#include <stdlib.h>
#include <stdio.h>
#include <flint/flint.h>
#include <flint/fmpz.h>
#include <flint/ulong_extras.h>
int main(int argc, char* argv[])
{
slong i;
fmpz_t x, y;
fmpz_comb_t comb;
fmpz_comb_temp_t comb_temp;
ulong * primes;
ulong * residues;
slong num_primes;
if (argc != 3)
{
flint_printf("Syntax: crt <integer> <num_primes>\n");
return EXIT_FAILURE;
}
num_primes = atoi(argv[2]);
if (num_primes < 1)
{
flint_printf("Requires num_primes >= 1\n");
return EXIT_FAILURE;
}
fmpz_init(x);
fmpz_init(y);
fmpz_set_str(x, argv[1], 10);
primes = flint_malloc(num_primes * sizeof(ulong));
residues = flint_malloc(num_primes * sizeof(ulong));
primes[0] = 2;
for (i = 1; i < num_primes; i++)
primes[i] = n_nextprime(primes[i-1], 0);
fmpz_comb_init(comb, primes, num_primes);
fmpz_comb_temp_init(comb_temp, comb);
fmpz_multi_mod_ui(residues, x, comb, comb_temp);
fmpz_multi_CRT_ui(y, residues, comb, comb_temp, 1);
for (i = 0; i < num_primes; i++)
flint_printf("residue mod %wu = %wu\n", primes[i], residues[i]);
flint_printf("reconstruction = ");
fmpz_print(y);
flint_printf("\n");
fmpz_clear(x);
fmpz_clear(y);
fmpz_comb_temp_clear(comb_temp);
fmpz_comb_clear(comb);
flint_free(residues);
flint_free(primes);
return 0;
}