make mp_div_3 private
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10
demo/test.c
10
demo/test.c
@ -1241,14 +1241,14 @@ LBL_ERR:
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return EXIT_FAILURE;
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}
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static int test_mp_div_3(void)
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static int test_s_mp_div_3(void)
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{
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int cnt;
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mp_int a, b, c, d, e;
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DOR(mp_init_multi(&a, &b, &c, &d, &e, NULL));
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/* test mp_div_3 */
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/* test s_mp_div_3 */
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mp_set(&d, 3u);
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for (cnt = 0; cnt < 10000;) {
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mp_digit r2;
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@ -1259,10 +1259,10 @@ static int test_mp_div_3(void)
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}
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DO(mp_rand(&a, (abs(rand_int()) % 128) + 1));
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DO(mp_div(&a, &d, &b, &e));
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DO(mp_div_3(&a, &c, &r2));
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DO(s_mp_div_3(&a, &c, &r2));
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if (mp_cmp(&b, &c) || mp_cmp_d(&e, r2)) {
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printf("\nmp_div_3 => Failure\n");
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printf("\ns_mp_div_3 => Failure\n");
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goto LBL_ERR;
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}
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}
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@ -2297,7 +2297,7 @@ static int unit_tests(int argc, char **argv)
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T1(mp_cnt_lsb, MP_CNT_LSB),
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T1(mp_complement, MP_COMPLEMENT),
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T1(mp_decr, MP_SUB_D),
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T1(mp_div_3, MP_DIV_3),
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T1(s_mp_div_3, S_MP_DIV_3),
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T1(mp_dr_reduce, MP_DR_REDUCE),
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T2(mp_pack_unpack,MP_PACK, MP_UNPACK),
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T2(mp_fread_fwrite, MP_FREAD, MP_FWRITE),
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@ -2605,14 +2605,6 @@ mp_err mp_incr(mp_int *a);
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mp_err mp_decr(mp_int *a);
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\end{alltt}
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The division by three can be made faster by replacing the division with a multiplication by the
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multiplicative inverse of three.
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\index{mp\_div\_3}
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\begin{alltt}
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mp_err mp_div_3(const mp_int *a, mp_int *c, mp_digit *d);
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\end{alltt}
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\chapter{Little Helpers}
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It is never wrong to have some useful little shortcuts at hand.
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\section{Function Macros}
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@ -43,8 +43,8 @@ mp_err mp_div_d(const mp_int *a, mp_digit b, mp_int *c, mp_digit *d)
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}
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/* three? */
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if (MP_HAS(MP_DIV_3) && (b == 3u)) {
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return mp_div_3(a, c, d);
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if (MP_HAS(S_MP_DIV_3) && (b == 3u)) {
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return s_mp_div_3(a, c, d);
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}
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/* no easy answer [c'est la vie]. Just division */
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@ -1,10 +1,10 @@
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#include "tommath_private.h"
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#ifdef MP_DIV_3_C
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#ifdef S_MP_DIV_3_C
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/* LibTomMath, multiple-precision integer library -- Tom St Denis */
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/* SPDX-License-Identifier: Unlicense */
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/* divide by three (based on routine from MPI and the GMP manual) */
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mp_err mp_div_3(const mp_int *a, mp_int *c, mp_digit *d)
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mp_err s_mp_div_3(const mp_int *a, mp_int *c, mp_digit *d)
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{
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mp_int q;
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mp_word w;
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@ -133,7 +133,7 @@ mp_err s_mp_mul_toom(const mp_int *a, const mp_int *b, mp_int *c)
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if ((err = mp_sub(&S2, &a1, &S2)) != MP_OKAY) goto LBL_ERR;
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/** S2 = S2 / 3; \\ this is an exact division */
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if ((err = mp_div_3(&S2, &S2, NULL)) != MP_OKAY) goto LBL_ERR;
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if ((err = s_mp_div_3(&S2, &S2, NULL)) != MP_OKAY) goto LBL_ERR;
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/** a1 = S1 - a1; */
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if ((err = mp_sub(&S1, &a1, &a1)) != MP_OKAY) goto LBL_ERR;
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@ -300,9 +300,6 @@ mp_err mp_div_2d(const mp_int *a, int b, mp_int *c, mp_int *d) MP_WUR;
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/* b = a/2 */
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mp_err mp_div_2(const mp_int *a, mp_int *b) MP_WUR;
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/* a/3 => 3c + d == a */
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mp_err mp_div_3(const mp_int *a, mp_int *c, mp_digit *d) MP_WUR;
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/* c = a * 2**b, implemented as c = a << b */
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mp_err mp_mul_2d(const mp_int *a, int b, mp_int *c) MP_WUR;
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@ -158,36 +158,37 @@ MP_STATIC_ASSERT(prec_geq_min_prec, MP_PREC >= MP_MIN_PREC)
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extern MP_PRIVATE mp_err(*s_mp_rand_source)(void *out, size_t size);
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/* lowlevel functions, do not call! */
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MP_PRIVATE bool s_mp_get_bit(const mp_int *a, int b);
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MP_PRIVATE bool s_mp_get_bit(const mp_int *a, int b) MP_WUR;
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MP_PRIVATE mp_digit s_mp_log_d(mp_digit base, mp_digit n) MP_WUR;
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MP_PRIVATE mp_err s_mp_add(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_sub(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_comba(const mp_int *a, const mp_int *b, mp_int *c, int digs) MP_WUR;
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MP_PRIVATE mp_err s_mp_div_3(const mp_int *a, mp_int *c, mp_digit *d) MP_WUR;
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MP_PRIVATE mp_err s_mp_div_recursive(const mp_int *a, const mp_int *b, mp_int *q, mp_int *r) MP_WUR;
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MP_PRIVATE mp_err s_mp_div_school(const mp_int *a, const mp_int *b, mp_int *c, mp_int *d) MP_WUR;
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MP_PRIVATE mp_err s_mp_div_small(const mp_int *a, const mp_int *b, mp_int *c, mp_int *d) MP_WUR;
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MP_PRIVATE mp_err s_mp_exptmod(const mp_int *G, const mp_int *X, const mp_int *P, mp_int *Y, int redmode) MP_WUR;
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MP_PRIVATE mp_err s_mp_exptmod_fast(const mp_int *G, const mp_int *X, const mp_int *P, mp_int *Y, int redmode) MP_WUR;
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MP_PRIVATE mp_err s_mp_invmod(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_invmod_odd(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_log(const mp_int *a, uint32_t base, uint32_t *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_montgomery_reduce_comba(mp_int *x, const mp_int *n, mp_digit rho) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul(const mp_int *a, const mp_int *b, mp_int *c, int digs) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_high_comba(const mp_int *a, const mp_int *b, mp_int *c, int digs) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_high(const mp_int *a, const mp_int *b, mp_int *c, int digs) MP_WUR;
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MP_PRIVATE mp_err s_mp_sqr_comba(const mp_int *a, mp_int *b) MP_WUR;
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MP_PRIVATE mp_err s_mp_sqr(const mp_int *a, mp_int *b) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_balance(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_comba(const mp_int *a, const mp_int *b, mp_int *c, int digs) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_high(const mp_int *a, const mp_int *b, mp_int *c, int digs) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_high_comba(const mp_int *a, const mp_int *b, mp_int *c, int digs) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_karatsuba(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_mul_toom(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_prime_is_divisible(const mp_int *a, bool *result) MP_WUR;
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MP_PRIVATE mp_err s_mp_rand_platform(void *p, size_t n) MP_WUR;
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MP_PRIVATE mp_err s_mp_sqr(const mp_int *a, mp_int *b) MP_WUR;
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MP_PRIVATE mp_err s_mp_sqr_comba(const mp_int *a, mp_int *b) MP_WUR;
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MP_PRIVATE mp_err s_mp_sqr_karatsuba(const mp_int *a, mp_int *b) MP_WUR;
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MP_PRIVATE mp_err s_mp_sqr_toom(const mp_int *a, mp_int *b) MP_WUR;
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MP_PRIVATE mp_err s_mp_invmod_odd(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_invmod(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE mp_err s_mp_montgomery_reduce_comba(mp_int *x, const mp_int *n, mp_digit rho) MP_WUR;
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MP_PRIVATE mp_err s_mp_exptmod_fast(const mp_int *G, const mp_int *X, const mp_int *P, mp_int *Y, int redmode) MP_WUR;
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MP_PRIVATE mp_err s_mp_exptmod(const mp_int *G, const mp_int *X, const mp_int *P, mp_int *Y, int redmode) MP_WUR;
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MP_PRIVATE mp_err s_mp_rand_platform(void *p, size_t n) MP_WUR;
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MP_PRIVATE mp_err s_mp_prime_is_divisible(const mp_int *a, bool *result);
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MP_PRIVATE mp_digit s_mp_log_d(mp_digit base, mp_digit n);
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MP_PRIVATE mp_err s_mp_log(const mp_int *a, uint32_t base, uint32_t *c);
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MP_PRIVATE uint32_t s_mp_log_pow2(const mp_int *a, uint32_t base);
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MP_PRIVATE mp_err s_mp_div_recursive(const mp_int *a, const mp_int *b, mp_int *q, mp_int *r);
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MP_PRIVATE mp_err s_mp_div_school(const mp_int *a, const mp_int *b, mp_int *c, mp_int *d);
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MP_PRIVATE mp_err s_mp_div_small(const mp_int *a, const mp_int *b, mp_int *c, mp_int *d);
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MP_PRIVATE mp_err s_mp_sub(const mp_int *a, const mp_int *b, mp_int *c) MP_WUR;
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MP_PRIVATE uint32_t s_mp_log_pow2(const mp_int *a, uint32_t base) MP_WUR;
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MP_PRIVATE void s_mp_copy_digs(mp_digit *d, const mp_digit *s, int digits);
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MP_PRIVATE void s_mp_zero_buf(void *mem, size_t size);
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MP_PRIVATE void s_mp_zero_digs(mp_digit *d, int digits);
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MP_PRIVATE void s_mp_copy_digs(mp_digit *d, const mp_digit *s, int digits);
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/* TODO: jenkins prng is not thread safe as of now */
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MP_PRIVATE mp_err s_mp_rand_jenkins(void *p, size_t n) MP_WUR;
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* like removing support for even moduli, etc...
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*/
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# ifdef LTM_LAST
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# undef MP_DIV_3_C
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# undef MP_DR_IS_MODULUS_C
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# undef MP_DR_REDUCE_C
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# undef MP_DR_SETUP_C
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@ -83,6 +82,7 @@
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# undef MP_REDUCE_2K_SETUP_C
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# undef MP_REDUCE_IS_2K_C
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# undef MP_REDUCE_SETUP_C
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# undef S_MP_DIV_3_C
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# undef S_MP_EXPTMOD_C
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# undef S_MP_INVMOD_ODD_C
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# undef S_MP_MUL_BALANCE_C
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