Files
42_old_fillit/search_map.c
2019-05-09 18:04:08 +02:00

206 lines
5.3 KiB
C

/* ************************************************************************** */
/* */
/* ::: :::::::: */
/* search_map.c :+: :+: :+: */
/* +:+ +:+ +:+ */
/* By: hulamy <hulamy@student.42.fr> +#+ +:+ +#+ */
/* +#+#+#+#+#+ +#+ */
/* Created: 2019/04/27 20:47:22 by hulamy #+# #+# */
/* Updated: 2019/05/09 18:03:46 by hulamy ### ########.fr */
/* */
/* ************************************************************************** */
#include "fillit.h"
/*
** function that look for the first place in the map for a tetri
*/
int find_place(unsigned int *tab, t_fillist *list, int size, int pos)
{
int i;
int j;
unsigned int mask;
unsigned int tmp;
// creer un mask avec les size bits de gauche a 1 (ex: 11111110000000000000000000000000)
mask = ~0u << (32 - list->width);
tmp = mask;
i = pos;
// boucle jusqu'a la dernier place pour le tetri dans la map ou qu'il fit dans un trou
while (i < (size - list->height + 1) * size)
{
// pour ne pas deborder a droite de la map
if (i % size == size - list->width + 1)
i += list->width - 1;
else
{
tmp = 0;
// construit un tmp qui est une photo de la map de la taille du tetri a un emplacement donne
j = (list->height - 1) * size + i;
while (j >= i)
{
tmp >>= list->width;
tmp |= (mask & (tab[j / 32] << j));
tmp |= (mask & (tab[(j + list->width) / 32] >> (32 - j)));
j -= size;
}
if (!((tmp >> 16) & list->tetribit))
return (i + 1);
i++;
}
}
return (0);
}
/*
** function that add or remove a tetri on the map
*/
void add_remove(unsigned int *map, t_fillist *list, int size, int pos)
{
unsigned int mask;
unsigned short tetri;
int i;
int j;
tetri = list->tetribit;
mask = ~0u << (32 - list->width);
i = (list->height - 1) * list->width;
j = (list->height - 1) * size + pos;
// change les bits du tetri sur la map a la position donnee
while (j >= pos)
{
map[(j - 1) / 32] ^= (mask & tetri << (16 + i)) >> (j - 1);
if (j % 32 != 1)
map[(j + size) / 32] ^= (mask & tetri << (16 + i)) << (32 - j + 1);
j -= size;
i -= list->width;
}
}
int check_others(unsigned int *map, t_fillist *list, int size, int num)
{
t_fillist *tmp;
int dots;
int total;
int i;
int j;
dot = 0;
i = -1;
num *= 4;
total = size * size;
while (++i < total && dots <= total - num)
{
tmp = list->next;
j = 1;
while (verifier si i est un point)
i++;
while (j && tmp)
{
// si le tetri est trop a droite ou trop en bas il ne rentre pas ce n'est pas la peine de charcher
if (tmp->width > (size - i % size) || (total - i) <= (tmp->height * size))
tmp = tmp->next;
else if (tmp->tetribit ne rentre pas dans la place i)
tmp = tmp->next;
else
j = 0;
}
if (j)
dots++;
}
// verifie que les tetri restant puissent un par un se placer sur la map
// ca n'optimise qu'en fin de map donc ca ralentit les grosses map en fait
// while ((tmp = tmp->next))
// if (!find_place(map, tmp, size, 0))
// return (0);
return (1);
}
/*
** function that recursively try to fill the map with the tetris
*/
int fill_map(unsigned int *map, t_fillist *list, int size, int num, t_fillist *link) // DEBUG "link"
{
int pos;
pos = 0;
if (!list)
return (1);
// unsigned int tmp = list->tetribit << 16; print_map(&tmp, list->width, list->height, list->letter); // DEBUG
while ((pos = find_place(map, list, size, pos)))
{
add_remove(map, list, size, pos);
list->position = pos;
print_final_map(link, size); ft_putnbrendl(pos); print_map(map, size, size, '#'); ft_putchar('\n'); // DEBUG
if (check_others(map, list, size, num) && fill_map(map, list->next, size, num, link))
return (1);
add_remove(map, list, size, pos);
list->position = -1; // DEBUG
}
return (0);
}
/*
** function that init the map to the right size fill with int equal to zeros
*/
unsigned int *init_map(int i)
{
unsigned int *new;
int size;
size = (i * i) / 32 + 1;
new = (unsigned int *)malloc(sizeof(*new) * size);
while (size)
new[size--] = 0;
return (new);
}
/*
** function that send to "fill_map" a map of a certain size and increment its size untill it's solved
*/
void search_map(t_fillist *list)
{
t_fillist *tmp;
unsigned int *map;
int size;
int num;
size = 2;
num = 1;
tmp = list;
// trouve le nombre de tetri en parcourant la liste chainee
while ((tmp = tmp->next))
num++;
// trouve la taille minimale de la map
while (size * size < num * 4)
size++;
map = init_map(size);
unsigned int print;
tmp = list;
while (tmp)
{
// imression pour tests
print = tmp->tetribit;
print <<= 16;
print_map(&print, tmp->width, tmp->height, tmp->letter); // test, imprime le tetri
ft_putchar('\n');
tmp = tmp->next;
}
// lance la recursive fill_map en augmentant la taille de la map tant qu'il n'y a pas de solution
while (!fill_map(map, list, size, num, list))
map = init_map(size++);
print_final_map(list, size); // DEBUG
print_map(map, size, size, '#'); // DEBUG
}