Interface Termination<Solution_>
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- All Superinterfaces:
EventListener,PhaseLifecycleListener<Solution_>,SolverLifecycleListener<Solution_>
- All Known Implementing Classes:
AbstractCompositeTermination,AbstractTermination,AndCompositeTermination,BasicPlumbingTermination,BestScoreFeasibleTermination,BestScoreTermination,ChildThreadPlumbingTermination,OrCompositeTermination,PhaseToSolverTerminationBridge,ScoreCalculationCountTermination,StepCountTermination,TimeMillisSpentTermination,UnimprovedStepCountTermination,UnimprovedTimeMillisSpentScoreDifferenceThresholdTermination,UnimprovedTimeMillisSpentTermination
public interface Termination<Solution_> extends PhaseLifecycleListener<Solution_>
A Termination determines when aSolveror aPhaseshould stop.An implementation must extend
AbstractTerminationto ensure backwards compatibility in future versions.- See Also:
AbstractTermination
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Method Summary
All Methods Instance Methods Abstract Methods Modifier and Type Method Description doublecalculatePhaseTimeGradient(AbstractPhaseScope<Solution_> phaseScope)doublecalculateSolverTimeGradient(SolverScope<Solution_> solverScope)A timeGradient is a relative estimate of how long the search will continue.Termination<Solution_>createChildThreadTermination(SolverScope<Solution_> solverScope, ChildThreadType childThreadType)booleanisPhaseTerminated(AbstractPhaseScope<Solution_> phaseScope)Called by thePhaseafter every step and every move to determine if the search should stop.booleanisSolverTerminated(SolverScope<Solution_> solverScope)Called by theSolverafter every phase to determine if the search should stop.-
Methods inherited from interface org.optaplanner.core.impl.phase.event.PhaseLifecycleListener
phaseEnded, phaseStarted, stepEnded, stepStarted
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Methods inherited from interface org.optaplanner.core.impl.solver.event.SolverLifecycleListener
solvingEnded, solvingStarted
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Method Detail
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isSolverTerminated
boolean isSolverTerminated(SolverScope<Solution_> solverScope)
Called by theSolverafter every phase to determine if the search should stop.- Parameters:
solverScope- never null- Returns:
- true if the search should terminate.
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isPhaseTerminated
boolean isPhaseTerminated(AbstractPhaseScope<Solution_> phaseScope)
Called by thePhaseafter every step and every move to determine if the search should stop.- Parameters:
phaseScope- never null- Returns:
- true if the search should terminate.
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calculateSolverTimeGradient
double calculateSolverTimeGradient(SolverScope<Solution_> solverScope)
A timeGradient is a relative estimate of how long the search will continue.Clients that use a timeGradient should cache it at the start of a single step because some implementations are not time-stable.
If a timeGradient cannot be calculated, it should return -1.0. Several implementations (such a
SimulatedAnnealingAcceptor) require a correctly implemented timeGradient.A Termination's timeGradient can be requested after they are terminated, so implementations should be careful not to return a timeGradient above 1.0.
- Parameters:
solverScope- never null- Returns:
- timeGradient t for which
0.0 <= t <= 1.0 or -1.0when it is not supported. At the start of a solver t is 0.0 and at the end t would be 1.0.
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calculatePhaseTimeGradient
double calculatePhaseTimeGradient(AbstractPhaseScope<Solution_> phaseScope)
- Parameters:
phaseScope- never null- Returns:
- timeGradient t for which
0.0 <= t <= 1.0 or -1.0when it is not supported. At the start of a phase t is 0.0 and at the end t would be 1.0.
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createChildThreadTermination
Termination<Solution_> createChildThreadTermination(SolverScope<Solution_> solverScope, ChildThreadType childThreadType)
- Parameters:
solverScope- never nullchildThreadType- never null- Returns:
- not null
- Throws:
UnsupportedOperationException- if not supported by this termination
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