Coverage Report

Created: 2026-07-23 06:28

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl35/crypto/slh_dsa/slh_dsa_key.c
Line
Count
Source
1
/*
2
 * Copyright 2024-2026 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License").  You may not use
5
 * this file except in compliance with the License.  You can obtain a copy
6
 * in the file LICENSE in the source distribution or at
7
 * https://www.openssl.org/source/license.html
8
 */
9
10
#include <string.h>
11
#include <openssl/err.h>
12
#include <openssl/core_dispatch.h>
13
#include <openssl/core_names.h>
14
#include <openssl/params.h>
15
#include <openssl/rand.h>
16
#include <openssl/proverr.h>
17
#include "slh_dsa_local.h"
18
#include "slh_dsa_key.h"
19
#include "internal/encoder.h"
20
21
static int slh_dsa_compute_pk_root(SLH_DSA_HASH_CTX *ctx, SLH_DSA_KEY *out, int verify);
22
23
static void slh_dsa_key_hash_cleanup(SLH_DSA_KEY *key)
24
142k
{
25
142k
    OPENSSL_free(key->propq);
26
142k
    if (key->md_big != key->md)
27
119k
        EVP_MD_free(key->md_big);
28
142k
    key->md_big = NULL;
29
142k
    EVP_MD_free(key->md);
30
142k
    EVP_MAC_free(key->hmac);
31
142k
    key->md = NULL;
32
142k
}
33
34
static int slh_dsa_key_hash_init(SLH_DSA_KEY *key)
35
142k
{
36
142k
    int is_shake = key->params->is_shake;
37
142k
    int security_category = key->params->security_category;
38
142k
    const char *digest_alg = is_shake ? "SHAKE-256" : "SHA2-256";
39
40
142k
    key->md = EVP_MD_fetch(key->libctx, digest_alg, key->propq);
41
142k
    if (key->md == NULL)
42
0
        return 0;
43
    /*
44
     * SHA2 algorithm(s) require SHA256 + HMAC_SHA(X) & MGF1(SHAX)
45
     * SHAKE algorithm(s) use SHAKE for all functions.
46
     */
47
142k
    if (is_shake == 0) {
48
71.6k
        if (security_category == 1) {
49
            /* For category 1 SHA2-256 is used for all hash operations */
50
23.2k
            key->md_big = key->md;
51
48.3k
        } else {
52
            /* Security categories 3 & 5 also need SHA-512 */
53
48.3k
            key->md_big = EVP_MD_fetch(key->libctx, "SHA2-512", key->propq);
54
48.3k
            if (key->md_big == NULL)
55
0
                goto err;
56
48.3k
        }
57
71.6k
        key->hmac = EVP_MAC_fetch(key->libctx, "HMAC", key->propq);
58
71.6k
        if (key->hmac == NULL)
59
0
            goto err;
60
71.6k
    }
61
142k
    key->adrs_func = ossl_slh_get_adrs_fn(is_shake == 0);
62
142k
    key->hash_func = ossl_slh_get_hash_fn(is_shake);
63
142k
    return 1;
64
0
err:
65
0
    return 0;
66
142k
}
67
68
static void slh_dsa_key_hash_dup(SLH_DSA_KEY *dst, const SLH_DSA_KEY *src)
69
11
{
70
11
    if (src->md_big != NULL && src->md_big != src->md)
71
4
        EVP_MD_up_ref(src->md_big);
72
11
    if (src->md != NULL)
73
11
        EVP_MD_up_ref(src->md);
74
11
    if (src->hmac != NULL)
75
6
        EVP_MAC_up_ref(src->hmac);
76
11
}
77
78
/**
79
 * @brief Return the libctx associated with a SLH_DSA_KEY object
80
 *
81
 * @param key A SLH_DSA_KEY to extract the libctx from.
82
 * @returns The new OSSL_LIB_CTX object on success, or NULL failure
83
 */
84
OSSL_LIB_CTX *ossl_slh_dsa_key_get0_libctx(const SLH_DSA_KEY *key)
85
0
{
86
0
    return key != NULL ? key->libctx : NULL;
87
0
}
88
89
/**
90
 * @brief Create a new SLH_DSA_KEY object
91
 *
92
 * @param libctx A OSSL_LIB_CTX object used for fetching algorithms.
93
 * @param propq The property query used for fetching algorithms
94
 * @param alg The algorithm name associated with the key type
95
 * @returns The new SLH_DSA_KEY object on success, or NULL on malloc failure
96
 */
97
SLH_DSA_KEY *ossl_slh_dsa_key_new(OSSL_LIB_CTX *libctx, const char *propq,
98
    const char *alg)
99
199k
{
100
199k
    SLH_DSA_KEY *ret;
101
199k
    const SLH_DSA_PARAMS *params = ossl_slh_dsa_params_get(alg);
102
103
199k
    if (params == NULL)
104
0
        return NULL;
105
106
199k
    ret = OPENSSL_zalloc(sizeof(*ret));
107
199k
    if (ret != NULL) {
108
199k
        ret->libctx = libctx;
109
199k
        ret->params = params;
110
199k
        if (propq != NULL) {
111
197k
            ret->propq = OPENSSL_strdup(propq);
112
197k
            if (ret->propq == NULL)
113
0
                goto err;
114
197k
        }
115
199k
        if (!slh_dsa_key_hash_init(ret))
116
0
            goto err;
117
199k
    }
118
199k
    return ret;
119
0
err:
120
0
    ossl_slh_dsa_key_free(ret);
121
0
    return NULL;
122
199k
}
123
124
/**
125
 * @brief Destroy a SLH_DSA_KEY object
126
 */
127
void ossl_slh_dsa_key_free(SLH_DSA_KEY *key)
128
1.25M
{
129
1.25M
    if (key == NULL)
130
1.05M
        return;
131
132
199k
    slh_dsa_key_hash_cleanup(key);
133
199k
    OPENSSL_cleanse(&key->priv, sizeof(key->priv) >> 1);
134
199k
    OPENSSL_free(key);
135
199k
}
136
137
/**
138
 * @brief Duplicate a key
139
 *
140
 * @param src A SLH_DSA_KEY object to copy
141
 * @param selection to select public and/or private components. Selecting the
142
 *                  private key will also select the public key
143
 * @returns The duplicated key, or NULL on failure.
144
 */
145
SLH_DSA_KEY *ossl_slh_dsa_key_dup(const SLH_DSA_KEY *src, int selection)
146
11
{
147
11
    SLH_DSA_KEY *ret = NULL;
148
149
11
    if (src == NULL)
150
0
        return NULL;
151
152
11
    ret = OPENSSL_zalloc(sizeof(*ret));
153
11
    if (ret != NULL) {
154
11
        *ret = *src; /* this copies everything including the keydata in priv[] */
155
11
        ret->propq = NULL;
156
11
        ret->pub = NULL;
157
11
        ret->has_priv = 0;
158
11
        slh_dsa_key_hash_dup(ret, src);
159
11
        if (src->propq != NULL) {
160
11
            ret->propq = OPENSSL_strdup(src->propq);
161
11
            if (ret->propq == NULL)
162
0
                goto err;
163
11
        }
164
11
        if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0) {
165
            /* The public components are present if the private key is present */
166
11
            if (src->pub != NULL)
167
11
                ret->pub = SLH_DSA_PUB(ret);
168
11
            if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0)
169
11
                ret->has_priv = src->has_priv;
170
11
        }
171
11
    }
172
11
    return ret;
173
0
err:
174
0
    ossl_slh_dsa_key_free(ret);
175
0
    return NULL;
176
11
}
177
178
/**
179
 * @brief Are 2 keys equal?
180
 *
181
 * To be equal the keys must have the same key data and algorithm name.
182
 *
183
 * @param key1 A SLH_DSA_KEY object
184
 * @param key2 A SLH_DSA_KEY object
185
 * @param selection to select public and/or private component comparison.
186
 * @returns 1 if the keys are equal otherwise it returns 0.
187
 */
188
int ossl_slh_dsa_key_equal(const SLH_DSA_KEY *key1, const SLH_DSA_KEY *key2,
189
    int selection)
190
406
{
191
406
    int key_checked = 0;
192
193
    /* The parameter sets must match - i.e. The same algorithm name */
194
406
    if (key1->params != key2->params)
195
0
        return 0;
196
197
406
    if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0) {
198
406
        if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0) {
199
406
            if (key1->pub != NULL && key2->pub != NULL) {
200
406
                if (memcmp(key1->pub, key2->pub, key1->params->pk_len) != 0)
201
77
                    return 0;
202
329
                key_checked = 1;
203
329
            }
204
406
        }
205
329
        if (!key_checked
206
0
            && (selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0) {
207
0
            if (key1->has_priv && key2->has_priv) {
208
0
                if (CRYPTO_memcmp(key1->priv, key2->priv,
209
0
                        key1->params->pk_len)
210
0
                    != 0)
211
0
                    return 0;
212
0
                key_checked = 1;
213
0
            }
214
0
        }
215
329
        return key_checked;
216
329
    }
217
0
    return 1;
218
406
}
219
220
int ossl_slh_dsa_key_has(const SLH_DSA_KEY *key, int selection)
221
1.02k
{
222
1.02k
    if ((selection & OSSL_KEYMGMT_SELECT_KEYPAIR) != 0) {
223
1.02k
        if (key->pub == NULL)
224
0
            return 0; /* No public key */
225
1.02k
        if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0
226
34
            && key->has_priv == 0)
227
0
            return 0; /* No private key */
228
1.02k
        return 1;
229
1.02k
    }
230
0
    return 0;
231
1.02k
}
232
233
int ossl_slh_dsa_key_pairwise_check(const SLH_DSA_KEY *key)
234
11
{
235
11
    int ret;
236
11
    SLH_DSA_HASH_CTX *ctx = NULL;
237
238
11
    if (key->pub == NULL || key->has_priv == 0)
239
0
        return 0;
240
241
11
    ctx = ossl_slh_dsa_hash_ctx_new(key);
242
11
    if (ctx == NULL)
243
0
        return 0;
244
11
    ret = slh_dsa_compute_pk_root(ctx, (SLH_DSA_KEY *)key, 1);
245
11
    ossl_slh_dsa_hash_ctx_free(ctx);
246
11
    return ret;
247
11
}
248
249
void ossl_slh_dsa_key_reset(SLH_DSA_KEY *key)
250
52
{
251
52
    key->pub = NULL;
252
52
    if (key->has_priv) {
253
32
        key->has_priv = 0;
254
32
        OPENSSL_cleanse(key->priv, sizeof(key->priv));
255
32
    }
256
52
}
257
258
/**
259
 * @brief Load a SLH_DSA key from raw data.
260
 *
261
 * @param key An SLH_DSA key to load into
262
 * @param params An array of parameters containing key data.
263
 * @param include_private Set to 1 to optionally include the private key data
264
 *                        if it exists.
265
 * @returns 1 on success, or 0 on failure.
266
 */
267
int ossl_slh_dsa_key_fromdata(SLH_DSA_KEY *key, const OSSL_PARAM params[],
268
    int include_private)
269
434
{
270
434
    size_t priv_len, key_len, data_len = 0;
271
434
    const OSSL_PARAM *param_priv = NULL, *param_pub = NULL;
272
434
    void *p;
273
274
434
    if (key == NULL)
275
0
        return 0;
276
277
    /* The private key consists of 4 elements SK_SEED, SK_PRF, PK_SEED and PK_ROOT */
278
434
    priv_len = ossl_slh_dsa_key_get_priv_len(key);
279
    /* The size of either SK_SEED + SK_PRF OR PK_SEED + PK_ROOT */
280
434
    key_len = priv_len >> 1;
281
282
    /* Private key is optional */
283
434
    if (include_private) {
284
434
        param_priv = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_PRIV_KEY);
285
434
        if (param_priv != NULL) {
286
434
            p = key->priv;
287
434
            if (!OSSL_PARAM_get_octet_string(param_priv, &p, priv_len, &data_len))
288
30
                return 0;
289
            /* If the data read includes all 4 elements then we are finished */
290
404
            if (data_len == priv_len) {
291
318
                key->has_priv = 1;
292
318
                key->pub = SLH_DSA_PUB(key);
293
318
                return 1;
294
318
            }
295
            /* Otherwise it must be just SK_SEED + SK_PRF */
296
86
            if (data_len != key_len)
297
20
                goto err;
298
66
            key->has_priv = 1;
299
66
        }
300
434
    }
301
    /*
302
     * In the case where the passed in private key does not contain the public key
303
     * there MUST be a separate public key, since the private key cannot exist
304
     * without the public key elements. NOTE that this does not accept half of
305
     * the public key, (Keygen must be used for this case currently).
306
     */
307
66
    p = SLH_DSA_PUB(key);
308
66
    param_pub = OSSL_PARAM_locate_const(params, OSSL_PKEY_PARAM_PUB_KEY);
309
66
    if (param_pub == NULL
310
66
        || !OSSL_PARAM_get_octet_string(param_pub, &p, key_len, &data_len)
311
43
        || data_len != key_len)
312
32
        goto err;
313
34
    key->pub = p;
314
34
    return 1;
315
52
err:
316
52
    ossl_slh_dsa_key_reset(key);
317
52
    return 0;
318
66
}
319
320
/**
321
 * Generate the public key root from private key (seed and prf) and public key seed.
322
 * See FIPS 205 Section 9.1 Algorithm 18
323
 *
324
 * @param ctx Contains SLH_DSA algorithm functions and constants.
325
 * @param out An SLH_DSA key containing the private key (seed and prf) and public key seed.
326
 *            The public root key is written to this key.
327
 * @param validate If set to 1 the computed public key is not written to the key,
328
 *                 but will be compared to the existing value.
329
 * @returns 1 if the root key is generated or compared successfully, or 0 on error.
330
 */
331
static int slh_dsa_compute_pk_root(SLH_DSA_HASH_CTX *ctx, SLH_DSA_KEY *out,
332
    int validate)
333
1.22k
{
334
1.22k
    const SLH_DSA_KEY *key = ctx->key;
335
1.22k
    SLH_ADRS_FUNC_DECLARE(key, adrsf);
336
1.22k
    SLH_ADRS_DECLARE(adrs);
337
1.22k
    const SLH_DSA_PARAMS *params = key->params;
338
1.22k
    size_t n = params->n;
339
1.22k
    uint8_t pk_root[SLH_DSA_MAX_N], *dst;
340
341
1.22k
    adrsf->zero(adrs);
342
1.22k
    adrsf->set_layer_address(adrs, params->d - 1);
343
344
1.22k
    dst = validate ? pk_root : SLH_DSA_PK_ROOT(out);
345
346
    /* Generate the ROOT public key */
347
1.22k
    return ossl_slh_xmss_node(ctx, SLH_DSA_SK_SEED(key), 0, params->hm,
348
1.22k
               SLH_DSA_PK_SEED(key), adrs, dst, n)
349
1.22k
        && (validate == 0 || memcmp(dst, SLH_DSA_PK_ROOT(out), n) == 0);
350
1.22k
}
351
352
/**
353
 * @brief Generate a SLH_DSA keypair. The private key seed and prf as well as the
354
 * public key seed are generated using an approved DRBG's. The public key root is
355
 * calculated using these generated values.
356
 * See FIPS 205 Section 10.1 Algorithm 21
357
 *
358
 * @param ctx Contains SLH_DSA algorithm functions and constants
359
 * @param out An SLH_DSA key to write key pair data to.
360
 * @param lib_ctx A library context for fetching RAND algorithms
361
 * @param entropy Optional entropy to use instead of using a DRBG.
362
 *        Required for ACVP testing. It may be NULL.
363
 * @param entropy_len the size of |entropy|. If set it must be at least 3 * |n|.
364
 * @returns 1 if the key is generated or 0 otherwise.
365
 */
366
int ossl_slh_dsa_generate_key(SLH_DSA_HASH_CTX *ctx, SLH_DSA_KEY *out,
367
    OSSL_LIB_CTX *lib_ctx,
368
    const uint8_t *entropy, size_t entropy_len)
369
1.02k
{
370
1.02k
    size_t n = out->params->n;
371
1.02k
    size_t secret_key_len = 2 * n; /* The length of SK_SEED + SK_PRF */
372
1.02k
    size_t pk_seed_len = n; /* The length of PK_SEED */
373
1.02k
    size_t entropy_len_expected = secret_key_len + pk_seed_len;
374
1.02k
    uint8_t *priv = SLH_DSA_PRIV(out);
375
1.02k
    uint8_t *pub = SLH_DSA_PUB(out);
376
377
1.02k
    if (entropy != NULL && entropy_len != 0) {
378
0
        if (entropy_len != entropy_len_expected)
379
0
            goto err;
380
0
        memcpy(priv, entropy, entropy_len_expected);
381
1.02k
    } else {
382
1.02k
        if (RAND_priv_bytes_ex(lib_ctx, priv, secret_key_len, 0) <= 0
383
1.02k
            || RAND_bytes_ex(lib_ctx, pub, pk_seed_len, 0) <= 0)
384
0
            goto err;
385
1.02k
    }
386
1.02k
    if (!slh_dsa_compute_pk_root(ctx, out, 0))
387
0
        goto err;
388
1.02k
    out->pub = pub;
389
1.02k
    out->has_priv = 1;
390
1.02k
    return 1;
391
0
err:
392
0
    out->pub = NULL;
393
0
    out->has_priv = 0;
394
0
    OPENSSL_cleanse(priv, secret_key_len);
395
0
    return 0;
396
1.02k
}
397
398
/**
399
 * @brief This is used when a SLH key is used for an operation.
400
 * This checks that the algorithm is the same (i.e. uses the same parameters)
401
 *
402
 * @param ctx Contains SLH_DSA algorithm functions and constants to be used for
403
 *            an operation.
404
 * @param key A SLH_DSA key to use for an operation.
405
 *
406
 * @returns 1 if the algorithm matches, or 0 otherwise.
407
 */
408
int ossl_slh_dsa_key_type_matches(const SLH_DSA_KEY *key, const char *alg)
409
1.39k
{
410
1.39k
    return (OPENSSL_strcasecmp(key->params->alg, alg) == 0);
411
1.39k
}
412
413
/* Returns the public key data or NULL if there is no public key */
414
const uint8_t *ossl_slh_dsa_key_get_pub(const SLH_DSA_KEY *key)
415
2.32k
{
416
2.32k
    return key->pub;
417
2.32k
}
418
419
/* Returns the constant 2 * |n| which is the size of PK_SEED + PK_ROOT */
420
size_t ossl_slh_dsa_key_get_pub_len(const SLH_DSA_KEY *key)
421
199k
{
422
199k
    return 2 * key->params->n;
423
199k
}
424
425
/* Returns the private key data or NULL if there is no private key */
426
const uint8_t *ossl_slh_dsa_key_get_priv(const SLH_DSA_KEY *key)
427
2.30k
{
428
2.30k
    return key->has_priv ? key->priv : NULL;
429
2.30k
}
430
431
/*
432
 * Returns the constant 4 * |n| which is the size of both
433
 * the private and public key components.
434
 * SK_SEED + SK_ROOT + PK_SEED + PK_ROOT
435
 */
436
size_t ossl_slh_dsa_key_get_priv_len(const SLH_DSA_KEY *key)
437
828
{
438
828
    return 4 * key->params->n;
439
828
}
440
441
size_t ossl_slh_dsa_key_get_n(const SLH_DSA_KEY *key)
442
2.19k
{
443
2.19k
    return key->params->n;
444
2.19k
}
445
446
size_t ossl_slh_dsa_key_get_sig_len(const SLH_DSA_KEY *key)
447
1.60k
{
448
1.60k
    return key->params->sig_len;
449
1.60k
}
450
const char *ossl_slh_dsa_key_get_name(const SLH_DSA_KEY *key)
451
2.42k
{
452
2.42k
    return key->params->alg;
453
2.42k
}
454
int ossl_slh_dsa_key_get_type(const SLH_DSA_KEY *key)
455
1.39k
{
456
1.39k
    return key->params->type;
457
1.39k
}
458
459
int ossl_slh_dsa_set_priv(SLH_DSA_KEY *key, const uint8_t *priv, size_t priv_len)
460
41
{
461
41
    if (ossl_slh_dsa_key_get_priv_len(key) != priv_len)
462
18
        return 0;
463
23
    memcpy(key->priv, priv, priv_len);
464
23
    key->has_priv = 1;
465
23
    key->pub = SLH_DSA_PUB(key);
466
23
    return 1;
467
41
}
468
469
int ossl_slh_dsa_set_pub(SLH_DSA_KEY *key, const uint8_t *pub, size_t pub_len)
470
9
{
471
9
    if (ossl_slh_dsa_key_get_pub_len(key) != pub_len)
472
9
        return 0;
473
0
    key->pub = SLH_DSA_PUB(key);
474
0
    memcpy(key->pub, pub, pub_len);
475
0
    key->has_priv = 0;
476
0
    return 1;
477
9
}
478
479
#ifndef FIPS_MODULE
480
int ossl_slh_dsa_key_to_text(BIO *out, const SLH_DSA_KEY *key, int selection)
481
45
{
482
45
    const char *name;
483
484
45
    if (out == NULL || key == NULL) {
485
0
        ERR_raise(ERR_LIB_PROV, ERR_R_PASSED_NULL_PARAMETER);
486
0
        return 0;
487
0
    }
488
45
    name = ossl_slh_dsa_key_get_name(key);
489
45
    if (ossl_slh_dsa_key_get_pub(key) == NULL) {
490
        /* Regardless of the |selection|, there must be a public key */
491
0
        ERR_raise_data(ERR_LIB_PROV, PROV_R_MISSING_KEY,
492
0
            "no %s key material available", name);
493
0
        return 0;
494
0
    }
495
496
45
    if ((selection & OSSL_KEYMGMT_SELECT_PRIVATE_KEY) != 0) {
497
23
        if (ossl_slh_dsa_key_get_priv(key) == NULL) {
498
0
            ERR_raise_data(ERR_LIB_PROV, PROV_R_MISSING_KEY,
499
0
                "no %s key material available", name);
500
0
            return 0;
501
0
        }
502
23
        if (BIO_printf(out, "%s Private-Key:\n", name) <= 0)
503
0
            return 0;
504
23
        if (!ossl_bio_print_labeled_buf(out, "priv:", ossl_slh_dsa_key_get_priv(key),
505
23
                ossl_slh_dsa_key_get_priv_len(key)))
506
0
            return 0;
507
23
    } else if ((selection & OSSL_KEYMGMT_SELECT_PUBLIC_KEY) != 0) {
508
11
        if (BIO_printf(out, "%s Public-Key:\n", name) <= 0)
509
0
            return 0;
510
11
    }
511
512
45
    if (!ossl_bio_print_labeled_buf(out, "pub:", ossl_slh_dsa_key_get_pub(key),
513
45
            ossl_slh_dsa_key_get_pub_len(key)))
514
0
        return 0;
515
516
45
    return 1;
517
45
}
518
#endif /* FIPS_MODULE */