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forkwriteEdges.put(taskName, writeForkVertex);
// g.addEdge(getvertex(taskName),getvertex(((TMLWriteChannel)(currentElement)).getChannel(0).getName()));
currentElement = currentElement.getNexts().firstElement();
} else if (currentElement.getName().equals("stopOfFork") || currentElement.getName().equals("stop2OfFork")
|| currentElement.getName().equals("stopOfJoin")) {
opCount++;
continue;
} else if (taskName.startsWith("JOINTASK_S_") && currentElement.getName().startsWith("ReadOfJoin")) {
String vName = ((TMLReadChannel) (currentElement)).getChannel(0).getName();
int vid = ((TMLReadChannel) (currentElement)).getChannel(0).getID();
if (!g.containsVertex(getvertex(vName))) {
g.addVertex(vertex(vName, vid));
HashSet<String> writeForkVertex = new HashSet<String>();
writeForkVertex.add(((TMLReadChannel) (currentElement)).getChannel(0).getName());
if (!joinreadEdges.get(taskName).contains(((TMLReadChannel) (currentElement)).getChannel(0).getName())) {
joinreadEdges.get(task.getName()).add(((TMLReadChannel) (currentElement)).getChannel(0).getName());
}
joinreadEdges.put(taskName, writeForkVertex);
// g.addEdge(getvertex(task.getName()),getvertex(((TMLWriteChannel)(currentElement)).getChannel(0).getName()));
currentElement = currentElement.getNexts().firstElement();
continue;
} else if (taskName.startsWith("JOINTASK_S_") && currentElement.getName().equals("WriteOfJoin")) {
String vName = ((TMLWriteChannel) (currentElement)).getChannel(0).getName();
int vid = ((TMLWriteChannel) (currentElement)).getChannel(0).getID();
if (!g.containsVertex(getvertex(vName))) {
g.addVertex(vertex(vName, vid));
g.addEdge(getvertex(taskName), getvertex(((TMLWriteChannel) (currentElement)).getChannel(0).getName()));
HashSet<String> readForkVertex = new HashSet<String>();
readForkVertex.add(((TMLWriteChannel) (currentElement)).getChannel(0).getName());
if (!joinwriteEdges.get(taskName).contains(((TMLWriteChannel) (currentElement)).getChannel(0).getName())) {
joinwriteEdges.get(taskName).add(((TMLWriteChannel) (currentElement)).getChannel(0).getName());
}
} else {
joinwriteEdges.put(taskName, readForkVertex);
currentElement = currentElement.getNexts().firstElement();
continue;
}
updatemainBar(eventName);
if (currentElement.getNexts().size() > 1) {
for (TMLActivityElement ae : currentElement.getNexts()) {
multiNexts.add(ae);
eventName = getEventName(taskName, currentElement);
// in case an end was encountered , the previous activities should be checked:
// in
// case it is an end for a loop or sequence speavial edges should be added
if (currentElement.getReferenceObject() instanceof TMLADStopState) {
// start activity is added as a vertex
if (currentElement.getReferenceObject() instanceof TMLADStartState) {
addStartVertex(taskName);
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}
// the below activities are added as vertex with the required edges
// these activities can be used to check later for latency
else if (currentElement.getReferenceObject() instanceof TMLADSendEvent
|| currentElement.getReferenceObject() instanceof TMLADWaitEvent
|| currentElement.getReferenceObject() instanceof TMLADForLoop
|| currentElement.getReferenceObject() instanceof TMLADForStaticLoop
|| currentElement.getReferenceObject() instanceof TMLADChoice
|| currentElement.getReferenceObject() instanceof TMLADForEverLoop
|| (currentElement.getReferenceObject() instanceof TMLADExecI && !currentElement.getValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADExecC && !currentElement.getValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADDelay
&& !((TMLADDelay) currentElement.getReferenceObject()).getDelayValue().equals("0"))
|| currentElement.getReferenceObject() instanceof TMLADSendRequest
|| currentElement.getReferenceObject() instanceof TMLADReadRequestArg
|| currentElement.getReferenceObject() instanceof TMLADActionState
|| (currentElement.getReferenceObject() instanceof TMLADDelayInterval
&& !((TMLADDelayInterval) currentElement.getReferenceObject()).getMinDelayValue().equals("0")
&& !((TMLADDelayInterval) currentElement.getReferenceObject()).getMaxDelayValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADExecCInterval
&& !((TMLADExecCInterval) currentElement.getReferenceObject()).getMinDelayValue().equals("0")
&& !((TMLADExecCInterval) currentElement.getReferenceObject()).getMaxDelayValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADExecIInterval
&& !((TMLADExecIInterval) currentElement.getReferenceObject()).getMinDelayValue().equals("0")
&& !((TMLADExecIInterval) currentElement.getReferenceObject()).getMaxDelayValue().equals("0"))
|| currentElement.getReferenceObject() instanceof TMLADNotifiedEvent
|| currentElement.getReferenceObject() instanceof TMLADRandom
|| currentElement.getReferenceObject() instanceof TMLADReadChannel
|| currentElement.getReferenceObject() instanceof TMLADWriteChannel
|| currentElement.getReferenceObject() instanceof TMLADSequence
|| currentElement.getReferenceObject() instanceof TMLADUnorderedSequence
|| currentElement.getReferenceObject() instanceof TMLADSelectEvt
|| currentElement.getReferenceObject() instanceof TMLADDecrypt
|| currentElement.getReferenceObject() instanceof TMLADEncrypt) {
addcurrentElementVertex(taskName, taskStartName);
}
// check if the next activity :add to an array:
// in case of for loop : the first element of inside/outside branches of loop
// in case of sequence: add first element of all branches
if (currentElement.getNexts().size() == 1) {
currentElement = currentElement.getNexts().firstElement();
allForLoopNextValues.putAll(forLoopNextValues);
}
}
return cpuTaskMap;
}
private void trackMultiNexts(String taskName, String eventName) {
// TODO Auto-generated method stub
if (currentElement.getReferenceObject() instanceof TMLADForStaticLoop || currentElement.getReferenceObject() instanceof TMLADForLoop) {
if (currentElement.getNexts().size() > 1) {
List<TGConnectingPoint> points = new ArrayList<TGConnectingPoint>();
List<TGConnector> getOutputConnectors = new ArrayList<TGConnector>();
if (currentElement.getReferenceObject() instanceof TMLADForStaticLoop) {
points = Arrays.asList(((TMLADForStaticLoop) (currentElement.getReferenceObject())).getConnectingPoints());
getOutputConnectors = ((TMLADForStaticLoop) (currentElement.getReferenceObject())).getOutputConnectors();
String loopValue = ((TMLADForStaticLoop) (currentElement.getReferenceObject())).getValue();
getvertex(eventName).setType(vertex.TYPE_STATIC_FOR_LOOP);
if ((loopValue != null) && (loopValue.length() > 0)) {
if ((loopValue.matches("\\d*"))) {
getvertex(eventName).setTaintFixedNumber(Integer.valueOf(loopValue));
for (TMLAttribute att : taskAc.getAttributes()) {
if (loopValue.contains(att.getName())) {
loopValue = loopValue.replace(att.getName(), (att.getInitialValue()));
}
}
getvertex(eventName).setTaintFixedNumber(Integer.valueOf(loopValue));
} else if (currentElement.getReferenceObject() instanceof TMLADForLoop) {
points = Arrays.asList(((TMLADForLoop) (currentElement.getReferenceObject())).getConnectingPoints());
getOutputConnectors = ((TMLADForLoop) (currentElement.getReferenceObject())).getOutputConnectors();
// String loopValue = ((TMLADForLoop)
// (currentElement.getReferenceObject())).getValue();
getvertex(eventName).setType(vertex.TYPE_FOR_LOOP);
String cond = ((TMLADForLoop) (currentElement.getReferenceObject())).getCondition();
String loopValue = val[2].toString();
if ((loopValue != null) && (loopValue.length() > 0)) {
if ((loopValue.matches("\\d*"))) {
getvertex(eventName).setTaintFixedNumber(Integer.valueOf(loopValue));
} else {
for (TMLAttribute att : taskAc.getAttributes()) {
if (loopValue.contains(att.getName())) {
loopValue = loopValue.replace(att.getName(), (att.getInitialValue()));
}
}
getvertex(eventName).setTaintFixedNumber(Integer.valueOf(loopValue));
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} else if (cond.contains("<")) {
String[] val = cond.split("<");
String loopValue = val[1].toString();
if ((loopValue != null) && (loopValue.length() > 0)) {
if ((loopValue.matches("\\d*"))) {
getvertex(eventName).setTaintFixedNumber(Integer.valueOf(loopValue));
} else {
for (TMLAttribute att : taskAc.getAttributes()) {
if (loopValue.contains(att.getName())) {
loopValue = loopValue.replace(att.getName(), (att.getInitialValue()));
}
}
if ((loopValue.matches("\\d*"))) {
getvertex(eventName).setTaintFixedNumber(Integer.valueOf(loopValue));
}
{
frameLatencyDetailedAnalysis.error(loopValue + " Expression in For Loop is not supported by Tainting");
TGConnector inputConnector = null, outputConnector = null;
for (TGConnector connector : getOutputConnectors) {
if (connector.getTGConnectingPointP1() == points.get(1)) {
inputConnector = connector;
} else if (connector.getTGConnectingPointP1() == points.get(2)) {
outputConnector = connector;
}
List<String> afterloopActivity = new ArrayList<String>(2);
String insideLoop = "", outsideLoop = "";
for (TMLActivityElement ae : currentElement.getNexts()) {
List<TGConnector> cg = (((TGComponent) ae.getReferenceObject()).getInputConnectors());
for (TGConnector afterloopcg : cg) {
if (afterloopcg == inputConnector) {
if (ae.getReferenceObject() instanceof TMLADRandom) {
insideLoop = taskName + "__" + ae.getName() + "__" + ae.getID();
} else if (ae.getReferenceObject() instanceof TMLADUnorderedSequence) {
insideLoop = taskName + "__" + "unOrderedSequence" + "__" + ae.getID();
} else {
insideLoop = taskName + "__" + ae.getReferenceObject().toString() + "__" + ae.getID();
if (ae.getReferenceObject() instanceof TMLADRandom) {
outsideLoop = taskName + "__" + ae.getName() + "__" + ae.getID();
} else if (ae.getReferenceObject() instanceof TMLADUnorderedSequence) {
outsideLoop = taskName + "__" + "unOrderedSequence" + "__" + ae.getID();
} else {
outsideLoop = taskName + "__" + ae.getReferenceObject().toString() + "__" + ae.getID();
}
afterloopActivity.add(0, insideLoop);
afterloopActivity.add(1, outsideLoop);
forLoopNextValues.put(eventName, afterloopActivity);
} else if (currentElement.getReferenceObject() instanceof TMLADSequence) {
getvertex(eventName).setType(vertex.TYPE_SEQ);
getvertex(eventName).setTaintFixedNumber(1);
String nextEventName = "";
for (TMLActivityElement seqListnextElement : currentElement.getNexts()) {
if (seqListnextElement.getReferenceObject() instanceof TMLADRandom) {
nextEventName = taskName + "__" + seqListnextElement.getName() + "__" + seqListnextElement.getID();
} else if (seqListnextElement.getReferenceObject() instanceof TMLADUnorderedSequence) {
nextEventName = taskName + "__" + "unOrderedSequence" + "__" + seqListnextElement.getID();
} else {
nextEventName = taskName + "__" + seqListnextElement.getReferenceObject().toString() + "__" + seqListnextElement.getID();
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}
if (orderedSequenceList.containsKey(eventName)) {
if (!orderedSequenceList.get(eventName).contains(nextEventName)) {
orderedSequenceList.get(eventName).add(nextEventName);
}
} else {
ArrayList<String> seqListNextValues = new ArrayList<String>();
seqListNextValues.add(nextEventName);
orderedSequenceList.put(eventName, seqListNextValues);
}
}
} else if (currentElement.getReferenceObject() instanceof TMLADUnorderedSequence) {
getvertex(eventName).setType(vertex.TYPE_UNORDER_SEQ);
getvertex(eventName).setTaintFixedNumber(1);
String nextEventName = "";
for (TMLActivityElement seqListnextElement : currentElement.getNexts()) {
if (seqListnextElement.getReferenceObject() instanceof TMLADRandom) {
nextEventName = taskName + "__" + seqListnextElement.getName() + "__" + seqListnextElement.getID();
} else if (seqListnextElement.getReferenceObject() instanceof TMLADUnorderedSequence) {
nextEventName = taskName + "__" + "unOrderedSequence" + "__" + seqListnextElement.getID();
} else {
nextEventName = taskName + "__" + seqListnextElement.getReferenceObject().toString() + "__" + seqListnextElement.getID();
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}
if (unOrderedSequenceList.containsKey(eventName)) {
if (!unOrderedSequenceList.get(eventName).contains(nextEventName)) {
unOrderedSequenceList.get(eventName).add(nextEventName);
}
} else {
ArrayList<String> seqListNextValues = new ArrayList<String>();
seqListNextValues.add(nextEventName);
unOrderedSequenceList.put(eventName, seqListNextValues);
}
}
}
List<TGConnector> cg = (((TGComponent) currentElement.getReferenceObject()).getInputConnectors());
}
private void addStartVertex(String taskName) {
// TODO Auto-generated method stub
taskStartName = taskName + "__" + currentElement.getName() + "__" + currentElement.getID();
vertex startv = vertex(taskStartName, currentElement.getID());
g.addVertex(startv);
// gVertecies.add(vertex(taskStartName));
getvertex(taskStartName).setType(vertex.TYPE_START);
getvertex(taskStartName).setTaintFixedNumber(1);
g.addEdge(getvertex(taskName), getvertex(taskStartName));
opCount++;
if (!nameIDTaskList.containsKey(currentElement.getID())) {
nameIDTaskList.put(String.valueOf(currentElement.getID()), taskStartName);
}
}
private void waitEventNames() {
// TODO Auto-generated method stub
for (TMLWaitEvent waitEvent : taskAc.getWaitEvents()) {
// TMLCPrimitivePort portdetails = waitEvent.getEvent().port;
TMLCPrimitivePort sendingPortdetails = waitEvent.getEvent().port;
TMLCPrimitivePort receivePortdetails = waitEvent.getEvent().port2;
if (!sendingPortdetails.isBlocking()) {
warnings.add(
"send event port:" + sendingPortdetails.getPortName() + " is non-blocking. Use tainting for an accurate latency analysis");
}
if (sendingPortdetails.isFinite()) {
warnings.add("send event port:" + sendingPortdetails.getPortName() + " is Finite. Event lost is not supported in latency analysis ");
}
String receivePortparams = waitEvent.getAllParams();
// tmlcdp.tmlctdp.getAllPortsConnectedTo(portdetails);
waitEvt.put("waitevent:" + receivePortdetails.getPortName() + "(" + receivePortparams + ")", new ArrayList<String>());
TMLTask originTasks = waitEvent.getEvent().getOriginTask();
for (TMLSendEvent wait_sendEvent : originTasks.getSendEvents()) {
String sendingPortparams = wait_sendEvent.getAllParams();
waitEvt.get("waitevent:" + receivePortdetails.getPortName() + "(" + receivePortparams + ")")
.add("sendevent:" + sendingPortdetails.getPortName() + "(" + sendingPortparams + ")");
}
}
}
private void writeChannelNames() {
// TODO Auto-generated method stub
for (TMLWriteChannel writeChannel : taskAc.getWriteChannels()) {
int i = writeChannel.getNbOfChannels();
for (int j = 0; j < i; j++) {
String sendingDataPortdetails = "";
String receiveDataPortdetails = "";
if ((writeChannel.getChannel(j)).originalDestinationTasks.size() > 0) {
String[] checkchannel;
if (writeChannel.getChannel(j).getOriginPort().getName().contains("FORKPORTORIGIN")) {
checkchannel = writeChannel.getChannel(j).getOriginPort().getName().split("_S_");
if (checkchannel.length > 2) {
sendingDataPortdetails = writeChannel.getChannel(j).getOriginPort().getName().replace("FORKPORTORIGIN", "FORKCHANNEL");
;
} else if (checkchannel.length < 2) {
sendingDataPortdetails = writeChannel.getChannel(j).getOriginPort().getName().replace("FORKPORTORIGIN", "");
;
sendingDataPortdetails = sendingDataPortdetails.replace("_S_", "");
;
}
} else if (writeChannel.getChannel(j).getOriginPort().getName().contains("JOINPORTORIGIN")) {
checkchannel = writeChannel.getChannel(j).getOriginPort().getName().split("_S_");
if (checkchannel.length > 2) {
sendingDataPortdetails = writeChannel.getChannel(j).getOriginPort().getName().replace("JOINPORTORIGIN", "JOINCHANNEL");
} else if (checkchannel.length <= 2) {
sendingDataPortdetails = writeChannel.getChannel(j).getOriginPort().getName().replace("JOINPORTORIGIN", "");
sendingDataPortdetails = sendingDataPortdetails.replace("_S_", "");
;
} else {
sendingDataPortdetails = writeChannel.getChannel(j).getOriginPort().getName();
if (writeChannel.getChannel(j).getDestinationPort().getName().contains("FORKPORTDESTINATION")) {
checkchannel = writeChannel.getChannel(j).getDestinationPort().getName().split("_S_");
receiveDataPortdetails = writeChannel.getChannel(j).getDestinationPort().getName().replace("FORKPORTDESTINATION",
"FORKCHANNEL");
} else if (checkchannel.length <= 2) {
receiveDataPortdetails = writeChannel.getChannel(j).getDestinationPort().getName().replace("FORKPORTDESTINATION", "");
receiveDataPortdetails = receiveDataPortdetails.replace("_S_", "");
} else if (writeChannel.getChannel(j).getDestinationPort().getName().contains("JOINPORTDESTINATION")) {
checkchannel = writeChannel.getChannel(j).getDestinationPort().getName().split("_S_");
receiveDataPortdetails = "JOINCHANNEL_S_" + checkchannel[1] + "__" + checkchannel[2];
} else if (checkchannel.length <= 2) {
receiveDataPortdetails = writeChannel.getChannel(j).getDestinationPort().getName().replace("JOINPORTDESTINATION", "");
receiveDataPortdetails = receiveDataPortdetails.replace("_S_", "");
}
} else {
receiveDataPortdetails = writeChannel.getChannel(j).getDestinationPort().getName();
// writeChannel.getChannel(j);
sendingDataPortdetails = writeChannel.getChannel(j).getOriginPort().getName();
receiveDataPortdetails = writeChannel.getChannel(j).getDestinationPort().getName();
}
if (!sendingDataPortdetails.equals(receiveDataPortdetails)) {
sendData.put(sendingDataPortdetails, receiveDataPortdetails);
}
private void readChannelNames() {
// TODO Auto-generated method stub
for (TMLReadChannel readChannel : taskAc.getReadChannels()) {
// name = _ch.getOriginPorts().get(0).getName(); //return the name of the source
// port of the channel
String sendingDataPortdetails = "";
String receiveDataPortdetails = "";
if ((readChannel.getChannel(j)).originalDestinationTasks.size() > 0) {
String[] checkchannel;
if (readChannel.getChannel(j).getOriginPort().getName().contains("FORKPORTORIGIN")) {
checkchannel = readChannel.getChannel(j).getOriginPort().getName().split("_S_");
if (checkchannel.length > 2) {
sendingDataPortdetails = readChannel.getChannel(j).getOriginPort().getName().replace("FORKPORTORIGIN", "FORKCHANNEL");
sendingDataPortdetails = readChannel.getChannel(j).getOriginPort().getName().replace("FORKPORTORIGIN", "");
sendingDataPortdetails = sendingDataPortdetails.replace("_S_", "");
;
} else if (readChannel.getChannel(j).getOriginPort().getName().contains("JOINPORTORIGIN")) {
checkchannel = readChannel.getChannel(j).getOriginPort().getName().split("_S_");
if (checkchannel.length > 2) {
sendingDataPortdetails = readChannel.getChannel(j).getOriginPort().getName().replace("JOINPORTORIGIN", "JOINCHANNEL");
} else if ((checkchannel.length) <= 2) {
sendingDataPortdetails = readChannel.getChannel(j).getOriginPort().getName().replace("JOINPORTORIGIN", "");
sendingDataPortdetails = sendingDataPortdetails.replace("_S_", "");
}
} else {
sendingDataPortdetails = readChannel.getChannel(j).getOriginPort().getName();
}
if (readChannel.getChannel(j).getDestinationPort().getName().contains("FORKPORTDESTINATION")) {
checkchannel = readChannel.getChannel(j).getDestinationPort().getName().split("_S_");
receiveDataPortdetails = readChannel.getChannel(j).getDestinationPort().getName().replace("FORKPORTDESTINATION",
"FORKCHANNEL");
} else if (checkchannel.length <= 2) {
receiveDataPortdetails = readChannel.getChannel(j).getDestinationPort().getName().replace("FORKPORTDESTINATION", "");
receiveDataPortdetails = receiveDataPortdetails.replace("_S_", "");
}
} else if (readChannel.getChannel(j).getDestinationPort().getName().contains("JOINPORTDESTINATION")) {
checkchannel = readChannel.getChannel(j).getDestinationPort().getName().split("_S_");
receiveDataPortdetails = readChannel.getChannel(j).getDestinationPort().getName().replace("JOINPORTDESTINATION",
"JOINCHANNEL");
} else if (checkchannel.length <= 2) {
receiveDataPortdetails = readChannel.getChannel(j).getDestinationPort().getName().replace("JOINPORTDESTINATION", "");
receiveDataPortdetails = receiveDataPortdetails.replace("_S_", "");
}
} else {
receiveDataPortdetails = readChannel.getChannel(j).getDestinationPort().getName();
}
} else {
sendingDataPortdetails = readChannel.getChannel(j).getOriginPort().getName();
receiveDataPortdetails = readChannel.getChannel(j).getDestinationPort().getName();
}
if (!sendingDataPortdetails.equals(receiveDataPortdetails)) {
receiveData.put(receiveDataPortdetails, sendingDataPortdetails);
if (readChannel.getChannel(j).getOriginPort().getReferenceObject() instanceof TMLCPrimitivePort) {
rp = (TMLCPrimitivePort) readChannel.getChannel(j).getOriginPort().getReferenceObject();
if (readChannel.getChannel(j).getOriginPort().getReferenceObject() instanceof TMLCPrimitivePort) {
sp = (TMLCPrimitivePort) readChannel.getChannel(j).getDestinationPort().getReferenceObject();
if (!sp.isBlocking() && !rp.isBlocking()) {
warnings.add("send data port:" + sp.getPortName() + " and read data port:" + rp.getPortName()
+ " are non-blocking. Use tainting for an accurate latency analysis.");
private void sendEventsNames() {
// TODO Auto-generated method stub
for (TMLSendEvent sendEvent : taskAc.getSendEvents()) {
TMLCPrimitivePort sendingPortdetails = sendEvent.getEvent().port;
TMLCPrimitivePort receivePortdetails = sendEvent.getEvent().port2;
String sendingPortparams = sendEvent.getAllParams();
TMLTask destinationTasks = sendEvent.getEvent().getDestinationTask();
sendEvt.put("sendevent:" + sendingPortdetails.getPortName() + "(" + sendingPortparams + ")", new ArrayList<String>());
for (TMLWaitEvent wait_sendEvent : destinationTasks.getWaitEvents()) {
String receivePortparams = wait_sendEvent.getAllParams();
sendEvt.get("sendevent:" + sendingPortdetails.getPortName() + "(" + sendingPortparams + ")")
.add("waitevent:" + receivePortdetails.getPortName() + "(" + receivePortparams + ")");
private void requestedTask(HashSet<TMLTask> value) {
// TODO Auto-generated method stub
for (TMLTask task : value) {
if (task.isRequested()) {
TMLRequest requestToTask = task.getRequest();
requestToTask.ports.get(0).getName();
requestToTask.getExtendedName();
String destinationRequest = requestToTask.getDestinationTask().getName() + "__"
+ requestToTask.getDestinationTask().getActivityDiagram().get(0).getName() + "__"
+ requestToTask.getDestinationTask().getActivityDiagram().get(0).getID();
String destinationRequestName = requestToTask.getDestinationTask().getName();
for (TMLTask originTask : requestToTask.getOriginTasks()) {
String requestOriginTaskName = originTask.getName();
if (requestsOriginDestination.containsKey(requestOriginTaskName)) {
if (!requestsOriginDestination.get(requestOriginTaskName).contains(destinationRequestName)) {
requestsOriginDestination.get(requestOriginTaskName).add(destinationRequestName);
}
} else {
ArrayList<String> destinationRequestNames = new ArrayList<String>();
destinationRequestNames.add(destinationRequestName);
requestsOriginDestination.put(requestOriginTaskName, destinationRequestNames);
}
for (TMLCPrimitivePort requestsPort : requestToTask.ports) {
String requestsPortName = requestsPort.getPortName();
if (requestsPorts.containsKey(task.getName())) {
if (!requestsPorts.get(task.getName()).contains(requestsPortName)) {
requestsPorts.get(task.getName()).add(requestsPortName);
}
} else {
ArrayList<String> requestsPortNames = new ArrayList<String>();
requestsPortNames.add(requestsPortName);
requestsPorts.put(task.getName(), requestsPortNames);
}
if (requestsDestination.containsKey(destinationRequestName)) {
if (!requestsDestination.get(destinationRequestName).contains(destinationRequest)) {
requestsDestination.get(destinationRequestName).add(destinationRequest);
}
} else {
ArrayList<String> destinationRequestNames = new ArrayList<String>();
destinationRequestNames.add(destinationRequest);
requestsDestination.put(destinationRequestName, destinationRequestNames);
}
private void addcurrentElementVertex(String taskName, String taskStartName) {
// TODO Auto-generated method stub
int preEventid;
String eventName = getEventName(taskName, currentElement);
if (activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADRandom) {
preEventName = taskName + "__" + activity.getPrevious(currentElement).getName() + "__" + activity.getPrevious(currentElement).getID();
preEventid = activity.getPrevious(currentElement).getID();
} else if (activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADUnorderedSequence) {
preEventName = taskName + "__" + "unOrderedSequence" + "__" + activity.getPrevious(currentElement).getID();
preEventid = activity.getPrevious(currentElement).getID();
} else {
preEventName = taskName + "__" + activity.getPrevious(currentElement).getReferenceObject().toString() + "__"
+ activity.getPrevious(currentElement).getID();
preEventid = activity.getPrevious(currentElement).getID();
if (((activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADExecI
|| activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADExecC)
&& activity.getPrevious(currentElement).getValue().equals("0"))
|| ((activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADDelay)
&& ((TMLADDelay) activity.getPrevious(currentElement).getReferenceObject()).getDelayValue().equals("0"))
|| ((activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADDelayInterval)
&& (((TMLADDelayInterval) activity.getPrevious(currentElement).getReferenceObject()).getMinDelayValue().equals("0")
&& ((TMLADDelayInterval) activity.getPrevious(currentElement).getReferenceObject()).getMaxDelayValue().equals("0")))
|| ((activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADExecCInterval)
&& (((TMLADExecCInterval) activity.getPrevious(currentElement).getReferenceObject()).getMinDelayValue().equals("0")
&& ((TMLADExecCInterval) activity.getPrevious(currentElement).getReferenceObject()).getMaxDelayValue().equals("0"))
|| ((activity.getPrevious(currentElement).getReferenceObject() instanceof TMLADExecIInterval)
&& (((TMLADExecIInterval) activity.getPrevious(currentElement).getReferenceObject()).getMinDelayValue().equals("0")
&& ((TMLADExecIInterval) activity.getPrevious(currentElement).getReferenceObject()).getMaxDelayValue()
.equals("0")))))
if (activity.getPrevious(activity.getPrevious(currentElement)).getReferenceObject() instanceof TMLADRandom) {
preEventName = taskName + "__" + activity.getPrevious(activity.getPrevious(currentElement)).getName() + "__"
+ activity.getPrevious(activity.getPrevious(currentElement)).getID();
preEventid = activity.getPrevious(activity.getPrevious(currentElement)).getID();
} else if (activity.getPrevious(activity.getPrevious(currentElement)).getReferenceObject() instanceof TMLADUnorderedSequence) {
preEventName = taskName + "__" + "unOrderedSequence" + "__" + activity.getPrevious(activity.getPrevious(currentElement)).getID();
preEventid = activity.getPrevious(activity.getPrevious(currentElement)).getID();
} else {
preEventName = taskName + "__" + activity.getPrevious(activity.getPrevious(currentElement)).getReferenceObject().toString() + "__"
+ activity.getPrevious(activity.getPrevious(currentElement)).getID();
preEventid = activity.getPrevious(activity.getPrevious(currentElement)).getID();
if (!nameIDTaskList.containsKey(currentElement.getID())) {
nameIDTaskList.put(String.valueOf(currentElement.getID()), eventName);
}
if (g.containsVertex(getvertex(preEventName))) {
vertex preV = vertex(preEventName, preEventid);
g.addVertex(v);
// gVertecies.add(vertex(eventName));
} else if ((activity.getPrevious(currentElement).getName().equals("start")) && g.containsVertex(getvertex(taskStartName))) {
vertex v = vertex(eventName, eventid);
g.addVertex(v);
// gVertecies.add(vertex(eventName));
g.addEdge(getvertex(taskStartName), getvertex(eventName));
opCount++;
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if (currentElement.getReferenceObject() instanceof TMLADSendEvent || currentElement.getReferenceObject() instanceof TMLADWaitEvent
|| currentElement.getReferenceObject() instanceof TMLADSendRequest
|| currentElement.getReferenceObject() instanceof TMLADNotifiedEvent
|| currentElement.getReferenceObject() instanceof TMLADReadChannel || currentElement.getReferenceObject() instanceof TMLADWriteChannel
|| (currentElement.getReferenceObject() instanceof TMLADExecI && !currentElement.getValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADExecC && !currentElement.getValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADDelay
&& !((TMLADDelay) currentElement.getReferenceObject()).getDelayValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADDelayInterval
&& !((TMLADDelayInterval) currentElement.getReferenceObject()).getMinDelayValue().equals("0")
&& !((TMLADDelayInterval) currentElement.getReferenceObject()).getMaxDelayValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADExecCInterval
&& !((TMLADExecCInterval) currentElement.getReferenceObject()).getMinDelayValue().equals("0")
&& ((TMLADExecCInterval) currentElement.getReferenceObject()).getMaxDelayValue().equals("0"))
|| (currentElement.getReferenceObject() instanceof TMLADExecIInterval
&& !((TMLADExecIInterval) currentElement.getReferenceObject()).getMinDelayValue().equals("0")
&& !((TMLADExecIInterval) currentElement.getReferenceObject()).getMaxDelayValue().equals("0"))
|| currentElement.getReferenceObject() instanceof TMLADEncrypt || currentElement.getReferenceObject() instanceof TMLADDecrypt
|| currentElement.getReferenceObject() instanceof TMLADReadRequestArg) {
allLatencyTasks.add(eventName);
getvertex(eventName).setType(vertex.TYPE_TRANSACTION);
getvertex(eventName).setTaintFixedNumber(1);
} else if (currentElement.getReferenceObject() instanceof TMLADRandom) {
getvertex(eventName).setType(vertex.TYPE_CTRL);
getvertex(eventName).setTaintFixedNumber(1);
} else if (currentElement.getReferenceObject() instanceof TMLADSelectEvt) {
getvertex(eventName).setType(vertex.TYPE_CTRL);
getvertex(eventName).setTaintFixedNumber(1);
} else if (currentElement.getReferenceObject() instanceof TMLADActionState) {
getvertex(eventName).setType(vertex.TYPE_CTRL);
getvertex(eventName).setTaintFixedNumber(1);
if (currentElement.getReferenceObject() instanceof TMLADForEverLoop) {
forEverLoopList.add(eventName);
getvertex(eventName).setType(vertex.TYPE_FOR_EVER_LOOP);
getvertex(eventName).setTaintFixedNumber(Integer.MAX_VALUE);
if (currentElement.getReferenceObject() instanceof TMLADChoice) {
getvertex(eventName).setType(vertex.TYPE_CHOICE);
getvertex(eventName).setTaintFixedNumber(1);
if (currentElement.getReferenceObject() instanceof TMLADSendRequest) {
if (requestsOriginDestination.containsKey(taskName)) {
for (String destinationTask : requestsOriginDestination.get(taskName)) {
if (requestsPorts.containsKey(destinationTask)) {
for (String portNames : requestsPorts.get(destinationTask)) {
String[] requestName = currentElement.getReferenceObject().toString().split(":");
String[] portname = requestName[1].split("[(]");
if (portname[0].replaceAll(" ", "").equals(portNames.replaceAll(" ", ""))) {
for (String destinationTaskstartname : requestsDestination.get(destinationTask)) {
if (requestEdges.containsKey(eventName)) {
if (!requestEdges.get(eventName).contains(destinationTaskstartname)) {
requestEdges.get(eventName).add(destinationTaskstartname);
} else {
HashSet<String> destinationTaskoriginstart = new HashSet<String>();
destinationTaskoriginstart.add(destinationTaskstartname);
requestEdges.put(eventName, destinationTaskoriginstart);
}
}
if (currentElement.getReferenceObject() instanceof TMLADSendEvent) {
if (sendEvt.containsKey(currentElement.getReferenceObject().toString().replaceAll(" ", ""))) {
List<String> recieveEvt = sendEvt.get(currentElement.getReferenceObject().toString().replaceAll(" ", ""));
String[] vertexName = vertex.toString().split("__");
if ((n.replaceAll(" ", "").equals((vertexName[2].toString().replaceAll(" ", ""))))) {
HashSet<String> waitEventVertex = new HashSet<String>();