2003-03-22 15:10:20 +00:00
										 
									 
								 
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								/* LibTomMath, multiple-precision integer library -- Tom St Denis
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								 *
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								 * LibTomMath is library that provides for multiple-precision
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								 * integer arithmetic as well as number theoretic functionality.
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								 *
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								 * The library is designed directly after the MPI library by
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								 * Michael Fromberger but has been written from scratch with
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								 * additional optimizations in place.
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								 *
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								 * The library is free for all purposes without any express
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								 * guarantee it works.
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								 *
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								 * Tom St Denis, tomstdenis@iahu.ca, http://math.libtomcrypt.org
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								 */
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								#include <tommath.h>
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											2003-05-29 13:35:26 +00:00
										 
									 
								 
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								/* reduce "x" in place modulo "n" using the Diminished Radix algorithm.
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								 *
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											2003-05-17 12:33:54 +00:00
										 
									 
								 
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								 * Based on algorithm from the paper
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								 *
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								 * "Generating Efficient Primes for Discrete Log Cryptosystems"
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								 *                 Chae Hoon Lim, Pil Loong Lee,
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								 *          POSTECH Information Research Laboratories
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								 *
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								 * The modulus must be of a special format [see manual]
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								 *
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								 * Has been modified to use algorithm 7.10 from the LTM book instead
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								 */
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								int
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								mp_dr_reduce (mp_int * x, mp_int * n, mp_digit k)
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								{
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								  int      err, i, m;
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								  mp_word  r;
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								  mp_digit mu, *tmpx1, *tmpx2;
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								  /* m = digits in modulus */
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								  m = n->used;
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								  /* ensure that "x" has at least 2m digits */
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								  if (x->alloc < m + m) {
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								    if ((err = mp_grow (x, m + m)) != MP_OKAY) {
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								      return err;
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								    }
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								  }
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											2003-05-17 12:33:54 +00:00
										 
									 
								 
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											2003-05-29 13:35:26 +00:00
										 
									 
								 
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								/* top of loop, this is where the code resumes if 
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								 * another reduction pass is required.
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								 */
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								top:
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								  /* aliases for digits */
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								  /* alias for lower half of x */
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								  tmpx1 = x->dp;
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								  /* alias for upper half of x, or x/B**m */
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								  tmpx2 = x->dp + m;
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								  /* set carry to zero */
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								  mu = 0;
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								  /* compute (x mod B**m) + mp * [x/B**m] inline and inplace */
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								  for (i = 0; i < m; i++) {
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								      r         = ((mp_word)*tmpx2++) * ((mp_word)k) + *tmpx1 + mu;
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								      *tmpx1++  = (mp_digit)(r & MP_MASK);
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								      mu        = (mp_digit)(r >> ((mp_word)DIGIT_BIT));
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								  }
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								  /* set final carry */
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								  *tmpx1++ = mu;
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								  /* zero words above m */
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								  for (i = m + 1; i < x->used; i++) {
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								      *tmpx1++ = 0;
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								  }
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								  /* clamp, sub and return */
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								  mp_clamp (x);
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								  /* if x >= n then subtract and reduce again 
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								   * Each successive "recursion" makes the input smaller and smaller.
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								   */
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								  if (mp_cmp_mag (x, n) != MP_LT) {
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								    s_mp_sub(x, n, x);
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								    goto top;
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								  }
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								  return MP_OKAY;
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								}
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