/** * @file tests/mixed/models.hpp * @author The PARADEVS Development Team * See the AUTHORS or Authors.txt file */ /* * PARADEVS - the multimodeling and simulation environment * This file is a part of the PARADEVS environment * * Copyright (C) 2013 ULCO http://www.univ-litoral.fr * * This program is free software: you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation, either version 3 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program. If not, see . */ #ifndef TESTS_MIXED_MODELS_HPP #define TESTS_MIXED_MODELS_HPP 1 #include #include #include #include namespace paradevs { namespace tests { namespace mixed { template < class SchedulerHandle> class A1 : public paradevs::pdevs::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters > { public: A1(const std::string& name, const paradevs::common::NoParameters& parameters) : paradevs::pdevs::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters >( name, parameters) { } virtual ~A1() { } void dint(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A1 < SchedulerHandle >::get_name(), t, common::DELTA_INT); common::Trace < common::DoubleTime >::trace().flush(); #endif if (_phase == SEND) { _phase = WAIT; } } void dext(typename common::DoubleTime::type t, typename common::DoubleTime::type /* e */, const common::Bag < common::DoubleTime, SchedulerHandle >& msgs) { #ifndef WITH_TRACE (void)t; (void)msgs; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A1 < SchedulerHandle >::get_name(), t, common::DELTA_EXT) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif _phase = SEND; } void dconf(typename common::DoubleTime::type t, typename common::DoubleTime::type /* e */, const common::Bag < common::DoubleTime, SchedulerHandle >& msgs) { #ifndef WITH_TRACE (void)t; (void)msgs; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A1 < SchedulerHandle >::get_name(), t, common::DELTA_CONF) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif } typename common::DoubleTime::type start(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A1 < SchedulerHandle >::get_name(), t, common::START); common::Trace < common::DoubleTime >::trace().flush(); #endif _phase = WAIT; return 0; } typename common::DoubleTime::type ta( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A1 < SchedulerHandle >::get_name(), t, common::TA); common::Trace < common::DoubleTime >::trace().flush(); #endif if (_phase == WAIT) { return 1; } else { return 0; } } common::Bag < common::DoubleTime, SchedulerHandle > lambda( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif common::Bag < common::DoubleTime, SchedulerHandle > msgs; msgs.push_back(common::ExternalEvent < common::DoubleTime, SchedulerHandle >("out", 0.)); #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A1 < SchedulerHandle >::get_name(), t, common::LAMBDA) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif return msgs; } private: enum Phase { WAIT, SEND }; Phase _phase; }; template < class SchedulerHandle> class B1 : public paradevs::pdevs::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters > { public: B1(const std::string& name, const paradevs::common::NoParameters& parameters) : paradevs::pdevs::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters >( name, parameters) { } virtual ~B1() { } void dint(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B1 < SchedulerHandle >::get_name(), t, common::DELTA_INT); common::Trace < common::DoubleTime >::trace().flush(); #endif if (_phase == SEND) { _phase = WAIT; } } void dext(typename common::DoubleTime::type t, typename common::DoubleTime::type /* e */, const common::Bag < common::DoubleTime, SchedulerHandle >& msgs) { #ifndef WITH_TRACE (void)t; (void)msgs; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B1 < SchedulerHandle >::get_name(), t, common::DELTA_EXT) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif _phase = SEND; } void dconf(typename common::DoubleTime::type t, typename common::DoubleTime::type /* e */, const common::Bag < common::DoubleTime, SchedulerHandle >& msgs) { #ifndef WITH_TRACE (void)t; (void)msgs; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B1 < SchedulerHandle >::get_name(), t, common::DELTA_CONF) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif } typename common::DoubleTime::type start(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B1 < SchedulerHandle >::get_name(), t, common::START); common::Trace < common::DoubleTime >::trace().flush(); #endif _phase = WAIT; return std::numeric_limits < double >::max(); } typename common::DoubleTime::type ta( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B1 < SchedulerHandle >::get_name(), t, common::TA); common::Trace < common::DoubleTime >::trace().flush(); #endif if (_phase == WAIT) { return std::numeric_limits < double >::max(); } else { return 0; } } common::Bag < common::DoubleTime, SchedulerHandle > lambda( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif common::Bag < common::DoubleTime, SchedulerHandle > msgs; msgs.push_back(common::ExternalEvent < common::DoubleTime, SchedulerHandle >("out", t)); #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B1 < SchedulerHandle >::get_name(), t, common::LAMBDA) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif return msgs; } private: enum Phase { WAIT, SEND }; Phase _phase; }; template < class SchedulerHandle > class A2 : public paradevs::dtss::Dynamics < common::DoubleTime, SchedulerHandle > { public: A2(const std::string& name, const paradevs::common::NoParameters& parameters) : paradevs::dtss::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters >( name, parameters) { } virtual ~A2() { } void transition( const common::Bag < common::DoubleTime, SchedulerHandle >& x, typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)x; (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A2 < SchedulerHandle >::get_name(), t, common::DELTA_INT) << "x = " << x.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif } typename common::DoubleTime::type start(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A2 < SchedulerHandle >::get_name(), t, common::START); common::Trace < common::DoubleTime >::trace().flush(); #endif return 0; } common::Bag < common::DoubleTime, SchedulerHandle > lambda( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif common::Bag < common::DoubleTime, SchedulerHandle > msgs; msgs.push_back( common::ExternalEvent < common::DoubleTime, SchedulerHandle >( "out", 0.)); #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( A2 < SchedulerHandle >::get_name(), t, common::LAMBDA) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif return msgs; } }; template < class SchedulerHandle > class B2 : public paradevs::dtss::Dynamics < common::DoubleTime, SchedulerHandle > { public: B2(const std::string& name, const paradevs::common::NoParameters& parameters) : paradevs::dtss::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters >( name, parameters) { } virtual ~B2() { } void transition( const common::Bag < common::DoubleTime, SchedulerHandle >& x, typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)x; (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B2 < SchedulerHandle >::get_name(), t, common::DELTA_INT) << "x = " << x.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif } typename common::DoubleTime::type start(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B2 < SchedulerHandle >::get_name(), t, common::START); common::Trace < common::DoubleTime >::trace().flush(); #endif return 0; } common::Bag < common::DoubleTime, SchedulerHandle > lambda( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif common::Bag < common::DoubleTime, SchedulerHandle > msgs; msgs.push_back( common::ExternalEvent < common::DoubleTime, SchedulerHandle >("out", 0.)); #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( B2 < SchedulerHandle >::get_name(), t, common::LAMBDA) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif return msgs; } }; template < class SchedulerHandle> class Beep : public paradevs::pdevs::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters > { public: Beep(const std::string& name, const paradevs::common::NoParameters& parameters) : paradevs::pdevs::Dynamics < common::DoubleTime, SchedulerHandle, paradevs::common::NoParameters >(name, parameters) { } virtual ~Beep() { } void dint(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( Beep < SchedulerHandle >::get_name(), t, common::DELTA_INT); common::Trace < common::DoubleTime >::trace().flush(); #endif if (_phase == SEND) { _phase = WAIT; } } void dext(typename common::DoubleTime::type t, typename common::DoubleTime::type /* e */, const common::Bag < common::DoubleTime, SchedulerHandle >& msgs) { #ifndef WITH_TRACE (void)t; (void)msgs; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( Beep < SchedulerHandle >::get_name(), t, common::DELTA_EXT) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif _phase = SEND; } void dconf(typename common::DoubleTime::type t, typename common::DoubleTime::type /* e */, const common::Bag < common::DoubleTime, SchedulerHandle >& msgs) { #ifndef WITH_TRACE (void)t; (void)msgs; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( Beep < SchedulerHandle >::get_name(), t, common::DELTA_CONF) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif } typename common::DoubleTime::type start(typename common::DoubleTime::type t) { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( Beep < SchedulerHandle >::get_name(), t, common::START); common::Trace < common::DoubleTime >::trace().flush(); #endif _phase = WAIT; return 0; } typename common::DoubleTime::type ta( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( Beep < SchedulerHandle >::get_name(), t, common::TA); common::Trace < common::DoubleTime >::trace().flush(); #endif if (_phase == WAIT) { return (rand() % 100) / 10.; } else { return 0; } } common::Bag < common::DoubleTime, SchedulerHandle > lambda( typename common::DoubleTime::type t) const { #ifndef WITH_TRACE (void)t; #endif common::Bag < common::DoubleTime, SchedulerHandle > msgs; msgs.push_back(common::ExternalEvent < common::DoubleTime, SchedulerHandle >("out", 0.)); #ifdef WITH_TRACE common::Trace < common::DoubleTime >::trace() << common::TraceElement < common::DoubleTime >( Beep < SchedulerHandle >::get_name(), t, common::LAMBDA) << "messages = " << msgs.to_string(); common::Trace < common::DoubleTime >::trace().flush(); #endif return msgs; } private: enum Phase { WAIT, SEND }; Phase _phase; }; } } } // namespace paradevs tests mixed #endif