// -*- c++ -*- dnl dnl Glib SignalProxy Templates dnl dnl Copyright 2001 Free Software Foundation dnl Copyright 1999 Karl Nelson dnl dnl This library is free software; you can redistribute it and/or dnl modify it under the terms of the GNU Lesser General Public dnl License as published by the Free Software Foundation; either dnl version 2.1 of the License, or (at your option) any later version. dnl dnl This library is distributed in the hope that it will be useful, dnl but WITHOUT ANY WARRANTY; without even the implied warranty of dnl MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU dnl Lesser General Public License for more details. dnl dnl You should have received a copy of the GNU Lesser General Public dnl License along with this library; if not, write to the Free dnl Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. dnl dnl Ignore the next line /* This is a generated file, do not edit. Generated from __file__ */ include(template.macros.m4) #ifndef __header__ #define __header__ extern "C" { typedef void (*GCallback) (void); typedef struct _GObject GObject; } #include #include namespace Glib { // Forward declarations class ObjectBase; #ifndef DOXYGEN_SHOULD_SKIP_THIS struct SignalProxyInfo { const char* signal_name; GCallback callback; GCallback notify_callback; }; #endif //DOXYGEN_SHOULD_SKIP_THIS // This base class is used by SignalProxyNormal and SignalProxyProperty. class SignalProxyBase { public: SignalProxyBase(Glib::ObjectBase* obj); #ifndef DOXYGEN_SHOULD_SKIP_THIS static inline sigc::slot_base* data_to_slot(void* data) { SignalProxyConnectionNode *const pConnectionNode = static_cast(data); // Return 0 if the connection is blocked. return (!pConnectionNode->slot_.blocked()) ? &pConnectionNode->slot_ : 0; } #endif /* DOXYGEN_SHOULD_SKIP_THIS */ protected: ObjectBase* obj_; private: SignalProxyBase& operator=(const SignalProxyBase&); // not implemented }; // shared portion of a Signal /** The SignalProxy provides an API similar to sigc::signal that can be used to * connect sigc::slots to glib signals. * * This holds the name of the glib signal and the object * which might emit it. Actually, proxies are controlled by * the template derivatives, which serve as gatekeepers for the * types allowed on a particular signal. * */ class SignalProxyNormal : public SignalProxyBase { public: ~SignalProxyNormal(); /// stops the current signal emmision (not in libsigc++) void emission_stop(); #ifndef DOXYGEN_SHOULD_SKIP_THIS // This callback for SignalProxy0 // is defined here to avoid code duplication. static void slot0_void_callback(GObject*, void* data); #endif protected: /** Create a proxy for a signal that can be emitted by @a obj. * @param obj The object that can emit the signal. * @param info Information about the signal, including its name, and the C callbacks that should be called by glib. */ SignalProxyNormal(Glib::ObjectBase* obj, const SignalProxyInfo* info); /** Connects a signal to a generic signal handler. This is called by connect() in derived SignalProxy classes. * * @param slot The signal handler, usually created with sigc::mem_fun(), or sigc::ptr_fun(). * @param after Whether this signal handler should be called before or after the default signal handler. */ sigc::slot_base& connect_(const sigc::slot_base& slot, bool after); /** Connects a signal to a signal handler without a return value. * This is called by connect() in derived SignalProxy classes. * * By default, the signal handler will be called before the default signal handler, * in which case any return value would be replaced anyway by that of the later signal handler. * * @param slot The signal handler, which should have a void return type, usually created with sigc::mem_fun(), or sigc::ptr_fun(). * @param after Whether this signal handler should be called before or after the default signal handler. */ sigc::slot_base& connect_notify_(const sigc::slot_base& slot, bool after); private: const SignalProxyInfo* info_; //TODO: We could maybe replace both connect_ and connect_notify_ with this in future, because they don't do anything extra. /** This is called by connect_ and connect_impl_. */ sigc::slot_base& connect_impl_(GCallback callback, const sigc::slot_base& slot, bool after); // no copy assignment SignalProxyNormal& operator=(const SignalProxyNormal&); }; dnl dnl GLIB_SIGNAL_PROXY([P1, P2, ...],return type) dnl define([GLIB_SIGNAL_PROXY],[dnl LINE(]__line__[)dnl /**** Glib::[SignalProxy]NUM($1) ***************************************************/ /** Proxy for signals with NUM($1) arguments. * Use the connect() method, with sigc::mem_fun() or sigc::ptr_fun() to connect signals to signal handlers. */ template class [SignalProxy]NUM($1) : public SignalProxyNormal { public: typedef sigc::slot SlotType; typedef sigc::slot VoidSlotType; [SignalProxy]NUM($1)(ObjectBase* obj, const SignalProxyInfo* info) : SignalProxyNormal(obj, info) {} /** Connects a signal to a signal handler. * For instance, connect( sigc::mem_fun(*this, &TheClass::on_something) ); * * @param slot The signal handler, usually created with sigc::mem_fun(), or sigc::ptr_fun(). * @param after Whether this signal handler should be called before or after the default signal handler. */ sigc::connection connect(const SlotType& slot, bool after = true) { return sigc::connection(connect_(slot, after)); } /** Connects a signal to a signal handler without a return value. * By default, the signal handler will be called before the default signal handler, * in which case any return value would be replaced anyway by that of the later signal handler. * * For instance, connect( sigc::mem_fun(*this, &TheClass::on_something) ); * * @param slot The signal handler, which should have a void return type, usually created with sigc::mem_fun(), or sigc::ptr_fun(). * @param after Whether this signal handler should be called before or after the default signal handler. */ sigc::connection connect_notify(const VoidSlotType& slot, bool after = false) { return sigc::connection(connect_notify_(slot, after)); } }; ])dnl dnl Template forms of SignalProxy GLIB_SIGNAL_PROXY(ARGS(P,0)) GLIB_SIGNAL_PROXY(ARGS(P,1)) GLIB_SIGNAL_PROXY(ARGS(P,2)) GLIB_SIGNAL_PROXY(ARGS(P,3)) GLIB_SIGNAL_PROXY(ARGS(P,4)) GLIB_SIGNAL_PROXY(ARGS(P,5)) GLIB_SIGNAL_PROXY(ARGS(P,6)) } // namespace Glib #endif /* __header__ */