Paul Davis
449aab3c46
git-svn-id: svn://localhost/ardour2/branches/3.0@3435 d708f5d6-7413-0410-9779-e7cbd77b26cf
165 lines
5.3 KiB
C++
165 lines
5.3 KiB
C++
// -*- c++ -*-
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#ifndef _GLIBMM_WRAP_H
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#define _GLIBMM_WRAP_H
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/* $Id: wrap.h 447 2007-10-03 09:51:41Z murrayc $ */
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/* Copyright (C) 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 Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 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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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library 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 <glib-object.h>
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#include <glibmm/refptr.h>
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#include <glibmm/objectbase.h>
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namespace Glib
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{
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#ifndef DOXYGEN_SHOULD_SKIP_THIS
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class ObjectBase;
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class Object;
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// Type of the per-class wrap_new() functions.
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typedef Glib::ObjectBase* (*WrapNewFunction) (GObject*);
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// Setup and free the structures used by wrap_register().
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// Both functions might be called more than once.
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void wrap_register_init();
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void wrap_register_cleanup();
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// Register a new type for auto allocation.
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void wrap_register(GType type, WrapNewFunction func);
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// Return the current C++ wrapper instance of the GObject,
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// or automatically generate a new wrapper if there's none.
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Glib::ObjectBase* wrap_auto(GObject* object, bool take_copy = false);
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/** Create a C++ instance of a known C++ type that is mostly closely associated with the GType of the C object.
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* @param object The C object which should be placed in a new C++ instance.
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* @param interface_gtype The returned instance will implement this interface. Otherwise it will be NULL.
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*/
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Glib::ObjectBase* wrap_create_new_wrapper_for_interface(GObject* object, GType interface_gtype);
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// Return the current C++ wrapper instance of the GObject,
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// or automatically generate a new wrapper if there's none.
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template<class TInterface>
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TInterface* wrap_auto_interface(GObject* object, bool take_copy = false)
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{
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if(!object)
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return 0;
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// Look up current C++ wrapper instance:
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ObjectBase* pCppObject = ObjectBase::_get_current_wrapper(object);
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if(!pCppObject)
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{
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// There's not already a wrapper: generate a new C++ instance.
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// We use exact_type_only=true avoid creating Glib::Object for interfaces of unknown implementation,
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// because we do not want a C++ object that does not dynamic_cast to the expected interface type.
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pCppObject = wrap_create_new_wrapper_for_interface(object, TInterface::get_base_type());
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}
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//If no exact wrapper was created,
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//create an instance of the interface,
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//so we at least get the expected type:
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TInterface* result = 0;
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if(pCppObject)
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result = dynamic_cast<TInterface*>(pCppObject);
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else
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result = new TInterface((typename TInterface::BaseObjectType*)object);
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// take_copy=true is used where the GTK+ function doesn't do
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// an extra ref for us, and always for plain struct members.
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if(take_copy && result)
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result->reference();
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return result;
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}
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#endif //DOXYGEN_SHOULD_SKIP_THIS
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// Get a C++ instance that wraps the C instance.
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// This always returns the same C++ instance for the same C instance.
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// Each wrapper has it's own override of Glib::wrap().
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// use take_copy = true when wrapping a struct member.
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// TODO: move to object.h ?
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/** @relates Glib::Object */
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Glib::RefPtr<Glib::Object> wrap(GObject* object, bool take_copy = false);
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/** Get the underlying C instance from the C++ instance. This is just
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* like calling gobj(), but it does its own check for a NULL pointer.
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*/
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template <class T> inline
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typename T::BaseObjectType* unwrap(T* ptr)
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{
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return (ptr) ? ptr->gobj() : 0;
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}
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/** Get the underlying C instance from the C++ instance. This is just
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* like calling gobj(), but it does its own check for a NULL pointer.
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*/
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template <class T> inline
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const typename T::BaseObjectType* unwrap(const T* ptr)
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{
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return (ptr) ? ptr->gobj() : 0;
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}
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/** Get the underlying C instance from the C++ instance. This is just
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* like calling gobj(), but it does its own check for a NULL pointer.
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*/
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template <class T> inline
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typename T::BaseObjectType* unwrap(const Glib::RefPtr<T>& ptr)
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{
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return (ptr) ? ptr->gobj() : 0;
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}
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/** Get the underlying C instance from the C++ instance. This is just
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* like calling gobj(), but it does its own check for a NULL pointer.
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*/
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template <class T> inline
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const typename T::BaseObjectType* unwrap(const Glib::RefPtr<const T>& ptr)
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{
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return (ptr) ? ptr->gobj() : 0;
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}
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/** Get the underlying C instance from the C++ instance and acquire a
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* reference. This is just like calling gobj_copy(), but it does its own
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* check for a NULL pointer.
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*/
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template <class T> inline
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typename T::BaseObjectType* unwrap_copy(const Glib::RefPtr<T>& ptr)
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{
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return (ptr) ? ptr->gobj_copy() : 0;
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}
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/** Get the underlying C instance from the C++ instance and acquire a
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* reference. This is just like calling gobj_copy(), but it does its own
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* check for a NULL pointer.
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*/
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template <class T> inline
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const typename T::BaseObjectType* unwrap_copy(const Glib::RefPtr<const T>& ptr)
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{
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return (ptr) ? ptr->gobj_copy() : 0;
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}
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} // namespace Glib
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#endif /* _GLIBMM_WRAP_H */
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