package inference.axioms;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import exceptions.SubstituteFailedException;
import inference.InferenceRule;
import models.Position;
import models.algebra.Variable;
import models.formulas.Formula;
import models.formulas.meta.MetaDependencyFormula;
import models.terms.meta.MatchConstraint;
import models.terms.meta.MetaDynamicDependency;
import models.terms.meta.MetaEvaluatableTermVariable;
import models.terms.meta.MetaRDLTerm;
import models.terms.meta.MetaTermGenerator;
public class ArgumentExtension extends InferenceRule {
public ArgumentExtension() {
super("Argument Extension");
assumptions.add(new MetaDependencyFormula(
new MetaDynamicDependency(
new MetaTermGenerator() {
@Override
public MetaRDLTerm generate(int curIndex, int curDepth, int maxIndex, int maxDepth, Map<Object, Object> context) {
curIndex -= 1;
return new MetaEvaluatableTermVariable(new Variable("te" + curIndex));
}
},
new MetaEvaluatableTermVariable(new Variable("se"))
)
));
conclusion = new MetaDependencyFormula(
new MetaDynamicDependency(
new MetaTermGenerator() {
@Override
public MetaRDLTerm generate(int curIndex, int curDepth, int maxIndex, int maxDepth, Map<Object, Object> context) {
curIndex -= 2;
return new MetaEvaluatableTermVariable(new Variable("te" + curIndex));
}
},
new MetaEvaluatableTermVariable(new Variable("se")),
new MetaEvaluatableTermVariable(new Variable("ue"))
)
);
}
public Set<Formula> derive(List<Formula> assumptions, MatchConstraint constraint) {
Set<Formula> result = new HashSet<>();
if (this.assumptions.size() != assumptions.size()) {
return new HashSet<>();
}
Set<MatchConstraint> matchResult = assumptionMatch(assumptions, constraint);
for (MatchConstraint res: matchResult) {
try {
res.getContext().put(new Position(), (Integer) res.getContext().get(new Position()) + 1);
result.add(this.conclusion.substitution(res.getBinding(), res.getContext()));
} catch (SubstituteFailedException e) {
continue;
}
}
return result;
}
}