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[/] [mod_sim_exp/] [trunk/] [sw/] [ModExp/] [src/] [ModExp.c] - Blame information for rev 90

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Line No. Rev Author Line
1 29 JonasDC
/*
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 ============================================================================
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 Name        : ModExp.c
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 Author      :
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 Version     :
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 Copyright   : Your copyright notice
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 Description : Hello World in C, Ansi-style
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 ============================================================================
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 */
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#include <stdio.h>
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#include <stdlib.h>
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#include <gmp.h>
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int main(void) {
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        unsigned int base_width, exp_width;
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        mpz_t m, g0, g1, e0, e1, R, R2, result, tmp, gt0, gt1, gt01;
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        gmp_randstate_t state;
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        gmp_randinit_default(state);
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        mpz_init(m);
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        mpz_init(g0);
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        mpz_init(g1);
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        mpz_init(e0);
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        mpz_init(e1);
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        mpz_init(R);
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        mpz_init(R2);
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        mpz_init(result);
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        mpz_init(tmp);
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        mpz_init(gt0);
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        mpz_init(gt1);
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        mpz_init(gt01);
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        printf("-- input generator program\n");
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        printf("--  generates test values per bit input pair\n");
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        while (1){
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                //read in base_width
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                scanf("%d", &base_width);
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                if (base_width == 0) break;
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                scanf("%d", &exp_width);
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                //generate modulus (must be uneven)
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                mpz_urandomb(m, state, base_width);
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                mpz_setbit(m, 0); //uneven
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                //generate g0
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                mpz_urandomb(g0, state, base_width);
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                //generate g1
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                mpz_urandomb(g1, state, base_width);
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                //generate e0
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                mpz_urandomb(e0, state, exp_width);
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                //generate e1
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                mpz_urandomb(e1, state, exp_width);
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                //calculate R
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                mpz_set_ui(R, 2);
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                mpz_powm_ui(R, R, base_width, m); //R = 2^n mod m
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                //calculate R2
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                mpz_set_ui(R2, 2);
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                mpz_powm(R2, R, R2, m); //R2 = Rē mod m = 2^2n mod m
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                //calc precompute values
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                mpz_mul(gt0, g0, R);
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                mpz_powm_ui(gt0, gt0, 1, m);
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                mpz_mul(gt1, g1, R);
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                mpz_powm_ui(gt1, gt1, 1, m);
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                mpz_mul(gt01, g0, g1);
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                mpz_mul(gt01, gt01, R);
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                mpz_powm_ui(gt01, gt01, 1, m);
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                //calculate result
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                mpz_powm(result, g0, e0, m);
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                mpz_powm(tmp, g1, e1, m);
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                mpz_mul(result, result, tmp);
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                mpz_powm_ui(result, result, 1, m);
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                printf("-- base_width, exp_width, g0, g1, e0, e1, m, R^2, result\n");
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                printf("%d\n", base_width);
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                printf("%d\n", exp_width);
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                gmp_printf("%Zx\n", g0);
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                gmp_printf("%Zx\n", g1);
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                gmp_printf("%Zx\n", e0);
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                gmp_printf("%Zx\n", e1);
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                gmp_printf("%Zx\n", m);
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                gmp_printf("%Zx\n", R2);
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                gmp_printf("%Zx\n", R);
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                gmp_printf("%Zx\n", gt0);
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                gmp_printf("%Zx\n", gt1);
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                gmp_printf("%Zx\n", gt01);
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                gmp_printf("%Zx\n", result);
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        }
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        mpz_clear(g0);
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        mpz_clear(g1);
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        mpz_clear(e0);
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        mpz_clear(e1);
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        mpz_clear(m);
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        mpz_clear(result);
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        mpz_clear(tmp);
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        mpz_clear(R);
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        mpz_clear(R2);
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        mpz_clear(gt0);
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        mpz_clear(gt1);
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        mpz_clear(gt01);
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        return EXIT_SUCCESS;
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}

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