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#include "../tool.h"
#define SOL_BUFFER_LEN 10000
int nsol;
char *solver;
int64_t size = 0;
char *buf;
char *scrambles[] = {
"U2 D2 F2 B2 L2 R2",
"R' D R U R' D' R U'", /* Pure 8-move comm */
"R D' R2 D R U2 R' D' R U2 R D R'", /* 12 mover with sym */
NULL
};
void run(void) {
int i;
int64_t n;
long long stats[NISSY_SIZE_SOLVE_STATS];
char sol[SOL_BUFFER_LEN], cube[22];
printf("Solved the following scrambles:\n\n");
for (i = 0; scrambles[i] != NULL; i++) {
printf("%d. %s\n", i+1, scrambles[i]);
printf("Solving scramble %s\n", scrambles[i]);
if (nissy_applymoves(NISSY_SOLVED_CUBE, scrambles[i], cube)
== -1) {
printf("Invalid scramble\n");
continue;
}
n = nissy_solve(cube, solver, "", NISSY_NISSFLAG_NORMAL,
0, 20, nsol, -1, 0, size, buf, SOL_BUFFER_LEN, sol, stats);
if (n == 0)
printf("No solution found\n");
else
printf("Solutions:\n%s\n", sol);
}
}
int main(int argc, char **argv) {
char filename[255];
if (argc < 3) {
printf("Error: not enough arguments. "
"A solver and a number of solutions must be given.\n");
return 1;
}
solver = argv[1];
nsol = atoi(argv[2]);
srand(time(NULL));
nissy_setlogger(log_stderr);
sprintf(filename, "tables/%s", solver);
if (getdata(solver, &buf, filename) != 0)
return 1;
size = nissy_datasize(solver);
timerun(run);
free(buf);
return 0;
}
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