Coverage Report

Created: 2023-02-22 06:14

/src/nettle-with-mini-gmp/siv-cmac.c
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/* siv-cmac.c
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   SIV-CMAC, RFC5297
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   Copyright (C) 2017 Nikos Mavrogiannopoulos
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   This file is part of GNU Nettle.
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   GNU Nettle is free software: you can redistribute it and/or
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   modify it under the terms of either:
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     * the GNU Lesser General Public License as published by the Free
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       Software Foundation; either version 3 of the License, or (at your
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       option) any later version.
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   or
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     * the GNU General Public License as published by the Free
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       Software Foundation; either version 2 of the License, or (at your
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       option) any later version.
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   or both in parallel, as here.
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   GNU Nettle is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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   General Public License for more details.
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   You should have received copies of the GNU General Public License and
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   the GNU Lesser General Public License along with this program.  If
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   not, see http://www.gnu.org/licenses/.
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*/
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#if HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <assert.h>
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#include <string.h>
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#include "aes.h"
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#include "siv-cmac.h"
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#include "cmac.h"
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#include "ctr.h"
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#include "memxor.h"
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#include "memops.h"
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#include "nettle-internal.h"
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#include "block-internal.h"
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/* This is an implementation of S2V for the AEAD case where
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 * vectors if zero, are considered as S empty components */
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static void
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_siv_s2v (const struct nettle_cipher *nc,
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    const struct cmac128_key *cmac_key,
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    const void *cmac_cipher,
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    size_t alength, const uint8_t * adata,
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    size_t nlength, const uint8_t * nonce,
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    size_t plength, const uint8_t * pdata, uint8_t * v)
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{
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  union nettle_block16 D, S, T;
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  static const union nettle_block16 const_zero = {.b = 0 };
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  struct cmac128_ctx cmac_ctx;
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  assert (nlength >= SIV_MIN_NONCE_SIZE);
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  cmac128_init(&cmac_ctx);
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  cmac128_update (&cmac_ctx, cmac_cipher, nc->encrypt, 16, const_zero.b);
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  cmac128_digest (&cmac_ctx, cmac_key, cmac_cipher, nc->encrypt, 16, D.b);
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  block16_mulx_be (&D, &D);
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  cmac128_update (&cmac_ctx, cmac_cipher, nc->encrypt, alength, adata);
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  cmac128_digest (&cmac_ctx, cmac_key, cmac_cipher, nc->encrypt, 16, S.b);
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  block16_xor (&D, &S);
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  block16_mulx_be (&D, &D);
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  cmac128_update (&cmac_ctx, cmac_cipher, nc->encrypt, nlength, nonce);
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  cmac128_digest (&cmac_ctx, cmac_key, cmac_cipher, nc->encrypt, 16, S.b);
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  block16_xor (&D, &S);
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  /* Sn */
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  if (plength >= 16)
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    {
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      cmac128_update (&cmac_ctx, cmac_cipher, nc->encrypt, plength - 16, pdata);
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      pdata += plength - 16;
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      block16_xor_bytes (&T, &D, pdata);
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    }
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  else
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    {
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      union nettle_block16 pad;
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      block16_mulx_be (&T, &D);
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      memcpy (pad.b, pdata, plength);
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      pad.b[plength] = 0x80;
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      if (plength + 1 < 16)
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  memset (&pad.b[plength + 1], 0, 16 - plength - 1);
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      block16_xor (&T, &pad);
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    }
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  cmac128_update (&cmac_ctx, cmac_cipher, nc->encrypt, 16, T.b);
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  cmac128_digest (&cmac_ctx, cmac_key, cmac_cipher, nc->encrypt, 16, v);
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}
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void
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siv_cmac_set_key (struct cmac128_key *cmac_key, void *cmac_cipher, void *siv_cipher,
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      const struct nettle_cipher *nc, const uint8_t * key)
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{
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  nc->set_encrypt_key (cmac_cipher, key);
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  cmac128_set_key (cmac_key, cmac_cipher, nc->encrypt);
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  nc->set_encrypt_key (siv_cipher, key + nc->key_size);
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}
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void
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siv_cmac_encrypt_message (const struct cmac128_key *cmac_key,
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        const void *cmac_cipher,
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        const struct nettle_cipher *nc,
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        const void *ctr_cipher,
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        size_t nlength, const uint8_t * nonce,
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        size_t alength, const uint8_t * adata,
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        size_t clength, uint8_t * dst, const uint8_t * src)
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{
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  union nettle_block16 siv;
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  size_t slength;
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  assert (clength >= SIV_DIGEST_SIZE);
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  slength = clength - SIV_DIGEST_SIZE;
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  /* create CTR nonce */
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  _siv_s2v (nc, cmac_key, cmac_cipher, alength, adata, nlength, nonce, slength, src, siv.b);
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  memcpy (dst, siv.b, SIV_DIGEST_SIZE);
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  siv.b[8] &= ~0x80;
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  siv.b[12] &= ~0x80;
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  ctr_crypt (ctr_cipher, nc->encrypt, AES_BLOCK_SIZE, siv.b, slength,
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       dst + SIV_DIGEST_SIZE, src);
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}
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int
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siv_cmac_decrypt_message (const struct cmac128_key *cmac_key,
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        const void *cmac_cipher,
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        const struct nettle_cipher *nc,
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        const void *ctr_cipher,
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        size_t nlength, const uint8_t * nonce,
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        size_t alength, const uint8_t * adata,
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        size_t mlength, uint8_t * dst, const uint8_t * src)
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{
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  union nettle_block16 siv;
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  union nettle_block16 ctr;
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  memcpy (ctr.b, src, SIV_DIGEST_SIZE);
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  ctr.b[8] &= ~0x80;
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  ctr.b[12] &= ~0x80;
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  ctr_crypt (ctr_cipher, nc->encrypt, AES_BLOCK_SIZE, ctr.b,
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       mlength, dst, src + SIV_DIGEST_SIZE);
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  /* create CTR nonce */
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  _siv_s2v (nc,
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      cmac_key, cmac_cipher, alength, adata,
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      nlength, nonce, mlength, dst, siv.b);
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  return memeql_sec (siv.b, src, SIV_DIGEST_SIZE);
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}