forked from JavaTX/JavaCompilerCore
extended case 6
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@ -479,11 +479,15 @@ public class Unify {
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protected Set<Set<UnifyPair>> unifyCase6(ExtendsType extTheta, PlaceholderType a, IFiniteClosure fc) {
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Set<Set<UnifyPair>> result = new HashSet<>();
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for(UnifyType thetaS : fc.grArg(extTheta)) {
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Set<UnifyPair> resultPrime = new HashSet<>();
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resultPrime.add(new UnifyPair(a, thetaS, PairOperator.EQUALSDOT));
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result.add(resultPrime);
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}
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//for(UnifyType thetaS : fc.smaller(extTheta.getExtendedType())) {
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UnifyType freshTph = PlaceholderType.freshPlaceholder();
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UnifyType extFreshTph = new ExtendsType(freshTph);
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Set<UnifyPair> resultPrime = new HashSet<>();
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resultPrime.add(new UnifyPair(a, extFreshTph, PairOperator.EQUALSDOT));
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resultPrime.add(new UnifyPair(extTheta.getExtendedType(), freshTph, PairOperator.SMALLERDOT));
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result.add(resultPrime);
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//}
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return result;
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}
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@ -32,8 +32,6 @@ public class StandardUnifyTest {
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System.out.println(unify.unify(f, y).get());
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// TODO ist das ergebnis { (x -> ? extends a), (y -> g<x>) } in der richtigen form oder
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// muss es { (x -> ? extends a), (y -> g<? extends a>) } sein?
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// {f<g<x>,x> = f<y, ? extends a>}
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UnifyType g = tf.getSimpleType("g", "x");
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UnifyType f1 = tf.getSimpleType("f", g, x);
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@ -174,7 +174,7 @@ public class UnifyTest extends Unify {
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addAsSet(expected, new UnifyPair(tphA, extObject, PairOperator.EQUALSDOT));
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actual = unify(eq, fc);
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actual = filterGeneratedTPHsMultiple(actual);
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Assert.assertEquals(expected, actual);
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@ -479,6 +479,25 @@ public class UnifyTest extends Unify {
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System.out.println(actual);
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//Assert.assertEquals(expected, actual);
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/*
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* Test 6:
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* This is a test for the extension of case 6 of the cartesian product of step 4.
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*
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* ? extends b <.? a
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* b =. Integer
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*/
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eq = new HashSet<>();
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eq.add(new UnifyPair(extB, tphA, PairOperator.SMALLERDOTWC));
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eq.add(new UnifyPair(tphB, integer, PairOperator.EQUALSDOT));
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expected = new HashSet<>();
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actual = unify(eq, fc);
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System.out.println(actual);
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//Assert.assertEquals(expected, actual);
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}
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@Test
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