rename intersect_(f)rect to overlap_(f)rect and add simplified functions with the old names
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@ -130,9 +130,9 @@ bool world_find_intersect_frect(struct world *world, t_frect rect, t_frect *inte
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if (intersection == NULL) {
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t_frect temp;
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is_intersecting = intersect_frect(&rect, &tile_frect, &temp);
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is_intersecting = overlap_frect(&rect, &tile_frect, &temp);
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} else {
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is_intersecting = intersect_frect(&rect, &tile_frect, intersection);
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is_intersecting = overlap_frect(&rect, &tile_frect, intersection);
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}
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if (is_intersecting)
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@ -155,9 +155,9 @@ bool world_find_intersect_rect(struct world *world, t_rect rect, t_rect *interse
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if (intersection == NULL) {
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t_rect temp;
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is_intersecting = intersect_rect(&rect, tile_rect, &temp);
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is_intersecting = overlap_rect(&rect, tile_rect, &temp);
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} else {
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is_intersecting = intersect_rect(&rect, tile_rect, intersection);
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is_intersecting = overlap_rect(&rect, tile_rect, intersection);
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}
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if (is_intersecting)
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@ -109,9 +109,14 @@ _Alignas(16)
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} t_frect;
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TWN_API bool intersect_rect(const t_rect *a, const t_rect *b, t_rect *result);
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/* calculates the overlap of two rectangles and places it in result. */
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/* returns true if the rectangles are indeed intersecting. */
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TWN_API bool overlap_rect(const t_rect *a, const t_rect *b, t_rect *result);
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TWN_API bool overlap_frect(const t_frect *a, const t_frect *b, t_frect *result);
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TWN_API bool intersect_frect(const t_frect *a, const t_frect *b, t_frect *result);
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/* returns true if two triangles are intersecting */
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TWN_API bool intersect_rect(const t_rect *a, const t_rect *b);
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TWN_API bool intersect_frect(const t_frect *a, const t_frect *b);
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/* TODO: generics and specials (see m_to_fvec2() for an example)*/
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TWN_API t_frect to_frect(t_rect rect);
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@ -171,30 +171,50 @@ bool strends(const char *str, const char *suffix) {
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}
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bool intersect_rect(const t_rect *a, const t_rect *b, t_rect *result) {
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bool overlap_rect(const t_rect *a, const t_rect *b, t_rect *result) {
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SDL_Rect a_sdl = { a->x, a->y, a->w, a->h };
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SDL_Rect b_sdl = { b->x, b->y, b->w, b->h };
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SDL_Rect result_sdl = { 0 };
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bool intersection = SDL_IntersectRect(&a_sdl, &b_sdl, &result_sdl);
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*result = (t_rect){ result_sdl.x, result_sdl.y, result_sdl.w, result_sdl.h };
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if (result != NULL)
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*result = (t_rect){ result_sdl.x, result_sdl.y, result_sdl.w, result_sdl.h };
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return intersection;
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}
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bool intersect_frect(const t_frect *a, const t_frect *b, t_frect *result) {
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bool overlap_frect(const t_frect *a, const t_frect *b, t_frect *result) {
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SDL_FRect a_sdl = { a->x, a->y, a->w, a->h };
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SDL_FRect b_sdl = { b->x, b->y, b->w, b->h };
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SDL_FRect result_sdl = { 0 };
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bool intersection = SDL_IntersectFRect(&a_sdl, &b_sdl, &result_sdl);
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*result = (t_frect){ result_sdl.x, result_sdl.y, result_sdl.w, result_sdl.h };
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if (result != NULL)
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*result = (t_frect){ result_sdl.x, result_sdl.y, result_sdl.w, result_sdl.h };
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return intersection;
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}
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bool intersect_rect(const t_rect *a, const t_rect *b) {
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SDL_Rect a_sdl = { a->x, a->y, a->w, a->h };
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SDL_Rect b_sdl = { b->x, b->y, b->w, b->h };
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SDL_Rect result_sdl = { 0 };
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return SDL_IntersectRect(&a_sdl, &b_sdl, &result_sdl);
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}
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bool intersect_frect(const t_frect *a, const t_frect *b) {
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SDL_FRect a_sdl = { a->x, a->y, a->w, a->h };
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SDL_FRect b_sdl = { b->x, b->y, b->w, b->h };
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SDL_FRect result_sdl = { 0 };
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return SDL_IntersectFRect(&a_sdl, &b_sdl, &result_sdl);
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}
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t_frect to_frect(t_rect rect) {
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return (t_frect) {
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.h = (float)rect.h,
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