mirror of
https://github.com/brl/mutter.git
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bc914bb8a2
Instead of a single new() constructor that both allocates and initializes, split the allocation and initialization into two separate functions for types that are typically used on the stack, and rarely allocated on the heap, like ClutterPoint and friends. This is also applied retroactively to ClutterActorBox and ClutterVertex, given that the same considerations on usage apply to them as well; we can add a return value to clutter_actor_box_init() and clutter_vertex_init() in an ABI-compatible way, so that clutter_actor_box_new() and clutter_vertex_new() can be effectively reimplemented as "init (alloc ())".
551 lines
12 KiB
C
551 lines
12 KiB
C
#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <math.h>
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#include "clutter-types.h"
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#include "clutter-interval.h"
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#include "clutter-private.h"
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/**
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* clutter_actor_box_new:
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* @x_1: X coordinate of the top left point
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* @y_1: Y coordinate of the top left point
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* @x_2: X coordinate of the bottom right point
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* @y_2: Y coordinate of the bottom right point
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*
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* Allocates a new #ClutterActorBox using the passed coordinates
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* for the top left and bottom right points.
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*
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* This function is the logical equivalent of:
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*
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* |[
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* clutter_actor_box_init (clutter_actor_box_alloc (),
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* x_1, y_1,
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* x_2, y_2);
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* ]|
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*
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* Return value: (transfer full): the newly allocated #ClutterActorBox.
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* Use clutter_actor_box_free() to free the resources
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*
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* Since: 1.0
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*/
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ClutterActorBox *
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clutter_actor_box_new (gfloat x_1,
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gfloat y_1,
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gfloat x_2,
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gfloat y_2)
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{
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return clutter_actor_box_init (clutter_actor_box_alloc (),
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x_1, y_1,
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x_2, y_2);
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}
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/**
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* clutter_actor_box_alloc:
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*
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* Allocates a new #ClutterActorBox.
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*
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* Return value: (transfer full): the newly allocated #ClutterActorBox.
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* Use clutter_actor_box_free() to free its resources
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*
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* Since: 1.12
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*/
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ClutterActorBox *
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clutter_actor_box_alloc (void)
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{
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return g_slice_new0 (ClutterActorBox);
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}
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/**
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* clutter_actor_box_init:
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* @box: a #ClutterActorBox
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* @x_1: X coordinate of the top left point
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* @y_1: Y coordinate of the top left point
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* @x_2: X coordinate of the bottom right point
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* @y_2: Y coordinate of the bottom right point
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*
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* Initializes @box with the given coordinates.
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*
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* Return value: (transfer none): the initialized #ClutterActorBox
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*
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* Since: 1.10
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*/
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ClutterActorBox *
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clutter_actor_box_init (ClutterActorBox *box,
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gfloat x_1,
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gfloat y_1,
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gfloat x_2,
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gfloat y_2)
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{
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g_return_val_if_fail (box != NULL, NULL);
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box->x1 = x_1;
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box->y1 = y_1;
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box->x2 = x_2;
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box->y2 = y_2;
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return box;
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}
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/**
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* clutter_actor_box_init_rect:
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* @box: a #ClutterActorBox
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* @x: X coordinate of the origin
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* @y: Y coordinate of the origin
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* @width: width of the box
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* @height: height of the box
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*
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* Initializes @box with the given origin and size.
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*
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* Since: 1.10
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*/
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void
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clutter_actor_box_init_rect (ClutterActorBox *box,
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gfloat x,
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gfloat y,
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gfloat width,
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gfloat height)
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{
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g_return_if_fail (box != NULL);
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box->x1 = x;
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box->y1 = y;
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box->x2 = box->x1 + width;
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box->y2 = box->y1 + height;
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}
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/**
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* clutter_actor_box_copy:
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* @box: a #ClutterActorBox
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*
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* Copies @box
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*
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* Return value: a newly allocated copy of #ClutterActorBox. Use
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* clutter_actor_box_free() to free the allocated resources
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*
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* Since: 1.0
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*/
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ClutterActorBox *
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clutter_actor_box_copy (const ClutterActorBox *box)
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{
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if (G_LIKELY (box != NULL))
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return g_slice_dup (ClutterActorBox, box);
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return NULL;
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}
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/**
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* clutter_actor_box_free:
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* @box: a #ClutterActorBox
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*
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* Frees a #ClutterActorBox allocated using clutter_actor_box_new()
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* or clutter_actor_box_copy()
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*
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* Since: 1.0
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*/
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void
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clutter_actor_box_free (ClutterActorBox *box)
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{
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if (G_LIKELY (box != NULL))
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g_slice_free (ClutterActorBox, box);
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}
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/**
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* clutter_actor_box_equal:
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* @box_a: a #ClutterActorBox
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* @box_b: a #ClutterActorBox
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*
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* Checks @box_a and @box_b for equality
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*
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* Return value: %TRUE if the passed #ClutterActorBox are equal
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*
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* Since: 1.0
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*/
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gboolean
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clutter_actor_box_equal (const ClutterActorBox *box_a,
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const ClutterActorBox *box_b)
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{
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g_return_val_if_fail (box_a != NULL && box_b != NULL, FALSE);
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if (box_a == box_b)
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return TRUE;
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return box_a->x1 == box_b->x1 && box_a->y1 == box_b->y1 &&
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box_a->x2 == box_b->x2 && box_a->y2 == box_b->y2;
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}
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/**
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* clutter_actor_box_get_x:
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* @box: a #ClutterActorBox
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*
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* Retrieves the X coordinate of the origin of @box
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*
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* Return value: the X coordinate of the origin
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*
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* Since: 1.0
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*/
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gfloat
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clutter_actor_box_get_x (const ClutterActorBox *box)
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{
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g_return_val_if_fail (box != NULL, 0.);
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return box->x1;
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}
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/**
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* clutter_actor_box_get_y:
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* @box: a #ClutterActorBox
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*
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* Retrieves the Y coordinate of the origin of @box
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*
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* Return value: the Y coordinate of the origin
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*
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* Since: 1.0
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*/
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gfloat
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clutter_actor_box_get_y (const ClutterActorBox *box)
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{
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g_return_val_if_fail (box != NULL, 0.);
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return box->y1;
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}
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/**
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* clutter_actor_box_get_width:
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* @box: a #ClutterActorBox
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*
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* Retrieves the width of the @box
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*
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* Return value: the width of the box
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*
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* Since: 1.0
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*/
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gfloat
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clutter_actor_box_get_width (const ClutterActorBox *box)
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{
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g_return_val_if_fail (box != NULL, 0.);
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return box->x2 - box->x1;
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}
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/**
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* clutter_actor_box_get_height:
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* @box: a #ClutterActorBox
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*
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* Retrieves the height of the @box
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*
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* Return value: the height of the box
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*
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* Since: 1.0
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*/
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gfloat
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clutter_actor_box_get_height (const ClutterActorBox *box)
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{
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g_return_val_if_fail (box != NULL, 0.);
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return box->y2 - box->y1;
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}
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/**
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* clutter_actor_box_get_origin:
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* @box: a #ClutterActorBox
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* @x: (out) (allow-none): return location for the X coordinate, or %NULL
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* @y: (out) (allow-none): return location for the Y coordinate, or %NULL
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*
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* Retrieves the origin of @box
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*
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* Since: 1.0
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*/
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void
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clutter_actor_box_get_origin (const ClutterActorBox *box,
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gfloat *x,
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gfloat *y)
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{
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g_return_if_fail (box != NULL);
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if (x)
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*x = box->x1;
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if (y)
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*y = box->y1;
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}
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/**
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* clutter_actor_box_get_size:
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* @box: a #ClutterActorBox
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* @width: (out) (allow-none): return location for the width, or %NULL
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* @height: (out) (allow-none): return location for the height, or %NULL
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*
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* Retrieves the size of @box
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*
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* Since: 1.0
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*/
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void
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clutter_actor_box_get_size (const ClutterActorBox *box,
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gfloat *width,
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gfloat *height)
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{
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g_return_if_fail (box != NULL);
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if (width)
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*width = box->x2 - box->x1;
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if (height)
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*height = box->y2 - box->y1;
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}
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/**
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* clutter_actor_box_get_area:
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* @box: a #ClutterActorBox
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*
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* Retrieves the area of @box
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*
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* Return value: the area of a #ClutterActorBox, in pixels
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*
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* Since: 1.0
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*/
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gfloat
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clutter_actor_box_get_area (const ClutterActorBox *box)
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{
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g_return_val_if_fail (box != NULL, 0.);
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return (box->x2 - box->x1) * (box->y2 - box->y1);
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}
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/**
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* clutter_actor_box_contains:
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* @box: a #ClutterActorBox
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* @x: X coordinate of the point
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* @y: Y coordinate of the point
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*
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* Checks whether a point with @x, @y coordinates is contained
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* withing @box
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*
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* Return value: %TRUE if the point is contained by the #ClutterActorBox
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*
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* Since: 1.0
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*/
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gboolean
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clutter_actor_box_contains (const ClutterActorBox *box,
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gfloat x,
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gfloat y)
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{
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g_return_val_if_fail (box != NULL, FALSE);
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return (x > box->x1 && x < box->x2) &&
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(y > box->y1 && y < box->y2);
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}
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/**
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* clutter_actor_box_from_vertices:
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* @box: a #ClutterActorBox
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* @verts: (array fixed-size=4): array of four #ClutterVertex
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*
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* Calculates the bounding box represented by the four vertices; for details
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* of the vertex array see clutter_actor_get_abs_allocation_vertices().
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*
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* Since: 1.0
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*/
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void
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clutter_actor_box_from_vertices (ClutterActorBox *box,
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const ClutterVertex verts[])
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{
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gfloat x_1, x_2, y_1, y_2;
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g_return_if_fail (box != NULL);
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g_return_if_fail (verts != NULL);
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/* 4-way min/max */
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x_1 = verts[0].x;
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y_1 = verts[0].y;
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if (verts[1].x < x_1)
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x_1 = verts[1].x;
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if (verts[2].x < x_1)
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x_1 = verts[2].x;
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if (verts[3].x < x_1)
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x_1 = verts[3].x;
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if (verts[1].y < y_1)
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y_1 = verts[1].y;
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if (verts[2].y < y_1)
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y_1 = verts[2].y;
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if (verts[3].y < y_1)
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y_1 = verts[3].y;
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x_2 = verts[0].x;
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y_2 = verts[0].y;
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if (verts[1].x > x_2)
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x_2 = verts[1].x;
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if (verts[2].x > x_2)
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x_2 = verts[2].x;
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if (verts[3].x > x_2)
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x_2 = verts[3].x;
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if (verts[1].y > y_2)
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y_2 = verts[1].y;
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if (verts[2].y > y_2)
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y_2 = verts[2].y;
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if (verts[3].y > y_2)
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y_2 = verts[3].y;
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box->x1 = x_1;
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box->x2 = x_2;
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box->y1 = y_1;
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box->y2 = y_2;
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}
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/**
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* clutter_actor_box_interpolate:
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* @initial: the initial #ClutterActorBox
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* @final: the final #ClutterActorBox
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* @progress: the interpolation progress
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* @result: (out): return location for the interpolation
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*
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* Interpolates between @initial and @final #ClutterActorBox<!-- -->es
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* using @progress
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*
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* Since: 1.2
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*/
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void
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clutter_actor_box_interpolate (const ClutterActorBox *initial,
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const ClutterActorBox *final,
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gdouble progress,
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ClutterActorBox *result)
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{
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g_return_if_fail (initial != NULL);
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g_return_if_fail (final != NULL);
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g_return_if_fail (result != NULL);
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result->x1 = initial->x1 + (final->x1 - initial->x1) * progress;
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result->y1 = initial->y1 + (final->y1 - initial->y1) * progress;
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result->x2 = initial->x2 + (final->x2 - initial->x2) * progress;
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result->y2 = initial->y2 + (final->y2 - initial->y2) * progress;
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}
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/**
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* clutter_actor_box_clamp_to_pixel:
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* @box: (inout): the #ClutterActorBox to clamp
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*
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* Clamps the components of @box to the nearest integer
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*
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* Since: 1.2
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*/
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void
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clutter_actor_box_clamp_to_pixel (ClutterActorBox *box)
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{
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g_return_if_fail (box != NULL);
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box->x1 = floorf (box->x1);
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box->y1 = floorf (box->y1);
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box->x2 = ceilf (box->x2);
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box->y2 = ceilf (box->y2);
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}
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/**
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* clutter_actor_box_union:
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* @a: (in) the first #ClutterActorBox
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* @b: (in): the second #ClutterActorBox
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* @result: (out): the #ClutterActorBox representing a union
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* of @a and @b
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*
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* Unions the two boxes @a and @b and stores the result in @result.
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*
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* Since: 1.4
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*/
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void
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clutter_actor_box_union (const ClutterActorBox *a,
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const ClutterActorBox *b,
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ClutterActorBox *result)
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{
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g_return_if_fail (a != NULL);
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g_return_if_fail (b != NULL);
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g_return_if_fail (result != NULL);
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result->x1 = MIN (a->x1, b->x1);
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result->y1 = MIN (a->y1, b->y1);
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result->x2 = MAX (a->x2, b->x2);
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result->y2 = MAX (a->y2, b->y2);
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}
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static gboolean
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clutter_actor_box_progress (const GValue *a,
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const GValue *b,
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gdouble factor,
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GValue *retval)
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{
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ClutterActorBox res = { 0, };
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clutter_actor_box_interpolate (g_value_get_boxed (a),
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g_value_get_boxed (b),
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factor,
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&res);
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g_value_set_boxed (retval, &res);
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return TRUE;
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}
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/**
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* clutter_actor_box_set_origin:
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* @box: a #ClutterActorBox
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* @x: the X coordinate of the new origin
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* @y: the Y coordinate of the new origin
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*
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* Changes the origin of @box, maintaining the size of the #ClutterActorBox.
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*
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* Since: 1.6
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*/
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void
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clutter_actor_box_set_origin (ClutterActorBox *box,
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gfloat x,
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gfloat y)
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{
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gfloat width, height;
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g_return_if_fail (box != NULL);
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width = box->x2 - box->x1;
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height = box->y2 - box->y1;
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clutter_actor_box_init_rect (box, x, y, width, height);
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}
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/**
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* clutter_actor_box_set_size:
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* @box: a #ClutterActorBox
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* @width: the new width
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* @height: the new height
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*
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* Sets the size of @box, maintaining the origin of the #ClutterActorBox.
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*
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* Since: 1.6
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*/
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void
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clutter_actor_box_set_size (ClutterActorBox *box,
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gfloat width,
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gfloat height)
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{
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g_return_if_fail (box != NULL);
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box->x2 = box->x1 + width;
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box->y2 = box->y1 + height;
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|
}
|
|
|
|
G_DEFINE_BOXED_TYPE_WITH_CODE (ClutterActorBox, clutter_actor_box,
|
|
clutter_actor_box_copy,
|
|
clutter_actor_box_free,
|
|
CLUTTER_REGISTER_INTERVAL_PROGRESS (clutter_actor_box_progress));
|