_gnutls_mpi_bprint_size(p, ciphertext, key->size) < 0) { | 
1179  | 0  |     gnutls_assert();  | 
1180  | 0  |     goto cleanup;  | 
1181  | 0  |   }  | 
1182  |  |  | 
1183  | 0  | cleanup:  | 
1184  | 0  |   mpz_clear(p);  | 
1185  | 0  |   return ret;  | 
1186  | 0  | }  | 
1187  |  |  | 
1188  |  | /* This wraps nettle_rsa_oaep_sha*_encrypt to parametrize the function  | 
1189  |  |  * calls with a DIG argument.  Returns 1 on success; 0 otherwise.  | 
1190  |  |  */  | 
1191  |  | static inline int _rsa_oaep_encrypt(gnutls_digest_algorithm_t dig,  | 
1192  |  |             const struct rsa_public_key *pub,  | 
1193  |  |             void *rnd_ctx, nettle_random_func *rnd_func,  | 
1194  |  |             size_t label_length, const uint8_t *label,  | 
1195  |  |             size_t length, const uint8_t *message,  | 
1196  |  |             uint8_t *ciphertext)  | 
1197  | 0  | { | 
1198  | 0  |   int (*encrypt_func)(const struct rsa_public_key *, void *,  | 
1199  | 0  |           nettle_random_func *, size_t, const uint8_t *,  | 
1200  | 0  |           size_t, const uint8_t *, uint8_t *);  | 
1201  |  | 
  | 
1202  | 0  |   switch (dig) { | 
1203  | 0  |   case GNUTLS_DIG_SHA256:  | 
1204  | 0  |     encrypt_func = rsa_oaep_sha256_encrypt;  | 
1205  | 0  |     break;  | 
1206  | 0  |   case GNUTLS_DIG_SHA384:  | 
1207  | 0  |     encrypt_func = rsa_oaep_sha384_encrypt;  | 
1208  | 0  |     break;  | 
1209  | 0  |   case GNUTLS_DIG_SHA512:  | 
1210  | 0  |     encrypt_func = rsa_oaep_sha512_encrypt;  | 
1211  | 0  |     break;  | 
1212  | 0  |   default:  | 
1213  | 0  |     gnutls_assert();  | 
1214  | 0  |     return 0;  | 
1215  | 0  |   }  | 
1216  |  |  | 
1217  | 0  |   return encrypt_func(pub, rnd_ctx, rnd_func, label_length, label, length,  | 
1218  | 0  |           message, ciphertext);  | 
1219  | 0  | }  | 
1220  |  |  | 
1221  |  | static int _wrap_nettle_pk_encrypt(gnutls_pk_algorithm_t algo,  | 
1222  |  |            gnutls_datum_t *ciphertext,  | 
1223  |  |            const gnutls_datum_t *plaintext,  | 
1224  |  |            const gnutls_pk_params_st *pk_params)  | 
1225  | 0  | { | 
1226  | 0  |   int ret;  | 
1227  | 0  |   bool not_approved = false;  | 
1228  | 0  |   uint8_t *buf = NULL;  | 
1229  |  | 
  | 
1230  | 0  |   FAIL_IF_LIB_ERROR;  | 
1231  |  |  | 
1232  | 0  |   if (algo == GNUTLS_PK_RSA && pk_params->spki.pk == GNUTLS_PK_RSA_OAEP) { | 
1233  | 0  |     algo = GNUTLS_PK_RSA_OAEP;  | 
1234  | 0  |   }  | 
1235  |  | 
  | 
1236  | 0  |   switch (algo) { | 
1237  | 0  |   case GNUTLS_PK_RSA: { | 
1238  | 0  |     struct rsa_public_key pub;  | 
1239  | 0  |     nettle_random_func *random_func;  | 
1240  |  | 
  | 
1241  | 0  |     if (!_gnutls_config_is_rsa_pkcs1_encrypt_allowed()) { | 
1242  | 0  |       ret = gnutls_assert_val(  | 
1243  | 0  |         GNUTLS_E_UNSUPPORTED_ENCRYPTION_ALGORITHM);  | 
1244  | 0  |       goto cleanup;  | 
1245  | 0  |     }  | 
1246  |  |  | 
1247  |  |     /* RSA encryption with PKCS#1 v1.5 padding is not approved */  | 
1248  | 0  |     not_approved = true;  | 
1249  |  | 
  | 
1250  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
1251  | 0  |     if (ret < 0) { | 
1252  | 0  |       gnutls_assert();  | 
1253  | 0  |       goto cleanup;  | 
1254  | 0  |     }  | 
1255  |  |  | 
1256  | 0  |     if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST)  | 
1257  | 0  |       random_func = rnd_nonce_func_fallback;  | 
1258  | 0  |     else  | 
1259  | 0  |       random_func = rnd_nonce_func;  | 
1260  |  | 
  | 
1261  | 0  |     buf = gnutls_malloc(pub.size);  | 
1262  | 0  |     if (!buf) { | 
1263  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1264  | 0  |       goto cleanup;  | 
1265  | 0  |     }  | 
1266  |  |  | 
1267  | 0  |     ret = _rsa_encrypt(&pub, NULL, random_func, plaintext->size,  | 
1268  | 0  |            plaintext->data, buf);  | 
1269  | 0  |     if (ret == 0 || HAVE_LIB_ERROR()) { | 
1270  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ENCRYPTION_FAILED);  | 
1271  | 0  |       goto cleanup;  | 
1272  | 0  |     }  | 
1273  |  |  | 
1274  | 0  |     ciphertext->data = buf;  | 
1275  | 0  |     buf = NULL;  | 
1276  | 0  |     ciphertext->size = pub.size;  | 
1277  | 0  |     break;  | 
1278  | 0  |   }  | 
1279  | 0  |   case GNUTLS_PK_RSA_OAEP: { | 
1280  | 0  |     struct rsa_public_key pub;  | 
1281  | 0  |     nettle_random_func *random_func;  | 
1282  |  | 
  | 
1283  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
1284  | 0  |     if (ret < 0) { | 
1285  | 0  |       gnutls_assert();  | 
1286  | 0  |       goto cleanup;  | 
1287  | 0  |     }  | 
1288  |  |  | 
1289  | 0  |     if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST)  | 
1290  | 0  |       random_func = rnd_nonce_func_fallback;  | 
1291  | 0  |     else  | 
1292  | 0  |       random_func = rnd_nonce_func;  | 
1293  |  | 
  | 
1294  | 0  |     buf = gnutls_malloc(pub.size);  | 
1295  | 0  |     if (!buf) { | 
1296  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1297  | 0  |       goto cleanup;  | 
1298  | 0  |     }  | 
1299  |  |  | 
1300  | 0  |     ret = _rsa_oaep_encrypt(pk_params->spki.rsa_oaep_dig, &pub,  | 
1301  | 0  |           NULL, random_func,  | 
1302  | 0  |           pk_params->spki.rsa_oaep_label.size,  | 
1303  | 0  |           pk_params->spki.rsa_oaep_label.data,  | 
1304  | 0  |           plaintext->size, plaintext->data, buf);  | 
1305  | 0  |     if (ret == 0 || HAVE_LIB_ERROR()) { | 
1306  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ENCRYPTION_FAILED);  | 
1307  | 0  |       goto cleanup;  | 
1308  | 0  |     }  | 
1309  | 0  |     ciphertext->data = buf;  | 
1310  | 0  |     buf = NULL;  | 
1311  | 0  |     ciphertext->size = pub.size;  | 
1312  | 0  |     break;  | 
1313  | 0  |   }  | 
1314  | 0  |   default:  | 
1315  | 0  |     gnutls_assert();  | 
1316  | 0  |     ret = GNUTLS_E_INVALID_REQUEST;  | 
1317  | 0  |     goto cleanup;  | 
1318  | 0  |   }  | 
1319  |  |  | 
1320  | 0  |   ret = 0;  | 
1321  |  | 
  | 
1322  | 0  | cleanup:  | 
1323  | 0  |   gnutls_free(buf);  | 
1324  | 0  |   if (ret < 0) { | 
1325  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_ERROR);  | 
1326  | 0  |   } else if (not_approved) { | 
1327  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_NOT_APPROVED);  | 
1328  | 0  |   } else { | 
1329  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_APPROVED);  | 
1330  | 0  |   }  | 
1331  |  | 
  | 
1332  | 0  |   FAIL_IF_LIB_ERROR;  | 
1333  | 0  |   return ret;  | 
1334  | 0  | }  | 
1335  |  |  | 
1336  |  | /* This wraps nettle_rsa_decrypt_tr so it takes ciphertext as a byte  | 
1337  |  |  * array instead of a mpz_t value.  Returns 1 on success; 0 otherwise.  | 
1338  |  |  */  | 
1339  |  | static inline int _rsa_decrypt_tr(const struct rsa_public_key *pub,  | 
1340  |  |           const struct rsa_private_key *key,  | 
1341  |  |           void *rnd_ctx, nettle_random_func *rnd_func,  | 
1342  |  |           size_t *length, uint8_t *message,  | 
1343  |  |           const uint8_t *ciphertext)  | 
1344  | 0  | { | 
1345  | 0  |   bigint_t c;  | 
1346  | 0  |   int ret;  | 
1347  |  | 
  | 
1348  | 0  |   if (_gnutls_mpi_init_scan_nz(&c, ciphertext, pub->size) < 0) { | 
1349  | 0  |     gnutls_assert();  | 
1350  | 0  |     return 0;  | 
1351  | 0  |   }  | 
1352  |  |  | 
1353  | 0  |   ret = rsa_decrypt_tr(pub, key, rnd_ctx, rnd_func, length, message, c);  | 
1354  |  | 
  | 
1355  | 0  |   _gnutls_mpi_release(&c);  | 
1356  |  | 
  | 
1357  | 0  |   return ret;  | 
1358  | 0  | }  | 
1359  |  |  | 
1360  |  | /* This wraps nettle_rsa_oaep_sha*_decrypt to parametrize the function  | 
1361  |  |  * calls with a DIG argument.  Returns 1 on success; 0 otherwise.  | 
1362  |  |  */  | 
1363  |  | static inline int _rsa_oaep_decrypt(gnutls_digest_algorithm_t dig,  | 
1364  |  |             const struct rsa_public_key *pub,  | 
1365  |  |             const struct rsa_private_key *key,  | 
1366  |  |             void *rnd_ctx, nettle_random_func *rnd_func,  | 
1367  |  |             size_t label_length, const uint8_t *label,  | 
1368  |  |             size_t *length, uint8_t *message,  | 
1369  |  |             const uint8_t *ciphertext)  | 
1370  | 0  | { | 
1371  | 0  |   int (*decrypt_func)(const struct rsa_public_key *,  | 
1372  | 0  |           const struct rsa_private_key *, void *,  | 
1373  | 0  |           nettle_random_func *, size_t, const uint8_t *,  | 
1374  | 0  |           size_t *, uint8_t *, const uint8_t *);  | 
1375  |  | 
  | 
1376  | 0  |   switch (dig) { | 
1377  | 0  |   case GNUTLS_DIG_SHA256:  | 
1378  | 0  |     decrypt_func = rsa_oaep_sha256_decrypt;  | 
1379  | 0  |     break;  | 
1380  | 0  |   case GNUTLS_DIG_SHA384:  | 
1381  | 0  |     decrypt_func = rsa_oaep_sha384_decrypt;  | 
1382  | 0  |     break;  | 
1383  | 0  |   case GNUTLS_DIG_SHA512:  | 
1384  | 0  |     decrypt_func = rsa_oaep_sha512_decrypt;  | 
1385  | 0  |     break;  | 
1386  | 0  |   default:  | 
1387  | 0  |     gnutls_assert();  | 
1388  | 0  |     return 0;  | 
1389  | 0  |   }  | 
1390  |  |  | 
1391  | 0  |   return decrypt_func(pub, key, rnd_ctx, rnd_func, label_length, label,  | 
1392  | 0  |           length, message, ciphertext);  | 
1393  | 0  | }  | 
1394  |  |  | 
1395  |  | static int _wrap_nettle_pk_decrypt(gnutls_pk_algorithm_t algo,  | 
1396  |  |            gnutls_datum_t *plaintext,  | 
1397  |  |            const gnutls_datum_t *ciphertext,  | 
1398  |  |            const gnutls_pk_params_st *pk_params)  | 
1399  | 0  | { | 
1400  | 0  |   int ret;  | 
1401  | 0  |   bool not_approved = false;  | 
1402  | 0  |   uint8_t *buf = NULL;  | 
1403  |  | 
  | 
1404  | 0  |   FAIL_IF_LIB_ERROR;  | 
1405  |  |  | 
1406  | 0  |   if (algo == GNUTLS_PK_RSA && pk_params->spki.pk == GNUTLS_PK_RSA_OAEP) { | 
1407  | 0  |     algo = GNUTLS_PK_RSA_OAEP;  | 
1408  | 0  |   }  | 
1409  |  | 
  | 
1410  | 0  |   switch (algo) { | 
1411  | 0  |   case GNUTLS_PK_RSA: { | 
1412  | 0  |     struct rsa_private_key priv;  | 
1413  | 0  |     struct rsa_public_key pub;  | 
1414  | 0  |     size_t length;  | 
1415  | 0  |     nettle_random_func *random_func;  | 
1416  |  | 
  | 
1417  | 0  |     if (!_gnutls_config_is_rsa_pkcs1_encrypt_allowed()) { | 
1418  | 0  |       ret = gnutls_assert_val(  | 
1419  | 0  |         GNUTLS_E_UNSUPPORTED_ENCRYPTION_ALGORITHM);  | 
1420  | 0  |       goto cleanup;  | 
1421  | 0  |     }  | 
1422  |  |  | 
1423  |  |     /* RSA decryption with PKCS#1 v1.5 padding is not approved */  | 
1424  | 0  |     not_approved = true;  | 
1425  |  | 
  | 
1426  | 0  |     _rsa_params_to_privkey(pk_params, &priv);  | 
1427  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
1428  | 0  |     if (ret < 0) { | 
1429  | 0  |       gnutls_assert();  | 
1430  | 0  |       goto cleanup;  | 
1431  | 0  |     }  | 
1432  |  |  | 
1433  | 0  |     if (ciphertext->size != pub.size) { | 
1434  | 0  |       ret = gnutls_assert_val(GNUTLS_E_DECRYPTION_FAILED);  | 
1435  | 0  |       goto cleanup;  | 
1436  | 0  |     }  | 
1437  |  |  | 
1438  | 0  |     length = pub.size;  | 
1439  | 0  |     buf = gnutls_malloc(length);  | 
1440  | 0  |     if (!buf) { | 
1441  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1442  | 0  |       goto cleanup;  | 
1443  | 0  |     }  | 
1444  |  |  | 
1445  | 0  |     if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST)  | 
1446  | 0  |       random_func = rnd_nonce_func_fallback;  | 
1447  | 0  |     else  | 
1448  | 0  |       random_func = rnd_nonce_func;  | 
1449  | 0  |     ret = _rsa_decrypt_tr(&pub, &priv, NULL, random_func, &length,  | 
1450  | 0  |               buf, ciphertext->data);  | 
1451  |  | 
  | 
1452  | 0  |     if (ret == 0 || HAVE_LIB_ERROR()) { | 
1453  | 0  |       ret = gnutls_assert_val(GNUTLS_E_DECRYPTION_FAILED);  | 
1454  | 0  |       goto cleanup;  | 
1455  | 0  |     }  | 
1456  |  |  | 
1457  | 0  |     plaintext->data = buf;  | 
1458  | 0  |     buf = NULL;  | 
1459  | 0  |     plaintext->size = length;  | 
1460  | 0  |     break;  | 
1461  | 0  |   }  | 
1462  | 0  |   case GNUTLS_PK_RSA_OAEP: { | 
1463  | 0  |     struct rsa_private_key priv;  | 
1464  | 0  |     struct rsa_public_key pub;  | 
1465  | 0  |     size_t length;  | 
1466  | 0  |     nettle_random_func *random_func;  | 
1467  |  | 
  | 
1468  | 0  |     _rsa_params_to_privkey(pk_params, &priv);  | 
1469  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
1470  | 0  |     if (ret < 0) { | 
1471  | 0  |       gnutls_assert();  | 
1472  | 0  |       goto cleanup;  | 
1473  | 0  |     }  | 
1474  |  |  | 
1475  | 0  |     if (ciphertext->size != pub.size) { | 
1476  | 0  |       ret = gnutls_assert_val(GNUTLS_E_DECRYPTION_FAILED);  | 
1477  | 0  |       goto cleanup;  | 
1478  | 0  |     }  | 
1479  |  |  | 
1480  | 0  |     length = pub.size;  | 
1481  | 0  |     buf = gnutls_malloc(length);  | 
1482  | 0  |     if (!buf) { | 
1483  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1484  | 0  |       goto cleanup;  | 
1485  | 0  |     }  | 
1486  |  |  | 
1487  | 0  |     if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST)  | 
1488  | 0  |       random_func = rnd_nonce_func_fallback;  | 
1489  | 0  |     else  | 
1490  | 0  |       random_func = rnd_nonce_func;  | 
1491  | 0  |     ret = _rsa_oaep_decrypt(pk_params->spki.rsa_oaep_dig, &pub,  | 
1492  | 0  |           &priv, NULL, random_func,  | 
1493  | 0  |           pk_params->spki.rsa_oaep_label.size,  | 
1494  | 0  |           pk_params->spki.rsa_oaep_label.data,  | 
1495  | 0  |           &length, buf, ciphertext->data);  | 
1496  |  | 
  | 
1497  | 0  |     if (ret == 0 || HAVE_LIB_ERROR()) { | 
1498  | 0  |       ret = gnutls_assert_val(GNUTLS_E_DECRYPTION_FAILED);  | 
1499  | 0  |       goto cleanup;  | 
1500  | 0  |     }  | 
1501  |  |  | 
1502  | 0  |     plaintext->data = buf;  | 
1503  | 0  |     buf = NULL;  | 
1504  | 0  |     plaintext->size = length;  | 
1505  | 0  |     break;  | 
1506  | 0  |   }  | 
1507  | 0  |   default:  | 
1508  | 0  |     gnutls_assert();  | 
1509  | 0  |     ret = GNUTLS_E_INTERNAL_ERROR;  | 
1510  | 0  |     goto cleanup;  | 
1511  | 0  |   }  | 
1512  |  |  | 
1513  | 0  |   ret = 0;  | 
1514  |  | 
  | 
1515  | 0  | cleanup:  | 
1516  | 0  |   gnutls_free(buf);  | 
1517  | 0  |   if (ret < 0) { | 
1518  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_ERROR);  | 
1519  | 0  |   } else if (not_approved) { | 
1520  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_NOT_APPROVED);  | 
1521  | 0  |   } else { | 
1522  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_APPROVED);  | 
1523  | 0  |   }  | 
1524  |  | 
  | 
1525  | 0  |   FAIL_IF_LIB_ERROR;  | 
1526  | 0  |   return ret;  | 
1527  | 0  | }  | 
1528  |  |  | 
1529  |  | /* This wraps nettle_rsa_sec_decrypt so it takes ciphertext as a byte  | 
1530  |  |  * array instead of a mpz_t value.  Returns 1 on success; 0 otherwise.  | 
1531  |  |  */  | 
1532  |  | static inline int _rsa_sec_decrypt(const struct rsa_public_key *pub,  | 
1533  |  |            const struct rsa_private_key *key,  | 
1534  |  |            void *rnd_ctx, nettle_random_func *rnd_func,  | 
1535  |  |            size_t length, uint8_t *message,  | 
1536  |  |            const uint8_t *ciphertext)  | 
1537  | 0  | { | 
1538  | 0  |   bigint_t c;  | 
1539  | 0  |   int ret;  | 
1540  |  | 
  | 
1541  | 0  |   if (_gnutls_mpi_init_scan_nz(&c, ciphertext, pub->size) < 0) { | 
1542  | 0  |     gnutls_assert();  | 
1543  | 0  |     return 0;  | 
1544  | 0  |   }  | 
1545  |  |  | 
1546  | 0  |   ret = rsa_sec_decrypt(pub, key, rnd_ctx, rnd_func, length, message, c);  | 
1547  |  | 
  | 
1548  | 0  |   _gnutls_mpi_release(&c);  | 
1549  |  | 
  | 
1550  | 0  |   return ret;  | 
1551  | 0  | }  | 
1552  |  |  | 
1553  |  | /* Note: we do not allocate in this function to avoid asymettric  | 
1554  |  |  * unallocation (which creates a side channel) in case of failure  | 
1555  |  |  * */  | 
1556  |  | static int _wrap_nettle_pk_decrypt2(gnutls_pk_algorithm_t algo,  | 
1557  |  |             const gnutls_datum_t *ciphertext,  | 
1558  |  |             unsigned char *plaintext,  | 
1559  |  |             size_t plaintext_size,  | 
1560  |  |             const gnutls_pk_params_st *pk_params)  | 
1561  | 0  | { | 
1562  | 0  |   struct rsa_private_key priv;  | 
1563  | 0  |   struct rsa_public_key pub;  | 
1564  | 0  |   uint32_t is_err;  | 
1565  | 0  |   int ret;  | 
1566  | 0  |   nettle_random_func *random_func;  | 
1567  | 0  |   bool not_approved = false;  | 
1568  |  | 
  | 
1569  | 0  |   FAIL_IF_LIB_ERROR;  | 
1570  |  |  | 
1571  | 0  |   if (algo != GNUTLS_PK_RSA || plaintext == NULL) { | 
1572  | 0  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
1573  | 0  |     goto fail;  | 
1574  | 0  |   }  | 
1575  |  |  | 
1576  | 0  |   if (pk_params->spki.pk == GNUTLS_PK_RSA_OAEP) { | 
1577  | 0  |     algo = GNUTLS_PK_RSA_OAEP;  | 
1578  | 0  |   }  | 
1579  |  | 
  | 
1580  | 0  |   _rsa_params_to_privkey(pk_params, &priv);  | 
1581  | 0  |   ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
1582  | 0  |   if (ret < 0) { | 
1583  | 0  |     gnutls_assert();  | 
1584  | 0  |     goto fail;  | 
1585  | 0  |   }  | 
1586  |  |  | 
1587  | 0  |   if (ciphertext->size != pub.size) { | 
1588  | 0  |     ret = gnutls_assert_val(GNUTLS_E_DECRYPTION_FAILED);  | 
1589  | 0  |     goto fail;  | 
1590  | 0  |   }  | 
1591  |  |  | 
1592  | 0  |   if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST)  | 
1593  | 0  |     random_func = rnd_nonce_func_fallback;  | 
1594  | 0  |   else  | 
1595  | 0  |     random_func = rnd_nonce_func;  | 
1596  |  | 
  | 
1597  | 0  |   switch (algo) { | 
1598  | 0  |   case GNUTLS_PK_RSA:  | 
1599  | 0  |     if (!_gnutls_config_is_rsa_pkcs1_encrypt_allowed()) { | 
1600  | 0  |       ret = gnutls_assert_val(  | 
1601  | 0  |         GNUTLS_E_UNSUPPORTED_ENCRYPTION_ALGORITHM);  | 
1602  | 0  |       goto fail;  | 
1603  | 0  |     }  | 
1604  |  |  | 
1605  |  |     /* RSA decryption with PKCS#1 v1.5 padding is not approved */  | 
1606  | 0  |     not_approved = true;  | 
1607  |  | 
  | 
1608  | 0  |     ret = _rsa_sec_decrypt(&pub, &priv, NULL, random_func,  | 
1609  | 0  |                plaintext_size, plaintext,  | 
1610  | 0  |                ciphertext->data);  | 
1611  | 0  |     break;  | 
1612  | 0  |   case GNUTLS_PK_RSA_OAEP:  | 
1613  | 0  |     ret = _rsa_oaep_decrypt(pk_params->spki.rsa_oaep_dig, &pub,  | 
1614  | 0  |           &priv, NULL, random_func,  | 
1615  | 0  |           pk_params->spki.rsa_oaep_label.size,  | 
1616  | 0  |           pk_params->spki.rsa_oaep_label.data,  | 
1617  | 0  |           &plaintext_size, plaintext,  | 
1618  | 0  |           ciphertext->data);  | 
1619  | 0  |     break;  | 
1620  | 0  |   default:  | 
1621  | 0  |     gnutls_assert();  | 
1622  | 0  |     ret = GNUTLS_E_INTERNAL_ERROR;  | 
1623  | 0  |     goto fail;  | 
1624  | 0  |   }  | 
1625  |  |  | 
1626  |  |   /* The decrypt operation is infallible; treat the approved  | 
1627  |  |    * operation as complete at this point, regardless of any  | 
1628  |  |    * decryption failure detected below.  | 
1629  |  |    */  | 
1630  | 0  |   _gnutls_switch_fips_state(not_approved ?  | 
1631  | 0  |             GNUTLS_FIPS140_OP_NOT_APPROVED :  | 
1632  | 0  |             GNUTLS_FIPS140_OP_APPROVED);  | 
1633  |  |  | 
1634  |  |   /* after this point, any conditional on failure that cause differences  | 
1635  |  |    * in execution may create a timing or cache access pattern side  | 
1636  |  |    * channel that can be used as an oracle, so thread very carefully */  | 
1637  |  |  | 
1638  |  |   /* Here HAVE_LIB_ERROR() should be fine as it doesn't have  | 
1639  |  |    * branches in it and returns a bool */  | 
1640  | 0  |   is_err = HAVE_LIB_ERROR();  | 
1641  |  |   /* if is_err != 0 */  | 
1642  | 0  |   is_err = CONSTCHECK_NOT_EQUAL(is_err, 0);  | 
1643  |  |   /* or ret == 0 */  | 
1644  | 0  |   is_err |= CONSTCHECK_EQUAL(ret, 0);  | 
1645  |  |   /* then return GNUTLS_E_DECRYPTION_FAILED */  | 
1646  | 0  |   return (int)((is_err * UINT_MAX) & GNUTLS_E_DECRYPTION_FAILED);  | 
1647  |  |  | 
1648  | 0  | fail:  | 
1649  | 0  |   _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_ERROR);  | 
1650  |  | 
  | 
1651  | 0  |   return ret;  | 
1652  | 0  | }  | 
1653  |  |  | 
1654  |  | #define CHECK_INVALID_RSA_PSS_PARAMS(dig_size, salt_size, pub_size, err) \  | 
1655  | 0  |   if (unlikely(dig_size + salt_size + 2 > pub_size))               \  | 
1656  | 0  |   return gnutls_assert_val(err)  | 
1657  |  |  | 
1658  |  | static int _rsa_pss_sign_digest_tr(gnutls_digest_algorithm_t dig,  | 
1659  |  |            const struct rsa_public_key *pub,  | 
1660  |  |            const struct rsa_private_key *priv,  | 
1661  |  |            void *rnd_ctx, nettle_random_func *rnd_func,  | 
1662  |  |            size_t salt_size, const uint8_t *digest,  | 
1663  |  |            mpz_t s)  | 
1664  | 0  | { | 
1665  | 0  |   int (*sign_func)(const struct rsa_public_key *,  | 
1666  | 0  |        const struct rsa_private_key *, void *,  | 
1667  | 0  |        nettle_random_func *, size_t, const uint8_t *,  | 
1668  | 0  |        const uint8_t *, mpz_t);  | 
1669  | 0  |   uint8_t *salt = NULL;  | 
1670  | 0  |   size_t hash_size;  | 
1671  | 0  |   int ret;  | 
1672  |  | 
  | 
1673  | 0  |   switch (dig) { | 
1674  | 0  |   case GNUTLS_DIG_SHA256:  | 
1675  | 0  |     sign_func = rsa_pss_sha256_sign_digest_tr;  | 
1676  | 0  |     hash_size = 32;  | 
1677  | 0  |     break;  | 
1678  | 0  |   case GNUTLS_DIG_SHA384:  | 
1679  | 0  |     sign_func = rsa_pss_sha384_sign_digest_tr;  | 
1680  | 0  |     hash_size = 48;  | 
1681  | 0  |     break;  | 
1682  | 0  |   case GNUTLS_DIG_SHA512:  | 
1683  | 0  |     sign_func = rsa_pss_sha512_sign_digest_tr;  | 
1684  | 0  |     hash_size = 64;  | 
1685  | 0  |     break;  | 
1686  | 0  |   default:  | 
1687  | 0  |     gnutls_assert();  | 
1688  | 0  |     return GNUTLS_E_UNKNOWN_ALGORITHM;  | 
1689  | 0  |   }  | 
1690  |  |  | 
1691  |  |   /* This is also checked in pss_encode_mgf1, but error out earlier.  */  | 
1692  | 0  |   CHECK_INVALID_RSA_PSS_PARAMS(hash_size, salt_size, pub->size,  | 
1693  | 0  |              GNUTLS_E_PK_INVALID_PUBKEY_PARAMS);  | 
1694  |  |  | 
1695  | 0  |   if (salt_size > 0) { | 
1696  | 0  |     salt = gnutls_malloc(salt_size);  | 
1697  | 0  |     if (salt == NULL)  | 
1698  | 0  |       return gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1699  |  |  | 
1700  | 0  |     ret = gnutls_rnd(GNUTLS_RND_NONCE, salt, salt_size);  | 
1701  | 0  |     if (ret < 0) { | 
1702  | 0  |       gnutls_assert();  | 
1703  | 0  |       goto cleanup;  | 
1704  | 0  |     }  | 
1705  | 0  |   }  | 
1706  |  |  | 
1707  | 0  |   ret = sign_func(pub, priv, rnd_ctx, rnd_func, salt_size, salt, digest,  | 
1708  | 0  |       s);  | 
1709  | 0  |   if (ret == 0) { | 
1710  | 0  |     gnutls_assert();  | 
1711  | 0  |     ret = GNUTLS_E_PK_SIGN_FAILED;  | 
1712  | 0  |   } else  | 
1713  | 0  |     ret = 0;  | 
1714  |  | 
  | 
1715  | 0  | cleanup:  | 
1716  | 0  |   gnutls_free(salt);  | 
1717  | 0  |   return ret;  | 
1718  | 0  | }  | 
1719  |  |  | 
1720  |  | static inline gnutls_ecc_curve_t get_eddsa_curve(gnutls_pk_algorithm_t algo)  | 
1721  | 0  | { | 
1722  | 0  |   switch (algo) { | 
1723  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
1724  | 0  |     return GNUTLS_ECC_CURVE_ED25519;  | 
1725  | 0  |   case GNUTLS_PK_EDDSA_ED448:  | 
1726  | 0  |     return GNUTLS_ECC_CURVE_ED448;  | 
1727  | 0  |   default:  | 
1728  | 0  |     return gnutls_assert_val(GNUTLS_ECC_CURVE_INVALID);  | 
1729  | 0  |   }  | 
1730  | 0  | }  | 
1731  |  |  | 
1732  |  | static inline gnutls_ecc_curve_t get_ecdh_curve(gnutls_pk_algorithm_t algo)  | 
1733  | 0  | { | 
1734  | 0  |   switch (algo) { | 
1735  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
1736  | 0  |     return GNUTLS_ECC_CURVE_X25519;  | 
1737  | 0  |   case GNUTLS_PK_ECDH_X448:  | 
1738  | 0  |     return GNUTLS_ECC_CURVE_X448;  | 
1739  | 0  |   default:  | 
1740  | 0  |     return gnutls_assert_val(GNUTLS_ECC_CURVE_INVALID);  | 
1741  | 0  |   }  | 
1742  | 0  | }  | 
1743  |  |  | 
1744  |  | static inline int eddsa_sign(gnutls_pk_algorithm_t algo, const uint8_t *pub,  | 
1745  |  |            const uint8_t *priv, size_t length,  | 
1746  |  |            const uint8_t *msg, uint8_t *signature)  | 
1747  | 0  | { | 
1748  | 0  |   switch (algo) { | 
1749  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
1750  | 0  |     ed25519_sha512_sign(pub, priv, length, msg, signature);  | 
1751  | 0  |     return 0;  | 
1752  | 0  |   case GNUTLS_PK_EDDSA_ED448:  | 
1753  | 0  |     ed448_shake256_sign(pub, priv, length, msg, signature);  | 
1754  | 0  |     return 0;  | 
1755  | 0  |   default:  | 
1756  | 0  |     return gnutls_assert_val(  | 
1757  | 0  |       GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
1758  | 0  |   }  | 
1759  | 0  | }  | 
1760  |  |  | 
1761  |  | #ifdef HAVE_LEANCRYPTO  | 
1762  |  | static enum lc_dilithium_type  | 
1763  |  | ml_dsa_pk_to_lc_dilithium_type(gnutls_pk_algorithm_t algo)  | 
1764  |  | { | 
1765  |  |   switch (algo) { | 
1766  |  | #ifdef LC_DILITHIUM_44_ENABLED  | 
1767  |  |   case GNUTLS_PK_MLDSA44:  | 
1768  |  |     return LC_DILITHIUM_44;  | 
1769  |  | #endif  | 
1770  |  | #ifdef LC_DILITHIUM_65_ENABLED  | 
1771  |  |   case GNUTLS_PK_MLDSA65:  | 
1772  |  |     return LC_DILITHIUM_65;  | 
1773  |  | #endif  | 
1774  |  | #ifdef LC_DILITHIUM_87_ENABLED  | 
1775  |  |   case GNUTLS_PK_MLDSA87:  | 
1776  |  |     return LC_DILITHIUM_87;  | 
1777  |  | #endif  | 
1778  |  |   default:  | 
1779  |  |     return gnutls_assert_val(LC_DILITHIUM_UNKNOWN);  | 
1780  |  |   }  | 
1781  |  | }  | 
1782  |  |  | 
1783  |  | static int ml_dsa_exists(gnutls_pk_algorithm_t algo)  | 
1784  |  | { | 
1785  |  |   return ml_dsa_pk_to_lc_dilithium_type(algo) != LC_DILITHIUM_UNKNOWN;  | 
1786  |  | }  | 
1787  |  |  | 
1788  |  | static int ml_dsa_sign(gnutls_pk_algorithm_t algo, gnutls_datum_t *signature,  | 
1789  |  |            const gnutls_datum_t *message,  | 
1790  |  |            const gnutls_datum_t *raw_priv)  | 
1791  |  | { | 
1792  |  |   int ret;  | 
1793  |  |   enum lc_dilithium_type type;  | 
1794  |  |   struct lc_dilithium_sk sk;  | 
1795  |  |   struct lc_dilithium_sig sig;  | 
1796  |  |   gnutls_datum_t tmp_signature = { NULL, 0 }; | 
1797  |  |   uint8_t *ptr;  | 
1798  |  |   size_t len;  | 
1799  |  |  | 
1800  |  |   type = ml_dsa_pk_to_lc_dilithium_type(algo);  | 
1801  |  |   if (type == LC_DILITHIUM_UNKNOWN)  | 
1802  |  |     return gnutls_assert_val(  | 
1803  |  |       GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
1804  |  |  | 
1805  |  |   ret = lc_dilithium_sk_load(&sk, raw_priv->data, raw_priv->size);  | 
1806  |  |   if (ret < 0 || lc_dilithium_sk_type(&sk) != type) { | 
1807  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
1808  |  |     goto cleanup;  | 
1809  |  |   }  | 
1810  |  |  | 
1811  |  |   ret = lc_dilithium_sign(&sig, message->data, message->size, &sk,  | 
1812  |  |         lc_seeded_rng);  | 
1813  |  |   if (ret < 0) { | 
1814  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_SIGN_FAILED);  | 
1815  |  |     goto cleanup;  | 
1816  |  |   }  | 
1817  |  |  | 
1818  |  |   ret = lc_dilithium_sig_ptr(&ptr, &len, &sig);  | 
1819  |  |   if (ret < 0) { | 
1820  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
1821  |  |     goto cleanup;  | 
1822  |  |   }  | 
1823  |  |   ret = _gnutls_set_datum(&tmp_signature, ptr, len);  | 
1824  |  |   if (ret < 0)  | 
1825  |  |     goto cleanup;  | 
1826  |  |  | 
1827  |  |   *signature = _gnutls_steal_datum(&tmp_signature);  | 
1828  |  |  | 
1829  |  |   ret = 0;  | 
1830  |  |  | 
1831  |  | cleanup:  | 
1832  |  |   _gnutls_free_datum(&tmp_signature);  | 
1833  |  |   zeroize_key(&sk, sizeof(sk));  | 
1834  |  |   return ret;  | 
1835  |  | }  | 
1836  |  |  | 
1837  |  | static int ml_dsa_verify(gnutls_pk_algorithm_t algo,  | 
1838  |  |        const gnutls_datum_t *signature,  | 
1839  |  |        const gnutls_datum_t *message,  | 
1840  |  |        const gnutls_datum_t *raw_pub)  | 
1841  |  | { | 
1842  |  |   int ret;  | 
1843  |  |   enum lc_dilithium_type type;  | 
1844  |  |   struct lc_dilithium_sig sig;  | 
1845  |  |   struct lc_dilithium_pk pk;  | 
1846  |  |  | 
1847  |  |   type = ml_dsa_pk_to_lc_dilithium_type(algo);  | 
1848  |  |   if (type == LC_DILITHIUM_UNKNOWN)  | 
1849  |  |     return gnutls_assert_val(  | 
1850  |  |       GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
1851  |  |  | 
1852  |  |   ret = lc_dilithium_pk_load(&pk, raw_pub->data, raw_pub->size);  | 
1853  |  |   if (ret < 0 || lc_dilithium_pk_type(&pk) != type) { | 
1854  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
1855  |  |     goto cleanup;  | 
1856  |  |   }  | 
1857  |  |  | 
1858  |  |   ret = lc_dilithium_sig_load(&sig, signature->data, signature->size);  | 
1859  |  |   if (ret < 0 || lc_dilithium_sig_type(&sig) != type) { | 
1860  |  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
1861  |  |     goto cleanup;  | 
1862  |  |   }  | 
1863  |  |  | 
1864  |  |   ret = lc_dilithium_verify(&sig, message->data, message->size, &pk);  | 
1865  |  |   if (ret < 0) { | 
1866  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
1867  |  |     goto cleanup;  | 
1868  |  |   }  | 
1869  |  |  | 
1870  |  |   ret = 0;  | 
1871  |  |  | 
1872  |  | cleanup:  | 
1873  |  |   zeroize_key(&pk, sizeof(pk));  | 
1874  |  |   return ret;  | 
1875  |  | }  | 
1876  |  |  | 
1877  |  | static int ml_dsa_generate_keypair(gnutls_pk_algorithm_t algo,  | 
1878  |  |            gnutls_datum_t *raw_priv,  | 
1879  |  |            gnutls_datum_t *raw_pub)  | 
1880  |  | { | 
1881  |  |   int ret;  | 
1882  |  |   enum lc_dilithium_type type;  | 
1883  |  |   struct lc_dilithium_sk sk;  | 
1884  |  |   struct lc_dilithium_pk pk;  | 
1885  |  |   gnutls_datum_t tmp_raw_priv = { NULL, 0 }; | 
1886  |  |   gnutls_datum_t tmp_raw_pub = { NULL, 0 }; | 
1887  |  |   uint8_t *ptr;  | 
1888  |  |   size_t len;  | 
1889  |  |  | 
1890  |  |   type = ml_dsa_pk_to_lc_dilithium_type(algo);  | 
1891  |  |   if (type == LC_DILITHIUM_UNKNOWN)  | 
1892  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
1893  |  |  | 
1894  |  |   ret = lc_dilithium_keypair(&pk, &sk, lc_seeded_rng, type);  | 
1895  |  |   if (ret < 0) { | 
1896  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
1897  |  |     goto cleanup;  | 
1898  |  |   }  | 
1899  |  |  | 
1900  |  |   ret = lc_dilithium_sk_ptr(&ptr, &len, &sk);  | 
1901  |  |   if (ret < 0) { | 
1902  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
1903  |  |     goto cleanup;  | 
1904  |  |   }  | 
1905  |  |  | 
1906  |  |   ret = _gnutls_set_datum(&tmp_raw_priv, ptr, len);  | 
1907  |  |   if (ret < 0) { | 
1908  |  |     gnutls_assert();  | 
1909  |  |     goto cleanup;  | 
1910  |  |   }  | 
1911  |  |  | 
1912  |  |   ret = lc_dilithium_pk_ptr(&ptr, &len, &pk);  | 
1913  |  |   if (ret < 0) { | 
1914  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
1915  |  |     goto cleanup;  | 
1916  |  |   }  | 
1917  |  |  | 
1918  |  |   ret = _gnutls_set_datum(&tmp_raw_pub, ptr, len);  | 
1919  |  |   if (ret < 0) { | 
1920  |  |     ret = gnutls_assert_val(GNUTLS_E_INTERNAL_ERROR);  | 
1921  |  |     goto cleanup;  | 
1922  |  |   }  | 
1923  |  |  | 
1924  |  |   *raw_priv = _gnutls_steal_datum(&tmp_raw_priv);  | 
1925  |  |   *raw_pub = _gnutls_steal_datum(&tmp_raw_pub);  | 
1926  |  |  | 
1927  |  |   ret = 0;  | 
1928  |  |  | 
1929  |  | cleanup:  | 
1930  |  |   _gnutls_free_key_datum(&tmp_raw_priv);  | 
1931  |  |   _gnutls_free_key_datum(&tmp_raw_pub);  | 
1932  |  |   zeroize_key(&pk, sizeof(pk));  | 
1933  |  |   zeroize_key(&sk, sizeof(sk));  | 
1934  |  |   return ret;  | 
1935  |  | }  | 
1936  |  | #elif defined HAVE_LIBOQS  | 
1937  |  | static const char *ml_dsa_pk_to_liboqs_algo(gnutls_pk_algorithm_t algo)  | 
1938  |  | { | 
1939  |  |   switch (algo) { | 
1940  |  |   case GNUTLS_PK_MLDSA44:  | 
1941  |  |     return OQS_SIG_alg_ml_dsa_44;  | 
1942  |  |   case GNUTLS_PK_MLDSA65:  | 
1943  |  |     return OQS_SIG_alg_ml_dsa_65;  | 
1944  |  |   case GNUTLS_PK_MLDSA87:  | 
1945  |  |     return OQS_SIG_alg_ml_dsa_87;  | 
1946  |  |   default:  | 
1947  |  |     gnutls_assert();  | 
1948  |  |     return NULL;  | 
1949  |  |   }  | 
1950  |  | }  | 
1951  |  |  | 
1952  |  | static int ml_dsa_exists(gnutls_pk_algorithm_t algo)  | 
1953  |  | { | 
1954  |  |   const char *algo_name;  | 
1955  |  |  | 
1956  |  |   if (_gnutls_liboqs_ensure() < 0)  | 
1957  |  |     return 0;  | 
1958  |  |  | 
1959  |  |   algo_name = ml_dsa_pk_to_liboqs_algo(algo);  | 
1960  |  |   return algo_name != NULL &&  | 
1961  |  |          GNUTLS_OQS_FUNC(OQS_SIG_alg_is_enabled)(algo_name);  | 
1962  |  | }  | 
1963  |  |  | 
1964  |  | static int ml_dsa_sign(gnutls_pk_algorithm_t algo, gnutls_datum_t *signature,  | 
1965  |  |            const gnutls_datum_t *message,  | 
1966  |  |            const gnutls_datum_t *raw_priv)  | 
1967  |  | { | 
1968  |  |   int ret;  | 
1969  |  |   OQS_SIG *sig;  | 
1970  |  |   OQS_STATUS rc;  | 
1971  |  |   gnutls_datum_t tmp_signature = { NULL, 0 }; | 
1972  |  |   size_t size;  | 
1973  |  |   const char *algo_name;  | 
1974  |  |  | 
1975  |  |   if (_gnutls_liboqs_ensure() < 0)  | 
1976  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
1977  |  |  | 
1978  |  |   algo_name = ml_dsa_pk_to_liboqs_algo(algo);  | 
1979  |  |   if (algo_name == NULL ||  | 
1980  |  |       !GNUTLS_OQS_FUNC(OQS_SIG_alg_is_enabled)(algo_name)) { | 
1981  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
1982  |  |   }  | 
1983  |  |  | 
1984  |  |   sig = GNUTLS_OQS_FUNC(OQS_SIG_new)(algo_name);  | 
1985  |  |   if (sig == NULL) { | 
1986  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1987  |  |     goto cleanup;  | 
1988  |  |   }  | 
1989  |  |  | 
1990  |  |   tmp_signature.size = sig->length_signature;  | 
1991  |  |   tmp_signature.data = gnutls_malloc(tmp_signature.size);  | 
1992  |  |   if (tmp_signature.data == NULL) { | 
1993  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
1994  |  |     goto cleanup;  | 
1995  |  |   }  | 
1996  |  |  | 
1997  |  |   size = tmp_signature.size;  | 
1998  |  |   rc = GNUTLS_OQS_FUNC(OQS_SIG_sign)(sig, tmp_signature.data, &size,  | 
1999  |  |              message->data, message->size,  | 
2000  |  |              raw_priv->data);  | 
2001  |  |   if (rc != OQS_SUCCESS) { | 
2002  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_SIGN_FAILED);  | 
2003  |  |     goto cleanup;  | 
2004  |  |   }  | 
2005  |  |   tmp_signature.size = size;  | 
2006  |  |  | 
2007  |  |   *signature = _gnutls_steal_datum(&tmp_signature);  | 
2008  |  |  | 
2009  |  |   ret = GNUTLS_E_SUCCESS;  | 
2010  |  |  | 
2011  |  | cleanup:  | 
2012  |  |   _gnutls_free_datum(&tmp_signature);  | 
2013  |  |   GNUTLS_OQS_FUNC(OQS_SIG_free)(sig);  | 
2014  |  |   return ret;  | 
2015  |  | }  | 
2016  |  |  | 
2017  |  | static int ml_dsa_verify(gnutls_pk_algorithm_t algo,  | 
2018  |  |        const gnutls_datum_t *signature,  | 
2019  |  |        const gnutls_datum_t *message,  | 
2020  |  |        const gnutls_datum_t *raw_pub)  | 
2021  |  | { | 
2022  |  |   int ret;  | 
2023  |  |   OQS_SIG *sig;  | 
2024  |  |   OQS_STATUS rc;  | 
2025  |  |  | 
2026  |  |   if (_gnutls_liboqs_ensure() < 0)  | 
2027  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
2028  |  |  | 
2029  |  |   const char *algo_name = ml_dsa_pk_to_liboqs_algo(algo);  | 
2030  |  |   if (algo_name == NULL ||  | 
2031  |  |       !GNUTLS_OQS_FUNC(OQS_SIG_alg_is_enabled)(algo_name)) { | 
2032  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
2033  |  |   }  | 
2034  |  |  | 
2035  |  |   sig = GNUTLS_OQS_FUNC(OQS_SIG_new)(algo_name);  | 
2036  |  |   if (sig == NULL) { | 
2037  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
2038  |  |     goto cleanup;  | 
2039  |  |   }  | 
2040  |  |  | 
2041  |  |   rc = GNUTLS_OQS_FUNC(OQS_SIG_verify)(sig, message->data, message->size,  | 
2042  |  |                signature->data, signature->size,  | 
2043  |  |                raw_pub->data);  | 
2044  |  |   if (rc != OQS_SUCCESS) { | 
2045  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2046  |  |     goto cleanup;  | 
2047  |  |   }  | 
2048  |  |  | 
2049  |  |   ret = GNUTLS_E_SUCCESS;  | 
2050  |  |  | 
2051  |  | cleanup:  | 
2052  |  |   GNUTLS_OQS_FUNC(OQS_SIG_free)(sig);  | 
2053  |  |   return ret;  | 
2054  |  | }  | 
2055  |  |  | 
2056  |  | static int ml_dsa_generate_keypair(gnutls_pk_algorithm_t algo,  | 
2057  |  |            gnutls_datum_t *raw_priv,  | 
2058  |  |            gnutls_datum_t *raw_pub)  | 
2059  |  | { | 
2060  |  |   int ret;  | 
2061  |  |   OQS_SIG *sig = NULL;  | 
2062  |  |   gnutls_datum_t tmp_raw_priv = { NULL, 0 }; | 
2063  |  |   gnutls_datum_t tmp_raw_pub = { NULL, 0 }; | 
2064  |  |   OQS_STATUS rc;  | 
2065  |  |  | 
2066  |  |   if (_gnutls_liboqs_ensure() < 0)  | 
2067  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
2068  |  |  | 
2069  |  |   const char *algo_name = ml_dsa_pk_to_liboqs_algo(algo);  | 
2070  |  |   if (algo_name == NULL ||  | 
2071  |  |       !GNUTLS_OQS_FUNC(OQS_SIG_alg_is_enabled)(algo_name))  | 
2072  |  |     return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
2073  |  |  | 
2074  |  |   sig = GNUTLS_OQS_FUNC(OQS_SIG_new)(algo_name);  | 
2075  |  |   if (sig == NULL)  | 
2076  |  |     return gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
2077  |  |  | 
2078  |  |   tmp_raw_priv.size = sig->length_secret_key;  | 
2079  |  |   tmp_raw_priv.data = gnutls_malloc(tmp_raw_priv.size);  | 
2080  |  |   if (tmp_raw_priv.data == NULL) { | 
2081  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
2082  |  |     goto cleanup;  | 
2083  |  |   }  | 
2084  |  |  | 
2085  |  |   tmp_raw_pub.size = sig->length_public_key;  | 
2086  |  |   tmp_raw_pub.data = gnutls_malloc(tmp_raw_pub.size);  | 
2087  |  |   if (tmp_raw_pub.data == NULL) { | 
2088  |  |     ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
2089  |  |     goto cleanup;  | 
2090  |  |   }  | 
2091  |  |  | 
2092  |  |   rc = GNUTLS_OQS_FUNC(OQS_SIG_keypair)(sig, tmp_raw_pub.data,  | 
2093  |  |                 tmp_raw_priv.data);  | 
2094  |  |   if (rc != OQS_SUCCESS) { | 
2095  |  |     ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
2096  |  |     goto cleanup;  | 
2097  |  |   }  | 
2098  |  |  | 
2099  |  |   *raw_priv = _gnutls_steal_datum(&tmp_raw_priv);  | 
2100  |  |   *raw_pub = _gnutls_steal_datum(&tmp_raw_pub);  | 
2101  |  |  | 
2102  |  |   ret = GNUTLS_E_SUCCESS;  | 
2103  |  |  | 
2104  |  | cleanup:  | 
2105  |  |   _gnutls_free_key_datum(&tmp_raw_priv);  | 
2106  |  |   _gnutls_free_key_datum(&tmp_raw_pub);  | 
2107  |  |   GNUTLS_OQS_FUNC(OQS_SIG_free)(sig);  | 
2108  |  |   return ret;  | 
2109  |  | }  | 
2110  |  | #else  | 
2111  |  | static int ml_dsa_exists(gnutls_pk_algorithm_t algo MAYBE_UNUSED)  | 
2112  | 0  | { | 
2113  | 0  |   return 0;  | 
2114  | 0  | }  | 
2115  |  |  | 
2116  |  | static int ml_dsa_sign(gnutls_pk_algorithm_t algo MAYBE_UNUSED,  | 
2117  |  |            gnutls_datum_t *signature MAYBE_UNUSED,  | 
2118  |  |            const gnutls_datum_t *message MAYBE_UNUSED,  | 
2119  |  |            const gnutls_datum_t *raw_priv MAYBE_UNUSED)  | 
2120  | 0  | { | 
2121  | 0  |   return gnutls_assert_val(GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
2122  | 0  | }  | 
2123  |  |  | 
2124  |  | static int ml_dsa_verify(gnutls_pk_algorithm_t algo MAYBE_UNUSED,  | 
2125  |  |        const gnutls_datum_t *signature MAYBE_UNUSED,  | 
2126  |  |        const gnutls_datum_t *message MAYBE_UNUSED,  | 
2127  |  |        const gnutls_datum_t *raw_pub MAYBE_UNUSED)  | 
2128  | 0  | { | 
2129  | 0  |   return gnutls_assert_val(GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
2130  | 0  | }  | 
2131  |  |  | 
2132  |  | static int ml_dsa_generate_keypair(gnutls_pk_algorithm_t algo MAYBE_UNUSED,  | 
2133  |  |            gnutls_datum_t *raw_priv MAYBE_UNUSED,  | 
2134  |  |            gnutls_datum_t *raw_pub MAYBE_UNUSED)  | 
2135  | 0  | { | 
2136  | 0  |   return gnutls_assert_val(GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
2137  | 0  | }  | 
2138  |  | #endif  | 
2139  |  |  | 
2140  |  | /* This is the lower-level part of privkey_sign_raw_data().  | 
2141  |  |  *  | 
2142  |  |  * It accepts data in the appropriate hash form, i.e., DigestInfo  | 
2143  |  |  * for PK_RSA, hash for PK_ECDSA, PK_DSA, PK_RSA_PSS, and raw data  | 
2144  |  |  * for Ed25519 and Ed448.  | 
2145  |  |  *  | 
2146  |  |  * in case of EC/DSA, signed data are encoded into r,s values  | 
2147  |  |  */  | 
2148  |  | static int _wrap_nettle_pk_sign(gnutls_pk_algorithm_t algo,  | 
2149  |  |         gnutls_datum_t *signature,  | 
2150  |  |         const gnutls_datum_t *vdata,  | 
2151  |  |         const gnutls_pk_params_st *pk_params,  | 
2152  |  |         const gnutls_x509_spki_st *sign_params)  | 
2153  | 0  | { | 
2154  | 0  |   int ret;  | 
2155  | 0  |   unsigned int hash_len;  | 
2156  | 0  |   const mac_entry_st *me;  | 
2157  | 0  |   bool not_approved = false;  | 
2158  |  | 
  | 
2159  | 0  |   FAIL_IF_LIB_ERROR;  | 
2160  |  |  | 
2161  |  |   /* check if the curve relates to the algorithm used */  | 
2162  | 0  |   if (IS_EC(algo) && gnutls_ecc_curve_get_pk(pk_params->curve) != algo) { | 
2163  | 0  |     ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2164  | 0  |     goto cleanup;  | 
2165  | 0  |   }  | 
2166  |  |  | 
2167  |  |   /* deterministic ECDSA/DSA is prohibited under FIPS except in  | 
2168  |  |    * the selftests */  | 
2169  | 0  |   if ((algo == GNUTLS_PK_DSA || algo == GNUTLS_PK_ECDSA) &&  | 
2170  | 0  |       (sign_params->flags & GNUTLS_PK_FLAG_REPRODUCIBLE) &&  | 
2171  | 0  |       _gnutls_fips_mode_enabled() &&  | 
2172  | 0  |       _gnutls_get_lib_state() != LIB_STATE_SELFTEST) { | 
2173  | 0  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
2174  | 0  |     goto cleanup;  | 
2175  | 0  |   }  | 
2176  |  |  | 
2177  | 0  |   switch (algo) { | 
2178  | 0  |   case GNUTLS_PK_EDDSA_ED25519: /* we do EdDSA */  | 
2179  | 0  |   case GNUTLS_PK_EDDSA_ED448: { | 
2180  | 0  |     const gnutls_ecc_curve_entry_st *e;  | 
2181  |  | 
  | 
2182  | 0  |     if (unlikely(get_eddsa_curve(algo) != pk_params->curve)) { | 
2183  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2184  | 0  |       goto cleanup;  | 
2185  | 0  |     }  | 
2186  |  |  | 
2187  | 0  |     e = _gnutls_ecc_curve_get_params(pk_params->curve);  | 
2188  | 0  |     if (e == NULL) { | 
2189  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
2190  | 0  |       goto cleanup;  | 
2191  | 0  |     }  | 
2192  |  |  | 
2193  | 0  |     signature->data = gnutls_malloc(e->sig_size);  | 
2194  | 0  |     if (signature->data == NULL) { | 
2195  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
2196  | 0  |       goto cleanup;  | 
2197  | 0  |     }  | 
2198  |  |  | 
2199  | 0  |     signature->size = e->sig_size;  | 
2200  |  | 
  | 
2201  | 0  |     if (pk_params->raw_pub.size != e->size ||  | 
2202  | 0  |         pk_params->raw_priv.size != e->size) { | 
2203  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIGN_FAILED);  | 
2204  | 0  |       goto cleanup;  | 
2205  | 0  |     }  | 
2206  |  |  | 
2207  | 0  |     ret = eddsa_sign(algo, pk_params->raw_pub.data,  | 
2208  | 0  |          pk_params->raw_priv.data, vdata->size,  | 
2209  | 0  |          vdata->data, signature->data);  | 
2210  | 0  |     if (ret < 0)  | 
2211  | 0  |       goto cleanup;  | 
2212  |  |  | 
2213  | 0  |     break;  | 
2214  | 0  |   }  | 
2215  | 0  | #if ENABLE_GOST  | 
2216  | 0  |   case GNUTLS_PK_GOST_01:  | 
2217  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
2218  | 0  |   case GNUTLS_PK_GOST_12_512: { | 
2219  | 0  |     struct ecc_scalar priv;  | 
2220  | 0  |     struct dsa_signature sig;  | 
2221  | 0  |     const struct ecc_curve *curve;  | 
2222  |  |  | 
2223  |  |     /* GOSTDSA is not approved */  | 
2224  | 0  |     not_approved = true;  | 
2225  |  | 
  | 
2226  | 0  |     curve = get_supported_gost_curve(pk_params->curve);  | 
2227  | 0  |     if (curve == NULL) { | 
2228  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2229  | 0  |       goto cleanup;  | 
2230  | 0  |     }  | 
2231  |  |  | 
2232  | 0  |     ret = _ecc_params_to_privkey(pk_params, &priv, curve);  | 
2233  | 0  |     if (ret < 0) { | 
2234  | 0  |       gnutls_assert();  | 
2235  | 0  |       goto cleanup;  | 
2236  | 0  |     }  | 
2237  |  |  | 
2238  |  |     /* This call will return a valid MAC entry and  | 
2239  |  |        * getters will check that is not null anyway. */  | 
2240  | 0  |     me = hash_to_entry(_gnutls_gost_digest(pk_params->algo));  | 
2241  | 0  |     if (_gnutls_mac_get_algo_len(me) != vdata->size) { | 
2242  | 0  |       _gnutls_debug_log(  | 
2243  | 0  |         "Security level of algorithm requires hash %s(%zd)\n",  | 
2244  | 0  |         _gnutls_mac_get_name(me),  | 
2245  | 0  |         _gnutls_mac_get_algo_len(me));  | 
2246  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
2247  | 0  |       goto cleanup;  | 
2248  | 0  |     }  | 
2249  |  |  | 
2250  | 0  |     dsa_signature_init(&sig);  | 
2251  |  | 
  | 
2252  | 0  |     gostdsa_sign(&priv, NULL, rnd_tmpkey_func, vdata->size,  | 
2253  | 0  |            vdata->data, &sig);  | 
2254  |  | 
  | 
2255  | 0  |     ret = _gnutls_encode_gost_rs(signature, &sig.r, &sig.s,  | 
2256  | 0  |                (ecc_bit_size(curve) + 7) / 8);  | 
2257  |  | 
  | 
2258  | 0  |     dsa_signature_clear(&sig);  | 
2259  | 0  |     ecc_scalar_zclear(&priv);  | 
2260  |  | 
  | 
2261  | 0  |     if (ret < 0) { | 
2262  | 0  |       gnutls_assert();  | 
2263  | 0  |       goto cleanup;  | 
2264  | 0  |     }  | 
2265  | 0  |     break;  | 
2266  | 0  |   }  | 
2267  | 0  | #endif  | 
2268  | 0  |   case GNUTLS_PK_ECDSA: /* we do ECDSA */  | 
2269  | 0  |   { | 
2270  | 0  |     struct ecc_scalar priv;  | 
2271  | 0  |     struct dsa_signature sig;  | 
2272  | 0  |     int curve_id = pk_params->curve;  | 
2273  | 0  |     const struct ecc_curve *curve;  | 
2274  | 0  |     mpz_t q;  | 
2275  |  |     /* 521-bit elliptic curve generator at maximum */  | 
2276  | 0  |     uint8_t buf[(521 + 7) / 8];  | 
2277  | 0  |     gnutls_datum_t k = { NULL, 0 }; | 
2278  | 0  |     void *random_ctx;  | 
2279  | 0  |     nettle_random_func *random_func;  | 
2280  |  | 
  | 
2281  | 0  |     curve = get_supported_nist_curve(curve_id);  | 
2282  | 0  |     if (curve == NULL) { | 
2283  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2284  | 0  |       goto cleanup;  | 
2285  | 0  |     }  | 
2286  |  |  | 
2287  |  |     /* P-192 is not supported in FIPS 140-3 */  | 
2288  | 0  |     if (curve_id == GNUTLS_ECC_CURVE_SECP192R1) { | 
2289  | 0  |       not_approved = true;  | 
2290  | 0  |     }  | 
2291  |  | 
  | 
2292  | 0  |     ret = _ecc_params_to_privkey(pk_params, &priv, curve);  | 
2293  | 0  |     if (ret < 0) { | 
2294  | 0  |       gnutls_assert();  | 
2295  | 0  |       goto cleanup;  | 
2296  | 0  |     }  | 
2297  |  |  | 
2298  | 0  |     dsa_signature_init(&sig);  | 
2299  |  | 
  | 
2300  | 0  |     me = _gnutls_dsa_q_to_hash(pk_params, &hash_len);  | 
2301  |  | 
  | 
2302  | 0  |     if (hash_len > vdata->size) { | 
2303  | 0  |       gnutls_assert();  | 
2304  | 0  |       _gnutls_debug_log(  | 
2305  | 0  |         "Security level of algorithm requires hash %s(%d) or better\n",  | 
2306  | 0  |         _gnutls_mac_get_name(me), hash_len);  | 
2307  | 0  |       hash_len = vdata->size;  | 
2308  | 0  |     }  | 
2309  |  |  | 
2310  |  |     /* Only SHA-2 is allowed in FIPS 140-3 */  | 
2311  | 0  |     switch (DIG_TO_MAC(sign_params->dsa_dig)) { | 
2312  | 0  |     case GNUTLS_MAC_SHA256:  | 
2313  | 0  |     case GNUTLS_MAC_SHA384:  | 
2314  | 0  |     case GNUTLS_MAC_SHA512:  | 
2315  | 0  |     case GNUTLS_MAC_SHA224:  | 
2316  | 0  |       break;  | 
2317  | 0  |     default:  | 
2318  | 0  |       not_approved = true;  | 
2319  | 0  |     }  | 
2320  |  |  | 
2321  | 0  |     mpz_init(q);  | 
2322  |  | 
  | 
2323  | 0  |     if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST ||  | 
2324  | 0  |         (sign_params->flags & GNUTLS_PK_FLAG_REPRODUCIBLE)) { | 
2325  | 0  |       mp_limb_t h[DSA_COMPUTE_K_ITCH];  | 
2326  |  | 
  | 
2327  | 0  |       ret = _gnutls_ecc_curve_to_dsa_q(q, curve_id);  | 
2328  | 0  |       if (ret < 0)  | 
2329  | 0  |         goto ecdsa_cleanup;  | 
2330  |  |  | 
2331  | 0  |       ret = _gnutls_dsa_compute_k(  | 
2332  | 0  |         h, mpz_limbs_read(q), priv.p,  | 
2333  | 0  |         ecc_size(priv.ecc), ecc_bit_size(priv.ecc),  | 
2334  | 0  |         DIG_TO_MAC(sign_params->dsa_dig), vdata->data,  | 
2335  | 0  |         vdata->size);  | 
2336  | 0  |       if (ret < 0)  | 
2337  | 0  |         goto ecdsa_cleanup;  | 
2338  |  |  | 
2339  | 0  |       k.data = buf;  | 
2340  | 0  |       k.size = (ecc_bit_size(priv.ecc) + 7) / 8;  | 
2341  |  | 
  | 
2342  | 0  |       _gnutls_ecdsa_compute_k_finish(k.data, k.size, h,  | 
2343  | 0  |                    ecc_size(priv.ecc));  | 
2344  |  | 
  | 
2345  | 0  |       random_ctx = &k;  | 
2346  | 0  |       random_func = rnd_datum_func;  | 
2347  | 0  |     } else { | 
2348  | 0  |       random_ctx = NULL;  | 
2349  | 0  |       random_func = rnd_nonce_func;  | 
2350  | 0  |     }  | 
2351  | 0  |     ecdsa_sign(&priv, random_ctx, random_func, hash_len,  | 
2352  | 0  |          vdata->data, &sig);  | 
2353  |  |  | 
2354  |  |     /* prevent memory leaks */  | 
2355  | 0  |     if (HAVE_LIB_ERROR()) { | 
2356  | 0  |       ret = GNUTLS_E_LIB_IN_ERROR_STATE;  | 
2357  | 0  |       goto ecdsa_cleanup;  | 
2358  | 0  |     }  | 
2359  |  |  | 
2360  | 0  |     ret = _gnutls_encode_ber_rs(signature, &sig.r, &sig.s);  | 
2361  |  | 
  | 
2362  | 0  |   ecdsa_cleanup:  | 
2363  | 0  |     dsa_signature_clear(&sig);  | 
2364  | 0  |     ecc_scalar_zclear(&priv);  | 
2365  | 0  |     mpz_clear(q);  | 
2366  |  | 
  | 
2367  | 0  |     if (ret < 0) { | 
2368  | 0  |       gnutls_assert();  | 
2369  | 0  |       goto cleanup;  | 
2370  | 0  |     }  | 
2371  | 0  |     break;  | 
2372  | 0  |   }  | 
2373  | 0  | #ifdef ENABLE_DSA  | 
2374  | 0  |   case GNUTLS_PK_DSA: { | 
2375  | 0  |     struct dsa_params pub;  | 
2376  | 0  |     bigint_t priv;  | 
2377  | 0  |     struct dsa_signature sig;  | 
2378  |  |     /* 512-bit DSA subgroup at maximum */  | 
2379  | 0  |     uint8_t buf[(512 + 7) / 8];  | 
2380  | 0  |     gnutls_datum_t k = { NULL, 0 }; | 
2381  | 0  |     void *random_ctx;  | 
2382  | 0  |     nettle_random_func *random_func;  | 
2383  |  |  | 
2384  |  |     /* DSA is currently being defined as sunset with the  | 
2385  |  |        * current draft of FIPS 186-5 */  | 
2386  | 0  |     not_approved = true;  | 
2387  |  | 
  | 
2388  | 0  |     memset(&priv, 0, sizeof(priv));  | 
2389  | 0  |     memset(&pub, 0, sizeof(pub));  | 
2390  | 0  |     _dsa_params_get(pk_params, &pub);  | 
2391  |  | 
  | 
2392  | 0  |     priv = pk_params->params[DSA_X];  | 
2393  |  | 
  | 
2394  | 0  |     dsa_signature_init(&sig);  | 
2395  |  | 
  | 
2396  | 0  |     me = _gnutls_dsa_q_to_hash(pk_params, &hash_len);  | 
2397  |  | 
  | 
2398  | 0  |     if (hash_len > vdata->size) { | 
2399  | 0  |       gnutls_assert();  | 
2400  | 0  |       _gnutls_debug_log(  | 
2401  | 0  |         "Security level of algorithm requires hash %s(%d) or better (have: %d)\n",  | 
2402  | 0  |         _gnutls_mac_get_name(me), hash_len,  | 
2403  | 0  |         (int)vdata->size);  | 
2404  | 0  |       hash_len = vdata->size;  | 
2405  | 0  |     }  | 
2406  |  | 
  | 
2407  | 0  |     if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST ||  | 
2408  | 0  |         (sign_params->flags & GNUTLS_PK_FLAG_REPRODUCIBLE)) { | 
2409  | 0  |       mp_limb_t h[DSA_COMPUTE_K_ITCH];  | 
2410  |  | 
  | 
2411  | 0  |       ret = _gnutls_dsa_compute_k(  | 
2412  | 0  |         h, mpz_limbs_read(pub.q),  | 
2413  | 0  |         mpz_limbs_read(TOMPZ(priv)), mpz_size(pub.q),  | 
2414  | 0  |         mpz_sizeinbase(pub.q, 2),  | 
2415  | 0  |         DIG_TO_MAC(sign_params->dsa_dig), vdata->data,  | 
2416  | 0  |         vdata->size);  | 
2417  | 0  |       if (ret < 0)  | 
2418  | 0  |         goto dsa_fail;  | 
2419  |  |  | 
2420  | 0  |       k.data = buf;  | 
2421  | 0  |       k.size = (mpz_sizeinbase(pub.q, 2) + 7) / 8;  | 
2422  |  | 
  | 
2423  | 0  |       _gnutls_dsa_compute_k_finish(k.data, k.size, h,  | 
2424  | 0  |                  mpz_size(pub.q));  | 
2425  |  | 
  | 
2426  | 0  |       random_ctx = &k;  | 
2427  | 0  |       random_func = rnd_datum_func;  | 
2428  | 0  |     } else { | 
2429  | 0  |       random_ctx = NULL;  | 
2430  | 0  |       random_func = rnd_nonce_func;  | 
2431  | 0  |     }  | 
2432  | 0  |     ret = dsa_sign(&pub, TOMPZ(priv), random_ctx, random_func,  | 
2433  | 0  |              hash_len, vdata->data, &sig);  | 
2434  | 0  |     if (ret == 0 || HAVE_LIB_ERROR()) { | 
2435  | 0  |       gnutls_assert();  | 
2436  | 0  |       ret = GNUTLS_E_PK_SIGN_FAILED;  | 
2437  | 0  |       goto dsa_fail;  | 
2438  | 0  |     }  | 
2439  |  |  | 
2440  | 0  |     ret = _gnutls_encode_ber_rs(signature, &sig.r, &sig.s);  | 
2441  |  | 
  | 
2442  | 0  |   dsa_fail:  | 
2443  | 0  |     dsa_signature_clear(&sig);  | 
2444  |  | 
  | 
2445  | 0  |     if (ret < 0) { | 
2446  | 0  |       gnutls_assert();  | 
2447  | 0  |       goto cleanup;  | 
2448  | 0  |     }  | 
2449  | 0  |     break;  | 
2450  | 0  |   }  | 
2451  | 0  | #endif  | 
2452  | 0  |   case GNUTLS_PK_RSA: { | 
2453  | 0  |     struct rsa_private_key priv;  | 
2454  | 0  |     struct rsa_public_key pub;  | 
2455  | 0  |     nettle_random_func *random_func;  | 
2456  | 0  |     mpz_t s;  | 
2457  |  | 
  | 
2458  | 0  |     _rsa_params_to_privkey(pk_params, &priv);  | 
2459  |  | 
  | 
2460  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
2461  | 0  |     if (ret < 0) { | 
2462  | 0  |       gnutls_assert();  | 
2463  | 0  |       goto cleanup;  | 
2464  | 0  |     }  | 
2465  |  |  | 
2466  |  |     /* RSA modulus size should be 2048-bit or larger in FIPS  | 
2467  |  |        * 140-3.  In addition to this, only SHA-2 is allowed  | 
2468  |  |        * for SigGen; it is checked in pk_prepare_hash lib/pk.c  | 
2469  |  |        */  | 
2470  | 0  |     if (unlikely(mpz_sizeinbase(pub.n, 2) < 2048)) { | 
2471  | 0  |       not_approved = true;  | 
2472  | 0  |     }  | 
2473  |  | 
  | 
2474  | 0  |     mpz_init(s);  | 
2475  |  | 
  | 
2476  | 0  |     if (_gnutls_get_lib_state() == LIB_STATE_SELFTEST)  | 
2477  | 0  |       random_func = rnd_nonce_func_fallback;  | 
2478  | 0  |     else  | 
2479  | 0  |       random_func = rnd_nonce_func;  | 
2480  | 0  |     ret = rsa_pkcs1_sign_tr(&pub, &priv, NULL, random_func,  | 
2481  | 0  |           vdata->size, vdata->data, s);  | 
2482  | 0  |     if (ret == 0 || HAVE_LIB_ERROR()) { | 
2483  | 0  |       gnutls_assert();  | 
2484  | 0  |       ret = GNUTLS_E_PK_SIGN_FAILED;  | 
2485  | 0  |       goto rsa_fail;  | 
2486  | 0  |     }  | 
2487  |  |  | 
2488  | 0  |     ret = _gnutls_mpi_dprint_size(s, signature, pub.size);  | 
2489  |  | 
  | 
2490  | 0  |   rsa_fail:  | 
2491  | 0  |     mpz_clear(s);  | 
2492  |  | 
  | 
2493  | 0  |     if (ret < 0) { | 
2494  | 0  |       gnutls_assert();  | 
2495  | 0  |       goto cleanup;  | 
2496  | 0  |     }  | 
2497  |  |  | 
2498  | 0  |     break;  | 
2499  | 0  |   }  | 
2500  | 0  |   case GNUTLS_PK_RSA_PSS: { | 
2501  | 0  |     struct rsa_private_key priv;  | 
2502  | 0  |     struct rsa_public_key pub;  | 
2503  | 0  |     mpz_t s;  | 
2504  |  | 
  | 
2505  | 0  |     _rsa_params_to_privkey(pk_params, &priv);  | 
2506  |  | 
  | 
2507  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
2508  | 0  |     if (ret < 0) { | 
2509  | 0  |       gnutls_assert();  | 
2510  | 0  |       goto cleanup;  | 
2511  | 0  |     }  | 
2512  |  |  | 
2513  |  |     /* RSA modulus size should be 2048-bit or larger in FIPS  | 
2514  |  |        * 140-3.  In addition to this, only SHA-2 is allowed  | 
2515  |  |        * for SigGen; however, Nettle only support SHA256,  | 
2516  |  |        * SHA384, and SHA512 for RSA-PSS (see  | 
2517  |  |        * _rsa_pss_sign_digest_tr in this file for details).  | 
2518  |  |        */  | 
2519  | 0  |     if (unlikely(mpz_sizeinbase(pub.n, 2) < 2048)) { | 
2520  | 0  |       not_approved = true;  | 
2521  | 0  |     }  | 
2522  |  | 
  | 
2523  | 0  |     mpz_init(s);  | 
2524  |  | 
  | 
2525  | 0  |     me = hash_to_entry(sign_params->rsa_pss_dig);  | 
2526  |  |  | 
2527  |  |     /* According to FIPS 186-5 5.4, the salt length must be  | 
2528  |  |        * in the range between 0 and the hash length inclusive.  | 
2529  |  |        */  | 
2530  | 0  |     if (sign_params->salt_size > _gnutls_mac_get_algo_len(me)) { | 
2531  | 0  |       not_approved = true;  | 
2532  | 0  |     }  | 
2533  |  | 
  | 
2534  | 0  |     ret = _rsa_pss_sign_digest_tr(sign_params->rsa_pss_dig, &pub,  | 
2535  | 0  |                 &priv, NULL, rnd_nonce_func,  | 
2536  | 0  |                 sign_params->salt_size,  | 
2537  | 0  |                 vdata->data, s);  | 
2538  | 0  |     if (ret < 0) { | 
2539  | 0  |       gnutls_assert();  | 
2540  | 0  |       ret = GNUTLS_E_PK_SIGN_FAILED;  | 
2541  | 0  |       goto rsa_pss_fail;  | 
2542  | 0  |     }  | 
2543  |  |  | 
2544  | 0  |     ret = _gnutls_mpi_dprint_size(s, signature, pub.size);  | 
2545  |  | 
  | 
2546  | 0  |   rsa_pss_fail:  | 
2547  | 0  |     mpz_clear(s);  | 
2548  |  | 
  | 
2549  | 0  |     if (ret < 0) { | 
2550  | 0  |       gnutls_assert();  | 
2551  | 0  |       goto cleanup;  | 
2552  | 0  |     }  | 
2553  |  |  | 
2554  | 0  |     break;  | 
2555  | 0  |   }  | 
2556  | 0  |   case GNUTLS_PK_MLDSA44:  | 
2557  | 0  |   case GNUTLS_PK_MLDSA65:  | 
2558  | 0  |   case GNUTLS_PK_MLDSA87:  | 
2559  |  | #if !defined(HAVE_LEANCRYPTO) && defined(HAVE_LIBOQS)  | 
2560  |  |     /* As of liboqs 0.12.0, liboqs implementation lacks  | 
2561  |  |      * sufficient checks for ML-DSA.  | 
2562  |  |      */  | 
2563  |  |     not_approved = true;  | 
2564  |  | #endif  | 
2565  | 0  |     ret = ml_dsa_sign(algo, signature, vdata, &pk_params->raw_priv);  | 
2566  | 0  |     if (ret < 0)  | 
2567  | 0  |       goto cleanup;  | 
2568  | 0  |     break;  | 
2569  | 0  |   default:  | 
2570  | 0  |     gnutls_assert();  | 
2571  | 0  |     ret = GNUTLS_E_INTERNAL_ERROR;  | 
2572  | 0  |     goto cleanup;  | 
2573  | 0  |   }  | 
2574  |  |  | 
2575  | 0  |   ret = 0;  | 
2576  |  | 
  | 
2577  | 0  | cleanup:  | 
2578  | 0  |   if (ret < 0) { | 
2579  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_ERROR);  | 
2580  | 0  |   } else if (not_approved) { | 
2581  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_NOT_APPROVED);  | 
2582  | 0  |   } else { | 
2583  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_APPROVED);  | 
2584  | 0  |   }  | 
2585  |  | 
  | 
2586  | 0  |   FAIL_IF_LIB_ERROR;  | 
2587  | 0  |   return ret;  | 
2588  | 0  | }  | 
2589  |  |  | 
2590  |  | static int _rsa_pss_verify_digest(gnutls_digest_algorithm_t dig,  | 
2591  |  |           const struct rsa_public_key *pub,  | 
2592  |  |           size_t salt_size, const uint8_t *digest,  | 
2593  |  |           size_t digest_size, const mpz_t s)  | 
2594  | 0  | { | 
2595  | 0  |   int (*verify_func)(const struct rsa_public_key *, size_t,  | 
2596  | 0  |          const uint8_t *, const mpz_t);  | 
2597  | 0  |   size_t hash_size;  | 
2598  |  | 
  | 
2599  | 0  |   switch (dig) { | 
2600  | 0  |   case GNUTLS_DIG_SHA256:  | 
2601  | 0  |     verify_func = rsa_pss_sha256_verify_digest;  | 
2602  | 0  |     hash_size = 32;  | 
2603  | 0  |     break;  | 
2604  | 0  |   case GNUTLS_DIG_SHA384:  | 
2605  | 0  |     verify_func = rsa_pss_sha384_verify_digest;  | 
2606  | 0  |     hash_size = 48;  | 
2607  | 0  |     break;  | 
2608  | 0  |   case GNUTLS_DIG_SHA512:  | 
2609  | 0  |     verify_func = rsa_pss_sha512_verify_digest;  | 
2610  | 0  |     hash_size = 64;  | 
2611  | 0  |     break;  | 
2612  | 0  |   default:  | 
2613  | 0  |     gnutls_assert();  | 
2614  | 0  |     return 0;  | 
2615  | 0  |   }  | 
2616  |  |  | 
2617  | 0  |   if (digest_size != hash_size)  | 
2618  | 0  |     return gnutls_assert_val(0);  | 
2619  |  |  | 
2620  | 0  |   CHECK_INVALID_RSA_PSS_PARAMS(hash_size, salt_size, pub->size, 0);  | 
2621  |  |  | 
2622  | 0  |   return verify_func(pub, salt_size, digest, s);  | 
2623  | 0  | }  | 
2624  |  |  | 
2625  |  | static inline int eddsa_verify(gnutls_pk_algorithm_t algo, const uint8_t *pub,  | 
2626  |  |              size_t length, const uint8_t *msg,  | 
2627  |  |              const uint8_t *signature)  | 
2628  | 0  | { | 
2629  | 0  |   int ret;  | 
2630  |  | 
  | 
2631  | 0  |   switch (algo) { | 
2632  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
2633  | 0  |     ret = ed25519_sha512_verify(pub, length, msg, signature);  | 
2634  | 0  |     if (ret == 0)  | 
2635  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2636  | 0  |     return 0;  | 
2637  | 0  |   case GNUTLS_PK_EDDSA_ED448:  | 
2638  | 0  |     ret = ed448_shake256_verify(pub, length, msg, signature);  | 
2639  | 0  |     if (ret == 0)  | 
2640  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2641  | 0  |     return 0;  | 
2642  | 0  |   default:  | 
2643  | 0  |     return gnutls_assert_val(  | 
2644  | 0  |       GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
2645  | 0  |   }  | 
2646  | 0  | }  | 
2647  |  |  | 
2648  |  | static int _wrap_nettle_pk_verify(gnutls_pk_algorithm_t algo,  | 
2649  |  |           const gnutls_datum_t *vdata,  | 
2650  |  |           const gnutls_datum_t *signature,  | 
2651  |  |           const gnutls_pk_params_st *pk_params,  | 
2652  |  |           const gnutls_x509_spki_st *sign_params)  | 
2653  | 0  | { | 
2654  | 0  |   int ret;  | 
2655  | 0  |   unsigned int hash_len;  | 
2656  | 0  |   bigint_t tmp[2] = { NULL, NULL }; | 
2657  | 0  |   bool not_approved = false;  | 
2658  |  | 
  | 
2659  | 0  |   FAIL_IF_LIB_ERROR;  | 
2660  |  |  | 
2661  |  |   /* check if the curve relates to the algorithm used */  | 
2662  | 0  |   if (IS_EC(algo) && gnutls_ecc_curve_get_pk(pk_params->curve) != algo) { | 
2663  | 0  |     ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2664  | 0  |     goto cleanup;  | 
2665  | 0  |   }  | 
2666  |  |  | 
2667  | 0  |   switch (algo) { | 
2668  | 0  |   case GNUTLS_PK_EDDSA_ED25519: /* we do EdDSA */  | 
2669  | 0  |   case GNUTLS_PK_EDDSA_ED448: { | 
2670  | 0  |     const gnutls_ecc_curve_entry_st *e;  | 
2671  |  | 
  | 
2672  | 0  |     if (unlikely(get_eddsa_curve(algo) != pk_params->curve)) { | 
2673  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2674  | 0  |       goto cleanup;  | 
2675  | 0  |     }  | 
2676  |  |  | 
2677  | 0  |     e = _gnutls_ecc_curve_get_params(pk_params->curve);  | 
2678  | 0  |     if (e == NULL) { | 
2679  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2680  | 0  |       goto cleanup;  | 
2681  | 0  |     }  | 
2682  |  |  | 
2683  | 0  |     if (signature->size != e->sig_size) { | 
2684  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2685  | 0  |       goto cleanup;  | 
2686  | 0  |     }  | 
2687  |  |  | 
2688  | 0  |     if (pk_params->raw_pub.size != e->size) { | 
2689  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIGN_FAILED);  | 
2690  | 0  |       goto cleanup;  | 
2691  | 0  |     }  | 
2692  |  |  | 
2693  | 0  |     ret = eddsa_verify(algo, pk_params->raw_pub.data, vdata->size,  | 
2694  | 0  |            vdata->data, signature->data);  | 
2695  | 0  |     break;  | 
2696  | 0  |   }  | 
2697  | 0  | #if ENABLE_GOST  | 
2698  | 0  |   case GNUTLS_PK_GOST_01:  | 
2699  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
2700  | 0  |   case GNUTLS_PK_GOST_12_512: { | 
2701  | 0  |     struct ecc_point pub;  | 
2702  | 0  |     struct dsa_signature sig;  | 
2703  | 0  |     const struct ecc_curve *curve;  | 
2704  | 0  |     const mac_entry_st *me;  | 
2705  |  |  | 
2706  |  |     /* GOSTDSA is not approved */  | 
2707  | 0  |     not_approved = true;  | 
2708  |  | 
  | 
2709  | 0  |     curve = get_supported_gost_curve(pk_params->curve);  | 
2710  | 0  |     if (curve == NULL) { | 
2711  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2712  | 0  |       goto cleanup;  | 
2713  | 0  |     }  | 
2714  |  |  | 
2715  |  |     /* This call will return a valid MAC entry and  | 
2716  |  |        * getters will check that is not null anyway. */  | 
2717  | 0  |     me = hash_to_entry(_gnutls_gost_digest(pk_params->algo));  | 
2718  | 0  |     if (_gnutls_mac_get_algo_len(me) != vdata->size) { | 
2719  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2720  | 0  |       goto cleanup;  | 
2721  | 0  |     }  | 
2722  |  |  | 
2723  | 0  |     ret = _gnutls_decode_gost_rs(signature, &tmp[0], &tmp[1]);  | 
2724  | 0  |     if (ret < 0) { | 
2725  | 0  |       gnutls_assert();  | 
2726  | 0  |       goto cleanup;  | 
2727  | 0  |     }  | 
2728  |  |  | 
2729  | 0  |     ret = _gost_params_to_pubkey(pk_params, &pub, curve);  | 
2730  | 0  |     if (ret < 0) { | 
2731  | 0  |       gnutls_assert();  | 
2732  | 0  |       goto cleanup;  | 
2733  | 0  |     }  | 
2734  |  |  | 
2735  | 0  |     memcpy(sig.r, tmp[0], SIZEOF_MPZT);  | 
2736  | 0  |     memcpy(sig.s, tmp[1], SIZEOF_MPZT);  | 
2737  |  | 
  | 
2738  | 0  |     ret = gostdsa_verify(&pub, vdata->size, vdata->data, &sig);  | 
2739  | 0  |     if (ret == 0) { | 
2740  | 0  |       gnutls_assert();  | 
2741  | 0  |       ret = GNUTLS_E_PK_SIG_VERIFY_FAILED;  | 
2742  | 0  |     } else  | 
2743  | 0  |       ret = 0;  | 
2744  |  | 
  | 
2745  | 0  |     ecc_point_clear(&pub);  | 
2746  | 0  |     break;  | 
2747  | 0  |   }  | 
2748  | 0  | #endif  | 
2749  | 0  |   case GNUTLS_PK_ECDSA: /* ECDSA */  | 
2750  | 0  |   { | 
2751  | 0  |     struct ecc_point pub;  | 
2752  | 0  |     struct dsa_signature sig;  | 
2753  | 0  |     int curve_id = pk_params->curve;  | 
2754  | 0  |     const struct ecc_curve *curve;  | 
2755  |  | 
  | 
2756  | 0  |     curve = get_supported_nist_curve(curve_id);  | 
2757  | 0  |     if (curve == NULL) { | 
2758  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
2759  | 0  |       goto cleanup;  | 
2760  | 0  |     }  | 
2761  |  |  | 
2762  |  |     /* P-192 is not supported in FIPS 140-3 */  | 
2763  | 0  |     if (curve_id == GNUTLS_ECC_CURVE_SECP192R1) { | 
2764  | 0  |       not_approved = true;  | 
2765  | 0  |     }  | 
2766  |  | 
  | 
2767  | 0  |     ret = _gnutls_decode_ber_rs(signature, &tmp[0], &tmp[1]);  | 
2768  | 0  |     if (ret < 0) { | 
2769  | 0  |       gnutls_assert();  | 
2770  | 0  |       goto cleanup;  | 
2771  | 0  |     }  | 
2772  |  |  | 
2773  | 0  |     ret = _ecc_params_to_pubkey(pk_params, &pub, curve);  | 
2774  | 0  |     if (ret < 0) { | 
2775  | 0  |       gnutls_assert();  | 
2776  | 0  |       goto cleanup;  | 
2777  | 0  |     }  | 
2778  |  |  | 
2779  | 0  |     memcpy(sig.r, tmp[0], SIZEOF_MPZT);  | 
2780  | 0  |     memcpy(sig.s, tmp[1], SIZEOF_MPZT);  | 
2781  |  | 
  | 
2782  | 0  |     (void)_gnutls_dsa_q_to_hash(pk_params, &hash_len);  | 
2783  |  | 
  | 
2784  | 0  |     if (hash_len > vdata->size)  | 
2785  | 0  |       hash_len = vdata->size;  | 
2786  |  |  | 
2787  |  |     /* SHA-1 is allowed for SigVer in FIPS 140-3 in legacy  | 
2788  |  |        * mode */  | 
2789  | 0  |     switch (DIG_TO_MAC(sign_params->dsa_dig)) { | 
2790  | 0  |     case GNUTLS_MAC_SHA1:  | 
2791  | 0  |     case GNUTLS_MAC_SHA256:  | 
2792  | 0  |     case GNUTLS_MAC_SHA384:  | 
2793  | 0  |     case GNUTLS_MAC_SHA512:  | 
2794  | 0  |     case GNUTLS_MAC_SHA224:  | 
2795  | 0  |       break;  | 
2796  | 0  |     default:  | 
2797  | 0  |       not_approved = true;  | 
2798  | 0  |     }  | 
2799  |  |  | 
2800  | 0  |     ret = ecdsa_verify(&pub, hash_len, vdata->data, &sig);  | 
2801  | 0  |     if (ret == 0) { | 
2802  | 0  |       gnutls_assert();  | 
2803  | 0  |       ret = GNUTLS_E_PK_SIG_VERIFY_FAILED;  | 
2804  | 0  |     } else  | 
2805  | 0  |       ret = 0;  | 
2806  |  | 
  | 
2807  | 0  |     ecc_point_clear(&pub);  | 
2808  | 0  |     break;  | 
2809  | 0  |   }  | 
2810  | 0  | #ifdef ENABLE_DSA  | 
2811  | 0  |   case GNUTLS_PK_DSA: { | 
2812  | 0  |     struct dsa_params pub;  | 
2813  | 0  |     struct dsa_signature sig;  | 
2814  | 0  |     bigint_t y;  | 
2815  |  |  | 
2816  |  |     /* DSA is currently being defined as sunset with the  | 
2817  |  |        * current draft of FIPS 186-5 */  | 
2818  | 0  |     not_approved = true;  | 
2819  |  | 
  | 
2820  | 0  |     ret = _gnutls_decode_ber_rs(signature, &tmp[0], &tmp[1]);  | 
2821  | 0  |     if (ret < 0) { | 
2822  | 0  |       gnutls_assert();  | 
2823  | 0  |       goto cleanup;  | 
2824  | 0  |     }  | 
2825  | 0  |     memset(&pub, 0, sizeof(pub));  | 
2826  | 0  |     _dsa_params_get(pk_params, &pub);  | 
2827  | 0  |     y = pk_params->params[DSA_Y];  | 
2828  |  | 
  | 
2829  | 0  |     memcpy(sig.r, tmp[0], SIZEOF_MPZT);  | 
2830  | 0  |     memcpy(sig.s, tmp[1], SIZEOF_MPZT);  | 
2831  |  | 
  | 
2832  | 0  |     _gnutls_dsa_q_to_hash(pk_params, &hash_len);  | 
2833  |  | 
  | 
2834  | 0  |     if (hash_len > vdata->size)  | 
2835  | 0  |       hash_len = vdata->size;  | 
2836  |  | 
  | 
2837  | 0  |     ret = dsa_verify(&pub, TOMPZ(y), hash_len, vdata->data, &sig);  | 
2838  | 0  |     if (ret == 0) { | 
2839  | 0  |       gnutls_assert();  | 
2840  | 0  |       ret = GNUTLS_E_PK_SIG_VERIFY_FAILED;  | 
2841  | 0  |     } else  | 
2842  | 0  |       ret = 0;  | 
2843  |  | 
  | 
2844  | 0  |     break;  | 
2845  | 0  |   }  | 
2846  | 0  | #endif  | 
2847  | 0  |   case GNUTLS_PK_RSA: { | 
2848  | 0  |     struct rsa_public_key pub;  | 
2849  | 0  |     size_t bits;  | 
2850  |  | 
  | 
2851  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
2852  | 0  |     if (ret < 0) { | 
2853  | 0  |       gnutls_assert();  | 
2854  | 0  |       goto cleanup;  | 
2855  | 0  |     }  | 
2856  |  |  | 
2857  | 0  |     bits = mpz_sizeinbase(pub.n, 2);  | 
2858  |  |  | 
2859  |  |     /* In FIPS 140-3, RSA key size should be larger than 2048-bit.  | 
2860  |  |        * In addition to this, only SHA-1 and SHA-2 are allowed  | 
2861  |  |        * for SigVer; it is checked in _pkcs1_rsa_verify_sig in  | 
2862  |  |        * lib/pubkey.c.  | 
2863  |  |        */  | 
2864  | 0  |     if (unlikely(bits < 2048)) { | 
2865  | 0  |       not_approved = true;  | 
2866  | 0  |     }  | 
2867  |  | 
  | 
2868  | 0  |     if (signature->size != pub.size) { | 
2869  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2870  | 0  |       goto cleanup;  | 
2871  | 0  |     }  | 
2872  |  |  | 
2873  | 0  |     ret = _gnutls_mpi_init_scan_nz(&tmp[0], signature->data,  | 
2874  | 0  |                  signature->size);  | 
2875  | 0  |     if (ret < 0) { | 
2876  | 0  |       gnutls_assert();  | 
2877  | 0  |       goto cleanup;  | 
2878  | 0  |     }  | 
2879  |  |  | 
2880  | 0  |     ret = rsa_pkcs1_verify(&pub, vdata->size, vdata->data,  | 
2881  | 0  |                TOMPZ(tmp[0]));  | 
2882  | 0  |     if (ret == 0)  | 
2883  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2884  | 0  |     else  | 
2885  | 0  |       ret = 0;  | 
2886  |  | 
  | 
2887  | 0  |     break;  | 
2888  | 0  |   }  | 
2889  | 0  |   case GNUTLS_PK_RSA_PSS: { | 
2890  | 0  |     struct rsa_public_key pub;  | 
2891  |  | 
  | 
2892  | 0  |     if ((sign_params->flags &  | 
2893  | 0  |          GNUTLS_PK_FLAG_RSA_PSS_FIXED_SALT_LENGTH) &&  | 
2894  | 0  |         sign_params->salt_size != vdata->size) { | 
2895  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2896  | 0  |       goto cleanup;  | 
2897  | 0  |     }  | 
2898  |  |  | 
2899  | 0  |     ret = _rsa_params_to_pubkey(pk_params, &pub);  | 
2900  | 0  |     if (ret < 0) { | 
2901  | 0  |       gnutls_assert();  | 
2902  | 0  |       goto cleanup;  | 
2903  | 0  |     }  | 
2904  |  |  | 
2905  |  |     /* RSA modulus size should be 2048-bit or larger in FIPS  | 
2906  |  |        * 140-3.  In addition to this, only SHA-1 and SHA-2 are  | 
2907  |  |        * allowed for SigVer, while Nettle only supports  | 
2908  |  |        * SHA256, SHA384, and SHA512 for RSA-PSS (see  | 
2909  |  |        * _rsa_pss_verify_digest in this file for the details).  | 
2910  |  |        */  | 
2911  | 0  |     if (unlikely(mpz_sizeinbase(pub.n, 2) < 2048)) { | 
2912  | 0  |       not_approved = true;  | 
2913  | 0  |     }  | 
2914  |  | 
  | 
2915  | 0  |     if (signature->size != pub.size) { | 
2916  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2917  | 0  |       goto cleanup;  | 
2918  | 0  |     }  | 
2919  |  |  | 
2920  | 0  |     ret = _gnutls_mpi_init_scan_nz(&tmp[0], signature->data,  | 
2921  | 0  |                  signature->size);  | 
2922  | 0  |     if (ret < 0) { | 
2923  | 0  |       gnutls_assert();  | 
2924  | 0  |       goto cleanup;  | 
2925  | 0  |     }  | 
2926  |  |  | 
2927  | 0  |     ret = _rsa_pss_verify_digest(sign_params->rsa_pss_dig, &pub,  | 
2928  | 0  |                sign_params->salt_size,  | 
2929  | 0  |                vdata->data, vdata->size,  | 
2930  | 0  |                TOMPZ(tmp[0]));  | 
2931  | 0  |     if (ret == 0)  | 
2932  | 0  |       ret = gnutls_assert_val(GNUTLS_E_PK_SIG_VERIFY_FAILED);  | 
2933  | 0  |     else  | 
2934  | 0  |       ret = 0;  | 
2935  |  | 
  | 
2936  | 0  |     break;  | 
2937  | 0  |   }  | 
2938  | 0  |   case GNUTLS_PK_MLDSA44:  | 
2939  | 0  |   case GNUTLS_PK_MLDSA65:  | 
2940  | 0  |   case GNUTLS_PK_MLDSA87:  | 
2941  |  | #if !defined(HAVE_LEANCRYPTO) && defined(HAVE_LIBOQS)  | 
2942  |  |     /* As of liboqs 0.12.0, liboqs implementation lacks  | 
2943  |  |      * sufficient checks for ML-DSA.  | 
2944  |  |      */  | 
2945  |  |     not_approved = true;  | 
2946  |  | #endif  | 
2947  | 0  |     ret = ml_dsa_verify(algo, signature, vdata,  | 
2948  | 0  |             &pk_params->raw_pub);  | 
2949  | 0  |     if (ret < 0)  | 
2950  | 0  |       goto cleanup;  | 
2951  | 0  |     break;  | 
2952  | 0  |   default:  | 
2953  | 0  |     gnutls_assert();  | 
2954  | 0  |     ret = GNUTLS_E_INTERNAL_ERROR;  | 
2955  | 0  |     goto cleanup;  | 
2956  | 0  |   }  | 
2957  |  |  | 
2958  | 0  | cleanup:  | 
2959  | 0  |   if (ret < 0) { | 
2960  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_ERROR);  | 
2961  | 0  |   } else if (not_approved) { | 
2962  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_NOT_APPROVED);  | 
2963  | 0  |   } else { | 
2964  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_APPROVED);  | 
2965  | 0  |   }  | 
2966  |  | 
  | 
2967  | 0  |   _gnutls_mpi_release(&tmp[0]);  | 
2968  | 0  |   _gnutls_mpi_release(&tmp[1]);  | 
2969  | 0  |   FAIL_IF_LIB_ERROR;  | 
2970  | 0  |   return ret;  | 
2971  | 0  | }  | 
2972  |  |  | 
2973  |  | static inline const struct ecc_curve *get_supported_nist_curve(int curve)  | 
2974  | 0  | { | 
2975  | 0  |   switch (curve) { | 
2976  | 0  | #ifdef ENABLE_NON_SUITEB_CURVES  | 
2977  | 0  |   case GNUTLS_ECC_CURVE_SECP192R1:  | 
2978  | 0  |     return nettle_get_secp_192r1();  | 
2979  | 0  |   case GNUTLS_ECC_CURVE_SECP224R1:  | 
2980  | 0  |     return nettle_get_secp_224r1();  | 
2981  | 0  | #endif  | 
2982  | 0  |   case GNUTLS_ECC_CURVE_SECP256R1:  | 
2983  | 0  |     return nettle_get_secp_256r1();  | 
2984  | 0  |   case GNUTLS_ECC_CURVE_SECP384R1:  | 
2985  | 0  |     return nettle_get_secp_384r1();  | 
2986  | 0  |   case GNUTLS_ECC_CURVE_SECP521R1:  | 
2987  | 0  |     return nettle_get_secp_521r1();  | 
2988  | 0  |   default:  | 
2989  | 0  |     return NULL;  | 
2990  | 0  |   }  | 
2991  | 0  | }  | 
2992  |  |  | 
2993  |  | static inline const char *get_supported_nist_curve_order(int curve)  | 
2994  | 0  | { | 
2995  | 0  |   static const struct { | 
2996  | 0  |     int curve;  | 
2997  | 0  |     const char *order;  | 
2998  | 0  |   } orders[] = { | 
2999  | 0  | #ifdef ENABLE_NON_SUITEB_CURVES  | 
3000  | 0  |     { GNUTLS_ECC_CURVE_SECP192R1, "ffffffffffffffffffffffff99def836" | 
3001  | 0  |                 "146bc9b1b4d22831" },  | 
3002  | 0  |     { GNUTLS_ECC_CURVE_SECP224R1, "ffffffffffffffffffffffffffff16a2" | 
3003  | 0  |                 "e0b8f03e13dd29455c5c2a3d" },  | 
3004  | 0  | #endif  | 
3005  | 0  |     { GNUTLS_ECC_CURVE_SECP256R1, | 
3006  | 0  |       "ffffffff00000000ffffffffffffffff"  | 
3007  | 0  |       "bce6faada7179e84f3b9cac2fc632551" },  | 
3008  | 0  |     { GNUTLS_ECC_CURVE_SECP384R1, | 
3009  | 0  |       "ffffffffffffffffffffffffffffffff"  | 
3010  | 0  |       "ffffffffffffffffc7634d81f4372ddf"  | 
3011  | 0  |       "581a0db248b0a77aecec196accc52973" },  | 
3012  | 0  |     { GNUTLS_ECC_CURVE_SECP521R1, "1fffffffffffffffffffffffffffffff" | 
3013  | 0  |                 "ffffffffffffffffffffffffffffffff"  | 
3014  | 0  |                 "ffa51868783bf2f966b7fcc0148f709a"  | 
3015  | 0  |                 "5d03bb5c9b8899c47aebb6fb71e91386"  | 
3016  | 0  |                 "409" },  | 
3017  | 0  |   };  | 
3018  | 0  |   size_t i;  | 
3019  | 0  | 
  | 
3020  | 0  |   for (i = 0; i < sizeof(orders) / sizeof(orders[0]); i++) { | 
3021  | 0  |     if (orders[i].curve == curve)  | 
3022  | 0  |       return orders[i].order;  | 
3023  | 0  |   }  | 
3024  | 0  |   return NULL;  | 
3025  | 0  | }  | 
3026  |  |  | 
3027  |  | static inline const char *get_supported_nist_curve_modulus(int curve)  | 
3028  | 0  | { | 
3029  | 0  |   static const struct { | 
3030  | 0  |     int curve;  | 
3031  | 0  |     const char *order;  | 
3032  | 0  |   } orders[] = { | 
3033  | 0  | #ifdef ENABLE_NON_SUITEB_CURVES  | 
3034  | 0  |     { GNUTLS_ECC_CURVE_SECP192R1, "fffffffffffffffffffffffffffffffe" | 
3035  | 0  |                 "ffffffffffffffff" },  | 
3036  | 0  |     { GNUTLS_ECC_CURVE_SECP224R1, "ffffffffffffffffffffffffffffffff" | 
3037  | 0  |                 "000000000000000000000001" },  | 
3038  | 0  | #endif  | 
3039  | 0  |     { GNUTLS_ECC_CURVE_SECP256R1, | 
3040  | 0  |       "ffffffff000000010000000000000000"  | 
3041  | 0  |       "00000000ffffffffffffffffffffffff" },  | 
3042  | 0  |     { GNUTLS_ECC_CURVE_SECP384R1, | 
3043  | 0  |       "ffffffffffffffffffffffffffffffff"  | 
3044  | 0  |       "fffffffffffffffffffffffffffffffe"  | 
3045  | 0  |       "ffffffff0000000000000000ffffffff" },  | 
3046  | 0  |     { GNUTLS_ECC_CURVE_SECP521R1, | 
3047  | 0  |       "1ff"  | 
3048  | 0  |       "ffffffffffffffffffffffffffffffff"  | 
3049  | 0  |       "ffffffffffffffffffffffffffffffff"  | 
3050  | 0  |       "ffffffffffffffffffffffffffffffff"  | 
3051  | 0  |       "ffffffffffffffffffffffffffffffff" },  | 
3052  | 0  |   };  | 
3053  | 0  |   size_t i;  | 
3054  | 0  | 
  | 
3055  | 0  |   for (i = 0; i < sizeof(orders) / sizeof(orders[0]); i++) { | 
3056  | 0  |     if (orders[i].curve == curve)  | 
3057  | 0  |       return orders[i].order;  | 
3058  | 0  |   }  | 
3059  | 0  |   return NULL;  | 
3060  | 0  | }  | 
3061  |  |  | 
3062  |  | static inline const struct ecc_curve *get_supported_gost_curve(int curve)  | 
3063  | 0  | { | 
3064  | 0  |   switch (curve) { | 
3065  | 0  | #if ENABLE_GOST  | 
3066  | 0  |   case GNUTLS_ECC_CURVE_GOST256CPA:  | 
3067  | 0  |   case GNUTLS_ECC_CURVE_GOST256CPXA:  | 
3068  | 0  |   case GNUTLS_ECC_CURVE_GOST256B:  | 
3069  | 0  |     return nettle_get_gost_gc256b();  | 
3070  | 0  |   case GNUTLS_ECC_CURVE_GOST512A:  | 
3071  | 0  |     return nettle_get_gost_gc512a();  | 
3072  | 0  | #endif  | 
3073  | 0  |   default:  | 
3074  | 0  |     return NULL;  | 
3075  | 0  |   }  | 
3076  | 0  | }  | 
3077  |  |  | 
3078  |  | static int _wrap_nettle_pk_curve_exists(gnutls_ecc_curve_t curve)  | 
3079  | 0  | { | 
3080  | 0  |   switch (curve) { | 
3081  | 0  |   case GNUTLS_ECC_CURVE_ED25519:  | 
3082  | 0  |   case GNUTLS_ECC_CURVE_X25519:  | 
3083  | 0  |   case GNUTLS_ECC_CURVE_ED448:  | 
3084  | 0  |   case GNUTLS_ECC_CURVE_X448:  | 
3085  | 0  |     return 1;  | 
3086  | 0  |   default:  | 
3087  | 0  |     return ((get_supported_nist_curve(curve) != NULL ||  | 
3088  | 0  |        get_supported_gost_curve(curve) != NULL) ?  | 
3089  | 0  |         1 :  | 
3090  | 0  |         0);  | 
3091  | 0  |   }  | 
3092  | 0  | }  | 
3093  |  |  | 
3094  |  | static int _wrap_nettle_pk_exists(gnutls_pk_algorithm_t pk)  | 
3095  | 0  | { | 
3096  | 0  |   switch (pk) { | 
3097  | 0  |   case GNUTLS_PK_RSA:  | 
3098  | 0  | #ifdef ENABLE_DSA  | 
3099  | 0  |   case GNUTLS_PK_DSA:  | 
3100  | 0  | #endif  | 
3101  | 0  |   case GNUTLS_PK_DH:  | 
3102  | 0  |   case GNUTLS_PK_ECDSA:  | 
3103  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
3104  | 0  |   case GNUTLS_PK_RSA_PSS:  | 
3105  | 0  |   case GNUTLS_PK_RSA_OAEP:  | 
3106  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
3107  | 0  | #if ENABLE_GOST  | 
3108  | 0  |   case GNUTLS_PK_GOST_01:  | 
3109  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
3110  | 0  |   case GNUTLS_PK_GOST_12_512:  | 
3111  | 0  | #endif  | 
3112  | 0  |   case GNUTLS_PK_ECDH_X448:  | 
3113  | 0  |   case GNUTLS_PK_EDDSA_ED448:  | 
3114  | 0  |     return 1;  | 
3115  | 0  |   case GNUTLS_PK_MLKEM768:  | 
3116  | 0  |   case GNUTLS_PK_MLKEM1024:  | 
3117  |  | #ifdef HAVE_LIBOQS  | 
3118  |  |   case GNUTLS_PK_EXP_KYBER768:  | 
3119  |  | #endif  | 
3120  | 0  |     return ml_kem_exists(pk);  | 
3121  | 0  |   case GNUTLS_PK_MLDSA44:  | 
3122  | 0  |   case GNUTLS_PK_MLDSA65:  | 
3123  | 0  |   case GNUTLS_PK_MLDSA87:  | 
3124  | 0  |     return ml_dsa_exists(pk);  | 
3125  | 0  |   default:  | 
3126  | 0  |     return 0;  | 
3127  | 0  |   }  | 
3128  | 0  | }  | 
3129  |  |  | 
3130  |  | static int _wrap_nettle_pk_sign_exists(gnutls_sign_algorithm_t sign)  | 
3131  | 0  | { | 
3132  | 0  |   switch (sign) { | 
3133  | 0  |   case GNUTLS_SIGN_RSA_SHA1:  | 
3134  | 0  | #ifdef ENABLE_DSA  | 
3135  | 0  |   case GNUTLS_SIGN_DSA_SHA1:  | 
3136  | 0  | #endif  | 
3137  | 0  |   case GNUTLS_SIGN_RSA_MD5:  | 
3138  | 0  |   case GNUTLS_SIGN_RSA_MD2:  | 
3139  | 0  |   case GNUTLS_SIGN_RSA_RMD160:  | 
3140  | 0  |   case GNUTLS_SIGN_RSA_SHA256:  | 
3141  | 0  |   case GNUTLS_SIGN_RSA_SHA384:  | 
3142  | 0  |   case GNUTLS_SIGN_RSA_SHA512:  | 
3143  | 0  |   case GNUTLS_SIGN_RSA_SHA224:  | 
3144  | 0  | #ifdef ENABLE_DSA  | 
3145  | 0  |   case GNUTLS_SIGN_DSA_SHA224:  | 
3146  | 0  |   case GNUTLS_SIGN_DSA_SHA256:  | 
3147  | 0  | #endif  | 
3148  | 0  |   case GNUTLS_SIGN_ECDSA_SHA1:  | 
3149  | 0  |   case GNUTLS_SIGN_ECDSA_SHA224:  | 
3150  | 0  |   case GNUTLS_SIGN_ECDSA_SHA256:  | 
3151  | 0  |   case GNUTLS_SIGN_ECDSA_SHA384:  | 
3152  | 0  |   case GNUTLS_SIGN_ECDSA_SHA512:  | 
3153  | 0  | #ifdef ENABLE_DSA  | 
3154  | 0  |   case GNUTLS_SIGN_DSA_SHA384:  | 
3155  | 0  |   case GNUTLS_SIGN_DSA_SHA512:  | 
3156  | 0  | #endif  | 
3157  | 0  |   case GNUTLS_SIGN_ECDSA_SHA3_224:  | 
3158  | 0  |   case GNUTLS_SIGN_ECDSA_SHA3_256:  | 
3159  | 0  |   case GNUTLS_SIGN_ECDSA_SHA3_384:  | 
3160  | 0  |   case GNUTLS_SIGN_ECDSA_SHA3_512:  | 
3161  |  | 
  | 
3162  | 0  | #ifdef ENABLE_DSA  | 
3163  | 0  |   case GNUTLS_SIGN_DSA_SHA3_224:  | 
3164  | 0  |   case GNUTLS_SIGN_DSA_SHA3_256:  | 
3165  | 0  |   case GNUTLS_SIGN_DSA_SHA3_384:  | 
3166  | 0  |   case GNUTLS_SIGN_DSA_SHA3_512:  | 
3167  | 0  | #endif  | 
3168  | 0  |   case GNUTLS_SIGN_RSA_SHA3_224:  | 
3169  | 0  |   case GNUTLS_SIGN_RSA_SHA3_256:  | 
3170  | 0  |   case GNUTLS_SIGN_RSA_SHA3_384:  | 
3171  | 0  |   case GNUTLS_SIGN_RSA_SHA3_512:  | 
3172  |  | 
  | 
3173  | 0  |   case GNUTLS_SIGN_RSA_PSS_SHA256:  | 
3174  | 0  |   case GNUTLS_SIGN_RSA_PSS_SHA384:  | 
3175  | 0  |   case GNUTLS_SIGN_RSA_PSS_SHA512:  | 
3176  | 0  |   case GNUTLS_SIGN_EDDSA_ED25519:  | 
3177  | 0  |   case GNUTLS_SIGN_RSA_RAW:  | 
3178  |  | 
  | 
3179  | 0  |   case GNUTLS_SIGN_ECDSA_SECP256R1_SHA256:  | 
3180  | 0  |   case GNUTLS_SIGN_ECDSA_SECP384R1_SHA384:  | 
3181  | 0  |   case GNUTLS_SIGN_ECDSA_SECP521R1_SHA512:  | 
3182  |  | 
  | 
3183  | 0  |   case GNUTLS_SIGN_RSA_PSS_RSAE_SHA256:  | 
3184  | 0  |   case GNUTLS_SIGN_RSA_PSS_RSAE_SHA384:  | 
3185  | 0  |   case GNUTLS_SIGN_RSA_PSS_RSAE_SHA512:  | 
3186  |  | 
  | 
3187  | 0  | #if ENABLE_GOST  | 
3188  | 0  |   case GNUTLS_SIGN_GOST_94:  | 
3189  | 0  |   case GNUTLS_SIGN_GOST_256:  | 
3190  | 0  |   case GNUTLS_SIGN_GOST_512:  | 
3191  | 0  | #endif  | 
3192  | 0  |   case GNUTLS_SIGN_EDDSA_ED448:  | 
3193  | 0  |     return 1;  | 
3194  | 0  |   default:  | 
3195  | 0  |     return 0;  | 
3196  | 0  |   }  | 
3197  | 0  | }  | 
3198  |  |  | 
3199  |  | /* Generates algorithm's parameters. That is:  | 
3200  |  |  *  For DSA: p, q, and g are generated.  | 
3201  |  |  *  For RSA: nothing  | 
3202  |  |  *  For ECDSA/EDDSA: nothing  | 
3203  |  |  */  | 
3204  |  | static int wrap_nettle_pk_generate_params(gnutls_pk_algorithm_t algo,  | 
3205  |  |             unsigned int level /*bits or curve */,  | 
3206  |  |             gnutls_pk_params_st *params)  | 
3207  | 0  | { | 
3208  | 0  |   int ret;  | 
3209  | 0  |   unsigned int i, q_bits;  | 
3210  |  | 
  | 
3211  | 0  |   FAIL_IF_LIB_ERROR;  | 
3212  |  |  | 
3213  | 0  |   params->algo = algo;  | 
3214  |  | 
  | 
3215  | 0  |   switch (algo) { | 
3216  | 0  | #ifdef ENABLE_DSA  | 
3217  | 0  |   case GNUTLS_PK_DSA:  | 
3218  | 0  | #endif  | 
3219  | 0  |   case GNUTLS_PK_DH: { | 
3220  | 0  |     struct dsa_params pub;  | 
3221  | 0  |     struct dss_params_validation_seeds cert;  | 
3222  | 0  |     unsigned index;  | 
3223  |  | 
  | 
3224  | 0  |     dsa_params_init(&pub);  | 
3225  |  | 
  | 
3226  | 0  |     if (GNUTLS_BITS_HAVE_SUBGROUP(level)) { | 
3227  | 0  |       q_bits = GNUTLS_BITS_TO_SUBGROUP(level);  | 
3228  | 0  |       level = GNUTLS_BITS_TO_GROUP(level);  | 
3229  | 0  |     } else { | 
3230  | 0  |       q_bits = _gnutls_pk_bits_to_subgroup_bits(level);  | 
3231  | 0  |     }  | 
3232  |  | 
  | 
3233  | 0  |     if (q_bits == 0)  | 
3234  | 0  |       return gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
3235  |  |  | 
3236  | 0  |     if (_gnutls_fips_mode_enabled() != 0 ||  | 
3237  | 0  |         params->pkflags & GNUTLS_PK_FLAG_PROVABLE) { | 
3238  | 0  |       if (algo == GNUTLS_PK_DSA)  | 
3239  | 0  |         index = 1;  | 
3240  | 0  |       else  | 
3241  | 0  |         index = 2;  | 
3242  |  | 
  | 
3243  | 0  |       if (params->palgo != 0 &&  | 
3244  | 0  |           params->palgo != GNUTLS_DIG_SHA384) { | 
3245  | 0  |         ret = GNUTLS_E_INVALID_REQUEST;  | 
3246  | 0  |         goto dsa_fail;  | 
3247  | 0  |       }  | 
3248  |  |  | 
3249  | 0  |       params->palgo = GNUTLS_DIG_SHA384;  | 
3250  |  | 
  | 
3251  | 0  |       if (params->seed_size) { | 
3252  | 0  |         ret = _dsa_generate_dss_pqg(&pub, &cert, index,  | 
3253  | 0  |                   params->seed_size,  | 
3254  | 0  |                   params->seed, NULL,  | 
3255  | 0  |                   NULL, level,  | 
3256  | 0  |                   q_bits);  | 
3257  | 0  |       } else { | 
3258  | 0  |         ret = dsa_generate_dss_pqg(&pub, &cert, index,  | 
3259  | 0  |                  NULL,  | 
3260  | 0  |                  rnd_tmpkey_func,  | 
3261  | 0  |                  NULL, NULL, level,  | 
3262  | 0  |                  q_bits);  | 
3263  | 0  |       }  | 
3264  | 0  |       if (ret != 1 || HAVE_LIB_ERROR()) { | 
3265  | 0  |         gnutls_assert();  | 
3266  | 0  |         ret = GNUTLS_E_PK_GENERATION_ERROR;  | 
3267  | 0  |         goto dsa_fail;  | 
3268  | 0  |       }  | 
3269  |  |  | 
3270  | 0  |       if (cert.seed_length &&  | 
3271  | 0  |           cert.seed_length < sizeof(params->seed)) { | 
3272  | 0  |         params->seed_size = cert.seed_length;  | 
3273  | 0  |         memcpy(params->seed, cert.seed,  | 
3274  | 0  |                cert.seed_length);  | 
3275  | 0  |       }  | 
3276  |  |  | 
3277  |  |       /* verify the generated parameters */  | 
3278  | 0  |       ret = dsa_validate_dss_pqg(&pub, &cert, index);  | 
3279  | 0  |       if (ret != 1) { | 
3280  | 0  |         gnutls_assert();  | 
3281  | 0  |         ret = GNUTLS_E_PK_GENERATION_ERROR;  | 
3282  | 0  |         goto dsa_fail;  | 
3283  | 0  |       }  | 
3284  | 0  |     } else { | 
3285  | 0  |       if (q_bits < 160)  | 
3286  | 0  |         q_bits = 160;  | 
3287  |  | 
  | 
3288  | 0  |       ret = dsa_generate_params(&pub, NULL, rnd_tmpkey_func,  | 
3289  | 0  |               NULL, NULL, level, q_bits);  | 
3290  | 0  |       if (ret != 1 || HAVE_LIB_ERROR()) { | 
3291  | 0  |         gnutls_assert();  | 
3292  | 0  |         ret = GNUTLS_E_PK_GENERATION_ERROR;  | 
3293  | 0  |         goto dsa_fail;  | 
3294  | 0  |       }  | 
3295  | 0  |     }  | 
3296  |  |  | 
3297  | 0  |     params->params_nr = 0;  | 
3298  |  | 
  | 
3299  | 0  |     ret = _gnutls_mpi_init_multi(¶ms->params[DSA_P],  | 
3300  | 0  |                ¶ms->params[DSA_Q],  | 
3301  | 0  |                ¶ms->params[DSA_G], NULL);  | 
3302  | 0  |     if (ret < 0) { | 
3303  | 0  |       gnutls_assert();  | 
3304  | 0  |       goto dsa_fail;  | 
3305  | 0  |     }  | 
3306  | 0  |     params->params_nr = 3;  | 
3307  |  | 
  | 
3308  | 0  |     mpz_set(TOMPZ(params->params[DSA_P]), pub.p);  | 
3309  | 0  |     mpz_set(TOMPZ(params->params[DSA_Q]), pub.q);  | 
3310  | 0  |     mpz_set(TOMPZ(params->params[DSA_G]), pub.g);  | 
3311  |  | 
  | 
3312  | 0  |     ret = 0;  | 
3313  |  | 
  | 
3314  | 0  |   dsa_fail:  | 
3315  | 0  |     dsa_params_clear(&pub);  | 
3316  |  | 
  | 
3317  | 0  |     if (ret < 0)  | 
3318  | 0  |       goto fail;  | 
3319  |  |  | 
3320  | 0  |     break;  | 
3321  | 0  |   }  | 
3322  | 0  |   case GNUTLS_PK_RSA_PSS:  | 
3323  | 0  |   case GNUTLS_PK_RSA_OAEP:  | 
3324  | 0  |   case GNUTLS_PK_RSA:  | 
3325  | 0  |   case GNUTLS_PK_ECDSA:  | 
3326  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
3327  | 0  |   case GNUTLS_PK_EDDSA_ED448:  | 
3328  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
3329  | 0  |   case GNUTLS_PK_ECDH_X448:  | 
3330  | 0  | #if ENABLE_GOST  | 
3331  | 0  |   case GNUTLS_PK_GOST_01:  | 
3332  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
3333  | 0  |   case GNUTLS_PK_GOST_12_512:  | 
3334  | 0  | #endif  | 
3335  | 0  |   case GNUTLS_PK_MLKEM768:  | 
3336  | 0  |   case GNUTLS_PK_MLDSA44:  | 
3337  | 0  |   case GNUTLS_PK_MLDSA65:  | 
3338  | 0  |   case GNUTLS_PK_MLDSA87:  | 
3339  | 0  |     break;  | 
3340  | 0  |   default:  | 
3341  | 0  |     gnutls_assert();  | 
3342  | 0  |     return GNUTLS_E_INVALID_REQUEST;  | 
3343  | 0  |   }  | 
3344  |  |  | 
3345  | 0  |   FAIL_IF_LIB_ERROR;  | 
3346  | 0  |   return 0;  | 
3347  |  |  | 
3348  | 0  | fail:  | 
3349  |  | 
  | 
3350  | 0  |   for (i = 0; i < params->params_nr; i++) { | 
3351  | 0  |     _gnutls_mpi_release(¶ms->params[i]);  | 
3352  | 0  |   }  | 
3353  | 0  |   params->params_nr = 0;  | 
3354  |  | 
  | 
3355  | 0  |   FAIL_IF_LIB_ERROR;  | 
3356  | 0  |   return ret;  | 
3357  | 0  | }  | 
3358  |  |  | 
3359  |  | #ifdef ENABLE_FIPS140  | 
3360  |  | int _gnutls_dh_generate_key(gnutls_dh_params_t dh_params,  | 
3361  |  |           gnutls_datum_t *priv_key, gnutls_datum_t *pub_key);  | 
3362  |  |  | 
3363  |  | int _gnutls_dh_compute_key(gnutls_dh_params_t dh_params,  | 
3364  |  |          const gnutls_datum_t *priv_key,  | 
3365  |  |          const gnutls_datum_t *pub_key,  | 
3366  |  |          const gnutls_datum_t *peer_key, gnutls_datum_t *Z);  | 
3367  |  |  | 
3368  |  | int _gnutls_ecdh_compute_key(gnutls_ecc_curve_t curve, const gnutls_datum_t *x,  | 
3369  |  |            const gnutls_datum_t *y, const gnutls_datum_t *k,  | 
3370  |  |            const gnutls_datum_t *peer_x,  | 
3371  |  |            const gnutls_datum_t *peer_y, gnutls_datum_t *Z);  | 
3372  |  |  | 
3373  |  | int _gnutls_ecdh_generate_key(gnutls_ecc_curve_t curve, gnutls_datum_t *x,  | 
3374  |  |             gnutls_datum_t *y, gnutls_datum_t *k);  | 
3375  |  |  | 
3376  |  | int _gnutls_dh_generate_key(gnutls_dh_params_t dh_params,  | 
3377  |  |           gnutls_datum_t *priv_key, gnutls_datum_t *pub_key)  | 
3378  |  | { | 
3379  |  |   gnutls_pk_params_st params;  | 
3380  |  |   int ret;  | 
3381  |  |  | 
3382  |  |   gnutls_pk_params_init(¶ms);  | 
3383  |  |   params.params[DH_P] = _gnutls_mpi_copy(dh_params->params[0]);  | 
3384  |  |   params.params[DH_G] = _gnutls_mpi_copy(dh_params->params[1]);  | 
3385  |  |  | 
3386  |  |   params.params_nr = 5;  | 
3387  |  |   params.algo = GNUTLS_PK_DH;  | 
3388  |  |  | 
3389  |  |   priv_key->data = NULL;  | 
3390  |  |   pub_key->data = NULL;  | 
3391  |  |  | 
3392  |  |   ret = _gnutls_pk_generate_keys(GNUTLS_PK_DH, dh_params->q_bits, ¶ms,  | 
3393  |  |                0);  | 
3394  |  |   if (ret < 0) { | 
3395  |  |     return gnutls_assert_val(ret);  | 
3396  |  |   }  | 
3397  |  |  | 
3398  |  |   ret = _gnutls_mpi_dprint_lz(params.params[DH_X], priv_key);  | 
3399  |  |   if (ret < 0) { | 
3400  |  |     gnutls_assert();  | 
3401  |  |     goto fail;  | 
3402  |  |   }  | 
3403  |  |  | 
3404  |  |   ret = _gnutls_mpi_dprint_lz(params.params[DH_Y], pub_key);  | 
3405  |  |   if (ret < 0) { | 
3406  |  |     gnutls_assert();  | 
3407  |  |     goto fail;  | 
3408  |  |   }  | 
3409  |  |  | 
3410  |  |   ret = 0;  | 
3411  |  |   goto cleanup;  | 
3412  |  | fail:  | 
3413  |  |   gnutls_free(pub_key->data);  | 
3414  |  |   gnutls_free(priv_key->data);  | 
3415  |  | cleanup:  | 
3416  |  |   gnutls_pk_params_clear(¶ms);  | 
3417  |  |   gnutls_pk_params_release(¶ms);  | 
3418  |  |   return ret;  | 
3419  |  | }  | 
3420  |  |  | 
3421  |  | /* Note that the value of Z will have the leading bytes stripped if they are zero -  | 
3422  |  |  * which follows the TLS approach. */  | 
3423  |  | int _gnutls_dh_compute_key(gnutls_dh_params_t dh_params,  | 
3424  |  |          const gnutls_datum_t *priv_key,  | 
3425  |  |          const gnutls_datum_t *pub_key,  | 
3426  |  |          const gnutls_datum_t *peer_key, gnutls_datum_t *Z)  | 
3427  |  | { | 
3428  |  |   gnutls_pk_params_st pub, priv;  | 
3429  |  |   int ret;  | 
3430  |  |  | 
3431  |  |   gnutls_pk_params_init(&pub);  | 
3432  |  |   pub.params_nr = 5;  | 
3433  |  |   pub.algo = GNUTLS_PK_DH;  | 
3434  |  |  | 
3435  |  |   gnutls_pk_params_init(&priv);  | 
3436  |  |   priv.params_nr = 5;  | 
3437  |  |   priv.algo = GNUTLS_PK_DH;  | 
3438  |  |  | 
3439  |  |   if (_gnutls_mpi_init_scan_nz(&pub.params[DH_Y], peer_key->data,  | 
3440  |  |              peer_key->size) != 0) { | 
3441  |  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3442  |  |     goto cleanup;  | 
3443  |  |   }  | 
3444  |  |  | 
3445  |  |   priv.params[DH_P] = _gnutls_mpi_copy(dh_params->params[0]);  | 
3446  |  |   priv.params[DH_G] = _gnutls_mpi_copy(dh_params->params[1]);  | 
3447  |  |   if (dh_params->params[2])  | 
3448  |  |     priv.params[DH_Q] = _gnutls_mpi_copy(dh_params->params[2]);  | 
3449  |  |  | 
3450  |  |   if (_gnutls_mpi_init_scan_nz(&priv.params[DH_X], priv_key->data,  | 
3451  |  |              priv_key->size) != 0) { | 
3452  |  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3453  |  |     goto cleanup;  | 
3454  |  |   }  | 
3455  |  |  | 
3456  |  |   Z->data = NULL;  | 
3457  |  |  | 
3458  |  |   ret = _gnutls_pk_derive(GNUTLS_PK_DH, Z, &priv, &pub);  | 
3459  |  |   if (ret < 0) { | 
3460  |  |     gnutls_assert();  | 
3461  |  |     goto cleanup;  | 
3462  |  |   }  | 
3463  |  |  | 
3464  |  |   ret = 0;  | 
3465  |  | cleanup:  | 
3466  |  |   gnutls_pk_params_clear(&pub);  | 
3467  |  |   gnutls_pk_params_release(&pub);  | 
3468  |  |   gnutls_pk_params_clear(&priv);  | 
3469  |  |   gnutls_pk_params_release(&priv);  | 
3470  |  |   return ret;  | 
3471  |  | }  | 
3472  |  |  | 
3473  |  | int _gnutls_ecdh_generate_key(gnutls_ecc_curve_t curve, gnutls_datum_t *x,  | 
3474  |  |             gnutls_datum_t *y, gnutls_datum_t *k)  | 
3475  |  | { | 
3476  |  |   gnutls_pk_params_st params;  | 
3477  |  |   int ret;  | 
3478  |  |  | 
3479  |  |   gnutls_pk_params_init(¶ms);  | 
3480  |  |   params.params_nr = 3;  | 
3481  |  |   params.curve = curve;  | 
3482  |  |   params.algo = GNUTLS_PK_ECDSA;  | 
3483  |  |  | 
3484  |  |   x->data = NULL;  | 
3485  |  |   y->data = NULL;  | 
3486  |  |   k->data = NULL;  | 
3487  |  |  | 
3488  |  |   ret = _gnutls_pk_generate_keys(GNUTLS_PK_ECDSA, curve, ¶ms, 0);  | 
3489  |  |   if (ret < 0) { | 
3490  |  |     return gnutls_assert_val(ret);  | 
3491  |  |   }  | 
3492  |  |  | 
3493  |  |   ret = _gnutls_mpi_dprint_lz(params.params[ECC_X], x);  | 
3494  |  |   if (ret < 0) { | 
3495  |  |     gnutls_assert();  | 
3496  |  |     goto fail;  | 
3497  |  |   }  | 
3498  |  |  | 
3499  |  |   ret = _gnutls_mpi_dprint_lz(params.params[ECC_Y], y);  | 
3500  |  |   if (ret < 0) { | 
3501  |  |     gnutls_assert();  | 
3502  |  |     goto fail;  | 
3503  |  |   }  | 
3504  |  |  | 
3505  |  |   ret = _gnutls_mpi_dprint_lz(params.params[ECC_K], k);  | 
3506  |  |   if (ret < 0) { | 
3507  |  |     gnutls_assert();  | 
3508  |  |     goto fail;  | 
3509  |  |   }  | 
3510  |  |  | 
3511  |  |   ret = 0;  | 
3512  |  |   goto cleanup;  | 
3513  |  | fail:  | 
3514  |  |   gnutls_free(y->data);  | 
3515  |  |   gnutls_free(x->data);  | 
3516  |  |   gnutls_free(k->data);  | 
3517  |  | cleanup:  | 
3518  |  |   gnutls_pk_params_clear(¶ms);  | 
3519  |  |   gnutls_pk_params_release(¶ms);  | 
3520  |  |   return ret;  | 
3521  |  | }  | 
3522  |  |  | 
3523  |  | int _gnutls_ecdh_compute_key(gnutls_ecc_curve_t curve, const gnutls_datum_t *x,  | 
3524  |  |            const gnutls_datum_t *y, const gnutls_datum_t *k,  | 
3525  |  |            const gnutls_datum_t *peer_x,  | 
3526  |  |            const gnutls_datum_t *peer_y, gnutls_datum_t *Z)  | 
3527  |  | { | 
3528  |  |   gnutls_pk_params_st pub, priv;  | 
3529  |  |   int ret;  | 
3530  |  |  | 
3531  |  |   gnutls_pk_params_init(&pub);  | 
3532  |  |   pub.params_nr = 3;  | 
3533  |  |   pub.algo = GNUTLS_PK_ECDSA;  | 
3534  |  |   pub.curve = curve;  | 
3535  |  |  | 
3536  |  |   gnutls_pk_params_init(&priv);  | 
3537  |  |   priv.params_nr = 3;  | 
3538  |  |   priv.algo = GNUTLS_PK_ECDSA;  | 
3539  |  |   priv.curve = curve;  | 
3540  |  |  | 
3541  |  |   if (_gnutls_mpi_init_scan_nz(&pub.params[ECC_Y], peer_y->data,  | 
3542  |  |              peer_y->size) != 0) { | 
3543  |  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3544  |  |     goto cleanup;  | 
3545  |  |   }  | 
3546  |  |  | 
3547  |  |   if (_gnutls_mpi_init_scan_nz(&pub.params[ECC_X], peer_x->data,  | 
3548  |  |              peer_x->size) != 0) { | 
3549  |  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3550  |  |     goto cleanup;  | 
3551  |  |   }  | 
3552  |  |  | 
3553  |  |   if (_gnutls_mpi_init_scan_nz(&priv.params[ECC_Y], y->data, y->size) !=  | 
3554  |  |       0) { | 
3555  |  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3556  |  |     goto cleanup;  | 
3557  |  |   }  | 
3558  |  |  | 
3559  |  |   if (_gnutls_mpi_init_scan_nz(&priv.params[ECC_X], x->data, x->size) !=  | 
3560  |  |       0) { | 
3561  |  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3562  |  |     goto cleanup;  | 
3563  |  |   }  | 
3564  |  |  | 
3565  |  |   if (_gnutls_mpi_init_scan_nz(&priv.params[ECC_K], k->data, k->size) !=  | 
3566  |  |       0) { | 
3567  |  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3568  |  |     goto cleanup;  | 
3569  |  |   }  | 
3570  |  |  | 
3571  |  |   Z->data = NULL;  | 
3572  |  |  | 
3573  |  |   ret = _gnutls_pk_derive(GNUTLS_PK_ECDSA, Z, &priv, &pub);  | 
3574  |  |   if (ret < 0) { | 
3575  |  |     gnutls_assert();  | 
3576  |  |     goto cleanup;  | 
3577  |  |   }  | 
3578  |  |  | 
3579  |  |   ret = 0;  | 
3580  |  | cleanup:  | 
3581  |  |   gnutls_pk_params_clear(&pub);  | 
3582  |  |   gnutls_pk_params_release(&pub);  | 
3583  |  |   gnutls_pk_params_clear(&priv);  | 
3584  |  |   gnutls_pk_params_release(&priv);  | 
3585  |  |   return ret;  | 
3586  |  | }  | 
3587  |  |  | 
3588  |  | static int pct_test(gnutls_pk_algorithm_t algo,  | 
3589  |  |         const gnutls_pk_params_st *params)  | 
3590  |  | { | 
3591  |  |   int ret;  | 
3592  |  |   gnutls_datum_t sig = { NULL, 0 }; | 
3593  |  |   const char const_data[20] = "onetwothreefourfive";  | 
3594  |  |   const char const_data_sha256[32] = "onetwothreefourfivesixseveneight";  | 
3595  |  |   const char const_data_sha384[48] =  | 
3596  |  |     "onetwothreefourfivesixseveneightnineteneleventwe";  | 
3597  |  |   const char const_data_sha512[64] =  | 
3598  |  |     "onetwothreefourfivesixseveneightnineteneleventwelvethirteenfourt";  | 
3599  |  |   gnutls_datum_t ddata, tmp = { NULL, 0 }; | 
3600  |  |   char *gen_data = NULL;  | 
3601  |  |   gnutls_x509_spki_st spki;  | 
3602  |  |   gnutls_fips140_context_t context;  | 
3603  |  |  | 
3604  |  |   ret = _gnutls_x509_spki_copy(&spki, ¶ms->spki);  | 
3605  |  |   if (ret < 0) { | 
3606  |  |     gnutls_assert();  | 
3607  |  |     goto cleanup;  | 
3608  |  |   }  | 
3609  |  |  | 
3610  |  |   if (algo == GNUTLS_PK_DSA || algo == GNUTLS_PK_EC) { | 
3611  |  |     unsigned hash_len;  | 
3612  |  |     const mac_entry_st *me;  | 
3613  |  |  | 
3614  |  |     me = _gnutls_dsa_q_to_hash(params, &hash_len);  | 
3615  |  |     spki.dsa_dig = MAC_TO_DIG(me->id);  | 
3616  |  |     gen_data = gnutls_malloc(hash_len);  | 
3617  |  |     gnutls_rnd(GNUTLS_RND_NONCE, gen_data, hash_len);  | 
3618  |  |  | 
3619  |  |     ddata.data = (void *)gen_data;  | 
3620  |  |     ddata.size = hash_len;  | 
3621  |  |   } else if (algo == GNUTLS_PK_GOST_01 || algo == GNUTLS_PK_GOST_12_256) { | 
3622  |  |     ddata.data = (void *)const_data_sha256;  | 
3623  |  |     ddata.size = sizeof(const_data_sha256);  | 
3624  |  |   } else if (algo == GNUTLS_PK_GOST_12_512) { | 
3625  |  |     ddata.data = (void *)const_data_sha512;  | 
3626  |  |     ddata.size = sizeof(const_data_sha512);  | 
3627  |  |   } else if (algo == GNUTLS_PK_RSA_PSS) { | 
3628  |  |     if (spki.rsa_pss_dig == GNUTLS_DIG_UNKNOWN)  | 
3629  |  |       spki.rsa_pss_dig = GNUTLS_DIG_SHA256;  | 
3630  |  |  | 
3631  |  |     switch (spki.rsa_pss_dig) { | 
3632  |  |     case GNUTLS_DIG_SHA256:  | 
3633  |  |       ddata.data = (void *)const_data_sha256;  | 
3634  |  |       ddata.size = sizeof(const_data_sha256);  | 
3635  |  |       break;  | 
3636  |  |     case GNUTLS_DIG_SHA384:  | 
3637  |  |       ddata.data = (void *)const_data_sha384;  | 
3638  |  |       ddata.size = sizeof(const_data_sha384);  | 
3639  |  |       break;  | 
3640  |  |     case GNUTLS_DIG_SHA512:  | 
3641  |  |       ddata.data = (void *)const_data_sha512;  | 
3642  |  |       ddata.size = sizeof(const_data_sha512);  | 
3643  |  |       break;  | 
3644  |  |     default:  | 
3645  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3646  |  |       goto cleanup;  | 
3647  |  |     }  | 
3648  |  |   } else { | 
3649  |  |     ddata.data = (void *)const_data;  | 
3650  |  |     ddata.size = sizeof(const_data);  | 
3651  |  |   }  | 
3652  |  |  | 
3653  |  |   switch (algo) { | 
3654  |  |   case GNUTLS_PK_RSA:  | 
3655  |  |   case GNUTLS_PK_RSA_OAEP:  | 
3656  |  |     if (algo == GNUTLS_PK_RSA) { | 
3657  |  |       /* Push a temporary FIPS context because _gnutls_pk_encrypt and  | 
3658  |  |        * _gnutls_pk_decrypt below will mark RSAES-PKCS1-v1_5 operation  | 
3659  |  |        * non-approved */  | 
3660  |  |       if (gnutls_fips140_context_init(&context) < 0) { | 
3661  |  |         ret = gnutls_assert_val(  | 
3662  |  |           GNUTLS_E_PK_GENERATION_ERROR);  | 
3663  |  |         goto cleanup;  | 
3664  |  |       }  | 
3665  |  |       if (gnutls_fips140_push_context(context) < 0) { | 
3666  |  |         ret = gnutls_assert_val(  | 
3667  |  |           GNUTLS_E_PK_GENERATION_ERROR);  | 
3668  |  |         gnutls_fips140_context_deinit(context);  | 
3669  |  |         goto cleanup;  | 
3670  |  |       }  | 
3671  |  |     }  | 
3672  |  |  | 
3673  |  |     ret = _gnutls_pk_encrypt(algo, &sig, &ddata, params);  | 
3674  |  |     if (ret < 0) { | 
3675  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3676  |  |     }  | 
3677  |  |     if (ret == 0 && ddata.size == sig.size &&  | 
3678  |  |         memcmp(ddata.data, sig.data, sig.size) == 0) { | 
3679  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3680  |  |     }  | 
3681  |  |     if (ret == 0 &&  | 
3682  |  |         _gnutls_pk_decrypt(algo, &tmp, &sig, params) < 0) { | 
3683  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3684  |  |     }  | 
3685  |  |     if (ret == 0 &&  | 
3686  |  |         !(tmp.size == ddata.size &&  | 
3687  |  |           memcmp(tmp.data, ddata.data, tmp.size) == 0)) { | 
3688  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3689  |  |     }  | 
3690  |  |  | 
3691  |  |     if (algo == GNUTLS_PK_RSA) { | 
3692  |  |       if (unlikely(gnutls_fips140_pop_context() < 0)) { | 
3693  |  |         ret = gnutls_assert_val(  | 
3694  |  |           GNUTLS_E_PK_GENERATION_ERROR);  | 
3695  |  |       }  | 
3696  |  |       gnutls_fips140_context_deinit(context);  | 
3697  |  |     }  | 
3698  |  |  | 
3699  |  |     if (ret < 0) { | 
3700  |  |       goto cleanup;  | 
3701  |  |     }  | 
3702  |  |  | 
3703  |  |     free(sig.data);  | 
3704  |  |     sig.data = NULL;  | 
3705  |  |  | 
3706  |  |     /* RSA-OAEP can't be used for signing */  | 
3707  |  |     if (algo == GNUTLS_PK_RSA_OAEP) { | 
3708  |  |       break;  | 
3709  |  |     }  | 
3710  |  |  | 
3711  |  |     FALLTHROUGH;  | 
3712  |  |   case GNUTLS_PK_EC: /* we only do keys for ECDSA */  | 
3713  |  |   case GNUTLS_PK_EDDSA_ED25519:  | 
3714  |  |   case GNUTLS_PK_EDDSA_ED448:  | 
3715  |  | #ifdef ENABLE_DSA  | 
3716  |  |   case GNUTLS_PK_DSA:  | 
3717  |  | #endif  | 
3718  |  |   case GNUTLS_PK_RSA_PSS:  | 
3719  |  |   case GNUTLS_PK_GOST_01:  | 
3720  |  |   case GNUTLS_PK_GOST_12_256:  | 
3721  |  |   case GNUTLS_PK_GOST_12_512:  | 
3722  |  |   case GNUTLS_PK_MLDSA44:  | 
3723  |  |   case GNUTLS_PK_MLDSA65:  | 
3724  |  |   case GNUTLS_PK_MLDSA87:  | 
3725  |  |     ret = _gnutls_pk_sign(algo, &sig, &ddata, params, &spki);  | 
3726  |  |     if (ret < 0) { | 
3727  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3728  |  |       goto cleanup;  | 
3729  |  |     }  | 
3730  |  |  | 
3731  |  |     ret = _gnutls_pk_verify(algo, &ddata, &sig, params, &spki);  | 
3732  |  |     if (ret < 0) { | 
3733  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3734  |  |       gnutls_assert();  | 
3735  |  |       goto cleanup;  | 
3736  |  |     }  | 
3737  |  |     break;  | 
3738  |  |   case GNUTLS_PK_DH: { | 
3739  |  |     mpz_t y;  | 
3740  |  |  | 
3741  |  |     /* Perform SP800 56A (rev 3) 5.6.2.1.4 Owner Assurance  | 
3742  |  |        * of Pair-wise Consistency check, even if we only  | 
3743  |  |        * support ephemeral DH, as it is required by FIPS  | 
3744  |  |        * 140-3 IG 10.3.A.  | 
3745  |  |        *  | 
3746  |  |        * Use the private key, x, along with the generator g  | 
3747  |  |        * and prime modulus p included in the domain  | 
3748  |  |        * parameters associated with the key pair to compute  | 
3749  |  |        * g^x mod p. Compare the result to the public key, y.  | 
3750  |  |        */  | 
3751  |  |     mpz_init(y);  | 
3752  |  |     mpz_powm(y, TOMPZ(params->params[DSA_G]),  | 
3753  |  |        TOMPZ(params->params[DSA_X]),  | 
3754  |  |        TOMPZ(params->params[DSA_P]));  | 
3755  |  |     if (unlikely(mpz_cmp(y, TOMPZ(params->params[DSA_Y])) != 0)) { | 
3756  |  |       ret = gnutls_assert_val(GNUTLS_E_PK_GENERATION_ERROR);  | 
3757  |  |       mpz_clear(y);  | 
3758  |  |       goto cleanup;  | 
3759  |  |     }  | 
3760  |  |     mpz_clear(y);  | 
3761  |  |     break;  | 
3762  |  |   }  | 
3763  |  |   case GNUTLS_PK_ECDH_X25519:  | 
3764  |  |   case GNUTLS_PK_ECDH_X448:  | 
3765  |  |     break;  | 
3766  |  |   case GNUTLS_PK_MLKEM768:  | 
3767  |  |   case GNUTLS_PK_MLKEM1024:  | 
3768  |  | #ifdef HAVE_LIBOQS  | 
3769  |  |   case GNUTLS_PK_EXP_KYBER768:  | 
3770  |  | #endif  | 
3771  |  |     if (!ml_kem_exists(algo)) { | 
3772  |  |       ret = gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
3773  |  |       goto cleanup;  | 
3774  |  |     }  | 
3775  |  |     break;  | 
3776  |  |   default:  | 
3777  |  |     ret = gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
3778  |  |     goto cleanup;  | 
3779  |  |   }  | 
3780  |  |  | 
3781  |  |   ret = 0;  | 
3782  |  | cleanup:  | 
3783  |  |   if (ret == GNUTLS_E_PK_GENERATION_ERROR) { | 
3784  |  |     _gnutls_switch_lib_state(LIB_STATE_ERROR);  | 
3785  |  |   }  | 
3786  |  |   _gnutls_x509_spki_clear(&spki);  | 
3787  |  |   gnutls_free(gen_data);  | 
3788  |  |   gnutls_free(sig.data);  | 
3789  |  |   gnutls_free(tmp.data);  | 
3790  |  |   return ret;  | 
3791  |  | }  | 
3792  |  | #endif  | 
3793  |  |  | 
3794  |  | static inline int eddsa_public_key(gnutls_pk_algorithm_t algo, uint8_t *pub,  | 
3795  |  |            const uint8_t *priv)  | 
3796  | 0  | { | 
3797  | 0  |   switch (algo) { | 
3798  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
3799  | 0  |     ed25519_sha512_public_key(pub, priv);  | 
3800  | 0  |     return 0;  | 
3801  | 0  |   case GNUTLS_PK_EDDSA_ED448:  | 
3802  | 0  |     ed448_shake256_public_key(pub, priv);  | 
3803  | 0  |     return 0;  | 
3804  | 0  |   default:  | 
3805  | 0  |     return gnutls_assert_val(  | 
3806  | 0  |       GNUTLS_E_UNSUPPORTED_SIGNATURE_ALGORITHM);  | 
3807  | 0  |   }  | 
3808  | 0  | }  | 
3809  |  |  | 
3810  |  | static inline int edwards_curve_mul_g(gnutls_pk_algorithm_t algo, uint8_t *q,  | 
3811  |  |               const uint8_t *n)  | 
3812  | 0  | { | 
3813  | 0  |   switch (algo) { | 
3814  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
3815  | 0  |     curve25519_mul_g(q, n);  | 
3816  | 0  |     return 0;  | 
3817  | 0  |   case GNUTLS_PK_ECDH_X448:  | 
3818  | 0  |     curve448_mul_g(q, n);  | 
3819  | 0  |     return 0;  | 
3820  | 0  |   default:  | 
3821  | 0  |     return gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
3822  | 0  |   }  | 
3823  | 0  | }  | 
3824  |  |  | 
3825  |  | static inline int dh_find_q(const gnutls_pk_params_st *pk_params, mpz_t q)  | 
3826  | 0  | { | 
3827  | 0  |   gnutls_datum_t prime = { NULL, 0 }; | 
3828  | 0  |   gnutls_datum_t generator = { NULL, 0 }; | 
3829  | 0  |   uint8_t *data_q;  | 
3830  | 0  |   size_t n_q;  | 
3831  | 0  |   bigint_t _q;  | 
3832  | 0  |   int ret = 0;  | 
3833  | 0  | 
  | 
3834  | 0  |   ret = _gnutls_mpi_dprint(pk_params->params[DSA_P], &prime);  | 
3835  | 0  |   if (ret < 0) { | 
3836  | 0  |     gnutls_assert();  | 
3837  | 0  |     goto cleanup;  | 
3838  | 0  |   }  | 
3839  | 0  | 
  | 
3840  | 0  |   ret = _gnutls_mpi_dprint(pk_params->params[DSA_G], &generator);  | 
3841  | 0  |   if (ret < 0) { | 
3842  | 0  |     gnutls_assert();  | 
3843  | 0  |     goto cleanup;  | 
3844  | 0  |   }  | 
3845  | 0  | 
  | 
3846  | 0  |   if (!_gnutls_dh_prime_match_fips_approved(  | 
3847  | 0  |         prime.data, prime.size, generator.data, generator.size,  | 
3848  | 0  |         &data_q, &n_q)) { | 
3849  | 0  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
3850  | 0  |     goto cleanup;  | 
3851  | 0  |   }  | 
3852  | 0  | 
  | 
3853  | 0  |   if (_gnutls_mpi_init_scan_nz(&_q, data_q, n_q) != 0) { | 
3854  | 0  |     ret = gnutls_assert_val(GNUTLS_E_MPI_SCAN_FAILED);  | 
3855  | 0  |     goto cleanup;  | 
3856  | 0  |   }  | 
3857  | 0  | 
  | 
3858  | 0  |   mpz_set(q, TOMPZ(_q));  | 
3859  | 0  |   _gnutls_mpi_release(&_q);  | 
3860  | 0  | 
  | 
3861  | 0  | cleanup:  | 
3862  | 0  |   gnutls_free(prime.data);  | 
3863  | 0  |   gnutls_free(generator.data);  | 
3864  | 0  | 
  | 
3865  | 0  |   return ret;  | 
3866  | 0  | }  | 
3867  |  |  | 
3868  |  | /* To generate a DH key either q must be set in the params or  | 
3869  |  |  * level should be set to the number of required bits.  | 
3870  |  |  */  | 
3871  |  | static int  | 
3872  |  | wrap_nettle_pk_generate_keys(gnutls_pk_algorithm_t algo,  | 
3873  |  |            unsigned int level /*bits or curve */,  | 
3874  |  |            gnutls_pk_params_st *params, unsigned ephemeral  | 
3875  |  |            /*non-zero if they are ephemeral keys */)  | 
3876  | 0  | { | 
3877  | 0  |   int ret;  | 
3878  | 0  |   unsigned int i;  | 
3879  | 0  |   unsigned rnd_level;  | 
3880  | 0  |   nettle_random_func *rnd_func;  | 
3881  | 0  |   bool not_approved = false;  | 
3882  |  | 
  | 
3883  | 0  |   FAIL_IF_LIB_ERROR;  | 
3884  |  |  | 
3885  |  |   /* check if the curve relates to the algorithm used */  | 
3886  | 0  |   if (IS_EC(algo) && gnutls_ecc_curve_get_pk(level) != algo) { | 
3887  | 0  |     ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
3888  | 0  |     goto cleanup;  | 
3889  | 0  |   }  | 
3890  |  |  | 
3891  | 0  |   if (ephemeral) { | 
3892  | 0  |     rnd_level = GNUTLS_RND_RANDOM;  | 
3893  | 0  |     rnd_func = rnd_tmpkey_func;  | 
3894  | 0  |   } else { | 
3895  | 0  |     rnd_func = rnd_key_func;  | 
3896  | 0  |     rnd_level = GNUTLS_RND_KEY;  | 
3897  | 0  |   }  | 
3898  |  | 
  | 
3899  | 0  |   switch (algo) { | 
3900  | 0  | #ifdef ENABLE_DSA  | 
3901  | 0  |   case GNUTLS_PK_DSA:  | 
3902  |  | #ifdef ENABLE_FIPS140  | 
3903  |  |     if (_gnutls_fips_mode_enabled() != 0) { | 
3904  |  |       struct dsa_params pub;  | 
3905  |  |       mpz_t x, y;  | 
3906  |  |  | 
3907  |  |       /* DSA is currently being defined as sunset with the  | 
3908  |  |        * current draft of FIPS 186-5 */  | 
3909  |  |       not_approved = true;  | 
3910  |  |  | 
3911  |  |       if (params->params[DSA_Q] == NULL) { | 
3912  |  |         ret = gnutls_assert_val(  | 
3913  |  |           GNUTLS_E_INVALID_REQUEST);  | 
3914  |  |         goto cleanup;  | 
3915  |  |       }  | 
3916  |  |  | 
3917  |  |       _dsa_params_get(params, &pub);  | 
3918  |  |  | 
3919  |  |       mpz_init(x);  | 
3920  |  |       mpz_init(y);  | 
3921  |  |  | 
3922  |  |       ret = dsa_generate_dss_keypair(&pub, y, x, NULL,  | 
3923  |  |                    rnd_func, NULL, NULL);  | 
3924  |  |       if (ret != 1 || HAVE_LIB_ERROR()) { | 
3925  |  |         gnutls_assert();  | 
3926  |  |         ret = GNUTLS_E_PK_GENERATION_ERROR;  | 
3927  |  |         goto dsa_fail;  | 
3928  |  |       }  | 
3929  |  |  | 
3930  |  |       ret = _gnutls_mpi_init_multi(¶ms->params[DSA_Y],  | 
3931  |  |                  ¶ms->params[DSA_X],  | 
3932  |  |                  NULL);  | 
3933  |  |       if (ret < 0) { | 
3934  |  |         gnutls_assert();  | 
3935  |  |         goto dsa_fail;  | 
3936  |  |       }  | 
3937  |  |  | 
3938  |  |       mpz_set(TOMPZ(params->params[DSA_Y]), y);  | 
3939  |  |       mpz_set(TOMPZ(params->params[DSA_X]), x);  | 
3940  |  |       params->params_nr += 2;  | 
3941  |  |  | 
3942  |  |     dsa_fail:  | 
3943  |  |       mpz_clear(x);  | 
3944  |  |       mpz_clear(y);  | 
3945  |  |  | 
3946  |  |       if (ret < 0)  | 
3947  |  |         goto cleanup;  | 
3948  |  |  | 
3949  |  |       break;  | 
3950  |  |     }  | 
3951  |  | #endif  | 
3952  | 0  |     FALLTHROUGH;  | 
3953  | 0  | #endif  | 
3954  | 0  |   case GNUTLS_PK_DH: { | 
3955  | 0  |     struct dsa_params pub;  | 
3956  | 0  |     mpz_t r;  | 
3957  | 0  |     mpz_t x, y;  | 
3958  | 0  |     int max_tries;  | 
3959  | 0  |     unsigned have_q = 0;  | 
3960  | 0  |     mpz_t q;  | 
3961  | 0  |     mpz_t primesub1;  | 
3962  | 0  |     mpz_t ypowq;  | 
3963  |  | 
  | 
3964  | 0  |     if (algo != params->algo) { | 
3965  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
3966  | 0  |       goto cleanup;  | 
3967  | 0  |     }  | 
3968  |  |  | 
3969  | 0  |     _dsa_params_get(params, &pub);  | 
3970  |  | 
  | 
3971  | 0  |     if (params->params[DSA_Q] != NULL)  | 
3972  | 0  |       have_q = 1;  | 
3973  |  |  | 
3974  |  |     /* This check is for the case !ENABLE_FIPS140 */  | 
3975  | 0  |     if (algo == GNUTLS_PK_DSA && have_q == 0) { | 
3976  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
3977  | 0  |       goto cleanup;  | 
3978  | 0  |     }  | 
3979  |  |  | 
3980  | 0  |     mpz_init(r);  | 
3981  | 0  |     mpz_init(x);  | 
3982  | 0  |     mpz_init(y);  | 
3983  |  | 
  | 
3984  | 0  |     mpz_init(q);  | 
3985  | 0  |     mpz_init(primesub1);  | 
3986  | 0  |     mpz_init(ypowq);  | 
3987  |  | 
  | 
3988  | 0  |     max_tries = 3;  | 
3989  | 0  |     do { | 
3990  | 0  |       if (have_q) { | 
3991  | 0  |         mpz_set(r, pub.q);  | 
3992  | 0  |         mpz_sub_ui(r, r, 2);  | 
3993  | 0  |         nettle_mpz_random(x, NULL, rnd_func, r);  | 
3994  | 0  |         mpz_add_ui(x, x, 1);  | 
3995  | 0  |       } else { | 
3996  | 0  |         unsigned size = mpz_sizeinbase(pub.p, 2);  | 
3997  | 0  |         if (level == 0)  | 
3998  | 0  |           level = MIN(size,  | 
3999  | 0  |                 DH_EXPONENT_SIZE(size));  | 
4000  | 0  |         nettle_mpz_random_size(x, NULL, rnd_func,  | 
4001  | 0  |                    level);  | 
4002  |  | 
  | 
4003  | 0  |         if (level >= size)  | 
4004  | 0  |           mpz_mod(x, x, pub.p);  | 
4005  | 0  |       }  | 
4006  |  | 
  | 
4007  | 0  |       mpz_powm(y, pub.g, x, pub.p);  | 
4008  |  | 
  | 
4009  | 0  |       max_tries--;  | 
4010  | 0  |       if (max_tries <= 0) { | 
4011  | 0  |         gnutls_assert();  | 
4012  | 0  |         ret = GNUTLS_E_RANDOM_FAILED;  | 
4013  | 0  |         goto dh_fail;  | 
4014  | 0  |       }  | 
4015  |  |  | 
4016  | 0  |       if (HAVE_LIB_ERROR()) { | 
4017  | 0  |         gnutls_assert();  | 
4018  | 0  |         ret = GNUTLS_E_LIB_IN_ERROR_STATE;  | 
4019  | 0  |         goto dh_fail;  | 
4020  | 0  |       }  | 
4021  |  | 
  | 
4022  | 0  |     } while (mpz_cmp_ui(y, 1) == 0);  | 
4023  |  |  | 
4024  |  | #ifdef ENABLE_FIPS140  | 
4025  |  |     if (_gnutls_fips_mode_enabled()) { | 
4026  |  |       /* Perform FFC full public key validation checks  | 
4027  |  |          * according to SP800-56A (revision 3), 5.6.2.3.1.  | 
4028  |  |          */  | 
4029  |  |  | 
4030  |  |       /* Step 1: 2 <= y <= p - 2 */  | 
4031  |  |       mpz_sub_ui(primesub1, pub.p, 1);  | 
4032  |  |  | 
4033  |  |       if (mpz_cmp_ui(y, 2) < 0 ||  | 
4034  |  |           mpz_cmp(y, primesub1) >= 0) { | 
4035  |  |         ret = gnutls_assert_val(GNUTLS_E_RANDOM_FAILED);  | 
4036  |  |         goto dh_fail;  | 
4037  |  |       }  | 
4038  |  |  | 
4039  |  |       /* Step 2: 1 = y^q mod p */  | 
4040  |  |       if (have_q)  | 
4041  |  |         mpz_set(q, pub.q);  | 
4042  |  |       else { | 
4043  |  |         ret = dh_find_q(params, q);  | 
4044  |  |         if (ret < 0)  | 
4045  |  |           goto dh_fail;  | 
4046  |  |       }  | 
4047  |  |  | 
4048  |  |       mpz_powm(ypowq, y, q, pub.p);  | 
4049  |  |       if (mpz_cmp_ui(ypowq, 1) != 0) { | 
4050  |  |         ret = gnutls_assert_val(GNUTLS_E_RANDOM_FAILED);  | 
4051  |  |         goto dh_fail;  | 
4052  |  |       }  | 
4053  |  |     }  | 
4054  |  | #endif  | 
4055  |  |  | 
4056  | 0  |     ret = _gnutls_mpi_init_multi(¶ms->params[DSA_Y],  | 
4057  | 0  |                ¶ms->params[DSA_X], NULL);  | 
4058  | 0  |     if (ret < 0) { | 
4059  | 0  |       gnutls_assert();  | 
4060  | 0  |       goto dh_fail;  | 
4061  | 0  |     }  | 
4062  |  |  | 
4063  | 0  |     mpz_set(TOMPZ(params->params[DSA_Y]), y);  | 
4064  | 0  |     mpz_set(TOMPZ(params->params[DSA_X]), x);  | 
4065  | 0  |     params->params_nr += 2;  | 
4066  |  | 
  | 
4067  | 0  |     ret = 0;  | 
4068  |  | 
  | 
4069  | 0  |   dh_fail:  | 
4070  | 0  |     mpz_clear(r);  | 
4071  | 0  |     mpz_clear(x);  | 
4072  | 0  |     mpz_clear(y);  | 
4073  | 0  |     mpz_clear(q);  | 
4074  | 0  |     mpz_clear(primesub1);  | 
4075  | 0  |     mpz_clear(ypowq);  | 
4076  |  | 
  | 
4077  | 0  |     if (ret < 0)  | 
4078  | 0  |       goto cleanup;  | 
4079  |  |  | 
4080  | 0  |     break;  | 
4081  | 0  |   }  | 
4082  | 0  |   case GNUTLS_PK_RSA_PSS:  | 
4083  | 0  |   case GNUTLS_PK_RSA_OAEP:  | 
4084  | 0  |   case GNUTLS_PK_RSA: { | 
4085  | 0  |     struct rsa_public_key pub;  | 
4086  | 0  |     struct rsa_private_key priv;  | 
4087  |  | 
  | 
4088  | 0  |     rsa_public_key_init(&pub);  | 
4089  | 0  |     rsa_private_key_init(&priv);  | 
4090  |  | 
  | 
4091  | 0  |     mpz_set_ui(pub.e, 65537);  | 
4092  |  | 
  | 
4093  | 0  |     if ((params->pkflags & GNUTLS_PK_FLAG_PROVABLE) ||  | 
4094  | 0  |         _gnutls_fips_mode_enabled() != 0) { | 
4095  | 0  |       params->pkflags |= GNUTLS_PK_FLAG_PROVABLE;  | 
4096  | 0  |       if (params->palgo != 0 &&  | 
4097  | 0  |           params->palgo != GNUTLS_DIG_SHA384) { | 
4098  | 0  |         ret = GNUTLS_E_INVALID_REQUEST;  | 
4099  | 0  |         goto rsa_fail;  | 
4100  | 0  |       }  | 
4101  |  |  | 
4102  | 0  |       params->palgo = GNUTLS_DIG_SHA384;  | 
4103  |  | 
  | 
4104  | 0  |       if (params->seed_size) { | 
4105  | 0  |         ret = _rsa_generate_fips186_4_keypair(  | 
4106  | 0  |           &pub, &priv, params->seed_size,  | 
4107  | 0  |           params->seed, NULL, NULL, level);  | 
4108  | 0  |       } else { | 
4109  | 0  |         unsigned retries = 0;  | 
4110  |  |         /* The provable RSA key generation process is deterministic  | 
4111  |  |            * but has an internal maximum iteration counter and when  | 
4112  |  |            * exceed will fail for certain random seeds. This is a very  | 
4113  |  |            * rare condition, but it nevertheless happens and even CI builds fail  | 
4114  |  |            * occasionally. When we generate the random seed internally, remediate  | 
4115  |  |            * by retrying a different seed on failure. */  | 
4116  | 0  |         do { | 
4117  | 0  |           params->seed_size =  | 
4118  | 0  |             sizeof(params->seed);  | 
4119  | 0  |           ret = rsa_generate_fips186_4_keypair(  | 
4120  | 0  |             &pub, &priv, NULL, rnd_func,  | 
4121  | 0  |             NULL, NULL, ¶ms->seed_size,  | 
4122  | 0  |             params->seed, level);  | 
4123  | 0  |         } while (ret != 1 && ++retries < 3);  | 
4124  | 0  |       }  | 
4125  | 0  |     } else { | 
4126  | 0  |       not_approved = true;  | 
4127  |  | 
  | 
4128  | 0  |       ret = rsa_generate_keypair(&pub, &priv, NULL, rnd_func,  | 
4129  | 0  |                NULL, NULL, level, 0);  | 
4130  | 0  |     }  | 
4131  | 0  |     if (ret != 1 || HAVE_LIB_ERROR()) { | 
4132  | 0  |       gnutls_assert();  | 
4133  | 0  |       ret = GNUTLS_E_PK_GENERATION_ERROR;  | 
4134  | 0  |       goto rsa_fail;  | 
4135  | 0  |     }  | 
4136  |  |  | 
4137  | 0  |     params->params_nr = 0;  | 
4138  | 0  |     for (i = 0; i < RSA_PRIVATE_PARAMS; i++) { | 
4139  | 0  |       ret = _gnutls_mpi_init(¶ms->params[i]);  | 
4140  | 0  |       if (ret < 0) { | 
4141  | 0  |         gnutls_assert();  | 
4142  | 0  |         goto rsa_fail;  | 
4143  | 0  |       }  | 
4144  | 0  |       params->params_nr++;  | 
4145  | 0  |     }  | 
4146  |  |  | 
4147  |  |     /* In FIPS 140-3, pub.n should be 2048-bit or larger; it  | 
4148  |  |        * is assured in rsa_generate_fips186_4_keypair in  | 
4149  |  |        * lib/nettle/int/rsa-keygen-fips186.c. */  | 
4150  |  |  | 
4151  | 0  |     mpz_set(TOMPZ(params->params[RSA_MODULUS]), pub.n);  | 
4152  | 0  |     mpz_set(TOMPZ(params->params[RSA_PUB]), pub.e);  | 
4153  | 0  |     mpz_set(TOMPZ(params->params[RSA_PRIV]), priv.d);  | 
4154  | 0  |     mpz_set(TOMPZ(params->params[RSA_PRIME1]), priv.p);  | 
4155  | 0  |     mpz_set(TOMPZ(params->params[RSA_PRIME2]), priv.q);  | 
4156  | 0  |     mpz_set(TOMPZ(params->params[RSA_COEF]), priv.c);  | 
4157  | 0  |     mpz_set(TOMPZ(params->params[RSA_E1]), priv.a);  | 
4158  | 0  |     mpz_set(TOMPZ(params->params[RSA_E2]), priv.b);  | 
4159  |  | 
  | 
4160  | 0  |     ret = 0;  | 
4161  |  | 
  | 
4162  | 0  |   rsa_fail:  | 
4163  | 0  |     rsa_private_key_clear(&priv);  | 
4164  | 0  |     rsa_public_key_clear(&pub);  | 
4165  |  | 
  | 
4166  | 0  |     if (ret < 0)  | 
4167  | 0  |       goto cleanup;  | 
4168  |  |  | 
4169  | 0  |     break;  | 
4170  | 0  |   }  | 
4171  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
4172  | 0  |   case GNUTLS_PK_EDDSA_ED448: { | 
4173  | 0  |     unsigned size = gnutls_ecc_curve_get_size(level);  | 
4174  |  | 
  | 
4175  | 0  |     if (params->pkflags & GNUTLS_PK_FLAG_PROVABLE) { | 
4176  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4177  | 0  |       goto cleanup;  | 
4178  | 0  |     }  | 
4179  |  |  | 
4180  | 0  |     if (unlikely(get_eddsa_curve(algo) != level)) { | 
4181  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
4182  | 0  |       goto cleanup;  | 
4183  | 0  |     }  | 
4184  |  |  | 
4185  | 0  |     if (size == 0) { | 
4186  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4187  | 0  |       goto cleanup;  | 
4188  | 0  |     }  | 
4189  |  |  | 
4190  | 0  |     params->curve = level;  | 
4191  |  | 
  | 
4192  | 0  |     params->raw_priv.data = gnutls_malloc(size);  | 
4193  | 0  |     if (params->raw_priv.data == NULL) { | 
4194  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4195  | 0  |       goto cleanup;  | 
4196  | 0  |     }  | 
4197  |  |  | 
4198  | 0  |     params->raw_pub.data = gnutls_malloc(size);  | 
4199  | 0  |     if (params->raw_pub.data == NULL) { | 
4200  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4201  | 0  |       goto cleanup;  | 
4202  | 0  |     }  | 
4203  |  |  | 
4204  | 0  |     ret = gnutls_rnd(rnd_level, params->raw_priv.data, size);  | 
4205  | 0  |     if (ret < 0) { | 
4206  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4207  | 0  |       goto cleanup;  | 
4208  | 0  |     }  | 
4209  | 0  |     params->raw_pub.size = size;  | 
4210  | 0  |     params->raw_priv.size = size;  | 
4211  |  | 
  | 
4212  | 0  |     ret = eddsa_public_key(algo, params->raw_pub.data,  | 
4213  | 0  |                params->raw_priv.data);  | 
4214  | 0  |     if (ret < 0)  | 
4215  | 0  |       goto cleanup;  | 
4216  |  |  | 
4217  | 0  |     break;  | 
4218  | 0  |   }  | 
4219  | 0  |   case GNUTLS_PK_ECDSA:  | 
4220  | 0  |     if (params->pkflags & GNUTLS_PK_FLAG_PROVABLE)  | 
4221  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4222  |  |  | 
4223  | 0  |     { | 
4224  | 0  |       struct ecc_scalar key;  | 
4225  | 0  |       struct ecc_point pub;  | 
4226  | 0  |       const struct ecc_curve *curve;  | 
4227  | 0  |       struct ecc_scalar n;  | 
4228  | 0  |       struct ecc_scalar m;  | 
4229  | 0  |       struct ecc_point r;  | 
4230  | 0  |       mpz_t x, y, xx, yy, nn, mm;  | 
4231  |  | 
  | 
4232  | 0  |       curve = get_supported_nist_curve(level);  | 
4233  | 0  |       if (curve == NULL) { | 
4234  | 0  |         ret = gnutls_assert_val(  | 
4235  | 0  |           GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
4236  | 0  |         goto cleanup;  | 
4237  | 0  |       }  | 
4238  |  |  | 
4239  |  |       /* P-192 is not supported in FIPS 140-3 */  | 
4240  | 0  |       if (level == GNUTLS_ECC_CURVE_SECP192R1) { | 
4241  | 0  |         not_approved = true;  | 
4242  | 0  |       }  | 
4243  |  | 
  | 
4244  | 0  |       mpz_init(x);  | 
4245  | 0  |       mpz_init(y);  | 
4246  | 0  |       mpz_init(xx);  | 
4247  | 0  |       mpz_init(yy);  | 
4248  | 0  |       mpz_init(nn);  | 
4249  | 0  |       mpz_init(mm);  | 
4250  |  | 
  | 
4251  | 0  |       ecc_scalar_init(&key, curve);  | 
4252  | 0  |       ecc_point_init(&pub, curve);  | 
4253  | 0  |       ecc_scalar_init(&n, curve);  | 
4254  | 0  |       ecc_scalar_init(&m, curve);  | 
4255  | 0  |       ecc_point_init(&r, curve);  | 
4256  |  | 
  | 
4257  | 0  |       ecdsa_generate_keypair(&pub, &key, NULL, rnd_func);  | 
4258  | 0  |       if (HAVE_LIB_ERROR()) { | 
4259  | 0  |         ret = gnutls_assert_val(  | 
4260  | 0  |           GNUTLS_E_LIB_IN_ERROR_STATE);  | 
4261  | 0  |         goto ecc_fail;  | 
4262  | 0  |       }  | 
4263  |  |  | 
4264  | 0  |       ret = _gnutls_mpi_init_multi(¶ms->params[ECC_X],  | 
4265  | 0  |                  ¶ms->params[ECC_Y],  | 
4266  | 0  |                  ¶ms->params[ECC_K],  | 
4267  | 0  |                  NULL);  | 
4268  | 0  |       if (ret < 0) { | 
4269  | 0  |         gnutls_assert();  | 
4270  | 0  |         goto ecc_fail;  | 
4271  | 0  |       }  | 
4272  |  |  | 
4273  | 0  |       params->curve = level;  | 
4274  | 0  |       params->params_nr = ECC_PRIVATE_PARAMS;  | 
4275  |  | 
  | 
4276  | 0  |       ecc_point_get(&pub, x, y);  | 
4277  |  | 
  | 
4278  |  | #ifdef ENABLE_FIPS140  | 
4279  |  |       if (_gnutls_fips_mode_enabled()) { | 
4280  |  |         /* Perform ECC full public key validation checks  | 
4281  |  |          * according to SP800-56A (revision 3), 5.6.2.3.3.  | 
4282  |  |          */  | 
4283  |  |  | 
4284  |  |         const char *order, *modulus;  | 
4285  |  |  | 
4286  |  |         /* Step 1: verify that Q is not an identity  | 
4287  |  |          * element (an infinity point).  Note that this  | 
4288  |  |          * cannot happen in the nettle implementation,  | 
4289  |  |          * because it cannot represent an infinity point  | 
4290  |  |          * on curves. */  | 
4291  |  |         if (mpz_cmp_ui(x, 0) == 0 &&  | 
4292  |  |             mpz_cmp_ui(y, 0) == 0) { | 
4293  |  |           ret = gnutls_assert_val(  | 
4294  |  |             GNUTLS_E_ILLEGAL_PARAMETER);  | 
4295  |  |           goto ecc_fail;  | 
4296  |  |         }  | 
4297  |  |  | 
4298  |  |         /* Step 2: verify that both coordinates of Q are  | 
4299  |  |          * in the range [0, p - 1].  | 
4300  |  |          *  | 
4301  |  |          * Step 3: verify that Q lie on the curve  | 
4302  |  |          *  | 
4303  |  |          * Both checks are performed in nettle.  */  | 
4304  |  |         if (!ecc_point_set(&r, x, y)) { | 
4305  |  |           ret = gnutls_assert_val(  | 
4306  |  |             GNUTLS_E_ILLEGAL_PARAMETER);  | 
4307  |  |           goto ecc_fail;  | 
4308  |  |         }  | 
4309  |  |  | 
4310  |  |         /* Step 4: verify that n * Q, where n is the  | 
4311  |  |          * curve order, result in an identity element  | 
4312  |  |          *  | 
4313  |  |          * Since nettle internally cannot represent an  | 
4314  |  |          * identity element on curves, we validate this  | 
4315  |  |          * instead:  | 
4316  |  |          *  | 
4317  |  |          *   (n - 1) * Q = -Q  | 
4318  |  |          *  | 
4319  |  |          * That effectively means: n * Q = -Q + Q = O  | 
4320  |  |          */  | 
4321  |  |         order = get_supported_nist_curve_order(level);  | 
4322  |  |         if (unlikely(order == NULL)) { | 
4323  |  |           ret = gnutls_assert_val(  | 
4324  |  |             GNUTLS_E_INTERNAL_ERROR);  | 
4325  |  |           goto ecc_fail;  | 
4326  |  |         }  | 
4327  |  |  | 
4328  |  |         ret = mpz_set_str(nn, order, 16);  | 
4329  |  |         if (unlikely(ret < 0)) { | 
4330  |  |           ret = gnutls_assert_val(  | 
4331  |  |             GNUTLS_E_MPI_SCAN_FAILED);  | 
4332  |  |           goto ecc_fail;  | 
4333  |  |         }  | 
4334  |  |  | 
4335  |  |         modulus =  | 
4336  |  |           get_supported_nist_curve_modulus(level);  | 
4337  |  |         if (unlikely(modulus == NULL)) { | 
4338  |  |           ret = gnutls_assert_val(  | 
4339  |  |             GNUTLS_E_INTERNAL_ERROR);  | 
4340  |  |           goto ecc_fail;  | 
4341  |  |         }  | 
4342  |  |  | 
4343  |  |         ret = mpz_set_str(mm, modulus, 16);  | 
4344  |  |         if (unlikely(ret < 0)) { | 
4345  |  |           ret = gnutls_assert_val(  | 
4346  |  |             GNUTLS_E_MPI_SCAN_FAILED);  | 
4347  |  |           goto ecc_fail;  | 
4348  |  |         }  | 
4349  |  |  | 
4350  |  |         /* (n - 1) * Q = -Q */  | 
4351  |  |         mpz_sub_ui(nn, nn, 1);  | 
4352  |  |         ecc_scalar_set(&n, nn);  | 
4353  |  |         ecc_point_mul(&r, &n, &r);  | 
4354  |  |         ecc_point_get(&r, xx, yy);  | 
4355  |  |         mpz_sub(mm, mm, y);  | 
4356  |  |  | 
4357  |  |         if (mpz_cmp(xx, x) != 0 ||  | 
4358  |  |             mpz_cmp(yy, mm) != 0) { | 
4359  |  |           ret = gnutls_assert_val(  | 
4360  |  |             GNUTLS_E_ILLEGAL_PARAMETER);  | 
4361  |  |           goto ecc_fail;  | 
4362  |  |         }  | 
4363  |  |       } else { | 
4364  |  |         not_approved = true;  | 
4365  |  |       }  | 
4366  |  | #endif  | 
4367  |  | 
  | 
4368  | 0  |       mpz_set(TOMPZ(params->params[ECC_X]), x);  | 
4369  | 0  |       mpz_set(TOMPZ(params->params[ECC_Y]), y);  | 
4370  |  | 
  | 
4371  | 0  |       ecc_scalar_get(&key, TOMPZ(params->params[ECC_K]));  | 
4372  |  | 
  | 
4373  | 0  |       ret = 0;  | 
4374  |  | 
  | 
4375  | 0  |     ecc_fail:  | 
4376  | 0  |       mpz_clear(x);  | 
4377  | 0  |       mpz_clear(y);  | 
4378  | 0  |       mpz_clear(xx);  | 
4379  | 0  |       mpz_clear(yy);  | 
4380  | 0  |       mpz_clear(nn);  | 
4381  | 0  |       mpz_clear(mm);  | 
4382  | 0  |       ecc_point_clear(&pub);  | 
4383  | 0  |       ecc_scalar_clear(&key);  | 
4384  | 0  |       ecc_point_clear(&r);  | 
4385  | 0  |       ecc_scalar_clear(&n);  | 
4386  | 0  |       ecc_scalar_clear(&m);  | 
4387  |  | 
  | 
4388  | 0  |       if (ret < 0)  | 
4389  | 0  |         goto cleanup;  | 
4390  |  |  | 
4391  | 0  |       break;  | 
4392  | 0  |     }  | 
4393  | 0  | #if ENABLE_GOST  | 
4394  | 0  |   case GNUTLS_PK_GOST_01:  | 
4395  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
4396  | 0  |   case GNUTLS_PK_GOST_12_512:  | 
4397  | 0  |     if (params->pkflags & GNUTLS_PK_FLAG_PROVABLE)  | 
4398  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4399  |  |  | 
4400  | 0  |     { | 
4401  | 0  |       struct ecc_scalar key;  | 
4402  | 0  |       struct ecc_point pub;  | 
4403  | 0  |       const struct ecc_curve *curve;  | 
4404  | 0  |       const mac_entry_st *me;  | 
4405  |  |  | 
4406  |  |       /* GOST curves are not approved */  | 
4407  | 0  |       not_approved = true;  | 
4408  |  | 
  | 
4409  | 0  |       curve = get_supported_gost_curve(level);  | 
4410  | 0  |       if (curve == NULL) { | 
4411  | 0  |         ret = gnutls_assert_val(  | 
4412  | 0  |           GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
4413  | 0  |         goto cleanup;  | 
4414  | 0  |       }  | 
4415  |  |  | 
4416  | 0  |       me = hash_to_entry(_gnutls_gost_digest(algo));  | 
4417  | 0  |       if (!me || me->output_size * 8 != ecc_bit_size(curve)) { | 
4418  | 0  |         ret = gnutls_assert_val(  | 
4419  | 0  |           GNUTLS_E_INVALID_REQUEST);  | 
4420  | 0  |         goto cleanup;  | 
4421  | 0  |       }  | 
4422  |  |  | 
4423  | 0  |       ecc_scalar_init(&key, curve);  | 
4424  | 0  |       ecc_point_init(&pub, curve);  | 
4425  |  | 
  | 
4426  | 0  |       gostdsa_generate_keypair(&pub, &key, NULL,  | 
4427  | 0  |              rnd_key_func);  | 
4428  | 0  |       if (HAVE_LIB_ERROR()) { | 
4429  | 0  |         ret = gnutls_assert_val(  | 
4430  | 0  |           GNUTLS_E_LIB_IN_ERROR_STATE);  | 
4431  | 0  |         goto ecc_fail;  | 
4432  | 0  |       }  | 
4433  |  |  | 
4434  | 0  |       ret = _gnutls_mpi_init_multi(¶ms->params[GOST_X],  | 
4435  | 0  |                  ¶ms->params[GOST_Y],  | 
4436  | 0  |                  ¶ms->params[GOST_K],  | 
4437  | 0  |                  NULL);  | 
4438  | 0  |       if (ret < 0) { | 
4439  | 0  |         gnutls_assert();  | 
4440  | 0  |         goto gost_fail;  | 
4441  | 0  |       }  | 
4442  |  |  | 
4443  | 0  |       params->curve = level;  | 
4444  | 0  |       params->params_nr = GOST_PRIVATE_PARAMS;  | 
4445  |  | 
  | 
4446  | 0  |       ecc_point_get(&pub, TOMPZ(params->params[GOST_X]),  | 
4447  | 0  |               TOMPZ(params->params[GOST_Y]));  | 
4448  | 0  |       ecc_scalar_get(&key, TOMPZ(params->params[GOST_K]));  | 
4449  |  | 
  | 
4450  | 0  |       ret = 0;  | 
4451  |  | 
  | 
4452  | 0  |     gost_fail:  | 
4453  | 0  |       ecc_point_clear(&pub);  | 
4454  | 0  |       ecc_scalar_clear(&key);  | 
4455  |  | 
  | 
4456  | 0  |       if (ret < 0)  | 
4457  | 0  |         goto cleanup;  | 
4458  |  |  | 
4459  | 0  |       break;  | 
4460  | 0  |     }  | 
4461  | 0  | #endif  | 
4462  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
4463  | 0  |   case GNUTLS_PK_ECDH_X448: { | 
4464  | 0  |     unsigned size = gnutls_ecc_curve_get_size(level);  | 
4465  |  | 
  | 
4466  | 0  |     not_approved = true;  | 
4467  |  | 
  | 
4468  | 0  |     if (size == 0) { | 
4469  | 0  |       ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4470  | 0  |       goto cleanup;  | 
4471  | 0  |     }  | 
4472  |  |  | 
4473  | 0  |     params->curve = level;  | 
4474  |  | 
  | 
4475  | 0  |     params->raw_priv.data = gnutls_malloc(size);  | 
4476  | 0  |     if (params->raw_priv.data == NULL) { | 
4477  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4478  | 0  |       goto cleanup;  | 
4479  | 0  |     }  | 
4480  |  |  | 
4481  | 0  |     params->raw_pub.data = gnutls_malloc(size);  | 
4482  | 0  |     if (params->raw_pub.data == NULL) { | 
4483  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4484  | 0  |       goto cleanup;  | 
4485  | 0  |     }  | 
4486  |  |  | 
4487  | 0  |     ret = gnutls_rnd(rnd_level, params->raw_priv.data, size);  | 
4488  | 0  |     if (ret < 0) { | 
4489  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4490  | 0  |       goto cleanup;  | 
4491  | 0  |     }  | 
4492  | 0  |     params->raw_pub.size = size;  | 
4493  | 0  |     params->raw_priv.size = size;  | 
4494  |  | 
  | 
4495  | 0  |     ret = edwards_curve_mul_g(algo, params->raw_pub.data,  | 
4496  | 0  |             params->raw_priv.data);  | 
4497  | 0  |     if (ret < 0)  | 
4498  | 0  |       goto cleanup;  | 
4499  | 0  |     break;  | 
4500  | 0  |   }  | 
4501  | 0  |   case GNUTLS_PK_MLKEM768:  | 
4502  | 0  |   case GNUTLS_PK_MLKEM1024:  | 
4503  |  | #ifdef HAVE_LIBOQS  | 
4504  |  |   case GNUTLS_PK_EXP_KYBER768:  | 
4505  |  | #endif  | 
4506  | 0  |     not_approved = true;  | 
4507  | 0  |     ret = ml_kem_generate_keypair(algo, ¶ms->raw_priv,  | 
4508  | 0  |                 ¶ms->raw_pub);  | 
4509  | 0  |     if (ret < 0)  | 
4510  | 0  |       goto cleanup;  | 
4511  | 0  |     break;  | 
4512  | 0  |   case GNUTLS_PK_MLDSA44:  | 
4513  | 0  |   case GNUTLS_PK_MLDSA65:  | 
4514  | 0  |   case GNUTLS_PK_MLDSA87:  | 
4515  | 0  |     if (params->pkflags & GNUTLS_PK_FLAG_PROVABLE)  | 
4516  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4517  |  |  | 
4518  | 0  |     not_approved = true;  | 
4519  | 0  |     ret = ml_dsa_generate_keypair(algo, ¶ms->raw_priv,  | 
4520  | 0  |                 ¶ms->raw_pub);  | 
4521  | 0  |     if (ret < 0)  | 
4522  | 0  |       goto cleanup;  | 
4523  | 0  |     break;  | 
4524  | 0  |   default:  | 
4525  | 0  |     gnutls_assert();  | 
4526  | 0  |     return GNUTLS_E_INVALID_REQUEST;  | 
4527  | 0  |   }  | 
4528  |  |  | 
4529  | 0  |   params->algo = algo;  | 
4530  |  | 
  | 
4531  |  | #ifdef ENABLE_FIPS140  | 
4532  |  |   if (_gnutls_fips_mode_enabled()) { | 
4533  |  |     ret = pct_test(algo, params);  | 
4534  |  |     if (ret < 0) { | 
4535  |  |       gnutls_assert();  | 
4536  |  |       goto cleanup;  | 
4537  |  |     }  | 
4538  |  |   }  | 
4539  |  | #endif  | 
4540  |  | 
  | 
4541  | 0  | cleanup:  | 
4542  | 0  |   if (ret < 0) { | 
4543  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_ERROR);  | 
4544  | 0  |     for (i = 0; i < params->params_nr; i++) { | 
4545  | 0  |       _gnutls_mpi_release(¶ms->params[i]);  | 
4546  | 0  |     }  | 
4547  | 0  |     params->params_nr = 0;  | 
4548  | 0  |     gnutls_free(params->raw_priv.data);  | 
4549  | 0  |     gnutls_free(params->raw_pub.data);  | 
4550  | 0  |   } else if (not_approved) { | 
4551  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_NOT_APPROVED);  | 
4552  | 0  |   } else { | 
4553  | 0  |     _gnutls_switch_fips_state(GNUTLS_FIPS140_OP_APPROVED);  | 
4554  | 0  |   }  | 
4555  |  | 
  | 
4556  | 0  |   FAIL_IF_LIB_ERROR;  | 
4557  | 0  |   return ret;  | 
4558  | 0  | }  | 
4559  |  |  | 
4560  |  | static int wrap_nettle_pk_verify_priv_params(gnutls_pk_algorithm_t algo,  | 
4561  |  |                const gnutls_pk_params_st *params)  | 
4562  | 0  | { | 
4563  | 0  |   int ret;  | 
4564  |  | 
  | 
4565  | 0  |   switch (algo) { | 
4566  | 0  |   case GNUTLS_PK_RSA:  | 
4567  | 0  |   case GNUTLS_PK_RSA_PSS:  | 
4568  | 0  |   case GNUTLS_PK_RSA_OAEP: { | 
4569  | 0  |     bigint_t t1 = NULL, t2 = NULL;  | 
4570  |  | 
  | 
4571  | 0  |     if (params->params_nr != RSA_PRIVATE_PARAMS)  | 
4572  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4573  |  |  | 
4574  | 0  |     ret = _gnutls_mpi_init_multi(&t1, &t2, NULL);  | 
4575  | 0  |     if (ret < 0)  | 
4576  | 0  |       return gnutls_assert_val(ret);  | 
4577  |  |  | 
4578  | 0  |     _gnutls_mpi_mulm(t1, params->params[RSA_PRIME1],  | 
4579  | 0  |          params->params[RSA_PRIME2],  | 
4580  | 0  |          params->params[RSA_MODULUS]);  | 
4581  | 0  |     if (_gnutls_mpi_cmp_ui(t1, 0) != 0) { | 
4582  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4583  | 0  |       goto rsa_cleanup;  | 
4584  | 0  |     }  | 
4585  |  |  | 
4586  | 0  |     mpz_invert(TOMPZ(t1), TOMPZ(params->params[RSA_PRIME2]),  | 
4587  | 0  |          TOMPZ(params->params[RSA_PRIME1]));  | 
4588  | 0  |     if (_gnutls_mpi_cmp(t1, params->params[RSA_COEF]) != 0) { | 
4589  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4590  | 0  |       goto rsa_cleanup;  | 
4591  | 0  |     }  | 
4592  |  |  | 
4593  |  |     /* [RSA_PRIME1] = d % p-1, [RSA_PRIME2] = d % q-1 */  | 
4594  | 0  |     _gnutls_mpi_sub_ui(t1, params->params[RSA_PRIME1], 1);  | 
4595  | 0  |     ret = _gnutls_mpi_modm(t2, params->params[RSA_PRIV], t1);  | 
4596  | 0  |     if (ret < 0) { | 
4597  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4598  | 0  |       goto rsa_cleanup;  | 
4599  | 0  |     }  | 
4600  |  |  | 
4601  | 0  |     if (_gnutls_mpi_cmp(params->params[RSA_E1], t2) != 0) { | 
4602  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4603  | 0  |       goto rsa_cleanup;  | 
4604  | 0  |     }  | 
4605  |  |  | 
4606  | 0  |     _gnutls_mpi_sub_ui(t1, params->params[RSA_PRIME2], 1);  | 
4607  |  | 
  | 
4608  | 0  |     ret = _gnutls_mpi_modm(t2, params->params[RSA_PRIV], t1);  | 
4609  | 0  |     if (ret < 0) { | 
4610  | 0  |       ret = gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
4611  | 0  |       goto rsa_cleanup;  | 
4612  | 0  |     }  | 
4613  |  |  | 
4614  | 0  |     if (_gnutls_mpi_cmp(params->params[RSA_E2], t2) != 0) { | 
4615  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4616  | 0  |       goto rsa_cleanup;  | 
4617  | 0  |     }  | 
4618  |  |  | 
4619  | 0  |     ret = 0;  | 
4620  |  | 
  | 
4621  | 0  |   rsa_cleanup:  | 
4622  | 0  |     zrelease_mpi_key(&t1);  | 
4623  | 0  |     zrelease_mpi_key(&t2);  | 
4624  | 0  |   }  | 
4625  |  |  | 
4626  | 0  |   break;  | 
4627  | 0  | #ifdef ENABLE_DSA  | 
4628  | 0  |   case GNUTLS_PK_DSA:  | 
4629  | 0  | #endif  | 
4630  | 0  |   case GNUTLS_PK_DH: { | 
4631  | 0  |     bigint_t t1 = NULL;  | 
4632  |  | 
  | 
4633  | 0  |     if (params->params_nr != DSA_PRIVATE_PARAMS)  | 
4634  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4635  |  |  | 
4636  | 0  |     ret = _gnutls_mpi_init(&t1);  | 
4637  | 0  |     if (ret < 0)  | 
4638  | 0  |       return gnutls_assert_val(ret);  | 
4639  |  |  | 
4640  | 0  |     ret = _gnutls_mpi_powm(t1, params->params[DSA_G],  | 
4641  | 0  |                params->params[DSA_X],  | 
4642  | 0  |                params->params[DSA_P]);  | 
4643  | 0  |     if (ret < 0) { | 
4644  | 0  |       gnutls_assert();  | 
4645  | 0  |       goto dsa_cleanup;  | 
4646  | 0  |     }  | 
4647  |  |  | 
4648  | 0  |     if (_gnutls_mpi_cmp(t1, params->params[DSA_Y]) != 0) { | 
4649  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4650  | 0  |       goto dsa_cleanup;  | 
4651  | 0  |     }  | 
4652  |  |  | 
4653  | 0  |     ret = 0;  | 
4654  |  | 
  | 
4655  | 0  |   dsa_cleanup:  | 
4656  | 0  |     zrelease_mpi_key(&t1);  | 
4657  | 0  |   }  | 
4658  |  |  | 
4659  | 0  |   break;  | 
4660  | 0  |   case GNUTLS_PK_ECDSA: { | 
4661  | 0  |     struct ecc_point r, pub;  | 
4662  | 0  |     struct ecc_scalar priv;  | 
4663  | 0  |     mpz_t x1, y1, x2, y2;  | 
4664  | 0  |     const struct ecc_curve *curve;  | 
4665  |  | 
  | 
4666  | 0  |     if (params->params_nr != ECC_PRIVATE_PARAMS)  | 
4667  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4668  |  |  | 
4669  | 0  |     curve = get_supported_nist_curve(params->curve);  | 
4670  | 0  |     if (curve == NULL)  | 
4671  | 0  |       return gnutls_assert_val(  | 
4672  | 0  |         GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
4673  |  |  | 
4674  | 0  |     ret = _ecc_params_to_pubkey(params, &pub, curve);  | 
4675  | 0  |     if (ret < 0)  | 
4676  | 0  |       return gnutls_assert_val(ret);  | 
4677  |  |  | 
4678  | 0  |     ret = _ecc_params_to_privkey(params, &priv, curve);  | 
4679  | 0  |     if (ret < 0) { | 
4680  | 0  |       ecc_point_clear(&pub);  | 
4681  | 0  |       return gnutls_assert_val(ret);  | 
4682  | 0  |     }  | 
4683  |  |  | 
4684  | 0  |     ecc_point_init(&r, curve);  | 
4685  |  |     /* verify that x,y lie on the curve */  | 
4686  | 0  |     ret = ecc_point_set(&r, TOMPZ(params->params[ECC_X]),  | 
4687  | 0  |             TOMPZ(params->params[ECC_Y]));  | 
4688  | 0  |     if (ret == 0) { | 
4689  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4690  | 0  |       goto ecc_cleanup;  | 
4691  | 0  |     }  | 
4692  | 0  |     ecc_point_clear(&r);  | 
4693  |  | 
  | 
4694  | 0  |     ecc_point_init(&r, curve);  | 
4695  | 0  |     ecc_point_mul_g(&r, &priv);  | 
4696  |  | 
  | 
4697  | 0  |     mpz_init(x1);  | 
4698  | 0  |     mpz_init(y1);  | 
4699  | 0  |     ecc_point_get(&r, x1, y1);  | 
4700  | 0  |     ecc_point_zclear(&r);  | 
4701  |  | 
  | 
4702  | 0  |     mpz_init(x2);  | 
4703  | 0  |     mpz_init(y2);  | 
4704  | 0  |     ecc_point_get(&pub, x2, y2);  | 
4705  |  |  | 
4706  |  |     /* verify that k*(Gx,Gy)=(x,y) */  | 
4707  | 0  |     if (mpz_cmp(x1, x2) != 0 || mpz_cmp(y1, y2) != 0) { | 
4708  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4709  | 0  |       goto ecc_cleanup;  | 
4710  | 0  |     }  | 
4711  |  |  | 
4712  | 0  |     ret = 0;  | 
4713  |  | 
  | 
4714  | 0  |   ecc_cleanup:  | 
4715  | 0  |     ecc_scalar_zclear(&priv);  | 
4716  | 0  |     ecc_point_clear(&pub);  | 
4717  |  | 
  | 
4718  | 0  |     mpz_clear(x1);  | 
4719  | 0  |     mpz_clear(y1);  | 
4720  | 0  |     mpz_clear(x2);  | 
4721  | 0  |     mpz_clear(y2);  | 
4722  | 0  |   } break;  | 
4723  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
4724  | 0  |   case GNUTLS_PK_EDDSA_ED448: { | 
4725  | 0  |     gnutls_ecc_curve_t curve;  | 
4726  | 0  |     const gnutls_ecc_curve_entry_st *e;  | 
4727  | 0  |     uint8_t pub[57]; /* can accommodate both curves */  | 
4728  |  | 
  | 
4729  | 0  |     curve = get_eddsa_curve(algo);  | 
4730  | 0  |     e = _gnutls_ecc_curve_get_params(curve);  | 
4731  | 0  |     if (e == NULL)  | 
4732  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4733  |  |  | 
4734  | 0  |     if (params->raw_pub.data == NULL) { | 
4735  | 0  |       return 0; /* nothing to verify */  | 
4736  | 0  |     }  | 
4737  |  |  | 
4738  | 0  |     if (params->raw_pub.size != e->size)  | 
4739  | 0  |       return gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4740  |  |  | 
4741  | 0  |     ret = eddsa_public_key(algo, pub, params->raw_priv.data);  | 
4742  | 0  |     if (ret < 0)  | 
4743  | 0  |       return ret;  | 
4744  |  |  | 
4745  | 0  |     if (memcmp(params->raw_pub.data, pub, e->size) != 0)  | 
4746  | 0  |       return gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4747  |  |  | 
4748  | 0  |     ret = 0;  | 
4749  | 0  |     break;  | 
4750  | 0  |   }  | 
4751  | 0  |   case GNUTLS_PK_ECDH_X25519:  | 
4752  | 0  |   case GNUTLS_PK_ECDH_X448: { | 
4753  | 0  |     gnutls_ecc_curve_t curve;  | 
4754  | 0  |     const gnutls_ecc_curve_entry_st *e;  | 
4755  | 0  |     uint8_t pub[57]; /* can accommodate both curves */  | 
4756  |  | 
  | 
4757  | 0  |     curve = get_ecdh_curve(algo);  | 
4758  | 0  |     e = _gnutls_ecc_curve_get_params(curve);  | 
4759  | 0  |     if (e == NULL)  | 
4760  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4761  |  |  | 
4762  | 0  |     if (params->raw_pub.data == NULL) { | 
4763  | 0  |       return 0; /* nothing to verify */  | 
4764  | 0  |     }  | 
4765  |  |  | 
4766  | 0  |     if (params->raw_pub.size != e->size)  | 
4767  | 0  |       return gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4768  |  |  | 
4769  | 0  |     ret = edwards_curve_mul_g(algo, pub, params->raw_priv.data);  | 
4770  | 0  |     if (ret < 0)  | 
4771  | 0  |       return ret;  | 
4772  |  |  | 
4773  | 0  |     if (memcmp(params->raw_pub.data, pub, e->size) != 0)  | 
4774  | 0  |       return gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4775  |  |  | 
4776  | 0  |     ret = 0;  | 
4777  | 0  |     break;  | 
4778  | 0  |   }  | 
4779  | 0  |   case GNUTLS_PK_MLKEM768:  | 
4780  | 0  |   case GNUTLS_PK_MLKEM1024:  | 
4781  |  | #ifdef HAVE_LIBOQS  | 
4782  |  |   case GNUTLS_PK_EXP_KYBER768:  | 
4783  |  | #endif  | 
4784  | 0  |     if (!ml_kem_exists(algo))  | 
4785  | 0  |       return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
4786  |  |  | 
4787  | 0  |     ret = 0;  | 
4788  | 0  |     break;  | 
4789  | 0  |   case GNUTLS_PK_MLDSA44:  | 
4790  | 0  |   case GNUTLS_PK_MLDSA65:  | 
4791  | 0  |   case GNUTLS_PK_MLDSA87: { | 
4792  | 0  |     if (!ml_dsa_exists(algo))  | 
4793  | 0  |       return gnutls_assert_val(GNUTLS_E_UNKNOWN_PK_ALGORITHM);  | 
4794  |  |  | 
4795  | 0  |     ret = 0;  | 
4796  | 0  |     break;  | 
4797  | 0  |   }  | 
4798  | 0  | #if ENABLE_GOST  | 
4799  | 0  |   case GNUTLS_PK_GOST_01:  | 
4800  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
4801  | 0  |   case GNUTLS_PK_GOST_12_512: { | 
4802  | 0  |     struct ecc_point r, pub;  | 
4803  | 0  |     struct ecc_scalar priv;  | 
4804  | 0  |     mpz_t x1, y1, x2, y2;  | 
4805  | 0  |     const struct ecc_curve *curve;  | 
4806  |  | 
  | 
4807  | 0  |     if (params->params_nr != GOST_PRIVATE_PARAMS)  | 
4808  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4809  |  |  | 
4810  | 0  |     curve = get_supported_gost_curve(params->curve);  | 
4811  | 0  |     if (curve == NULL)  | 
4812  | 0  |       return gnutls_assert_val(  | 
4813  | 0  |         GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
4814  |  |  | 
4815  | 0  |     ret = _gost_params_to_pubkey(params, &pub, curve);  | 
4816  | 0  |     if (ret < 0)  | 
4817  | 0  |       return gnutls_assert_val(ret);  | 
4818  |  |  | 
4819  | 0  |     ret = _gost_params_to_privkey(params, &priv, curve);  | 
4820  | 0  |     if (ret < 0) { | 
4821  | 0  |       ecc_point_clear(&pub);  | 
4822  | 0  |       return gnutls_assert_val(ret);  | 
4823  | 0  |     }  | 
4824  |  |  | 
4825  | 0  |     ecc_point_init(&r, curve);  | 
4826  |  |     /* verify that x,y lie on the curve */  | 
4827  | 0  |     ret = gost_point_set(&r, TOMPZ(params->params[GOST_X]),  | 
4828  | 0  |              TOMPZ(params->params[GOST_Y]));  | 
4829  | 0  |     if (ret == 0) { | 
4830  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4831  | 0  |       goto gost_cleanup;  | 
4832  | 0  |     }  | 
4833  | 0  |     ecc_point_clear(&r);  | 
4834  |  | 
  | 
4835  | 0  |     ecc_point_init(&r, curve);  | 
4836  | 0  |     gost_point_mul_g(&r, &priv);  | 
4837  |  | 
  | 
4838  | 0  |     mpz_init(x1);  | 
4839  | 0  |     mpz_init(y1);  | 
4840  | 0  |     ecc_point_get(&r, x1, y1);  | 
4841  | 0  |     ecc_point_zclear(&r);  | 
4842  |  | 
  | 
4843  | 0  |     mpz_init(x2);  | 
4844  | 0  |     mpz_init(y2);  | 
4845  | 0  |     ecc_point_get(&pub, x2, y2);  | 
4846  |  |  | 
4847  |  |     /* verify that k*(Gx,Gy)=(x,y) */  | 
4848  | 0  |     if (mpz_cmp(x1, x2) != 0 || mpz_cmp(y1, y2) != 0) { | 
4849  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4850  | 0  |       goto gost_cleanup;  | 
4851  | 0  |     }  | 
4852  |  |  | 
4853  | 0  |     ret = 0;  | 
4854  |  | 
  | 
4855  | 0  |   gost_cleanup:  | 
4856  | 0  |     ecc_scalar_zclear(&priv);  | 
4857  | 0  |     ecc_point_clear(&pub);  | 
4858  |  | 
  | 
4859  | 0  |     mpz_clear(x1);  | 
4860  | 0  |     mpz_clear(y1);  | 
4861  | 0  |     mpz_clear(x2);  | 
4862  | 0  |     mpz_clear(y2);  | 
4863  | 0  |   } break;  | 
4864  | 0  | #endif  | 
4865  | 0  |   default:  | 
4866  | 0  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4867  | 0  |   }  | 
4868  |  |  | 
4869  | 0  |   return ret;  | 
4870  | 0  | }  | 
4871  |  |  | 
4872  |  | static int wrap_nettle_pk_verify_pub_params(gnutls_pk_algorithm_t algo,  | 
4873  |  |               const gnutls_pk_params_st *params)  | 
4874  | 0  | { | 
4875  | 0  |   int ret;  | 
4876  |  | 
  | 
4877  | 0  |   switch (algo) { | 
4878  | 0  |   case GNUTLS_PK_RSA:  | 
4879  | 0  |   case GNUTLS_PK_RSA_PSS:  | 
4880  | 0  |   case GNUTLS_PK_RSA_OAEP:  | 
4881  | 0  | #ifdef ENABLE_DSA  | 
4882  | 0  |   case GNUTLS_PK_DSA:  | 
4883  | 0  | #endif  | 
4884  | 0  |   case GNUTLS_PK_EDDSA_ED25519:  | 
4885  | 0  |   case GNUTLS_PK_EDDSA_ED448:  | 
4886  | 0  |     return 0;  | 
4887  | 0  |   case GNUTLS_PK_ECDSA: { | 
4888  |  |     /* just verify that x and y lie on the curve */  | 
4889  | 0  |     struct ecc_point r, pub;  | 
4890  | 0  |     const struct ecc_curve *curve;  | 
4891  |  | 
  | 
4892  | 0  |     if (params->params_nr != ECC_PUBLIC_PARAMS)  | 
4893  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4894  |  |  | 
4895  | 0  |     curve = get_supported_nist_curve(params->curve);  | 
4896  | 0  |     if (curve == NULL)  | 
4897  | 0  |       return gnutls_assert_val(  | 
4898  | 0  |         GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
4899  |  |  | 
4900  | 0  |     ret = _ecc_params_to_pubkey(params, &pub, curve);  | 
4901  | 0  |     if (ret < 0)  | 
4902  | 0  |       return gnutls_assert_val(ret);  | 
4903  |  |  | 
4904  | 0  |     ecc_point_init(&r, curve);  | 
4905  |  |     /* verify that x,y lie on the curve */  | 
4906  | 0  |     ret = ecc_point_set(&r, TOMPZ(params->params[ECC_X]),  | 
4907  | 0  |             TOMPZ(params->params[ECC_Y]));  | 
4908  | 0  |     if (ret == 0) { | 
4909  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4910  | 0  |       goto ecc_cleanup;  | 
4911  | 0  |     }  | 
4912  | 0  |     ecc_point_clear(&r);  | 
4913  |  | 
  | 
4914  | 0  |     ret = 0;  | 
4915  |  | 
  | 
4916  | 0  |   ecc_cleanup:  | 
4917  | 0  |     ecc_point_clear(&pub);  | 
4918  | 0  |   } break;  | 
4919  | 0  | #if ENABLE_GOST  | 
4920  | 0  |   case GNUTLS_PK_GOST_01:  | 
4921  | 0  |   case GNUTLS_PK_GOST_12_256:  | 
4922  | 0  |   case GNUTLS_PK_GOST_12_512: { | 
4923  |  |     /* just verify that x and y lie on the curve */  | 
4924  | 0  |     struct ecc_point r, pub;  | 
4925  | 0  |     const struct ecc_curve *curve;  | 
4926  |  | 
  | 
4927  | 0  |     if (params->params_nr != GOST_PUBLIC_PARAMS)  | 
4928  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4929  |  |  | 
4930  | 0  |     curve = get_supported_gost_curve(params->curve);  | 
4931  | 0  |     if (curve == NULL)  | 
4932  | 0  |       return gnutls_assert_val(  | 
4933  | 0  |         GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
4934  |  |  | 
4935  | 0  |     ret = _gost_params_to_pubkey(params, &pub, curve);  | 
4936  | 0  |     if (ret < 0)  | 
4937  | 0  |       return gnutls_assert_val(ret);  | 
4938  |  |  | 
4939  | 0  |     ecc_point_init(&r, curve);  | 
4940  |  |     /* verify that x,y lie on the curve */  | 
4941  | 0  |     ret = ecc_point_set(&r, TOMPZ(params->params[GOST_X]),  | 
4942  | 0  |             TOMPZ(params->params[GOST_Y]));  | 
4943  | 0  |     if (ret == 0) { | 
4944  | 0  |       ret = gnutls_assert_val(GNUTLS_E_ILLEGAL_PARAMETER);  | 
4945  | 0  |       goto gost_cleanup;  | 
4946  | 0  |     }  | 
4947  | 0  |     ecc_point_clear(&r);  | 
4948  |  | 
  | 
4949  | 0  |     ret = 0;  | 
4950  |  | 
  | 
4951  | 0  |   gost_cleanup:  | 
4952  | 0  |     ecc_point_clear(&pub);  | 
4953  | 0  |   } break;  | 
4954  | 0  | #endif  | 
4955  | 0  |   default:  | 
4956  | 0  |     ret = gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
4957  | 0  |   }  | 
4958  |  |  | 
4959  | 0  |   return ret;  | 
4960  | 0  | }  | 
4961  |  |  | 
4962  |  | static int calc_rsa_exp(gnutls_pk_params_st *params)  | 
4963  | 0  | { | 
4964  | 0  |   bigint_t tmp;  | 
4965  | 0  |   int ret;  | 
4966  |  | 
  | 
4967  | 0  |   if (params->params_nr < RSA_PRIVATE_PARAMS - 2) { | 
4968  | 0  |     gnutls_assert();  | 
4969  | 0  |     return GNUTLS_E_INTERNAL_ERROR;  | 
4970  | 0  |   }  | 
4971  |  |  | 
4972  | 0  |   params->params[RSA_E1] = params->params[RSA_E2] = NULL;  | 
4973  |  | 
  | 
4974  | 0  |   ret = _gnutls_mpi_init_multi(&tmp, ¶ms->params[RSA_E1],  | 
4975  | 0  |              ¶ms->params[RSA_E2], NULL);  | 
4976  | 0  |   if (ret < 0)  | 
4977  | 0  |     return gnutls_assert_val(ret);  | 
4978  |  |  | 
4979  |  |   /* [6] = d % p-1, [7] = d % q-1 */  | 
4980  | 0  |   _gnutls_mpi_sub_ui(tmp, params->params[RSA_PRIME1], 1);  | 
4981  | 0  |   ret = _gnutls_mpi_modm(params->params[RSA_E1],  | 
4982  | 0  |              params->params[RSA_PRIV] /*d */, tmp);  | 
4983  | 0  |   if (ret < 0)  | 
4984  | 0  |     goto fail;  | 
4985  |  |  | 
4986  | 0  |   _gnutls_mpi_sub_ui(tmp, params->params[RSA_PRIME2], 1);  | 
4987  | 0  |   ret = _gnutls_mpi_modm(params->params[RSA_E2],  | 
4988  | 0  |              params->params[RSA_PRIV] /*d */, tmp);  | 
4989  | 0  |   if (ret < 0)  | 
4990  | 0  |     goto fail;  | 
4991  |  |  | 
4992  | 0  |   zrelease_mpi_key(&tmp);  | 
4993  |  | 
  | 
4994  | 0  |   return 0;  | 
4995  |  |  | 
4996  | 0  | fail:  | 
4997  | 0  |   zrelease_mpi_key(&tmp);  | 
4998  | 0  |   zrelease_mpi_key(¶ms->params[RSA_E1]);  | 
4999  | 0  |   zrelease_mpi_key(¶ms->params[RSA_E2]);  | 
5000  |  | 
  | 
5001  | 0  |   return ret;  | 
5002  | 0  | }  | 
5003  |  |  | 
5004  |  | static int calc_rsa_priv(gnutls_pk_params_st *params)  | 
5005  | 0  | { | 
5006  | 0  |   bigint_t lcm, p1, q1;  | 
5007  | 0  |   int ret;  | 
5008  |  | 
  | 
5009  | 0  |   params->params[RSA_PRIV] = NULL;  | 
5010  |  | 
  | 
5011  | 0  |   ret = _gnutls_mpi_init_multi(¶ms->params[RSA_PRIV], &lcm, &p1, &q1,  | 
5012  | 0  |              NULL);  | 
5013  | 0  |   if (ret < 0)  | 
5014  | 0  |     return gnutls_assert_val(ret);  | 
5015  |  |  | 
5016  |  |   /* lcm(p - 1, q - 1) */  | 
5017  | 0  |   mpz_sub_ui(p1, params->params[RSA_PRIME1], 1);  | 
5018  | 0  |   mpz_sub_ui(q1, params->params[RSA_PRIME2], 1);  | 
5019  | 0  |   mpz_lcm(lcm, p1, q1);  | 
5020  |  | 
  | 
5021  | 0  |   zrelease_mpi_key(&p1);  | 
5022  | 0  |   zrelease_mpi_key(&q1);  | 
5023  |  |  | 
5024  |  |   /* d = e^{-1} (mod lcm) */ | 
5025  | 0  |   ret = mpz_invert(params->params[RSA_PRIV], params->params[RSA_PUB],  | 
5026  | 0  |        lcm);  | 
5027  |  | 
  | 
5028  | 0  |   zrelease_mpi_key(&lcm);  | 
5029  |  | 
  | 
5030  | 0  |   if (ret == 0) { | 
5031  | 0  |     zrelease_mpi_key(¶ms->params[RSA_PRIV]);  | 
5032  | 0  |     return GNUTLS_E_INVALID_REQUEST;  | 
5033  | 0  |   }  | 
5034  |  |  | 
5035  | 0  |   return 0;  | 
5036  | 0  | }  | 
5037  |  |  | 
5038  |  | #ifdef ENABLE_DSA  | 
5039  |  | static int calc_dsa_pub(gnutls_pk_params_st *params)  | 
5040  | 0  | { | 
5041  | 0  |   int ret;  | 
5042  |  | 
  | 
5043  | 0  |   params->params[DSA_Y] = NULL;  | 
5044  |  | 
  | 
5045  | 0  |   ret = _gnutls_mpi_init(¶ms->params[DSA_Y]);  | 
5046  | 0  |   if (ret < 0)  | 
5047  | 0  |     return gnutls_assert_val(ret);  | 
5048  |  |  | 
5049  |  |   /* y = g^x mod p */  | 
5050  | 0  |   ret = _gnutls_mpi_powm(params->params[DSA_Y], params->params[DSA_G],  | 
5051  | 0  |              params->params[DSA_X], params->params[DSA_P]);  | 
5052  | 0  |   if (ret < 0) { | 
5053  | 0  |     zrelease_mpi_key(¶ms->params[DSA_Y]);  | 
5054  | 0  |     return gnutls_assert_val(ret);  | 
5055  | 0  |   }  | 
5056  |  |  | 
5057  | 0  |   return 0;  | 
5058  | 0  | }  | 
5059  |  | #endif  | 
5060  |  |  | 
5061  |  | static int wrap_nettle_pk_fixup(gnutls_pk_algorithm_t algo,  | 
5062  |  |         gnutls_direction_t direction,  | 
5063  |  |         gnutls_pk_params_st *params)  | 
5064  | 0  | { | 
5065  | 0  |   int ret;  | 
5066  |  | 
  | 
5067  | 0  |   if (direction != GNUTLS_IMPORT)  | 
5068  | 0  |     return 0;  | 
5069  |  |  | 
5070  | 0  |   if (algo == GNUTLS_PK_RSA) { | 
5071  | 0  |     struct rsa_private_key priv;  | 
5072  |  | 
  | 
5073  | 0  |     if (params->params[RSA_PRIV] == NULL) { | 
5074  | 0  |       ret = calc_rsa_priv(params);  | 
5075  | 0  |       if (ret < 0)  | 
5076  | 0  |         return gnutls_assert_val(ret);  | 
5077  | 0  |       params->params_nr++;  | 
5078  | 0  |     }  | 
5079  |  |  | 
5080  |  |     /* do not trust the generated values. Some old private keys  | 
5081  |  |      * generated by us have mess on the values. Those were very  | 
5082  |  |      * old but it seemed some of the shipped example private  | 
5083  |  |      * keys were as old.  | 
5084  |  |      */  | 
5085  | 0  |     if (params->params_nr < RSA_PRIVATE_PARAMS - 3)  | 
5086  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
5087  |  |  | 
5088  | 0  |     if (params->params[RSA_COEF] == NULL) { | 
5089  | 0  |       ret = _gnutls_mpi_init(¶ms->params[RSA_COEF]);  | 
5090  | 0  |       if (ret < 0)  | 
5091  | 0  |         return gnutls_assert_val(ret);  | 
5092  | 0  |     }  | 
5093  |  |  | 
5094  | 0  |     if (mpz_cmp_ui(TOMPZ(params->params[RSA_PRIME1]), 0) == 0)  | 
5095  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
5096  |  |  | 
5097  | 0  |     if (mpz_invert(TOMPZ(params->params[RSA_COEF]),  | 
5098  | 0  |              TOMPZ(params->params[RSA_PRIME2]),  | 
5099  | 0  |              TOMPZ(params->params[RSA_PRIME1])) == 0)  | 
5100  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
5101  |  |  | 
5102  |  |     /* calculate exp1 [6] and exp2 [7] */  | 
5103  | 0  |     zrelease_mpi_key(¶ms->params[RSA_E1]);  | 
5104  | 0  |     zrelease_mpi_key(¶ms->params[RSA_E2]);  | 
5105  |  |  | 
5106  |  |     /* marks RSA_COEF as present */  | 
5107  | 0  |     params->params_nr = RSA_PRIVATE_PARAMS - 2;  | 
5108  | 0  |     ret = calc_rsa_exp(params);  | 
5109  | 0  |     if (ret < 0)  | 
5110  | 0  |       return gnutls_assert_val(ret);  | 
5111  |  |  | 
5112  | 0  |     params->params_nr = RSA_PRIVATE_PARAMS;  | 
5113  |  |  | 
5114  |  |     /* perform nettle's internal checks */  | 
5115  | 0  |     _rsa_params_to_privkey(params, &priv);  | 
5116  | 0  |     ret = rsa_private_key_prepare(&priv);  | 
5117  | 0  |     if (ret == 0) { | 
5118  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
5119  | 0  |     }  | 
5120  | 0  |   } else if (algo == GNUTLS_PK_EDDSA_ED25519 ||  | 
5121  | 0  |        algo == GNUTLS_PK_EDDSA_ED448) { | 
5122  | 0  |     if (unlikely(get_eddsa_curve(algo) != params->curve))  | 
5123  | 0  |       return gnutls_assert_val(  | 
5124  | 0  |         GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
5125  |  |  | 
5126  | 0  |     if (params->raw_priv.data == NULL)  | 
5127  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
5128  |  |  | 
5129  | 0  |     if (params->raw_pub.data == NULL) { | 
5130  | 0  |       params->raw_pub.data =  | 
5131  | 0  |         gnutls_malloc(params->raw_priv.size);  | 
5132  | 0  |     }  | 
5133  |  | 
  | 
5134  | 0  |     if (params->raw_pub.data == NULL)  | 
5135  | 0  |       return gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
5136  |  |  | 
5137  | 0  |     ret = eddsa_public_key(algo, params->raw_pub.data,  | 
5138  | 0  |                params->raw_priv.data);  | 
5139  | 0  |     if (ret < 0) { | 
5140  | 0  |       gnutls_free(params->raw_pub.data);  | 
5141  | 0  |       return ret;  | 
5142  | 0  |     }  | 
5143  |  |  | 
5144  | 0  |     params->raw_pub.size = params->raw_priv.size;  | 
5145  | 0  |   } else if (algo == GNUTLS_PK_ECDH_X25519 ||  | 
5146  | 0  |        algo == GNUTLS_PK_ECDH_X448) { | 
5147  | 0  |     if (unlikely(get_ecdh_curve(algo) != params->curve))  | 
5148  | 0  |       return gnutls_assert_val(  | 
5149  | 0  |         GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
5150  |  |  | 
5151  | 0  |     if (params->raw_priv.data == NULL)  | 
5152  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
5153  |  |  | 
5154  | 0  |     if (params->raw_pub.data == NULL) { | 
5155  | 0  |       params->raw_pub.data =  | 
5156  | 0  |         gnutls_malloc(params->raw_priv.size);  | 
5157  | 0  |     }  | 
5158  |  | 
  | 
5159  | 0  |     if (params->raw_pub.data == NULL)  | 
5160  | 0  |       return gnutls_assert_val(GNUTLS_E_MEMORY_ERROR);  | 
5161  |  |  | 
5162  | 0  |     ret = edwards_curve_mul_g(algo, params->raw_pub.data,  | 
5163  | 0  |             params->raw_priv.data);  | 
5164  | 0  |     if (ret < 0) { | 
5165  | 0  |       gnutls_free(params->raw_pub.data);  | 
5166  | 0  |       return ret;  | 
5167  | 0  |     }  | 
5168  |  |  | 
5169  | 0  |     params->raw_pub.size = params->raw_priv.size;  | 
5170  | 0  |   } else if (algo == GNUTLS_PK_RSA_PSS) { | 
5171  | 0  |     if (params->params_nr < RSA_PRIVATE_PARAMS - 3)  | 
5172  | 0  |       return gnutls_assert_val(GNUTLS_E_PK_INVALID_PRIVKEY);  | 
5173  |  |  | 
5174  | 0  |     if (params->spki.rsa_pss_dig != 0) { | 
5175  | 0  |       unsigned pub_size = nettle_mpz_sizeinbase_256_u(  | 
5176  | 0  |         TOMPZ(params->params[RSA_MODULUS]));  | 
5177  |  |       /* sanity check for private key */  | 
5178  | 0  |       CHECK_INVALID_RSA_PSS_PARAMS(  | 
5179  | 0  |         gnutls_hash_get_len(params->spki.rsa_pss_dig),  | 
5180  | 0  |         params->spki.salt_size, pub_size,  | 
5181  | 0  |         GNUTLS_E_PK_INVALID_PUBKEY_PARAMS);  | 
5182  | 0  |     }  | 
5183  | 0  |   }  | 
5184  | 0  | #ifdef ENABLE_DSA  | 
5185  | 0  |   else if (algo == GNUTLS_PK_DSA) { | 
5186  | 0  |     if (params->params[DSA_Y] == NULL) { | 
5187  | 0  |       ret = calc_dsa_pub(params);  | 
5188  | 0  |       if (ret < 0)  | 
5189  | 0  |         return gnutls_assert_val(ret);  | 
5190  | 0  |       params->params_nr++;  | 
5191  | 0  |     }  | 
5192  | 0  |   }  | 
5193  | 0  | #endif  | 
5194  | 0  | #if ENABLE_GOST  | 
5195  | 0  |   else if (algo == GNUTLS_PK_GOST_01 || algo == GNUTLS_PK_GOST_12_256 ||  | 
5196  | 0  |      algo == GNUTLS_PK_GOST_12_512) { | 
5197  | 0  |     struct ecc_point r;  | 
5198  | 0  |     struct ecc_scalar priv;  | 
5199  | 0  |     const struct ecc_curve *curve;  | 
5200  |  | 
  | 
5201  | 0  |     if (params->params_nr != GOST_PRIVATE_PARAMS)  | 
5202  | 0  |       return gnutls_assert_val(GNUTLS_E_INVALID_REQUEST);  | 
5203  |  |  | 
5204  | 0  |     curve = get_supported_gost_curve(params->curve);  | 
5205  | 0  |     if (curve == NULL)  | 
5206  | 0  |       return gnutls_assert_val(  | 
5207  | 0  |         GNUTLS_E_ECC_UNSUPPORTED_CURVE);  | 
5208  |  |  | 
5209  | 0  |     if (ecc_bit_size(curve) <  | 
5210  | 0  |         _gnutls_mpi_get_nbits(params->params[GOST_K]))  | 
5211  | 0  |       gostdsa_unmask_key(curve,  | 
5212  | 0  |              TOMPZ(params->params[GOST_K]));  | 
5213  |  | 
  | 
5214  | 0  |     ret = _gost_params_to_privkey(params, &priv, curve);  | 
5215  | 0  |     if (ret < 0) { | 
5216  | 0  |       return gnutls_assert_val(ret);  | 
5217  | 0  |     }  | 
5218  |  |  | 
5219  | 0  |     ecc_point_init(&r, curve);  | 
5220  | 0  |     gost_point_mul_g(&r, &priv);  | 
5221  |  | 
  | 
5222  | 0  |     ecc_point_get(&r, params->params[GOST_X],  | 
5223  | 0  |             params->params[GOST_Y]);  | 
5224  |  | 
  | 
5225  | 0  |     ecc_point_clear(&r);  | 
5226  | 0  |     ecc_scalar_clear(&priv);  | 
5227  | 0  |   }  | 
5228  | 0  | #endif  | 
5229  |  |  | 
5230  | 0  |   return 0;  | 
5231  | 0  | }  | 
5232  |  |  | 
5233  |  | int crypto_pk_prio = INT_MAX;  | 
5234  |  |  | 
5235  |  | gnutls_crypto_pk_st _gnutls_pk_ops = { | 
5236  |  |   .encrypt = _wrap_nettle_pk_encrypt,  | 
5237  |  |   .decrypt = _wrap_nettle_pk_decrypt,  | 
5238  |  |   .decrypt2 = _wrap_nettle_pk_decrypt2,  | 
5239  |  |   .sign = _wrap_nettle_pk_sign,  | 
5240  |  |   .verify = _wrap_nettle_pk_verify,  | 
5241  |  |   .verify_priv_params = wrap_nettle_pk_verify_priv_params,  | 
5242  |  |   .verify_pub_params = wrap_nettle_pk_verify_pub_params,  | 
5243  |  |   .generate_params = wrap_nettle_pk_generate_params,  | 
5244  |  |   .generate_keys = wrap_nettle_pk_generate_keys,  | 
5245  |  |   .pk_fixup_private_params = wrap_nettle_pk_fixup,  | 
5246  |  |   .derive = _wrap_nettle_pk_derive,  | 
5247  |  |   .encaps = _wrap_nettle_pk_encaps,  | 
5248  |  |   .decaps = _wrap_nettle_pk_decaps,  | 
5249  |  |   .curve_exists = _wrap_nettle_pk_curve_exists,  | 
5250  |  |   .pk_exists = _wrap_nettle_pk_exists,  | 
5251  |  |   .sign_exists = _wrap_nettle_pk_sign_exists  | 
5252  |  | };  |