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sexp2rsa.c 2.7 KiB
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     *
     */
    
    /* nettle, low-level cryptographics library
     *
     * Copyright (C) 2002 Niels Mller
     *  
     * The nettle library is free software; you can redistribute it and/or modify
     * it under the terms of the GNU Lesser General Public License as published by
     * the Free Software Foundation; either version 2.1 of the License, or (at your
     * option) any later version.
     * 
     * The nettle library is distributed in the hope that it will be useful, but
     * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
     * or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU Lesser General Public
     * License for more details.
     * 
     * You should have received a copy of the GNU Lesser General Public License
     * along with the nettle library; see the file COPYING.LIB.  If not, write to
     * the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
     * MA 02111-1307, USA.
     */
    
    #if HAVE_CONFIG_H
    
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    #endif
    
    
    #if WITH_PUBLIC_KEY
    
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    #include "rsa.h"
    
    #include "bignum.h"
    #include "sexp.h"
    
    
    #define GET(x, l, v)				\
    do {						\
      if (!nettle_mpz_set_sexp((x), (l), (v))	\
          || mpz_sgn(x) <= 0)			\
        return 0;					\
    } while(0)
    
    
    /* Iterator should point past the algorithm tag, e.g.
     *
     *   (public-key (rsa (n |xxxx|) (e |xxxx|))
     *                    ^ here
     */
    
    
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    int
    
    rsa_keypair_from_sexp_alist(struct rsa_public_key *pub,
    			    struct rsa_private_key *priv,
    
    			    struct sexp_iterator *i)
    
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    {
    
      static const uint8_t *names[8]
    
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        = { "n", "e", "d", "p", "q", "a", "b", "c" };
      struct sexp_iterator values[8];
    
      unsigned nvalues = priv ? 8 : 2;
    
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      if (!sexp_iterator_assoc(i, nvalues, names, values))
    
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        return 0;
    
      if (priv)
        {
    
          GET(priv->d, limit, &values[2]);
          GET(priv->p, limit, &values[3]);
          GET(priv->q, limit, &values[4]);
          GET(priv->a, limit, &values[5]);
          GET(priv->b, limit, &values[6]);
          GET(priv->c, limit, &values[7]);
    
          if (!rsa_private_key_prepare(priv))
    
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        }
    
      if (pub)
        {
    
          GET(pub->n, limit, &values[0]);
          GET(pub->e, limit, &values[1]);
    
          if (!rsa_public_key_prepare(pub))
    
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        }
    
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      return 1;
    }
    
    
    int
    rsa_keypair_from_sexp(struct rsa_public_key *pub,
    		      struct rsa_private_key *priv,
    
    		      unsigned length, const uint8_t *expr)
    {
      struct sexp_iterator i;
      static const uint8_t *names[3]
        = { "rsa", "rsa-pkcs1", "rsa-pkcs1-sha1" };
    
      if (!sexp_iterator_first(&i, length, expr))
        return 0;
      
      if (!sexp_iterator_check_type(&i, priv ? "private-key" : "public-key"))
        return 0;
    
      if (!sexp_iterator_check_types(&i, 3, names))
        return 0;
    
    
      return rsa_keypair_from_sexp_alist(pub, priv, limit, &i);
    
    #endif /* WITH_PUBLIC_KEY */