public static final String INTERLOC = "INTERLOC";
+ public static final String PCLOC = "PCLOC";
+
+ public static final String RLOC = "RLOC";
+
public static final Descriptor GLOBALDESC = new NameDescriptor(GLOBALLOC);
public static final Descriptor TOPDESC = new NameDescriptor(TOPLOC);
+ public static final Descriptor RETURNLOC = new NameDescriptor(RLOC);
+
public static String newline = System.getProperty("line.separator");
LocationInfo curMethodInfo;
public void inference() {
- // 1) construct value flow graph
+ // construct value flow graph
constructFlowGraph();
assignCompositeLocation();
- // constructGlobalFlowGraph();
-
- System.exit(0);
+ // System.exit(0);
constructHierarchyGraph();
debug_writeHierarchyDotFiles();
+ // calculate RETURNLOC,PCLOC
+ calculateExtraLocations();
+
simplifyHierarchyGraph();
debug_writeSimpleHierarchyDotFiles();
debug_writeLattices();
- generateMethodSummary();
-
- System.exit(0);
-
- // 2) construct lattices
- inferLattices();
-
- // simplifyLattices();
+ updateCompositeLocationAssignments();
- // 3) check properties
- checkLattices();
-
- // calculate RETURNLOC,PCLOC
- calculateExtraLocations();
-
- debug_writeLatticeDotFile();
+ generateMethodSummary();
- // 4) generate annotated source codes
generateAnnoatedCode();
+ System.exit(0);
+
}
public Map<NTuple<Descriptor>, NTuple<Descriptor>> getMapCallerArgToCalleeParam(
public void addMapCallerArgToCalleeParam(MethodInvokeNode min, NTuple<Descriptor> callerArg,
NTuple<Descriptor> calleeParam) {
- // System.out.println("min=" + min + " arg=" + callerArg + " param=" + calleeParam);
getMapCallerArgToCalleeParam(min).put(callerArg, calleeParam);
}
private void assignCompositeLocation() {
calculateGlobalValueFlowCompositeLocation();
translateCompositeLocationAssignmentToFlowGraph();
- _debug_printGraph();
}
private void translateCompositeLocationAssignmentToFlowGraph() {
-
MethodDescriptor methodEventLoopDesc = ssjava.getMethodContainingSSJavaLoop();
translateCompositeLocationAssignmentToFlowGraph(methodEventLoopDesc);
+ _debug_printGraph();
+ }
+
+ private void updateCompositeLocationAssignments() {
+
+ LinkedList<MethodDescriptor> methodDescList =
+ (LinkedList<MethodDescriptor>) toanalyze_methodDescList.clone();
+
+ while (!methodDescList.isEmpty()) {
+ MethodDescriptor md = methodDescList.removeLast();
+
+ System.out.println("\n#updateCompositeLocationAssignments=" + md);
+
+ FlowGraph flowGraph = getFlowGraph(md);
+
+ MethodSummary methodSummary = getMethodSummary(md);
+
+ Set<FlowNode> nodeSet = flowGraph.getNodeSet();
+ for (Iterator iterator = nodeSet.iterator(); iterator.hasNext();) {
+ FlowNode node = (FlowNode) iterator.next();
+ System.out.println("-node=" + node + " node.getDescTuple=" + node.getDescTuple());
+ if (node.getCompositeLocation() != null) {
+ CompositeLocation compLoc = node.getCompositeLocation();
+ CompositeLocation updatedCompLoc = updateCompositeLocation(compLoc);
+ node.setCompositeLocation(updatedCompLoc);
+ System.out.println("---updatedCompLoc1=" + updatedCompLoc);
+ } else {
+ NTuple<Descriptor> descTuple = node.getDescTuple();
+ CompositeLocation compLoc = convertToCompositeLocation(md, descTuple);
+ compLoc = updateCompositeLocation(compLoc);
+ node.setCompositeLocation(compLoc);
+ System.out.println("---updatedCompLoc2=" + compLoc);
+ }
+
+ if (node.isDeclaratonNode()) {
+ Descriptor localVarDesc = node.getDescTuple().get(0);
+ methodSummary.addMapVarNameToInferCompLoc(localVarDesc, node.getCompositeLocation());
+ }
+ }
+
+ // update PCLOC and RETURNLOC if they have a composite location assignment
+ if (methodSummary.getRETURNLoc() != null) {
+ methodSummary.setRETURNLoc(updateCompositeLocation(methodSummary.getRETURNLoc()));
+ }
+ if (methodSummary.getPCLoc() != null) {
+ methodSummary.setPCLoc(updateCompositeLocation(methodSummary.getPCLoc()));
+ }
+
+ }
}
+ private CompositeLocation updateCompositeLocation(CompositeLocation compLoc) {
+ CompositeLocation updatedCompLoc = new CompositeLocation();
+ for (int i = 0; i < compLoc.getSize(); i++) {
+ Location loc = compLoc.get(i);
+ String nodeIdentifier = loc.getLocIdentifier();
+ Descriptor enclosingDesc = loc.getDescriptor();
+ String locName;
+ if (!enclosingDesc.equals(GLOBALDESC)) {
+ LocationSummary locSummary = getLocationSummary(enclosingDesc);
+ locName = locSummary.getLocationName(nodeIdentifier);
+ } else {
+ locName = nodeIdentifier;
+ }
+ Location updatedLoc = new Location(enclosingDesc, locName);
+ updatedCompLoc.addLocation(updatedLoc);
+ }
+
+ return updatedCompLoc;
+ }
+
private void translateCompositeLocationAssignmentToFlowGraph(MethodDescriptor mdCaller) {
System.out.println("\n#translateCompositeLocationAssignmentToFlowGraph=" + mdCaller);
FlowGraph callerFlowGraph = getFlowGraph(mdCaller);
Map<Location, CompositeLocation> callerMapLocToCompLoc =
callerGlobalFlowGraph.getMapLocationToInferCompositeLocation();
+ System.out.println("---callerMapLocToCompLoc=" + callerMapLocToCompLoc);
Set<Location> methodLocSet = callerMapLocToCompLoc.keySet();
for (Iterator iterator = methodLocSet.iterator(); iterator.hasNext();) {
Location methodLoc = (Location) iterator.next();
Set<MethodDescriptor> calleeSet = new HashSet<MethodDescriptor>();
for (Iterator iterator = minSet.iterator(); iterator.hasNext();) {
MethodInvokeNode min = (MethodInvokeNode) iterator.next();
- // need to translate a composite location that is started with the base tuple of 'min'.
+ // need to translate a composite location that is started with the base
+ // tuple of 'min'.
translateMapLocationToInferCompositeLocationToCalleeGraph(callerGlobalFlowGraph, min);
calleeSet.add(min.getMethod());
}
FlowGraph calleeFlowGraph = getFlowGraph(mdCallee);
GlobalFlowGraph calleeGlobalGraph = getSubGlobalFlowGraph(mdCallee);
- NTuple<Location> baseLocTuple =
- translateToLocTuple(mdCaller, mapMethodInvokeNodeToBaseTuple.get(min));
+ NTuple<Location> baseLocTuple = null;
+ if (mapMethodInvokeNodeToBaseTuple.containsKey(min)) {
+ baseLocTuple = translateToLocTuple(mdCaller, mapMethodInvokeNodeToBaseTuple.get(min));
+ }
- System.out.println("-translate caller infer composite loc to callee=" + mdCallee);
+ // System.out.println("\n-translate caller infer composite loc to callee=" + mdCallee
+ // + " baseLocTuple=" + baseLocTuple);
Set<Location> keySet = callerMapLocToCompLoc.keySet();
for (Iterator iterator = keySet.iterator(); iterator.hasNext();) {
Location key = (Location) iterator.next();
CompositeLocation callerCompLoc = callerMapLocToCompLoc.get(key);
- if (!key.getDescriptor().equals(mdCaller)
- && callerCompLoc.getTuple().startsWith(baseLocTuple)) {
- // need to translate to the callee side
- // System.out.println("need to translate callerCompLoc=" + callerCompLoc +
- // " with baseTuple="
- // + baseLocTuple);
- // TODO
- CompositeLocation newCalleeCompLoc =
- translateCompositeLocationToCallee(callerCompLoc, baseLocTuple, mdCallee);
- calleeGlobalGraph.addMapLocationToInferCompositeLocation(key, newCalleeCompLoc);
- System.out.println("---callee loc=" + key + " newCalleeCompLoc=" + newCalleeCompLoc);
+ if (!key.getDescriptor().equals(mdCaller)) {
+
+ CompositeLocation newCalleeCompLoc;
+ if (baseLocTuple != null && callerCompLoc.getTuple().startsWith(baseLocTuple)) {
+ // System.out.println("---need to translate callerCompLoc=" + callerCompLoc
+ // + " with baseTuple=" + baseLocTuple);
+ newCalleeCompLoc =
+ translateCompositeLocationToCallee(callerCompLoc, baseLocTuple, mdCallee);
+
+ calleeGlobalGraph.addMapLocationToInferCompositeLocation(key, newCalleeCompLoc);
+ // System.out.println("---callee loc=" + key + " newCalleeCompLoc=" + newCalleeCompLoc);
+ } else {
+ // check if it is the global access
+ Location compLocFirstElement = callerCompLoc.getTuple().get(0);
+ if (compLocFirstElement.getDescriptor().equals(mdCallee)
+ && compLocFirstElement.getLocDescriptor().equals(GLOBALDESC)) {
+
+ newCalleeCompLoc = new CompositeLocation();
+ Location newMethodLoc = new Location(mdCallee, GLOBALDESC);
+
+ newCalleeCompLoc.addLocation(newMethodLoc);
+ for (int i = 1; i < callerCompLoc.getSize(); i++) {
+ newCalleeCompLoc.addLocation(callerCompLoc.get(i));
+ }
+ calleeGlobalGraph.addMapLocationToInferCompositeLocation(key, newCalleeCompLoc);
+
+ }
+
+ }
+
}
}
// If the location of an argument has a composite location
// need to assign a proper composite location to the corresponding callee parameter
- System.out.println("-translate arg composite location to callee param:");
+ System.out.println("\n-translate arg composite location to callee param. min="
+ + min.printNode(0));
Map<Integer, NTuple<Descriptor>> mapIdxToArgTuple = mapMethodInvokeNodeToArgIdxMap.get(min);
Set<Integer> idxSet = mapIdxToArgTuple.keySet();
for (Iterator iterator = idxSet.iterator(); iterator.hasNext();) {
}
NTuple<Descriptor> argTuple = mapIdxToArgTuple.get(idx);
+ if (argTuple.size() > 0) {
+ // check if an arg tuple has been already assigned to a composite location
+ NTuple<Location> argLocTuple = translateToLocTuple(mdCaller, argTuple);
+ Location argLocalLoc = argLocTuple.get(0);
- // check if an arg tuple has been already assigned to a composite location
- NTuple<Location> argLocTuple = translateToLocTuple(mdCaller, argTuple);
- Location argLocalLoc = argLocTuple.get(0);
+ // if (!isPrimitiveType(argTuple)) {
+ if (callerMapLocToCompLoc.containsKey(argLocalLoc)) {
- // if (!isPrimitiveType(argTuple)) {
- if (callerMapLocToCompLoc.containsKey(argLocalLoc)) {
+ CompositeLocation callerCompLoc = callerMapLocToCompLoc.get(argLocalLoc);
+ for (int i = 1; i < argLocTuple.size(); i++) {
+ callerCompLoc.addLocation(argLocTuple.get(i));
+ }
- CompositeLocation callerCompLoc = callerMapLocToCompLoc.get(argLocalLoc);
- for (int i = 1; i < argLocTuple.size(); i++) {
- callerCompLoc.addLocation(argLocTuple.get(i));
- }
+ if (baseLocTuple != null && callerCompLoc.getTuple().startsWith(baseLocTuple)) {
- if (callerCompLoc.getTuple().startsWith(baseLocTuple)) {
+ FlowNode calleeParamFlowNode = calleeFlowGraph.getParamFlowNode(idx);
+ NTuple<Descriptor> calleeParamDescTuple = calleeParamFlowNode.getDescTuple();
+ NTuple<Location> calleeParamLocTuple =
+ translateToLocTuple(mdCallee, calleeParamDescTuple);
- FlowNode calleeParamFlowNode = calleeFlowGraph.getParamFlowNode(idx);
- NTuple<Descriptor> calleeParamDescTuple = calleeParamFlowNode.getDescTuple();
- NTuple<Location> calleeParamLocTuple =
- translateToLocTuple(mdCallee, calleeParamDescTuple);
+ System.out.println("---need to translate callerCompLoc=" + callerCompLoc
+ + " with baseTuple=" + baseLocTuple + " calleeParamLocTuple="
+ + calleeParamLocTuple);
- CompositeLocation newCalleeCompLoc =
- translateCompositeLocationToCallee(callerCompLoc, baseLocTuple, mdCallee);
+ CompositeLocation newCalleeCompLoc =
+ translateCompositeLocationToCallee(callerCompLoc, baseLocTuple, mdCallee);
- calleeGlobalGraph.addMapLocationToInferCompositeLocation(calleeParamLocTuple.get(0),
- newCalleeCompLoc);
+ calleeGlobalGraph.addMapLocationToInferCompositeLocation(calleeParamLocTuple.get(0),
+ newCalleeCompLoc);
- System.out.println("###need to assign composite location to=" + calleeParamDescTuple
- + " with baseTuple=" + baseLocTuple);
- System.out.println("---newCalleeCompLoc=" + newCalleeCompLoc);
- }
+ System.out.println("---callee loc=" + calleeParamLocTuple.get(0)
+ + " newCalleeCompLoc=" + newCalleeCompLoc);
+ // System.out.println("###need to assign composite location to=" + calleeParamDescTuple
+ // + " with baseTuple=" + baseLocTuple);
+ }
+
+ }
}
}
CompositeLocation newCalleeCompLoc = new CompositeLocation();
- // replace the last element of the caller compLoc with the 'this' location of the callee
- for (int i = 0; i < baseLocTuple.size() - 1; i++) {
- newCalleeCompLoc.addLocation(baseLocTuple.get(i));
- }
-
Location calleeThisLoc = new Location(mdCallee, mdCallee.getThis());
newCalleeCompLoc.addLocation(calleeThisLoc);
+ // remove the base tuple from the caller
+ // ex; In the method invoation foo.bar.methodA(), the callee will have the composite location
+ // ,which is relative to the 'this' variable, <THIS,...>
for (int i = baseLocTuple.size(); i < callerCompLoc.getSize(); i++) {
newCalleeCompLoc.addLocation(callerCompLoc.get(i));
}
}
- private void constructGlobalFlowGraph() {
-
- System.out.println("");
- LinkedList<MethodDescriptor> methodDescList =
- (LinkedList<MethodDescriptor>) toanalyze_methodDescList.clone();
-
- System.out.println("@@@methodDescList=" + methodDescList);
- // System.exit(0);
-
- while (!methodDescList.isEmpty()) {
- MethodDescriptor md = methodDescList.removeLast();
- if (state.SSJAVADEBUG) {
- System.out.println();
- System.out.println("SSJAVA: Constructing a global flow graph: " + md);
-
- FlowGraph flowGraph = getFlowGraph(md);
- FlowGraph subGlobalFlowGraph = flowGraph.clone();
-
- // mapMethodDescriptorToSubGlobalFlowGraph.put(md, subGlobalFlowGraph);
-
- // addValueFlowsFromCalleeSubGlobalFlowGraph(md, subGlobalFlowGraph);
-
- // try {
- // subGlobalFlowGraph.writeGraph("_SUBGLOBAL");
- // } catch (IOException e) {
- // e.printStackTrace();
- // }
- // FlowGraph fg = new FlowGraph(md, mapParamDescToIdx);
- // mapMethodDescriptorToFlowGraph.put(md, fg);
- // analyzeMethodBody(md.getClassDesc(), md);
- }
-
- }
-
- // DEBUG: write a global flow graph
- MethodDescriptor mdContainingSSJavaLoop = ssjava.getMethodContainingSSJavaLoop();
- // FlowGraph globalFlowGraph = getSubGlobalFlowGraph(mdContainingSSJavaLoop);
- // System.out.println("GLOBAL NODE SET=" + globalFlowGraph.getNodeSet());
- // assignCompositeLocation(globalFlowGraph);
- // try {
- // globalFlowGraph.writeGraph("_GLOBAL");
- // } catch (IOException e) {
- // e.printStackTrace();
- // }
- // _debug_printGraph();
-
- }
-
private void calculateGlobalValueFlowCompositeLocation() {
System.out.println("SSJAVA: Calculate composite locations in the global value flow graph");
MethodDescriptor methodDescEventLoop = ssjava.getMethodContainingSSJavaLoop();
GlobalFlowGraph globalFlowGraph = getSubGlobalFlowGraph(methodDescEventLoop);
- Set<NTuple<Location>> prefixSet = new HashSet<NTuple<Location>>();
+ Set<Location> calculatedPrefixSet = new HashSet<Location>();
Set<GlobalFlowNode> nodeSet = globalFlowGraph.getNodeSet();
next: for (Iterator iterator = nodeSet.iterator(); iterator.hasNext();) {
GlobalFlowNode node = (GlobalFlowNode) iterator.next();
- Set<GlobalFlowNode> incomingNodeSet = globalFlowGraph.getIncomingNodeSet(node);
+
+ System.out.println("-GlobalFlowNode=" + node);
+ Location prefixLoc = node.getLocTuple().get(0);
+
+ if (calculatedPrefixSet.contains(prefixLoc)) {
+ // the prefix loc has been already assigned to a composite location
+ continue;
+ }
+
+ calculatedPrefixSet.add(prefixLoc);
+
+ // Set<GlobalFlowNode> incomingNodeSet = globalFlowGraph.getIncomingNodeSet(node);
List<NTuple<Location>> prefixList = calculatePrefixList(globalFlowGraph, node);
- Set<GlobalFlowNode> reachNodeSet = globalFlowGraph.getReachableNodeSetFrom(node);
- // System.out.println("node=" + node + " inNodeSet=" + incomingNodeSet
- // + " reachableNodeSet=" + reachNodeSet);
+ Set<GlobalFlowNode> reachableNodeSet =
+ globalFlowGraph.getReachableNodeSetByPrefix(node.getLocTuple().get(0));
+ // Set<GlobalFlowNode> reachNodeSet = globalFlowGraph.getReachableNodeSetFrom(node);
+
+ // System.out.println("node=" + node + " prefixList=" + prefixList + " reachableNodeSet="
+ // + reachableNodeSet);
for (int i = 0; i < prefixList.size(); i++) {
NTuple<Location> curPrefix = prefixList.get(i);
Set<NTuple<Location>> reachableCommonPrefixSet = new HashSet<NTuple<Location>>();
- for (Iterator iterator2 = reachNodeSet.iterator(); iterator2.hasNext();) {
+ for (Iterator iterator2 = reachableNodeSet.iterator(); iterator2.hasNext();) {
GlobalFlowNode reachNode = (GlobalFlowNode) iterator2.next();
if (reachNode.getLocTuple().startsWith(curPrefix)) {
reachableCommonPrefixSet.add(reachNode.getLocTuple());
}
if (!reachableCommonPrefixSet.isEmpty()) {
- CompositeLocation newCompLoc = generateCompositeLocation(curPrefix);
- System.out.println("NEED TO ASSIGN COMP LOC TO " + node + " with prefix=" + curPrefix);
- System.out.println("- newCompLoc=" + newCompLoc);
- Location targetLocalLoc = node.getLocTuple().get(0);
- globalFlowGraph.addMapLocationToInferCompositeLocation(targetLocalLoc, newCompLoc);
+ MethodDescriptor curPrefixFirstElementMethodDesc =
+ (MethodDescriptor) curPrefix.get(0).getDescriptor();
+
+ MethodDescriptor nodePrefixLocFirstElementMethodDesc =
+ (MethodDescriptor) prefixLoc.getDescriptor();
+
+ if (curPrefixFirstElementMethodDesc.equals(nodePrefixLocFirstElementMethodDesc)
+ || isTransitivelyCalledFrom(nodePrefixLocFirstElementMethodDesc,
+ curPrefixFirstElementMethodDesc)) {
+
+ // TODO
+ // if (!node.getLocTuple().startsWith(curPrefix.get(0))) {
+
+ Location curPrefixLocalLoc = curPrefix.get(0);
+ if (globalFlowGraph.mapLocationToInferCompositeLocation.containsKey(curPrefixLocalLoc)) {
+ // in this case, the local variable of the current prefix has already got a composite
+ // location
+ // so we just ignore the current composite location.
+
+ // System.out.println("HERE WE DO NOT ASSIGN A COMPOSITE LOCATION TO =" + node
+ // + " DUE TO " + curPrefix);
+
+ continue next;
+ }
+
+ Location targetLocalLoc = node.getLocTuple().get(0);
+ // CompositeLocation curCompLoc = globalFlowGraph.getCompositeLocation(targetLocalLoc);
+ // if ((curPrefix.size() + 1) > curCompLoc.getSize()) {
+
+ CompositeLocation newCompLoc = generateCompositeLocation(curPrefix);
+ System.out.println("NEED TO ASSIGN COMP LOC TO " + node + " with prefix=" + curPrefix);
+ System.out.println("- newCompLoc=" + newCompLoc);
+ globalFlowGraph.addMapLocationToInferCompositeLocation(targetLocalLoc, newCompLoc);
+ // }
+
+ continue next;
+ // }
+
+ }
- continue next;
}
}
}
- // Set<GlobalFlowNode> inNodeSet = graph.getIncomingNodeSetWithPrefix(prefix);
+ // Set<GlobalFlowNode> inNodeSet =
+ // graph.getIncomingNodeSetWithPrefix(prefix);
// System.out.println("inNodeSet=" + inNodeSet + " from=" + node);
}
private List<NTuple<Location>> calculatePrefixList(GlobalFlowGraph graph, GlobalFlowNode node) {
- System.out.println("\n##### calculatePrefixList=" + node);
+ System.out.println("\n##### calculatePrefixList node=" + node);
+
+ MethodDescriptor md = graph.getMethodDescriptor();
- Set<GlobalFlowNode> incomingNodeSet = graph.getIncomingNodeSet(node);
+ Set<GlobalFlowNode> incomingNodeSetPrefix =
+ graph.getIncomingNodeSetByPrefix(node.getLocTuple().get(0));
+ // System.out.println("incomingNodeSetPrefix=" + incomingNodeSetPrefix);
+ //
+ // Set<GlobalFlowNode> reachableNodeSetPrefix =
+ // graph.getReachableNodeSetByPrefix(node.getLocTuple().get(0));
+ // System.out.println("reachableNodeSetPrefix=" + reachableNodeSetPrefix);
List<NTuple<Location>> prefixList = new ArrayList<NTuple<Location>>();
- for (Iterator iterator = incomingNodeSet.iterator(); iterator.hasNext();) {
+ for (Iterator iterator = incomingNodeSetPrefix.iterator(); iterator.hasNext();) {
GlobalFlowNode inNode = (GlobalFlowNode) iterator.next();
NTuple<Location> inNodeTuple = inNode.getLocTuple();
}
});
return prefixList;
+
+ // List<NTuple<Location>> prefixList = new ArrayList<NTuple<Location>>();
+ //
+ // for (Iterator iterator = incomingNodeSet.iterator(); iterator.hasNext();) {
+ // GlobalFlowNode inNode = (GlobalFlowNode) iterator.next();
+ // NTuple<Location> inNodeTuple = inNode.getLocTuple();
+ //
+ // for (int i = 1; i < inNodeTuple.size(); i++) {
+ // NTuple<Location> prefix = inNodeTuple.subList(0, i);
+ // if (!prefixList.contains(prefix)) {
+ // prefixList.add(prefix);
+ // }
+ // }
+ // }
+ //
+ // Collections.sort(prefixList, new Comparator<NTuple<Location>>() {
+ // public int compare(NTuple<Location> arg0, NTuple<Location> arg1) {
+ // int s0 = arg0.size();
+ // int s1 = arg1.size();
+ // if (s0 > s1) {
+ // return -1;
+ // } else if (s0 == s1) {
+ // return 0;
+ // } else {
+ // return 1;
+ // }
+ // }
+ // });
+ // return prefixList;
}
private GlobalFlowGraph constructSubGlobalFlowGraph(FlowGraph flowGraph) {
NTuple<Descriptor> srcDescTuple = edge.getInitTuple();
NTuple<Descriptor> dstDescTuple = edge.getEndTuple();
- // here only keep the first element(method location) of the descriptor tuple
+ // here only keep the first element(method location) of the descriptor
+ // tuple
NTuple<Location> srcLocTuple = translateToLocTuple(md, srcDescTuple);
// Location srcMethodLoc = srcLocTuple.get(0);
// Descriptor srcVarDesc = srcMethodLoc.getLocDescriptor();
- // // if (flowGraph.isParamDesc(srcVarDesc) && (!srcVarDesc.equals(md.getThis()))) {
+ // // if (flowGraph.isParamDesc(srcVarDesc) &&
+ // (!srcVarDesc.equals(md.getThis()))) {
// if (!srcVarDesc.equals(md.getThis())) {
// srcLocTuple = new NTuple<Location>();
// Location loc = new Location(md, srcVarDesc);
NTuple<Location> locTuple = new NTuple<Location>();
Descriptor enclosingDesc = md;
- System.out.println("md=" + md + " descTuple=" + descTuple);
+ // System.out.println("md=" + md + " descTuple=" + descTuple);
for (int i = 0; i < descTuple.size(); i++) {
Descriptor desc = descTuple.get(i);
private void propagateValueFlowsToCallerFromSubGlobalFlowGraph(MethodInvokeNode min,
MethodDescriptor mdCaller, MethodDescriptor possibleMdCallee) {
+ System.out.println("propagateValueFlowsToCallerFromSubGlobalFlowGraph=" + min.printNode(0)
+ + " by caller=" + mdCaller);
FlowGraph calleeFlowGraph = getFlowGraph(possibleMdCallee);
Map<Integer, NTuple<Descriptor>> mapIdxToArg = mapMethodInvokeNodeToArgIdxMap.get(min);
+ System.out.println("mapMethodInvokeNodeToArgIdxMap.get(min)="
+ + mapMethodInvokeNodeToArgIdxMap.get(min));
Set<Integer> keySet = mapIdxToArg.keySet();
for (Iterator iterator = keySet.iterator(); iterator.hasNext();) {
Integer idx = (Integer) iterator.next();
NTuple<Descriptor> argDescTuple = mapIdxToArg.get(idx);
- NTuple<Location> argLocTuple = translateToLocTuple(mdCaller, argDescTuple);
+ if (argDescTuple.size() > 0) {
+ NTuple<Location> argLocTuple = translateToLocTuple(mdCaller, argDescTuple);
+ NTuple<Descriptor> paramDescTuple = calleeFlowGraph.getParamFlowNode(idx).getDescTuple();
+ NTuple<Location> paramLocTuple = translateToLocTuple(possibleMdCallee, paramDescTuple);
+ addMapCallerArgToCalleeParam(min, argDescTuple, paramDescTuple);
+ }
- NTuple<Descriptor> paramDescTuple = calleeFlowGraph.getParamFlowNode(idx).getDescTuple();
- NTuple<Location> paramLocTuple = translateToLocTuple(possibleMdCallee, paramDescTuple);
- addMapCallerArgToCalleeParam(min, argDescTuple, paramDescTuple);
}
NTuple<Descriptor> baseTuple = mapMethodInvokeNodeToBaseTuple.get(min);
GlobalFlowGraph calleeSubGlobalGraph = getSubGlobalFlowGraph(possibleMdCallee);
Set<GlobalFlowNode> calleeNodeSet = calleeSubGlobalGraph.getNodeSet();
+ System.out.println("#calleeNodeSet=" + calleeNodeSet);
for (Iterator iterator = calleeNodeSet.iterator(); iterator.hasNext();) {
GlobalFlowNode calleeNode = (GlobalFlowNode) iterator.next();
addValueFlowFromCalleeNode(min, mdCaller, possibleMdCallee, calleeNode);
// NTuple<Location> paramLocTuple =
// translateToLocTuple(possibleMdCallee, paramNode.getCurrentDescTuple());
//
- // GlobalFlowNode globalParamNode = calleeSubGlobalGraph.getFlowNode(paramLocTuple);
+ // GlobalFlowNode globalParamNode =
+ // calleeSubGlobalGraph.getFlowNode(paramLocTuple);
//
- // NTuple<Descriptor> argTuple = mapMethodInvokeNodeToArgIdxMap.get(min).get(idx);
+ // NTuple<Descriptor> argTuple =
+ // mapMethodInvokeNodeToArgIdxMap.get(min).get(idx);
//
// NTuple<Location> argLocTuple = translateToLocTuple(mdCaller, argTuple);
//
- // System.out.println("argTupleSet=" + argLocTuple + " param=" + paramLocTuple);
- // // here, it adds all value flows reachable from the paramNode in the callee's flow graph
+ // System.out.println("argTupleSet=" + argLocTuple + " param=" +
+ // paramLocTuple);
+ // // here, it adds all value flows reachable from the paramNode in the
+ // callee's flow graph
//
- // addValueFlowsFromCalleeParam(mdCaller, argLocTuple, baseLocTuple, possibleMdCallee,
+ // addValueFlowsFromCalleeParam(mdCaller, argLocTuple, baseLocTuple,
+ // possibleMdCallee,
// globalParamNode);
// }
//
// // TODO
// // FlowGraph callerSubGlobalGraph = getSubGlobalFlowGraph(mdCaller);
- // // FlowGraph calleeSubGlobalGraph = getSubGlobalFlowGraph(possibleMdCallee);
+ // // FlowGraph calleeSubGlobalGraph =
+ // getSubGlobalFlowGraph(possibleMdCallee);
// //
// // int numParam = calleeSubGlobalGraph.getNumParameters();
// // for (int idx = 0; idx < numParam; idx++) {
// // FlowNode paramNode = calleeSubGlobalGraph.getParamFlowNode(idx);
- // // NTuple<Descriptor> argTuple = mapMethodInvokeNodeToArgIdxMap.get(min).get(idx);
- // // System.out.println("argTupleSet=" + argTuple + " param=" + paramNode);
- // // // here, it adds all value flows reachable from the paramNode in the callee's flow graph
- // // addValueFlowsFromCalleeParam(min, calleeSubGlobalGraph, paramNode, callerSubGlobalGraph,
+ // // NTuple<Descriptor> argTuple =
+ // mapMethodInvokeNodeToArgIdxMap.get(min).get(idx);
+ // // System.out.println("argTupleSet=" + argTuple + " param=" +
+ // paramNode);
+ // // // here, it adds all value flows reachable from the paramNode in the
+ // callee's flow graph
+ // // addValueFlowsFromCalleeParam(min, calleeSubGlobalGraph, paramNode,
+ // callerSubGlobalGraph,
// // argTuple, baseTuple);
// // }
GlobalFlowGraph calleeSubGlobalGraph = getSubGlobalFlowGraph(mdCallee);
GlobalFlowGraph callerSubGlobalGraph = getSubGlobalFlowGraph(mdCaller);
- NTuple<Location> srcNodeLocTuple =
+ NTuple<Location> callerSrcNodeLocTuple =
translateToCallerLocTuple(min, mdCallee, mdCaller, calleeSrcNode.getLocTuple());
- Set<GlobalFlowNode> outNodeSet = calleeSubGlobalGraph.getOutNodeSet(calleeSrcNode);
+ if (callerSrcNodeLocTuple != null) {
+ Set<GlobalFlowNode> outNodeSet = calleeSubGlobalGraph.getOutNodeSet(calleeSrcNode);
- for (Iterator iterator = outNodeSet.iterator(); iterator.hasNext();) {
- GlobalFlowNode outNode = (GlobalFlowNode) iterator.next();
- NTuple<Location> dstNodeLocTuple =
- translateToCallerLocTuple(min, mdCallee, mdCaller, outNode.getLocTuple());
- callerSubGlobalGraph.addValueFlowEdge(srcNodeLocTuple, dstNodeLocTuple);
+ for (Iterator iterator = outNodeSet.iterator(); iterator.hasNext();) {
+ GlobalFlowNode outNode = (GlobalFlowNode) iterator.next();
+ NTuple<Location> callerDstNodeLocTuple =
+ translateToCallerLocTuple(min, mdCallee, mdCaller, outNode.getLocTuple());
+ if (callerDstNodeLocTuple != null) {
+ callerSubGlobalGraph.addValueFlowEdge(callerSrcNodeLocTuple, callerDstNodeLocTuple);
+ }
+ }
}
}
private NTuple<Location> translateToCallerLocTuple(MethodInvokeNode min,
MethodDescriptor mdCallee, MethodDescriptor mdCaller, NTuple<Location> nodeLocTuple) {
+ // this method will return the same nodeLocTuple if the corresponding argument is literal
+ // value.
FlowGraph calleeFlowGraph = getFlowGraph(mdCallee);
NTuple<Descriptor> nodeDescTuple = translateToDescTuple(nodeLocTuple);
-
if (calleeFlowGraph.isParameter(nodeDescTuple)) {
int paramIdx = calleeFlowGraph.getParamIdx(nodeDescTuple);
NTuple<Descriptor> argDescTuple = mapMethodInvokeNodeToArgIdxMap.get(min).get(paramIdx);
+
+ if (argDescTuple.size() == 0) {
+ // argument is literal
+ return nodeLocTuple.clone();
+ }
NTuple<Location> argLocTuple = translateToLocTuple(mdCaller, argDescTuple);
NTuple<Location> callerLocTuple = new NTuple<Location>();
}
return callerLocTuple;
} else {
- return nodeLocTuple;
+ return nodeLocTuple.clone();
}
}
// curNodeLocTuple = translateToCaller(argLocTuple, curNodeLocTuple);
// }
//
- // Set<GlobalFlowNode> outNodeSet = calleeSubGlobalGraph.getOutNodeSet(calleeCurNode);
+ // Set<GlobalFlowNode> outNodeSet =
+ // calleeSubGlobalGraph.getOutNodeSet(calleeCurNode);
// for (Iterator iterator = outNodeSet.iterator(); iterator.hasNext();) {
// GlobalFlowNode outNode = (GlobalFlowNode) iterator.next();
//
// // destination node is started with 'parameter'
// // need to translate it in terms of the caller's a node
// srcDescTuple =
- // translateToCaller(min, calleeSubGlobalGraph.getParamIdx(srcDescTuple), srcDescTuple);
+ // translateToCaller(min, calleeSubGlobalGraph.getParamIdx(srcDescTuple),
+ // srcDescTuple);
// }
//
// }
//
- // Set<FlowEdge> edgeSet = calleeSubGlobalGraph.getOutEdgeSetStartingFrom(calleeSrcNode);
+ // Set<FlowEdge> edgeSet =
+ // calleeSubGlobalGraph.getOutEdgeSetStartingFrom(calleeSrcNode);
// for (Iterator iterator = edgeSet.iterator(); iterator.hasNext();) {
// FlowEdge flowEdge = (FlowEdge) iterator.next();
//
// // destination node is started with 'parameter'
// // need to translate it in terms of the caller's a node
// srcDescTuple =
- // translateToCaller(min, calleeSubGlobalGraph.getParamIdx(srcDescTuple), srcDescTuple);
+ // translateToCaller(min, calleeSubGlobalGraph.getParamIdx(srcDescTuple),
+ // srcDescTuple);
// }
//
// if (calleeSubGlobalGraph.isParameter(dstDescTuple)) {
// // destination node is started with 'parameter'
// // need to translate it in terms of the caller's a node
// dstDescTuple =
- // translateToCaller(min, calleeSubGlobalGraph.getParamIdx(dstDescTuple), dstDescTuple);
+ // translateToCaller(min, calleeSubGlobalGraph.getParamIdx(dstDescTuple),
+ // dstDescTuple);
// }
//
// callerSubGlobalGraph.addValueFlowEdge(srcDescTuple, dstDescTuple);
//
// if (!visited.contains(dstNode)) {
// visited.add(dstNode);
- // recurAddValueFlowsFromCalleeParam(min, calleeSubGlobalGraph, dstNode, callerSubGlobalGraph,
+ // recurAddValueFlowsFromCalleeParam(min, calleeSubGlobalGraph, dstNode,
+ // callerSubGlobalGraph,
// dstDescTuple, visited, baseTuple);
// }
//
MethodDescriptor mdCallee = calleeSubGlobalGraph.getMethodDescriptor();
- // Set<FlowEdge> edgeSet = calleeSubGlobalGraph.getOutEdgeSet(calleeSrcNode);
+ // Set<FlowEdge> edgeSet =
+ // calleeSubGlobalGraph.getOutEdgeSet(calleeSrcNode);
Set<FlowEdge> edgeSet = calleeSubGlobalGraph.getOutEdgeSetStartingFrom(calleeSrcNode);
for (Iterator iterator = edgeSet.iterator(); iterator.hasNext();) {
FlowEdge flowEdge = (FlowEdge) iterator.next();
FlowGraph flowGraph = getFlowGraph(md);
MethodSummary methodSummary = getMethodSummary(md);
- // construct a parameter mapping that maps a parameter descriptor to an inferred composite
- // location
+ HierarchyGraph scGraph = getSkeletonCombinationHierarchyGraph(md);
+
+ // set the 'this' reference location
+ if (!md.isStatic()) {
+ System.out.println("setThisLocName=" + scGraph.getHNode(md.getThis()).getName());
+ methodSummary.setThisLocName(scGraph.getHNode(md.getThis()).getName());
+ }
+ // set the 'global' reference location if needed
+ if (methodSummary.hasGlobalAccess()) {
+ methodSummary.setGlobalLocName(scGraph.getHNode(GLOBALDESC).getName());
+ }
+
+ // construct a parameter mapping that maps a parameter descriptor to an
+ // inferred composite location
for (int paramIdx = 0; paramIdx < flowGraph.getNumParameters(); paramIdx++) {
FlowNode flowNode = flowGraph.getParamFlowNode(paramIdx);
- NTuple<Descriptor> descTuple = flowNode.getDescTuple();
-
- CompositeLocation assignedCompLoc = flowNode.getCompositeLocation();
- CompositeLocation inferredCompLoc;
- if (assignedCompLoc != null) {
- inferredCompLoc = translateCompositeLocation(assignedCompLoc);
- } else {
- Descriptor locDesc = descTuple.get(0);
- Location loc = new Location(md, locDesc.getSymbol());
- loc.setLocDescriptor(locDesc);
- inferredCompLoc = new CompositeLocation(loc);
- }
+ CompositeLocation inferredCompLoc = flowNode.getCompositeLocation();
+ // NTuple<Descriptor> descTuple = flowNode.getDescTuple();
+ //
+ // CompositeLocation assignedCompLoc = flowNode.getCompositeLocation();
+ // CompositeLocation inferredCompLoc;
+ // if (assignedCompLoc != null) {
+ // inferredCompLoc = translateCompositeLocation(assignedCompLoc);
+ // } else {
+ // Descriptor locDesc = descTuple.get(0);
+ // Location loc = new Location(md, locDesc.getSymbol());
+ // loc.setLocDescriptor(locDesc);
+ // inferredCompLoc = new CompositeLocation(loc);
+ // }
System.out.println("-paramIdx=" + paramIdx + " infer=" + inferredCompLoc);
+ System.out.println("-flowNode inferLoc=" + flowNode.getCompositeLocation());
+
+ Descriptor localVarDesc = flowNode.getDescTuple().get(0);
+ methodSummary.addMapVarNameToInferCompLoc(localVarDesc, inferredCompLoc);
methodSummary.addMapParamIdxToInferLoc(paramIdx, inferredCompLoc);
}
}
+ private boolean hasOrderingRelation(NTuple<Location> locTuple1, NTuple<Location> locTuple2) {
+
+ int size = locTuple1.size() >= locTuple2.size() ? locTuple2.size() : locTuple1.size();
+
+ for (int idx = 0; idx < size; idx++) {
+ Location loc1 = locTuple1.get(idx);
+ Location loc2 = locTuple2.get(idx);
+
+ Descriptor desc1 = loc1.getDescriptor();
+ Descriptor desc2 = loc2.getDescriptor();
+
+ if (!desc1.equals(desc2)) {
+ throw new Error("Fail to compare " + locTuple1 + " and " + locTuple2);
+ }
+
+ Descriptor locDesc1 = loc1.getLocDescriptor();
+ Descriptor locDesc2 = loc2.getLocDescriptor();
+
+ HierarchyGraph hierarchyGraph = getHierarchyGraph(desc1);
+
+ HNode node1 = hierarchyGraph.getHNode(locDesc1);
+ HNode node2 = hierarchyGraph.getHNode(locDesc2);
+
+ System.out.println("---node1=" + node1 + " node2=" + node2);
+ System.out.println("---hierarchyGraph.getIncomingNodeSet(node2)="
+ + hierarchyGraph.getIncomingNodeSet(node2));
+
+ if (locDesc1.equals(locDesc2)) {
+ continue;
+ } else if (!hierarchyGraph.getIncomingNodeSet(node2).contains(node1)
+ && !hierarchyGraph.getIncomingNodeSet(node1).contains(node2)) {
+ return false;
+ } else {
+ return true;
+ }
+
+ }
+
+ return false;
+
+ }
+
+ private boolean isHigherThan(NTuple<Location> locTuple1, NTuple<Location> locTuple2) {
+
+ int size = locTuple1.size() >= locTuple2.size() ? locTuple2.size() : locTuple1.size();
+
+ for (int idx = 0; idx < size; idx++) {
+ Location loc1 = locTuple1.get(idx);
+ Location loc2 = locTuple2.get(idx);
+
+ Descriptor desc1 = loc1.getDescriptor();
+ Descriptor desc2 = loc2.getDescriptor();
+
+ if (!desc1.equals(desc2)) {
+ throw new Error("Fail to compare " + locTuple1 + " and " + locTuple2);
+ }
+
+ Descriptor locDesc1 = loc1.getLocDescriptor();
+ Descriptor locDesc2 = loc2.getLocDescriptor();
+
+ HierarchyGraph hierarchyGraph = getHierarchyGraph(desc1);
+
+ HNode node1 = hierarchyGraph.getHNode(locDesc1);
+ HNode node2 = hierarchyGraph.getHNode(locDesc2);
+
+ System.out.println("---node1=" + node1 + " node2=" + node2);
+ System.out.println("---hierarchyGraph.getIncomingNodeSet(node2)="
+ + hierarchyGraph.getIncomingNodeSet(node2));
+
+ if (locDesc1.equals(locDesc2)) {
+ continue;
+ } else if (hierarchyGraph.getIncomingNodeSet(node2).contains(node1)) {
+ return true;
+ } else {
+ return false;
+ }
+
+ }
+
+ return false;
+ }
+
private CompositeLocation translateCompositeLocation(CompositeLocation compLoc) {
CompositeLocation newCompLoc = new CompositeLocation();
addMapDescToSimpleLattice(desc, simpleLattice);
HierarchyGraph simpleHierarchyGraph = getSimpleHierarchyGraph(desc);
- System.out.println("## insertIntermediateNodesToStraightLine:"
+ System.out.println("\n## insertIntermediateNodesToStraightLine:"
+ simpleHierarchyGraph.getName());
SSJavaLattice<String> lattice =
buildLattice.insertIntermediateNodesToStraightLine(desc, simpleLattice);
// System.out.println("\nSSJAVA: Insering Combination Nodes:" + desc);
// HierarchyGraph skeletonGraph = getSkeletonHierarchyGraph(desc);
- // HierarchyGraph skeletonGraphWithCombinationNode = skeletonGraph.clone();
+ // HierarchyGraph skeletonGraphWithCombinationNode =
+ // skeletonGraph.clone();
// skeletonGraphWithCombinationNode.setName(desc + "_SC");
//
// HierarchyGraph simpleHierarchyGraph = getSimpleHierarchyGraph(desc);
// System.out.println("Identifying Combination Nodes:");
// skeletonGraphWithCombinationNode.insertCombinationNodesToGraph(simpleHierarchyGraph);
// skeletonGraphWithCombinationNode.simplifySkeletonCombinationHierarchyGraph();
- // mapDescriptorToCombineSkeletonHierarchyGraph.put(desc, skeletonGraphWithCombinationNode);
+ // mapDescriptorToCombineSkeletonHierarchyGraph.put(desc,
+ // skeletonGraphWithCombinationNode);
}
}
}
+ setupToAnalyze();
+ while (!toAnalyzeIsEmpty()) {
+ ClassDescriptor cd = toAnalyzeNext();
+ HierarchyGraph graph = getHierarchyGraph(cd);
+ for (Iterator iter = cd.getFields(); iter.hasNext();) {
+ FieldDescriptor fieldDesc = (FieldDescriptor) iter.next();
+ if (!(fieldDesc.isStatic() && fieldDesc.isFinal())) {
+ graph.getHNode(fieldDesc);
+ }
+ }
+ }
+
}
private HierarchyGraph getHierarchyGraph(Descriptor d) {
// for the method lattice, we need to look at the first element of
// NTuple<Descriptor>
+ boolean hasGlobalAccess = false;
for (Iterator iterator = nodeSet.iterator(); iterator.hasNext();) {
FlowNode srcNode = (FlowNode) iterator.next();
+ // if the srcNode is started with the global descriptor
+ // need to set as a skeleton node
+ if (!hasGlobalAccess && srcNode.getDescTuple().startsWith(GLOBALDESC)) {
+ hasGlobalAccess = true;
+ }
+
Set<FlowEdge> outEdgeSet = fg.getOutEdgeSet(srcNode);
for (Iterator iterator2 = outEdgeSet.iterator(); iterator2.hasNext();) {
FlowEdge outEdge = (FlowEdge) iterator2.next();
}
}
+ // If the method accesses static fields
+ // set hasGloabalAccess true in the method summary.
+ if (hasGlobalAccess) {
+ getMethodSummary(md).setHasGlobalAccess();
+ }
+ methodGraph.getHNode(GLOBALDESC).setSkeleton(true);
+
}
private MethodSummary getMethodSummary(MethodDescriptor md) {
rtr += "\")";
if (desc instanceof MethodDescriptor) {
- TypeDescriptor returnType = ((MethodDescriptor) desc).getReturnType();
+ System.out.println("#EXTRA LOC DECLARATION GEN=" + desc);
- MethodLocationInfo methodLocInfo = getMethodLocationInfo((MethodDescriptor) desc);
+ MethodSummary methodSummary = getMethodSummary((MethodDescriptor) desc);
- if (returnType != null && (!returnType.isVoid())) {
- rtr +=
- "\n@RETURNLOC(\"" + generateLocationAnnoatation(methodLocInfo.getReturnLoc()) + "\")";
+ if (!ssjava.getMethodContainingSSJavaLoop().equals(desc)) {
+ TypeDescriptor returnType = ((MethodDescriptor) desc).getReturnType();
+ if (returnType != null && (!returnType.isVoid())) {
+ rtr +=
+ "\n@RETURNLOC(\"" + generateLocationAnnoatation(methodSummary.getRETURNLoc()) + "\")";
+ }
+ CompositeLocation pcLoc = methodSummary.getPCLoc();
+ if ((pcLoc != null) && (!pcLoc.get(0).isTop())) {
+ rtr += "\n@PCLOC(\"" + generateLocationAnnoatation(pcLoc) + "\")";
+ }
}
- rtr += "\n@THISLOC(\"this\")";
- rtr += "\n@GLOBALLOC(\"GLOBALLOC\")";
-
- CompositeLocation pcLoc = methodLocInfo.getPCLoc();
- if ((pcLoc != null) && (!pcLoc.get(0).isTop())) {
- rtr += "\n@PCLOC(\"" + generateLocationAnnoatation(pcLoc) + "\")";
- }
+ rtr += "\n@THISLOC(\"" + methodSummary.getThisLocName() + "\")";
+ rtr += "\n@GLOBALLOC(\"" + methodSummary.getGlobalLocName() + "\")";
}
setupToAnalazeMethod(cd);
- LocationInfo locInfo = mapClassToLocationInfo.get(cd);
String sourceFileName = cd.getSourceFileName();
if (cd.isInterface()) {
int classDefLine = mapDescToDefinitionLine.get(cd);
Vector<String> sourceVec = mapFileNameToLineVector.get(sourceFileName);
- if (locInfo == null) {
- locInfo = getLocationInfo(cd);
- }
-
- for (Iterator iter = cd.getFields(); iter.hasNext();) {
- FieldDescriptor fieldDesc = (FieldDescriptor) iter.next();
- if (!(fieldDesc.isStatic() && fieldDesc.isFinal())) {
- String locIdentifier = locInfo.getFieldInferLocation(fieldDesc).getLocIdentifier();
- if (!getLattice(cd).getElementSet().contains(locIdentifier)) {
- getLattice(cd).put(locIdentifier);
- }
- }
- }
+ LocationSummary fieldLocSummary = getLocationSummary(cd);
String fieldLatticeDefStr = generateLatticeDefinition(cd);
String annoatedSrc = fieldLatticeDefStr + newline + sourceVec.get(classDefLine);
sourceVec.set(classDefLine, annoatedSrc);
// generate annotations for field declarations
- LocationInfo fieldLocInfo = getLocationInfo(cd);
- Map<Descriptor, CompositeLocation> inferLocMap = fieldLocInfo.getMapDescToInferLocation();
+ // Map<Descriptor, CompositeLocation> inferLocMap = fieldLocInfo.getMapDescToInferLocation();
+ Map<String, String> mapFieldNameToLocName = fieldLocSummary.getMapHNodeNameToLocationName();
for (Iterator iter = cd.getFields(); iter.hasNext();) {
FieldDescriptor fd = (FieldDescriptor) iter.next();
String locAnnotationStr;
- CompositeLocation inferLoc = inferLocMap.get(fd);
+ // CompositeLocation inferLoc = inferLocMap.get(fd);
+ String locName = mapFieldNameToLocName.get(fd.getSymbol());
- if (inferLoc != null) {
+ if (locName != null) {
// infer loc is null if the corresponding field is static and final
- locAnnotationStr = "@LOC(\"" + generateLocationAnnoatation(inferLoc) + "\")";
+ // locAnnotationStr = "@LOC(\"" + generateLocationAnnoatation(inferLoc) + "\")";
+ locAnnotationStr = "@LOC(\"" + locName + "\")";
int fdLineNum = fd.getLineNum();
String orgFieldDeclarationStr = sourceVec.get(fdLineNum);
String fieldDeclaration = fd.toString();
int methodDefLine = md.getLineNum();
- MethodLocationInfo methodLocInfo = getMethodLocationInfo(md);
+ // MethodLocationInfo methodLocInfo = getMethodLocationInfo(md);
+ // Map<Descriptor, CompositeLocation> methodInferLocMap =
+ // methodLocInfo.getMapDescToInferLocation();
+
+ MethodSummary methodSummary = getMethodSummary(md);
+
+ Map<Descriptor, CompositeLocation> mapVarDescToInferLoc =
+ methodSummary.getMapVarDescToInferCompositeLocation();
+ System.out.println("-----md=" + md);
+ System.out.println("-----mapVarDescToInferLoc=" + mapVarDescToInferLoc);
- Map<Descriptor, CompositeLocation> methodInferLocMap =
- methodLocInfo.getMapDescToInferLocation();
- Set<Descriptor> localVarDescSet = methodInferLocMap.keySet();
+ Set<Descriptor> localVarDescSet = mapVarDescToInferLoc.keySet();
Set<String> localLocElementSet = methodLattice.getElementSet();
for (Iterator iterator = localVarDescSet.iterator(); iterator.hasNext();) {
Descriptor localVarDesc = (Descriptor) iterator.next();
- CompositeLocation inferLoc = methodInferLocMap.get(localVarDesc);
+ System.out.println("-------localVarDesc=" + localVarDesc);
+ CompositeLocation inferLoc = mapVarDescToInferLoc.get(localVarDesc);
String localLocIdentifier = inferLoc.get(0).getLocIdentifier();
if (!localLocElementSet.contains(localLocIdentifier)) {
// reference...
// boolean needToAddthisRef = hasThisReference(md);
- if (localLocElementSet.contains("this")) {
- methodLattice.put("this");
- }
+ // if (localLocElementSet.contains("this")) {
+ // methodLattice.put("this");
+ // }
String methodLatticeDefStr = generateLatticeDefinition(md);
String annoatedStr = methodLatticeDefStr + newline + sourceVec.get(methodDefLine);
}
private String generateLocationAnnoatation(CompositeLocation loc) {
+ System.out.println("loc=" + loc);
String rtr = "";
// method location
Location methodLoc = loc.get(0);
LinkedList<MethodDescriptor> descriptorListToAnalyze = ssjava.getSortedDescriptors();
for (Iterator iterator = descriptorListToAnalyze.iterator(); iterator.hasNext();) {
MethodDescriptor md = (MethodDescriptor) iterator.next();
- calculateExtraLocations(md);
+ if (!ssjava.getMethodContainingSSJavaLoop().equals(md)) {
+ calculateExtraLocations(md);
+ }
}
}
- private void setMethodLocInfo(MethodDescriptor md, MethodLocationInfo methodInfo) {
- mapMethodDescToMethodLocationInfo.put(md, methodInfo);
- }
-
private void checkLatticesOfVirtualMethods(MethodDescriptor md) {
if (!md.isStatic()) {
return desc;
}
+ private void calculatePCLOC(MethodDescriptor md) {
+
+ System.out.println("#calcualtePCLOC");
+ MethodSummary methodSummary = getMethodSummary(md);
+ FlowGraph fg = getFlowGraph(md);
+ Map<Integer, CompositeLocation> mapParamToLoc = methodSummary.getMapParamIdxToInferLoc();
+
+ // calculate the initial program counter location
+ // PC location is higher than location types of parameters which has incoming flows.
+
+ Set<NTuple<Location>> paramLocTupleHavingInFlowSet = new HashSet<NTuple<Location>>();
+
+ int numParams = fg.getNumParameters();
+ for (int i = 0; i < numParams; i++) {
+ FlowNode paramFlowNode = fg.getParamFlowNode(i);
+ Descriptor prefix = paramFlowNode.getDescTuple().get(0);
+
+ if (fg.getIncomingNodeSetByPrefix(prefix).size() > 0) {
+ // parameter has in-value flows
+ NTuple<Descriptor> paramDescTuple = paramFlowNode.getCurrentDescTuple();
+ NTuple<Location> paramLocTuple = translateToLocTuple(md, paramDescTuple);
+ paramLocTupleHavingInFlowSet.add(paramLocTuple);
+ }
+ }
+
+ System.out.println("paramLocTupleHavingInFlowSet=" + paramLocTupleHavingInFlowSet);
+
+ if (paramLocTupleHavingInFlowSet.size() > 0
+ && !coversAllParamters(md, fg, paramLocTupleHavingInFlowSet)) {
+
+ // Here, generates a location in the method lattice that is higher than the
+ // paramLocTupleHavingInFlowSet
+ NTuple<Location> pcLocTuple =
+ generateLocTupleRelativeTo(md, paramLocTupleHavingInFlowSet, PCLOC);
+
+ int pcLocTupleIdx = pcLocTuple.size() - 1;
+ Location pcLoc = pcLocTuple.get(pcLocTupleIdx);
+ Descriptor pcDesc = pcLoc.getLocDescriptor();
+ Descriptor enclosingDesc = pcLocTuple.get(pcLocTupleIdx).getDescriptor();
+
+ HierarchyGraph hierarchyGraph = getHierarchyGraph(enclosingDesc);
+ HNode pcNode = hierarchyGraph.getHNode(pcDesc);
+ pcNode.setSkeleton(true);
+
+ for (Iterator iterator = paramLocTupleHavingInFlowSet.iterator(); iterator.hasNext();) {
+ NTuple<Location> paramLocTuple = (NTuple<Location>) iterator.next();
+ if (paramLocTuple.size() > pcLocTupleIdx) {
+ Descriptor lowerDesc = paramLocTuple.get(pcLocTupleIdx).getLocDescriptor();
+ hierarchyGraph.addEdge(pcDesc, lowerDesc);
+ }
+ }
+
+ System.out.println("pcLoc=" + pcLoc);
+
+ methodSummary.setPCLoc(new CompositeLocation(pcLocTuple));
+ }
+ }
+
+ private boolean coversAllParamters(MethodDescriptor md, FlowGraph fg,
+ Set<NTuple<Location>> paramLocTupleHavingInFlowSet) {
+
+ int numParam = fg.getNumParameters();
+ int size = paramLocTupleHavingInFlowSet.size();
+
+ if (!md.isStatic()) {
+
+ // if the method is not static && there is a parameter composite location &&
+ // it is started with 'this',
+ // paramLocTupleHavingInFlowSet need to have 'this' parameter.
+
+ FlowNode thisParamNode = fg.getParamFlowNode(0);
+ NTuple<Location> thisParamLocTuple =
+ translateToLocTuple(md, thisParamNode.getCurrentDescTuple());
+
+ if (!paramLocTupleHavingInFlowSet.contains(thisParamLocTuple)) {
+
+ for (Iterator iterator = paramLocTupleHavingInFlowSet.iterator(); iterator.hasNext();) {
+ NTuple<Location> paramTuple = (NTuple<Location>) iterator.next();
+ if (paramTuple.size() > 1 && paramTuple.get(0).getLocDescriptor().equals(md.getThis())) {
+ // paramLocTupleHavingInFlowSet.add(thisParamLocTuple);
+ // break;
+ size++;
+ }
+ }
+
+ }
+ }
+
+ if (size == numParam) {
+ return true;
+ } else {
+ return false;
+ }
+
+ }
+
+ private void calculateRETURNLOC(MethodDescriptor md) {
+
+ System.out.println("#calculateRETURNLOC= " + md);
+ // calculate a return location:
+ // the return location type is lower than all parameters and the location of return values
+
+ MethodSummary methodSummary = getMethodSummary(md);
+
+ FlowGraph fg = getFlowGraph(md);
+
+ Map<Integer, CompositeLocation> mapParamToLoc = methodSummary.getMapParamIdxToInferLoc();
+ Set<Integer> paramIdxSet = mapParamToLoc.keySet();
+
+ if (!md.getReturnType().isVoid()) {
+ // first, generate the set of return value location types that starts
+ // with 'this' reference
+
+ Set<NTuple<Location>> inferFieldReturnLocSet = new HashSet<NTuple<Location>>();
+
+ Set<FlowNode> paramFlowNodeFlowingToReturnValueSet = getParamNodeFlowingToReturnValue(md);
+ System.out.println("paramFlowNodeFlowingToReturnValueSet="
+ + paramFlowNodeFlowingToReturnValueSet);
+
+ Set<NTuple<Location>> locFlowingToReturnValueSet = new HashSet<NTuple<Location>>();
+ for (Iterator iterator = paramFlowNodeFlowingToReturnValueSet.iterator(); iterator.hasNext();) {
+ FlowNode fn = (FlowNode) iterator.next();
+
+ NTuple<Descriptor> paramDescTuple = fn.getCurrentDescTuple();
+ NTuple<Location> paramLocTuple = translateToLocTuple(md, paramDescTuple);
+
+ locFlowingToReturnValueSet.add(paramLocTuple);
+ }
+
+ Set<FlowNode> returnNodeSet = fg.getReturnNodeSet();
+ for (Iterator iterator = returnNodeSet.iterator(); iterator.hasNext();) {
+ FlowNode returnNode = (FlowNode) iterator.next();
+ NTuple<Descriptor> returnDescTuple = returnNode.getCurrentDescTuple();
+ NTuple<Location> returnLocTuple = translateToLocTuple(md, returnDescTuple);
+ locFlowingToReturnValueSet.add(returnLocTuple);
+ }
+ System.out.println("locFlowingToReturnValueSet=" + locFlowingToReturnValueSet);
+
+ // Here, generates a return location in the method lattice that is lower than the
+ // locFlowingToReturnValueSet
+ NTuple<Location> returnLocTuple =
+ generateLocTupleRelativeTo(md, locFlowingToReturnValueSet, RLOC);
+
+ System.out.println("returnLocTuple=" + returnLocTuple);
+
+ int returnLocTupleIdx = returnLocTuple.size() - 1;
+ Location returnLoc = returnLocTuple.get(returnLocTupleIdx);
+ Descriptor returnDesc = returnLoc.getLocDescriptor();
+ Descriptor enclosingDesc = returnLocTuple.get(returnLocTupleIdx).getDescriptor();
+
+ HierarchyGraph hierarchyGraph = getHierarchyGraph(enclosingDesc);
+ HNode returnNode = hierarchyGraph.getHNode(returnDesc);
+ returnNode.setSkeleton(true);
+
+ for (Iterator iterator = locFlowingToReturnValueSet.iterator(); iterator.hasNext();) {
+ NTuple<Location> locTuple = (NTuple<Location>) iterator.next();
+ Descriptor higherDesc = locTuple.get(returnLocTupleIdx).getLocDescriptor();
+ hierarchyGraph.addEdge(higherDesc, returnDesc);
+ }
+
+ methodSummary.setRETURNLoc(new CompositeLocation(returnLocTuple));
+
+ // skip: for (Iterator iterator = returnNodeSet.iterator(); iterator.hasNext();) {
+ // FlowNode returnNode = (FlowNode) iterator.next();
+ //
+ // NTuple<Descriptor> returnDescTuple = returnNode.getCurrentDescTuple();
+ // NTuple<Location> returnLocTuple = translateToLocTuple(md, returnDescTuple);
+ //
+ // if (returnLocTuple.get(0).getLocDescriptor().equals(md.getThis())) {
+ // // if the location type of the return value matches "this" reference
+ // // then, check whether this return value is equal to/lower than all
+ // // of parameters that possibly flow into the return values
+ // for (Iterator iterator2 = inferParamLocSet.iterator(); iterator2.hasNext();) {
+ // CompositeLocation paramInferLoc = (CompositeLocation) iterator2.next();
+ //
+ // if ((!paramInferLoc.equals(returnLocTuple))
+ // && !isGreaterThan(methodLattice, paramInferLoc, inferReturnLoc)) {
+ // continue skip;
+ // }
+ // }
+ // inferFieldReturnLocSet.add(returnLocTuple);
+ //
+ // }
+ // }
+
+ // if (inferFieldReturnLocSet.size() > 0) {
+ //
+ // // CompositeLocation returnLoc = getLowest(methodLattice, inferFieldReturnLocSet);
+ // CompositeLocation returnLoc = null;
+ // if (returnLoc == null) {
+ // // in this case, assign <'this',bottom> to the RETURNLOC
+ // returnLoc = new CompositeLocation(new Location(md, md.getThis().getSymbol()));
+ // returnLoc.addLocation(new Location(md.getClassDesc(), getLattice(md.getClassDesc())
+ // .getBottomItem()));
+ // }
+ // methodInfo.setReturnLoc(returnLoc);
+ //
+ // } else {
+ // String returnLocSymbol = "RETURNLOC";
+ // CompositeLocation returnLocInferLoc =
+ // new CompositeLocation(new Location(md, returnLocSymbol));
+ // methodInfo.setReturnLoc(returnLocInferLoc);
+ //
+ // for (Iterator iterator = paramIdxSet.iterator(); iterator.hasNext();) {
+ // Integer paramIdx = (Integer) iterator.next();
+ // CompositeLocation inferLoc = mapParamToLoc.get(paramIdx);
+ // String paramLocLocalSymbol = inferLoc.get(0).getLocIdentifier();
+ // if (!methodLattice.isGreaterThan(paramLocLocalSymbol, returnLocSymbol)) {
+ // // TODO
+ // // addRelationHigherToLower(methodLattice, methodInfo,
+ // // paramLocLocalSymbol,
+ // // returnLocSymbol);
+ // }
+ // }
+ //
+ // for (Iterator iterator = returnNodeSet.iterator(); iterator.hasNext();) {
+ // FlowNode returnNode = (FlowNode) iterator.next();
+ // CompositeLocation inferLoc =
+ // generateInferredCompositeLocation(methodInfo, fg.getLocationTuple(returnNode));
+ // if (!isGreaterThan(methodLattice, inferLoc, returnLocInferLoc)) {
+ // // TODO
+ // // addRelation(methodLattice, methodInfo, inferLoc,
+ // // returnLocInferLoc);
+ // }
+ // }
+ //
+ // }
+
+ }
+ }
+
private void calculateExtraLocations(MethodDescriptor md) {
// calcualte pcloc, returnloc,...
+ System.out.println("\nSSJAVA:Calculate PCLOC/RETURNLOC locations: " + md);
+
+ calculatePCLOC(md);
+ calculateRETURNLOC(md);
+
+ }
+
+ private NTuple<Location> generateLocTupleRelativeTo(MethodDescriptor md,
+ Set<NTuple<Location>> paramLocTupleHavingInFlowSet, String locNamePrefix) {
+
+ System.out.println("-generateLocTupleRelativeTo=" + paramLocTupleHavingInFlowSet);
+
+ NTuple<Location> higherLocTuple = new NTuple<Location>();
+
+ VarDescriptor thisVarDesc = md.getThis();
+ // check if all paramter loc tuple is started with 'this' reference
+ boolean hasParamNotStartedWithThisRef = false;
+
+ int minSize = 0;
+
+ Set<NTuple<Location>> paramLocTupleStartedWithThis = new HashSet<NTuple<Location>>();
+
+ for (Iterator iterator = paramLocTupleHavingInFlowSet.iterator(); iterator.hasNext();) {
+ NTuple<Location> paramLocTuple = (NTuple<Location>) iterator.next();
+ if (!paramLocTuple.get(0).getLocDescriptor().equals(thisVarDesc)) {
+ hasParamNotStartedWithThisRef = true;
+ } else if (paramLocTuple.size() > 1) {
+ paramLocTupleStartedWithThis.add(paramLocTuple);
+ if (minSize == 0 || minSize > paramLocTuple.size()) {
+ minSize = paramLocTuple.size();
+ }
+ }
+ }
+
+ System.out.println("---paramLocTupleStartedWithThis=" + paramLocTupleStartedWithThis);
+ Descriptor enclosingDesc = md;
+ if (hasParamNotStartedWithThisRef) {
+ // in this case, PCLOC will be the local location
+ } else {
+ // all parameter is started with 'this', so PCLOC will be set relative to the composite
+ // location started with 'this'.
+ for (int idx = 0; idx < minSize - 1; idx++) {
+ Set<Descriptor> locDescSet = new HashSet<Descriptor>();
+ Location curLoc = null;
+ NTuple<Location> paramLocTuple = null;
+ for (Iterator iterator = paramLocTupleStartedWithThis.iterator(); iterator.hasNext();) {
+ paramLocTuple = (NTuple<Location>) iterator.next();
+ System.out.println("-----paramLocTuple=" + paramLocTuple + " idx=" + idx);
+ curLoc = paramLocTuple.get(idx);
+ Descriptor locDesc = curLoc.getLocDescriptor();
+ locDescSet.add(locDesc);
+ }
+ System.out.println("-----locDescSet=" + locDescSet + " idx=" + idx);
+ if (locDescSet.size() != 1) {
+ break;
+ }
+ Location newLocElement = new Location(curLoc.getDescriptor(), curLoc.getLocDescriptor());
+ higherLocTuple.add(newLocElement);
+ enclosingDesc = getClassTypeDescriptor(curLoc.getLocDescriptor());
+ }
+
+ }
+
+ String pcLocIdentifier = locNamePrefix + (locSeed++);
+ NameDescriptor pcLocDesc = new NameDescriptor(pcLocIdentifier);
+ Location newLoc = new Location(enclosingDesc, pcLocDesc);
+ higherLocTuple.add(newLoc);
+
+ System.out.println("---new loc tuple=" + higherLocTuple);
+
+ return higherLocTuple;
+
+ }
+
+ public ClassDescriptor getClassTypeDescriptor(Descriptor in) {
+
+ if (in instanceof VarDescriptor) {
+ return ((VarDescriptor) in).getType().getClassDesc();
+ } else if (in instanceof FieldDescriptor) {
+ return ((FieldDescriptor) in).getType().getClassDesc();
+ }
+ // else if (in instanceof LocationDescriptor) {
+ // // here is the case that the descriptor 'in' is the last element of the assigned composite
+ // // location
+ // return ((VarDescriptor) locTuple.get(0).getLocDescriptor()).getType().getClassDesc();
+ // }
+ else {
+ return null;
+ }
+
+ }
+
+ private Set<NTuple<Location>> calculateHighestLocTupleSet(
+ Set<NTuple<Location>> paramLocTupleHavingInFlowSet) {
+
+ Set<NTuple<Location>> highestSet = new HashSet<NTuple<Location>>();
+
+ Iterator<NTuple<Location>> iterator = paramLocTupleHavingInFlowSet.iterator();
+ NTuple<Location> highest = iterator.next();
+
+ for (; iterator.hasNext();) {
+ NTuple<Location> curLocTuple = (NTuple<Location>) iterator.next();
+ if (isHigherThan(curLocTuple, highest)) {
+ System.out.println(curLocTuple + " is greater than " + highest);
+ highest = curLocTuple;
+ }
+ }
+
+ highestSet.add(highest);
+
+ MethodDescriptor md = (MethodDescriptor) highest.get(0).getDescriptor();
+ VarDescriptor thisVarDesc = md.getThis();
+
+ System.out.println("highest=" + highest);
+
+ for (Iterator<NTuple<Location>> iter = paramLocTupleHavingInFlowSet.iterator(); iter.hasNext();) {
+ NTuple<Location> curLocTuple = iter.next();
+
+ if (!curLocTuple.equals(highest) && !hasOrderingRelation(highest, curLocTuple)) {
+
+ System.out.println("add it to the highest set=" + curLocTuple);
+ highestSet.add(curLocTuple);
+
+ }
+ }
+
+ return highestSet;
+
+ }
+
+ private void calculateExtraLocations2(MethodDescriptor md) {
+ // calcualte pcloc, returnloc,...
+
SSJavaLattice<String> methodLattice = getMethodLattice(md);
MethodLocationInfo methodInfo = getMethodLocationInfo(md);
FlowGraph fg = getFlowGraph(md);
String paramLocLocalSymbol = inferLoc.get(0).getLocIdentifier();
if (!methodLattice.isGreaterThan(paramLocLocalSymbol, returnLocSymbol)) {
// TODO
- // addRelationHigherToLower(methodLattice, methodInfo, paramLocLocalSymbol,
+ // addRelationHigherToLower(methodLattice, methodInfo,
+ // paramLocLocalSymbol,
// returnLocSymbol);
}
}
generateInferredCompositeLocation(methodInfo, fg.getLocationTuple(returnNode));
if (!isGreaterThan(methodLattice, inferLoc, returnLocInferLoc)) {
// TODO
- // addRelation(methodLattice, methodInfo, inferLoc, returnLocInferLoc);
+ // addRelation(methodLattice, methodInfo, inferLoc,
+ // returnLocInferLoc);
}
}
// parameters
Set<FlowNode> localReachSet = calleeFlowGraph.getLocalReachFlowNodeSetFrom(paramNode1);
+ System.out.println("-param1=" + paramNode1 + " is higher than param2=" + paramNode2);
+ System.out.println("-- localReachSet from param1=" + localReachSet);
- if (localReachSet.contains(paramNode2)) {
+ if (arg1Tuple.size() > 0 && arg2Tuple.size() > 0 && localReachSet.contains(paramNode2)) {
// need to propagate an ordering relation s.t. arg1 is higher
// than arg2
- System.out.println("-param1=" + paramNode1 + " is higher than param2=" + paramNode2);
System.out
.println("-arg1Tuple=" + arg1Tuple + " is higher than arg2Tuple=" + arg2Tuple);
// graph
// TODO
- // also if a parameter is a composite location and is started with "this" reference,
- // need to make sure that the corresponding argument is higher than the translated location of
+ // also if a parameter is a composite location and is started with "this"
+ // reference,
+ // need to make sure that the corresponding argument is higher than the
+ // translated location of
// the parameter.
FlowGraph calleeFlowGraph = getFlowGraph(mdCallee);
// calculate the prefix of the argument
if (arg2Tuple.size() == 1 && arg2Tuple.get(0).equals(baseRef)) {
- // in this case, the callee flow causes a caller flow to the object whose method
+ // in this case, the callee flow causes a caller flow to the
+ // object whose method
// is invoked.
if (!paramNode1.getCurrentDescTuple().startsWith(mdCallee.getThis())) {
paramNode1);
if (param1Prefix != null && param1Prefix.startsWith(mdCallee.getThis())) {
- // in this case, we need to create a new edge 'this.FIELD'->'this'
- // but we couldn't... instead we assign a new composite location started
+ // in this case, we need to create a new edge
+ // 'this.FIELD'->'this'
+ // but we couldn't... instead we assign a new composite
+ // location started
// with 'this' reference to the corresponding parameter
CompositeLocation compLocForParam1 =
.println("set comp loc=" + compLocForParam1 + " to " + paramNode1);
paramNode1.setCompositeLocation(compLocForParam1);
- // then, we need to make sure that the corresponding argument in the caller
- // is required to be higher than or equal to the translated parameter
+ // then, we need to make sure that the corresponding
+ // argument in the caller
+ // is required to be higher than or equal to the
+ // translated parameter
// location
NTuple<Descriptor> translatedParamTuple =
}
} else if (arg1Tuple.size() == 1 && arg1Tuple.get(0).equals(baseRef)) {
- // in this case, the callee flow causes a caller flow originated from the object
+ // in this case, the callee flow causes a caller flow
+ // originated from the object
// whose
// method is invoked.
if (param2Prefix != null && param2Prefix.startsWith(mdCallee.getThis())) {
// in this case, we need to create a new edge 'this' ->
- // 'this.FIELD' but we couldn't... instead we assign the corresponding
- // parameter a new composite location started with 'this' reference
+ // 'this.FIELD' but we couldn't... instead we assign the
+ // corresponding
+ // parameter a new composite location started with
+ // 'this' reference
CompositeLocation compLocForParam2 =
generateCompositeLocation(mdCallee, param2Prefix);
if (lastDescOfPrefix instanceof FieldDescriptor) {
enclosingDescriptor = ((FieldDescriptor) lastDescOfPrefix).getType().getClassDesc();
// System.out.println("enclosingDescriptor0=" + enclosingDescriptor);
+ } else if (lastDescOfPrefix.equals(GLOBALDESC)) {
+ MethodDescriptor currentMethodDesc = (MethodDescriptor) prefixLocTuple.get(0).getDescriptor();
+ enclosingDescriptor = currentMethodDesc.getClassDesc();
} else {
// var descriptor case
enclosingDescriptor = ((VarDescriptor) lastDescOfPrefix).getType().getClassDesc();
} else if (curDescriptor instanceof NameDescriptor) {
// it is "GLOBAL LOC" case!
enclosingDescriptor = GLOBALDESC;
+ } else if (curDescriptor instanceof InterDescriptor) {
+ enclosingDescriptor = null;
} else {
enclosingDescriptor = ((FieldDescriptor) curDescriptor).getClassDescriptor();
}
}
- System.out.println("-convertToCompositeLocation from=" + tuple + " to " + compLoc);
-
return compLoc;
}
if (idx == 0) {
classDesc = ((VarDescriptor) desc).getType().getClassDesc();
} else {
- classDesc = ((FieldDescriptor) desc).getType().getClassDesc();
+ if (desc instanceof FieldDescriptor) {
+ classDesc = ((FieldDescriptor) desc).getType().getClassDesc();
+ } else {
+ // this case is that the local variable has a composite location assignment
+ // the following element after the composite location to the local variable
+ // has the enclosing descriptor of the local variable
+ Descriptor localDesc = srcNode.getDescTuple().get(0);
+ classDesc = ((VarDescriptor) localDesc).getType().getClassDesc();
+ }
}
-
extractFlowsBetweenFields(classDesc, srcNode, dstNode, idx + 1);
} else {
}
+ public boolean isTransitivelyCalledFrom(MethodDescriptor callee, MethodDescriptor caller) {
+ // if the callee is transitively invoked from the caller
+ // return true;
+
+ int callerIdx = toanalyze_methodDescList.indexOf(caller);
+ int calleeIdx = toanalyze_methodDescList.indexOf(callee);
+
+ if (callerIdx < calleeIdx) {
+ return true;
+ }
+
+ return false;
+
+ }
+
public void constructFlowGraph() {
System.out.println("");
analyzeMethodBody(md.getClassDesc(), md);
+ // System.out.println("##constructSubGlobalFlowGraph");
+ // GlobalFlowGraph subGlobalFlowGraph = constructSubGlobalFlowGraph(fg);
+ // mapMethodDescriptorToSubGlobalFlowGraph.put(md, subGlobalFlowGraph);
+ //
+ // // TODO
+ // System.out.println("##addValueFlowsFromCalleeSubGlobalFlowGraph");
+ // addValueFlowsFromCalleeSubGlobalFlowGraph(md, subGlobalFlowGraph);
+ // subGlobalFlowGraph.writeGraph("_SUBGLOBAL");
+ //
+ // propagateFlowsFromCalleesWithNoCompositeLocation(md);
+
+ }
+ }
+ // _debug_printGraph();
+
+ methodDescList = (LinkedList<MethodDescriptor>) toanalyze_methodDescList.clone();
+
+ while (!methodDescList.isEmpty()) {
+ MethodDescriptor md = methodDescList.removeLast();
+ if (state.SSJAVADEBUG) {
+ System.out.println();
+ System.out.println("SSJAVA: Constructing a flow graph2: " + md);
+
System.out.println("##constructSubGlobalFlowGraph");
- GlobalFlowGraph subGlobalFlowGraph = constructSubGlobalFlowGraph(fg);
+ GlobalFlowGraph subGlobalFlowGraph = constructSubGlobalFlowGraph(getFlowGraph(md));
mapMethodDescriptorToSubGlobalFlowGraph.put(md, subGlobalFlowGraph);
// TODO
subGlobalFlowGraph.writeGraph("_SUBGLOBAL");
propagateFlowsFromCalleesWithNoCompositeLocation(md);
- // assignCompositeLocation(md);
}
}
- // _debug_printGraph();
}
newImplicitTupleSet.addTupleSet(condTupleNode);
if (newImplicitTupleSet.size() > 1) {
- // need to create an intermediate node for the GLB of conditional locations & implicit flows
+ // need to create an intermediate node for the GLB of conditional
+ // locations & implicit flows
NTuple<Descriptor> interTuple = getFlowGraph(md).createIntermediateNode().getDescTuple();
for (Iterator<NTuple<Descriptor>> idxIter = newImplicitTupleSet.iterator(); idxIter.hasNext();) {
NTuple<Descriptor> tuple = idxIter.next();
FlowGraph fg = getFlowGraph(md);
// if (implicitFlowTupleSet.size() == 1
- // && fg.getFlowNode(implicitFlowTupleSet.iterator().next()).isIntermediate()) {
+ // &&
+ // fg.getFlowNode(implicitFlowTupleSet.iterator().next()).isIntermediate())
+ // {
//
- // // since there is already an intermediate node for the GLB of implicit flows
+ // // since there is already an intermediate node for the GLB of implicit
+ // flows
// // we don't need to create another intermediate node.
// // just re-use the intermediate node for implicit flows.
//
- // FlowNode meetNode = fg.getFlowNode(implicitFlowTupleSet.iterator().next());
+ // FlowNode meetNode =
+ // fg.getFlowNode(implicitFlowTupleSet.iterator().next());
//
// for (Iterator iterator = nodeSet.iterator(); iterator.hasNext();) {
- // NTuple<Descriptor> returnNodeTuple = (NTuple<Descriptor>) iterator.next();
+ // NTuple<Descriptor> returnNodeTuple = (NTuple<Descriptor>)
+ // iterator.next();
// fg.addValueFlowEdge(returnNodeTuple, meetNode.getDescTuple());
// }
//
newImplicitTupleSet.addTupleSet(condTupleNode);
if (newImplicitTupleSet.size() > 1) {
- // need to create an intermediate node for the GLB of conditional locations & implicit flows
+ // need to create an intermediate node for the GLB of conditional
+ // locations & implicit flows
NTuple<Descriptor> interTuple = getFlowGraph(md).createIntermediateNode().getDescTuple();
for (Iterator<NTuple<Descriptor>> idxIter = newImplicitTupleSet.iterator(); idxIter
.hasNext();) {
// ///////////
// System.out.println("condTupleNode="+condTupleNode);
- // NTuple<Descriptor> interTuple = getFlowGraph(md).createIntermediateNode().getDescTuple();
+ // NTuple<Descriptor> interTuple =
+ // getFlowGraph(md).createIntermediateNode().getDescTuple();
//
- // for (Iterator<NTuple<Descriptor>> idxIter = condTupleNode.iterator(); idxIter.hasNext();) {
+ // for (Iterator<NTuple<Descriptor>> idxIter = condTupleNode.iterator();
+ // idxIter.hasNext();) {
// NTuple<Descriptor> tuple = idxIter.next();
// addFlowGraphEdge(md, tuple, interTuple);
// }
- // for (Iterator<NTuple<Descriptor>> idxIter = implicitFlowTupleSet.iterator(); idxIter
+ // for (Iterator<NTuple<Descriptor>> idxIter =
+ // implicitFlowTupleSet.iterator(); idxIter
// .hasNext();) {
// NTuple<Descriptor> tuple = idxIter.next();
// addFlowGraphEdge(md, tuple, interTuple);
}
private Set<FlowNode> getParamNodeFlowingToReturnValue(MethodDescriptor md) {
+
+ if (!mapMethodDescToParamNodeFlowsToReturnValue.containsKey(md)) {
+ mapMethodDescToParamNodeFlowsToReturnValue.put(md, new HashSet<FlowNode>());
+ }
+
return mapMethodDescToParamNodeFlowsToReturnValue.get(md);
}
System.out.println("analyzeFlowMethodInvokeNode=" + min.printNode(0));
+ mapMethodInvokeNodeToArgIdxMap.put(min, new HashMap<Integer, NTuple<Descriptor>>());
+
if (nodeSet == null) {
nodeSet = new NodeTupleSet();
}
FlowGraph calleeFlowGraph = getFlowGraph(calleeMethodDesc);
Set<FlowNode> calleeReturnSet = calleeFlowGraph.getReturnNodeSet();
- System.out.println("#calleeReturnSet=" + calleeReturnSet);
+ System.out.println("-calleeReturnSet=" + calleeReturnSet);
if (min.getExpression() != null) {
argTuple = new NTuple<Descriptor>();
}
- if (argTuple.size() != 0) {
- addArgIdxMap(min, idx, argTuple);
- }
+ addArgIdxMap(min, idx, argTuple);
+
FlowNode paramNode = calleeFlowGraph.getParamFlowNode(idx);
+ System.out.println("-paramNode=" + paramNode + " hasInFlowTo="
+ + hasInFlowTo(calleeFlowGraph, paramNode, calleeReturnSet));
+
if (hasInFlowTo(calleeFlowGraph, paramNode, calleeReturnSet)
|| calleeMethodDesc.getModifiers().isNative()) {
addParamNodeFlowingToReturnValue(calleeMethodDesc, paramNode);