Coverage Report

Created: 2024-06-28 06:39

/src/nettle-with-mini-gmp/umac128.c
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/* umac128.c
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   Copyright (C) 2013 Niels Möller
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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 "umac.h"
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#include "umac-internal.h"
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#include "macros.h"
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void
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umac128_set_key (struct umac128_ctx *ctx, const uint8_t *key)
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{
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  _nettle_umac_set_key (ctx->l1_key, ctx->l2_key, ctx->l3_key1, ctx->l3_key2,
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      &ctx->pdf_key, key, 4);
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  /* Clear nonce */
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  memset (ctx->nonce, 0, sizeof(ctx->nonce));
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  ctx->nonce_length = sizeof(ctx->nonce);
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  /* Initialize buffer */
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  ctx->count = ctx->index = 0;
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}
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void
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umac128_set_nonce (struct umac128_ctx *ctx,
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       size_t nonce_length, const uint8_t *nonce)
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{
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  assert (nonce_length > 0);
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  assert (nonce_length <= AES_BLOCK_SIZE);
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  memcpy (ctx->nonce, nonce, nonce_length);
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  memset (ctx->nonce + nonce_length, 0, AES_BLOCK_SIZE - nonce_length);
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  ctx->nonce_length = nonce_length;
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}
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#define UMAC128_BLOCK(ctx, block) do {         \
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    uint64_t __umac128_y[4];            \
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    _nettle_umac_nh_n (__umac128_y, 4, ctx->l1_key, UMAC_BLOCK_SIZE, block); \
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    __umac128_y[0] += 8*UMAC_BLOCK_SIZE;       \
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    __umac128_y[1] += 8*UMAC_BLOCK_SIZE;       \
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    __umac128_y[2] += 8*UMAC_BLOCK_SIZE;       \
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    __umac128_y[3] += 8*UMAC_BLOCK_SIZE;       \
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    _nettle_umac_l2 (ctx->l2_key, ctx->l2_state, 4, ctx->count++, __umac128_y); \
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  } while (0)
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void
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umac128_update (struct umac128_ctx *ctx,
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    size_t length, const uint8_t *data)
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{
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  MD_UPDATE (ctx, length, data, UMAC128_BLOCK, (void)0);
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}
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void
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umac128_digest (struct umac128_ctx *ctx,
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    size_t length, uint8_t *digest)
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{
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  uint32_t tag[4];
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  unsigned i;
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  assert (length > 0);
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  assert (length <= 16);
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  if (ctx->index > 0 || ctx->count == 0)
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    {
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      /* Zero pad to multiple of 32 */
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      uint64_t y[4];
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      unsigned pad = (ctx->index > 0) ? 31 & - ctx->index : 32;
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      memset (ctx->block + ctx->index, 0, pad);
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      _nettle_umac_nh_n (y, 4, ctx->l1_key, ctx->index + pad, ctx->block);
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      y[0] += 8 * ctx->index;
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      y[1] += 8 * ctx->index;
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      y[2] += 8 * ctx->index;
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      y[3] += 8 * ctx->index;
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      _nettle_umac_l2 (ctx->l2_key, ctx->l2_state, 4, ctx->count++, y);
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    }
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  assert (ctx->count > 0);
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  aes128_encrypt (&ctx->pdf_key, AES_BLOCK_SIZE,
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      (uint8_t *) tag, ctx->nonce);
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  INCREMENT (ctx->nonce_length, ctx->nonce);
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  _nettle_umac_l2_final (ctx->l2_key, ctx->l2_state, 4, ctx->count);
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  for (i = 0; i < 4; i++)
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    tag[i] ^= ctx->l3_key2[i] ^ _nettle_umac_l3 (ctx->l3_key1 + 8*i,
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             ctx->l2_state + 2*i);
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  memcpy (digest, tag, length);
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  /* Reinitialize */
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  ctx->count = ctx->index = 0;
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}