tommath/bn_mp_reduce.c

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/* LibTomMath, multiple-precision integer library -- Tom St Denis
*
* LibTomMath is library that provides for multiple-precision
* integer arithmetic as well as number theoretic functionality.
*
* The library is designed directly after the MPI library by
* Michael Fromberger but has been written from scratch with
* additional optimizations in place.
*
* The library is free for all purposes without any express
* guarantee it works.
*
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* Tom St Denis, tomstdenis@iahu.ca, http://math.libtomcrypt.org
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*/
#include <tommath.h>
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/* reduces x mod m, assumes 0 < x < m**2, mu is
* precomputed via mp_reduce_setup.
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* From HAC pp.604 Algorithm 14.42
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*/
int
mp_reduce (mp_int * x, mp_int * m, mp_int * mu)
{
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mp_int q;
int res, um = m->used;
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/* q = x */
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if ((res = mp_init_copy (&q, x)) != MP_OKAY) {
return res;
}
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/* q1 = x / b**(k-1) */
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mp_rshd (&q, um - 1);
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/* according to HAC this optimization is ok */
if (((unsigned long) um) > (((mp_digit)1) << (DIGIT_BIT - 1))) {
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if ((res = mp_mul (&q, mu, &q)) != MP_OKAY) {
goto CLEANUP;
}
} else {
if ((res = s_mp_mul_high_digs (&q, mu, &q, um - 1)) != MP_OKAY) {
goto CLEANUP;
}
}
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/* q3 = q2 / b**(k+1) */
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mp_rshd (&q, um + 1);
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/* x = x mod b**(k+1), quick (no division) */
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if ((res = mp_mod_2d (x, DIGIT_BIT * (um + 1), x)) != MP_OKAY) {
goto CLEANUP;
}
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/* q = q * m mod b**(k+1), quick (no division) */
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if ((res = s_mp_mul_digs (&q, m, &q, um + 1)) != MP_OKAY) {
goto CLEANUP;
}
/* x = x - q */
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if ((res = mp_sub (x, &q, x)) != MP_OKAY) {
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goto CLEANUP;
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}
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/* If x < 0, add b**(k+1) to it */
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if (mp_cmp_d (x, 0) == MP_LT) {
mp_set (&q, 1);
if ((res = mp_lshd (&q, um + 1)) != MP_OKAY)
goto CLEANUP;
if ((res = mp_add (x, &q, x)) != MP_OKAY)
goto CLEANUP;
}
/* Back off if it's too big */
while (mp_cmp (x, m) != MP_LT) {
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if ((res = s_mp_sub (x, m, x)) != MP_OKAY) {
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goto CLEANUP;
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}
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}
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CLEANUP:
mp_clear (&q);
return res;
}