1e1051a39Sopenharmony_ci/*
2e1051a39Sopenharmony_ci * Copyright 2016-2021 The OpenSSL Project Authors. All Rights Reserved.
3e1051a39Sopenharmony_ci *
4e1051a39Sopenharmony_ci * Licensed under the Apache License 2.0 (the "License").  You may not use
5e1051a39Sopenharmony_ci * this file except in compliance with the License.  You can obtain a copy
6e1051a39Sopenharmony_ci * in the file LICENSE in the source distribution or at
7e1051a39Sopenharmony_ci * https://www.openssl.org/source/license.html
8e1051a39Sopenharmony_ci */
9e1051a39Sopenharmony_ci
10e1051a39Sopenharmony_ci/*
11e1051a39Sopenharmony_ci * Derived from the BLAKE2 reference implementation written by Samuel Neves.
12e1051a39Sopenharmony_ci * Copyright 2012, Samuel Neves <sneves@dei.uc.pt>
13e1051a39Sopenharmony_ci * More information about the BLAKE2 hash function and its implementations
14e1051a39Sopenharmony_ci * can be found at https://blake2.net.
15e1051a39Sopenharmony_ci */
16e1051a39Sopenharmony_ci
17e1051a39Sopenharmony_ci#include <assert.h>
18e1051a39Sopenharmony_ci#include <string.h>
19e1051a39Sopenharmony_ci#include <openssl/crypto.h>
20e1051a39Sopenharmony_ci#include "blake2_impl.h"
21e1051a39Sopenharmony_ci#include "prov/blake2.h"
22e1051a39Sopenharmony_ci
23e1051a39Sopenharmony_cistatic const uint64_t blake2b_IV[8] =
24e1051a39Sopenharmony_ci{
25e1051a39Sopenharmony_ci    0x6a09e667f3bcc908ULL, 0xbb67ae8584caa73bULL,
26e1051a39Sopenharmony_ci    0x3c6ef372fe94f82bULL, 0xa54ff53a5f1d36f1ULL,
27e1051a39Sopenharmony_ci    0x510e527fade682d1ULL, 0x9b05688c2b3e6c1fULL,
28e1051a39Sopenharmony_ci    0x1f83d9abfb41bd6bULL, 0x5be0cd19137e2179ULL
29e1051a39Sopenharmony_ci};
30e1051a39Sopenharmony_ci
31e1051a39Sopenharmony_cistatic const uint8_t blake2b_sigma[12][16] =
32e1051a39Sopenharmony_ci{
33e1051a39Sopenharmony_ci    {  0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14, 15 } ,
34e1051a39Sopenharmony_ci    { 14, 10,  4,  8,  9, 15, 13,  6,  1, 12,  0,  2, 11,  7,  5,  3 } ,
35e1051a39Sopenharmony_ci    { 11,  8, 12,  0,  5,  2, 15, 13, 10, 14,  3,  6,  7,  1,  9,  4 } ,
36e1051a39Sopenharmony_ci    {  7,  9,  3,  1, 13, 12, 11, 14,  2,  6,  5, 10,  4,  0, 15,  8 } ,
37e1051a39Sopenharmony_ci    {  9,  0,  5,  7,  2,  4, 10, 15, 14,  1, 11, 12,  6,  8,  3, 13 } ,
38e1051a39Sopenharmony_ci    {  2, 12,  6, 10,  0, 11,  8,  3,  4, 13,  7,  5, 15, 14,  1,  9 } ,
39e1051a39Sopenharmony_ci    { 12,  5,  1, 15, 14, 13,  4, 10,  0,  7,  6,  3,  9,  2,  8, 11 } ,
40e1051a39Sopenharmony_ci    { 13, 11,  7, 14, 12,  1,  3,  9,  5,  0, 15,  4,  8,  6,  2, 10 } ,
41e1051a39Sopenharmony_ci    {  6, 15, 14,  9, 11,  3,  0,  8, 12,  2, 13,  7,  1,  4, 10,  5 } ,
42e1051a39Sopenharmony_ci    { 10,  2,  8,  4,  7,  6,  1,  5, 15, 11,  9, 14,  3, 12, 13 , 0 } ,
43e1051a39Sopenharmony_ci    {  0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14, 15 } ,
44e1051a39Sopenharmony_ci    { 14, 10,  4,  8,  9, 15, 13,  6,  1, 12,  0,  2, 11,  7,  5,  3 }
45e1051a39Sopenharmony_ci};
46e1051a39Sopenharmony_ci
47e1051a39Sopenharmony_ci/* Set that it's the last block we'll compress */
48e1051a39Sopenharmony_cistatic ossl_inline void blake2b_set_lastblock(BLAKE2B_CTX *S)
49e1051a39Sopenharmony_ci{
50e1051a39Sopenharmony_ci    S->f[0] = -1;
51e1051a39Sopenharmony_ci}
52e1051a39Sopenharmony_ci
53e1051a39Sopenharmony_ci/* Initialize the hashing state. */
54e1051a39Sopenharmony_cistatic ossl_inline void blake2b_init0(BLAKE2B_CTX *S)
55e1051a39Sopenharmony_ci{
56e1051a39Sopenharmony_ci    int i;
57e1051a39Sopenharmony_ci
58e1051a39Sopenharmony_ci    memset(S, 0, sizeof(BLAKE2B_CTX));
59e1051a39Sopenharmony_ci    for (i = 0; i < 8; ++i) {
60e1051a39Sopenharmony_ci        S->h[i] = blake2b_IV[i];
61e1051a39Sopenharmony_ci    }
62e1051a39Sopenharmony_ci}
63e1051a39Sopenharmony_ci
64e1051a39Sopenharmony_ci/* init xors IV with input parameter block and sets the output length */
65e1051a39Sopenharmony_cistatic void blake2b_init_param(BLAKE2B_CTX *S, const BLAKE2B_PARAM *P)
66e1051a39Sopenharmony_ci{
67e1051a39Sopenharmony_ci    size_t i;
68e1051a39Sopenharmony_ci    const uint8_t *p = (const uint8_t *)(P);
69e1051a39Sopenharmony_ci
70e1051a39Sopenharmony_ci    blake2b_init0(S);
71e1051a39Sopenharmony_ci    S->outlen = P->digest_length;
72e1051a39Sopenharmony_ci
73e1051a39Sopenharmony_ci    /* The param struct is carefully hand packed, and should be 64 bytes on
74e1051a39Sopenharmony_ci     * every platform. */
75e1051a39Sopenharmony_ci    assert(sizeof(BLAKE2B_PARAM) == 64);
76e1051a39Sopenharmony_ci    /* IV XOR ParamBlock */
77e1051a39Sopenharmony_ci    for (i = 0; i < 8; ++i) {
78e1051a39Sopenharmony_ci        S->h[i] ^= load64(p + sizeof(S->h[i]) * i);
79e1051a39Sopenharmony_ci    }
80e1051a39Sopenharmony_ci}
81e1051a39Sopenharmony_ci
82e1051a39Sopenharmony_ci/* Initialize the parameter block with default values */
83e1051a39Sopenharmony_civoid ossl_blake2b_param_init(BLAKE2B_PARAM *P)
84e1051a39Sopenharmony_ci{
85e1051a39Sopenharmony_ci    P->digest_length = BLAKE2B_DIGEST_LENGTH;
86e1051a39Sopenharmony_ci    P->key_length    = 0;
87e1051a39Sopenharmony_ci    P->fanout        = 1;
88e1051a39Sopenharmony_ci    P->depth         = 1;
89e1051a39Sopenharmony_ci    store32(P->leaf_length, 0);
90e1051a39Sopenharmony_ci    store64(P->node_offset, 0);
91e1051a39Sopenharmony_ci    P->node_depth    = 0;
92e1051a39Sopenharmony_ci    P->inner_length  = 0;
93e1051a39Sopenharmony_ci    memset(P->reserved, 0, sizeof(P->reserved));
94e1051a39Sopenharmony_ci    memset(P->salt,     0, sizeof(P->salt));
95e1051a39Sopenharmony_ci    memset(P->personal, 0, sizeof(P->personal));
96e1051a39Sopenharmony_ci}
97e1051a39Sopenharmony_ci
98e1051a39Sopenharmony_civoid ossl_blake2b_param_set_digest_length(BLAKE2B_PARAM *P, uint8_t outlen)
99e1051a39Sopenharmony_ci{
100e1051a39Sopenharmony_ci    P->digest_length = outlen;
101e1051a39Sopenharmony_ci}
102e1051a39Sopenharmony_ci
103e1051a39Sopenharmony_civoid ossl_blake2b_param_set_key_length(BLAKE2B_PARAM *P, uint8_t keylen)
104e1051a39Sopenharmony_ci{
105e1051a39Sopenharmony_ci    P->key_length = keylen;
106e1051a39Sopenharmony_ci}
107e1051a39Sopenharmony_ci
108e1051a39Sopenharmony_civoid ossl_blake2b_param_set_personal(BLAKE2B_PARAM *P, const uint8_t *personal,
109e1051a39Sopenharmony_ci                                     size_t len)
110e1051a39Sopenharmony_ci{
111e1051a39Sopenharmony_ci    memcpy(P->personal, personal, len);
112e1051a39Sopenharmony_ci    memset(P->personal + len, 0, BLAKE2B_PERSONALBYTES - len);
113e1051a39Sopenharmony_ci}
114e1051a39Sopenharmony_ci
115e1051a39Sopenharmony_civoid ossl_blake2b_param_set_salt(BLAKE2B_PARAM *P, const uint8_t *salt,
116e1051a39Sopenharmony_ci                                 size_t len)
117e1051a39Sopenharmony_ci{
118e1051a39Sopenharmony_ci    memcpy(P->salt, salt, len);
119e1051a39Sopenharmony_ci    memset(P->salt + len, 0, BLAKE2B_SALTBYTES - len);
120e1051a39Sopenharmony_ci}
121e1051a39Sopenharmony_ci
122e1051a39Sopenharmony_ci/*
123e1051a39Sopenharmony_ci * Initialize the hashing context with the given parameter block.
124e1051a39Sopenharmony_ci * Always returns 1.
125e1051a39Sopenharmony_ci */
126e1051a39Sopenharmony_ciint ossl_blake2b_init(BLAKE2B_CTX *c, const BLAKE2B_PARAM *P)
127e1051a39Sopenharmony_ci{
128e1051a39Sopenharmony_ci    blake2b_init_param(c, P);
129e1051a39Sopenharmony_ci    return 1;
130e1051a39Sopenharmony_ci}
131e1051a39Sopenharmony_ci
132e1051a39Sopenharmony_ci/*
133e1051a39Sopenharmony_ci * Initialize the hashing context with the given parameter block and key.
134e1051a39Sopenharmony_ci * Always returns 1.
135e1051a39Sopenharmony_ci */
136e1051a39Sopenharmony_ciint ossl_blake2b_init_key(BLAKE2B_CTX *c, const BLAKE2B_PARAM *P,
137e1051a39Sopenharmony_ci                          const void *key)
138e1051a39Sopenharmony_ci{
139e1051a39Sopenharmony_ci    blake2b_init_param(c, P);
140e1051a39Sopenharmony_ci
141e1051a39Sopenharmony_ci    /* Pad the key to form first data block */
142e1051a39Sopenharmony_ci    {
143e1051a39Sopenharmony_ci        uint8_t block[BLAKE2B_BLOCKBYTES] = {0};
144e1051a39Sopenharmony_ci
145e1051a39Sopenharmony_ci        memcpy(block, key, P->key_length);
146e1051a39Sopenharmony_ci        ossl_blake2b_update(c, block, BLAKE2B_BLOCKBYTES);
147e1051a39Sopenharmony_ci        OPENSSL_cleanse(block, BLAKE2B_BLOCKBYTES);
148e1051a39Sopenharmony_ci    }
149e1051a39Sopenharmony_ci
150e1051a39Sopenharmony_ci    return 1;
151e1051a39Sopenharmony_ci}
152e1051a39Sopenharmony_ci
153e1051a39Sopenharmony_ci/* Permute the state while xoring in the block of data. */
154e1051a39Sopenharmony_cistatic void blake2b_compress(BLAKE2B_CTX *S,
155e1051a39Sopenharmony_ci                            const uint8_t *blocks,
156e1051a39Sopenharmony_ci                            size_t len)
157e1051a39Sopenharmony_ci{
158e1051a39Sopenharmony_ci    uint64_t m[16];
159e1051a39Sopenharmony_ci    uint64_t v[16];
160e1051a39Sopenharmony_ci    int i;
161e1051a39Sopenharmony_ci    size_t increment;
162e1051a39Sopenharmony_ci
163e1051a39Sopenharmony_ci    /*
164e1051a39Sopenharmony_ci     * There are two distinct usage vectors for this function:
165e1051a39Sopenharmony_ci     *
166e1051a39Sopenharmony_ci     * a) BLAKE2b_Update uses it to process complete blocks,
167e1051a39Sopenharmony_ci     *    possibly more than one at a time;
168e1051a39Sopenharmony_ci     *
169e1051a39Sopenharmony_ci     * b) BLAK2b_Final uses it to process last block, always
170e1051a39Sopenharmony_ci     *    single but possibly incomplete, in which case caller
171e1051a39Sopenharmony_ci     *    pads input with zeros.
172e1051a39Sopenharmony_ci     */
173e1051a39Sopenharmony_ci    assert(len < BLAKE2B_BLOCKBYTES || len % BLAKE2B_BLOCKBYTES == 0);
174e1051a39Sopenharmony_ci
175e1051a39Sopenharmony_ci    /*
176e1051a39Sopenharmony_ci     * Since last block is always processed with separate call,
177e1051a39Sopenharmony_ci     * |len| not being multiple of complete blocks can be observed
178e1051a39Sopenharmony_ci     * only with |len| being less than BLAKE2B_BLOCKBYTES ("less"
179e1051a39Sopenharmony_ci     * including even zero), which is why following assignment doesn't
180e1051a39Sopenharmony_ci     * have to reside inside the main loop below.
181e1051a39Sopenharmony_ci     */
182e1051a39Sopenharmony_ci    increment = len < BLAKE2B_BLOCKBYTES ? len : BLAKE2B_BLOCKBYTES;
183e1051a39Sopenharmony_ci
184e1051a39Sopenharmony_ci    for (i = 0; i < 8; ++i) {
185e1051a39Sopenharmony_ci        v[i] = S->h[i];
186e1051a39Sopenharmony_ci    }
187e1051a39Sopenharmony_ci
188e1051a39Sopenharmony_ci    do {
189e1051a39Sopenharmony_ci        for (i = 0; i < 16; ++i) {
190e1051a39Sopenharmony_ci            m[i] = load64(blocks + i * sizeof(m[i]));
191e1051a39Sopenharmony_ci        }
192e1051a39Sopenharmony_ci
193e1051a39Sopenharmony_ci        /* blake2b_increment_counter */
194e1051a39Sopenharmony_ci        S->t[0] += increment;
195e1051a39Sopenharmony_ci        S->t[1] += (S->t[0] < increment);
196e1051a39Sopenharmony_ci
197e1051a39Sopenharmony_ci        v[8]  = blake2b_IV[0];
198e1051a39Sopenharmony_ci        v[9]  = blake2b_IV[1];
199e1051a39Sopenharmony_ci        v[10] = blake2b_IV[2];
200e1051a39Sopenharmony_ci        v[11] = blake2b_IV[3];
201e1051a39Sopenharmony_ci        v[12] = S->t[0] ^ blake2b_IV[4];
202e1051a39Sopenharmony_ci        v[13] = S->t[1] ^ blake2b_IV[5];
203e1051a39Sopenharmony_ci        v[14] = S->f[0] ^ blake2b_IV[6];
204e1051a39Sopenharmony_ci        v[15] = S->f[1] ^ blake2b_IV[7];
205e1051a39Sopenharmony_ci#define G(r,i,a,b,c,d) \
206e1051a39Sopenharmony_ci        do { \
207e1051a39Sopenharmony_ci            a = a + b + m[blake2b_sigma[r][2*i+0]]; \
208e1051a39Sopenharmony_ci            d = rotr64(d ^ a, 32); \
209e1051a39Sopenharmony_ci            c = c + d; \
210e1051a39Sopenharmony_ci            b = rotr64(b ^ c, 24); \
211e1051a39Sopenharmony_ci            a = a + b + m[blake2b_sigma[r][2*i+1]]; \
212e1051a39Sopenharmony_ci            d = rotr64(d ^ a, 16); \
213e1051a39Sopenharmony_ci            c = c + d; \
214e1051a39Sopenharmony_ci            b = rotr64(b ^ c, 63); \
215e1051a39Sopenharmony_ci        } while (0)
216e1051a39Sopenharmony_ci#define ROUND(r)  \
217e1051a39Sopenharmony_ci        do { \
218e1051a39Sopenharmony_ci            G(r,0,v[ 0],v[ 4],v[ 8],v[12]); \
219e1051a39Sopenharmony_ci            G(r,1,v[ 1],v[ 5],v[ 9],v[13]); \
220e1051a39Sopenharmony_ci            G(r,2,v[ 2],v[ 6],v[10],v[14]); \
221e1051a39Sopenharmony_ci            G(r,3,v[ 3],v[ 7],v[11],v[15]); \
222e1051a39Sopenharmony_ci            G(r,4,v[ 0],v[ 5],v[10],v[15]); \
223e1051a39Sopenharmony_ci            G(r,5,v[ 1],v[ 6],v[11],v[12]); \
224e1051a39Sopenharmony_ci            G(r,6,v[ 2],v[ 7],v[ 8],v[13]); \
225e1051a39Sopenharmony_ci            G(r,7,v[ 3],v[ 4],v[ 9],v[14]); \
226e1051a39Sopenharmony_ci        } while (0)
227e1051a39Sopenharmony_ci#if defined(OPENSSL_SMALL_FOOTPRINT)
228e1051a39Sopenharmony_ci        /* 3x size reduction on x86_64, almost 7x on ARMv8, 9x on ARMv4 */
229e1051a39Sopenharmony_ci        for (i = 0; i < 12; i++) {
230e1051a39Sopenharmony_ci            ROUND(i);
231e1051a39Sopenharmony_ci        }
232e1051a39Sopenharmony_ci#else
233e1051a39Sopenharmony_ci        ROUND(0);
234e1051a39Sopenharmony_ci        ROUND(1);
235e1051a39Sopenharmony_ci        ROUND(2);
236e1051a39Sopenharmony_ci        ROUND(3);
237e1051a39Sopenharmony_ci        ROUND(4);
238e1051a39Sopenharmony_ci        ROUND(5);
239e1051a39Sopenharmony_ci        ROUND(6);
240e1051a39Sopenharmony_ci        ROUND(7);
241e1051a39Sopenharmony_ci        ROUND(8);
242e1051a39Sopenharmony_ci        ROUND(9);
243e1051a39Sopenharmony_ci        ROUND(10);
244e1051a39Sopenharmony_ci        ROUND(11);
245e1051a39Sopenharmony_ci#endif
246e1051a39Sopenharmony_ci
247e1051a39Sopenharmony_ci        for (i = 0; i < 8; ++i) {
248e1051a39Sopenharmony_ci            S->h[i] = v[i] ^= v[i + 8] ^ S->h[i];
249e1051a39Sopenharmony_ci        }
250e1051a39Sopenharmony_ci#undef G
251e1051a39Sopenharmony_ci#undef ROUND
252e1051a39Sopenharmony_ci        blocks += increment;
253e1051a39Sopenharmony_ci        len -= increment;
254e1051a39Sopenharmony_ci    } while (len);
255e1051a39Sopenharmony_ci}
256e1051a39Sopenharmony_ci
257e1051a39Sopenharmony_ci/* Absorb the input data into the hash state.  Always returns 1. */
258e1051a39Sopenharmony_ciint ossl_blake2b_update(BLAKE2B_CTX *c, const void *data, size_t datalen)
259e1051a39Sopenharmony_ci{
260e1051a39Sopenharmony_ci    const uint8_t *in = data;
261e1051a39Sopenharmony_ci    size_t fill;
262e1051a39Sopenharmony_ci
263e1051a39Sopenharmony_ci    /*
264e1051a39Sopenharmony_ci     * Intuitively one would expect intermediate buffer, c->buf, to
265e1051a39Sopenharmony_ci     * store incomplete blocks. But in this case we are interested to
266e1051a39Sopenharmony_ci     * temporarily stash even complete blocks, because last one in the
267e1051a39Sopenharmony_ci     * stream has to be treated in special way, and at this point we
268e1051a39Sopenharmony_ci     * don't know if last block in *this* call is last one "ever". This
269e1051a39Sopenharmony_ci     * is the reason for why |datalen| is compared as >, and not >=.
270e1051a39Sopenharmony_ci     */
271e1051a39Sopenharmony_ci    fill = sizeof(c->buf) - c->buflen;
272e1051a39Sopenharmony_ci    if (datalen > fill) {
273e1051a39Sopenharmony_ci        if (c->buflen) {
274e1051a39Sopenharmony_ci            memcpy(c->buf + c->buflen, in, fill); /* Fill buffer */
275e1051a39Sopenharmony_ci            blake2b_compress(c, c->buf, BLAKE2B_BLOCKBYTES);
276e1051a39Sopenharmony_ci            c->buflen = 0;
277e1051a39Sopenharmony_ci            in += fill;
278e1051a39Sopenharmony_ci            datalen -= fill;
279e1051a39Sopenharmony_ci        }
280e1051a39Sopenharmony_ci        if (datalen > BLAKE2B_BLOCKBYTES) {
281e1051a39Sopenharmony_ci            size_t stashlen = datalen % BLAKE2B_BLOCKBYTES;
282e1051a39Sopenharmony_ci            /*
283e1051a39Sopenharmony_ci             * If |datalen| is a multiple of the blocksize, stash
284e1051a39Sopenharmony_ci             * last complete block, it can be final one...
285e1051a39Sopenharmony_ci             */
286e1051a39Sopenharmony_ci            stashlen = stashlen ? stashlen : BLAKE2B_BLOCKBYTES;
287e1051a39Sopenharmony_ci            datalen -= stashlen;
288e1051a39Sopenharmony_ci            blake2b_compress(c, in, datalen);
289e1051a39Sopenharmony_ci            in += datalen;
290e1051a39Sopenharmony_ci            datalen = stashlen;
291e1051a39Sopenharmony_ci        }
292e1051a39Sopenharmony_ci    }
293e1051a39Sopenharmony_ci
294e1051a39Sopenharmony_ci    assert(datalen <= BLAKE2B_BLOCKBYTES);
295e1051a39Sopenharmony_ci
296e1051a39Sopenharmony_ci    memcpy(c->buf + c->buflen, in, datalen);
297e1051a39Sopenharmony_ci    c->buflen += datalen; /* Be lazy, do not compress */
298e1051a39Sopenharmony_ci
299e1051a39Sopenharmony_ci    return 1;
300e1051a39Sopenharmony_ci}
301e1051a39Sopenharmony_ci
302e1051a39Sopenharmony_ci/*
303e1051a39Sopenharmony_ci * Calculate the final hash and save it in md.
304e1051a39Sopenharmony_ci * Always returns 1.
305e1051a39Sopenharmony_ci */
306e1051a39Sopenharmony_ciint ossl_blake2b_final(unsigned char *md, BLAKE2B_CTX *c)
307e1051a39Sopenharmony_ci{
308e1051a39Sopenharmony_ci    uint8_t outbuffer[BLAKE2B_OUTBYTES] = {0};
309e1051a39Sopenharmony_ci    uint8_t *target = outbuffer;
310e1051a39Sopenharmony_ci    int iter = (c->outlen + 7) / 8;
311e1051a39Sopenharmony_ci    int i;
312e1051a39Sopenharmony_ci
313e1051a39Sopenharmony_ci    /* Avoid writing to the temporary buffer if possible */
314e1051a39Sopenharmony_ci    if ((c->outlen % sizeof(c->h[0])) == 0)
315e1051a39Sopenharmony_ci        target = md;
316e1051a39Sopenharmony_ci
317e1051a39Sopenharmony_ci    blake2b_set_lastblock(c);
318e1051a39Sopenharmony_ci    /* Padding */
319e1051a39Sopenharmony_ci    memset(c->buf + c->buflen, 0, sizeof(c->buf) - c->buflen);
320e1051a39Sopenharmony_ci    blake2b_compress(c, c->buf, c->buflen);
321e1051a39Sopenharmony_ci
322e1051a39Sopenharmony_ci    /* Output full hash to buffer */
323e1051a39Sopenharmony_ci    for (i = 0; i < iter; ++i)
324e1051a39Sopenharmony_ci        store64(target + sizeof(c->h[i]) * i, c->h[i]);
325e1051a39Sopenharmony_ci
326e1051a39Sopenharmony_ci    if (target != md)
327e1051a39Sopenharmony_ci        memcpy(md, target, c->outlen);
328e1051a39Sopenharmony_ci
329e1051a39Sopenharmony_ci    OPENSSL_cleanse(c, sizeof(BLAKE2B_CTX));
330e1051a39Sopenharmony_ci    return 1;
331e1051a39Sopenharmony_ci}
332