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//==============================================================================
//
//Copyright (c) 2016-
//Authors:
// * Joachim Klein <klein@tcs.inf.tu-dresden.de> (TU Dresden)
// * Dave Parker <d.a.parker@cs.bham.ac.uk> (University of Birmingham/Oxford)
//
//------------------------------------------------------------------------------
//
//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 acceptance;
import common.IterableBitSet;
import jdd.JDD;
import jdd.JDDNode;
import jdd.JDDVars;
import prism.PrismNotSupportedException;
/**
* A Büchi acceptance condition (based on JDD state sets).
* The acceptance is defined via a set of "accepting" states
* (sometimes also called final states) and is accepting if
* "infinitely often an accepting state is visited"
*/
public class AcceptanceBuchiDD implements AcceptanceOmegaDD
{
/** The accepting states */
private JDDNode acceptingStates;
/**
* Constructor, set acceptingStates.
* Becomes owner of the references of acceptingStates.
*/
public AcceptanceBuchiDD(JDDNode acceptingStates)
{
this.acceptingStates = acceptingStates;
}
/**
* Constructor, from a BitSet-based AcceptanceBuchi.
*
* @param acceptance the BitSet-based acceptance condition
* @param ddRowVars JDDVars of the row variables corresponding to the bits in the bit set
*/
public AcceptanceBuchiDD(AcceptanceBuchi acceptance, JDDVars ddRowVars)
{
acceptingStates = JDD.Constant(0);
// get BDD based on the acceptingState bit set
for (int i : IterableBitSet.getSetBits(acceptance.getAcceptingStates())) {
acceptingStates = JDD.SetVectorElement(acceptingStates, ddRowVars, i, 1.0);
}
}
/** Get a referenced copy of the state set of the accepting states.
* <br>[ REFS: <i>result</i>, DEREFS: <i>none</i> ]
*/
public JDDNode getAcceptingStates()
{
JDD.Ref(acceptingStates);
return acceptingStates;
}
/**
* Set the accepting states.
* Becomes owner of the reference to acceptingStates.
*/
public void setAcceptingStates(JDDNode acceptingStates)
{
clear();
this.acceptingStates = acceptingStates;
}
@Override
public boolean isBSCCAccepting(JDDNode bscc_states)
{
return JDD.AreIntersecting(acceptingStates, bscc_states);
}
@Override
public AcceptanceBuchiDD clone()
{
return new AcceptanceBuchiDD(acceptingStates.copy());
}
@Override
public void intersect(JDDNode restrict)
{
acceptingStates = JDD.And(acceptingStates, restrict.copy());
}
@Override
public String getSizeStatistics()
{
return "one set of accepting states";
}
@Override
public AcceptanceType getType()
{
return AcceptanceType.BUCHI;
}
/**
* Get the Streett acceptance condition that is the equivalent of this Buchi condition.
*/
public AcceptanceStreettDD toStreett()
{
AcceptanceStreettDD streett = new AcceptanceStreettDD();
streett.add(new AcceptanceStreettDD.StreettPairDD(JDD.Constant(1), acceptingStates.copy()));
return streett;
}
@Override
public AcceptanceOmegaDD complement(AcceptanceType... allowedAcceptance) throws PrismNotSupportedException
{
if (AcceptanceType.contains(allowedAcceptance, AcceptanceType.RABIN)) {
return complementToRabin();
} else if (AcceptanceType.contains(allowedAcceptance, AcceptanceType.STREETT)) {
return complementToStreett();
} else if (AcceptanceType.contains(allowedAcceptance, AcceptanceType.GENERIC)) {
return complementToGeneric();
}
throw new PrismNotSupportedException("Can not complement " + getType() + " acceptance to a supported acceptance type");
}
/**
* Get a Rabin acceptance condition that is the complement of this condition, i.e.,
* any word that is accepted by this condition is rejected by the returned Rabin condition.
*
* @return the complement Rabin acceptance condition
*/
public AcceptanceRabinDD complementToRabin()
{
AcceptanceRabinDD rabin = new AcceptanceRabinDD();
rabin.add(new AcceptanceRabinDD.RabinPairDD(acceptingStates.copy(), JDD.Constant(1)));
return rabin;
}
/**
* Get a Streett acceptance condition that is the complement of this condition, i.e.,
* any word that is accepted by this condition is rejected by the returned Streett condition.
* <br>
* Relies on the fact that once the goal states have been reached, all subsequent states
* are goal states.
*
* @return the complement Streett acceptance condition
*/
public AcceptanceStreettDD complementToStreett()
{
AcceptanceStreettDD streett = new AcceptanceStreettDD();
streett.add(new AcceptanceStreettDD.StreettPairDD(acceptingStates.copy(), JDD.Constant(0)));
return streett;
}
@Override
public AcceptanceGenericDD toAcceptanceGeneric()
{
return new AcceptanceGenericDD(AcceptanceGeneric.ElementType.INF, acceptingStates.copy());
}
@Override
@Deprecated
public String getTypeAbbreviated()
{
return getType().getNameAbbreviated();
}
@Override
@Deprecated
public String getTypeName()
{
return getType().getName();
}
@Override
public void clear()
{
if (acceptingStates != null) {
JDD.Deref(acceptingStates);
}
}
}