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271 lines
8.8 KiB
Plaintext
271 lines
8.8 KiB
Plaintext
<chapter id="clutter-subclassing-ClutterActor">
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<chapterinfo>
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<author>
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<firstname>Emmanuele</firstname>
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<surname>Bassi</surname>
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<affiliation>
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<address>
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<email>ebassi@openedhand.com</email>
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</address>
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</affiliation>
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</author>
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</chapterinfo>
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<title>Implementing a new actor</title>
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<para>In order to implement a new #ClutterActor subclass the usual
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machinery for subclassing a GObject should be used. After that, the
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ClutterActor::query_coords() and ClutterActor::request_coords() virtual
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functions should be overidden. Optionally, also the ClutterActor::paint()
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virtual functions should be overridden.</para>
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<para>The ClutterActor::query_coords() method of a #ClutterActor is
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invoked when clutter_actor_query_coords() is called on an instance
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of that actor class. It is used to return a #ClutterActorBox containing
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the coordinates of the bounding box for the actor (the coordinates
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of the top left corner and of the bottom right corner of the rectangle
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that fully contains the actor). Container actors, or composite actors
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with internal children, should call clutter_actor_query_coords() on
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each visible child. Remember: the returned coordinates must be relative
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to the parent actor.</para>
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<note>All the coordinates are expressed using #ClutterUnit<!-- -->s,
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the internal high-precision unit type, which guarantee sub-pixel
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precision. #ClutterUnit has the same limitation that #ClutterFixed
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has, see the <link linkend="clutter-Fixed-Point-Support">fixed point page</link>.</note>
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<example id="clutter-actor-query-coords-example">
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<para>This example shows how an actor class should override the
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query_coords() virtual function of #ClutterActor. In this case,
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the returned bounding box is the sum of the bounding boxes of all
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the <structname>FooActor</structname> children.</para>
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<programlisting>
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static void
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foo_actor_query_coords (ClutterActor *actor,
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ClutterActorBox *box)
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{
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FooActor *foo_actor = FOO_ACTOR (actor);
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GList *child;
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/* Clutter uses high-precision units which can be converted from
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* and into pixels, typographic points, percentages, etc.
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*/
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ClutterUnit width, height;
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/* initialize our size */
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width = height = 0;
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for (l = foo_actor->children; l != NULL; l = l->next)
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{
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ClutterActor *child_actor = child->data;
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/* we consider only visible actors */
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if (CLUTTER_ACTOR_IS_VISIBLE (child_actor))
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{
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ClutterActorBox child_box = { 0, };
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clutter_actor_query_coords (child_actor, &child_box);
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width += child_box.x2 - child_box.x2;
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height += child_box.y2 - child_box.y1;
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}
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}
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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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</programlisting>
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</example>
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<para>The ClutterActor::request_coords() method of a #ClutterActor
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is invoked when clutter_actor_request_coords() is called on an instance
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of that actor class. It is used to set the coordinates of the bounding
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box for the actor. Container actors, or composite actors with internal
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children, should override the request_coords() virtual function and call
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clutter_actor_request_coords() on each visible child. Every actor class
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overriding the request_coords() virtual function must chain up to the
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parent class request_coords() method.</para>
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<para>The ClutterActor::paint() method should be overridden if the
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actor needs to control its drawing process, by using the GL API
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directly. Actors performing transformations should push the GL matrix
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first and then pop the GL matrix before returning. Container actors
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or composite actors with internal children should do the same, and call
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clutter_actor_paint() on every visible child:</para>
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<para>When inside the ClutterActor::paint() method the actor is already
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positioned at the coordinates specified by its bounding box; all the
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paint operations should then take place from the (0, 0) coordinates.</para>
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<example id="clutter-actor-paint-example">
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<programlisting>
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static void
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foo_actor_paint (ClutterActor *actor)
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{
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FooActor *foo_actor = FOO_ACTOR (actor);
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GList *child;
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/* by including <clutter/cogl.h> it's possible to use the internal
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* COGL abstraction API, which is also used by Clutter itself and avoids
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* changing the GL calls depending on the target platform (GL or GL/ES).
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*/
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cogl_push_matrix ();
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for (child = foo_actor->children; child != NULL; child = child->next)
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{
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ClutterActor *child_actor = child->data;
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if (CLUTTER_ACTOR_IS_MAPPED (child_actor))
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clutter_actor_paint (child_actor);
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}
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cogl_pop_matrix ();
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}
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</programlisting>
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</example>
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<para>When painting a blended actor, cogl_enable() should be called with
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the %CGL_BLEND flag; or, alternatively, glEnable() with %GL_BLEND on
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OpenGL.</para>
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<para>If the actor has a non-rectangular shape, or it has internal childrens
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that needs to be distinguished by the events delivery mechanism, the
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ClutterActor::pick() method should also be overridden. The ::pick() method
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works exactly like the ::paint() method, but the actor should paint just
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its shape with the passed colour:</para>
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<example id="clutter-actor-pick-example">
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<programlisting>
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static void
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foo_actor_pick (ClutterActor *actor,
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const ClutterColor *pick_color)
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{
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FooActor *foo_actor = FOO_ACTOR (actor);
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guint width, height;
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/* it is possible to avoid a costly paint by checking whether the
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* actor should really be painted in pick mode
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*/
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if (!clutter_actor_should_pick_paint (actor))
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return;
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/* by including <clutter/cogl.h> it's possible to use the internal
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* COGL abstraction API, which is also used by Clutter itself and avoids
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* changing the GL calls depending on the target platform (GL or GL/ES).
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*/
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cogl_color (pick_color);
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clutter_actor_get_size (actor, &width, &height);
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/* it is also possible to use raw GL calls, at the cost of losing
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* portability
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*/
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glEnable (GL_BLEND);
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/* draw a triangular shape */
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glBegin (GL_POLYGON);
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glVertex2i (width / 2, 0 );
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glVertex2i (width , height);
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glVertex2i (0 , height);
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glEnd ();
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cogl_pop_matrix ();
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}
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</programlisting>
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</example>
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<section id="implementing-clutter-container">
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<title>Implementing Containers</title>
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<para>
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The #ClutterContainer interface should be implemented by subclasses
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of #ClutterActor who wants to provide a general API for adding child
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actors.
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</para>
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<para>
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If the #ClutterActor subclass only handles internal children, or it's
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not suitable for having generic actors added to it, it should not
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implement the #ClutterContainer interface, but simply use
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clutter_actor_set_parent():
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</para>
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<example id="clutter-actor-set-parent-example">
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<programlisting>
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void
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foo_actor_add_baz (FooActor *foo_actor,
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BazActor *baz_actor)
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{
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g_return_if_fail (FOO_IS_ACTOR (foo_actor));
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g_return_if_fail (BAZ_IS_ACTOR (baz_actor));
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/* unparent the previous BazActor; this will automatically call
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* g_object_unref() on the actor
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*/
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if (foo_actor->baz)
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clutter_actor_unparent (foo_actor->baz);
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foo_actor->baz = baz_actor;
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/* this will cause the initial floating reference to disappear,
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* and add a new reference on baz_actor. foo_actor has now taken
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* ownership of baz_actor
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*/
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clutter_actor_set_parent (CLUTTER_ACTOR (baz_actor),
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CLUTTER_ACTOR (foo_actor));
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g_signal_emit (foo_actor, foo_actor_signals[BAZ_CHANGED], 0, baz_actor);
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}
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</programlisting>
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</example>
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<para>
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In order to implement the #ClutterContainer interface, these virtual
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functions must be defined:
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<variablelist>
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<varlistentry>
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<term>ClutterContainer::add</term>
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<listitem>
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<para></para>
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</listitem>
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</varlistentry>
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<varlistentry>
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<term>ClutterContainer::remove</term>
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<listitem>
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<para></para>
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</listitem>
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</varlistentry>
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<varlistentry>
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<term>ClutterContainer::foreach</term>
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<listitem>
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<para></para>
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</listitem>
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</varlistentry>
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<varlistentry>
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<term>ClutterContainer::raise</term>
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<listitem>
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<para></para>
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</listitem>
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</varlistentry>
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<varlistentry>
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<term>ClutterContainer::lower</term>
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<listitem>
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<para></para>
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</listitem>
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</varlistentry>
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<varlistentry>
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<term>ClutterContainer::sort_depth_order</term>
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<listitem>
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<para></para>
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</listitem>
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</varlistentry>
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</variablelist>
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</para>
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</section>
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</chapter>
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