public class AltB extends PrimitiveConstraint
For example, {}<lex {1} {1, 2}<lex {1, 2, 3} {1, 3}<lex {2} {1}< {2}
| Modifier and Type | Field and Description |
|---|---|
SetVar |
a
It specifies the first variable of the constraint
|
SetVar |
b
It specifies the second variable of the constraint
|
notConsistencyPruningEventsatomicExecution, consistencyPruningEvents, constraintScope, earlyTerminationOK, increaseWeight, numberId, scope, tracequeueIndex| Constructor and Description |
|---|
AltB(SetVar a,
SetVar b)
It constructs an Lexical ordering constraint to restrict the domain of the variables a and b.
|
| Modifier and Type | Method and Description |
|---|---|
void |
consistency(Store store)
It is a (most probably incomplete) consistency function which removes the
values from variables domains.
|
int |
getDefaultConsistencyPruningEvent() |
protected int |
getDefaultNestedConsistencyPruningEvent() |
protected int |
getDefaultNestedNotConsistencyPruningEvent() |
protected int |
getDefaultNotConsistencyPruningEvent() |
void |
impose(Store store)
It imposes the constraint in a given store.
|
void |
notConsistency(Store store)
It makes pruning in such a way that constraint is notConsistent.
|
boolean |
notSatisfied()
It checks if constraint would be always not satisfied.
|
boolean |
satisfied()
It checks if the constraint is satisfied.
|
String |
toString()
It produces a string representation of a constraint state.
|
getNestedPruningEvent, getNotConsistencyPruningEvent, include, setNotConsistencyPruningEventafc, arguments, cleanAfterFailure, decompose, getConsistencyPruningEvent, getGuideConstraint, getGuideValue, getGuideVariable, grounded, grounded, id, impose, imposeDecomposition, increaseWeight, intArrayToString, long2int, numberArgs, queueVariable, removeConstraint, requiresMonotonicity, setConsistencyPruningEvent, setConstraintScope, setScope, setScope, setScope, setScope, setScope, setWatchedVariableGrounded, supplyGuideFeedback, updateAFC, watchedVariableGroundedauxiliaryVariables, checkInput, checkInput, checkInputForDuplication, checkInputForDuplicationSkipSingletons, checkInputForNullness, checkInputForNullness, checkInputForNullness, derivative, getDubletonsSkipSingletons, imposeDecompositionpublic SetVar a
public SetVar b
public AltB(SetVar a, SetVar b)
a - variable that is restricted to be less than b with lexical order.b - variable that is restricted to be greater than a with lexical order.public void consistency(Store store)
Constraintconsistency in class Constraintstore - constraint store within which the constraint consistency is being checked.public void notConsistency(Store store)
PrimitiveConstraintnotConsistency in class PrimitiveConstraintstore - the constraint store in which context the notConsistency technique is evaluated.public boolean satisfied()
SatisfiedPresentImplementations of this interface for constraints that are not PrimitiveConstraint may require constraint imposition and consistency check as a requirement to work correctly.
public boolean notSatisfied()
PrimitiveConstraintnotSatisfied in class PrimitiveConstraintprotected int getDefaultNestedConsistencyPruningEvent()
getDefaultNestedConsistencyPruningEvent in class PrimitiveConstraintprotected int getDefaultNestedNotConsistencyPruningEvent()
getDefaultNestedNotConsistencyPruningEvent in class PrimitiveConstraintprotected int getDefaultNotConsistencyPruningEvent()
getDefaultNotConsistencyPruningEvent in class PrimitiveConstraintpublic int getDefaultConsistencyPruningEvent()
getDefaultConsistencyPruningEvent in class Constraintpublic void impose(Store store)
Constraintimpose in class PrimitiveConstraintstore - the constraint store to which the constraint is imposed to.public String toString()
ConstrainttoString in class ConstraintCopyright © 2022. All rights reserved.