Coverage Report

Created: 2025-08-24 06:20

/src/openssl/providers/implementations/kdfs/hkdf.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 2016-2024 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License").  You may not use
5
 * this file except in compliance with the License.  You can obtain a copy
6
 * in the file LICENSE in the source distribution or at
7
 * https://www.openssl.org/source/license.html
8
 */
9
10
11
/*
12
 * HMAC low level APIs are deprecated for public use, but still ok for internal
13
 * use.
14
 */
15
#include "internal/deprecated.h"
16
17
#include <stdlib.h>
18
#include <stdarg.h>
19
#include <string.h>
20
#include <openssl/hmac.h>
21
#include <openssl/evp.h>
22
#include <openssl/kdf.h>
23
#include <openssl/core_names.h>
24
#include <openssl/proverr.h>
25
#include "internal/cryptlib.h"
26
#include "internal/numbers.h"
27
#include "internal/packet.h"
28
#include "crypto/evp.h"
29
#include "prov/provider_ctx.h"
30
#include "prov/providercommon.h"
31
#include "prov/implementations.h"
32
#include "prov/provider_util.h"
33
#include "prov/securitycheck.h"
34
#include "internal/e_os.h"
35
#include "internal/params.h"
36
#include "internal/sizes.h"
37
38
#define HKDF_MAXBUF 2048
39
#define HKDF_MAXINFO (32*1024)
40
0
#define HKDF_MAX_INFOS    5
41
42
static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_new;
43
static OSSL_FUNC_kdf_dupctx_fn kdf_hkdf_dup;
44
static OSSL_FUNC_kdf_freectx_fn kdf_hkdf_free;
45
static OSSL_FUNC_kdf_reset_fn kdf_hkdf_reset;
46
static OSSL_FUNC_kdf_derive_fn kdf_hkdf_derive;
47
static OSSL_FUNC_kdf_settable_ctx_params_fn kdf_hkdf_settable_ctx_params;
48
static OSSL_FUNC_kdf_set_ctx_params_fn kdf_hkdf_set_ctx_params;
49
static OSSL_FUNC_kdf_gettable_ctx_params_fn hkdf_gettable_ctx_params;
50
static OSSL_FUNC_kdf_get_ctx_params_fn hkdf_common_get_ctx_params;
51
static OSSL_FUNC_kdf_derive_fn kdf_tls1_3_derive;
52
static OSSL_FUNC_kdf_settable_ctx_params_fn kdf_tls1_3_settable_ctx_params;
53
static OSSL_FUNC_kdf_set_ctx_params_fn kdf_tls1_3_set_ctx_params;
54
static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_sha256_new;
55
static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_sha384_new;
56
static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_sha512_new;
57
static OSSL_FUNC_kdf_settable_ctx_params_fn kdf_hkdf_fixed_digest_settable_ctx_params;
58
static OSSL_FUNC_kdf_set_ctx_params_fn kdf_hkdf_fixed_digest_set_ctx_params;
59
60
static void *kdf_hkdf_fixed_digest_new(void *provctx, const char *digest);
61
static void kdf_hkdf_reset_ex(void *vctx, int on_free);
62
63
static int HKDF(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md,
64
                const unsigned char *salt, size_t salt_len,
65
                const unsigned char *key, size_t key_len,
66
                const unsigned char *info, size_t info_len,
67
                unsigned char *okm, size_t okm_len);
68
static int HKDF_Extract(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md,
69
                        const unsigned char *salt, size_t salt_len,
70
                        const unsigned char *ikm, size_t ikm_len,
71
                        unsigned char *prk, size_t prk_len);
72
static int HKDF_Expand(const EVP_MD *evp_md,
73
                       const unsigned char *prk, size_t prk_len,
74
                       const unsigned char *info, size_t info_len,
75
                       unsigned char *okm, size_t okm_len);
76
77
typedef struct {
78
    void *provctx;
79
    int mode;
80
    PROV_DIGEST digest;
81
    unsigned char *salt;
82
    size_t salt_len;
83
    unsigned char *key;
84
    size_t key_len;
85
    unsigned char *prefix;
86
    size_t prefix_len;
87
    unsigned char *label;
88
    size_t label_len;
89
    unsigned char *data;
90
    size_t data_len;
91
    unsigned char *info;
92
    size_t info_len;
93
    int fixed_digest;
94
    OSSL_FIPS_IND_DECLARE
95
} KDF_HKDF;
96
97
static void *kdf_hkdf_new(void *provctx)
98
0
{
99
0
    KDF_HKDF *ctx;
100
101
0
    if (!ossl_prov_is_running())
102
0
        return NULL;
103
104
0
    if ((ctx = OPENSSL_zalloc(sizeof(*ctx))) != NULL) {
105
0
        ctx->provctx = provctx;
106
0
        OSSL_FIPS_IND_INIT(ctx)
107
0
    }
108
0
    return ctx;
109
0
}
110
111
static void kdf_hkdf_free(void *vctx)
112
0
{
113
0
    KDF_HKDF *ctx = (KDF_HKDF *)vctx;
114
115
0
    if (ctx != NULL) {
116
0
        kdf_hkdf_reset_ex(vctx, 1);
117
0
        OPENSSL_free(ctx);
118
0
    }
119
0
}
120
121
static void kdf_hkdf_reset(void *vctx)
122
0
{
123
0
    kdf_hkdf_reset_ex(vctx, 0);
124
0
}
125
126
static void kdf_hkdf_reset_ex(void *vctx, int on_free)
127
0
{
128
0
    KDF_HKDF *ctx = (KDF_HKDF *)vctx;
129
0
    void *provctx = ctx->provctx;
130
0
    int preserve_digest = on_free ? 0 : ctx->fixed_digest;
131
0
    PROV_DIGEST save_prov_digest = { 0 };
132
133
    /* For fixed digests just save and restore the PROV_DIGEST object */
134
0
    if (preserve_digest)
135
0
        save_prov_digest = ctx->digest;
136
0
    else
137
0
        ossl_prov_digest_reset(&ctx->digest);
138
#ifdef OPENSSL_PEDANTIC_ZEROIZATION
139
    OPENSSL_clear_free(ctx->salt, ctx->salt_len);
140
#else
141
0
    OPENSSL_free(ctx->salt);
142
0
#endif
143
0
    OPENSSL_free(ctx->prefix);
144
0
    OPENSSL_free(ctx->label);
145
0
    OPENSSL_clear_free(ctx->data, ctx->data_len);
146
0
    OPENSSL_clear_free(ctx->key, ctx->key_len);
147
0
    OPENSSL_clear_free(ctx->info, ctx->info_len);
148
0
    memset(ctx, 0, sizeof(*ctx));
149
0
    ctx->provctx = provctx;
150
0
    if (preserve_digest) {
151
0
        ctx->fixed_digest = preserve_digest;
152
0
        ctx->digest = save_prov_digest;
153
0
    }
154
0
}
155
156
static void *kdf_hkdf_dup(void *vctx)
157
0
{
158
0
    const KDF_HKDF *src = (const KDF_HKDF *)vctx;
159
0
    KDF_HKDF *dest;
160
161
0
    dest = kdf_hkdf_new(src->provctx);
162
0
    if (dest != NULL) {
163
0
        if (!ossl_prov_memdup(src->salt, src->salt_len, &dest->salt,
164
0
                              &dest->salt_len)
165
0
                || !ossl_prov_memdup(src->key, src->key_len,
166
0
                                     &dest->key , &dest->key_len)
167
0
                || !ossl_prov_memdup(src->prefix, src->prefix_len,
168
0
                                     &dest->prefix, &dest->prefix_len)
169
0
                || !ossl_prov_memdup(src->label, src->label_len,
170
0
                                     &dest->label, &dest->label_len)
171
0
                || !ossl_prov_memdup(src->data, src->data_len,
172
0
                                     &dest->data, &dest->data_len)
173
0
                || !ossl_prov_memdup(src->info, src->info_len,
174
0
                                     &dest->info, &dest->info_len)
175
0
                || !ossl_prov_digest_copy(&dest->digest, &src->digest))
176
0
            goto err;
177
0
        dest->mode = src->mode;
178
0
        dest->fixed_digest = src->fixed_digest;
179
0
        OSSL_FIPS_IND_COPY(dest, src)
180
0
    }
181
0
    return dest;
182
183
0
 err:
184
0
    kdf_hkdf_free(dest);
185
0
    return NULL;
186
0
}
187
188
static size_t kdf_hkdf_size(KDF_HKDF *ctx)
189
0
{
190
0
    int sz;
191
0
    const EVP_MD *md = ossl_prov_digest_md(&ctx->digest);
192
193
0
    if (ctx->mode != EVP_KDF_HKDF_MODE_EXTRACT_ONLY)
194
0
        return SIZE_MAX;
195
196
0
    if (md == NULL) {
197
0
        ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_MESSAGE_DIGEST);
198
0
        return 0;
199
0
    }
200
0
    sz = EVP_MD_get_size(md);
201
0
    if (sz <= 0)
202
0
        return 0;
203
204
0
    return sz;
205
0
}
206
207
#ifdef FIPS_MODULE
208
static int fips_hkdf_key_check_passed(KDF_HKDF *ctx)
209
{
210
    OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx);
211
    int key_approved = ossl_kdf_check_key_size(ctx->key_len);
212
213
    if (!key_approved) {
214
        if (!OSSL_FIPS_IND_ON_UNAPPROVED(ctx, OSSL_FIPS_IND_SETTABLE0,
215
                                         libctx, "HKDF", "Key size",
216
                                         ossl_fips_config_hkdf_key_check)) {
217
            ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH);
218
            return 0;
219
        }
220
    }
221
    return 1;
222
}
223
#endif
224
225
static int kdf_hkdf_derive(void *vctx, unsigned char *key, size_t keylen,
226
                           const OSSL_PARAM params[])
227
0
{
228
0
    KDF_HKDF *ctx = (KDF_HKDF *)vctx;
229
0
    OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx);
230
0
    const EVP_MD *md;
231
232
0
    if (!ossl_prov_is_running() || !kdf_hkdf_set_ctx_params(ctx, params))
233
0
        return 0;
234
235
0
    md = ossl_prov_digest_md(&ctx->digest);
236
0
    if (md == NULL) {
237
0
        ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_MESSAGE_DIGEST);
238
0
        return 0;
239
0
    }
240
0
    if (ctx->key == NULL) {
241
0
        ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_KEY);
242
0
        return 0;
243
0
    }
244
0
    if (keylen == 0) {
245
0
        ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH);
246
0
        return 0;
247
0
    }
248
249
0
    switch (ctx->mode) {
250
0
    case EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND:
251
0
    default:
252
0
        return HKDF(libctx, md, ctx->salt, ctx->salt_len,
253
0
                    ctx->key, ctx->key_len, ctx->info, ctx->info_len, key, keylen);
254
255
0
    case EVP_KDF_HKDF_MODE_EXTRACT_ONLY:
256
0
        return HKDF_Extract(libctx, md, ctx->salt, ctx->salt_len,
257
0
                            ctx->key, ctx->key_len, key, keylen);
258
259
0
    case EVP_KDF_HKDF_MODE_EXPAND_ONLY:
260
0
        return HKDF_Expand(md, ctx->key, ctx->key_len, ctx->info,
261
0
                           ctx->info_len, key, keylen);
262
0
    }
263
0
}
264
265
struct hkdf_all_set_ctx_params_st {
266
    OSSL_PARAM *mode;
267
    OSSL_PARAM *propq;
268
    OSSL_PARAM *engine;
269
    OSSL_PARAM *digest;
270
    OSSL_PARAM *key;
271
    OSSL_PARAM *salt;
272
#ifdef FIPS_MODULE
273
    OSSL_PARAM *ind_k;
274
    OSSL_PARAM *ind_d;
275
#endif
276
    OSSL_PARAM *prefix;
277
    OSSL_PARAM *label;
278
    OSSL_PARAM *data;
279
    OSSL_PARAM *info[HKDF_MAX_INFOS];
280
    int num_info;
281
};
282
283
static int hkdf_common_set_ctx_params
284
        (KDF_HKDF *ctx, struct hkdf_all_set_ctx_params_st *p)
285
0
{
286
0
    OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx);
287
0
    int n;
288
289
0
    if (p->digest != NULL) {
290
0
        const EVP_MD *md = NULL;
291
292
0
        if (!ossl_prov_digest_load(&ctx->digest, p->digest,
293
0
                                   p->propq, p->engine, libctx))
294
0
            return 0;
295
296
0
        md = ossl_prov_digest_md(&ctx->digest);
297
0
        if (EVP_MD_xof(md)) {
298
0
            ERR_raise(ERR_LIB_PROV, PROV_R_XOF_DIGESTS_NOT_ALLOWED);
299
0
            return 0;
300
0
        }
301
0
    }
302
303
0
    if (p->mode != NULL) {
304
0
        if (p->mode->data_type == OSSL_PARAM_UTF8_STRING) {
305
0
            if (OPENSSL_strcasecmp(p->mode->data, "EXTRACT_AND_EXPAND") == 0) {
306
0
                ctx->mode = EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND;
307
0
            } else if (OPENSSL_strcasecmp(p->mode->data, "EXTRACT_ONLY") == 0) {
308
0
                ctx->mode = EVP_KDF_HKDF_MODE_EXTRACT_ONLY;
309
0
            } else if (OPENSSL_strcasecmp(p->mode->data, "EXPAND_ONLY") == 0) {
310
0
                ctx->mode = EVP_KDF_HKDF_MODE_EXPAND_ONLY;
311
0
            } else {
312
0
                ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE);
313
0
                return 0;
314
0
            }
315
0
        } else if (OSSL_PARAM_get_int(p->mode, &n)) {
316
0
            if (n != EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND
317
0
                && n != EVP_KDF_HKDF_MODE_EXTRACT_ONLY
318
0
                && n != EVP_KDF_HKDF_MODE_EXPAND_ONLY) {
319
0
                ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE);
320
0
                return 0;
321
0
            }
322
0
            ctx->mode = n;
323
0
        } else {
324
0
            ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE);
325
0
            return 0;
326
0
        }
327
0
    }
328
329
0
    if (p->key != NULL) {
330
0
        OPENSSL_clear_free(ctx->key, ctx->key_len);
331
0
        ctx->key = NULL;
332
0
        if (!OSSL_PARAM_get_octet_string(p->key, (void **)&ctx->key, 0,
333
0
                                         &ctx->key_len))
334
0
            return 0;
335
0
    }
336
337
0
    if (p->salt != NULL) {
338
0
        OPENSSL_free(ctx->salt);
339
0
        ctx->salt = NULL;
340
0
        if (!OSSL_PARAM_get_octet_string(p->salt, (void **)&ctx->salt, 0,
341
0
                                         &ctx->salt_len))
342
0
            return 0;
343
0
    }
344
345
    /* Only relevant for HKDF not to the TLS 1.3 KDF */
346
0
    if (ossl_param_get1_concat_octet_string(p->num_info, p->info,
347
0
                                        &ctx->info, &ctx->info_len) == 0)
348
0
        return 0;
349
350
0
    return 1;
351
0
}
352
353
#define hkdf_set_ctx_params_st  hkdf_all_set_ctx_params_st
354
355
/* Machine generated by util/perl/OpenSSL/paramnames.pm */
356
#ifndef hkdf_set_ctx_params_list
357
static const OSSL_PARAM hkdf_set_ctx_params_list[] = {
358
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0),
359
    OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL),
360
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_PROPERTIES, NULL, 0),
361
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_DIGEST, NULL, 0),
362
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_KEY, NULL, 0),
363
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0),
364
# if defined(FIPS_MODULE)
365
    OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_KEY_CHECK, NULL),
366
# endif
367
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_INFO, NULL, 0),
368
    OSSL_PARAM_END
369
};
370
#endif
371
372
#ifndef hkdf_set_ctx_params_st
373
struct hkdf_set_ctx_params_st {
374
    OSSL_PARAM *digest;
375
    OSSL_PARAM *engine;
376
# if defined(FIPS_MODULE)
377
    OSSL_PARAM *ind_k;
378
# endif
379
    OSSL_PARAM *info[HKDF_MAX_INFOS];
380
    int num_info;
381
    OSSL_PARAM *key;
382
    OSSL_PARAM *mode;
383
    OSSL_PARAM *propq;
384
    OSSL_PARAM *salt;
385
};
386
#endif
387
388
#ifndef hkdf_set_ctx_params_decoder
389
static int hkdf_set_ctx_params_decoder
390
    (const OSSL_PARAM *p, struct hkdf_set_ctx_params_st *r)
391
0
{
392
0
    const char *s;
393
394
0
    memset(r, 0, sizeof(*r));
395
0
    if (p != NULL)
396
0
        for (; (s = p->key) != NULL; p++)
397
0
            switch(s[0]) {
398
0
            default:
399
0
                break;
400
0
            case 'd':
401
0
                if (ossl_likely(strcmp("igest", s + 1) == 0)) {
402
                    /* KDF_PARAM_DIGEST */
403
0
                    if (ossl_unlikely(r->digest != NULL)) {
404
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
405
0
                                       "param %s is repeated", s);
406
0
                        return 0;
407
0
                    }
408
0
                    r->digest = (OSSL_PARAM *)p;
409
0
                }
410
0
                break;
411
0
            case 'e':
412
0
                if (ossl_likely(strcmp("ngine", s + 1) == 0)) {
413
                    /* ALG_PARAM_ENGINE */
414
0
                    if (ossl_unlikely(r->engine != NULL)) {
415
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
416
0
                                       "param %s is repeated", s);
417
0
                        return 0;
418
0
                    }
419
0
                    r->engine = (OSSL_PARAM *)p;
420
0
                }
421
0
                break;
422
0
            case 'i':
423
0
                if (ossl_likely(strcmp("nfo", s + 1) == 0)) {
424
                    /* KDF_PARAM_INFO */
425
0
                    if (ossl_unlikely(r->num_info >= HKDF_MAX_INFOS)) {
426
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_TOO_MANY_RECORDS,
427
0
                                       "param %s present >%d times", s, HKDF_MAX_INFOS);
428
0
                        return 0;
429
0
                    }
430
0
                    r->info[r->num_info++] = (OSSL_PARAM *)p;
431
0
                }
432
0
                break;
433
0
            case 'k':
434
0
                switch(s[1]) {
435
0
                default:
436
0
                    break;
437
0
                case 'e':
438
0
                    switch(s[2]) {
439
0
                    default:
440
0
                        break;
441
0
                    case 'y':
442
0
                        switch(s[3]) {
443
0
                        default:
444
0
                            break;
445
0
                        case '-':
446
# if defined(FIPS_MODULE)
447
                            if (ossl_likely(strcmp("check", s + 4) == 0)) {
448
                                /* KDF_PARAM_FIPS_KEY_CHECK */
449
                                if (ossl_unlikely(r->ind_k != NULL)) {
450
                                    ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
451
                                                   "param %s is repeated", s);
452
                                    return 0;
453
                                }
454
                                r->ind_k = (OSSL_PARAM *)p;
455
                            }
456
# endif
457
0
                            break;
458
0
                        case '\0':
459
0
                            if (ossl_unlikely(r->key != NULL)) {
460
0
                                ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
461
0
                                               "param %s is repeated", s);
462
0
                                return 0;
463
0
                            }
464
0
                            r->key = (OSSL_PARAM *)p;
465
0
                        }
466
0
                    }
467
0
                }
468
0
                break;
469
0
            case 'm':
470
0
                if (ossl_likely(strcmp("ode", s + 1) == 0)) {
471
                    /* KDF_PARAM_MODE */
472
0
                    if (ossl_unlikely(r->mode != NULL)) {
473
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
474
0
                                       "param %s is repeated", s);
475
0
                        return 0;
476
0
                    }
477
0
                    r->mode = (OSSL_PARAM *)p;
478
0
                }
479
0
                break;
480
0
            case 'p':
481
0
                if (ossl_likely(strcmp("roperties", s + 1) == 0)) {
482
                    /* KDF_PARAM_PROPERTIES */
483
0
                    if (ossl_unlikely(r->propq != NULL)) {
484
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
485
0
                                       "param %s is repeated", s);
486
0
                        return 0;
487
0
                    }
488
0
                    r->propq = (OSSL_PARAM *)p;
489
0
                }
490
0
                break;
491
0
            case 's':
492
0
                if (ossl_likely(strcmp("alt", s + 1) == 0)) {
493
                    /* KDF_PARAM_SALT */
494
0
                    if (ossl_unlikely(r->salt != NULL)) {
495
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
496
0
                                       "param %s is repeated", s);
497
0
                        return 0;
498
0
                    }
499
0
                    r->salt = (OSSL_PARAM *)p;
500
0
                }
501
0
            }
502
0
    return 1;
503
0
}
504
#endif
505
/* End of machine generated */
506
507
static int kdf_hkdf_set_ctx_params(void *vctx, const OSSL_PARAM params[])
508
0
{
509
0
    struct hkdf_all_set_ctx_params_st p;
510
0
    KDF_HKDF *ctx = vctx;
511
512
0
    if (ctx == NULL || !hkdf_set_ctx_params_decoder(params, &p))
513
0
        return 0;
514
515
0
    if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE0, p.ind_k))
516
0
        return 0;
517
518
0
    if (!hkdf_common_set_ctx_params(ctx, &p))
519
0
        return 0;
520
521
#ifdef FIPS_MODULE
522
    if (p.key != NULL)
523
        if (!fips_hkdf_key_check_passed(ctx))
524
            return 0;
525
#endif
526
527
0
    return 1;
528
0
}
529
530
static const OSSL_PARAM *kdf_hkdf_settable_ctx_params(ossl_unused void *ctx,
531
                                                      ossl_unused void *provctx)
532
0
{
533
0
    return hkdf_set_ctx_params_list;
534
0
}
535
536
/* Machine generated by util/perl/OpenSSL/paramnames.pm */
537
#ifndef hkdf_get_ctx_params_list
538
static const OSSL_PARAM hkdf_get_ctx_params_list[] = {
539
    OSSL_PARAM_size_t(OSSL_KDF_PARAM_SIZE, NULL),
540
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_DIGEST, NULL, 0),
541
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0),
542
    OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL),
543
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0),
544
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_INFO, NULL, 0),
545
# if defined(FIPS_MODULE)
546
    OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_APPROVED_INDICATOR, NULL),
547
# endif
548
    OSSL_PARAM_END
549
};
550
#endif
551
552
#ifndef hkdf_get_ctx_params_st
553
struct hkdf_get_ctx_params_st {
554
    OSSL_PARAM *digest;
555
# if defined(FIPS_MODULE)
556
    OSSL_PARAM *ind;
557
# endif
558
    OSSL_PARAM *info;
559
    OSSL_PARAM *mode;
560
    OSSL_PARAM *salt;
561
    OSSL_PARAM *size;
562
};
563
#endif
564
565
#ifndef hkdf_get_ctx_params_decoder
566
static int hkdf_get_ctx_params_decoder
567
    (const OSSL_PARAM *p, struct hkdf_get_ctx_params_st *r)
568
0
{
569
0
    const char *s;
570
571
0
    memset(r, 0, sizeof(*r));
572
0
    if (p != NULL)
573
0
        for (; (s = p->key) != NULL; p++)
574
0
            switch(s[0]) {
575
0
            default:
576
0
                break;
577
0
            case 'd':
578
0
                if (ossl_likely(strcmp("igest", s + 1) == 0)) {
579
                    /* KDF_PARAM_DIGEST */
580
0
                    if (ossl_unlikely(r->digest != NULL)) {
581
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
582
0
                                       "param %s is repeated", s);
583
0
                        return 0;
584
0
                    }
585
0
                    r->digest = (OSSL_PARAM *)p;
586
0
                }
587
0
                break;
588
0
            case 'f':
589
# if defined(FIPS_MODULE)
590
                if (ossl_likely(strcmp("ips-indicator", s + 1) == 0)) {
591
                    /* KDF_PARAM_FIPS_APPROVED_INDICATOR */
592
                    if (ossl_unlikely(r->ind != NULL)) {
593
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
594
                                       "param %s is repeated", s);
595
                        return 0;
596
                    }
597
                    r->ind = (OSSL_PARAM *)p;
598
                }
599
# endif
600
0
                break;
601
0
            case 'i':
602
0
                if (ossl_likely(strcmp("nfo", s + 1) == 0)) {
603
                    /* KDF_PARAM_INFO */
604
0
                    if (ossl_unlikely(r->info != NULL)) {
605
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
606
0
                                       "param %s is repeated", s);
607
0
                        return 0;
608
0
                    }
609
0
                    r->info = (OSSL_PARAM *)p;
610
0
                }
611
0
                break;
612
0
            case 'm':
613
0
                if (ossl_likely(strcmp("ode", s + 1) == 0)) {
614
                    /* KDF_PARAM_MODE */
615
0
                    if (ossl_unlikely(r->mode != NULL)) {
616
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
617
0
                                       "param %s is repeated", s);
618
0
                        return 0;
619
0
                    }
620
0
                    r->mode = (OSSL_PARAM *)p;
621
0
                }
622
0
                break;
623
0
            case 's':
624
0
                switch(s[1]) {
625
0
                default:
626
0
                    break;
627
0
                case 'a':
628
0
                    if (ossl_likely(strcmp("lt", s + 2) == 0)) {
629
                        /* KDF_PARAM_SALT */
630
0
                        if (ossl_unlikely(r->salt != NULL)) {
631
0
                            ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
632
0
                                           "param %s is repeated", s);
633
0
                            return 0;
634
0
                        }
635
0
                        r->salt = (OSSL_PARAM *)p;
636
0
                    }
637
0
                    break;
638
0
                case 'i':
639
0
                    if (ossl_likely(strcmp("ze", s + 2) == 0)) {
640
                        /* KDF_PARAM_SIZE */
641
0
                        if (ossl_unlikely(r->size != NULL)) {
642
0
                            ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
643
0
                                           "param %s is repeated", s);
644
0
                            return 0;
645
0
                        }
646
0
                        r->size = (OSSL_PARAM *)p;
647
0
                    }
648
0
                }
649
0
            }
650
0
    return 1;
651
0
}
652
#endif
653
/* End of machine generated */
654
655
static const OSSL_PARAM *hkdf_gettable_ctx_params(ossl_unused void *ctx,
656
                                                  ossl_unused void *provctx)
657
0
{
658
0
    return hkdf_get_ctx_params_list;
659
0
}
660
661
static int hkdf_common_get_ctx_params(void *vctx, OSSL_PARAM params[])
662
0
{
663
0
    KDF_HKDF *ctx = (KDF_HKDF *)vctx;
664
0
    struct hkdf_get_ctx_params_st p;
665
666
0
    if (ctx == NULL || !hkdf_get_ctx_params_decoder(params, &p))
667
0
        return 0;
668
669
0
    if (p.size != NULL) {
670
0
        size_t sz = kdf_hkdf_size(ctx);
671
672
0
        if (sz == 0)
673
0
            return 0;
674
0
        if (!OSSL_PARAM_set_size_t(p.size, sz))
675
0
            return 0;
676
0
    }
677
678
0
    if (p.digest != NULL) {
679
0
        const EVP_MD *md = ossl_prov_digest_md(&ctx->digest);
680
681
0
        if (md == NULL)
682
0
            return 0;
683
0
        else if (!OSSL_PARAM_set_utf8_string(p.digest, EVP_MD_get0_name(md)))
684
0
            return 0;
685
0
    }
686
687
    /* OSSL_KDF_PARAM_MODE has multiple parameter types, so look for all instances */
688
0
    if (p.mode != NULL) {
689
0
        if (p.mode->data_type == OSSL_PARAM_UTF8_STRING) {
690
0
            switch (ctx->mode) {
691
0
            case EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND:
692
0
                if (!OSSL_PARAM_set_utf8_string(p.mode, "EXTRACT_AND_EXPAND"))
693
0
                    return 0;
694
0
                break;
695
0
            case EVP_KDF_HKDF_MODE_EXTRACT_ONLY:
696
0
                if (!OSSL_PARAM_set_utf8_string(p.mode, "EXTRACT_ONLY"))
697
0
                    return 0;
698
0
                break;
699
0
            case EVP_KDF_HKDF_MODE_EXPAND_ONLY:
700
0
                if (!OSSL_PARAM_set_utf8_string(p.mode, "EXPAND_ONLY"))
701
0
                    return 0;
702
0
                break;
703
0
            default:
704
0
                return 0;
705
0
            }
706
0
        } else {
707
0
            if (!OSSL_PARAM_set_int(p.mode, ctx->mode))
708
0
                return 0;
709
0
        }
710
0
    }
711
712
0
    if (p.salt != NULL) {
713
0
        if (ctx->salt == NULL || ctx->salt_len == 0)
714
0
            p.salt->return_size = 0;
715
0
        else if (!OSSL_PARAM_set_octet_string(p.salt, ctx->salt, ctx->salt_len))
716
0
            return 0;
717
0
    }
718
719
0
    if (p.info != NULL) {
720
0
        if (ctx->info == NULL || ctx->info_len == 0)
721
0
            p.info->return_size = 0;
722
0
        else if (!OSSL_PARAM_set_octet_string(p.info, ctx->info, ctx->info_len))
723
0
            return 0;
724
0
    }
725
726
0
    if (!OSSL_FIPS_IND_GET_CTX_FROM_PARAM(ctx, p.ind))
727
0
        return 0;
728
729
0
    return 1;
730
0
}
731
732
const OSSL_DISPATCH ossl_kdf_hkdf_functions[] = {
733
    { OSSL_FUNC_KDF_NEWCTX, (void(*)(void))kdf_hkdf_new },
734
    { OSSL_FUNC_KDF_DUPCTX, (void(*)(void))kdf_hkdf_dup },
735
    { OSSL_FUNC_KDF_FREECTX, (void(*)(void))kdf_hkdf_free },
736
    { OSSL_FUNC_KDF_RESET, (void(*)(void))kdf_hkdf_reset },
737
    { OSSL_FUNC_KDF_DERIVE, (void(*)(void))kdf_hkdf_derive },
738
    { OSSL_FUNC_KDF_SETTABLE_CTX_PARAMS,
739
      (void(*)(void))kdf_hkdf_settable_ctx_params },
740
    { OSSL_FUNC_KDF_SET_CTX_PARAMS, (void(*)(void))kdf_hkdf_set_ctx_params },
741
    { OSSL_FUNC_KDF_GETTABLE_CTX_PARAMS,
742
      (void(*)(void))hkdf_gettable_ctx_params },
743
    { OSSL_FUNC_KDF_GET_CTX_PARAMS, (void(*)(void))hkdf_common_get_ctx_params },
744
    OSSL_DISPATCH_END
745
};
746
747
static void *kdf_hkdf_fixed_digest_new(void *provctx, const char *digest)
748
0
{
749
0
    OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx);
750
0
    KDF_HKDF *ctx;
751
0
    OSSL_PARAM params[2];
752
753
0
    ctx = kdf_hkdf_new(provctx);
754
0
    if (ctx == NULL)
755
0
        return NULL;
756
757
0
    params[0] = OSSL_PARAM_construct_utf8_string(OSSL_ALG_PARAM_DIGEST,
758
0
                                                 (char *)digest, 0);
759
0
    params[1] = OSSL_PARAM_construct_end();
760
0
    if (!ossl_prov_digest_load_from_params(&ctx->digest, params, libctx)) {
761
0
        kdf_hkdf_free(ctx);
762
0
        return NULL;
763
0
    }
764
765
    /* Now the digest can no longer be changed */
766
0
    ctx->fixed_digest = 1;
767
768
0
    return ctx;
769
0
}
770
771
#define hkdf_fixed_digest_set_ctx_params_st  hkdf_all_set_ctx_params_st
772
773
/* Machine generated by util/perl/OpenSSL/paramnames.pm */
774
#ifndef hkdf_fixed_digest_set_ctx_params_list
775
static const OSSL_PARAM hkdf_fixed_digest_set_ctx_params_list[] = {
776
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0),
777
    OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL),
778
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_KEY, NULL, 0),
779
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0),
780
# if defined(FIPS_MODULE)
781
    OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_KEY_CHECK, NULL),
782
# endif
783
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_INFO, NULL, 0),
784
    OSSL_PARAM_END
785
};
786
#endif
787
788
#ifndef hkdf_fixed_digest_set_ctx_params_st
789
struct hkdf_fixed_digest_set_ctx_params_st {
790
    OSSL_PARAM *digest;
791
# if defined(FIPS_MODULE)
792
    OSSL_PARAM *ind_k;
793
# endif
794
    OSSL_PARAM *info[HKDF_MAX_INFOS];
795
    int num_info;
796
    OSSL_PARAM *key;
797
    OSSL_PARAM *mode;
798
    OSSL_PARAM *salt;
799
};
800
#endif
801
802
#ifndef hkdf_fixed_digest_set_ctx_params_decoder
803
static int hkdf_fixed_digest_set_ctx_params_decoder
804
    (const OSSL_PARAM *p, struct hkdf_fixed_digest_set_ctx_params_st *r)
805
0
{
806
0
    const char *s;
807
808
0
    memset(r, 0, sizeof(*r));
809
0
    if (p != NULL)
810
0
        for (; (s = p->key) != NULL; p++)
811
0
            switch(s[0]) {
812
0
            default:
813
0
                break;
814
0
            case 'd':
815
0
                if (ossl_likely(strcmp("igest", s + 1) == 0)) {
816
                    /* KDF_PARAM_DIGEST */
817
0
                    if (ossl_unlikely(r->digest != NULL)) {
818
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
819
0
                                       "param %s is repeated", s);
820
0
                        return 0;
821
0
                    }
822
0
                    r->digest = (OSSL_PARAM *)p;
823
0
                }
824
0
                break;
825
0
            case 'i':
826
0
                if (ossl_likely(strcmp("nfo", s + 1) == 0)) {
827
                    /* KDF_PARAM_INFO */
828
0
                    if (ossl_unlikely(r->num_info >= HKDF_MAX_INFOS)) {
829
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_TOO_MANY_RECORDS,
830
0
                                       "param %s present >%d times", s, HKDF_MAX_INFOS);
831
0
                        return 0;
832
0
                    }
833
0
                    r->info[r->num_info++] = (OSSL_PARAM *)p;
834
0
                }
835
0
                break;
836
0
            case 'k':
837
0
                switch(s[1]) {
838
0
                default:
839
0
                    break;
840
0
                case 'e':
841
0
                    switch(s[2]) {
842
0
                    default:
843
0
                        break;
844
0
                    case 'y':
845
0
                        switch(s[3]) {
846
0
                        default:
847
0
                            break;
848
0
                        case '-':
849
# if defined(FIPS_MODULE)
850
                            if (ossl_likely(strcmp("check", s + 4) == 0)) {
851
                                /* KDF_PARAM_FIPS_KEY_CHECK */
852
                                if (ossl_unlikely(r->ind_k != NULL)) {
853
                                    ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
854
                                                   "param %s is repeated", s);
855
                                    return 0;
856
                                }
857
                                r->ind_k = (OSSL_PARAM *)p;
858
                            }
859
# endif
860
0
                            break;
861
0
                        case '\0':
862
0
                            if (ossl_unlikely(r->key != NULL)) {
863
0
                                ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
864
0
                                               "param %s is repeated", s);
865
0
                                return 0;
866
0
                            }
867
0
                            r->key = (OSSL_PARAM *)p;
868
0
                        }
869
0
                    }
870
0
                }
871
0
                break;
872
0
            case 'm':
873
0
                if (ossl_likely(strcmp("ode", s + 1) == 0)) {
874
                    /* KDF_PARAM_MODE */
875
0
                    if (ossl_unlikely(r->mode != NULL)) {
876
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
877
0
                                       "param %s is repeated", s);
878
0
                        return 0;
879
0
                    }
880
0
                    r->mode = (OSSL_PARAM *)p;
881
0
                }
882
0
                break;
883
0
            case 's':
884
0
                if (ossl_likely(strcmp("alt", s + 1) == 0)) {
885
                    /* KDF_PARAM_SALT */
886
0
                    if (ossl_unlikely(r->salt != NULL)) {
887
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
888
0
                                       "param %s is repeated", s);
889
0
                        return 0;
890
0
                    }
891
0
                    r->salt = (OSSL_PARAM *)p;
892
0
                }
893
0
            }
894
0
    return 1;
895
0
}
896
#endif
897
/* End of machine generated */
898
899
static int kdf_hkdf_fixed_digest_set_ctx_params(void *vctx, const OSSL_PARAM params[])
900
0
{
901
0
    struct hkdf_all_set_ctx_params_st p;
902
0
    KDF_HKDF *ctx = vctx;
903
904
0
    if (ctx == NULL || !hkdf_fixed_digest_set_ctx_params_decoder(params, &p))
905
0
        return 0;
906
907
0
    if (p.digest != NULL) {
908
0
        ERR_raise_data(ERR_LIB_PROV, PROV_R_DIGEST_NOT_ALLOWED,
909
0
                       "Setting the digest is not supported for fixed-digest HKDFs");
910
0
        return 0;
911
0
    }
912
913
0
    if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE0, p.ind_k))
914
0
        return 0;
915
916
0
    if (!hkdf_common_set_ctx_params(ctx, &p))
917
0
        return 0;
918
919
#ifdef FIPS_MODULE
920
    if (p.key != NULL)
921
        if (!fips_hkdf_key_check_passed(ctx))
922
            return 0;
923
#endif
924
925
0
    return 1;
926
0
}
927
928
static const OSSL_PARAM *kdf_hkdf_fixed_digest_settable_ctx_params
929
        (ossl_unused void *ctx, ossl_unused void *provctx)
930
0
{
931
0
    return hkdf_fixed_digest_set_ctx_params_list;
932
0
}
933
934
935
#define KDF_HKDF_FIXED_DIGEST_NEW(hashname, hashstring) \
936
    static void *kdf_hkdf_##hashname##_new(void *provctx) \
937
0
    { \
938
0
        return kdf_hkdf_fixed_digest_new(provctx, hashstring); \
939
0
    }
Unexecuted instantiation: hkdf.c:kdf_hkdf_sha256_new
Unexecuted instantiation: hkdf.c:kdf_hkdf_sha384_new
Unexecuted instantiation: hkdf.c:kdf_hkdf_sha512_new
940
941
KDF_HKDF_FIXED_DIGEST_NEW(sha256, "SHA256")
942
KDF_HKDF_FIXED_DIGEST_NEW(sha384, "SHA384")
943
KDF_HKDF_FIXED_DIGEST_NEW(sha512, "SHA512")
944
945
#define MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(hashname) \
946
    const OSSL_DISPATCH ossl_kdf_hkdf_##hashname##_functions[] = { \
947
        { OSSL_FUNC_KDF_NEWCTX, (void(*)(void))kdf_hkdf_##hashname##_new }, \
948
        { OSSL_FUNC_KDF_DUPCTX, (void(*)(void))kdf_hkdf_dup }, \
949
        { OSSL_FUNC_KDF_FREECTX, (void(*)(void))kdf_hkdf_free }, \
950
        { OSSL_FUNC_KDF_RESET, (void(*)(void))kdf_hkdf_reset }, \
951
        { OSSL_FUNC_KDF_DERIVE, (void(*)(void))kdf_hkdf_derive }, \
952
        { OSSL_FUNC_KDF_SETTABLE_CTX_PARAMS, (void(*)(void))kdf_hkdf_fixed_digest_settable_ctx_params }, \
953
        { OSSL_FUNC_KDF_SET_CTX_PARAMS, (void(*)(void))kdf_hkdf_fixed_digest_set_ctx_params }, \
954
        { OSSL_FUNC_KDF_GETTABLE_CTX_PARAMS, (void(*)(void))hkdf_gettable_ctx_params }, \
955
        { OSSL_FUNC_KDF_GET_CTX_PARAMS, (void(*)(void))hkdf_common_get_ctx_params }, \
956
        OSSL_DISPATCH_END \
957
    };
958
959
MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(sha256)
960
MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(sha384)
961
MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(sha512)
962
963
/*
964
 * Refer to "HMAC-based Extract-and-Expand Key Derivation Function (HKDF)"
965
 * Section 2 (https://tools.ietf.org/html/rfc5869#section-2) and
966
 * "Cryptographic Extraction and Key Derivation: The HKDF Scheme"
967
 * Section 4.2 (https://eprint.iacr.org/2010/264.pdf).
968
 *
969
 * From the paper:
970
 *   The scheme HKDF is specified as:
971
 *     HKDF(XTS, SKM, CTXinfo, L) = K(1) | K(2) | ... | K(t)
972
 *
973
 *     where:
974
 *       SKM is source key material
975
 *       XTS is extractor salt (which may be null or constant)
976
 *       CTXinfo is context information (may be null)
977
 *       L is the number of key bits to be produced by KDF
978
 *       k is the output length in bits of the hash function used with HMAC
979
 *       t = ceil(L/k)
980
 *       the value K(t) is truncated to its first d = L mod k bits.
981
 *
982
 * From RFC 5869:
983
 *   2.2.  Step 1: Extract
984
 *     HKDF-Extract(salt, IKM) -> PRK
985
 *   2.3.  Step 2: Expand
986
 *     HKDF-Expand(PRK, info, L) -> OKM
987
 */
988
static int HKDF(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md,
989
                const unsigned char *salt, size_t salt_len,
990
                const unsigned char *ikm, size_t ikm_len,
991
                const unsigned char *info, size_t info_len,
992
                unsigned char *okm, size_t okm_len)
993
0
{
994
0
    unsigned char prk[EVP_MAX_MD_SIZE];
995
0
    int ret, sz;
996
0
    size_t prk_len;
997
998
0
    sz = EVP_MD_get_size(evp_md);
999
0
    if (sz <= 0)
1000
0
        return 0;
1001
0
    prk_len = (size_t)sz;
1002
1003
    /* Step 1: HKDF-Extract(salt, IKM) -> PRK */
1004
0
    if (!HKDF_Extract(libctx, evp_md,
1005
0
                      salt, salt_len, ikm, ikm_len, prk, prk_len))
1006
0
        return 0;
1007
1008
    /* Step 2: HKDF-Expand(PRK, info, L) -> OKM */
1009
0
    ret = HKDF_Expand(evp_md, prk, prk_len, info, info_len, okm, okm_len);
1010
0
    OPENSSL_cleanse(prk, sizeof(prk));
1011
1012
0
    return ret;
1013
0
}
1014
1015
/*
1016
 * Refer to "HMAC-based Extract-and-Expand Key Derivation Function (HKDF)"
1017
 * Section 2.2 (https://tools.ietf.org/html/rfc5869#section-2.2).
1018
 *
1019
 * 2.2.  Step 1: Extract
1020
 *
1021
 *   HKDF-Extract(salt, IKM) -> PRK
1022
 *
1023
 *   Options:
1024
 *      Hash     a hash function; HashLen denotes the length of the
1025
 *               hash function output in octets
1026
 *
1027
 *   Inputs:
1028
 *      salt     optional salt value (a non-secret random value);
1029
 *               if not provided, it is set to a string of HashLen zeros.
1030
 *      IKM      input keying material
1031
 *
1032
 *   Output:
1033
 *      PRK      a pseudorandom key (of HashLen octets)
1034
 *
1035
 *   The output PRK is calculated as follows:
1036
 *
1037
 *   PRK = HMAC-Hash(salt, IKM)
1038
 */
1039
static int HKDF_Extract(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md,
1040
                        const unsigned char *salt, size_t salt_len,
1041
                        const unsigned char *ikm, size_t ikm_len,
1042
                        unsigned char *prk, size_t prk_len)
1043
0
{
1044
0
    int sz = EVP_MD_get_size(evp_md);
1045
1046
0
    if (sz <= 0)
1047
0
        return 0;
1048
0
    if (prk_len != (size_t)sz) {
1049
0
        ERR_raise(ERR_LIB_PROV, PROV_R_WRONG_OUTPUT_BUFFER_SIZE);
1050
0
        return 0;
1051
0
    }
1052
    /* calc: PRK = HMAC-Hash(salt, IKM) */
1053
0
    return
1054
0
        EVP_Q_mac(libctx, "HMAC", NULL, EVP_MD_get0_name(evp_md), NULL, salt,
1055
0
                  salt_len, ikm, ikm_len, prk, EVP_MD_get_size(evp_md), NULL)
1056
0
        != NULL;
1057
0
}
1058
1059
/*
1060
 * Refer to "HMAC-based Extract-and-Expand Key Derivation Function (HKDF)"
1061
 * Section 2.3 (https://tools.ietf.org/html/rfc5869#section-2.3).
1062
 *
1063
 * 2.3.  Step 2: Expand
1064
 *
1065
 *   HKDF-Expand(PRK, info, L) -> OKM
1066
 *
1067
 *   Options:
1068
 *      Hash     a hash function; HashLen denotes the length of the
1069
 *               hash function output in octets
1070
 *
1071
 *   Inputs:
1072
 *      PRK      a pseudorandom key of at least HashLen octets
1073
 *               (usually, the output from the extract step)
1074
 *      info     optional context and application specific information
1075
 *               (can be a zero-length string)
1076
 *      L        length of output keying material in octets
1077
 *               (<= 255*HashLen)
1078
 *
1079
 *   Output:
1080
 *      OKM      output keying material (of L octets)
1081
 *
1082
 *   The output OKM is calculated as follows:
1083
 *
1084
 *   N = ceil(L/HashLen)
1085
 *   T = T(1) | T(2) | T(3) | ... | T(N)
1086
 *   OKM = first L octets of T
1087
 *
1088
 *   where:
1089
 *   T(0) = empty string (zero length)
1090
 *   T(1) = HMAC-Hash(PRK, T(0) | info | 0x01)
1091
 *   T(2) = HMAC-Hash(PRK, T(1) | info | 0x02)
1092
 *   T(3) = HMAC-Hash(PRK, T(2) | info | 0x03)
1093
 *   ...
1094
 *
1095
 *   (where the constant concatenated to the end of each T(n) is a
1096
 *   single octet.)
1097
 */
1098
static int HKDF_Expand(const EVP_MD *evp_md,
1099
                       const unsigned char *prk, size_t prk_len,
1100
                       const unsigned char *info, size_t info_len,
1101
                       unsigned char *okm, size_t okm_len)
1102
0
{
1103
0
    HMAC_CTX *hmac;
1104
0
    int ret = 0, sz;
1105
0
    unsigned int i;
1106
0
    unsigned char prev[EVP_MAX_MD_SIZE];
1107
0
    size_t done_len = 0, dig_len, n;
1108
1109
0
    sz = EVP_MD_get_size(evp_md);
1110
0
    if (sz <= 0)
1111
0
        return 0;
1112
0
    dig_len = (size_t)sz;
1113
1114
    /* calc: N = ceil(L/HashLen) */
1115
0
    n = okm_len / dig_len;
1116
0
    if (okm_len % dig_len)
1117
0
        n++;
1118
1119
0
    if (n > 255 || okm == NULL)
1120
0
        return 0;
1121
1122
0
    if ((hmac = HMAC_CTX_new()) == NULL)
1123
0
        return 0;
1124
1125
0
    if (!HMAC_Init_ex(hmac, prk, (int)prk_len, evp_md, NULL))
1126
0
        goto err;
1127
1128
0
    for (i = 1; i <= n; i++) {
1129
0
        size_t copy_len;
1130
0
        const unsigned char ctr = i;
1131
1132
        /* calc: T(i) = HMAC-Hash(PRK, T(i - 1) | info | i) */
1133
0
        if (i > 1) {
1134
0
            if (!HMAC_Init_ex(hmac, NULL, 0, NULL, NULL))
1135
0
                goto err;
1136
1137
0
            if (!HMAC_Update(hmac, prev, dig_len))
1138
0
                goto err;
1139
0
        }
1140
1141
0
        if (!HMAC_Update(hmac, info, info_len))
1142
0
            goto err;
1143
1144
0
        if (!HMAC_Update(hmac, &ctr, 1))
1145
0
            goto err;
1146
1147
0
        if (!HMAC_Final(hmac, prev, NULL))
1148
0
            goto err;
1149
1150
0
        copy_len = (dig_len > okm_len - done_len) ?
1151
0
                       okm_len - done_len :
1152
0
                       dig_len;
1153
1154
0
        memcpy(okm + done_len, prev, copy_len);
1155
1156
0
        done_len += copy_len;
1157
0
    }
1158
0
    ret = 1;
1159
1160
0
 err:
1161
0
    OPENSSL_cleanse(prev, sizeof(prev));
1162
0
    HMAC_CTX_free(hmac);
1163
0
    return ret;
1164
0
}
1165
1166
/*
1167
 * TLS uses slight variations of the above and for FIPS validation purposes,
1168
 * they need to be present here.
1169
 * Refer to RFC 8446 section 7 for specific details.
1170
 */
1171
1172
/*
1173
 * Given a |secret|; a |label| of length |labellen|; and |data| of length
1174
 * |datalen| (e.g. typically a hash of the handshake messages), derive a new
1175
 * secret |outlen| bytes long and store it in the location pointed to be |out|.
1176
 * The |data| value may be zero length. Returns 1 on success and 0 on failure.
1177
 */
1178
static int prov_tls13_hkdf_expand(const EVP_MD *md,
1179
                                  const unsigned char *key, size_t keylen,
1180
                                  const unsigned char *prefix, size_t prefixlen,
1181
                                  const unsigned char *label, size_t labellen,
1182
                                  const unsigned char *data, size_t datalen,
1183
                                  unsigned char *out, size_t outlen)
1184
0
{
1185
0
    size_t hkdflabellen;
1186
0
    unsigned char hkdflabel[HKDF_MAXBUF];
1187
0
    WPACKET pkt;
1188
1189
    /*
1190
     * 2 bytes for length of derived secret + 1 byte for length of combined
1191
     * prefix and label + bytes for the label itself + 1 byte length of hash
1192
     * + bytes for the hash itself.  We've got the maximum the KDF can handle
1193
     * which should always be sufficient.
1194
     */
1195
0
    if (!WPACKET_init_static_len(&pkt, hkdflabel, sizeof(hkdflabel), 0)
1196
0
            || !WPACKET_put_bytes_u16(&pkt, outlen)
1197
0
            || !WPACKET_start_sub_packet_u8(&pkt)
1198
0
            || !WPACKET_memcpy(&pkt, prefix, prefixlen)
1199
0
            || !WPACKET_memcpy(&pkt, label, labellen)
1200
0
            || !WPACKET_close(&pkt)
1201
0
            || !WPACKET_sub_memcpy_u8(&pkt, data, (data == NULL) ? 0 : datalen)
1202
0
            || !WPACKET_get_total_written(&pkt, &hkdflabellen)
1203
0
            || !WPACKET_finish(&pkt)) {
1204
0
        WPACKET_cleanup(&pkt);
1205
0
        return 0;
1206
0
    }
1207
1208
0
    return HKDF_Expand(md, key, keylen, hkdflabel, hkdflabellen,
1209
0
                       out, outlen);
1210
0
}
1211
1212
static int prov_tls13_hkdf_generate_secret(OSSL_LIB_CTX *libctx,
1213
                                           const EVP_MD *md,
1214
                                           const unsigned char *prevsecret,
1215
                                           size_t prevsecretlen,
1216
                                           const unsigned char *insecret,
1217
                                           size_t insecretlen,
1218
                                           const unsigned char *prefix,
1219
                                           size_t prefixlen,
1220
                                           const unsigned char *label,
1221
                                           size_t labellen,
1222
                                           unsigned char *out, size_t outlen)
1223
0
{
1224
0
    size_t mdlen;
1225
0
    int ret;
1226
0
    unsigned char preextractsec[EVP_MAX_MD_SIZE];
1227
    /* Always filled with zeros */
1228
0
    static const unsigned char default_zeros[EVP_MAX_MD_SIZE];
1229
1230
0
    ret = EVP_MD_get_size(md);
1231
    /* Ensure cast to size_t is safe */
1232
0
    if (ret <= 0)
1233
0
        return 0;
1234
0
    mdlen = (size_t)ret;
1235
1236
0
    if (insecret == NULL) {
1237
0
        insecret = default_zeros;
1238
0
        insecretlen = mdlen;
1239
0
    }
1240
0
    if (prevsecret == NULL) {
1241
0
        prevsecret = default_zeros;
1242
0
        prevsecretlen = mdlen;
1243
0
    } else {
1244
0
        EVP_MD_CTX *mctx = EVP_MD_CTX_new();
1245
0
        unsigned char hash[EVP_MAX_MD_SIZE];
1246
1247
        /* The pre-extract derive step uses a hash of no messages */
1248
0
        if (mctx == NULL
1249
0
                || EVP_DigestInit_ex(mctx, md, NULL) <= 0
1250
0
                || EVP_DigestFinal_ex(mctx, hash, NULL) <= 0) {
1251
0
            EVP_MD_CTX_free(mctx);
1252
0
            return 0;
1253
0
        }
1254
0
        EVP_MD_CTX_free(mctx);
1255
1256
        /* Generate the pre-extract secret */
1257
0
        if (!prov_tls13_hkdf_expand(md, prevsecret, prevsecretlen,
1258
0
                                    prefix, prefixlen, label, labellen,
1259
0
                                    hash, mdlen, preextractsec, mdlen))
1260
0
            return 0;
1261
0
        prevsecret = preextractsec;
1262
0
        prevsecretlen = mdlen;
1263
0
    }
1264
1265
0
    ret = HKDF_Extract(libctx, md, prevsecret, prevsecretlen,
1266
0
                       insecret, insecretlen, out, outlen);
1267
1268
0
    if (prevsecret == preextractsec)
1269
0
        OPENSSL_cleanse(preextractsec, mdlen);
1270
0
    return ret;
1271
0
}
1272
1273
#ifdef FIPS_MODULE
1274
static int fips_tls1_3_digest_check_passed(KDF_HKDF *ctx, const EVP_MD *md)
1275
{
1276
    OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx);
1277
    /*
1278
     * Perform digest check
1279
     *
1280
     * According to RFC 8446 appendix B.4, the valid hash functions are
1281
     * specified in FIPS 180-4. However, it only lists SHA2-256 and SHA2-384 in
1282
     * the table. ACVP also only lists the same set of hash functions.
1283
     */
1284
    int digest_unapproved = !EVP_MD_is_a(md, SN_sha256)
1285
        && !EVP_MD_is_a(md, SN_sha384);
1286
1287
    if (digest_unapproved) {
1288
        if (!OSSL_FIPS_IND_ON_UNAPPROVED(ctx, OSSL_FIPS_IND_SETTABLE0,
1289
                                         libctx, "TLS13 KDF", "Digest",
1290
                                         ossl_fips_config_tls13_kdf_digest_check)) {
1291
            ERR_raise(ERR_LIB_PROV, PROV_R_DIGEST_NOT_ALLOWED);
1292
            return 0;
1293
        }
1294
    }
1295
    return 1;
1296
}
1297
1298
/*
1299
 * Calculate the correct length of the secret key.
1300
 *
1301
 * RFC 8446:
1302
 *   If a given secret is not available, then the 0-value consisting of a
1303
 *   string of Hash.length bytes set to zeros is used.
1304
 */
1305
static size_t fips_tls1_3_key_size(KDF_HKDF *ctx)
1306
{
1307
    const EVP_MD *md = ossl_prov_digest_md(&ctx->digest);
1308
    size_t key_size = 0;
1309
1310
    if (ctx->key != NULL)
1311
        key_size = ctx->key_len;
1312
    else if (md != NULL)
1313
        key_size = EVP_MD_size(md);
1314
1315
    return key_size;
1316
}
1317
1318
static int fips_tls1_3_key_check_passed(KDF_HKDF *ctx)
1319
{
1320
    OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx);
1321
    int key_approved = ossl_kdf_check_key_size(fips_tls1_3_key_size(ctx));
1322
1323
    if (!key_approved) {
1324
        if (!OSSL_FIPS_IND_ON_UNAPPROVED(ctx, OSSL_FIPS_IND_SETTABLE1,
1325
                                         libctx, "TLS13 KDF", "Key size",
1326
                                         ossl_fips_config_tls13_kdf_key_check)) {
1327
            ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH);
1328
            return 0;
1329
        }
1330
    }
1331
    return 1;
1332
}
1333
#endif
1334
1335
static int kdf_tls1_3_derive(void *vctx, unsigned char *key, size_t keylen,
1336
                             const OSSL_PARAM params[])
1337
0
{
1338
0
    KDF_HKDF *ctx = (KDF_HKDF *)vctx;
1339
0
    const EVP_MD *md;
1340
1341
0
    if (!ossl_prov_is_running() || !kdf_tls1_3_set_ctx_params(ctx, params))
1342
0
        return 0;
1343
1344
0
    md = ossl_prov_digest_md(&ctx->digest);
1345
0
    if (md == NULL) {
1346
0
        ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_MESSAGE_DIGEST);
1347
0
        return 0;
1348
0
    }
1349
1350
0
    switch (ctx->mode) {
1351
0
    default:
1352
0
        return 0;
1353
1354
0
    case EVP_KDF_HKDF_MODE_EXTRACT_ONLY:
1355
0
        return prov_tls13_hkdf_generate_secret(PROV_LIBCTX_OF(ctx->provctx),
1356
0
                                               md,
1357
0
                                               ctx->salt, ctx->salt_len,
1358
0
                                               ctx->key, ctx->key_len,
1359
0
                                               ctx->prefix, ctx->prefix_len,
1360
0
                                               ctx->label, ctx->label_len,
1361
0
                                               key, keylen);
1362
1363
0
    case EVP_KDF_HKDF_MODE_EXPAND_ONLY:
1364
0
        return prov_tls13_hkdf_expand(md, ctx->key, ctx->key_len,
1365
0
                                      ctx->prefix, ctx->prefix_len,
1366
0
                                      ctx->label, ctx->label_len,
1367
0
                                      ctx->data, ctx->data_len,
1368
0
                                      key, keylen);
1369
0
    }
1370
0
}
1371
1372
#define kdf_tls1_3_set_ctx_params_st    hkdf_all_set_ctx_params_st
1373
1374
/* Machine generated by util/perl/OpenSSL/paramnames.pm */
1375
#ifndef kdf_tls1_3_set_ctx_params_list
1376
static const OSSL_PARAM kdf_tls1_3_set_ctx_params_list[] = {
1377
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0),
1378
    OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL),
1379
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_PROPERTIES, NULL, 0),
1380
    OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_DIGEST, NULL, 0),
1381
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_KEY, NULL, 0),
1382
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0),
1383
# if defined(FIPS_MODULE)
1384
    OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_KEY_CHECK, NULL),
1385
# endif
1386
# if defined(FIPS_MODULE)
1387
    OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_DIGEST_CHECK, NULL),
1388
# endif
1389
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_PREFIX, NULL, 0),
1390
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_LABEL, NULL, 0),
1391
    OSSL_PARAM_octet_string(OSSL_KDF_PARAM_DATA, NULL, 0),
1392
    OSSL_PARAM_END
1393
};
1394
#endif
1395
1396
#ifndef kdf_tls1_3_set_ctx_params_st
1397
struct kdf_tls1_3_set_ctx_params_st {
1398
    OSSL_PARAM *data;
1399
    OSSL_PARAM *digest;
1400
    OSSL_PARAM *engine;
1401
# if defined(FIPS_MODULE)
1402
    OSSL_PARAM *ind_d;
1403
# endif
1404
# if defined(FIPS_MODULE)
1405
    OSSL_PARAM *ind_k;
1406
# endif
1407
    OSSL_PARAM *key;
1408
    OSSL_PARAM *label;
1409
    OSSL_PARAM *mode;
1410
    OSSL_PARAM *prefix;
1411
    OSSL_PARAM *propq;
1412
    OSSL_PARAM *salt;
1413
};
1414
#endif
1415
1416
#ifndef kdf_tls1_3_set_ctx_params_decoder
1417
static int kdf_tls1_3_set_ctx_params_decoder
1418
    (const OSSL_PARAM *p, struct kdf_tls1_3_set_ctx_params_st *r)
1419
0
{
1420
0
    const char *s;
1421
1422
0
    memset(r, 0, sizeof(*r));
1423
0
    if (p != NULL)
1424
0
        for (; (s = p->key) != NULL; p++)
1425
0
            switch(s[0]) {
1426
0
            default:
1427
0
                break;
1428
0
            case 'd':
1429
0
                switch(s[1]) {
1430
0
                default:
1431
0
                    break;
1432
0
                case 'a':
1433
0
                    if (ossl_likely(strcmp("ta", s + 2) == 0)) {
1434
                        /* KDF_PARAM_DATA */
1435
0
                        if (ossl_unlikely(r->data != NULL)) {
1436
0
                            ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1437
0
                                           "param %s is repeated", s);
1438
0
                            return 0;
1439
0
                        }
1440
0
                        r->data = (OSSL_PARAM *)p;
1441
0
                    }
1442
0
                    break;
1443
0
                case 'i':
1444
0
                    switch(s[2]) {
1445
0
                    default:
1446
0
                        break;
1447
0
                    case 'g':
1448
0
                        switch(s[3]) {
1449
0
                        default:
1450
0
                            break;
1451
0
                        case 'e':
1452
0
                            switch(s[4]) {
1453
0
                            default:
1454
0
                                break;
1455
0
                            case 's':
1456
0
                                switch(s[5]) {
1457
0
                                default:
1458
0
                                    break;
1459
0
                                case 't':
1460
0
                                    switch(s[6]) {
1461
0
                                    default:
1462
0
                                        break;
1463
0
                                    case '-':
1464
# if defined(FIPS_MODULE)
1465
                                        if (ossl_likely(strcmp("check", s + 7) == 0)) {
1466
                                            /* KDF_PARAM_FIPS_DIGEST_CHECK */
1467
                                            if (ossl_unlikely(r->ind_d != NULL)) {
1468
                                                ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1469
                                                               "param %s is repeated", s);
1470
                                                return 0;
1471
                                            }
1472
                                            r->ind_d = (OSSL_PARAM *)p;
1473
                                        }
1474
# endif
1475
0
                                        break;
1476
0
                                    case '\0':
1477
0
                                        if (ossl_unlikely(r->digest != NULL)) {
1478
0
                                            ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1479
0
                                                           "param %s is repeated", s);
1480
0
                                            return 0;
1481
0
                                        }
1482
0
                                        r->digest = (OSSL_PARAM *)p;
1483
0
                                    }
1484
0
                                }
1485
0
                            }
1486
0
                        }
1487
0
                    }
1488
0
                }
1489
0
                break;
1490
0
            case 'e':
1491
0
                if (ossl_likely(strcmp("ngine", s + 1) == 0)) {
1492
                    /* ALG_PARAM_ENGINE */
1493
0
                    if (ossl_unlikely(r->engine != NULL)) {
1494
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1495
0
                                       "param %s is repeated", s);
1496
0
                        return 0;
1497
0
                    }
1498
0
                    r->engine = (OSSL_PARAM *)p;
1499
0
                }
1500
0
                break;
1501
0
            case 'k':
1502
0
                switch(s[1]) {
1503
0
                default:
1504
0
                    break;
1505
0
                case 'e':
1506
0
                    switch(s[2]) {
1507
0
                    default:
1508
0
                        break;
1509
0
                    case 'y':
1510
0
                        switch(s[3]) {
1511
0
                        default:
1512
0
                            break;
1513
0
                        case '-':
1514
# if defined(FIPS_MODULE)
1515
                            if (ossl_likely(strcmp("check", s + 4) == 0)) {
1516
                                /* KDF_PARAM_FIPS_KEY_CHECK */
1517
                                if (ossl_unlikely(r->ind_k != NULL)) {
1518
                                    ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1519
                                                   "param %s is repeated", s);
1520
                                    return 0;
1521
                                }
1522
                                r->ind_k = (OSSL_PARAM *)p;
1523
                            }
1524
# endif
1525
0
                            break;
1526
0
                        case '\0':
1527
0
                            if (ossl_unlikely(r->key != NULL)) {
1528
0
                                ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1529
0
                                               "param %s is repeated", s);
1530
0
                                return 0;
1531
0
                            }
1532
0
                            r->key = (OSSL_PARAM *)p;
1533
0
                        }
1534
0
                    }
1535
0
                }
1536
0
                break;
1537
0
            case 'l':
1538
0
                if (ossl_likely(strcmp("abel", s + 1) == 0)) {
1539
                    /* KDF_PARAM_LABEL */
1540
0
                    if (ossl_unlikely(r->label != NULL)) {
1541
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1542
0
                                       "param %s is repeated", s);
1543
0
                        return 0;
1544
0
                    }
1545
0
                    r->label = (OSSL_PARAM *)p;
1546
0
                }
1547
0
                break;
1548
0
            case 'm':
1549
0
                if (ossl_likely(strcmp("ode", s + 1) == 0)) {
1550
                    /* KDF_PARAM_MODE */
1551
0
                    if (ossl_unlikely(r->mode != NULL)) {
1552
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1553
0
                                       "param %s is repeated", s);
1554
0
                        return 0;
1555
0
                    }
1556
0
                    r->mode = (OSSL_PARAM *)p;
1557
0
                }
1558
0
                break;
1559
0
            case 'p':
1560
0
                switch(s[1]) {
1561
0
                default:
1562
0
                    break;
1563
0
                case 'r':
1564
0
                    switch(s[2]) {
1565
0
                    default:
1566
0
                        break;
1567
0
                    case 'e':
1568
0
                        if (ossl_likely(strcmp("fix", s + 3) == 0)) {
1569
                            /* KDF_PARAM_PREFIX */
1570
0
                            if (ossl_unlikely(r->prefix != NULL)) {
1571
0
                                ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1572
0
                                               "param %s is repeated", s);
1573
0
                                return 0;
1574
0
                            }
1575
0
                            r->prefix = (OSSL_PARAM *)p;
1576
0
                        }
1577
0
                        break;
1578
0
                    case 'o':
1579
0
                        if (ossl_likely(strcmp("perties", s + 3) == 0)) {
1580
                            /* KDF_PARAM_PROPERTIES */
1581
0
                            if (ossl_unlikely(r->propq != NULL)) {
1582
0
                                ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1583
0
                                               "param %s is repeated", s);
1584
0
                                return 0;
1585
0
                            }
1586
0
                            r->propq = (OSSL_PARAM *)p;
1587
0
                        }
1588
0
                    }
1589
0
                }
1590
0
                break;
1591
0
            case 's':
1592
0
                if (ossl_likely(strcmp("alt", s + 1) == 0)) {
1593
                    /* KDF_PARAM_SALT */
1594
0
                    if (ossl_unlikely(r->salt != NULL)) {
1595
0
                        ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER,
1596
0
                                       "param %s is repeated", s);
1597
0
                        return 0;
1598
0
                    }
1599
0
                    r->salt = (OSSL_PARAM *)p;
1600
0
                }
1601
0
            }
1602
0
    return 1;
1603
0
}
1604
#endif
1605
/* End of machine generated */
1606
1607
static int kdf_tls1_3_set_ctx_params(void *vctx, const OSSL_PARAM params[])
1608
0
{
1609
0
    struct hkdf_all_set_ctx_params_st p;
1610
0
    KDF_HKDF *ctx = vctx;
1611
1612
0
    if (ctx == NULL || !kdf_tls1_3_set_ctx_params_decoder(params, &p))
1613
0
        return 0;
1614
1615
0
    if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE0, p.ind_d))
1616
0
        return 0;
1617
0
    if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE1, p.ind_k))
1618
0
        return 0;
1619
1620
0
    if (!hkdf_common_set_ctx_params(ctx, &p))
1621
0
        return 0;
1622
1623
0
    if (ctx->mode == EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND) {
1624
0
        ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE);
1625
0
        return 0;
1626
0
    }
1627
1628
0
    if (p.prefix != NULL) {
1629
0
        OPENSSL_free(ctx->prefix);
1630
0
        ctx->prefix = NULL;
1631
0
        if (!OSSL_PARAM_get_octet_string(p.prefix, (void **)&ctx->prefix, 0,
1632
0
                                         &ctx->prefix_len))
1633
0
            return 0;
1634
0
    }
1635
1636
0
    if (p.label != NULL) {
1637
0
        OPENSSL_free(ctx->label);
1638
0
        ctx->label = NULL;
1639
0
        if (!OSSL_PARAM_get_octet_string(p.label, (void **)&ctx->label, 0,
1640
0
                                         &ctx->label_len))
1641
0
            return 0;
1642
0
    }
1643
1644
0
    if (p.data != NULL) {
1645
0
        OPENSSL_clear_free(ctx->data, ctx->data_len);
1646
0
        ctx->data = NULL;
1647
0
        if (!OSSL_PARAM_get_octet_string(p.data, (void **)&ctx->data, 0,
1648
0
                                         &ctx->data_len))
1649
0
            return 0;
1650
0
    }
1651
1652
#ifdef FIPS_MODULE
1653
    if (p.digest != NULL) {
1654
        const EVP_MD *md = ossl_prov_digest_md(&ctx->digest);
1655
1656
        if (!fips_tls1_3_digest_check_passed(ctx, md))
1657
            return 0;
1658
    }
1659
1660
    if (p.key != NULL)
1661
        if (!fips_tls1_3_key_check_passed(ctx))
1662
            return 0;
1663
#endif
1664
1665
0
    return 1;
1666
0
}
1667
1668
static const OSSL_PARAM *kdf_tls1_3_settable_ctx_params(ossl_unused void *ctx,
1669
                                                        ossl_unused void *provctx)
1670
0
{
1671
0
    return kdf_tls1_3_set_ctx_params_list;
1672
0
}
1673
1674
const OSSL_DISPATCH ossl_kdf_tls1_3_kdf_functions[] = {
1675
    { OSSL_FUNC_KDF_NEWCTX, (void(*)(void))kdf_hkdf_new },
1676
    { OSSL_FUNC_KDF_DUPCTX, (void(*)(void))kdf_hkdf_dup },
1677
    { OSSL_FUNC_KDF_FREECTX, (void(*)(void))kdf_hkdf_free },
1678
    { OSSL_FUNC_KDF_RESET, (void(*)(void))kdf_hkdf_reset },
1679
    { OSSL_FUNC_KDF_DERIVE, (void(*)(void))kdf_tls1_3_derive },
1680
    { OSSL_FUNC_KDF_SETTABLE_CTX_PARAMS,
1681
      (void(*)(void))kdf_tls1_3_settable_ctx_params },
1682
    { OSSL_FUNC_KDF_SET_CTX_PARAMS, (void(*)(void))kdf_tls1_3_set_ctx_params },
1683
    { OSSL_FUNC_KDF_GETTABLE_CTX_PARAMS,
1684
      (void(*)(void))hkdf_gettable_ctx_params },
1685
    { OSSL_FUNC_KDF_GET_CTX_PARAMS, (void(*)(void))hkdf_common_get_ctx_params },
1686
    OSSL_DISPATCH_END
1687
};