1e1051a39Sopenharmony_ci/*
2e1051a39Sopenharmony_ci * Copyright 2018-2021 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 * See SP800-185 "Appendix A - KMAC, .... in Terms of Keccak[c]"
12e1051a39Sopenharmony_ci *
13e1051a39Sopenharmony_ci * Inputs are:
14e1051a39Sopenharmony_ci *    K = Key                  (len(K) < 2^2040 bits)
15e1051a39Sopenharmony_ci *    X = Input
16e1051a39Sopenharmony_ci *    L = Output length        (0 <= L < 2^2040 bits)
17e1051a39Sopenharmony_ci *    S = Customization String Default="" (len(S) < 2^2040 bits)
18e1051a39Sopenharmony_ci *
19e1051a39Sopenharmony_ci * KMAC128(K, X, L, S)
20e1051a39Sopenharmony_ci * {
21e1051a39Sopenharmony_ci *     newX = bytepad(encode_string(K), 168) ||  X || right_encode(L).
22e1051a39Sopenharmony_ci *     T = bytepad(encode_string("KMAC") || encode_string(S), 168).
23e1051a39Sopenharmony_ci *     return KECCAK[256](T || newX || 00, L).
24e1051a39Sopenharmony_ci * }
25e1051a39Sopenharmony_ci *
26e1051a39Sopenharmony_ci * KMAC256(K, X, L, S)
27e1051a39Sopenharmony_ci * {
28e1051a39Sopenharmony_ci *     newX = bytepad(encode_string(K), 136) ||  X || right_encode(L).
29e1051a39Sopenharmony_ci *     T = bytepad(encode_string("KMAC") || encode_string(S), 136).
30e1051a39Sopenharmony_ci *     return KECCAK[512](T || newX || 00, L).
31e1051a39Sopenharmony_ci * }
32e1051a39Sopenharmony_ci *
33e1051a39Sopenharmony_ci * KMAC128XOF(K, X, L, S)
34e1051a39Sopenharmony_ci * {
35e1051a39Sopenharmony_ci *     newX = bytepad(encode_string(K), 168) ||  X || right_encode(0).
36e1051a39Sopenharmony_ci *     T = bytepad(encode_string("KMAC") || encode_string(S), 168).
37e1051a39Sopenharmony_ci *     return KECCAK[256](T || newX || 00, L).
38e1051a39Sopenharmony_ci * }
39e1051a39Sopenharmony_ci *
40e1051a39Sopenharmony_ci * KMAC256XOF(K, X, L, S)
41e1051a39Sopenharmony_ci * {
42e1051a39Sopenharmony_ci *     newX = bytepad(encode_string(K), 136) ||  X || right_encode(0).
43e1051a39Sopenharmony_ci *     T = bytepad(encode_string("KMAC") || encode_string(S), 136).
44e1051a39Sopenharmony_ci *     return KECCAK[512](T || newX || 00, L).
45e1051a39Sopenharmony_ci * }
46e1051a39Sopenharmony_ci *
47e1051a39Sopenharmony_ci */
48e1051a39Sopenharmony_ci
49e1051a39Sopenharmony_ci#include <stdlib.h>
50e1051a39Sopenharmony_ci#include <string.h>
51e1051a39Sopenharmony_ci#include <openssl/core_dispatch.h>
52e1051a39Sopenharmony_ci#include <openssl/core_names.h>
53e1051a39Sopenharmony_ci#include <openssl/params.h>
54e1051a39Sopenharmony_ci#include <openssl/evp.h>
55e1051a39Sopenharmony_ci#include <openssl/err.h>
56e1051a39Sopenharmony_ci#include <openssl/proverr.h>
57e1051a39Sopenharmony_ci
58e1051a39Sopenharmony_ci#include "prov/implementations.h"
59e1051a39Sopenharmony_ci#include "prov/provider_ctx.h"
60e1051a39Sopenharmony_ci#include "prov/provider_util.h"
61e1051a39Sopenharmony_ci#include "prov/providercommon.h"
62e1051a39Sopenharmony_ci#include "internal/cryptlib.h" /* ossl_assert */
63e1051a39Sopenharmony_ci
64e1051a39Sopenharmony_ci/*
65e1051a39Sopenharmony_ci * Forward declaration of everything implemented here.  This is not strictly
66e1051a39Sopenharmony_ci * necessary for the compiler, but provides an assurance that the signatures
67e1051a39Sopenharmony_ci * of the functions in the dispatch table are correct.
68e1051a39Sopenharmony_ci */
69e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_newctx_fn kmac128_new;
70e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_newctx_fn kmac256_new;
71e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_dupctx_fn kmac_dup;
72e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_freectx_fn kmac_free;
73e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_gettable_ctx_params_fn kmac_gettable_ctx_params;
74e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_get_ctx_params_fn kmac_get_ctx_params;
75e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_settable_ctx_params_fn kmac_settable_ctx_params;
76e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_set_ctx_params_fn kmac_set_ctx_params;
77e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_init_fn kmac_init;
78e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_update_fn kmac_update;
79e1051a39Sopenharmony_cistatic OSSL_FUNC_mac_final_fn kmac_final;
80e1051a39Sopenharmony_ci
81e1051a39Sopenharmony_ci#define KMAC_MAX_BLOCKSIZE ((1600 - 128 * 2) / 8) /* 168 */
82e1051a39Sopenharmony_ci
83e1051a39Sopenharmony_ci/*
84e1051a39Sopenharmony_ci * Length encoding will be  a 1 byte size + length in bits (3 bytes max)
85e1051a39Sopenharmony_ci * This gives a range of 0..0XFFFFFF bits = 2097151 bytes).
86e1051a39Sopenharmony_ci */
87e1051a39Sopenharmony_ci#define KMAC_MAX_OUTPUT_LEN (0xFFFFFF / 8)
88e1051a39Sopenharmony_ci#define KMAC_MAX_ENCODED_HEADER_LEN (1 + 3)
89e1051a39Sopenharmony_ci
90e1051a39Sopenharmony_ci/*
91e1051a39Sopenharmony_ci * Restrict the maximum length of the customisation string.  This must not
92e1051a39Sopenharmony_ci * exceed 64 bits = 8k bytes.
93e1051a39Sopenharmony_ci */
94e1051a39Sopenharmony_ci#define KMAC_MAX_CUSTOM 512
95e1051a39Sopenharmony_ci
96e1051a39Sopenharmony_ci/* Maximum size of encoded custom string */
97e1051a39Sopenharmony_ci#define KMAC_MAX_CUSTOM_ENCODED (KMAC_MAX_CUSTOM + KMAC_MAX_ENCODED_HEADER_LEN)
98e1051a39Sopenharmony_ci
99e1051a39Sopenharmony_ci/* Maximum key size in bytes = 512 (4096 bits) */
100e1051a39Sopenharmony_ci#define KMAC_MAX_KEY 512
101e1051a39Sopenharmony_ci#define KMAC_MIN_KEY 4
102e1051a39Sopenharmony_ci
103e1051a39Sopenharmony_ci/*
104e1051a39Sopenharmony_ci * Maximum Encoded Key size will be padded to a multiple of the blocksize
105e1051a39Sopenharmony_ci * i.e KMAC_MAX_KEY + KMAC_MAX_ENCODED_HEADER_LEN = 512 + 4
106e1051a39Sopenharmony_ci * Padded to a multiple of KMAC_MAX_BLOCKSIZE
107e1051a39Sopenharmony_ci */
108e1051a39Sopenharmony_ci#define KMAC_MAX_KEY_ENCODED (KMAC_MAX_BLOCKSIZE * 4)
109e1051a39Sopenharmony_ci
110e1051a39Sopenharmony_ci/* Fixed value of encode_string("KMAC") */
111e1051a39Sopenharmony_cistatic const unsigned char kmac_string[] = {
112e1051a39Sopenharmony_ci    0x01, 0x20, 0x4B, 0x4D, 0x41, 0x43
113e1051a39Sopenharmony_ci};
114e1051a39Sopenharmony_ci
115e1051a39Sopenharmony_ci#define KMAC_FLAG_XOF_MODE          1
116e1051a39Sopenharmony_ci
117e1051a39Sopenharmony_cistruct kmac_data_st {
118e1051a39Sopenharmony_ci    void  *provctx;
119e1051a39Sopenharmony_ci    EVP_MD_CTX *ctx;
120e1051a39Sopenharmony_ci    PROV_DIGEST digest;
121e1051a39Sopenharmony_ci    size_t out_len;
122e1051a39Sopenharmony_ci    size_t key_len;
123e1051a39Sopenharmony_ci    size_t custom_len;
124e1051a39Sopenharmony_ci    /* If xof_mode = 1 then we use right_encode(0) */
125e1051a39Sopenharmony_ci    int xof_mode;
126e1051a39Sopenharmony_ci    /* key and custom are stored in encoded form */
127e1051a39Sopenharmony_ci    unsigned char key[KMAC_MAX_KEY_ENCODED];
128e1051a39Sopenharmony_ci    unsigned char custom[KMAC_MAX_CUSTOM_ENCODED];
129e1051a39Sopenharmony_ci};
130e1051a39Sopenharmony_ci
131e1051a39Sopenharmony_cistatic int encode_string(unsigned char *out, size_t out_max_len, size_t *out_len,
132e1051a39Sopenharmony_ci                         const unsigned char *in, size_t in_len);
133e1051a39Sopenharmony_cistatic int right_encode(unsigned char *out, size_t out_max_len, size_t *out_len,
134e1051a39Sopenharmony_ci                        size_t bits);
135e1051a39Sopenharmony_cistatic int bytepad(unsigned char *out, size_t *out_len,
136e1051a39Sopenharmony_ci                   const unsigned char *in1, size_t in1_len,
137e1051a39Sopenharmony_ci                   const unsigned char *in2, size_t in2_len,
138e1051a39Sopenharmony_ci                   size_t w);
139e1051a39Sopenharmony_cistatic int kmac_bytepad_encode_key(unsigned char *out, size_t out_max_len,
140e1051a39Sopenharmony_ci                                   size_t *out_len,
141e1051a39Sopenharmony_ci                                   const unsigned char *in, size_t in_len,
142e1051a39Sopenharmony_ci                                   size_t w);
143e1051a39Sopenharmony_ci
144e1051a39Sopenharmony_cistatic void kmac_free(void *vmacctx)
145e1051a39Sopenharmony_ci{
146e1051a39Sopenharmony_ci    struct kmac_data_st *kctx = vmacctx;
147e1051a39Sopenharmony_ci
148e1051a39Sopenharmony_ci    if (kctx != NULL) {
149e1051a39Sopenharmony_ci        EVP_MD_CTX_free(kctx->ctx);
150e1051a39Sopenharmony_ci        ossl_prov_digest_reset(&kctx->digest);
151e1051a39Sopenharmony_ci        OPENSSL_cleanse(kctx->key, kctx->key_len);
152e1051a39Sopenharmony_ci        OPENSSL_cleanse(kctx->custom, kctx->custom_len);
153e1051a39Sopenharmony_ci        OPENSSL_free(kctx);
154e1051a39Sopenharmony_ci    }
155e1051a39Sopenharmony_ci}
156e1051a39Sopenharmony_ci
157e1051a39Sopenharmony_ci/*
158e1051a39Sopenharmony_ci * We have KMAC implemented as a hash, which we can use instead of
159e1051a39Sopenharmony_ci * reimplementing the EVP functionality with direct use of
160e1051a39Sopenharmony_ci * keccak_mac_init() and friends.
161e1051a39Sopenharmony_ci */
162e1051a39Sopenharmony_cistatic struct kmac_data_st *kmac_new(void *provctx)
163e1051a39Sopenharmony_ci{
164e1051a39Sopenharmony_ci    struct kmac_data_st *kctx;
165e1051a39Sopenharmony_ci
166e1051a39Sopenharmony_ci    if (!ossl_prov_is_running())
167e1051a39Sopenharmony_ci        return NULL;
168e1051a39Sopenharmony_ci
169e1051a39Sopenharmony_ci    if ((kctx = OPENSSL_zalloc(sizeof(*kctx))) == NULL
170e1051a39Sopenharmony_ci            || (kctx->ctx = EVP_MD_CTX_new()) == NULL) {
171e1051a39Sopenharmony_ci        kmac_free(kctx);
172e1051a39Sopenharmony_ci        return NULL;
173e1051a39Sopenharmony_ci    }
174e1051a39Sopenharmony_ci    kctx->provctx = provctx;
175e1051a39Sopenharmony_ci    return kctx;
176e1051a39Sopenharmony_ci}
177e1051a39Sopenharmony_ci
178e1051a39Sopenharmony_cistatic void *kmac_fetch_new(void *provctx, const OSSL_PARAM *params)
179e1051a39Sopenharmony_ci{
180e1051a39Sopenharmony_ci    struct kmac_data_st *kctx = kmac_new(provctx);
181e1051a39Sopenharmony_ci
182e1051a39Sopenharmony_ci    if (kctx == NULL)
183e1051a39Sopenharmony_ci        return 0;
184e1051a39Sopenharmony_ci    if (!ossl_prov_digest_load_from_params(&kctx->digest, params,
185e1051a39Sopenharmony_ci                                      PROV_LIBCTX_OF(provctx))) {
186e1051a39Sopenharmony_ci        kmac_free(kctx);
187e1051a39Sopenharmony_ci        return 0;
188e1051a39Sopenharmony_ci    }
189e1051a39Sopenharmony_ci
190e1051a39Sopenharmony_ci    kctx->out_len = EVP_MD_get_size(ossl_prov_digest_md(&kctx->digest));
191e1051a39Sopenharmony_ci    return kctx;
192e1051a39Sopenharmony_ci}
193e1051a39Sopenharmony_ci
194e1051a39Sopenharmony_cistatic void *kmac128_new(void *provctx)
195e1051a39Sopenharmony_ci{
196e1051a39Sopenharmony_ci    static const OSSL_PARAM kmac128_params[] = {
197e1051a39Sopenharmony_ci        OSSL_PARAM_utf8_string("digest", OSSL_DIGEST_NAME_KECCAK_KMAC128,
198e1051a39Sopenharmony_ci                               sizeof(OSSL_DIGEST_NAME_KECCAK_KMAC128)),
199e1051a39Sopenharmony_ci        OSSL_PARAM_END
200e1051a39Sopenharmony_ci    };
201e1051a39Sopenharmony_ci    return kmac_fetch_new(provctx, kmac128_params);
202e1051a39Sopenharmony_ci}
203e1051a39Sopenharmony_ci
204e1051a39Sopenharmony_cistatic void *kmac256_new(void *provctx)
205e1051a39Sopenharmony_ci{
206e1051a39Sopenharmony_ci    static const OSSL_PARAM kmac256_params[] = {
207e1051a39Sopenharmony_ci        OSSL_PARAM_utf8_string("digest", OSSL_DIGEST_NAME_KECCAK_KMAC256,
208e1051a39Sopenharmony_ci                               sizeof(OSSL_DIGEST_NAME_KECCAK_KMAC256)),
209e1051a39Sopenharmony_ci        OSSL_PARAM_END
210e1051a39Sopenharmony_ci    };
211e1051a39Sopenharmony_ci    return kmac_fetch_new(provctx, kmac256_params);
212e1051a39Sopenharmony_ci}
213e1051a39Sopenharmony_ci
214e1051a39Sopenharmony_cistatic void *kmac_dup(void *vsrc)
215e1051a39Sopenharmony_ci{
216e1051a39Sopenharmony_ci    struct kmac_data_st *src = vsrc;
217e1051a39Sopenharmony_ci    struct kmac_data_st *dst;
218e1051a39Sopenharmony_ci
219e1051a39Sopenharmony_ci    if (!ossl_prov_is_running())
220e1051a39Sopenharmony_ci        return NULL;
221e1051a39Sopenharmony_ci
222e1051a39Sopenharmony_ci    dst = kmac_new(src->provctx);
223e1051a39Sopenharmony_ci    if (dst == NULL)
224e1051a39Sopenharmony_ci        return NULL;
225e1051a39Sopenharmony_ci
226e1051a39Sopenharmony_ci    if (!EVP_MD_CTX_copy(dst->ctx, src->ctx)
227e1051a39Sopenharmony_ci        || !ossl_prov_digest_copy(&dst->digest, &src->digest)) {
228e1051a39Sopenharmony_ci        kmac_free(dst);
229e1051a39Sopenharmony_ci        return NULL;
230e1051a39Sopenharmony_ci    }
231e1051a39Sopenharmony_ci
232e1051a39Sopenharmony_ci    dst->out_len = src->out_len;
233e1051a39Sopenharmony_ci    dst->key_len = src->key_len;
234e1051a39Sopenharmony_ci    dst->custom_len = src->custom_len;
235e1051a39Sopenharmony_ci    dst->xof_mode = src->xof_mode;
236e1051a39Sopenharmony_ci    memcpy(dst->key, src->key, src->key_len);
237e1051a39Sopenharmony_ci    memcpy(dst->custom, src->custom, dst->custom_len);
238e1051a39Sopenharmony_ci
239e1051a39Sopenharmony_ci    return dst;
240e1051a39Sopenharmony_ci}
241e1051a39Sopenharmony_ci
242e1051a39Sopenharmony_cistatic int kmac_setkey(struct kmac_data_st *kctx, const unsigned char *key,
243e1051a39Sopenharmony_ci                       size_t keylen)
244e1051a39Sopenharmony_ci{
245e1051a39Sopenharmony_ci    const EVP_MD *digest = ossl_prov_digest_md(&kctx->digest);
246e1051a39Sopenharmony_ci    int w = EVP_MD_get_block_size(digest);
247e1051a39Sopenharmony_ci
248e1051a39Sopenharmony_ci    if (keylen < KMAC_MIN_KEY || keylen > KMAC_MAX_KEY) {
249e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH);
250e1051a39Sopenharmony_ci        return 0;
251e1051a39Sopenharmony_ci    }
252e1051a39Sopenharmony_ci    if (w < 0) {
253e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_DIGEST_LENGTH);
254e1051a39Sopenharmony_ci        return 0;
255e1051a39Sopenharmony_ci    }
256e1051a39Sopenharmony_ci    if (!kmac_bytepad_encode_key(kctx->key, sizeof(kctx->key), &kctx->key_len,
257e1051a39Sopenharmony_ci                                 key, keylen, (size_t)w))
258e1051a39Sopenharmony_ci        return 0;
259e1051a39Sopenharmony_ci    return 1;
260e1051a39Sopenharmony_ci}
261e1051a39Sopenharmony_ci
262e1051a39Sopenharmony_ci/*
263e1051a39Sopenharmony_ci * The init() assumes that any ctrl methods are set beforehand for
264e1051a39Sopenharmony_ci * md, key and custom. Setting the fields afterwards will have no
265e1051a39Sopenharmony_ci * effect on the output mac.
266e1051a39Sopenharmony_ci */
267e1051a39Sopenharmony_cistatic int kmac_init(void *vmacctx, const unsigned char *key,
268e1051a39Sopenharmony_ci                     size_t keylen, const OSSL_PARAM params[])
269e1051a39Sopenharmony_ci{
270e1051a39Sopenharmony_ci    struct kmac_data_st *kctx = vmacctx;
271e1051a39Sopenharmony_ci    EVP_MD_CTX *ctx = kctx->ctx;
272e1051a39Sopenharmony_ci    unsigned char *out;
273e1051a39Sopenharmony_ci    size_t out_len, block_len;
274e1051a39Sopenharmony_ci    int res, t;
275e1051a39Sopenharmony_ci
276e1051a39Sopenharmony_ci    if (!ossl_prov_is_running() || !kmac_set_ctx_params(kctx, params))
277e1051a39Sopenharmony_ci        return 0;
278e1051a39Sopenharmony_ci
279e1051a39Sopenharmony_ci    if (key != NULL) {
280e1051a39Sopenharmony_ci        if (!kmac_setkey(kctx, key, keylen))
281e1051a39Sopenharmony_ci            return 0;
282e1051a39Sopenharmony_ci    } else if (kctx->key_len == 0) {
283e1051a39Sopenharmony_ci        /* Check key has been set */
284e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_PROV, PROV_R_NO_KEY_SET);
285e1051a39Sopenharmony_ci        return 0;
286e1051a39Sopenharmony_ci    }
287e1051a39Sopenharmony_ci    if (!EVP_DigestInit_ex(kctx->ctx, ossl_prov_digest_md(&kctx->digest),
288e1051a39Sopenharmony_ci                           NULL))
289e1051a39Sopenharmony_ci        return 0;
290e1051a39Sopenharmony_ci
291e1051a39Sopenharmony_ci    t = EVP_MD_get_block_size(ossl_prov_digest_md(&kctx->digest));
292e1051a39Sopenharmony_ci    if (t < 0) {
293e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_DIGEST_LENGTH);
294e1051a39Sopenharmony_ci        return 0;
295e1051a39Sopenharmony_ci    }
296e1051a39Sopenharmony_ci    block_len = t;
297e1051a39Sopenharmony_ci
298e1051a39Sopenharmony_ci    /* Set default custom string if it is not already set */
299e1051a39Sopenharmony_ci    if (kctx->custom_len == 0) {
300e1051a39Sopenharmony_ci        const OSSL_PARAM cparams[] = {
301e1051a39Sopenharmony_ci            OSSL_PARAM_octet_string(OSSL_MAC_PARAM_CUSTOM, "", 0),
302e1051a39Sopenharmony_ci            OSSL_PARAM_END
303e1051a39Sopenharmony_ci        };
304e1051a39Sopenharmony_ci        (void)kmac_set_ctx_params(kctx, cparams);
305e1051a39Sopenharmony_ci    }
306e1051a39Sopenharmony_ci
307e1051a39Sopenharmony_ci    if (!bytepad(NULL, &out_len, kmac_string, sizeof(kmac_string),
308e1051a39Sopenharmony_ci                 kctx->custom, kctx->custom_len, block_len)) {
309e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_PROV, ERR_R_INTERNAL_ERROR);
310e1051a39Sopenharmony_ci        return 0;
311e1051a39Sopenharmony_ci    }
312e1051a39Sopenharmony_ci    out = OPENSSL_malloc(out_len);
313e1051a39Sopenharmony_ci    if (out == NULL) {
314e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_PROV, ERR_R_MALLOC_FAILURE);
315e1051a39Sopenharmony_ci        return 0;
316e1051a39Sopenharmony_ci    }
317e1051a39Sopenharmony_ci    res = bytepad(out, NULL, kmac_string, sizeof(kmac_string),
318e1051a39Sopenharmony_ci                  kctx->custom, kctx->custom_len, block_len)
319e1051a39Sopenharmony_ci          && EVP_DigestUpdate(ctx, out, out_len)
320e1051a39Sopenharmony_ci          && EVP_DigestUpdate(ctx, kctx->key, kctx->key_len);
321e1051a39Sopenharmony_ci    OPENSSL_free(out);
322e1051a39Sopenharmony_ci    return res;
323e1051a39Sopenharmony_ci}
324e1051a39Sopenharmony_ci
325e1051a39Sopenharmony_cistatic int kmac_update(void *vmacctx, const unsigned char *data,
326e1051a39Sopenharmony_ci                       size_t datalen)
327e1051a39Sopenharmony_ci{
328e1051a39Sopenharmony_ci    struct kmac_data_st *kctx = vmacctx;
329e1051a39Sopenharmony_ci
330e1051a39Sopenharmony_ci    return EVP_DigestUpdate(kctx->ctx, data, datalen);
331e1051a39Sopenharmony_ci}
332e1051a39Sopenharmony_ci
333e1051a39Sopenharmony_cistatic int kmac_final(void *vmacctx, unsigned char *out, size_t *outl,
334e1051a39Sopenharmony_ci                      size_t outsize)
335e1051a39Sopenharmony_ci{
336e1051a39Sopenharmony_ci    struct kmac_data_st *kctx = vmacctx;
337e1051a39Sopenharmony_ci    EVP_MD_CTX *ctx = kctx->ctx;
338e1051a39Sopenharmony_ci    size_t lbits, len;
339e1051a39Sopenharmony_ci    unsigned char encoded_outlen[KMAC_MAX_ENCODED_HEADER_LEN];
340e1051a39Sopenharmony_ci    int ok;
341e1051a39Sopenharmony_ci
342e1051a39Sopenharmony_ci    if (!ossl_prov_is_running())
343e1051a39Sopenharmony_ci        return 0;
344e1051a39Sopenharmony_ci
345e1051a39Sopenharmony_ci    /* KMAC XOF mode sets the encoded length to 0 */
346e1051a39Sopenharmony_ci    lbits = (kctx->xof_mode ? 0 : (kctx->out_len * 8));
347e1051a39Sopenharmony_ci
348e1051a39Sopenharmony_ci    ok = right_encode(encoded_outlen, sizeof(encoded_outlen), &len, lbits)
349e1051a39Sopenharmony_ci        && EVP_DigestUpdate(ctx, encoded_outlen, len)
350e1051a39Sopenharmony_ci        && EVP_DigestFinalXOF(ctx, out, kctx->out_len);
351e1051a39Sopenharmony_ci    *outl = kctx->out_len;
352e1051a39Sopenharmony_ci    return ok;
353e1051a39Sopenharmony_ci}
354e1051a39Sopenharmony_ci
355e1051a39Sopenharmony_cistatic const OSSL_PARAM known_gettable_ctx_params[] = {
356e1051a39Sopenharmony_ci    OSSL_PARAM_size_t(OSSL_MAC_PARAM_SIZE, NULL),
357e1051a39Sopenharmony_ci    OSSL_PARAM_size_t(OSSL_MAC_PARAM_BLOCK_SIZE, NULL),
358e1051a39Sopenharmony_ci    OSSL_PARAM_END
359e1051a39Sopenharmony_ci};
360e1051a39Sopenharmony_cistatic const OSSL_PARAM *kmac_gettable_ctx_params(ossl_unused void *ctx,
361e1051a39Sopenharmony_ci                                                  ossl_unused void *provctx)
362e1051a39Sopenharmony_ci{
363e1051a39Sopenharmony_ci    return known_gettable_ctx_params;
364e1051a39Sopenharmony_ci}
365e1051a39Sopenharmony_ci
366e1051a39Sopenharmony_cistatic int kmac_get_ctx_params(void *vmacctx, OSSL_PARAM params[])
367e1051a39Sopenharmony_ci{
368e1051a39Sopenharmony_ci    struct kmac_data_st *kctx = vmacctx;
369e1051a39Sopenharmony_ci    OSSL_PARAM *p;
370e1051a39Sopenharmony_ci    int sz;
371e1051a39Sopenharmony_ci
372e1051a39Sopenharmony_ci    if ((p = OSSL_PARAM_locate(params, OSSL_MAC_PARAM_SIZE)) != NULL
373e1051a39Sopenharmony_ci            && !OSSL_PARAM_set_size_t(p, kctx->out_len))
374e1051a39Sopenharmony_ci        return 0;
375e1051a39Sopenharmony_ci
376e1051a39Sopenharmony_ci    if ((p = OSSL_PARAM_locate(params, OSSL_MAC_PARAM_BLOCK_SIZE)) != NULL) {
377e1051a39Sopenharmony_ci        sz = EVP_MD_block_size(ossl_prov_digest_md(&kctx->digest));
378e1051a39Sopenharmony_ci        if (!OSSL_PARAM_set_int(p, sz))
379e1051a39Sopenharmony_ci            return 0;
380e1051a39Sopenharmony_ci    }
381e1051a39Sopenharmony_ci
382e1051a39Sopenharmony_ci    return 1;
383e1051a39Sopenharmony_ci}
384e1051a39Sopenharmony_ci
385e1051a39Sopenharmony_cistatic const OSSL_PARAM known_settable_ctx_params[] = {
386e1051a39Sopenharmony_ci    OSSL_PARAM_int(OSSL_MAC_PARAM_XOF, NULL),
387e1051a39Sopenharmony_ci    OSSL_PARAM_size_t(OSSL_MAC_PARAM_SIZE, NULL),
388e1051a39Sopenharmony_ci    OSSL_PARAM_octet_string(OSSL_MAC_PARAM_KEY, NULL, 0),
389e1051a39Sopenharmony_ci    OSSL_PARAM_octet_string(OSSL_MAC_PARAM_CUSTOM, NULL, 0),
390e1051a39Sopenharmony_ci    OSSL_PARAM_END
391e1051a39Sopenharmony_ci};
392e1051a39Sopenharmony_cistatic const OSSL_PARAM *kmac_settable_ctx_params(ossl_unused void *ctx,
393e1051a39Sopenharmony_ci                                                  ossl_unused void *provctx)
394e1051a39Sopenharmony_ci{
395e1051a39Sopenharmony_ci    return known_settable_ctx_params;
396e1051a39Sopenharmony_ci}
397e1051a39Sopenharmony_ci
398e1051a39Sopenharmony_ci/*
399e1051a39Sopenharmony_ci * The following params can be set any time before final():
400e1051a39Sopenharmony_ci *     - "outlen" or "size":    The requested output length.
401e1051a39Sopenharmony_ci *     - "xof":                 If set, this indicates that right_encoded(0)
402e1051a39Sopenharmony_ci *                              is part of the digested data, otherwise it
403e1051a39Sopenharmony_ci *                              uses right_encoded(requested output length).
404e1051a39Sopenharmony_ci *
405e1051a39Sopenharmony_ci * All other params should be set before init().
406e1051a39Sopenharmony_ci */
407e1051a39Sopenharmony_cistatic int kmac_set_ctx_params(void *vmacctx, const OSSL_PARAM *params)
408e1051a39Sopenharmony_ci{
409e1051a39Sopenharmony_ci    struct kmac_data_st *kctx = vmacctx;
410e1051a39Sopenharmony_ci    const OSSL_PARAM *p;
411e1051a39Sopenharmony_ci
412e1051a39Sopenharmony_ci    if (params == NULL)
413e1051a39Sopenharmony_ci        return 1;
414e1051a39Sopenharmony_ci
415e1051a39Sopenharmony_ci    if ((p = OSSL_PARAM_locate_const(params, OSSL_MAC_PARAM_XOF)) != NULL
416e1051a39Sopenharmony_ci        && !OSSL_PARAM_get_int(p, &kctx->xof_mode))
417e1051a39Sopenharmony_ci        return 0;
418e1051a39Sopenharmony_ci    if ((p = OSSL_PARAM_locate_const(params, OSSL_MAC_PARAM_SIZE)) != NULL) {
419e1051a39Sopenharmony_ci        size_t sz = 0;
420e1051a39Sopenharmony_ci
421e1051a39Sopenharmony_ci        if (!OSSL_PARAM_get_size_t(p, &sz))
422e1051a39Sopenharmony_ci            return 0;
423e1051a39Sopenharmony_ci        if (sz > KMAC_MAX_OUTPUT_LEN) {
424e1051a39Sopenharmony_ci            ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_OUTPUT_LENGTH);
425e1051a39Sopenharmony_ci            return 0;
426e1051a39Sopenharmony_ci        }
427e1051a39Sopenharmony_ci        kctx->out_len = sz;
428e1051a39Sopenharmony_ci    }
429e1051a39Sopenharmony_ci    if ((p = OSSL_PARAM_locate_const(params, OSSL_MAC_PARAM_KEY)) != NULL
430e1051a39Sopenharmony_ci            && !kmac_setkey(kctx, p->data, p->data_size))
431e1051a39Sopenharmony_ci        return 0;
432e1051a39Sopenharmony_ci    if ((p = OSSL_PARAM_locate_const(params, OSSL_MAC_PARAM_CUSTOM))
433e1051a39Sopenharmony_ci        != NULL) {
434e1051a39Sopenharmony_ci        if (p->data_size > KMAC_MAX_CUSTOM) {
435e1051a39Sopenharmony_ci            ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_CUSTOM_LENGTH);
436e1051a39Sopenharmony_ci            return 0;
437e1051a39Sopenharmony_ci        }
438e1051a39Sopenharmony_ci        if (!encode_string(kctx->custom, sizeof(kctx->custom), &kctx->custom_len,
439e1051a39Sopenharmony_ci                           p->data, p->data_size))
440e1051a39Sopenharmony_ci            return 0;
441e1051a39Sopenharmony_ci    }
442e1051a39Sopenharmony_ci    return 1;
443e1051a39Sopenharmony_ci}
444e1051a39Sopenharmony_ci
445e1051a39Sopenharmony_ci/* Encoding/Padding Methods. */
446e1051a39Sopenharmony_ci
447e1051a39Sopenharmony_ci/* Returns the number of bytes required to store 'bits' into a byte array */
448e1051a39Sopenharmony_cistatic unsigned int get_encode_size(size_t bits)
449e1051a39Sopenharmony_ci{
450e1051a39Sopenharmony_ci    unsigned int cnt = 0, sz = sizeof(size_t);
451e1051a39Sopenharmony_ci
452e1051a39Sopenharmony_ci    while (bits && (cnt < sz)) {
453e1051a39Sopenharmony_ci        ++cnt;
454e1051a39Sopenharmony_ci        bits >>= 8;
455e1051a39Sopenharmony_ci    }
456e1051a39Sopenharmony_ci    /* If bits is zero 1 byte is required */
457e1051a39Sopenharmony_ci    if (cnt == 0)
458e1051a39Sopenharmony_ci        cnt = 1;
459e1051a39Sopenharmony_ci    return cnt;
460e1051a39Sopenharmony_ci}
461e1051a39Sopenharmony_ci
462e1051a39Sopenharmony_ci/*
463e1051a39Sopenharmony_ci * Convert an integer into bytes . The number of bytes is appended
464e1051a39Sopenharmony_ci * to the end of the buffer. Returns an array of bytes 'out' of size
465e1051a39Sopenharmony_ci * *out_len.
466e1051a39Sopenharmony_ci *
467e1051a39Sopenharmony_ci * e.g if bits = 32, out[2] = { 0x20, 0x01 }
468e1051a39Sopenharmony_ci */
469e1051a39Sopenharmony_cistatic int right_encode(unsigned char *out, size_t out_max_len, size_t *out_len,
470e1051a39Sopenharmony_ci                        size_t bits)
471e1051a39Sopenharmony_ci{
472e1051a39Sopenharmony_ci    unsigned int len = get_encode_size(bits);
473e1051a39Sopenharmony_ci    int i;
474e1051a39Sopenharmony_ci
475e1051a39Sopenharmony_ci    if (len >= out_max_len) {
476e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_PROV, PROV_R_LENGTH_TOO_LARGE);
477e1051a39Sopenharmony_ci        return 0;
478e1051a39Sopenharmony_ci    }
479e1051a39Sopenharmony_ci
480e1051a39Sopenharmony_ci    /* MSB's are at the start of the bytes array */
481e1051a39Sopenharmony_ci    for (i = len - 1; i >= 0; --i) {
482e1051a39Sopenharmony_ci        out[i] = (unsigned char)(bits & 0xFF);
483e1051a39Sopenharmony_ci        bits >>= 8;
484e1051a39Sopenharmony_ci    }
485e1051a39Sopenharmony_ci    /* Tack the length onto the end */
486e1051a39Sopenharmony_ci    out[len] = (unsigned char)len;
487e1051a39Sopenharmony_ci
488e1051a39Sopenharmony_ci    /* The Returned length includes the tacked on byte */
489e1051a39Sopenharmony_ci    *out_len = len + 1;
490e1051a39Sopenharmony_ci    return 1;
491e1051a39Sopenharmony_ci}
492e1051a39Sopenharmony_ci
493e1051a39Sopenharmony_ci/*
494e1051a39Sopenharmony_ci * Encodes a string with a left encoded length added. Note that the
495e1051a39Sopenharmony_ci * in_len is converted to bits (*8).
496e1051a39Sopenharmony_ci *
497e1051a39Sopenharmony_ci * e.g- in="KMAC" gives out[6] = { 0x01, 0x20, 0x4B, 0x4D, 0x41, 0x43 }
498e1051a39Sopenharmony_ci *                                 len   bits    K     M     A     C
499e1051a39Sopenharmony_ci */
500e1051a39Sopenharmony_cistatic int encode_string(unsigned char *out, size_t out_max_len, size_t *out_len,
501e1051a39Sopenharmony_ci                         const unsigned char *in, size_t in_len)
502e1051a39Sopenharmony_ci{
503e1051a39Sopenharmony_ci    if (in == NULL) {
504e1051a39Sopenharmony_ci        *out_len = 0;
505e1051a39Sopenharmony_ci    } else {
506e1051a39Sopenharmony_ci        size_t i, bits, len, sz;
507e1051a39Sopenharmony_ci
508e1051a39Sopenharmony_ci        bits = 8 * in_len;
509e1051a39Sopenharmony_ci        len = get_encode_size(bits);
510e1051a39Sopenharmony_ci        sz = 1 + len + in_len;
511e1051a39Sopenharmony_ci
512e1051a39Sopenharmony_ci        if (sz > out_max_len) {
513e1051a39Sopenharmony_ci            ERR_raise(ERR_LIB_PROV, PROV_R_LENGTH_TOO_LARGE);
514e1051a39Sopenharmony_ci            return 0;
515e1051a39Sopenharmony_ci        }
516e1051a39Sopenharmony_ci
517e1051a39Sopenharmony_ci        out[0] = (unsigned char)len;
518e1051a39Sopenharmony_ci        for (i = len; i > 0; --i) {
519e1051a39Sopenharmony_ci            out[i] = (bits & 0xFF);
520e1051a39Sopenharmony_ci            bits >>= 8;
521e1051a39Sopenharmony_ci        }
522e1051a39Sopenharmony_ci        memcpy(out + len + 1, in, in_len);
523e1051a39Sopenharmony_ci        *out_len = sz;
524e1051a39Sopenharmony_ci    }
525e1051a39Sopenharmony_ci    return 1;
526e1051a39Sopenharmony_ci}
527e1051a39Sopenharmony_ci
528e1051a39Sopenharmony_ci/*
529e1051a39Sopenharmony_ci * Returns a zero padded encoding of the inputs in1 and an optional
530e1051a39Sopenharmony_ci * in2 (can be NULL). The padded output must be a multiple of the blocksize 'w'.
531e1051a39Sopenharmony_ci * The value of w is in bytes (< 256).
532e1051a39Sopenharmony_ci *
533e1051a39Sopenharmony_ci * The returned output is:
534e1051a39Sopenharmony_ci *    zero_padded(multiple of w, (left_encode(w) || in1 [|| in2])
535e1051a39Sopenharmony_ci */
536e1051a39Sopenharmony_cistatic int bytepad(unsigned char *out, size_t *out_len,
537e1051a39Sopenharmony_ci                   const unsigned char *in1, size_t in1_len,
538e1051a39Sopenharmony_ci                   const unsigned char *in2, size_t in2_len, size_t w)
539e1051a39Sopenharmony_ci{
540e1051a39Sopenharmony_ci    int len;
541e1051a39Sopenharmony_ci    unsigned char *p = out;
542e1051a39Sopenharmony_ci    int sz = w;
543e1051a39Sopenharmony_ci
544e1051a39Sopenharmony_ci    if (out == NULL) {
545e1051a39Sopenharmony_ci        if (out_len == NULL) {
546e1051a39Sopenharmony_ci            ERR_raise(ERR_LIB_PROV, ERR_R_PASSED_NULL_PARAMETER);
547e1051a39Sopenharmony_ci            return 0;
548e1051a39Sopenharmony_ci        }
549e1051a39Sopenharmony_ci        sz = 2 + in1_len + (in2 != NULL ? in2_len : 0);
550e1051a39Sopenharmony_ci        *out_len = (sz + w - 1) / w * w;
551e1051a39Sopenharmony_ci        return 1;
552e1051a39Sopenharmony_ci    }
553e1051a39Sopenharmony_ci
554e1051a39Sopenharmony_ci    if (!ossl_assert(w <= 255))
555e1051a39Sopenharmony_ci        return 0;
556e1051a39Sopenharmony_ci
557e1051a39Sopenharmony_ci    /* Left encoded w */
558e1051a39Sopenharmony_ci    *p++ = 1;
559e1051a39Sopenharmony_ci    *p++ = (unsigned char)w;
560e1051a39Sopenharmony_ci    /* || in1 */
561e1051a39Sopenharmony_ci    memcpy(p, in1, in1_len);
562e1051a39Sopenharmony_ci    p += in1_len;
563e1051a39Sopenharmony_ci    /* [ || in2 ] */
564e1051a39Sopenharmony_ci    if (in2 != NULL && in2_len > 0) {
565e1051a39Sopenharmony_ci        memcpy(p, in2, in2_len);
566e1051a39Sopenharmony_ci        p += in2_len;
567e1051a39Sopenharmony_ci    }
568e1051a39Sopenharmony_ci    /* Figure out the pad size (divisible by w) */
569e1051a39Sopenharmony_ci    len = p - out;
570e1051a39Sopenharmony_ci    sz = (len + w - 1) / w * w;
571e1051a39Sopenharmony_ci    /* zero pad the end of the buffer */
572e1051a39Sopenharmony_ci    if (sz != len)
573e1051a39Sopenharmony_ci        memset(p, 0, sz - len);
574e1051a39Sopenharmony_ci    if (out_len != NULL)
575e1051a39Sopenharmony_ci        *out_len = sz;
576e1051a39Sopenharmony_ci    return 1;
577e1051a39Sopenharmony_ci}
578e1051a39Sopenharmony_ci
579e1051a39Sopenharmony_ci/* Returns out = bytepad(encode_string(in), w) */
580e1051a39Sopenharmony_cistatic int kmac_bytepad_encode_key(unsigned char *out, size_t out_max_len,
581e1051a39Sopenharmony_ci                                   size_t *out_len,
582e1051a39Sopenharmony_ci                                   const unsigned char *in, size_t in_len,
583e1051a39Sopenharmony_ci                                   size_t w)
584e1051a39Sopenharmony_ci{
585e1051a39Sopenharmony_ci    unsigned char tmp[KMAC_MAX_KEY + KMAC_MAX_ENCODED_HEADER_LEN];
586e1051a39Sopenharmony_ci    size_t tmp_len;
587e1051a39Sopenharmony_ci
588e1051a39Sopenharmony_ci    if (!encode_string(tmp, sizeof(tmp), &tmp_len, in, in_len))
589e1051a39Sopenharmony_ci        return 0;
590e1051a39Sopenharmony_ci    if (!bytepad(NULL, out_len, tmp, tmp_len, NULL, 0, w))
591e1051a39Sopenharmony_ci        return 0;
592e1051a39Sopenharmony_ci    if (!ossl_assert(*out_len <= out_max_len))
593e1051a39Sopenharmony_ci        return 0;
594e1051a39Sopenharmony_ci    return bytepad(out, NULL, tmp, tmp_len, NULL, 0, w);
595e1051a39Sopenharmony_ci}
596e1051a39Sopenharmony_ci
597e1051a39Sopenharmony_ciconst OSSL_DISPATCH ossl_kmac128_functions[] = {
598e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_NEWCTX, (void (*)(void))kmac128_new },
599e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_DUPCTX, (void (*)(void))kmac_dup },
600e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_FREECTX, (void (*)(void))kmac_free },
601e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_INIT, (void (*)(void))kmac_init },
602e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_UPDATE, (void (*)(void))kmac_update },
603e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_FINAL, (void (*)(void))kmac_final },
604e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_GETTABLE_CTX_PARAMS,
605e1051a39Sopenharmony_ci      (void (*)(void))kmac_gettable_ctx_params },
606e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_GET_CTX_PARAMS, (void (*)(void))kmac_get_ctx_params },
607e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_SETTABLE_CTX_PARAMS,
608e1051a39Sopenharmony_ci      (void (*)(void))kmac_settable_ctx_params },
609e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_SET_CTX_PARAMS, (void (*)(void))kmac_set_ctx_params },
610e1051a39Sopenharmony_ci    { 0, NULL }
611e1051a39Sopenharmony_ci};
612e1051a39Sopenharmony_ci
613e1051a39Sopenharmony_ciconst OSSL_DISPATCH ossl_kmac256_functions[] = {
614e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_NEWCTX, (void (*)(void))kmac256_new },
615e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_DUPCTX, (void (*)(void))kmac_dup },
616e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_FREECTX, (void (*)(void))kmac_free },
617e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_INIT, (void (*)(void))kmac_init },
618e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_UPDATE, (void (*)(void))kmac_update },
619e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_FINAL, (void (*)(void))kmac_final },
620e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_GETTABLE_CTX_PARAMS,
621e1051a39Sopenharmony_ci      (void (*)(void))kmac_gettable_ctx_params },
622e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_GET_CTX_PARAMS, (void (*)(void))kmac_get_ctx_params },
623e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_SETTABLE_CTX_PARAMS,
624e1051a39Sopenharmony_ci      (void (*)(void))kmac_settable_ctx_params },
625e1051a39Sopenharmony_ci    { OSSL_FUNC_MAC_SET_CTX_PARAMS, (void (*)(void))kmac_set_ctx_params },
626e1051a39Sopenharmony_ci    { 0, NULL }
627e1051a39Sopenharmony_ci};
628