public final class MinOneDecorator extends SolverDecorator<ISolver> implements IOptimizationProblem
| Constructor and Description |
|---|
MinOneDecorator(ISolver solver) |
| Modifier and Type | Method and Description |
|---|---|
boolean |
admitABetterSolution()
Look for a solution of the optimization problem.
|
boolean |
admitABetterSolution(IVecInt assumps)
Look for a solution of the optimization problem when some literals are
satisfied.
|
java.lang.Number |
calculateObjective()
Compute the value of the objective function for the current solution.
|
void |
discard()
Discard the current solution in the optimization problem.
|
void |
discardCurrentSolution()
Discard the current solution in the optimization problem.
|
void |
forceObjectiveValueTo(java.lang.Number forcedValue)
Force the value of the objective function.
|
java.lang.Number |
getObjectiveValue()
Read only access to the value of the objective function for the current
solution.
|
boolean |
hasNoObjectiveFunction()
If the optimization problem has no objective function, then it is a
simple decision problem.
|
boolean |
isOptimal()
Allows to check afterwards if the solution provided by the solver is
optimal or not.
|
int[] |
model()
Provide a model (if any) for a satisfiable formula.
|
int[] |
modelWithInternalVariables()
That method is designed to be used to retrieve the real model of the
current set of constraints, i.e.
|
boolean |
nonOptimalMeansSatisfiable()
A suboptimal solution has different meaning depending of the optimization
problem considered.
|
void |
reset()
Clean up the internal state of the solver.
|
void |
setTimeoutForFindingBetterSolution(int seconds)
Allow to set a specific timeout when the solver is in optimization mode.
|
addAllClauses, addAtLeast, addAtMost, addBlockingClause, addClause, addExactly, clearDecorated, clearLearntClauses, decorated, expireTimeout, findModel, findModel, getLogPrefix, getSearchListener, getSolvingEngine, getStat, getTimeout, getTimeoutMs, isDBSimplificationAllowed, isSatisfiable, isSatisfiable, isSatisfiable, isSatisfiable, isSolverKeptHot, isVerbose, model, nConstraints, newVar, newVar, nextFreeVarId, nVars, primeImplicant, primeImplicant, printInfos, printInfos, printStat, printStat, printStat, realNumberOfVariables, registerLiteral, removeConstr, removeSubsumedConstr, setDBSimplificationAllowed, setExpectedNumberOfClauses, setKeepSolverHot, setLogPrefix, setSearchListener, setTimeout, setTimeoutMs, setTimeoutOnConflicts, setUnitClauseProvider, setVerbose, toString, toString, unsatExplanationclone, equals, finalize, getClass, hashCode, notify, notifyAll, wait, wait, waitfindModel, findModel, isSatisfiable, isSatisfiable, isSatisfiable, isSatisfiable, nConstraints, newVar, nVars, primeImplicant, primeImplicant, printInfos, printInfosmodelpublic MinOneDecorator(ISolver solver)
public boolean admitABetterSolution()
throws TimeoutException
IOptimizationProblemadmitABetterSolution in interface IOptimizationProblemTimeoutException - if the solver cannot answer in reasonable time.ISolver.setTimeout(int)public boolean admitABetterSolution(IVecInt assumps) throws TimeoutException
IOptimizationProblemadmitABetterSolution in interface IOptimizationProblemassumps - a set of literals in Dimacs format.TimeoutException - if the solver cannot answer in reasonable time.ISolver.setTimeout(int)public boolean hasNoObjectiveFunction()
IOptimizationProblemhasNoObjectiveFunction in interface IOptimizationProblempublic boolean nonOptimalMeansSatisfiable()
IOptimizationProblemnonOptimalMeansSatisfiable in interface IOptimizationProblempublic java.lang.Number calculateObjective()
IOptimizationProblemcalculateObjective in interface IOptimizationProblemIOptimizationProblem.getObjectiveValue()public void discardCurrentSolution()
throws ContradictionException
IOptimizationProblemdiscardCurrentSolution in interface IOptimizationProblemContradictionException - if a trivial inconsistency is detected.public int[] model()
IProblemmodel in interface IProblemmodel in class SolverDecorator<ISolver>IProblem.isSatisfiable(),
IProblem.isSatisfiable(IVecInt)public int[] modelWithInternalVariables()
ISolvermodelWithInternalVariables in interface ISolvermodelWithInternalVariables in class SolverDecorator<ISolver>IProblem.model(),
ModelIteratorpublic void reset()
ISolverreset in interface ISolverreset in class SolverDecorator<ISolver>public java.lang.Number getObjectiveValue()
IOptimizationProblemgetObjectiveValue in interface IOptimizationProblempublic void discard()
throws ContradictionException
IOptimizationProblemdiscard in interface IOptimizationProblemContradictionException - if a trivial inconsistency is detected.IOptimizationProblem.discardCurrentSolution()public void forceObjectiveValueTo(java.lang.Number forcedValue)
throws ContradictionException
IOptimizationProblemforceObjectiveValueTo in interface IOptimizationProblemContradictionExceptionpublic boolean isOptimal()
IOptimizationProblemisOptimal in interface IOptimizationProblempublic void setTimeoutForFindingBetterSolution(int seconds)
IOptimizationProblemsetTimeoutForFindingBetterSolution in interface IOptimizationProblem