Coverage Report

Created: 2023-03-26 07:33

/src/nettle/eddsa-sign.c
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/* eddsa-sign.c
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   Copyright (C) 2014 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 "eddsa.h"
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#include "eddsa-internal.h"
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#include "ecc.h"
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#include "ecc-internal.h"
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#include "nettle-meta.h"
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mp_size_t
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_eddsa_sign_itch (const struct ecc_curve *ecc)
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{
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  assert (ecc->mul_g_itch <= _eddsa_compress_itch (ecc));
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  return 5*ecc->p.size + _eddsa_compress_itch (ecc);
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0
}
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void
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_eddsa_sign (const struct ecc_curve *ecc,
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       const struct ecc_eddsa *eddsa,
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       void *ctx,
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       const uint8_t *pub,
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       const uint8_t *k1,
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       const mp_limb_t *k2,
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       size_t length,
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       const uint8_t *msg,
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       uint8_t *signature,
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       mp_limb_t *scratch)
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{
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  mp_size_t size;
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  size_t nbytes;
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  mp_limb_t q, cy;
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#define rp scratch
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#define hp (scratch + size)
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#define P (scratch + 2*size)
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#define sp (scratch + 2*size)
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#define hash ((uint8_t *) (scratch + 3*size))
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#define scratch_out (scratch + 5*size)
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  size = ecc->p.size;
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  nbytes = 1 + ecc->p.bit_size / 8;
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  eddsa->dom (ctx);
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  eddsa->update (ctx, nbytes, k1);
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  eddsa->update (ctx, length, msg);
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  eddsa->digest (ctx, 2*nbytes, hash);
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  _eddsa_hash (&ecc->q, rp, 2*nbytes, hash);
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  ecc->mul_g (ecc, P, rp, scratch_out);
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  _eddsa_compress (ecc, signature, P, scratch_out);
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  eddsa->dom (ctx);
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  eddsa->update (ctx, nbytes, signature);
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  eddsa->update (ctx, nbytes, pub);
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  eddsa->update (ctx, length, msg);
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  eddsa->digest (ctx, 2*nbytes, hash);
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  _eddsa_hash (&ecc->q, hp, 2*nbytes, hash);
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  ecc_mod_mul (&ecc->q, sp, hp, k2, sp);
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  ecc_mod_add (&ecc->q, sp, sp, rp); /* FIXME: Can be plain add */
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  if (ecc->p.bit_size == 255)
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    {
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      /* FIXME: Special code duplicated in ecc_curve25519_modq
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   Define a suitable method for canonical reduction? */
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      /* q is slightly larger than 2^252, underflow from below
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   mpn_submul_1 is unlikely. */
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      unsigned shift = 252 - GMP_NUMB_BITS * (ecc->p.size - 1);
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      q = sp[ecc->p.size-1] >> shift;
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    }
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  else
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    {
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      unsigned shift;
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      assert (ecc->p.bit_size == 448);
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      /* q is slightly smaller than 2^446 */
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      shift = 446 - GMP_NUMB_BITS * (ecc->p.size - 1);
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      /* Add one, then it's possible but unlikely that below
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   mpn_submul_1 does *not* underflow. */
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      q = (sp[ecc->p.size-1] >> shift) + 1;
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    }
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  cy = mpn_submul_1 (sp, ecc->q.m, ecc->p.size, q);
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  assert (cy < 2);
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  cy -= mpn_cnd_add_n (cy, sp, sp, ecc->q.m, ecc->p.size);
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  assert (cy == 0);
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  mpn_get_base256_le (signature + nbytes, nbytes, sp, ecc->q.size);
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#undef rp
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#undef hp
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#undef P
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#undef sp
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#undef hash
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}