Coverage Report

Created: 2025-12-31 06:58

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl33/providers/implementations/rands/drbg_hash.c
Line
Count
Source
1
/*
2
 * Copyright 2011-2024 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
#include <assert.h>
11
#include <stdlib.h>
12
#include <string.h>
13
#include <openssl/sha.h>
14
#include <openssl/crypto.h>
15
#include <openssl/err.h>
16
#include <openssl/rand.h>
17
#include <openssl/core_dispatch.h>
18
#include <openssl/proverr.h>
19
#include "internal/thread_once.h"
20
#include "prov/providercommon.h"
21
#include "prov/provider_ctx.h"
22
#include "prov/provider_util.h"
23
#include "prov/implementations.h"
24
#include "drbg_local.h"
25
26
static OSSL_FUNC_rand_newctx_fn drbg_hash_new_wrapper;
27
static OSSL_FUNC_rand_freectx_fn drbg_hash_free;
28
static OSSL_FUNC_rand_instantiate_fn drbg_hash_instantiate_wrapper;
29
static OSSL_FUNC_rand_uninstantiate_fn drbg_hash_uninstantiate_wrapper;
30
static OSSL_FUNC_rand_generate_fn drbg_hash_generate_wrapper;
31
static OSSL_FUNC_rand_reseed_fn drbg_hash_reseed_wrapper;
32
static OSSL_FUNC_rand_settable_ctx_params_fn drbg_hash_settable_ctx_params;
33
static OSSL_FUNC_rand_set_ctx_params_fn drbg_hash_set_ctx_params;
34
static OSSL_FUNC_rand_gettable_ctx_params_fn drbg_hash_gettable_ctx_params;
35
static OSSL_FUNC_rand_get_ctx_params_fn drbg_hash_get_ctx_params;
36
static OSSL_FUNC_rand_verify_zeroization_fn drbg_hash_verify_zeroization;
37
38
static int drbg_hash_set_ctx_params_locked(void *vctx, const OSSL_PARAM params[]);
39
40
/* 888 bits from SP800-90Ar1 10.1 table 2 */
41
300
#define HASH_PRNG_MAX_SEEDLEN (888 / 8)
42
43
/* 440 bits from SP800-90Ar1 10.1 table 2 */
44
0
#define HASH_PRNG_SMALL_SEEDLEN (440 / 8)
45
46
/* Determine what seedlen to use based on the block length */
47
0
#define MAX_BLOCKLEN_USING_SMALL_SEEDLEN (256 / 8)
48
1.27k
#define INBYTE_IGNORE ((unsigned char)0xFF)
49
50
typedef struct rand_drbg_hash_st {
51
    PROV_DIGEST digest;
52
    EVP_MD_CTX *ctx;
53
    size_t blocklen;
54
    unsigned char V[HASH_PRNG_MAX_SEEDLEN];
55
    unsigned char C[HASH_PRNG_MAX_SEEDLEN];
56
    /* Temporary value storage: should always exceed max digest length */
57
    unsigned char vtmp[HASH_PRNG_MAX_SEEDLEN];
58
} PROV_DRBG_HASH;
59
60
/*
61
 * SP800-90Ar1 10.3.1 Derivation function using a Hash Function (Hash_df).
62
 * The input string used is composed of:
63
 *    inbyte - An optional leading byte (ignore if equal to INBYTE_IGNORE)
64
 *    in - input string 1 (A Non NULL value).
65
 *    in2 - optional input string (Can be NULL).
66
 *    in3 - optional input string (Can be NULL).
67
 *    These are concatenated as part of the DigestUpdate process.
68
 */
69
static int hash_df(PROV_DRBG *drbg, unsigned char *out,
70
    const unsigned char inbyte,
71
    const unsigned char *in, size_t inlen,
72
    const unsigned char *in2, size_t in2len,
73
    const unsigned char *in3, size_t in3len)
74
1.03k
{
75
1.03k
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
76
1.03k
    EVP_MD_CTX *ctx = hash->ctx;
77
1.03k
    unsigned char *vtmp = hash->vtmp;
78
    /* tmp = counter || num_bits_returned || [inbyte] */
79
1.03k
    unsigned char tmp[1 + 4 + 1];
80
1.03k
    int tmp_sz = 0;
81
1.03k
    size_t outlen = drbg->seedlen;
82
1.03k
    size_t num_bits_returned = outlen * 8;
83
    /*
84
     * No need to check outlen size here, as the standard only ever needs
85
     * seedlen bytes which is always less than the maximum permitted.
86
     */
87
88
    /* (Step 3) counter = 1 (tmp[0] is the 8 bit counter) */
89
1.03k
    tmp[tmp_sz++] = 1;
90
    /* tmp[1..4] is the fixed 32 bit no_of_bits_to_return */
91
1.03k
    tmp[tmp_sz++] = (unsigned char)((num_bits_returned >> 24) & 0xff);
92
1.03k
    tmp[tmp_sz++] = (unsigned char)((num_bits_returned >> 16) & 0xff);
93
1.03k
    tmp[tmp_sz++] = (unsigned char)((num_bits_returned >> 8) & 0xff);
94
1.03k
    tmp[tmp_sz++] = (unsigned char)(num_bits_returned & 0xff);
95
    /* Tack the additional input byte onto the end of tmp if it exists */
96
1.03k
    if (inbyte != INBYTE_IGNORE)
97
792
        tmp[tmp_sz++] = inbyte;
98
99
    /* (Step 4) */
100
3.05k
    for (;;) {
101
        /*
102
         * (Step 4.1) out = out || Hash(tmp || in || [in2] || [in3])
103
         *            (where tmp = counter || num_bits_returned || [inbyte])
104
         */
105
3.05k
        if (!(EVP_DigestInit_ex(ctx, ossl_prov_digest_md(&hash->digest), NULL)
106
3.05k
                && EVP_DigestUpdate(ctx, tmp, tmp_sz)
107
3.05k
                && EVP_DigestUpdate(ctx, in, inlen)
108
3.05k
                && (in2 == NULL || EVP_DigestUpdate(ctx, in2, in2len))
109
3.05k
                && (in3 == NULL || EVP_DigestUpdate(ctx, in3, in3len))))
110
0
            return 0;
111
112
3.05k
        if (outlen < hash->blocklen) {
113
1.03k
            if (!EVP_DigestFinal(ctx, vtmp, NULL))
114
0
                return 0;
115
1.03k
            memcpy(out, vtmp, outlen);
116
1.03k
            OPENSSL_cleanse(vtmp, hash->blocklen);
117
1.03k
            break;
118
2.01k
        } else if (!EVP_DigestFinal(ctx, out, NULL)) {
119
0
            return 0;
120
0
        }
121
122
2.01k
        outlen -= hash->blocklen;
123
2.01k
        if (outlen == 0)
124
0
            break;
125
        /* (Step 4.2) counter++ */
126
2.01k
        tmp[0]++;
127
2.01k
        out += hash->blocklen;
128
2.01k
    }
129
1.03k
    return 1;
130
1.03k
}
131
132
/* Helper function that just passes 2 input parameters to hash_df() */
133
static int hash_df1(PROV_DRBG *drbg, unsigned char *out,
134
    const unsigned char in_byte,
135
    const unsigned char *in1, size_t in1len)
136
517
{
137
517
    return hash_df(drbg, out, in_byte, in1, in1len, NULL, 0, NULL, 0);
138
517
}
139
140
/*
141
 * Add 2 byte buffers together. The first elements in each buffer are the top
142
 * most bytes. The result is stored in the dst buffer.
143
 * The final carry is ignored i.e: dst =  (dst + in) mod (2^seedlen_bits).
144
 * where dst size is drbg->seedlen, and inlen <= drbg->seedlen.
145
 */
146
static int add_bytes(PROV_DRBG *drbg, unsigned char *dst,
147
    unsigned char *in, size_t inlen)
148
39.9k
{
149
39.9k
    size_t i;
150
39.9k
    int result;
151
39.9k
    const unsigned char *add;
152
39.9k
    unsigned char carry = 0, *d;
153
154
39.9k
    assert(drbg->seedlen >= 1 && inlen >= 1 && inlen <= drbg->seedlen);
155
156
39.9k
    d = &dst[drbg->seedlen - 1];
157
39.9k
    add = &in[inlen - 1];
158
159
104k
    for (i = inlen; i > 0; i--, d--, add--) {
160
65.0k
        result = *d + *add + carry;
161
65.0k
        carry = (unsigned char)(result >> 8);
162
65.0k
        *d = (unsigned char)(result & 0xff);
163
65.0k
    }
164
165
39.9k
    if (carry != 0) {
166
        /* Add the carry to the top of the dst if inlen is not the same size */
167
396
        for (i = drbg->seedlen - inlen; i > 0; --i, d--) {
168
274
            *d += 1; /* Carry can only be 1 */
169
274
            if (*d != 0) /* exit if carry doesn't propagate to the next byte */
170
273
                break;
171
274
        }
172
395
    }
173
39.9k
    return 1;
174
39.9k
}
175
176
/* V = (V + Hash(inbyte || V  || [additional_input]) mod (2^seedlen) */
177
static int add_hash_to_v(PROV_DRBG *drbg, unsigned char inbyte,
178
    const unsigned char *adin, size_t adinlen)
179
242
{
180
242
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
181
242
    EVP_MD_CTX *ctx = hash->ctx;
182
183
242
    return EVP_DigestInit_ex(ctx, ossl_prov_digest_md(&hash->digest), NULL)
184
242
        && EVP_DigestUpdate(ctx, &inbyte, 1)
185
242
        && EVP_DigestUpdate(ctx, hash->V, drbg->seedlen)
186
242
        && (adin == NULL || EVP_DigestUpdate(ctx, adin, adinlen))
187
242
        && EVP_DigestFinal(ctx, hash->vtmp, NULL)
188
242
        && add_bytes(drbg, hash->V, hash->vtmp, hash->blocklen);
189
242
}
190
191
/*
192
 * The Hashgen() as listed in SP800-90Ar1 10.1.1.4 Hash_DRBG_Generate_Process.
193
 *
194
 * drbg contains the current value of V.
195
 * outlen is the requested number of bytes.
196
 * out is a buffer to return the generated bits.
197
 *
198
 * The algorithm to generate the bits is:
199
 *     data = V
200
 *     w = NULL
201
 *     for (i = 1 to m) {
202
 *        W = W || Hash(data)
203
 *        data = (data + 1) mod (2^seedlen)
204
 *     }
205
 *     out = Leftmost(W, outlen)
206
 *
207
 * Returns zero if an error occurs otherwise it returns 1.
208
 */
209
static int hash_gen(PROV_DRBG *drbg, unsigned char *out, size_t outlen)
210
242
{
211
242
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
212
242
    unsigned char one = 1;
213
214
242
    if (outlen == 0)
215
0
        return 1;
216
242
    memcpy(hash->vtmp, hash->V, drbg->seedlen);
217
39.4k
    for (;;) {
218
39.4k
        if (!EVP_DigestInit_ex(hash->ctx, ossl_prov_digest_md(&hash->digest),
219
39.4k
                NULL)
220
39.4k
            || !EVP_DigestUpdate(hash->ctx, hash->vtmp, drbg->seedlen))
221
0
            return 0;
222
223
39.4k
        if (outlen < hash->blocklen) {
224
117
            if (!EVP_DigestFinal(hash->ctx, hash->vtmp, NULL))
225
0
                return 0;
226
117
            memcpy(out, hash->vtmp, outlen);
227
117
            return 1;
228
39.3k
        } else {
229
39.3k
            if (!EVP_DigestFinal(hash->ctx, out, NULL))
230
0
                return 0;
231
39.3k
            outlen -= hash->blocklen;
232
39.3k
            if (outlen == 0)
233
125
                break;
234
39.1k
            out += hash->blocklen;
235
39.1k
        }
236
39.1k
        add_bytes(drbg, hash->vtmp, &one, 1);
237
39.1k
    }
238
125
    return 1;
239
242
}
240
241
/*
242
 * SP800-90Ar1 10.1.1.2 Hash_DRBG_Instantiate_Process:
243
 *
244
 * ent is entropy input obtained from a randomness source of length ent_len.
245
 * nonce is a string of bytes of length nonce_len.
246
 * pstr is a personalization string received from an application. May be NULL.
247
 *
248
 * Returns zero if an error occurs otherwise it returns 1.
249
 */
250
static int drbg_hash_instantiate(PROV_DRBG *drbg,
251
    const unsigned char *ent, size_t ent_len,
252
    const unsigned char *nonce, size_t nonce_len,
253
    const unsigned char *pstr, size_t pstr_len)
254
242
{
255
242
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
256
257
242
    EVP_MD_CTX_free(hash->ctx);
258
242
    hash->ctx = EVP_MD_CTX_new();
259
260
    /* (Step 1-3) V = Hash_df(entropy||nonce||pers, seedlen) */
261
242
    return hash->ctx != NULL
262
242
        && hash_df(drbg, hash->V, INBYTE_IGNORE,
263
242
            ent, ent_len, nonce, nonce_len, pstr, pstr_len)
264
        /* (Step 4) C = Hash_df(0x00||V, seedlen) */
265
242
        && hash_df1(drbg, hash->C, 0x00, hash->V, drbg->seedlen);
266
242
}
267
268
static int drbg_hash_instantiate_wrapper(void *vdrbg, unsigned int strength,
269
    int prediction_resistance,
270
    const unsigned char *pstr,
271
    size_t pstr_len,
272
    const OSSL_PARAM params[])
273
0
{
274
0
    PROV_DRBG *drbg = (PROV_DRBG *)vdrbg;
275
0
    int ret = 0;
276
277
0
    if (drbg->lock != NULL && !CRYPTO_THREAD_write_lock(drbg->lock))
278
0
        return 0;
279
280
0
    if (!ossl_prov_is_running()
281
0
        || !drbg_hash_set_ctx_params_locked(drbg, params))
282
0
        goto err;
283
0
    ret = ossl_prov_drbg_instantiate(drbg, strength, prediction_resistance,
284
0
        pstr, pstr_len);
285
0
err:
286
0
    if (drbg->lock != NULL)
287
0
        CRYPTO_THREAD_unlock(drbg->lock);
288
0
    return ret;
289
0
}
290
291
/*
292
 * SP800-90Ar1 10.1.1.3 Hash_DRBG_Reseed_Process:
293
 *
294
 * ent is entropy input bytes obtained from a randomness source.
295
 * addin is additional input received from an application. May be NULL.
296
 *
297
 * Returns zero if an error occurs otherwise it returns 1.
298
 */
299
static int drbg_hash_reseed(PROV_DRBG *drbg,
300
    const unsigned char *ent, size_t ent_len,
301
    const unsigned char *adin, size_t adin_len)
302
275
{
303
275
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
304
305
    /* (Step 1-2) V = Hash_df(0x01 || V || entropy_input || additional_input) */
306
    /* V about to be updated so use C as output instead */
307
275
    if (!hash_df(drbg, hash->C, 0x01, hash->V, drbg->seedlen, ent, ent_len,
308
275
            adin, adin_len))
309
0
        return 0;
310
275
    memcpy(hash->V, hash->C, drbg->seedlen);
311
    /* (Step 4) C = Hash_df(0x00||V, seedlen) */
312
275
    return hash_df1(drbg, hash->C, 0x00, hash->V, drbg->seedlen);
313
275
}
314
315
static int drbg_hash_reseed_wrapper(void *vdrbg, int prediction_resistance,
316
    const unsigned char *ent, size_t ent_len,
317
    const unsigned char *adin, size_t adin_len)
318
242
{
319
242
    PROV_DRBG *drbg = (PROV_DRBG *)vdrbg;
320
321
242
    return ossl_prov_drbg_reseed(drbg, prediction_resistance, ent, ent_len,
322
242
        adin, adin_len);
323
242
}
324
325
/*
326
 * SP800-90Ar1 10.1.1.4 Hash_DRBG_Generate_Process:
327
 *
328
 * Generates pseudo random bytes using the drbg.
329
 * out is a buffer to fill with outlen bytes of pseudo random data.
330
 * addin is additional input received from an application. May be NULL.
331
 *
332
 * Returns zero if an error occurs otherwise it returns 1.
333
 */
334
static int drbg_hash_generate(PROV_DRBG *drbg,
335
    unsigned char *out, size_t outlen,
336
    const unsigned char *adin, size_t adin_len)
337
242
{
338
242
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
339
242
    unsigned char counter[4];
340
242
    int reseed_counter = drbg->generate_counter;
341
342
242
    counter[0] = (unsigned char)((reseed_counter >> 24) & 0xff);
343
242
    counter[1] = (unsigned char)((reseed_counter >> 16) & 0xff);
344
242
    counter[2] = (unsigned char)((reseed_counter >> 8) & 0xff);
345
242
    counter[3] = (unsigned char)(reseed_counter & 0xff);
346
347
242
    return hash->ctx != NULL
348
242
        && (adin == NULL
349
            /* (Step 2) if adin != NULL then V = V + Hash(0x02||V||adin) */
350
0
            || adin_len == 0
351
0
            || add_hash_to_v(drbg, 0x02, adin, adin_len))
352
        /* (Step 3) Hashgen(outlen, V) */
353
242
        && hash_gen(drbg, out, outlen)
354
        /* (Step 4/5) H = V = (V + Hash(0x03||V) mod (2^seedlen_bits) */
355
242
        && add_hash_to_v(drbg, 0x03, NULL, 0)
356
        /* (Step 5) V = (V + H + C + reseed_counter) mod (2^seedlen_bits) */
357
        /* V = (V + C) mod (2^seedlen_bits) */
358
242
        && add_bytes(drbg, hash->V, hash->C, drbg->seedlen)
359
        /* V = (V + reseed_counter) mod (2^seedlen_bits) */
360
242
        && add_bytes(drbg, hash->V, counter, 4);
361
242
}
362
363
static int drbg_hash_generate_wrapper(void *vdrbg, unsigned char *out, size_t outlen, unsigned int strength,
364
    int prediction_resistance, const unsigned char *adin, size_t adin_len)
365
242
{
366
242
    PROV_DRBG *drbg = (PROV_DRBG *)vdrbg;
367
368
242
    return ossl_prov_drbg_generate(drbg, out, outlen, strength,
369
242
        prediction_resistance, adin, adin_len);
370
242
}
371
372
static int drbg_hash_uninstantiate(PROV_DRBG *drbg)
373
0
{
374
0
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
375
376
0
    OPENSSL_cleanse(hash->V, sizeof(hash->V));
377
0
    OPENSSL_cleanse(hash->C, sizeof(hash->C));
378
0
    OPENSSL_cleanse(hash->vtmp, sizeof(hash->vtmp));
379
0
    return ossl_prov_drbg_uninstantiate(drbg);
380
0
}
381
382
static int drbg_hash_uninstantiate_wrapper(void *vdrbg)
383
0
{
384
0
    PROV_DRBG *drbg = (PROV_DRBG *)vdrbg;
385
0
    int ret;
386
387
0
    if (drbg->lock != NULL && !CRYPTO_THREAD_write_lock(drbg->lock))
388
0
        return 0;
389
390
0
    ret = drbg_hash_uninstantiate(drbg);
391
392
0
    if (drbg->lock != NULL)
393
0
        CRYPTO_THREAD_unlock(drbg->lock);
394
395
0
    return ret;
396
0
}
397
398
static int drbg_hash_verify_zeroization(void *vdrbg)
399
0
{
400
0
    PROV_DRBG *drbg = (PROV_DRBG *)vdrbg;
401
0
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
402
0
    int ret = 0;
403
404
0
    if (drbg->lock != NULL && !CRYPTO_THREAD_read_lock(drbg->lock))
405
0
        return 0;
406
407
0
    PROV_DRBG_VERIFY_ZEROIZATION(hash->V);
408
0
    PROV_DRBG_VERIFY_ZEROIZATION(hash->C);
409
0
    PROV_DRBG_VERIFY_ZEROIZATION(hash->vtmp);
410
411
0
    ret = 1;
412
0
err:
413
0
    if (drbg->lock != NULL)
414
0
        CRYPTO_THREAD_unlock(drbg->lock);
415
0
    return ret;
416
0
}
417
418
static int drbg_hash_new(PROV_DRBG *ctx)
419
300
{
420
300
    PROV_DRBG_HASH *hash;
421
422
300
    hash = OPENSSL_secure_zalloc(sizeof(*hash));
423
300
    if (hash == NULL)
424
0
        return 0;
425
426
300
    ctx->data = hash;
427
300
    ctx->seedlen = HASH_PRNG_MAX_SEEDLEN;
428
300
    ctx->max_entropylen = DRBG_MAX_LENGTH;
429
300
    ctx->max_noncelen = DRBG_MAX_LENGTH;
430
300
    ctx->max_perslen = DRBG_MAX_LENGTH;
431
300
    ctx->max_adinlen = DRBG_MAX_LENGTH;
432
433
    /* Maximum number of bits per request = 2^19  = 2^16 bytes */
434
300
    ctx->max_request = 1 << 16;
435
300
    return 1;
436
300
}
437
438
static void *drbg_hash_new_wrapper(void *provctx, void *parent,
439
    const OSSL_DISPATCH *parent_dispatch)
440
300
{
441
300
    return ossl_rand_drbg_new(provctx, parent, parent_dispatch,
442
300
        &drbg_hash_new, &drbg_hash_free,
443
300
        &drbg_hash_instantiate, &drbg_hash_uninstantiate,
444
300
        &drbg_hash_reseed, &drbg_hash_generate);
445
300
}
446
447
static void drbg_hash_free(void *vdrbg)
448
300
{
449
300
    PROV_DRBG *drbg = (PROV_DRBG *)vdrbg;
450
300
    PROV_DRBG_HASH *hash;
451
452
300
    if (drbg != NULL && (hash = (PROV_DRBG_HASH *)drbg->data) != NULL) {
453
300
        EVP_MD_CTX_free(hash->ctx);
454
300
        ossl_prov_digest_reset(&hash->digest);
455
300
        OPENSSL_secure_clear_free(hash, sizeof(*hash));
456
300
    }
457
300
    ossl_rand_drbg_free(drbg);
458
300
}
459
460
static int drbg_hash_get_ctx_params(void *vdrbg, OSSL_PARAM params[])
461
103
{
462
103
    PROV_DRBG *drbg = (PROV_DRBG *)vdrbg;
463
103
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)drbg->data;
464
103
    const EVP_MD *md;
465
103
    OSSL_PARAM *p;
466
103
    int ret = 0, complete = 0;
467
468
103
    if (!ossl_drbg_get_ctx_params_no_lock(drbg, params, &complete))
469
0
        return 0;
470
471
103
    if (complete)
472
103
        return 1;
473
474
0
    if (drbg->lock != NULL && !CRYPTO_THREAD_read_lock(drbg->lock))
475
0
        return 0;
476
477
0
    p = OSSL_PARAM_locate(params, OSSL_DRBG_PARAM_DIGEST);
478
0
    if (p != NULL) {
479
0
        md = ossl_prov_digest_md(&hash->digest);
480
0
        if (md == NULL || !OSSL_PARAM_set_utf8_string(p, EVP_MD_get0_name(md)))
481
0
            goto err;
482
0
    }
483
484
0
    ret = ossl_drbg_get_ctx_params(drbg, params);
485
0
err:
486
0
    if (drbg->lock != NULL)
487
0
        CRYPTO_THREAD_unlock(drbg->lock);
488
489
0
    return ret;
490
0
}
491
492
static const OSSL_PARAM *drbg_hash_gettable_ctx_params(ossl_unused void *vctx,
493
    ossl_unused void *p_ctx)
494
0
{
495
0
    static const OSSL_PARAM known_gettable_ctx_params[] = {
496
0
        OSSL_PARAM_utf8_string(OSSL_DRBG_PARAM_DIGEST, NULL, 0),
497
0
        OSSL_PARAM_DRBG_GETTABLE_CTX_COMMON,
498
0
        OSSL_PARAM_END
499
0
    };
500
0
    return known_gettable_ctx_params;
501
0
}
502
503
static int drbg_hash_set_ctx_params_locked(void *vctx, const OSSL_PARAM params[])
504
0
{
505
0
    PROV_DRBG *ctx = (PROV_DRBG *)vctx;
506
0
    PROV_DRBG_HASH *hash = (PROV_DRBG_HASH *)ctx->data;
507
0
    OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx);
508
0
    const EVP_MD *md;
509
510
0
    if (!ossl_prov_digest_load_from_params(&hash->digest, params, libctx))
511
0
        return 0;
512
513
0
    md = ossl_prov_digest_md(&hash->digest);
514
0
    if (md != NULL) {
515
0
        if (!ossl_drbg_verify_digest(libctx, md))
516
0
            return 0; /* Error already raised for us */
517
518
        /* These are taken from SP 800-90 10.1 Table 2 */
519
0
        hash->blocklen = EVP_MD_get_size(md);
520
        /* See SP800-57 Part1 Rev4 5.6.1 Table 3 */
521
0
        ctx->strength = 64 * (hash->blocklen >> 3);
522
0
        if (ctx->strength > 256)
523
0
            ctx->strength = 256;
524
0
        if (hash->blocklen > MAX_BLOCKLEN_USING_SMALL_SEEDLEN)
525
0
            ctx->seedlen = HASH_PRNG_MAX_SEEDLEN;
526
0
        else
527
0
            ctx->seedlen = HASH_PRNG_SMALL_SEEDLEN;
528
529
0
        ctx->min_entropylen = ctx->strength / 8;
530
0
        ctx->min_noncelen = ctx->min_entropylen / 2;
531
0
    }
532
533
0
    return ossl_drbg_set_ctx_params(ctx, params);
534
0
}
535
536
static int drbg_hash_set_ctx_params(void *vctx, const OSSL_PARAM params[])
537
122
{
538
122
    PROV_DRBG *drbg = (PROV_DRBG *)vctx;
539
122
    int ret;
540
541
122
    if (drbg->lock != NULL && !CRYPTO_THREAD_write_lock(drbg->lock))
542
0
        return 0;
543
544
122
    ret = drbg_hash_set_ctx_params_locked(vctx, params);
545
546
122
    if (drbg->lock != NULL)
547
0
        CRYPTO_THREAD_unlock(drbg->lock);
548
549
122
    return ret;
550
122
}
551
552
static const OSSL_PARAM *drbg_hash_settable_ctx_params(ossl_unused void *vctx,
553
    ossl_unused void *p_ctx)
554
300
{
555
300
    static const OSSL_PARAM known_settable_ctx_params[] = {
556
300
        OSSL_PARAM_utf8_string(OSSL_DRBG_PARAM_PROPERTIES, NULL, 0),
557
300
        OSSL_PARAM_utf8_string(OSSL_DRBG_PARAM_DIGEST, NULL, 0),
558
300
        OSSL_PARAM_DRBG_SETTABLE_CTX_COMMON,
559
        OSSL_PARAM_END
560
300
    };
561
300
    return known_settable_ctx_params;
562
300
}
563
564
const OSSL_DISPATCH ossl_drbg_hash_functions[] = {
565
    { OSSL_FUNC_RAND_NEWCTX, (void (*)(void))drbg_hash_new_wrapper },
566
    { OSSL_FUNC_RAND_FREECTX, (void (*)(void))drbg_hash_free },
567
    { OSSL_FUNC_RAND_INSTANTIATE,
568
        (void (*)(void))drbg_hash_instantiate_wrapper },
569
    { OSSL_FUNC_RAND_UNINSTANTIATE,
570
        (void (*)(void))drbg_hash_uninstantiate_wrapper },
571
    { OSSL_FUNC_RAND_GENERATE, (void (*)(void))drbg_hash_generate_wrapper },
572
    { OSSL_FUNC_RAND_RESEED, (void (*)(void))drbg_hash_reseed_wrapper },
573
    { OSSL_FUNC_RAND_ENABLE_LOCKING, (void (*)(void))ossl_drbg_enable_locking },
574
    { OSSL_FUNC_RAND_LOCK, (void (*)(void))ossl_drbg_lock },
575
    { OSSL_FUNC_RAND_UNLOCK, (void (*)(void))ossl_drbg_unlock },
576
    { OSSL_FUNC_RAND_SETTABLE_CTX_PARAMS,
577
        (void (*)(void))drbg_hash_settable_ctx_params },
578
    { OSSL_FUNC_RAND_SET_CTX_PARAMS, (void (*)(void))drbg_hash_set_ctx_params },
579
    { OSSL_FUNC_RAND_GETTABLE_CTX_PARAMS,
580
        (void (*)(void))drbg_hash_gettable_ctx_params },
581
    { OSSL_FUNC_RAND_GET_CTX_PARAMS, (void (*)(void))drbg_hash_get_ctx_params },
582
    { OSSL_FUNC_RAND_VERIFY_ZEROIZATION,
583
        (void (*)(void))drbg_hash_verify_zeroization },
584
    { OSSL_FUNC_RAND_GET_SEED, (void (*)(void))ossl_drbg_get_seed },
585
    { OSSL_FUNC_RAND_CLEAR_SEED, (void (*)(void))ossl_drbg_clear_seed },
586
    OSSL_DISPATCH_END
587
};