xref: /third_party/openssl/crypto/cmac/cmac.c (revision e1051a39)
1e1051a39Sopenharmony_ci/*
2e1051a39Sopenharmony_ci * Copyright 2010-2022 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 * CMAC low level APIs are deprecated for public use, but still ok for internal
12e1051a39Sopenharmony_ci * use.
13e1051a39Sopenharmony_ci */
14e1051a39Sopenharmony_ci#include "internal/deprecated.h"
15e1051a39Sopenharmony_ci
16e1051a39Sopenharmony_ci#include <stdio.h>
17e1051a39Sopenharmony_ci#include <stdlib.h>
18e1051a39Sopenharmony_ci#include <string.h>
19e1051a39Sopenharmony_ci#include "internal/cryptlib.h"
20e1051a39Sopenharmony_ci#include <openssl/cmac.h>
21e1051a39Sopenharmony_ci#include <openssl/err.h>
22e1051a39Sopenharmony_ci
23e1051a39Sopenharmony_cistruct CMAC_CTX_st {
24e1051a39Sopenharmony_ci    /* Cipher context to use */
25e1051a39Sopenharmony_ci    EVP_CIPHER_CTX *cctx;
26e1051a39Sopenharmony_ci    /* Keys k1 and k2 */
27e1051a39Sopenharmony_ci    unsigned char k1[EVP_MAX_BLOCK_LENGTH];
28e1051a39Sopenharmony_ci    unsigned char k2[EVP_MAX_BLOCK_LENGTH];
29e1051a39Sopenharmony_ci    /* Temporary block */
30e1051a39Sopenharmony_ci    unsigned char tbl[EVP_MAX_BLOCK_LENGTH];
31e1051a39Sopenharmony_ci    /* Last (possibly partial) block */
32e1051a39Sopenharmony_ci    unsigned char last_block[EVP_MAX_BLOCK_LENGTH];
33e1051a39Sopenharmony_ci    /* Number of bytes in last block: -1 means context not initialised */
34e1051a39Sopenharmony_ci    int nlast_block;
35e1051a39Sopenharmony_ci};
36e1051a39Sopenharmony_ci
37e1051a39Sopenharmony_ci/* Make temporary keys K1 and K2 */
38e1051a39Sopenharmony_ci
39e1051a39Sopenharmony_cistatic void make_kn(unsigned char *k1, const unsigned char *l, int bl)
40e1051a39Sopenharmony_ci{
41e1051a39Sopenharmony_ci    int i;
42e1051a39Sopenharmony_ci    unsigned char c = l[0], carry = c >> 7, cnext;
43e1051a39Sopenharmony_ci
44e1051a39Sopenharmony_ci    /* Shift block to left, including carry */
45e1051a39Sopenharmony_ci    for (i = 0; i < bl - 1; i++, c = cnext)
46e1051a39Sopenharmony_ci        k1[i] = (c << 1) | ((cnext = l[i + 1]) >> 7);
47e1051a39Sopenharmony_ci
48e1051a39Sopenharmony_ci    /* If MSB set fixup with R */
49e1051a39Sopenharmony_ci    k1[i] = (c << 1) ^ ((0 - carry) & (bl == 16 ? 0x87 : 0x1b));
50e1051a39Sopenharmony_ci}
51e1051a39Sopenharmony_ci
52e1051a39Sopenharmony_ciCMAC_CTX *CMAC_CTX_new(void)
53e1051a39Sopenharmony_ci{
54e1051a39Sopenharmony_ci    CMAC_CTX *ctx;
55e1051a39Sopenharmony_ci
56e1051a39Sopenharmony_ci    if ((ctx = OPENSSL_malloc(sizeof(*ctx))) == NULL) {
57e1051a39Sopenharmony_ci        ERR_raise(ERR_LIB_CRYPTO, ERR_R_MALLOC_FAILURE);
58e1051a39Sopenharmony_ci        return NULL;
59e1051a39Sopenharmony_ci    }
60e1051a39Sopenharmony_ci    ctx->cctx = EVP_CIPHER_CTX_new();
61e1051a39Sopenharmony_ci    if (ctx->cctx == NULL) {
62e1051a39Sopenharmony_ci        OPENSSL_free(ctx);
63e1051a39Sopenharmony_ci        return NULL;
64e1051a39Sopenharmony_ci    }
65e1051a39Sopenharmony_ci    ctx->nlast_block = -1;
66e1051a39Sopenharmony_ci    return ctx;
67e1051a39Sopenharmony_ci}
68e1051a39Sopenharmony_ci
69e1051a39Sopenharmony_civoid CMAC_CTX_cleanup(CMAC_CTX *ctx)
70e1051a39Sopenharmony_ci{
71e1051a39Sopenharmony_ci    EVP_CIPHER_CTX_reset(ctx->cctx);
72e1051a39Sopenharmony_ci    OPENSSL_cleanse(ctx->tbl, EVP_MAX_BLOCK_LENGTH);
73e1051a39Sopenharmony_ci    OPENSSL_cleanse(ctx->k1, EVP_MAX_BLOCK_LENGTH);
74e1051a39Sopenharmony_ci    OPENSSL_cleanse(ctx->k2, EVP_MAX_BLOCK_LENGTH);
75e1051a39Sopenharmony_ci    OPENSSL_cleanse(ctx->last_block, EVP_MAX_BLOCK_LENGTH);
76e1051a39Sopenharmony_ci    ctx->nlast_block = -1;
77e1051a39Sopenharmony_ci}
78e1051a39Sopenharmony_ci
79e1051a39Sopenharmony_ciEVP_CIPHER_CTX *CMAC_CTX_get0_cipher_ctx(CMAC_CTX *ctx)
80e1051a39Sopenharmony_ci{
81e1051a39Sopenharmony_ci    return ctx->cctx;
82e1051a39Sopenharmony_ci}
83e1051a39Sopenharmony_ci
84e1051a39Sopenharmony_civoid CMAC_CTX_free(CMAC_CTX *ctx)
85e1051a39Sopenharmony_ci{
86e1051a39Sopenharmony_ci    if (!ctx)
87e1051a39Sopenharmony_ci        return;
88e1051a39Sopenharmony_ci    CMAC_CTX_cleanup(ctx);
89e1051a39Sopenharmony_ci    EVP_CIPHER_CTX_free(ctx->cctx);
90e1051a39Sopenharmony_ci    OPENSSL_free(ctx);
91e1051a39Sopenharmony_ci}
92e1051a39Sopenharmony_ci
93e1051a39Sopenharmony_ciint CMAC_CTX_copy(CMAC_CTX *out, const CMAC_CTX *in)
94e1051a39Sopenharmony_ci{
95e1051a39Sopenharmony_ci    int bl;
96e1051a39Sopenharmony_ci
97e1051a39Sopenharmony_ci    if (in->nlast_block == -1)
98e1051a39Sopenharmony_ci        return 0;
99e1051a39Sopenharmony_ci    if ((bl = EVP_CIPHER_CTX_get_block_size(in->cctx)) < 0)
100e1051a39Sopenharmony_ci        return 0;
101e1051a39Sopenharmony_ci    if (!EVP_CIPHER_CTX_copy(out->cctx, in->cctx))
102e1051a39Sopenharmony_ci        return 0;
103e1051a39Sopenharmony_ci    memcpy(out->k1, in->k1, bl);
104e1051a39Sopenharmony_ci    memcpy(out->k2, in->k2, bl);
105e1051a39Sopenharmony_ci    memcpy(out->tbl, in->tbl, bl);
106e1051a39Sopenharmony_ci    memcpy(out->last_block, in->last_block, bl);
107e1051a39Sopenharmony_ci    out->nlast_block = in->nlast_block;
108e1051a39Sopenharmony_ci    return 1;
109e1051a39Sopenharmony_ci}
110e1051a39Sopenharmony_ci
111e1051a39Sopenharmony_ciint CMAC_Init(CMAC_CTX *ctx, const void *key, size_t keylen,
112e1051a39Sopenharmony_ci              const EVP_CIPHER *cipher, ENGINE *impl)
113e1051a39Sopenharmony_ci{
114e1051a39Sopenharmony_ci    static const unsigned char zero_iv[EVP_MAX_BLOCK_LENGTH] = { 0 };
115e1051a39Sopenharmony_ci
116e1051a39Sopenharmony_ci    /* All zeros means restart */
117e1051a39Sopenharmony_ci    if (!key && !cipher && !impl && keylen == 0) {
118e1051a39Sopenharmony_ci        /* Not initialised */
119e1051a39Sopenharmony_ci        if (ctx->nlast_block == -1)
120e1051a39Sopenharmony_ci            return 0;
121e1051a39Sopenharmony_ci        if (!EVP_EncryptInit_ex(ctx->cctx, NULL, NULL, NULL, zero_iv))
122e1051a39Sopenharmony_ci            return 0;
123e1051a39Sopenharmony_ci        memset(ctx->tbl, 0, EVP_CIPHER_CTX_get_block_size(ctx->cctx));
124e1051a39Sopenharmony_ci        ctx->nlast_block = 0;
125e1051a39Sopenharmony_ci        return 1;
126e1051a39Sopenharmony_ci    }
127e1051a39Sopenharmony_ci    /* Initialise context */
128e1051a39Sopenharmony_ci    if (cipher != NULL) {
129e1051a39Sopenharmony_ci        /* Ensure we can't use this ctx until we also have a key */
130e1051a39Sopenharmony_ci        ctx->nlast_block = -1;
131e1051a39Sopenharmony_ci        if (!EVP_EncryptInit_ex(ctx->cctx, cipher, impl, NULL, NULL))
132e1051a39Sopenharmony_ci            return 0;
133e1051a39Sopenharmony_ci    }
134e1051a39Sopenharmony_ci    /* Non-NULL key means initialisation complete */
135e1051a39Sopenharmony_ci    if (key != NULL) {
136e1051a39Sopenharmony_ci        int bl;
137e1051a39Sopenharmony_ci
138e1051a39Sopenharmony_ci        /* If anything fails then ensure we can't use this ctx */
139e1051a39Sopenharmony_ci        ctx->nlast_block = -1;
140e1051a39Sopenharmony_ci        if (EVP_CIPHER_CTX_get0_cipher(ctx->cctx) == NULL)
141e1051a39Sopenharmony_ci            return 0;
142e1051a39Sopenharmony_ci        if (EVP_CIPHER_CTX_set_key_length(ctx->cctx, keylen) <= 0)
143e1051a39Sopenharmony_ci            return 0;
144e1051a39Sopenharmony_ci        if (!EVP_EncryptInit_ex(ctx->cctx, NULL, NULL, key, zero_iv))
145e1051a39Sopenharmony_ci            return 0;
146e1051a39Sopenharmony_ci        if ((bl = EVP_CIPHER_CTX_get_block_size(ctx->cctx)) < 0)
147e1051a39Sopenharmony_ci            return 0;
148e1051a39Sopenharmony_ci        if (EVP_Cipher(ctx->cctx, ctx->tbl, zero_iv, bl) <= 0)
149e1051a39Sopenharmony_ci            return 0;
150e1051a39Sopenharmony_ci        make_kn(ctx->k1, ctx->tbl, bl);
151e1051a39Sopenharmony_ci        make_kn(ctx->k2, ctx->k1, bl);
152e1051a39Sopenharmony_ci        OPENSSL_cleanse(ctx->tbl, bl);
153e1051a39Sopenharmony_ci        /* Reset context again ready for first data block */
154e1051a39Sopenharmony_ci        if (!EVP_EncryptInit_ex(ctx->cctx, NULL, NULL, NULL, zero_iv))
155e1051a39Sopenharmony_ci            return 0;
156e1051a39Sopenharmony_ci        /* Zero tbl so resume works */
157e1051a39Sopenharmony_ci        memset(ctx->tbl, 0, bl);
158e1051a39Sopenharmony_ci        ctx->nlast_block = 0;
159e1051a39Sopenharmony_ci    }
160e1051a39Sopenharmony_ci    return 1;
161e1051a39Sopenharmony_ci}
162e1051a39Sopenharmony_ci
163e1051a39Sopenharmony_ciint CMAC_Update(CMAC_CTX *ctx, const void *in, size_t dlen)
164e1051a39Sopenharmony_ci{
165e1051a39Sopenharmony_ci    const unsigned char *data = in;
166e1051a39Sopenharmony_ci    int bl;
167e1051a39Sopenharmony_ci
168e1051a39Sopenharmony_ci    if (ctx->nlast_block == -1)
169e1051a39Sopenharmony_ci        return 0;
170e1051a39Sopenharmony_ci    if (dlen == 0)
171e1051a39Sopenharmony_ci        return 1;
172e1051a39Sopenharmony_ci    if ((bl = EVP_CIPHER_CTX_get_block_size(ctx->cctx)) < 0)
173e1051a39Sopenharmony_ci        return 0;
174e1051a39Sopenharmony_ci    /* Copy into partial block if we need to */
175e1051a39Sopenharmony_ci    if (ctx->nlast_block > 0) {
176e1051a39Sopenharmony_ci        size_t nleft;
177e1051a39Sopenharmony_ci
178e1051a39Sopenharmony_ci        nleft = bl - ctx->nlast_block;
179e1051a39Sopenharmony_ci        if (dlen < nleft)
180e1051a39Sopenharmony_ci            nleft = dlen;
181e1051a39Sopenharmony_ci        memcpy(ctx->last_block + ctx->nlast_block, data, nleft);
182e1051a39Sopenharmony_ci        dlen -= nleft;
183e1051a39Sopenharmony_ci        ctx->nlast_block += nleft;
184e1051a39Sopenharmony_ci        /* If no more to process return */
185e1051a39Sopenharmony_ci        if (dlen == 0)
186e1051a39Sopenharmony_ci            return 1;
187e1051a39Sopenharmony_ci        data += nleft;
188e1051a39Sopenharmony_ci        /* Else not final block so encrypt it */
189e1051a39Sopenharmony_ci        if (EVP_Cipher(ctx->cctx, ctx->tbl, ctx->last_block, bl) <= 0)
190e1051a39Sopenharmony_ci            return 0;
191e1051a39Sopenharmony_ci    }
192e1051a39Sopenharmony_ci    /* Encrypt all but one of the complete blocks left */
193e1051a39Sopenharmony_ci    while (dlen > (size_t)bl) {
194e1051a39Sopenharmony_ci        if (EVP_Cipher(ctx->cctx, ctx->tbl, data, bl) <= 0)
195e1051a39Sopenharmony_ci            return 0;
196e1051a39Sopenharmony_ci        dlen -= bl;
197e1051a39Sopenharmony_ci        data += bl;
198e1051a39Sopenharmony_ci    }
199e1051a39Sopenharmony_ci    /* Copy any data left to last block buffer */
200e1051a39Sopenharmony_ci    memcpy(ctx->last_block, data, dlen);
201e1051a39Sopenharmony_ci    ctx->nlast_block = dlen;
202e1051a39Sopenharmony_ci    return 1;
203e1051a39Sopenharmony_ci
204e1051a39Sopenharmony_ci}
205e1051a39Sopenharmony_ci
206e1051a39Sopenharmony_ciint CMAC_Final(CMAC_CTX *ctx, unsigned char *out, size_t *poutlen)
207e1051a39Sopenharmony_ci{
208e1051a39Sopenharmony_ci    int i, bl, lb;
209e1051a39Sopenharmony_ci
210e1051a39Sopenharmony_ci    if (ctx->nlast_block == -1)
211e1051a39Sopenharmony_ci        return 0;
212e1051a39Sopenharmony_ci    if ((bl = EVP_CIPHER_CTX_get_block_size(ctx->cctx)) < 0)
213e1051a39Sopenharmony_ci        return 0;
214e1051a39Sopenharmony_ci    if (poutlen != NULL)
215e1051a39Sopenharmony_ci        *poutlen = (size_t)bl;
216e1051a39Sopenharmony_ci    if (!out)
217e1051a39Sopenharmony_ci        return 1;
218e1051a39Sopenharmony_ci    lb = ctx->nlast_block;
219e1051a39Sopenharmony_ci    /* Is last block complete? */
220e1051a39Sopenharmony_ci    if (lb == bl) {
221e1051a39Sopenharmony_ci        for (i = 0; i < bl; i++)
222e1051a39Sopenharmony_ci            out[i] = ctx->last_block[i] ^ ctx->k1[i];
223e1051a39Sopenharmony_ci    } else {
224e1051a39Sopenharmony_ci        ctx->last_block[lb] = 0x80;
225e1051a39Sopenharmony_ci        if (bl - lb > 1)
226e1051a39Sopenharmony_ci            memset(ctx->last_block + lb + 1, 0, bl - lb - 1);
227e1051a39Sopenharmony_ci        for (i = 0; i < bl; i++)
228e1051a39Sopenharmony_ci            out[i] = ctx->last_block[i] ^ ctx->k2[i];
229e1051a39Sopenharmony_ci    }
230e1051a39Sopenharmony_ci    if (EVP_Cipher(ctx->cctx, out, out, bl) <= 0) {
231e1051a39Sopenharmony_ci        OPENSSL_cleanse(out, bl);
232e1051a39Sopenharmony_ci        return 0;
233e1051a39Sopenharmony_ci    }
234e1051a39Sopenharmony_ci    return 1;
235e1051a39Sopenharmony_ci}
236e1051a39Sopenharmony_ci
237e1051a39Sopenharmony_ciint CMAC_resume(CMAC_CTX *ctx)
238e1051a39Sopenharmony_ci{
239e1051a39Sopenharmony_ci    if (ctx->nlast_block == -1)
240e1051a39Sopenharmony_ci        return 0;
241e1051a39Sopenharmony_ci    /*
242e1051a39Sopenharmony_ci     * The buffer "tbl" contains the last fully encrypted block which is the
243e1051a39Sopenharmony_ci     * last IV (or all zeroes if no last encrypted block). The last block has
244e1051a39Sopenharmony_ci     * not been modified since CMAC_final(). So reinitialising using the last
245e1051a39Sopenharmony_ci     * decrypted block will allow CMAC to continue after calling
246e1051a39Sopenharmony_ci     * CMAC_Final().
247e1051a39Sopenharmony_ci     */
248e1051a39Sopenharmony_ci    return EVP_EncryptInit_ex(ctx->cctx, NULL, NULL, NULL, ctx->tbl);
249e1051a39Sopenharmony_ci}
250