323 lines
8.9 KiB
C
323 lines
8.9 KiB
C
#include "e.h"
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typedef struct _E_Maximize_Rect E_Maximize_Rect;
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struct _E_Maximize_Rect
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{
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int x1, yy1, x2, y2;
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};
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#define OBSTACLE(_x1, _y1, _x2, _y2) \
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{ \
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r = E_NEW(E_Maximize_Rect, 1); \
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r->x1 = (_x1); r->yy1 = (_y1); r->x2 = (_x2); r->y2 = (_y2); \
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rects = eina_list_append(rects, r); \
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}
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static void _e_maximize_client_rects_fill(E_Client *ec, Eina_List *list, int *x1, int *yy1, int *x2, int *y2, E_Maximize dir);
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static void _e_maximize_client_rects_fill_both(E_Client *ec, Eina_List *rects, int *x1, int *yy1, int *x2, int *y2);
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static void _e_maximize_client_rects_fill_horiz(E_Client *ec, Eina_List *rects, int *x1, int *x2, int *bx, int *by, int *bw, int *bh);
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static void _e_maximize_client_rects_fill_vert(E_Client *ec, Eina_List *rects, int *yy1, int *y2, int *bx, int *by, int *bw, int *bh);
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E_API void
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e_maximize_client_shelf_fit(E_Client *ec, int *x1, int *yy1, int *x2, int *y2, E_Maximize dir)
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{
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e_maximize_client_shelf_fill(ec, x1, yy1, x2, y2, dir);
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}
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E_API void
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e_maximize_client_dock_fit(E_Client *ec, int *x1, int *yy1, int *x2, int *y2)
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{
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E_Client *ec2;
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int cx1, cx2, cy1, cy2;
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cx1 = ec->zone->x;
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if (x1) cx1 = *x1;
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cy1 = ec->zone->y;
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if (yy1) cy1 = *yy1;
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cx2 = ec->zone->x + ec->zone->w;
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if (x2) cx2 = *x2;
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cy2 = ec->zone->y + ec->zone->h;
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if (y2) cy2 = *y2;
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E_CLIENT_FOREACH(ec2)
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{
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enum
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{
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NONE,
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TOP,
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RIGHT,
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BOTTOM,
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LEFT
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} edge = NONE;
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if ((ec2->zone != ec->zone) || (ec2 == ec) ||
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(ec2->netwm.type != E_WINDOW_TYPE_DOCK))
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continue;
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if (((ec2->x == ec2->zone->x) || ((ec2->x + ec2->w) == (ec2->zone->x + ec2->zone->w))) &&
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((ec2->y == ec2->zone->y) || ((ec2->x + ec2->h) == (ec2->zone->x + ec2->zone->h))))
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{
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/* corner */
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if (ec2->w > ec2->h)
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{
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if (ec2->y == ec2->zone->y)
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edge = TOP;
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else if ((ec2->y + ec2->h) == (ec2->zone->y + ec2->zone->h))
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edge = BOTTOM;
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}
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else
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{
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if ((ec2->x + ec2->w) == (ec2->zone->x + ec2->zone->w))
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edge = RIGHT;
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else if (ec2->x == ec2->zone->x)
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edge = LEFT;
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}
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}
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else
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{
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if (ec2->y == ec2->zone->y)
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edge = TOP;
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else if ((ec2->y + ec2->h) == (ec2->zone->y + ec2->zone->h))
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edge = BOTTOM;
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else if (ec2->x == ec2->zone->x)
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edge = LEFT;
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else if ((ec2->x + ec2->w) == (ec2->zone->x + ec2->zone->w))
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edge = RIGHT;
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}
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switch (edge)
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{
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case TOP:
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if ((ec2->y + ec2->h) > cy1)
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cy1 = (ec2->y + ec2->h);
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break;
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case RIGHT:
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if (ec2->x < cx2)
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cx2 = ec2->x;
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break;
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case BOTTOM:
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if (ec2->y < cy2)
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cy2 = ec2->y;
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break;
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case LEFT:
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if ((ec2->x + ec2->w) > cx1)
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cx1 = (ec2->x + ec2->w);
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break;
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case NONE:
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printf("Crazy people. Dock isn't at the edge.\n");
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break;
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}
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}
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if (x1) *x1 = cx1;
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if (yy1) *yy1 = cy1;
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if (x2) *x2 = cx2;
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if (y2) *y2 = cy2;
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}
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E_API void
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e_maximize_client_shelf_fill(E_Client *ec, int *x1, int *yy1, int *x2, int *y2, E_Maximize dir)
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{
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Eina_List *l, *rects = NULL;
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E_Shelf *es;
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E_Maximize_Rect *r;
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l = e_shelf_list_all();
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EINA_LIST_FREE(l, es)
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{
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if (es->cfg->overlap) continue;
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if (!e_shelf_desk_visible(es, ec->desk)) continue;
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OBSTACLE(es->x + es->zone->x, es->y + es->zone->y,
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es->x + es->zone->x + es->w, es->y + es->zone->y + es->h);
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}
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if (rects)
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{
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_e_maximize_client_rects_fill(ec, rects, x1, yy1, x2, y2, dir);
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E_FREE_LIST(rects, free);
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}
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}
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E_API void
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e_maximize_client_client_fill(E_Client *ec, int *x1, int *yy1, int *x2, int *y2, E_Maximize dir)
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{
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Eina_List *rects = NULL;
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E_Maximize_Rect *r;
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E_Client *ec2;
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E_CLIENT_FOREACH(ec2)
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{
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if ((ec2->zone != ec->zone) || (ec == ec2) || (ec2->desk != ec->desk && !ec2->sticky) || (ec2->iconic))
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continue;
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OBSTACLE(ec2->x, ec2->y, ec2->x + ec2->w, ec2->y + ec2->h);
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}
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if (rects)
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{
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_e_maximize_client_rects_fill(ec, rects, x1, yy1, x2, y2, dir);
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E_FREE_LIST(rects, free);
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}
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}
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static void
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_e_maximize_client_rects_fill(E_Client *ec, Eina_List *rects, int *x1, int *yy1, int *x2, int *y2, E_Maximize dir)
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{
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if ((dir & E_MAXIMIZE_DIRECTION) == E_MAXIMIZE_BOTH)
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{
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_e_maximize_client_rects_fill_both(ec, rects, x1, yy1, x2, y2);
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}
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else
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{
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int bx, by, bw, bh;
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bx = E_CLAMP(ec->x, ec->zone->x, ec->zone->x + ec->zone->w);
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by = E_CLAMP(ec->y, ec->zone->y, ec->zone->y + ec->zone->h);
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bw = ec->w;
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bh = ec->h;
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if ((dir & E_MAXIMIZE_DIRECTION) == E_MAXIMIZE_HORIZONTAL)
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_e_maximize_client_rects_fill_horiz(ec, rects, x1, x2, &bx, &by, &bw, &bh);
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else if ((dir & E_MAXIMIZE_DIRECTION) == E_MAXIMIZE_VERTICAL)
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_e_maximize_client_rects_fill_vert(ec, rects, yy1, y2, &bx, &by, &bw, &bh);
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}
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}
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static void
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_e_maximize_client_rects_fill_both(E_Client *ec, Eina_List *rects, int *x1, int *yy1, int *x2, int *y2)
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{
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int hx1, hy1, hx2, hy2;
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int vx1, vy1, vx2, vy2;
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int bx, by, bw, bh;
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hx1 = vx1 = ec->zone->x;
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if (x1) hx1 = vx1 = *x1;
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hy1 = vy1 = ec->zone->y;
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if (yy1) hy1 = vy1 = *yy1;
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hx2 = vx2 = ec->zone->x + ec->zone->w;
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if (x2) hx2 = vx2 = *x2;
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hy2 = vy2 = ec->zone->y + ec->zone->h;
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if (y2) hy2 = vy2 = *y2;
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/* Init working values, try maximizing horizontally first */
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bx = ec->saved.x ?: ec->x;
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by = ec->saved.y ?: ec->y;
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bw = ec->saved.w ?: ec->w;
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bh = ec->saved.h ?: ec->h;
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_e_maximize_client_rects_fill_horiz(ec, rects, &hx1, &hx2, &bx, &by, &bw, &bh);
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_e_maximize_client_rects_fill_vert(ec, rects, &hy1, &hy2, &bx, &by, &bw, &bh);
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/* Reset working values, try maximizing vertically first */
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bx = ec->saved.x ?: ec->x;
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by = ec->saved.y ?: ec->y;
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bw = ec->saved.w ?: ec->w;
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bh = ec->saved.h ?: ec->h;
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_e_maximize_client_rects_fill_vert(ec, rects, &vy1, &vy2, &bx, &by, &bw, &bh);
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_e_maximize_client_rects_fill_horiz(ec, rects, &vx1, &vx2, &bx, &by, &bw, &bh);
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/* Use the result set that gives the largest volume */
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if (((hx2 - hx1) * (hy2 - hy1)) > ((vx2 - vx1) * (vy2 - vy1)))
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{
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if (x1) *x1 = hx1;
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if (yy1) *yy1 = hy1;
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if (x2) *x2 = hx2;
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if (y2) *y2 = hy2;
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}
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else
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{
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if (x1) *x1 = vx1;
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if (yy1) *yy1 = vy1;
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if (x2) *x2 = vx2;
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if (y2) *y2 = vy2;
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}
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}
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static void
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_e_maximize_client_rects_fill_horiz(E_Client *ec, Eina_List *rects, int *x1, int *x2, int *bx, int *by, int *bw, int *bh)
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{
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Eina_List *l;
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E_Maximize_Rect *rect;
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int cx1, cx2;
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cx1 = ec->zone->x;
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if (x1) cx1 = *x1;
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cx2 = ec->zone->x + ec->zone->w;
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if (x2) cx2 = *x2;
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/* Expand left */
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EINA_LIST_FOREACH(rects, l, rect)
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{
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if ((rect->x2 > cx1) && (rect->x2 <= *bx) &&
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E_INTERSECTS(0, rect->yy1, ec->zone->w, (rect->y2 - rect->yy1), 0, *by, ec->zone->w, *bh))
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{
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cx1 = rect->x2;
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}
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}
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*bw += (*bx - cx1);
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*bx = cx1;
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/* Expand right */
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EINA_LIST_FOREACH(rects, l, rect)
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{
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if ((rect->x1 < cx2) && (rect->x1 >= (*bx + *bw)) &&
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E_INTERSECTS(0, rect->yy1, ec->zone->w, (rect->y2 - rect->yy1), 0, *by, ec->zone->w, *bh))
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{
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cx2 = rect->x1;
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}
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}
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*bw = (cx2 - cx1);
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if (x1) *x1 = cx1;
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if (x2) *x2 = cx2;
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}
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static void
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_e_maximize_client_rects_fill_vert(E_Client *ec, Eina_List *rects, int *yy1, int *y2, int *bx, int *by, int *bw, int *bh)
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{
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Eina_List *l;
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E_Maximize_Rect *rect;
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int cy1, cy2;
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cy1 = ec->zone->y;
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if (yy1) cy1 = *yy1;
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cy2 = ec->zone->y + ec->zone->h;
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if (y2) cy2 = *y2;
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/* Expand up */
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EINA_LIST_FOREACH(rects, l, rect)
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{
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if ((rect->y2 > cy1) && ((rect->yy1 <= *by) || (rect->y2 <= *by)) &&
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E_INTERSECTS(rect->x1, 0, (rect->x2 - rect->x1), ec->zone->h, *bx, 0, *bw, ec->zone->h))
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{
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cy1 = rect->y2;
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}
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}
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*bh += (*by - cy1);
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*by = cy1;
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/* Expand down */
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EINA_LIST_FOREACH(rects, l, rect)
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{
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if ((rect->yy1 < cy2) && (rect->yy1 >= (*by + *bh)) &&
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E_INTERSECTS(rect->x1, 0, (rect->x2 - rect->x1), ec->zone->h, *bx, 0, *bw, ec->zone->h))
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{
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cy2 = rect->yy1;
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}
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}
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*bh = (cy2 - cy1);
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if (yy1) *yy1 = cy1;
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if (y2) *y2 = cy2;
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}
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