You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.
 
 
 
 
 
 

179 lines
5.4 KiB

//==============================================================================
//
// Copyright (c) 2014-
// Authors:
// * Joachim Klein <klein@tcs.inf.tu-dresden.de> (TU Dresden)
//
//------------------------------------------------------------------------------
//
// This file is part of PRISM.
//
// PRISM 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 2 of the License, or
// (at your option) any later version.
//
// PRISM 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 PRISM; if not, write to the Free Software Foundation,
// Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
//
//==============================================================================
package explicit;
import java.util.BitSet;
import parser.type.TypeBool;
import parser.type.TypeDouble;
import parser.type.TypeInt;
import prism.PrismException;
import prism.PrismNotSupportedException;
/**
* Base class for the results of a product operation between a model and
* an automaton. Provides infrastructure for converting information on the
* states between the original model, the automaton and the product model.
*
* The mapping between product states and the constituent parts is
* specified via the (abstract) functions getModelState() and getAutomatonState().
*
* @param <M> The type of the product model, e.g, DTMC, MDP, ...
*/
public abstract class Product<M extends Model> implements ModelTransformation<M, M>
{
protected M originalModel = null;
protected M productModel = null;
/**
* For the given productState index, return the corresponding
* state index in the original model.
*/
public abstract int getModelState(int productState);
/**
* For the given productState index, return the corresponding
* state index in the automaton.
*/
public abstract int getAutomatonState(int productState);
/**
* Constructor.
* @param originalModel the original model
*/
public Product(M originalModel)
{
this.originalModel = originalModel;
}
/**
* Constructor.
* @param productModel the product model
* @param originalModel the original model
*/
public Product(M productModel, M originalModel)
{
this.originalModel = originalModel;
this.productModel = productModel;
}
/**
* Get the product model.
*/
public M getProductModel()
{
return productModel;
}
@Override
public M getTransformedModel()
{
return getProductModel();
}
@Override
public M getOriginalModel()
{
return originalModel;
}
/**
* Lifts a BitSet over states in the automaton to a BitSet
* over states in the product model: A bit is set in the
* result for a product state if the bit is set in the parameter
* for the corresponding automaton state.
* @param automataStates a BitSet over states of the automaton for this product.
*/
public BitSet liftFromAutomaton(BitSet automataStates)
{
BitSet result = new BitSet();
for (int productState = 0; productState < productModel.getNumStates(); productState++) {
if (automataStates.get(getAutomatonState(productState))) {
result.set(productState, true);
}
}
return result;
}
/**
* Lifts a BitSet over states in the original model to a BitSet
* over states in the product model: A bit is set in the
* result for a product state if the bit is set in the parameter
* for the corresponding original model state.
* @param modelStates a BitSet over states of the original model for this product.
*/
public BitSet liftFromModel(BitSet modelStates)
{
BitSet result = new BitSet();
for (int productState = 0; productState < productModel.getNumStates(); productState++) {
if (modelStates.get(getModelState(productState))) {
result.set(productState, true);
}
}
return result;
}
/**
* Project state values from the product model back to the original model. This function
* assumes that the product model has at most one initial state per state in the original
* model. The value of this state is then projected to the corresponding state of the
* original model.
* @param sv the state values in the product model
* @return the corresponding state values in the original model
* @throws PrismException
*/
@Override
public StateValues projectToOriginalModel(StateValues sv) throws PrismException
{
// the resulting state values have one value per state in the original model
StateValues result = new StateValues(sv.type, getOriginalModel().getNumStates());
// iterate over all the initial states in the product
for (Integer productState : productModel.getInitialStates()) {
// get the state index of the corresponding state in the original model
int modelState = getModelState(productState);
if (sv.type instanceof TypeBool) {
result.setBooleanValue(modelState, (Boolean) sv.getValue(productState));
} else if (sv.type instanceof TypeInt) {
result.setIntValue(modelState, (Integer) sv.getValue(productState));
} else if (sv.type instanceof TypeDouble) {
result.setDoubleValue(modelState, (Double) sv.getValue(productState));
} else {
throw new PrismNotSupportedException("Handling for type "+sv.type+" not implemented.");
}
}
return result;
}
}