public class UserFriendlyPBStringSolver<T> extends DimacsStringSolver implements IPBSolver
firstConstr, fixedNbClauses, nbclauses, nbvars| Constructor and Description | 
|---|
UserFriendlyPBStringSolver()  | 
UserFriendlyPBStringSolver(int initSize)  | 
| Modifier and Type | Method and Description | 
|---|---|
IConstr | 
addAtLeast(IVecInt literals,
          int degree)  | 
IConstr | 
addAtLeast(IVecInt literals,
          IVec<BigInteger> coeffs,
          BigInteger degree)
Create a pseudo-boolean constraint of the type "at least". 
 | 
IConstr | 
addAtLeast(IVecInt literals,
          IVecInt coeffs,
          int degree)
Create a pseudo-boolean constraint of the type "at least". 
 | 
IConstr | 
addAtMost(IVecInt literals,
         int degree)  | 
IConstr | 
addAtMost(IVecInt literals,
         IVec<BigInteger> coeffs,
         BigInteger degree)
Create a pseudo boolean constraint of the type "at most". 
 | 
IConstr | 
addAtMost(IVecInt literals,
         IVecInt coeffs,
         int degree)
Create a pseudo boolean constraint of the type "at most". 
 | 
IConstr | 
addClause(IVecInt literals)  | 
IConstr | 
addExactly(IVecInt literals,
          IVec<BigInteger> coeffs,
          BigInteger weight)
Create a pseudo-boolean constraint of the type "subset sum". 
 | 
IConstr | 
addExactly(IVecInt literals,
          IVecInt coeffs,
          int weight)
Create a pseudo-boolean constraint of the type "subset sum". 
 | 
IConstr | 
addPseudoBoolean(IVecInt lits,
                IVec<BigInteger> coeffs,
                boolean moreThan,
                BigInteger d)
Create a Pseudo-Boolean constraint of the type "at least n or at most n
 of those literals must be satisfied" 
 | 
String | 
getExplanation()  | 
ObjectiveFunction | 
getObjectiveFunction()
Retrieve the objective function from the solver. 
 | 
int | 
newVar(int howmany)  | 
void | 
setExpectedNumberOfClauses(int nb)  | 
void | 
setListOfVariablesForExplanation(IVecInt listOfVariables)  | 
void | 
setMapping(Map<Integer,T> mapping)  | 
void | 
setObjectiveFunction(ObjectiveFunction obj)
Provide an objective function to the solver. 
 | 
String | 
toString()  | 
String | 
toString(String prefix)  | 
addExactly, getOut, modelWithInternalVariables, nConstraints, newVar, nextFreeVarId, nVars, primeImplicant, printInfos, printStat, realNumberOfVariables, registerLiteral, reset, setNbVarsaddAllClauses, addBlockingClause, clearLearntClauses, expireTimeout, findModel, findModel, getLogPrefix, getSearchListener, getSolvingEngine, getStat, getTimeout, getTimeoutMs, isDBSimplificationAllowed, isSatisfiable, isSatisfiable, isSatisfiable, isSatisfiable, isSolverKeptHot, isVerbose, model, model, primeImplicant, printInfos, printStat, printStat, removeConstr, removeSubsumedConstr, setDBSimplificationAllowed, setKeepSolverHot, setLogPrefix, setSearchListener, setTimeout, setTimeoutMs, setTimeoutOnConflicts, setUnitClauseProvider, setVerbose, unsatExplanationclone, equals, finalize, getClass, hashCode, notify, notifyAll, wait, wait, waitaddAllClauses, addBlockingClause, addExactly, clearLearntClauses, expireTimeout, getLogPrefix, getSearchListener, getSolvingEngine, getStat, getTimeout, getTimeoutMs, isDBSimplificationAllowed, isSolverKeptHot, isVerbose, modelWithInternalVariables, newVar, nextFreeVarId, printStat, printStat, printStat, realNumberOfVariables, registerLiteral, removeConstr, removeSubsumedConstr, reset, setDBSimplificationAllowed, setKeepSolverHot, setLogPrefix, setSearchListener, setTimeout, setTimeoutMs, setTimeoutOnConflicts, setUnitClauseProvider, setVerbose, unsatExplanationfindModel, findModel, isSatisfiable, isSatisfiable, isSatisfiable, isSatisfiable, model, nConstraints, nVars, primeImplicant, primeImplicant, printInfos, printInfosmodelpublic UserFriendlyPBStringSolver()
public UserFriendlyPBStringSolver(int initSize)
initSize - public IConstr addPseudoBoolean(IVecInt lits, IVec<BigInteger> coeffs, boolean moreThan, BigInteger d) throws ContradictionException
IPBSolveraddPseudoBoolean in interface IPBSolverlits - a set of literals. The vector can be reused since the solver
            is not supposed to keep a reference to that vector.coeffs - the coefficients of the literals. The vector can be reused
            since the solver is not supposed to keep a reference to that
            vector.moreThan - true if it is a constraint >= degree, false if it is a
            constraint <= degreed - the degree of the cardinality constraintContradictionException - iff the vector of literals is empty or if the constraint is
             falsified after unit propagationISolver.removeConstr(IConstr)public void setObjectiveFunction(ObjectiveFunction obj)
IPBSolversetObjectiveFunction in interface IPBSolverobj - the objective functionpublic IConstr addAtLeast(IVecInt literals, int degree) throws ContradictionException
addAtLeast in interface ISolveraddAtLeast in class DimacsStringSolverContradictionExceptionpublic IConstr addAtMost(IVecInt literals, int degree) throws ContradictionException
addAtMost in interface ISolveraddAtMost in class DimacsStringSolverContradictionExceptionpublic IConstr addClause(IVecInt literals) throws ContradictionException
addClause in interface ISolveraddClause in class DimacsStringSolverContradictionExceptionpublic String getExplanation()
public void setListOfVariablesForExplanation(IVecInt listOfVariables)
public String toString()
toString in class DimacsStringSolverpublic String toString(String prefix)
toString in interface ISolvertoString in class DimacsStringSolverpublic int newVar(int howmany)
newVar in interface IProblemnewVar in class DimacsStringSolverpublic void setExpectedNumberOfClauses(int nb)
setExpectedNumberOfClauses in interface ISolversetExpectedNumberOfClauses in class DimacsStringSolverpublic ObjectiveFunction getObjectiveFunction()
IPBSolvergetObjectiveFunction in interface IPBSolverpublic IConstr addAtMost(IVecInt literals, IVecInt coeffs, int degree) throws ContradictionException
IPBSolveraddAtMost in interface IPBSolverliterals - a set of literals The vector can be reused since the solver is
            not supposed to keep a reference to that vector.coeffs - the coefficients of the literals. The vector can be reused
            since the solver is not supposed to keep a reference to that
            vector.degree - the degree of the pseudo-boolean constraintContradictionException - iff the constraint is found trivially unsat.ISolver.removeConstr(IConstr)public IConstr addAtMost(IVecInt literals, IVec<BigInteger> coeffs, BigInteger degree) throws ContradictionException
IPBSolveraddAtMost in interface IPBSolverliterals - a set of literals The vector can be reused since the solver is
            not supposed to keep a reference to that vector.coeffs - the coefficients of the literals. The vector can be reused
            since the solver is not supposed to keep a reference to that
            vector.degree - the degree of the pseudo-boolean constraintContradictionException - iff the constraint is found trivially unsat.ISolver.removeConstr(IConstr)public IConstr addAtLeast(IVecInt literals, IVecInt coeffs, int degree) throws ContradictionException
IPBSolveraddAtLeast in interface IPBSolverliterals - a set of literals. The vector can be reused since the solver
            is not supposed to keep a reference to that vector.coeffs - the coefficients of the literals. The vector can be reused
            since the solver is not supposed to keep a reference to that
            vector.degree - the degree of the pseudo-boolean constraintContradictionException - iff the constraint is found trivially unsat.ISolver.removeConstr(IConstr)public IConstr addAtLeast(IVecInt literals, IVec<BigInteger> coeffs, BigInteger degree) throws ContradictionException
IPBSolveraddAtLeast in interface IPBSolverliterals - a set of literals. The vector can be reused since the solver
            is not supposed to keep a reference to that vector.coeffs - the coefficients of the literals. The vector can be reused
            since the solver is not supposed to keep a reference to that
            vector.degree - the degree of the pseudo-boolean constraintContradictionException - iff the constraint is found trivially unsat.ISolver.removeConstr(IConstr)public IConstr addExactly(IVecInt literals, IVecInt coeffs, int weight) throws ContradictionException
IPBSolveraddExactly in interface IPBSolverliterals - a set of literals. The vector can be reused since the solver
            is not supposed to keep a reference to that vector.coeffs - the coefficients of the literals. The vector can be reused
            since the solver is not supposed to keep a reference to that
            vector.weight - the number of literals that must be satisfiedContradictionException - iff the constraint is trivially unsatisfiable.public IConstr addExactly(IVecInt literals, IVec<BigInteger> coeffs, BigInteger weight) throws ContradictionException
IPBSolveraddExactly in interface IPBSolverliterals - a set of literals. The vector can be reused since the solver
            is not supposed to keep a reference to that vector.coeffs - the coefficients of the literals. The vector can be reused
            since the solver is not supposed to keep a reference to that
            vector.weight - the number of literals that must be satisfiedContradictionException - iff the constraint is trivially unsatisfiable.Copyright © 2013 Centre de Recherche en Informatique de Lens (CRIL). All Rights Reserved.