modified: src/main/java/de/dhbwstuttgart/typeinference/unify/TypeUnify2Task.java
modified: src/main/java/de/dhbwstuttgart/typeinference/unify/TypeUnifyTask.java modified: src/main/java/de/dhbwstuttgart/typeinference/unify/model/FiniteClosure.java modified: src/main/java/de/dhbwstuttgart/typeinference/unify/model/OrderingUnifyPair.java Threads soweit fertig
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@ -29,6 +29,7 @@ public class TypeUnify2Task extends TypeUnifyTask {
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return new HashSet<>(); }
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else
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*/
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noOfThread--;
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return res;
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}
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}
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@ -59,11 +59,11 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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/**
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* Fuer die Threads
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*/
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private static int noOfThread = 0;
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protected static int noOfThread = 0;
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private static int totalnoOfThread = 0;
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int thNo;
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protected boolean one = false;
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Integer MaxNoOfThreads = 4;
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Integer MaxNoOfThreads = 8;
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public static final String rootDirectory = System.getProperty("user.dir")+"/test/logFiles/";
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FileWriter logFile;
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@ -200,6 +200,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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.filter(x -> x.size()>1)
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.collect(Collectors.toCollection(ArrayList::new));
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Set<Set<UnifyPair>> res = unify(neweq, remainingOderconstraints, fc, parallel, rekTiefeField);
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noOfThread--;
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if (isUndefinedPairSetSet(res)) { return new HashSet<>(); }
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else return res;
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}
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@ -891,7 +892,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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//for(Set<UnifyPair> a : newSet) {
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i++;
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Set<Set<UnifyPair>> elems = new HashSet<Set<UnifyPair>>(fstElems);
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writeLog("a1: " + rekTiefe + " "+ a.toString()+ "\n");
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writeLog("a1: " + rekTiefe + " "+ "variance: "+ variance + " " + a.toString()+ "\n");
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//elems.add(a); PL 2019-01-20 Muss weg, weil das in jeweiligen Thread erfolgen muss. Fuer den sequentiellen Fall
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//im else-Zweig
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//if (remainingSets.isEmpty()) {//muss immer gegeben sein, weil nur 1 Element der topLevelSets mehr als ein Elemet enthaelt
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@ -899,28 +900,17 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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Set<Set<UnifyPair>> res = new HashSet<>();
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Set<Set<Set<UnifyPair>>> add_res = new HashSet<>();
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if(parallel && (variance == 1) && noOfThread <= MaxNoOfThreads) {
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/*
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elems.add(a);
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TypeUnify2Task fork = new TypeUnify2Task(elems, eq, fc, parallel, logFile, log);
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fork.fork();
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res = fork.join();
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*/
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Set<TypeUnifyTask> forks = new HashSet<>();
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//TypeUnify2Task fork1 = new TypeUnify2Task(elems, eq, fc, parallel, logFile, log);
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Set<UnifyPair> newEqOrig = new HashSet<>(eq);
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Set<Set<UnifyPair>> newElemsOrig = new HashSet<>(elems);
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List<Set<Set<UnifyPair>>> newOderConstraintsOrig = new ArrayList<>(oderConstraints);
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newElemsOrig.add(a);
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/* FORK ANFANG
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/* FORK ANFANG */
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, logFile, log, rekTiefe);
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//forks.add(forkOrig);
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forkOrig.fork();
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FORK ENDE */
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/* FORK ENDE */
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synchronized (this) {
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writeLog("a in " + variance + " "+ a);
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@ -939,23 +929,23 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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forks.add(fork);
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fork.fork();
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}
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res = unify2(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, rekTiefe);
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//res = unify2(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, rekTiefe);
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/* FORK ANFANG
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/* FORK ANFANG */
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synchronized (this) {
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res = forkOrig.join();
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//Set<Set<UnifyPair>> fork_res = forkOrig.join();
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writeLog("JoinOrig " + new Integer(forkOrig.thNo).toString());
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noOfThread--;
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//noOfThread--; an das Ende von compute verschoben
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//add_res.add(fork_res);
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};
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FORK ENDE */
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/* FORK ENDE */
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for(TypeUnifyTask fork : forks) {
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synchronized (this) {
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Set<Set<UnifyPair>> fork_res = fork.join();
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writeLog("Join " + new Integer(fork.thNo).toString());
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noOfThread--;
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//noOfThread--; an das Ende von compute verschoben
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add_res.add(fork_res);
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};
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}
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@ -967,11 +957,11 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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List<Set<Set<UnifyPair>>> newOderConstraintsOrig = new ArrayList<>(oderConstraints);
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newElemsOrig.add(a);
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/* FORK ANFANG
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/* FORK ANFANG */
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, logFile, log, rekTiefe);
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//forks.add(forkOrig);
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forkOrig.fork();
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FORK ENDE */
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/* FORK ENDE */
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synchronized (this) {
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writeLog("a in " + variance + " "+ a);
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@ -990,23 +980,23 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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forks.add(fork);
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fork.fork();
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}
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res = unify2(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, rekTiefe);
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//res = unify2(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, rekTiefe);
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/* FORK ANFANG
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/* FORK ANFANG */
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synchronized (this) {
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res = forkOrig.join();
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//Set<Set<UnifyPair>> fork_res = forkOrig.join();
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writeLog("JoinOrig " + new Integer(forkOrig.thNo).toString());
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noOfThread--;
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//noOfThread--; an das Ende von compute verschoben
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//add_res.add(fork_res);
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};
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FORK ENDE */
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/* FORK ENDE */
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for(TypeUnifyTask fork : forks) {
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synchronized (this) {
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Set<Set<UnifyPair>> fork_res = fork.join();
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writeLog("Join " + new Integer(fork.thNo).toString());
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noOfThread--;
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//noOfThread--; an das Ende von compute verschoben
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add_res.add(fork_res);
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};
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}
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@ -1019,11 +1009,11 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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List<Set<Set<UnifyPair>>> newOderConstraintsOrig = new ArrayList<>(oderConstraints);
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newElemsOrig.add(a);
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/* FORK ANFANG
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/* FORK ANFANG */
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, logFile, log, rekTiefe);
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//forks.add(forkOrig);
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forkOrig.fork();
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FORK ENDE */
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/* FORK ENDE */
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synchronized (this) {
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writeLog("a in " + variance + " "+ a);
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@ -1040,23 +1030,23 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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forks.add(fork);
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fork.fork();
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}
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res = unify2(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, rekTiefe);
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//res = unify2(newElemsOrig, newEqOrig, newOderConstraintsOrig, fc, parallel, rekTiefe);
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/* FORK ANFANG
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/* FORK ANFANG */
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synchronized (this) {
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res = forkOrig.join();
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//Set<Set<UnifyPair>> fork_res = forkOrig.join();
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writeLog("JoinOrig " + new Integer(forkOrig.thNo).toString());
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noOfThread--;
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//noOfThread--; an das Ende von compute verschoben
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//add_res.add(fork_res); //vermutlich falsch
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};
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FORK ENDE */
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/* FORK ENDE */
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for(TypeUnifyTask fork : forks) {
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synchronized (this) {
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Set<Set<UnifyPair>> fork_res = fork.join();
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writeLog("Join " + new Integer(fork.thNo).toString());
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noOfThread--;
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//noOfThread--; an das Ende von compute verschoben
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add_res.add(fork_res);
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};
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}}
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@ -110,6 +110,18 @@ implements IFiniteClosure {
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}
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}
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void testSmaller() {
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UnifyType tq1, tq2, tq3;
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tq1 = new ExtendsType(PlaceholderType.freshPlaceholder());
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List<UnifyType> l1 = new ArrayList<>();
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List<UnifyType> l2 = new ArrayList<>();
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l1.add(tq1);
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tq2 = new ReferenceType("java.util.Vector", new TypeParams(l1));
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l2.add(tq2);
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tq3 = new ReferenceType("java.util.Vector", new TypeParams(l2));
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Set<UnifyType> smaller = smaller(tq3, new HashSet<>());
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}
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/**
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* Returns all types of the finite closure that are subtypes of the argument.
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* @return The set of subtypes of the argument.
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@ -641,8 +653,7 @@ implements IFiniteClosure {
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*/
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public int compare (UnifyType left, UnifyType right, PairOperator pairop) {
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if ((left instanceof ExtendsType && right instanceof ReferenceType)
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|| (right instanceof ExtendsType && left instanceof ReferenceType))
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if (left.getName().equals("Matrix") || right.getName().equals("Matrix"))
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System.out.println("");
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/*
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List<UnifyType> al = new ArrayList<>();
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@ -693,6 +704,13 @@ implements IFiniteClosure {
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HashSet<UnifyPair> hs = new HashSet<>();
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hs.add(up);
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Set<UnifyPair> smallerRes = unifyTask.applyTypeUnificationRules(hs, this);
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if (left.getName().equals("Matrix") || right.getName().equals("Matrix"))
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{try {
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logFile.write("\nsmallerRes: " + smallerRes);//"smallerHash: " + greaterHash.toString());
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logFile.flush();
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}
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catch (IOException e) {
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System.err.println("no LogFile");}}
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//Gleichungen der Form a <./=. Theta oder Theta <./=. a oder a <./=. b sind ok.
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long smallerLen = smallerRes.stream().filter(x -> !(x.getLhsType() instanceof PlaceholderType || x.getRhsType() instanceof PlaceholderType)).count();
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if (smallerLen == 0) return -1;
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@ -702,6 +720,13 @@ implements IFiniteClosure {
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hs = new HashSet<>();
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hs.add(up);
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Set<UnifyPair> greaterRes = unifyTask.applyTypeUnificationRules(hs, this);
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if (left.getName().equals("Matrix") || right.getName().equals("Matrix"))
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{try {
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logFile.write("\ngreaterRes: " + greaterRes);//"smallerHash: " + greaterHash.toString());
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logFile.flush();
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}
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catch (IOException e) {
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System.err.println("no LogFile");}}
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//Gleichungen der Form a <./=. Theta oder Theta <./=. a oder a <./=. b sind ok.
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long greaterLen = greaterRes.stream().filter(x -> !(x.getLhsType() instanceof PlaceholderType || x.getRhsType() instanceof PlaceholderType)).count();
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if (greaterLen == 0) return 1;
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