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targetByte
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refactorin
Author | SHA1 | Date | |
---|---|---|---|
|
378374fff1 | ||
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0dc8a53fca |
8
pom.xml
8
pom.xml
@ -118,6 +118,14 @@ http://maven.apache.org/maven-v4_0_0.xsd">
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</descriptorRefs>
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</configuration>
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</plugin>
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<plugin>
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<groupId>org.apache.maven.plugins</groupId>
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<artifactId>maven-compiler-plugin</artifactId>
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<configuration>
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<source>9</source>
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<target>9</target>
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</configuration>
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</plugin>
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</plugins>
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</build>
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<repositories>
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@ -154,7 +154,7 @@ public class UnifyTypeFactory {
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public static Constraint<UnifyPair> convert(Constraint<Pair> constraint){
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Constraint<UnifyPair> unifyPairConstraint = constraint.stream()
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.map(UnifyTypeFactory::convert)
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.collect(Collectors.toCollection( () -> new Constraint<UnifyPair> (constraint.isInherited(), convert(constraint.getExtendConstraint()))));
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.collect(Collectors.toCollection( () -> new Constraint<UnifyPair>(convert(constraint.getExtendConstraint()))));
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return unifyPairConstraint;
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}
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@ -17,15 +17,13 @@ public class MethodAssumption extends Assumption{
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private ClassOrInterface receiver;
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private RefTypeOrTPHOrWildcardOrGeneric retType;
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List<? extends RefTypeOrTPHOrWildcardOrGeneric> params;
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private final Boolean isInherited;
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public MethodAssumption(ClassOrInterface receiver, RefTypeOrTPHOrWildcardOrGeneric retType,
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List<? extends RefTypeOrTPHOrWildcardOrGeneric> params, TypeScope scope, Boolean isInherited){
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List<? extends RefTypeOrTPHOrWildcardOrGeneric> params, TypeScope scope){
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super(scope);
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this.receiver = receiver;
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this.retType = retType;
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this.params = params;
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this.isInherited = isInherited;
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}
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/*
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@ -72,8 +70,4 @@ public class MethodAssumption extends Assumption{
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return receiverType;
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}
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public Boolean isInherited() {
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return isInherited;
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}
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}
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@ -6,32 +6,17 @@ import java.util.Collection;
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import java.util.HashSet;
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import java.util.Set;
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//TODO: Remove this class
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public class Constraint<A> extends HashSet<A> {
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private static final long serialVersionUID = 1L;
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private Boolean isInherited = false;//wird nur für die Method-Constraints benoetigt
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private Constraint<A> extendConstraint = null;
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public Constraint() {
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super();
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}
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public Constraint(){}
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public Constraint(Boolean isInherited) {
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this.isInherited = isInherited;
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}
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public Constraint(Boolean isInherited, Constraint<A> extendConstraint) {
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this.isInherited = isInherited;
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public Constraint(Constraint<A> extendConstraint) {
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this.extendConstraint = extendConstraint;
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}
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public void setIsInherited(Boolean isInherited) {
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this.isInherited = isInherited;
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}
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public Boolean isInherited() {
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return isInherited;
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}
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public Constraint<A> getExtendConstraint() {
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return extendConstraint;
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}
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@ -41,7 +26,7 @@ public class Constraint<A> extends HashSet<A> {
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}
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public String toString() {
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return super.toString() + " isInherited = " + isInherited
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return super.toString()
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//" + extendsContraint: " + (extendConstraint != null ? extendConstraint.toStringBase() : "null" )
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+ "\n" ;
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}
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@ -68,9 +68,8 @@ public class ConstraintSet<A> {
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Constraint<B> newConst = as.stream()
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.map(o)
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.collect(Collectors.toCollection((as.getExtendConstraint() != null)
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? () -> new Constraint<B> (as.isInherited(),
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as.getExtendConstraint().stream().map(o).collect(Collectors.toCollection(Constraint::new)))
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: () -> new Constraint<B> (as.isInherited())
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? () -> new Constraint<B> (as.getExtendConstraint().stream().map(o).collect(Collectors.toCollection(Constraint::new)))
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: () -> new Constraint<B> ()
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));
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//CSA2CSB.put(as, newConst);
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@ -0,0 +1,107 @@
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package de.dhbwstuttgart.typeinference.constraints;
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import java.util.*;
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import java.util.function.BinaryOperator;
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import java.util.function.Consumer;
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import java.util.stream.Collectors;
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import java.util.stream.Stream;
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import java.util.stream.StreamSupport;
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public class ConstraintSet2 {
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Set<OderConstraint> oderConstraints = new HashSet<>();
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public ConstraintSet2(Set<OderConstraint> constraints){
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if(constraints.isEmpty())throw new RuntimeException("Empty constraint set");
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this.oderConstraints = constraints;
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}
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@Override
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public String toString(){
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BinaryOperator<String> b = (x,y) -> x+y;
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return "ODER:" + this.oderConstraints.stream().reduce("", (x,y) -> x.toString()+ "\n" +y, b);
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}
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private class ConstraintSpliterator implements Spliterator<Set<Pair>> {
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private List<OderConstraint> constraints;
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private long i = 0;
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private long max = 0;
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private List<Integer> sizes;
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private List<Long> bases = new ArrayList<>();
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ConstraintSpliterator(List<OderConstraint> constraints){
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this.constraints = constraints;
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sizes = constraints.stream().map(OderConstraint::getSize).collect(Collectors.toList());
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long base = 1;
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for(int size : sizes){
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bases.add(base);
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base *= size;
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}
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i = 0;
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max = estimateSize() - 1;
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}
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ConstraintSpliterator(List<OderConstraint> constraints, long start, long end){
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this(constraints);
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i = start;
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max = end;
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}
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@Override
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public boolean tryAdvance(Consumer<? super Set<Pair>> consumer) {
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if(i > max) return false;
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consumer.accept(get(i));
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i++;
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return true;
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}
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private Set<Pair> get(long num){
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Set<Pair> ret = new HashSet<>();
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Iterator<Long> baseIt = bases.iterator();
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for(OderConstraint constraint : constraints){
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ret.addAll(constraint.get((int) ((num/baseIt.next())%constraint.getSize())));
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}
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return ret;
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}
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@Override
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public Spliterator<Set<Pair>> trySplit() {
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if(max - i < 2) return null;
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long middle = i + ((max- i) / 2);
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long maxOld = max;
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max = middle - 1;
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return new ConstraintSpliterator(constraints, middle, maxOld);
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}
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@Override
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public long estimateSize() {
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long ret = 1;
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for (int size : sizes)ret*=size;
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return ret;
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}
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@Override
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public int characteristics() {
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return ORDERED | SIZED | IMMUTABLE | NONNULL;
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}
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}
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public Stream<Set<Pair>> cartesianProductParallel(){
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return StreamSupport.stream(new ConstraintSpliterator(oderConstraints.stream().collect(Collectors.toList())), true);
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}
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/*
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public Map<String, TypePlaceholder> generateTPHMap() {
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HashMap<String, TypePlaceholder> ret = new HashMap<>();
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constraints.map((Pair p) -> {
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if (p.TA1 instanceof TypePlaceholder) {
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ret.put(((TypePlaceholder) p.TA1).getName(), (TypePlaceholder) p.TA1);
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}
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if (p.TA2 instanceof TypePlaceholder) {
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ret.put(((TypePlaceholder) p.TA2).getName(), (TypePlaceholder) p.TA2);
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}
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return null;
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});
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return ret;
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}
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*/
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}
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@ -0,0 +1,26 @@
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package de.dhbwstuttgart.typeinference.constraints;
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import java.util.HashSet;
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import java.util.Set;
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public class ConstraintSetBuilder {
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private Set<Pair> undConstraints = new HashSet<>();
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private Set<OderConstraint> oderConstraints = new HashSet<>();
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private boolean done = false;
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public void addUndConstraint(Pair p){
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undConstraints.add(p);
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}
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public void addOderConstraint(OderConstraint orConstraint) {
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oderConstraints.add(orConstraint);
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}
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public ConstraintSet2 build(){
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if(done)throw new RuntimeException("Trying to build cartesian product twice");
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this.done = true;
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if(!undConstraints.isEmpty())
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oderConstraints.add(new OderConstraint(Set.of(undConstraints)));
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return new ConstraintSet2(oderConstraints);
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}
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}
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@ -0,0 +1,24 @@
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package de.dhbwstuttgart.typeinference.constraints;
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import java.util.List;
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import java.util.Set;
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import java.util.stream.Collectors;
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public class OderConstraint {
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private final List<Set<Pair>> cons;
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public OderConstraint(Set<Set<Pair>> orCons){
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if(orCons.isEmpty())throw new RuntimeException("Empty constraint set");
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for(Set<Pair> c : orCons){
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if(c.isEmpty())throw new RuntimeException("Empty constraint set");
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}
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this.cons = orCons.stream().collect(Collectors.toList());
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}
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public int getSize(){
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return cons.size();
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}
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public Set<Pair> get(int l) {
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return cons.get(l);
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}
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}
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@ -179,7 +179,7 @@ public class TYPEStmt implements StatementVisitor{
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!(x.TA2 instanceof TypePlaceholder))
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? new Pair(x.TA1, new ExtendsWildcardType(x.TA2, x.TA2.getOffset()), PairOperator.EQUALSDOT)
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: x)
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.collect(Collectors.toCollection(() -> new Constraint<Pair>(oneMethodConstraint.isInherited())));
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.collect(Collectors.toCollection(() -> new Constraint<Pair>()));
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oneMethodConstraint.setExtendConstraint(extendsOneMethodConstraint);
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extendsOneMethodConstraint.setExtendConstraint(oneMethodConstraint);
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methodConstraints.add(extendsOneMethodConstraint);
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@ -574,7 +574,7 @@ public class TYPEStmt implements StatementVisitor{
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protected Constraint<Pair> generateConstraint(MethodCall forMethod, MethodAssumption assumption,
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TypeInferenceBlockInformation info, GenericsResolver resolver){
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Constraint<Pair> methodConstraint = new Constraint<>(assumption.isInherited());
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Constraint<Pair> methodConstraint = new Constraint<>();
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ClassOrInterface receiverCl = assumption.getReceiver();
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/*
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List<RefTypeOrTPHOrWildcardOrGeneric> params = new ArrayList<>();
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@ -636,7 +636,7 @@ public class TYPEStmt implements StatementVisitor{
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public RefTypeOrTPHOrWildcardOrGeneric getReturnType() {
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throw new NotImplementedException();
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}
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}, false));
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}));
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}
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for(ClassOrInterface cl : info.getAvailableClasses()){
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for(Method m : cl.getMethods()){
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@ -645,7 +645,7 @@ public class TYPEStmt implements StatementVisitor{
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RefTypeOrTPHOrWildcardOrGeneric retType = m.getReturnType();//info.checkGTV(m.getReturnType());
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ret.add(new MethodAssumption(cl, retType, convertParams(m.getParameterList(),info),
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createTypeScope(cl, m), m.isInherited));
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createTypeScope(cl, m)));
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}
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}
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}
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@ -680,7 +680,7 @@ public class TYPEStmt implements StatementVisitor{
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for(Method m : cl.getConstructors()){
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if(m.getParameterList().getFormalparalist().size() == argList.getArguments().size()){
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ret.add(new MethodAssumption(cl, ofType, convertParams(m.getParameterList(),
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info), createTypeScope(cl, m), m.isInherited));
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info), createTypeScope(cl, m)));
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}
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}
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}
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@ -682,9 +682,8 @@ public class RuleSet implements IRuleSet{
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Function<? super Constraint<UnifyPair>,? extends Constraint<UnifyPair>> applyUni = b -> b.stream().map(
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x -> uni.apply(pair,x)).collect(Collectors.toCollection((b.getExtendConstraint() != null)
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? () -> new Constraint<UnifyPair>(
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b.isInherited(),
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b.getExtendConstraint().stream().map(x -> uni.apply(pair,x)).collect(Collectors.toCollection(Constraint::new)))
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: () -> new Constraint<UnifyPair>(b.isInherited())
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: () -> new Constraint<UnifyPair>()
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));
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oderConstraints.replaceAll(oc -> oc.stream().map(applyUni).collect(Collectors.toCollection(HashSet::new)));
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/*
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@ -1304,7 +1304,6 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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Set<UnifyPair> a_new = aParDefIt.next();
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List<Set<UnifyPair>> smallerSetasList = oup.smallerThan(a_new, nextSetasList);
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List<Set<UnifyPair>> notInherited = smallerSetasList.stream()
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.filter(x -> !((Constraint<UnifyPair>)x).isInherited())
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.collect(Collectors.toCollection(ArrayList::new));
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List<Set<UnifyPair>> notErased = new ArrayList<>();
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notInherited.stream().forEach(x -> { notErased.addAll(oup.smallerEqThan(x, smallerSetasList)); });
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@ -1346,11 +1345,10 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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List<Set<UnifyPair>> greaterSetasList = oup.greaterThan(a_new, nextSetasList);
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//a_new muss hingefuegt werden, wenn es nicht vererbt ist, dann wird es spaeter wieder geloescht
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if (!((Constraint<UnifyPair>)a_new).isInherited()) {
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greaterSetasList.add(a_new);
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}
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List<Set<UnifyPair>> notInherited = greaterSetasList.stream()
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.filter(x -> !((Constraint<UnifyPair>)x).isInherited())
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.collect(Collectors.toCollection(ArrayList::new));
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List<Set<UnifyPair>> notErased = new ArrayList<>();
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@ -1401,7 +1399,6 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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writeLog("Removed: " + nextSetasListOderConstraints);
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List<Set<UnifyPair>> smallerSetasList = oup.smallerThan(a, nextSetasList);
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List<Set<UnifyPair>> notInherited = smallerSetasList.stream()
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.filter(x -> !((Constraint<UnifyPair>)x).isInherited())
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.collect(Collectors.toCollection(ArrayList::new));
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List<Set<UnifyPair>> notErased = new ArrayList<>();
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notInherited.stream().forEach(x -> { notErased.addAll(oup.smallerEqThan(x, smallerSetasList)); });
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|
62
src/test/java/typeinference/ConstraintSetTests.java
Normal file
62
src/test/java/typeinference/ConstraintSetTests.java
Normal file
@ -0,0 +1,62 @@
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package typeinference;
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import de.dhbwstuttgart.parser.NullToken;
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import de.dhbwstuttgart.syntaxtree.type.TypePlaceholder;
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import de.dhbwstuttgart.typeinference.constraints.ConstraintSetBuilder;
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import de.dhbwstuttgart.typeinference.constraints.OderConstraint;
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import de.dhbwstuttgart.typeinference.constraints.Pair;
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import org.junit.Test;
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import java.util.List;
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import java.util.Set;
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import java.util.stream.Collectors;
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public class ConstraintSetTests {
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@Test
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public void cartesianProductTestSingleConstraint(){
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ConstraintSetBuilder builder = new ConstraintSetBuilder();
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builder.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()))));
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List<Set<Pair>> result = builder.build().cartesianProductParallel().collect(Collectors.toList());
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assert result.size() == 1;
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}
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@Test
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public void cartesianProductTestSingleOderConstraint(){
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ConstraintSetBuilder builder = new ConstraintSetBuilder();
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builder.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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List<Set<Pair>> result = builder.build().cartesianProductParallel().collect(Collectors.toList());
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assert result.size() == 2;
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}
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@Test
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public void cartesianProductTestTwoOderConstraint(){
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ConstraintSetBuilder builder = new ConstraintSetBuilder();
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builder.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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builder.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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List<Set<Pair>> result = builder.build().cartesianProductParallel().collect(Collectors.toList());
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assert result.size() == 4;
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}
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@Test
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public void cartesianProductTestThreeOderConstraint(){
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ConstraintSetBuilder builder = new ConstraintSetBuilder();
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builder.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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builder.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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builder.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()))));
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List<Set<Pair>> result = builder.build().cartesianProductParallel().collect(Collectors.toList());
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assert result.size() == 4;
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ConstraintSetBuilder builder2 = new ConstraintSetBuilder();
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builder2.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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builder2.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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builder2.addOderConstraint(new OderConstraint(Set.of(Set.of(generatePair()), Set.of(generatePair()))));
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List<Set<Pair>> result2 = builder2.build().cartesianProductParallel().collect(Collectors.toList());
|
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assert result2.stream().map( a -> a.stream().map(p -> p.TA1.toString()).reduce("", (x, y)-> x+" "+y)).collect(Collectors.toSet()).size() == 8;
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assert result2.size() == 8;
|
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}
|
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|
||||
public Pair generatePair(){
|
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return new Pair(TypePlaceholder.fresh(new NullToken()), TypePlaceholder.fresh(new NullToken()));
|
||||
}
|
||||
}
|
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Block a user