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clutter: Calculate "safe area" during pointer pick
This safe area is the region (in stage coordinates) where the pointer is ensured to stay within the current actor. This is not used yet, but will be used for optimizations in pointer picking. Part-of: <https://gitlab.gnome.org/GNOME/mutter/-/merge_requests/1915>
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@ -61,7 +61,8 @@ void clutter_pick_stack_pop_transform (ClutterPickStack *pick_stack);
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ClutterActor *
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clutter_pick_stack_search_actor (ClutterPickStack *pick_stack,
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const graphene_point3d_t *point,
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const graphene_ray_t *ray);
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const graphene_ray_t *ray,
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cairo_region_t **clear_area);
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G_DEFINE_AUTOPTR_CLEANUP_FUNC (ClutterPickStack, clutter_pick_stack_unref)
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@ -429,10 +429,82 @@ clutter_pick_stack_pop_transform (ClutterPickStack *pick_stack)
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cogl_matrix_stack_pop (pick_stack->matrix_stack);
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}
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static gboolean
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get_verts_rectangle (graphene_point3d_t verts[4],
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cairo_rectangle_int_t *rect)
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{
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if (verts[0].x != verts[2].x ||
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verts[0].y != verts[1].y ||
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verts[3].x != verts[1].x ||
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verts[3].y != verts[2].y ||
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verts[0].x > verts[3].x ||
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verts[0].y > verts[3].y)
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return FALSE;
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*rect = (cairo_rectangle_int_t) {
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.x = ceilf (verts[0].x),
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.y = ceilf (verts[0].y),
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.width = floor (verts[1].x - ceilf (verts[0].x)),
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.height = floor (verts[2].y - ceilf (verts[0].y)),
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};
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return TRUE;
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}
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static void
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calculate_clear_area (ClutterPickStack *pick_stack,
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int elem,
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ClutterActor *actor,
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cairo_region_t **clear_area)
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{
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cairo_region_t *area = NULL;
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graphene_point3d_t verts[4];
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cairo_rectangle_int_t rect;
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int i;
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clutter_actor_get_abs_allocation_vertices (actor,
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(graphene_point3d_t *) &verts);
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if (!get_verts_rectangle (verts, &rect))
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{
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if (clear_area)
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*clear_area = NULL;
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return;
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}
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area = cairo_region_create_rectangle (&rect);
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for (i = elem + 1; i < pick_stack->vertices_stack->len; i++)
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{
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PickRecord *rec =
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&g_array_index (pick_stack->vertices_stack, PickRecord, i);
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ClutterActorBox paint_box;
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if (!rec->is_overlap &&
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(rec->base.rect.x1 == rec->base.rect.x2 ||
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rec->base.rect.y1 == rec->base.rect.y2))
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continue;
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clutter_actor_get_paint_box (rec->actor, &paint_box);
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cairo_region_subtract_rectangle (area,
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&(cairo_rectangle_int_t) {
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.x = paint_box.x1,
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.y = paint_box.y1,
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.width = paint_box.x2 - paint_box.x1,
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.height = paint_box.y2 - paint_box.y1,
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});
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}
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if (clear_area)
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*clear_area = g_steal_pointer (&area);
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g_clear_pointer (&area, cairo_region_destroy);
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}
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ClutterActor *
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clutter_pick_stack_search_actor (ClutterPickStack *pick_stack,
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const graphene_point3d_t *point,
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const graphene_ray_t *ray)
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const graphene_ray_t *ray,
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cairo_region_t **clear_area)
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{
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int i;
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@ -447,8 +519,12 @@ clutter_pick_stack_search_actor (ClutterPickStack *pick_stack,
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if (!rec->is_overlap && rec->actor &&
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ray_intersects_record (pick_stack, rec, point, ray))
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{
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if (clear_area)
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calculate_clear_area (pick_stack, i, rec->actor, clear_area);
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return rec->actor;
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}
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}
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return NULL;
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}
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@ -1015,7 +1015,7 @@ _clutter_stage_do_pick_on_view (ClutterStage *stage,
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pick_stack = clutter_pick_context_steal_stack (pick_context);
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clutter_pick_context_destroy (pick_context);
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actor = clutter_pick_stack_search_actor (pick_stack, &p, &ray);
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actor = clutter_pick_stack_search_actor (pick_stack, &p, &ray, NULL);
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return actor ? actor : CLUTTER_ACTOR (stage);
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}
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