libtommath/mp_mod_2d.c
Daniel Mendler 795cd2013f
simplifications: add s_mp_zero_(digs|buf) and s_mp_copy_digs
Originally I made those as macros. However we have many
other small functions like mp_clamp, mp_exch which are also not implemented
as macros right now.

If we would use c99, I would implement them as private static inline
functions. And mp_exch would be a public static inline function.

But since we are bound to c89, we simply use normal functions.
To achieve optimal performance one should either use link time
optimization or amalgamation.
2019-11-04 15:41:32 +01:00

41 lines
957 B
C

#include "tommath_private.h"
#ifdef MP_MOD_2D_C
/* LibTomMath, multiple-precision integer library -- Tom St Denis */
/* SPDX-License-Identifier: Unlicense */
/* calc a value mod 2**b */
mp_err mp_mod_2d(const mp_int *a, int b, mp_int *c)
{
int x;
mp_err err;
if (b < 0) {
return MP_VAL;
}
if (b == 0) {
mp_zero(c);
return MP_OKAY;
}
/* if the modulus is larger than the value than return */
if (b >= (a->used * MP_DIGIT_BIT)) {
return mp_copy(a, c);
}
if ((err = mp_copy(a, c)) != MP_OKAY) {
return err;
}
/* zero digits above the last digit of the modulus */
x = (b / MP_DIGIT_BIT) + (((b % MP_DIGIT_BIT) == 0) ? 0 : 1);
s_mp_zero_digs(c->dp + x, c->used - x);
/* clear the digit that is not completely outside/inside the modulus */
c->dp[b / MP_DIGIT_BIT] &=
((mp_digit)1 << (mp_digit)(b % MP_DIGIT_BIT)) - (mp_digit)1;
mp_clamp(c);
return MP_OKAY;
}
#endif