Robin Gareus
ad51c7c2ba
This is intended mainly for GNU/Linux distros who will remove GTK2 support in the near future.
444 lines
12 KiB
C++
444 lines
12 KiB
C++
// Generated by gmmproc 2.45.3 -- DO NOT MODIFY!
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#include <glibmm.h>
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#include <gtkmm/treeselection.h>
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#include <gtkmm/private/treeselection_p.h>
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// -*- c++ -*-
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/* $Id: treeselection.ccg,v 1.10 2006/05/11 11:40:24 murrayc Exp $ */
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/* Copyright 1998-2002 The gtkmm Development Team
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free
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* Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include <gtkmm/treeview.h>
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#include <gtk/gtk.h>
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static void proxy_foreach_selection_iter_callback(GtkTreeModel* model, GtkTreePath*, GtkTreeIter* iter, void* data)
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{
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typedef Gtk::TreeSelection::SlotForeachIter SlotType;
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SlotType& slot = *static_cast<SlotType*>(data);
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try
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{
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slot(Gtk::TreeModel::iterator(model, iter));
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}
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catch(...)
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{
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Glib::exception_handlers_invoke();
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}
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}
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static void proxy_foreach_selection_path_callback(GtkTreeModel*, GtkTreePath* path, GtkTreeIter*, void* data)
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{
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typedef Gtk::TreeSelection::SlotForeachPath SlotType;
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SlotType& slot = *static_cast<SlotType*>(data);
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try
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{
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slot(Gtk::TreeModel::Path(path, true));
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}
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catch(...)
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{
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Glib::exception_handlers_invoke();
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}
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}
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static void proxy_foreach_selection_path_and_iter_callback(GtkTreeModel* model, GtkTreePath* path,
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GtkTreeIter* iter, void* data)
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{
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typedef Gtk::TreeSelection::SlotForeachPathAndIter SlotType;
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SlotType& slot = *static_cast<SlotType*>(data);
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try
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{
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slot(Gtk::TreeModel::Path(path, true), Gtk::TreeModel::iterator(model, iter));
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}
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catch(...)
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{
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Glib::exception_handlers_invoke();
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}
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}
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static gboolean SignalProxy_Select_gtk_callback(GtkTreeSelection*, GtkTreeModel* model, GtkTreePath* path,
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gboolean path_currently_selected, void* data)
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{
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const Gtk::TreeSelection::SlotSelect* the_slot = static_cast<Gtk::TreeSelection::SlotSelect*>(data);
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try
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{
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return (*the_slot)(Glib::wrap(model, true), // take copy
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Gtk::TreePath(path, true), // take copy
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path_currently_selected);
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}
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catch(...)
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{
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Glib::exception_handlers_invoke();
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}
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return 0;
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}
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static void SignalProxy_Select_gtk_callback_destroy(void* data)
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{
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delete static_cast<Gtk::TreeSelection::SlotSelect*>(data);
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}
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namespace Gtk
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{
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void TreeSelection::set_select_function(const SlotSelect& slot)
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{
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// Create a copy of the slot. A pointer to this will be passed
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// through the callback's data parameter. It will be deleted
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// when SignalProxy_Select_gtk_callback_destroy() is called.
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SlotSelect* slot_copy = new SlotSelect(slot);
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gtk_tree_selection_set_select_function(gobj(),
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&SignalProxy_Select_gtk_callback, slot_copy,
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&SignalProxy_Select_gtk_callback_destroy);
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}
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Glib::RefPtr<TreeModel> TreeSelection::get_model()
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{
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GtkTreeView *const tree_view = gtk_tree_selection_get_tree_view(gobj());
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return Glib::wrap(gtk_tree_view_get_model(tree_view), true);
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}
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Glib::RefPtr<const TreeModel> TreeSelection::get_model() const
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{
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GtkTreeView *const tree_view = gtk_tree_selection_get_tree_view(const_cast<GtkTreeSelection*>(gobj()));
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return Glib::wrap(gtk_tree_view_get_model(tree_view), true);
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}
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TreeModel::iterator TreeSelection::get_selected()
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{
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TreeModel::iterator iter;
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GtkTreeModel* model_gobject = 0;
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gtk_tree_selection_get_selected(gobj(), &model_gobject, iter.gobj());
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iter.set_model_gobject(model_gobject);
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return iter;
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}
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TreeModel::iterator TreeSelection::get_selected(Glib::RefPtr<TreeModel>& model)
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{
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TreeModel::iterator iter;
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GtkTreeModel* model_gobject = 0;
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gtk_tree_selection_get_selected(gobj(), &model_gobject, iter.gobj());
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model = Glib::wrap(model_gobject, true);
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iter.set_model_refptr(model);
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return iter;
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}
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void TreeSelection::selected_foreach_iter(const SlotForeachIter& slot) const
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{
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SlotForeachIter slot_copy (slot);
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gtk_tree_selection_selected_foreach(const_cast<GtkTreeSelection*>(gobj()), &proxy_foreach_selection_iter_callback, &slot_copy);
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}
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void TreeSelection::selected_foreach_path(const SlotForeachPath& slot) const
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{
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SlotForeachPath slot_copy (slot);
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gtk_tree_selection_selected_foreach(const_cast<GtkTreeSelection*>(gobj()), &proxy_foreach_selection_path_callback, &slot_copy);
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}
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void TreeSelection::selected_foreach(const SlotForeachPathAndIter& slot) const
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{
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SlotForeachPathAndIter slot_copy (slot);
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gtk_tree_selection_selected_foreach(const_cast<GtkTreeSelection*>(gobj()), &proxy_foreach_selection_path_and_iter_callback, &slot_copy);
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}
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TreeSelection::ListHandle_Path TreeSelection::get_selected_rows() const
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{
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return ListHandle_Path(gtk_tree_selection_get_selected_rows(
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const_cast<GtkTreeSelection*>(gobj()), 0), Glib::OWNERSHIP_DEEP);
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}
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TreeSelection::ListHandle_Path TreeSelection::get_selected_rows(Glib::RefPtr<TreeModel>& model)
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{
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GtkTreeModel* model_gobject = 0;
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const ListHandle_Path result (gtk_tree_selection_get_selected_rows(
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const_cast<GtkTreeSelection*>(gobj()), &model_gobject), Glib::OWNERSHIP_DEEP);
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model = Glib::wrap(model_gobject, true);
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return result;
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}
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} // namespace Gtk
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namespace
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{
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static const Glib::SignalProxyInfo TreeSelection_signal_changed_info =
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{
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"changed",
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(GCallback) &Glib::SignalProxyNormal::slot0_void_callback,
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(GCallback) &Glib::SignalProxyNormal::slot0_void_callback
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};
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} // anonymous namespace
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namespace Glib
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{
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Glib::RefPtr<Gtk::TreeSelection> wrap(GtkTreeSelection* object, bool take_copy)
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{
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return Glib::RefPtr<Gtk::TreeSelection>( dynamic_cast<Gtk::TreeSelection*> (Glib::wrap_auto ((GObject*)(object), take_copy)) );
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//We use dynamic_cast<> in case of multiple inheritance.
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}
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} /* namespace Glib */
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namespace Gtk
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{
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/* The *_Class implementation: */
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const Glib::Class& TreeSelection_Class::init()
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{
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if(!gtype_) // create the GType if necessary
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{
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// Glib::Class has to know the class init function to clone custom types.
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class_init_func_ = &TreeSelection_Class::class_init_function;
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// This is actually just optimized away, apparently with no harm.
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// Make sure that the parent type has been created.
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//CppClassParent::CppObjectType::get_type();
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// Create the wrapper type, with the same class/instance size as the base type.
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register_derived_type(gtk_tree_selection_get_type());
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// Add derived versions of interfaces, if the C type implements any interfaces:
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}
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return *this;
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}
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void TreeSelection_Class::class_init_function(void* g_class, void* class_data)
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{
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BaseClassType *const klass = static_cast<BaseClassType*>(g_class);
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CppClassParent::class_init_function(klass, class_data);
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klass->changed = &changed_callback;
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}
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void TreeSelection_Class::changed_callback(GtkTreeSelection* self)
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{
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Glib::ObjectBase *const obj_base = static_cast<Glib::ObjectBase*>(
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Glib::ObjectBase::_get_current_wrapper((GObject*)self));
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// Non-gtkmmproc-generated custom classes implicitly call the default
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// Glib::ObjectBase constructor, which sets is_derived_. But gtkmmproc-
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// generated classes can use this optimisation, which avoids the unnecessary
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// parameter conversions if there is no possibility of the virtual function
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// being overridden:
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if(obj_base && obj_base->is_derived_())
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{
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CppObjectType *const obj = dynamic_cast<CppObjectType* const>(obj_base);
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if(obj) // This can be NULL during destruction.
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{
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try // Trap C++ exceptions which would normally be lost because this is a C callback.
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{
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// Call the virtual member method, which derived classes might override.
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obj->on_changed();
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return;
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}
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catch(...)
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{
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Glib::exception_handlers_invoke();
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}
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}
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}
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BaseClassType *const base = static_cast<BaseClassType*>(
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g_type_class_peek_parent(G_OBJECT_GET_CLASS(self)) // Get the parent class of the object class (The original underlying C class).
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);
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// Call the original underlying C function:
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if(base && base->changed)
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(*base->changed)(self);
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}
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Glib::ObjectBase* TreeSelection_Class::wrap_new(GObject* object)
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{
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return new TreeSelection((GtkTreeSelection*)object);
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}
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/* The implementation: */
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GtkTreeSelection* TreeSelection::gobj_copy()
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{
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reference();
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return gobj();
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}
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TreeSelection::TreeSelection(const Glib::ConstructParams& construct_params)
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:
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Glib::Object(construct_params)
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{
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}
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TreeSelection::TreeSelection(GtkTreeSelection* castitem)
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:
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Glib::Object((GObject*)(castitem))
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{}
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TreeSelection::~TreeSelection()
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{}
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TreeSelection::CppClassType TreeSelection::treeselection_class_; // initialize static member
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GType TreeSelection::get_type()
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{
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return treeselection_class_.init().get_type();
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}
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GType TreeSelection::get_base_type()
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{
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return gtk_tree_selection_get_type();
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}
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void TreeSelection::set_mode(SelectionMode type)
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{
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gtk_tree_selection_set_mode(gobj(), ((GtkSelectionMode)(type)));
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}
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SelectionMode TreeSelection::get_mode() const
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{
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return ((SelectionMode)(gtk_tree_selection_get_mode(const_cast<GtkTreeSelection*>(gobj()))));
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}
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TreeView* TreeSelection::get_tree_view()
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{
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return Glib::wrap(gtk_tree_selection_get_tree_view(gobj()));
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}
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const TreeView* TreeSelection::get_tree_view() const
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{
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return const_cast<TreeSelection*>(this)->get_tree_view();
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}
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int TreeSelection::count_selected_rows() const
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{
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return gtk_tree_selection_count_selected_rows(const_cast<GtkTreeSelection*>(gobj()));
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}
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void TreeSelection::select(const TreeModel::Path& path)
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{
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gtk_tree_selection_select_path(gobj(), const_cast<GtkTreePath*>((path).gobj()));
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}
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void TreeSelection::select(const TreeModel::iterator& iter)
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{
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gtk_tree_selection_select_iter(gobj(), const_cast<GtkTreeIter*>((iter).gobj()));
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}
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void TreeSelection::select(const TreeModel::Row& row)
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{
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gtk_tree_selection_select_iter(gobj(), const_cast<GtkTreeIter*>((row).gobj()));
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}
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void TreeSelection::select(const TreeModel::Path& start_path, const TreeModel::Path& end_path)
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{
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gtk_tree_selection_select_range(gobj(), const_cast<GtkTreePath*>((start_path).gobj()), const_cast<GtkTreePath*>((end_path).gobj()));
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}
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void TreeSelection::unselect(const TreeModel::Path& path)
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{
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gtk_tree_selection_unselect_path(gobj(), const_cast<GtkTreePath*>((path).gobj()));
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}
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void TreeSelection::unselect(const TreeModel::Path& start_path, const TreeModel::Path& end_path)
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{
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gtk_tree_selection_unselect_range(gobj(), const_cast<GtkTreePath*>((start_path).gobj()), const_cast<GtkTreePath*>((end_path).gobj()));
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}
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void TreeSelection::unselect(const TreeModel::iterator& iter)
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{
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gtk_tree_selection_unselect_iter(gobj(), const_cast<GtkTreeIter*>((iter).gobj()));
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}
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bool TreeSelection::is_selected(const TreeModel::Path& path) const
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{
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return gtk_tree_selection_path_is_selected(const_cast<GtkTreeSelection*>(gobj()), const_cast<GtkTreePath*>((path).gobj()));
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}
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bool TreeSelection::is_selected(const TreeModel::iterator& iter) const
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{
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return gtk_tree_selection_iter_is_selected(const_cast<GtkTreeSelection*>(gobj()), const_cast<GtkTreeIter*>((iter).gobj()));
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}
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void TreeSelection::select_all()
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{
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gtk_tree_selection_select_all(gobj());
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}
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void TreeSelection::unselect_all()
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{
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gtk_tree_selection_unselect_all(gobj());
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}
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Glib::SignalProxy0< void > TreeSelection::signal_changed()
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{
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return Glib::SignalProxy0< void >(this, &TreeSelection_signal_changed_info);
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}
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void Gtk::TreeSelection::on_changed()
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{
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BaseClassType *const base = static_cast<BaseClassType*>(
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g_type_class_peek_parent(G_OBJECT_GET_CLASS(gobject_)) // Get the parent class of the object class (The original underlying C class).
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);
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if(base && base->changed)
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(*base->changed)(gobj());
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}
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} // namespace Gtk
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