Coverage Report

Created: 2026-07-23 06:28

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl36/crypto/slh_dsa/slh_hash.c
Line
Count
Source
1
/*
2
 * Copyright 2024-2025 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 "internal/deprecated.h" /* PKCS1_MGF1() */
11
12
#include <string.h>
13
#include <openssl/evp.h>
14
#include <openssl/core_names.h>
15
#include <openssl/rsa.h> /* PKCS1_MGF1() */
16
#include "slh_dsa_local.h"
17
#include "slh_dsa_key.h"
18
19
#define MAX_DIGEST_SIZE 64 /* SHA-512 is used for security category 3 & 5 */
20
21
static OSSL_SLH_HASHFUNC_H_MSG slh_hmsg_sha2;
22
static OSSL_SLH_HASHFUNC_PRF slh_prf_sha2;
23
static OSSL_SLH_HASHFUNC_PRF_MSG slh_prf_msg_sha2;
24
static OSSL_SLH_HASHFUNC_F slh_f_sha2;
25
static OSSL_SLH_HASHFUNC_H slh_h_sha2;
26
static OSSL_SLH_HASHFUNC_T slh_t_sha2;
27
28
static OSSL_SLH_HASHFUNC_H_MSG slh_hmsg_shake;
29
static OSSL_SLH_HASHFUNC_PRF slh_prf_shake;
30
static OSSL_SLH_HASHFUNC_PRF_MSG slh_prf_msg_shake;
31
static OSSL_SLH_HASHFUNC_F slh_f_shake;
32
static OSSL_SLH_HASHFUNC_H slh_h_shake;
33
static OSSL_SLH_HASHFUNC_T slh_t_shake;
34
35
static ossl_inline int xof_digest_3(EVP_MD_CTX *ctx,
36
    const uint8_t *in1, size_t in1_len,
37
    const uint8_t *in2, size_t in2_len,
38
    const uint8_t *in3, size_t in3_len,
39
    uint8_t *out, size_t out_len)
40
300M
{
41
300M
    return (EVP_DigestInit_ex2(ctx, NULL, NULL) == 1
42
300M
        && EVP_DigestUpdate(ctx, in1, in1_len) == 1
43
300M
        && EVP_DigestUpdate(ctx, in2, in2_len) == 1
44
300M
        && EVP_DigestUpdate(ctx, in3, in3_len) == 1
45
300M
        && EVP_DigestFinalXOF(ctx, out, out_len) == 1);
46
300M
}
47
48
static ossl_inline int xof_digest_4(EVP_MD_CTX *ctx,
49
    const uint8_t *in1, size_t in1_len,
50
    const uint8_t *in2, size_t in2_len,
51
    const uint8_t *in3, size_t in3_len,
52
    const uint8_t *in4, size_t in4_len,
53
    uint8_t *out, size_t out_len)
54
22.2M
{
55
22.2M
    return (EVP_DigestInit_ex2(ctx, NULL, NULL) == 1
56
22.2M
        && EVP_DigestUpdate(ctx, in1, in1_len) == 1
57
22.2M
        && EVP_DigestUpdate(ctx, in2, in2_len) == 1
58
22.2M
        && EVP_DigestUpdate(ctx, in3, in3_len) == 1
59
22.2M
        && EVP_DigestUpdate(ctx, in4, in4_len) == 1
60
22.2M
        && EVP_DigestFinalXOF(ctx, out, out_len) == 1);
61
22.2M
}
62
63
/* See FIPS 205 Section 11.1 */
64
static int
65
slh_hmsg_shake(SLH_DSA_HASH_CTX *ctx, const uint8_t *r,
66
    const uint8_t *pk_seed, const uint8_t *pk_root,
67
    const uint8_t *msg, size_t msg_len,
68
    uint8_t *out, size_t out_len)
69
422
{
70
422
    const SLH_DSA_PARAMS *params = ctx->key->params;
71
422
    size_t m = params->m;
72
422
    size_t n = params->n;
73
74
422
    return xof_digest_4(ctx->md_ctx, r, n, pk_seed, n, pk_root, n,
75
422
        msg, msg_len, out, m);
76
422
}
77
78
static int
79
slh_prf_shake(SLH_DSA_HASH_CTX *ctx,
80
    const uint8_t *pk_seed, const uint8_t *sk_seed,
81
    const uint8_t *adrs, uint8_t *out, size_t out_len)
82
37.7M
{
83
37.7M
    const SLH_DSA_PARAMS *params = ctx->key->params;
84
37.7M
    size_t n = params->n;
85
86
37.7M
    return xof_digest_3(ctx->md_ctx, pk_seed, n, adrs, SLH_ADRS_SIZE,
87
37.7M
        sk_seed, n, out, n);
88
37.7M
}
89
90
static int
91
slh_prf_msg_shake(SLH_DSA_HASH_CTX *ctx, const uint8_t *sk_prf,
92
    const uint8_t *opt_rand, const uint8_t *msg, size_t msg_len,
93
    WPACKET *pkt)
94
211
{
95
211
    unsigned char out[SLH_MAX_N];
96
211
    const SLH_DSA_PARAMS *params = ctx->key->params;
97
211
    size_t n = params->n;
98
99
211
    return xof_digest_3(ctx->md_ctx, sk_prf, n, opt_rand, n, msg, msg_len, out, n)
100
211
        && WPACKET_memcpy(pkt, out, n);
101
211
}
102
103
static int
104
slh_f_shake(SLH_DSA_HASH_CTX *ctx, const uint8_t *pk_seed, const uint8_t *adrs,
105
    const uint8_t *m1, size_t m1_len, uint8_t *out, size_t out_len)
106
261M
{
107
261M
    const SLH_DSA_PARAMS *params = ctx->key->params;
108
261M
    size_t n = params->n;
109
110
261M
    return xof_digest_3(ctx->md_ctx, pk_seed, n, adrs, SLH_ADRS_SIZE, m1, m1_len, out, n);
111
261M
}
112
113
static int
114
slh_h_shake(SLH_DSA_HASH_CTX *ctx, const uint8_t *pk_seed, const uint8_t *adrs,
115
    const uint8_t *m1, const uint8_t *m2, uint8_t *out, size_t out_len)
116
22.2M
{
117
22.2M
    const SLH_DSA_PARAMS *params = ctx->key->params;
118
22.2M
    size_t n = params->n;
119
120
22.2M
    return xof_digest_4(ctx->md_ctx, pk_seed, n, adrs, SLH_ADRS_SIZE, m1, n, m2, n, out, n);
121
22.2M
}
122
123
static int
124
slh_t_shake(SLH_DSA_HASH_CTX *ctx, const uint8_t *pk_seed, const uint8_t *adrs,
125
    const uint8_t *ml, size_t ml_len, uint8_t *out, size_t out_len)
126
309k
{
127
309k
    const SLH_DSA_PARAMS *params = ctx->key->params;
128
309k
    size_t n = params->n;
129
130
309k
    return xof_digest_3(ctx->md_ctx, pk_seed, n, adrs, SLH_ADRS_SIZE, ml, ml_len, out, n);
131
309k
}
132
133
static ossl_inline int
134
digest_4(EVP_MD_CTX *ctx,
135
    const uint8_t *in1, size_t in1_len, const uint8_t *in2, size_t in2_len,
136
    const uint8_t *in3, size_t in3_len, const uint8_t *in4, size_t in4_len,
137
    uint8_t *out)
138
423M
{
139
423M
    return (EVP_DigestInit_ex2(ctx, NULL, NULL) == 1
140
423M
        && EVP_DigestUpdate(ctx, in1, in1_len) == 1
141
423M
        && EVP_DigestUpdate(ctx, in2, in2_len) == 1
142
423M
        && EVP_DigestUpdate(ctx, in3, in3_len) == 1
143
423M
        && EVP_DigestUpdate(ctx, in4, in4_len) == 1
144
423M
        && EVP_DigestFinal_ex(ctx, out, NULL) == 1);
145
423M
}
146
147
/* FIPS 205 Section 11.2.1 and 11.2.2 */
148
149
static int
150
slh_hmsg_sha2(SLH_DSA_HASH_CTX *hctx, const uint8_t *r, const uint8_t *pk_seed,
151
    const uint8_t *pk_root, const uint8_t *msg, size_t msg_len,
152
    uint8_t *out, size_t out_len)
153
910
{
154
910
    const SLH_DSA_PARAMS *params = hctx->key->params;
155
910
    size_t m = params->m;
156
910
    size_t n = params->n;
157
910
    uint8_t seed[2 * SLH_MAX_N + MAX_DIGEST_SIZE];
158
910
    int sz = EVP_MD_get_size(hctx->key->md_big);
159
910
    size_t seed_len = (size_t)sz + 2 * n;
160
161
910
    if (sz <= 0)
162
0
        return 0;
163
164
910
    memcpy(seed, r, n);
165
910
    memcpy(seed + n, pk_seed, n);
166
910
    return digest_4(hctx->md_big_ctx, r, n, pk_seed, n, pk_root, n, msg, msg_len,
167
910
               seed + 2 * n)
168
910
        && (PKCS1_MGF1(out, (long)m, seed, (long)seed_len, hctx->key->md_big) == 0);
169
910
}
170
171
static int
172
slh_prf_msg_sha2(SLH_DSA_HASH_CTX *hctx,
173
    const uint8_t *sk_prf, const uint8_t *opt_rand,
174
    const uint8_t *msg, size_t msg_len, WPACKET *pkt)
175
455
{
176
455
    int ret;
177
455
    const SLH_DSA_KEY *key = hctx->key;
178
455
    EVP_MAC_CTX *mctx = hctx->hmac_ctx;
179
455
    const SLH_DSA_PARAMS *prms = key->params;
180
455
    size_t n = prms->n;
181
455
    uint8_t mac[MAX_DIGEST_SIZE] = { 0 };
182
455
    OSSL_PARAM *p = NULL;
183
455
    OSSL_PARAM params[3];
184
185
    /*
186
     * Due to the way HMAC works, it is not possible to do this code early
187
     * in hmac_ctx_new() since it requires a key in order to set the digest.
188
     * So we do a lazy update here on the first call.
189
     */
190
455
    if (hctx->hmac_digest_used == 0) {
191
455
        p = params;
192
        /* The underlying digest to be used */
193
455
        *p++ = OSSL_PARAM_construct_utf8_string(OSSL_MAC_PARAM_DIGEST,
194
455
            (char *)EVP_MD_get0_name(key->md_big), 0);
195
455
        if (key->propq != NULL)
196
0
            *p++ = OSSL_PARAM_construct_utf8_string(OSSL_MAC_PARAM_PROPERTIES,
197
0
                (char *)key->propq, 0);
198
455
        *p = OSSL_PARAM_construct_end();
199
455
        p = params;
200
455
        hctx->hmac_digest_used = 1;
201
455
    }
202
203
455
    ret = EVP_MAC_init(mctx, sk_prf, n, p) == 1
204
455
        && EVP_MAC_update(mctx, opt_rand, n) == 1
205
455
        && EVP_MAC_update(mctx, msg, msg_len) == 1
206
455
        && EVP_MAC_final(mctx, mac, NULL, sizeof(mac)) == 1
207
455
        && WPACKET_memcpy(pkt, mac, n); /* Truncate output to n bytes */
208
455
    return ret;
209
455
}
210
211
static ossl_inline int
212
do_hash(EVP_MD_CTX *ctx, size_t n, const uint8_t *pk_seed, const uint8_t *adrs,
213
    const uint8_t *m, size_t m_len, size_t b, uint8_t *out, size_t out_len)
214
423M
{
215
423M
    int ret;
216
423M
    uint8_t zeros[128] = { 0 };
217
423M
    uint8_t digest[MAX_DIGEST_SIZE];
218
219
423M
    ret = digest_4(ctx, pk_seed, n, zeros, b - n, adrs, SLH_ADRSC_SIZE,
220
423M
        m, m_len, digest);
221
    /* Truncated returned value is n = 16 bytes */
222
423M
    memcpy(out, digest, n);
223
423M
    return ret;
224
423M
}
225
226
static int
227
slh_prf_sha2(SLH_DSA_HASH_CTX *hctx, const uint8_t *pk_seed,
228
    const uint8_t *sk_seed, const uint8_t *adrs,
229
    uint8_t *out, size_t out_len)
230
43.6M
{
231
43.6M
    size_t n = hctx->key->params->n;
232
233
43.6M
    return do_hash(hctx->md_ctx, n, pk_seed, adrs, sk_seed, n,
234
43.6M
        OSSL_SLH_DSA_SHA2_NUM_ZEROS_H_AND_T_BOUND1, out, out_len);
235
43.6M
}
236
237
static int
238
slh_f_sha2(SLH_DSA_HASH_CTX *hctx, const uint8_t *pk_seed, const uint8_t *adrs,
239
    const uint8_t *m1, size_t m1_len, uint8_t *out, size_t out_len)
240
356M
{
241
356M
    return do_hash(hctx->md_ctx, hctx->key->params->n, pk_seed, adrs, m1, m1_len,
242
356M
        OSSL_SLH_DSA_SHA2_NUM_ZEROS_H_AND_T_BOUND1, out, out_len);
243
356M
}
244
245
static int
246
slh_h_sha2(SLH_DSA_HASH_CTX *hctx, const uint8_t *pk_seed, const uint8_t *adrs,
247
    const uint8_t *m1, const uint8_t *m2, uint8_t *out, size_t out_len)
248
22.1M
{
249
22.1M
    uint8_t m[SLH_MAX_N * 2];
250
22.1M
    const SLH_DSA_PARAMS *prms = hctx->key->params;
251
22.1M
    size_t n = prms->n;
252
253
22.1M
    memcpy(m, m1, n);
254
22.1M
    memcpy(m + n, m2, n);
255
22.1M
    return do_hash(hctx->md_big_ctx, n, pk_seed, adrs, m, 2 * n,
256
22.1M
        prms->sha2_h_and_t_bound, out, out_len);
257
22.1M
}
258
259
static int
260
slh_t_sha2(SLH_DSA_HASH_CTX *hctx, const uint8_t *pk_seed, const uint8_t *adrs,
261
    const uint8_t *ml, size_t ml_len, uint8_t *out, size_t out_len)
262
507k
{
263
507k
    const SLH_DSA_PARAMS *prms = hctx->key->params;
264
265
507k
    return do_hash(hctx->md_big_ctx, prms->n, pk_seed, adrs, ml, ml_len,
266
507k
        prms->sha2_h_and_t_bound, out, out_len);
267
507k
}
268
269
const SLH_HASH_FUNC *ossl_slh_get_hash_fn(int is_shake)
270
142k
{
271
142k
    static const SLH_HASH_FUNC methods[] = {
272
142k
        { slh_hmsg_shake,
273
142k
            slh_prf_shake,
274
142k
            slh_prf_msg_shake,
275
142k
            slh_f_shake,
276
142k
            slh_h_shake,
277
142k
            slh_t_shake },
278
142k
        { slh_hmsg_sha2,
279
142k
            slh_prf_sha2,
280
142k
            slh_prf_msg_sha2,
281
142k
            slh_f_sha2,
282
142k
            slh_h_sha2,
283
142k
            slh_t_sha2 }
284
142k
    };
285
142k
    return &methods[is_shake ? 0 : 1];
286
142k
}