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Open-source constraint solver.
/*
* This file is part of choco-solver, http://choco-solver.org/
*
* Copyright (c) 2022, IMT Atlantique. All rights reserved.
*
* Licensed under the BSD 4-clause license.
*
* See LICENSE file in the project root for full license information.
*/
package org.chocosolver.solver.constraints;
import org.chocosolver.solver.Model;
import org.chocosolver.solver.constraints.reification.PropImplied;
import org.chocosolver.solver.exception.ContradictionException;
import org.chocosolver.solver.variables.BoolVar;
import org.chocosolver.solver.variables.Variable;
import org.chocosolver.solver.variables.events.PropagatorEventType;
import org.chocosolver.util.ESat;
import org.chocosolver.util.tools.ArrayUtils;
import java.util.HashSet;
import java.util.Set;
/**
* Equivalence constraint: boolean b <=> constraint c
* Also known as reification
*
*
* @author Jean-Guillaume Fages
* @author Charles Prud'homme
* @since 017/05/2022
*/
public class ImpliedConstraint extends Constraint {
//***********************************************************************************
// VARIABLES
//***********************************************************************************
// boolean variable of the reification
// required visibility to allow exportation
protected final BoolVar bool;
// constraint to apply if bool = true
@SuppressWarnings("WeakerAccess") // required visibility to allow exportation
protected final Constraint trueCons;
// indices of propagators
private final int[] indices;
// reification propagator;
private final PropImplied propReif;
//***********************************************************************************
// CONSTRUCTION
//***********************************************************************************
protected ImpliedConstraint(BoolVar bVar, Constraint consIfBoolTrue) {
super(ConstraintsName.REIFICATIONCONSTRAINT, createProps(bVar, consIfBoolTrue));
this.propReif = (PropImplied) propagators[0];
propReif.setReifCons(this);
trueCons = consIfBoolTrue;
bool = bVar;
indices = new int[3];
indices[0] = 1;
indices[1] = indices[0] + trueCons.getPropagators().length;
for (int p = indices[0]; p < indices[1]; p++) {
propagators[p].setReifiedSilent(bool);
}
trueCons.declareAs(Status.REIFIED, -1);
}
private static Propagator>[] createProps(BoolVar bVar, Constraint trueCons) {
Set setOfVars = new HashSet<>();
prepareConstraint(bVar, trueCons, setOfVars);
Variable[] allVars = ArrayUtils.append(new Variable[]{bVar}, setOfVars.toArray(
new Variable[0]));
PropImplied reifProp = new PropImplied(allVars, trueCons);
return ArrayUtils.append(new Propagator[]{reifProp},
trueCons.getPropagators().clone()
);
}
private static void prepareConstraint(BoolVar bVar, Constraint c, Set setOfVars) {
for (Propagator> p : c.getPropagators()) {
for (Variable v : p.getVars()) {
if (v != bVar) {
setOfVars.add(v);
}
}
}
}
//***********************************************************************************
// METHODS
//***********************************************************************************
public void activate(int idx) throws ContradictionException {
Model model = propagators[0].getModel();
assert bool.isInstantiatedTo(1 - idx);
for (int p = indices[idx]; p < indices[idx + 1]; p++) {
assert (propagators[p].isReifiedAndSilent());
propagators[p].setReifiedTrue();
propagators[p].propagate(PropagatorEventType.FULL_PROPAGATION.getMask());
model.getSolver().getEngine().onPropagatorExecution(propagators[p]);
}
}
@Override
public ESat isSatisfied() {
return propReif.isEntailed();
}
@Override
public String toString() {
return bool.toString() + "=>" + trueCons.toString();
}
}