forked from JavaTX/JavaCompilerCore
modified: ../../../main/java/de/dhbwstuttgart/core/JavaTXCompiler.java
modified: ../../../main/java/de/dhbwstuttgart/typeinference/unify/TypeUnify.java modified: ../../../main/java/de/dhbwstuttgart/typeinference/unify/TypeUnify2Task.java modified: ../../../main/java/de/dhbwstuttgart/typeinference/unify/TypeUnifyTask.java modified: ../../../main/java/de/dhbwstuttgart/typeinference/unify/UnifyResultModel.java zurueckumwandlung von den Unifytypen in UnifyResultModel verlegt.
This commit is contained in:
parent
396efb52de
commit
08d69ce6e3
@ -284,12 +284,13 @@ public class JavaTXCompiler {
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final ConstraintSet<Pair> cons = getConstraints();
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Set<Set<UnifyPair>> results = new HashSet<>();
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UnifyResultModel urm = new UnifyResultModel();
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UnifyResultModel urm = null;
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try {
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FileWriter logFile = new FileWriter(new File(System.getProperty("user.dir")+"/src/test/java/logFiles/"+"log_"+sourceFiles.keySet().iterator().next().getName()));
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IFiniteClosure finiteClosure = UnifyTypeFactory.generateFC(allClasses,logFile);
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System.out.println(finiteClosure);
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urm = new UnifyResultModel(cons, finiteClosure);
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ConstraintSet<UnifyPair> unifyCons = UnifyTypeFactory.convert(cons);
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Function<UnifyPair, UnifyPair> distributeInnerVars =
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@ -401,7 +402,7 @@ public class JavaTXCompiler {
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}
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return ret;
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}).collect(Collectors.toCollection(ArrayList::new));
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unify.unifyAsync(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, cons, urm);
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unify.unifyAsync(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, urm);
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}
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catch (IOException e) {
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System.err.println("kein LogFile");
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@ -538,10 +539,10 @@ public class JavaTXCompiler {
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}).collect(Collectors.toCollection(ArrayList::new));
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if (resultmodel) {
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/* UnifyResultModel Anfang */
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UnifyResultModel urm = new UnifyResultModel();
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UnifyResultModel urm = new UnifyResultModel(cons, finiteClosure);
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UnifyResultListenerImpl li = new UnifyResultListenerImpl();
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urm.addUnifyResultListener(li);
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unify.unifyParallel(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, cons, urm);
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unify.unifyParallel(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, urm);
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System.out.println("RESULT Final: " + li.getResults());
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logFile.write("RES_FINAL: " + li.getResults().toString()+"\n");
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logFile.flush();
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@ -549,8 +550,8 @@ public class JavaTXCompiler {
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}
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/* UnifyResultModel End */
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else {
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Set<Set<UnifyPair>> result = unify.unify(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, cons);
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//Set<Set<UnifyPair>> result = unify.unifyOderConstraints(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, cons);
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Set<Set<UnifyPair>> result = unify.unify(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, new UnifyResultModel(cons, finiteClosure));
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//Set<Set<UnifyPair>> result = unify.unifyOderConstraints(unifyCons.getUndConstraints(), oderConstraints, finiteClosure, logFile, log, new UnifyResultModel(cons, finiteClosure));
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System.out.println("RESULT: " + result);
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logFile.write("RES: " + result.toString()+"\n");
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logFile.flush();
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@ -13,23 +13,56 @@ import de.dhbwstuttgart.typeinference.unify.model.FiniteClosure;
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import de.dhbwstuttgart.typeinference.unify.model.UnifyPair;
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public class TypeUnify {
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public Set<Set<UnifyPair>> unify(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, ConstraintSet<Pair> cons) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, true, logFile, log, 0, new UnifyResultModel(), cons);
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/**
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* unify parallel ohne result modell
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* @param undConstrains
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* @param oderConstraints
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* @param fc
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* @param logFile
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* @param log
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* @param cons
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* @return
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*/
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public Set<Set<UnifyPair>> unify(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, UnifyResultModel ret) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, true, logFile, log, 0, ret);
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ForkJoinPool pool = new ForkJoinPool();
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pool.invoke(unifyTask);
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Set<Set<UnifyPair>> res = unifyTask.join();
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return res;
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}
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public UnifyResultModel unifyAsync(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, ConstraintSet<Pair> cons, UnifyResultModel ret) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, true, logFile, log, 0, ret, cons);
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/**
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* unify asynchron mit Rückgabe UnifyResultModel ohne dass alle results gesammelt sind
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* @param undConstrains
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* @param oderConstraints
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* @param fc
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* @param logFile
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* @param log
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* @param cons
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* @param ret
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* @return
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*/
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public UnifyResultModel unifyAsync(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, UnifyResultModel ret) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, true, logFile, log, 0, ret);
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ForkJoinPool pool = new ForkJoinPool();
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pool.invoke(unifyTask);
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return ret;
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}
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public UnifyResultModel unifyParallel(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, ConstraintSet<Pair> cons, UnifyResultModel ret) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, true, logFile, log, 0, ret, cons);
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/**
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* unify parallel mit Rückgabe UnifyResultModel nachdem alle results gesammelt sind
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* @param undConstrains
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* @param oderConstraints
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* @param fc
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* @param logFile
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* @param log
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* @param cons
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* @param ret
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* @return
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*/
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public UnifyResultModel unifyParallel(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, UnifyResultModel ret) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, true, logFile, log, 0, ret);
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ForkJoinPool pool = new ForkJoinPool();
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pool.invoke(unifyTask);
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Set<Set<UnifyPair>> res = unifyTask.join();
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@ -44,8 +77,18 @@ public class TypeUnify {
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}
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*/
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public Set<Set<UnifyPair>> unifyOderConstraints(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, ConstraintSet<Pair> cons) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, false, logFile, log, 0, new UnifyResultModel(), cons);
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/**
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* unify sequentiell mit oderconstraints
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* @param undConstrains
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* @param oderConstraints
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* @param fc
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* @param logFile
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* @param log
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* @param cons
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* @return
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*/
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public Set<Set<UnifyPair>> unifyOderConstraints(Set<UnifyPair> undConstrains, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, FileWriter logFile, Boolean log, UnifyResultModel ret) {
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TypeUnifyTask unifyTask = new TypeUnifyTask(undConstrains, oderConstraints, fc, false, logFile, log, 0, ret);
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Set<Set<UnifyPair>> res = unifyTask.compute();
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return res;
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}
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@ -15,8 +15,8 @@ public class TypeUnify2Task extends TypeUnifyTask {
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Set<Set<UnifyPair>> setToFlatten;
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public TypeUnify2Task(Set<Set<UnifyPair>> setToFlatten, Set<UnifyPair> eq, List<Set<Set<UnifyPair>>> oderConstraints, Set<UnifyPair> nextSetElement, IFiniteClosure fc, boolean parallel, FileWriter logFile, Boolean log, int rekTiefe, UnifyResultModel urm, ConstraintSet<Pair> cons) {
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super(eq, oderConstraints, fc, parallel, logFile, log, rekTiefe, urm, cons);
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public TypeUnify2Task(Set<Set<UnifyPair>> setToFlatten, Set<UnifyPair> eq, List<Set<Set<UnifyPair>>> oderConstraints, Set<UnifyPair> nextSetElement, IFiniteClosure fc, boolean parallel, FileWriter logFile, Boolean log, int rekTiefe, UnifyResultModel urm) {
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super(eq, oderConstraints, fc, parallel, logFile, log, rekTiefe, urm);
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this.setToFlatten = setToFlatten;
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this.nextSetElement = nextSetElement;
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}
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@ -68,7 +68,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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* Fuer die Threads
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*/
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UnifyResultModel urm;
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ConstraintSet<de.dhbwstuttgart.typeinference.constraints.Pair> cons;
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//ConstraintSet<de.dhbwstuttgart.typeinference.constraints.Pair> cons;
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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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@ -133,7 +133,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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}
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*/
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public TypeUnifyTask(Set<UnifyPair> eq, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, boolean parallel, FileWriter logFile, Boolean log, int rekTiefe, UnifyResultModel urm, ConstraintSet<de.dhbwstuttgart.typeinference.constraints.Pair> cons2) {
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public TypeUnifyTask(Set<UnifyPair> eq, List<Set<Set<UnifyPair>>> oderConstraints, IFiniteClosure fc, boolean parallel, FileWriter logFile, Boolean log, int rekTiefe, UnifyResultModel urm) {
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synchronized (this) {
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this.eq = eq;
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//this.oderConstraints = oderConstraints.stream().map(x -> x.stream().map(y -> new HashSet<>(y)).collect(Collectors.toSet(HashSet::new))).collect(Collectors.toList(ArrayList::new));
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@ -153,16 +153,21 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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this.parallel = parallel;
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this.logFile = logFile;
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this.log = log;
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noOfThread++;
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totalnoOfThread++;
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//writeLog("thNo1 " + thNo);
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thNo = totalnoOfThread;
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writeLog("thNo2 " + thNo);
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try {
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this.logFile = new FileWriter(new File(System.getProperty("user.dir")+"/src/test/java/logFiles/"+"Thread_"+thNo));
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}
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catch (IOException e) {
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System.err.println("log-File nicht vorhanden");
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}
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rules = new RuleSet(logFile);
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this.rekTiefeField = rekTiefe;
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this.urm = urm;
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this.cons = cons2;
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noOfThread++;
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totalnoOfThread++;
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writeLog("thNo1 " + thNo);
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thNo = totalnoOfThread;
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writeLog("thNo2 " + thNo);
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}
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}
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@ -658,10 +663,11 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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//writeLog("vor Subst: " + eqPrime);
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writeLog("vor Subst: " + oderConstraints);
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String ocString = oderConstraints.toString();
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Optional<Set<UnifyPair>> eqPrimePrime = rules.subst(eqPrime, oderConstraints);
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List<Set<Set<UnifyPair>>> newOderConstraints = new ArrayList<>(oderConstraints);
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Optional<Set<UnifyPair>> eqPrimePrime = rules.subst(eqPrime, newOderConstraints);
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Set<Set<UnifyPair>> unifyres1 = null;
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Set<Set<UnifyPair>> unifyres2 = null;
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if (!ocString.equals(oderConstraints.toString())) writeLog("nach Subst: " + oderConstraints);
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if (!ocString.equals(newOderConstraints.toString())) writeLog("nach Subst: " + newOderConstraints);
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//writeLog("nach Subst: " + eqPrimePrime);
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/*
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* Step 6 a) Restart (fork) for pairs where subst was applied
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@ -714,16 +720,17 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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}
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else return x; //wenn nichts veraendert wurde wird x zurueckgegeben
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}).collect(Collectors.toCollection(HashSet::new));
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urm.notify(eqPrimePrimeSetRet.stream().map((unifyPairs ->
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new ResultSet(UnifyTypeFactory.convert(unifyPairs, de.dhbwstuttgart.typeinference.constraints.Pair.generateTPHMap(cons))))).collect(Collectors.toList()));
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urm.notify(eqPrimePrimeSetRet);
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//urm.notify(eqPrimePrimeSetRet.stream().map((unifyPairs ->
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// new ResultSet(UnifyTypeFactory.convert(unifyPairs, de.dhbwstuttgart.typeinference.constraints.Pair.generateTPHMap(cons))))).collect(Collectors.toList()));
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}
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else if(eqPrimePrime.isPresent()) {
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Set<Set<UnifyPair>> unifyres = unifyres1 = unify(eqPrimePrime.get(), oderConstraints, fc, parallel, rekTiefe);
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Set<Set<UnifyPair>> unifyres = unifyres1 = unify(eqPrimePrime.get(), newOderConstraints, fc, parallel, rekTiefe);
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eqPrimePrimeSet.addAll(unifyres);
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}
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else {
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Set<Set<UnifyPair>> unifyres = unifyres2 = unify(eqPrime, oderConstraints, fc, parallel, rekTiefe);
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Set<Set<UnifyPair>> unifyres = unifyres2 = unify(eqPrime, newOderConstraints, fc, parallel, rekTiefe);
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eqPrimePrimeSet.addAll(unifyres);
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@ -935,7 +942,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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newElemsOrig.add(a);
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/* FORK ANFANG */
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, a, fc, parallel, logFile, log, rekTiefe, urm, cons);
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, a, fc, parallel, logFile, log, rekTiefe, urm);
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//forks.add(forkOrig);
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forkOrig.fork();
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/* FORK ENDE */
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@ -953,7 +960,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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Set<Set<UnifyPair>> newElems = new HashSet<>(elems);
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List<Set<Set<UnifyPair>>> newOderConstraints = new ArrayList<>(oderConstraints);
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newElems.add(nSaL);
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TypeUnify2Task fork = new TypeUnify2Task(newElems, newEq, newOderConstraints, nSaL, fc, parallel, logFile, log, rekTiefe, urm, cons);
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TypeUnify2Task fork = new TypeUnify2Task(newElems, newEq, newOderConstraints, nSaL, fc, parallel, logFile, log, rekTiefe, urm);
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forks.add(fork);
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fork.fork();
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}
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@ -961,6 +968,8 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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/* FORK ANFANG */
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synchronized (this) {
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noOfThread--;
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writeLog("wait "+ forkOrig.thNo);
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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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@ -969,6 +978,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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};
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/* FORK ENDE */
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forks.forEach(x -> writeLog("wait: " + x.thNo));
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for(TypeUnify2Task fork : forks) {
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synchronized (this) {
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Set<Set<UnifyPair>> fork_res = fork.join();
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@ -981,7 +991,8 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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aParDef.add(fork.getNextSetElement());
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}
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};
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}
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}
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noOfThread++;
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} else {
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if(parallel && (variance == -1) && noOfThread <= MaxNoOfThreads) {
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Set<TypeUnify2Task> forks = new HashSet<>();
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@ -991,7 +1002,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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newElemsOrig.add(a);
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/* FORK ANFANG */
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, a, fc, parallel, logFile, log, rekTiefe, urm, cons);
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, a, fc, parallel, logFile, log, rekTiefe, urm);
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//forks.add(forkOrig);
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forkOrig.fork();
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/* FORK ENDE */
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@ -1009,7 +1020,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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Set<Set<UnifyPair>> newElems = new HashSet<>(elems);
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List<Set<Set<UnifyPair>>> newOderConstraints = new ArrayList<>(oderConstraints);
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newElems.add(nSaL);
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TypeUnify2Task fork = new TypeUnify2Task(newElems, newEq, newOderConstraints, nSaL, fc, parallel, logFile, log, rekTiefe, urm, cons);
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TypeUnify2Task fork = new TypeUnify2Task(newElems, newEq, newOderConstraints, nSaL, fc, parallel, logFile, log, rekTiefe, urm);
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forks.add(fork);
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fork.fork();
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}
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@ -1017,6 +1028,8 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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/* FORK ANFANG */
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synchronized (this) {
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noOfThread--;
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writeLog("wait "+ forkOrig.thNo);
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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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@ -1025,6 +1038,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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};
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/* FORK ENDE */
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forks.forEach(x -> writeLog("wait: " + x.thNo));
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for(TypeUnify2Task fork : forks) {
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synchronized (this) {
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Set<Set<UnifyPair>> fork_res = fork.join();
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@ -1038,6 +1052,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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}
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};
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}
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noOfThread++;
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} else {
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if(parallel && (variance == 2) && noOfThread <= MaxNoOfThreads) {
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writeLog("var2einstieg");
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@ -1048,7 +1063,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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newElemsOrig.add(a);
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/* FORK ANFANG */
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, a, fc, parallel, logFile, log, rekTiefe, urm, cons);
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TypeUnify2Task forkOrig = new TypeUnify2Task(newElemsOrig, newEqOrig, newOderConstraintsOrig, a, fc, parallel, logFile, log, rekTiefe, urm);
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//forks.add(forkOrig);
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forkOrig.fork();
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/* FORK ENDE */
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@ -1064,7 +1079,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
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Set<Set<UnifyPair>> newElems = new HashSet<>(elems);
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List<Set<Set<UnifyPair>>> newOderConstraints = new ArrayList<>(oderConstraints);
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newElems.add(nSaL);
|
||||
TypeUnify2Task fork = new TypeUnify2Task(newElems, newEq, newOderConstraints, nSaL, fc, parallel, logFile, log, rekTiefe, urm, cons);
|
||||
TypeUnify2Task fork = new TypeUnify2Task(newElems, newEq, newOderConstraints, nSaL, fc, parallel, logFile, log, rekTiefe, urm);
|
||||
forks.add(fork);
|
||||
fork.fork();
|
||||
}
|
||||
@ -1072,6 +1087,8 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
|
||||
|
||||
/* FORK ANFANG */
|
||||
synchronized (this) {
|
||||
noOfThread--;
|
||||
writeLog("wait "+ forkOrig.thNo);
|
||||
res = forkOrig.join();
|
||||
//Set<Set<UnifyPair>> fork_res = forkOrig.join();
|
||||
writeLog("JoinOrig " + new Integer(forkOrig.thNo).toString());
|
||||
@ -1079,7 +1096,7 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
|
||||
//add_res.add(fork_res); //vermutlich falsch
|
||||
};
|
||||
/* FORK ENDE */
|
||||
|
||||
forks.forEach(x -> writeLog("wait: " + x.thNo));
|
||||
for(TypeUnifyTask fork : forks) {
|
||||
synchronized (this) {
|
||||
Set<Set<UnifyPair>> fork_res = fork.join();
|
||||
@ -1087,8 +1104,9 @@ public class TypeUnifyTask extends RecursiveTask<Set<Set<UnifyPair>>> {
|
||||
//noOfThread--; an das Ende von compute verschoben
|
||||
add_res.add(fork_res);
|
||||
};
|
||||
}}
|
||||
else {
|
||||
}
|
||||
noOfThread++;
|
||||
} else {
|
||||
//parallel = false; //Wenn MaxNoOfThreads erreicht ist, sequentiell weiterarbeiten
|
||||
elems.add(a); //PL 2019-01-16 muss das wirklich hin steht schon in Zeile 859 ja braucht man siehe Zeile 859
|
||||
res = unify2(elems, eq, oderConstraints, fc, parallel, rekTiefe);
|
||||
|
@ -1,13 +1,31 @@
|
||||
package de.dhbwstuttgart.typeinference.unify;
|
||||
|
||||
import java.util.ArrayList;
|
||||
import java.util.HashSet;
|
||||
import java.util.List;
|
||||
import java.util.Optional;
|
||||
import java.util.Set;
|
||||
import java.util.stream.Collectors;
|
||||
|
||||
import de.dhbwstuttgart.syntaxtree.factory.UnifyTypeFactory;
|
||||
import de.dhbwstuttgart.typeinference.constraints.ConstraintSet;
|
||||
import de.dhbwstuttgart.typeinference.result.ResultSet;
|
||||
import de.dhbwstuttgart.typeinference.unify.interfaces.IFiniteClosure;
|
||||
import de.dhbwstuttgart.typeinference.unify.model.PairOperator;
|
||||
import de.dhbwstuttgart.typeinference.unify.model.UnifyPair;
|
||||
|
||||
public class UnifyResultModel {
|
||||
|
||||
ConstraintSet<de.dhbwstuttgart.typeinference.constraints.Pair> cons;
|
||||
|
||||
IFiniteClosure fc;
|
||||
|
||||
public UnifyResultModel(ConstraintSet<de.dhbwstuttgart.typeinference.constraints.Pair> cons,
|
||||
IFiniteClosure fc) {
|
||||
this.cons = cons;
|
||||
this.fc = fc;
|
||||
}
|
||||
|
||||
private List<UnifyResultListener> listeners = new ArrayList<>();
|
||||
|
||||
public void addUnifyResultListener(UnifyResultListener listenerToAdd) {
|
||||
@ -18,7 +36,20 @@ public class UnifyResultModel {
|
||||
listeners.remove(listenerToRemove);
|
||||
}
|
||||
|
||||
public void notify(List<ResultSet> newResult) {
|
||||
public void notify(Set<Set<UnifyPair>> eqPrimePrimeSet) {
|
||||
Set<Set<UnifyPair>> eqPrimePrimeSetRet = eqPrimePrimeSet.stream().map(x -> {
|
||||
Optional<Set<UnifyPair>> res = new RuleSet().subst(x.stream().map(y -> {
|
||||
if (y.getPairOp() == PairOperator.SMALLERDOTWC) y.setPairOp(PairOperator.EQUALSDOT);
|
||||
return y; //alle Paare a <.? b erden durch a =. b ersetzt
|
||||
}).collect(Collectors.toCollection(HashSet::new)));
|
||||
if (res.isPresent()) {//wenn subst ein Erg liefert wurde was veraendert
|
||||
return new TypeUnifyTask().applyTypeUnificationRules(res.get(), fc);
|
||||
}
|
||||
else return x; //wenn nichts veraendert wurde wird x zurueckgegeben
|
||||
}).collect(Collectors.toCollection(HashSet::new));
|
||||
List<ResultSet> newResult = eqPrimePrimeSetRet.stream().map(unifyPairs ->
|
||||
new ResultSet(UnifyTypeFactory.convert(unifyPairs, de.dhbwstuttgart.typeinference.constraints.Pair.generateTPHMap(cons))))
|
||||
.collect(Collectors.toList());
|
||||
UnifyResultEvent evt = new UnifyResultEvent(newResult);
|
||||
|
||||
for (UnifyResultListener listener : listeners) {
|
||||
|
@ -1,6 +1,6 @@
|
||||
import java.util.Vector;
|
||||
import java.lang.Integer;
|
||||
import java.lang.Byte;
|
||||
//import java.lang.Byte;
|
||||
import java.lang.Boolean;
|
||||
|
||||
public class MatrixOP extends Vector<Vector<Integer>> {
|
||||
|
Loading…
Reference in New Issue
Block a user