forked from JavaTX/JavaCompilerCore
wc regeln angepasst, triviale tests fertig
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parent
5030410978
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304a5693a6
@ -55,6 +55,6 @@ public interface IFiniteClosure {
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public Optional<Type> getLeftHandedType(Type t);
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public Set<Type> getAncestors(Type t);
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public Set<Type> getChildren(Type t);
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public Set<Type> getAllTypesByName(String typeName);
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}
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@ -94,7 +94,7 @@ public class FiniteClosure implements IFiniteClosure {
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if (strInheritanceGraph.containsKey(type.getName())) {
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HashSet<Type> candidates = new HashSet<>();
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strInheritanceGraph.get(type.getName()).forEach(x -> candidates.add(x.getContent()));
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for(Type typePrime : result1) {
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for (Type theta2 : candidates) {
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Optional<Unifier> sigma2 = unify.unify(typePrime, theta2);
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@ -135,7 +135,7 @@ public class FiniteClosure implements IFiniteClosure {
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return result3;
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}
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/**
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* Returns all types of the finite closure that are supertypes of the argument.
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* @return The set of supertypes of the argument.
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@ -358,7 +358,18 @@ public class FiniteClosure implements IFiniteClosure {
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public Set<Type> getAncestors(Type t) {
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if(!inheritanceGraph.containsKey(t))
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return new HashSet<>();
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return inheritanceGraph.get(t).getContentOfPredecessors();
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Set<Type> result = inheritanceGraph.get(t).getContentOfPredecessors();
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result.add(t);
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return result;
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}
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@Override
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public Set<Type> getChildren(Type t) {
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if(!inheritanceGraph.containsKey(t))
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return new HashSet<>();
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Set<Type> result = inheritanceGraph.get(t).getContentOfDescendants();
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result.add(t);
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return result;
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}
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protected void permuteParams(ArrayList<Set<Type>> candidates, int idx, Set<TypeParams> result, Type[] current) {
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@ -587,7 +587,7 @@ public class RuleSet implements IRuleSet{
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Type lhsType = pair.getLhsType();
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Type rhsType = pair.getRhsType();
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if((lhsType instanceof ExtendsType) || !(rhsType instanceof ExtendsType))
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if(!(lhsType instanceof SimpleType) || !(rhsType instanceof ExtendsType))
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return Optional.empty();
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return Optional.of(new MPair(lhsType, ((ExtendsType) rhsType).getExtendedType(), PairOperator.SMALLERDOT));
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@ -613,10 +613,10 @@ public class RuleSet implements IRuleSet{
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Type lhsType = pair.getLhsType();
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Type rhsType = pair.getRhsType();
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if((lhsType instanceof SuperType) || !(rhsType instanceof SuperType))
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if(!(lhsType instanceof SimpleType) || !(rhsType instanceof SuperType))
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return Optional.empty();
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return Optional.of(new MPair(((SuperType) rhsType).getSuperedType(), lhsType, PairOperator.SMALLERDOT));
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return Optional.of(new MPair(((SuperType) rhsType).getSuperedType(), lhsType, PairOperator.SMALLERDOTWC));
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}
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@Override
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@ -651,7 +651,7 @@ public class RuleSet implements IRuleSet{
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return Optional.empty();
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Type rhsType = pair.getRhsType();
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if((rhsType instanceof SuperType) || (rhsType instanceof ExtendsType))
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if(!(rhsType instanceof SimpleType))
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return Optional.empty();
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Type lhsType = pair.getLhsType();
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@ -138,9 +138,9 @@ public class Unify {
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}
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/*
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* Step 7: Filter result for solved pairs
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* Step 7: Filter empty sets;
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*/
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return eqPrimePrimeSet;
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return eqPrimePrimeSet.stream().filter(x -> !x.isEmpty()).collect(Collectors.toCollection(HashSet::new));
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}
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@ -300,7 +300,7 @@ public class Unify {
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for(Type c : cs) {
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// Wenn die fc nach spezifikation funktioniert ist das hier nicht mehr nötig?
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Set<Type> thetaQs = fc.smaller(c).stream().filter(x -> x.getTypeParams().arePlaceholders()).collect(Collectors.toCollection(HashSet::new));
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Set<Type> thetaQs = fc.getChildren(c).stream().filter(x -> x.getTypeParams().arePlaceholders()).collect(Collectors.toCollection(HashSet::new));
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thetaQs.add(c); // reflexive
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Set<Type> thetaQPrimes = new HashSet<>();
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@ -347,7 +347,7 @@ public class Unify {
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for(Type c : cs) {
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// Wenn die fc nach spezifikation funktioniert ist das hier nicht mehr nötig?
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Set<Type> thetaQs = fc.smaller(c).stream().filter(x -> x.getTypeParams().arePlaceholders()).collect(Collectors.toCollection(HashSet::new));
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Set<Type> thetaQs = fc.getChildren(c).stream().filter(x -> x.getTypeParams().arePlaceholders()).collect(Collectors.toCollection(HashSet::new));
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thetaQs.add(c); // reflexive
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Set<Type> thetaQPrimes = new HashSet<>();
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@ -422,7 +422,7 @@ public class Unify {
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for(Type c : cs) {
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// Wenn die fc nach spezifikation funktioniert ist das hier nicht mehr nötig?
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Set<Type> thetaQs = fc.smaller(c).stream().filter(x -> x.getTypeParams().arePlaceholders()).collect(Collectors.toCollection(HashSet::new));
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Set<Type> thetaQs = fc.getChildren(c).stream().filter(x -> x.getTypeParams().arePlaceholders()).collect(Collectors.toCollection(HashSet::new));
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thetaQs.add(c); // reflexive
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Set<Type> thetaQPrimes = new HashSet<>();
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@ -1,8 +1,11 @@
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package unify;
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import java.util.ArrayList;
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import java.util.Arrays;
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import java.util.HashSet;
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import java.util.Set;
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import java.util.TreeSet;
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import java.util.stream.Collectors;
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import org.junit.Test;
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@ -13,39 +16,237 @@ import de.dhbwstuttgart.typeinference.unify.model.Type;
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import de.dhbwstuttgart.typeinference.unify.model.TypeParams;
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import de.dhbwstuttgart.typeinference.unifynew.TypeFactory;
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import de.dhbwstuttgart.typeinference.unifynew.Unify;
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import junit.framework.Assert;
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public class UnifyTest extends Unify {
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/**
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* Testing the unification for cases with (n)one pair and without generics.
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*/
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@Test
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public void unifyTest() {
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public void unifyTestTrivial() {
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/*
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* INIT
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*/
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TypeFactory tf = new TypeFactory();
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FiniteClosureBuilder fcb = new FiniteClosureBuilder();
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Set<MPair> eq = new HashSet<MPair>();
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//fcb.add(tf.getSimpleType("Number"), tf.getSimpleType("Object"));
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fcb.add(tf.getSimpleType("Integer"), tf.getSimpleType("Number"));
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fcb.add(tf.getSimpleType("Double"), tf.getSimpleType("Number"));
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fcb.add(tf.getSimpleType("MyList"), tf.getSimpleType("List", tf.getSimpleType("Integer")));
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//fcb.add(tf.getSimpleType("List", "T"));
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Type number = tf.getSimpleType("Number");
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Type object = tf.getSimpleType("Object");
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Type integer = tf.getSimpleType("Integer");
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Type doubl = tf.getSimpleType("Double");
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fcb.add(number, object);
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fcb.add(integer, number);
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fcb.add(doubl, number);
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IFiniteClosure fc = fcb.getCollectionExample();
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// Vector<Integer> <. Vector<A>
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// Vector<Integer <. Vector<C>
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// A <. Integer
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// Number <. A
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// Double <. B
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// B <. Object
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eq.add(new MPair(tf.getSimpleType("Vector", tf.getSimpleType("Integer")), tf.getSimpleType("Vector", "A"), PairOperator.SMALLERDOT));
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eq.add(new MPair(tf.getSimpleType("Vector", tf.getSimpleType("Number")), tf.getSimpleType("Vector", "A"), PairOperator.SMALLERDOT));
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//eq.add(new MPair(tf.getSimpleType("Vector", tf.getSimpleType("Integer")), tf.getSimpleType("Vector", "C"), PairOperator.SMALLERDOT));
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//eq.add(new MPair(tf.getPlaceholderType("A"), tf.getSimpleType("List", "A"), PairOperator.SMALLERDOT));
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//eq.add(new MPair(tf.getSimpleType("Number"), tf.getPlaceholderType("A"), PairOperator.SMALLERDOT));
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//eq.add(new MPair(tf.getPlaceholderType("A"), tf.getPlaceholderType("C"), PairOperator.SMALLERDOT));
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//eq.add(new MPair(tf.getSimpleType("Double"), tf.getPlaceholderType("B"), PairOperator.SMALLERDOT));
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//eq.add(new MPair(tf.getPlaceholderType("B"), tf.getSimpleType("Object"), PairOperator.EQUALSDOT));
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/*
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* Test 1:
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*
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* unify({ }) = { }
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*/
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System.out.println(this.unify(eq, fc));
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Set<MPair> eq = new HashSet<MPair>();
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Set<Set<MPair>> expected = new HashSet<>();
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Set<Set<MPair>> actual = unify(eq, fc);
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Assert.assertEquals(actual, expected);
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/*
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* Test 2:
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*
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* (a <. Number)
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*/
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Type tphA = tf.getPlaceholderType("a");
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eq = new HashSet<>();
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eq.add(new MPair(tphA, number, PairOperator.SMALLERDOT));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, number, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, integer, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, doubl, PairOperator.EQUALSDOT));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 3:
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*
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* (Integer <. a)
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*/
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eq = new HashSet<>();
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eq.add(new MPair(integer, tphA, PairOperator.SMALLERDOT));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, integer, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, number, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, object, PairOperator.EQUALSDOT));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 4:
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*
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* (a <.? Number)
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*/
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eq = new HashSet<>();
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eq.add(new MPair(tphA, number, PairOperator.SMALLERDOTWC));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, number, PairOperator.EQUALSDOT));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 5:
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*
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* (a <.? ? super Integer)
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*/
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Type supInteger = tf.getSuperType(integer);
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Type supNumber = tf.getSuperType(number);
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Type supObject = tf.getSuperType(object);
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eq = new HashSet<>();
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eq.add(new MPair(tphA, supInteger, PairOperator.SMALLERDOTWC));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, integer, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, number, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, object, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, supInteger, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, supNumber, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, supObject, PairOperator.EQUALSDOT));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 6:
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*
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* (Number <.? a)
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*
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*/
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eq = new HashSet<>();
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Type extNumber = tf.getExtendsType(number);
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Type extObject = tf.getExtendsType(object);
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Type supDouble = tf.getSuperType(doubl);
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eq.add(new MPair(number, tphA, PairOperator.SMALLERDOTWC));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, number, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, extNumber, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, extObject, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, supInteger, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, supDouble, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, supNumber, PairOperator.EQUALSDOT));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 7:
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*
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* (? extends Number <.? a)
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*/
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eq = new HashSet<>();
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eq.add(new MPair(extNumber, tphA, PairOperator.SMALLERDOTWC));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, extNumber, PairOperator.EQUALSDOT));
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addAsSet(expected, new MPair(tphA, extObject, PairOperator.EQUALSDOT));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 8:
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*
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* (Integer <. Number)
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*/
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eq = new HashSet<>();
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eq.add(new MPair(integer, number, PairOperator.SMALLERDOT));
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expected = new HashSet<>();
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 9:
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*
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* (Integer <.? Number)
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*/
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eq = new HashSet<>();
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eq.add(new MPair(integer, number, PairOperator.SMALLERDOTWC));
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expected = new HashSet<>();
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 10:
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*
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* (a <. b)
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*/
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Type tphB = tf.getPlaceholderType("b");
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eq = new HashSet<>();
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eq.add(new MPair(tphA, tphB, PairOperator.SMALLERDOT));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, tphB, PairOperator.SMALLERDOT));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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/*
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* Test 11:
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*
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* (a <.? b)
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*/
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eq = new HashSet<>();
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eq.add(new MPair(tphA, tphB, PairOperator.SMALLERDOTWC));
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expected = new HashSet<>();
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addAsSet(expected, new MPair(tphA, tphB, PairOperator.SMALLERDOTWC));
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actual = unify(eq, fc);
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Assert.assertEquals(expected, actual);
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}
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@Test
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public void unifyTestSimple() {
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}
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@Test
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public void unifyTestComplex() {
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}
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@ -83,7 +284,12 @@ public class UnifyTest extends Unify {
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Set<TypeParams> result = permuteParams(candidates);
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System.out.println(result);
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}
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private void addAsSet(Set<Set<MPair>> addTo, MPair... mPairs) {
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addTo.add(new HashSet<>(Arrays.stream(mPairs).collect(Collectors.toSet())));
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}
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}
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