use of io.automatiko.engine.api.definition.process.NodeContainer in project automatiko-engine by automatiko-io.
the class ServiceTaskDescriptor method collectHandledErrorCodes.
private Set<String> collectHandledErrorCodes() {
Set<String> errorCodes = new HashSet<>();
NodeContainer container = workItemNode.getParentContainer();
String thisNodeId = (String) workItemNode.getMetaData("UniqueId");
for (Node node : container.getNodes()) {
if (node instanceof BoundaryEventNode) {
String errorCode = (String) node.getMetaData().get("ErrorEvent");
if (errorCode != null && ((BoundaryEventNode) node).getAttachedToNodeId().equals(thisNodeId)) {
errorCodes.add(errorCode);
}
}
}
// next collect event subprocess node with error start event from this level and to all parents
String replaceRegExp = "Error-|Escalation-";
for (Node node : container.getNodes()) {
if (node instanceof EventSubProcessNode) {
EventSubProcessNode eventSubProcessNode = (EventSubProcessNode) node;
Node[] nodes = eventSubProcessNode.getNodes();
for (Node subNode : nodes) {
// avoids cyclomatic complexity
if (subNode == null || !(subNode instanceof StartNode)) {
continue;
}
List<Trigger> triggers = ((StartNode) subNode).getTriggers();
if (triggers == null) {
continue;
}
for (Trigger trigger : triggers) {
if (trigger instanceof EventTrigger) {
final List<EventFilter> filters = ((EventTrigger) trigger).getEventFilters();
for (EventFilter filter : filters) {
if (filter instanceof EventTypeFilter) {
eventSubProcessNode.addEvent((EventTypeFilter) filter);
String type = ((EventTypeFilter) filter).getType();
if (type.startsWith("Error-")) {
String trimmedType = type.replaceFirst(replaceRegExp, "");
for (String error : trimmedType.split(",")) {
errorCodes.add(error);
}
}
}
}
}
}
}
}
}
return errorCodes;
}
use of io.automatiko.engine.api.definition.process.NodeContainer in project automatiko-engine by automatiko-io.
the class ExecutableProcessValidator method validateCompensationIntermediateOrEndEvent.
protected void validateCompensationIntermediateOrEndEvent(Node node, ExecutableProcess process, List<ProcessValidationError> errors) {
if (node.getMetaData().containsKey("Compensation")) {
// Validate that activityRef in throw/end compensation event refers to "visible"
// compensation
String activityRef = (String) node.getMetaData().get("Compensation");
Node refNode = null;
if (activityRef != null) {
Queue<Node> nodeQueue = new LinkedList<>();
nodeQueue.addAll(Arrays.asList(process.getNodes()));
while (!nodeQueue.isEmpty()) {
Node polledNode = nodeQueue.poll();
if (activityRef.equals(polledNode.getMetaData().get("UniqueId"))) {
refNode = polledNode;
break;
}
if (node instanceof NodeContainer) {
nodeQueue.addAll(Arrays.asList(((NodeContainer) node).getNodes()));
}
}
}
if (refNode == null) {
addErrorMessage(process, node, errors, "Does not reference an activity that exists (" + activityRef + ") in its compensation event definition.");
}
CompensationScope compensationScope = (CompensationScope) ((NodeImpl) node).resolveContext(CompensationScope.COMPENSATION_SCOPE, activityRef);
if (compensationScope == null) {
addErrorMessage(process, node, errors, "References an activity (" + activityRef + ") in its compensation event definition that is not visible to it.");
}
}
}
use of io.automatiko.engine.api.definition.process.NodeContainer in project automatiko-engine by automatiko-io.
the class CompensationEventListener method findNode.
private Node findNode(String nodeId) {
Node found = null;
Queue<Node> allProcessNodes = new LinkedList<>();
allProcessNodes.addAll(Arrays.asList(instance.getNodeContainer().getNodes()));
while (!allProcessNodes.isEmpty()) {
Node node = allProcessNodes.poll();
if (nodeId.equals(node.getMetaData().get("UniqueId"))) {
found = node;
break;
}
if (node instanceof NodeContainer) {
allProcessNodes.addAll(Arrays.asList(((NodeContainer) node).getNodes()));
}
}
return found;
}
use of io.automatiko.engine.api.definition.process.NodeContainer in project automatiko-engine by automatiko-io.
the class ExecutableProcessFactory method postProcessNodes.
private void postProcessNodes(ExecutableProcess process, NodeContainer container) {
List<String> eventSubProcessHandlers = new ArrayList<String>();
for (Node node : container.getNodes()) {
if (node instanceof NodeContainer) {
// prepare event sub process
if (node instanceof EventSubProcessNode) {
EventSubProcessNode eventSubProcessNode = (EventSubProcessNode) node;
Node[] nodes = eventSubProcessNode.getNodes();
for (Node subNode : nodes) {
// avoids cyclomatic complexity
if (subNode instanceof StartNode) {
processEventSubprocessStartNode(process, ((StartNode) subNode), eventSubProcessNode, eventSubProcessHandlers);
}
}
}
postProcessNodes(process, (NodeContainer) node);
}
}
// process fault node to disable termnate parent if there is event subprocess handler
for (Node node : container.getNodes()) {
if (node instanceof FaultNode) {
FaultNode faultNode = (FaultNode) node;
if (eventSubProcessHandlers.contains(faultNode.getFaultName())) {
faultNode.setTerminateParent(false);
}
}
}
}
use of io.automatiko.engine.api.definition.process.NodeContainer in project automatiko-engine by automatiko-io.
the class ProcessHandler method postProcessNodes.
private void postProcessNodes(ExecutableProcess process, NodeContainer container) {
List<String> eventSubProcessHandlers = new ArrayList<String>();
for (Node node : container.getNodes()) {
if (node instanceof StartNode) {
List<DataAssociation> associations = ((StartNode) node).getOutAssociations();
if (associations != null) {
for (DataAssociation da : associations) {
VariableScope scope = (VariableScope) process.getDefaultContext(VariableScope.VARIABLE_SCOPE);
Variable variable = scope.findVariable(da.getTarget());
if (variable != null) {
da.setTarget(variable.getName());
}
}
}
} else if (node instanceof StateNode) {
StateNode stateNode = (StateNode) node;
String condition = (String) stateNode.getMetaData("Condition");
stateNode.setCondition(context -> {
return (boolean) MVEL.executeExpression(condition, context.getProcessInstance().getVariables());
});
} else if (node instanceof NodeContainer) {
// prepare event sub process
if (node instanceof EventSubProcessNode) {
EventSubProcessNode eventSubProcessNode = (EventSubProcessNode) node;
Node[] nodes = eventSubProcessNode.getNodes();
for (Node subNode : nodes) {
// avoids cyclomatic complexity
if (subNode == null || !(subNode instanceof StartNode)) {
continue;
}
List<Trigger> triggers = ((StartNode) subNode).getTriggers();
if (triggers == null) {
continue;
}
for (Trigger trigger : triggers) {
if (trigger instanceof EventTrigger) {
final List<EventFilter> filters = ((EventTrigger) trigger).getEventFilters();
for (EventFilter filter : filters) {
if (filter instanceof EventTypeFilter) {
eventSubProcessNode.addEvent((EventTypeFilter) filter);
String type = ((EventTypeFilter) filter).getType();
if (type.startsWith("Error-") || type.startsWith("Escalation")) {
String faultCode = (String) subNode.getMetaData().get("FaultCode");
String replaceRegExp = "Error-|Escalation-";
final String signalType = type;
ExceptionScope exceptionScope = (ExceptionScope) ((ContextContainer) eventSubProcessNode.getParentContainer()).getDefaultContext(ExceptionScope.EXCEPTION_SCOPE);
if (exceptionScope == null) {
exceptionScope = new ExceptionScope();
((ContextContainer) eventSubProcessNode.getParentContainer()).addContext(exceptionScope);
((ContextContainer) eventSubProcessNode.getParentContainer()).setDefaultContext(exceptionScope);
}
String faultVariable = null;
if (trigger.getInAssociations() != null && !trigger.getInAssociations().isEmpty()) {
faultVariable = findVariable(trigger.getInAssociations().get(0).getSources().get(0), process.getVariableScope());
}
ActionExceptionHandler exceptionHandler = new ActionExceptionHandler();
ConsequenceAction action = new ConsequenceAction("java", "");
action.setMetaData("Action", new SignalProcessInstanceAction(signalType, faultVariable, SignalProcessInstanceAction.PROCESS_INSTANCE_SCOPE));
exceptionHandler.setAction(action);
exceptionHandler.setFaultVariable(faultVariable);
exceptionHandler.setRetryAfter((Integer) subNode.getMetaData().get("ErrorRetry"));
exceptionHandler.setRetryIncrement((Integer) subNode.getMetaData().get("ErrorRetryIncrement"));
if (subNode.getMetaData().get("ErrorRetryIncrementMultiplier") != null) {
exceptionHandler.setRetryIncrementMultiplier(((Number) subNode.getMetaData().get("ErrorRetryIncrementMultiplier")).floatValue());
}
exceptionHandler.setRetryLimit((Integer) subNode.getMetaData().get("ErrorRetryLimit"));
if (faultCode != null) {
String trimmedType = type.replaceFirst(replaceRegExp, "");
for (String error : trimmedType.split(",")) {
exceptionScope.setExceptionHandler(error, exceptionHandler);
eventSubProcessHandlers.add(error);
}
} else {
exceptionScope.setExceptionHandler(faultCode, exceptionHandler);
}
} else if (type.equals("Compensation")) {
// 1. Find the parent sub-process to this event sub-process
NodeContainer parentSubProcess;
NodeContainer subProcess = eventSubProcessNode.getParentContainer();
Object isForCompensationObj = eventSubProcessNode.getMetaData("isForCompensation");
if (isForCompensationObj == null) {
eventSubProcessNode.setMetaData("isForCompensation", true);
logger.warn("Overriding empty or false value of \"isForCompensation\" attribute on Event Sub-Process [" + eventSubProcessNode.getMetaData("UniqueId") + "] and setting it to true.");
}
if (subProcess instanceof ExecutableProcess) {
// (instance)?!?
throw new IllegalArgumentException("Compensation Event Sub-Processes at the process level are not supported.");
}
parentSubProcess = ((Node) subProcess).getParentContainer();
// 2. The event filter (never fires, purely for dumping purposes) has
// already been added
// 3. Add compensation scope
String compensationHandlerId = (String) ((CompositeNode) subProcess).getMetaData("UniqueId");
addCompensationScope(process, eventSubProcessNode, parentSubProcess, compensationHandlerId);
}
}
}
} else if (trigger instanceof ConstraintTrigger) {
ConstraintTrigger constraintTrigger = (ConstraintTrigger) trigger;
if (constraintTrigger.getConstraint() != null) {
String processId = ((ExecutableProcess) container).getId();
String type = "RuleFlowStateEventSubProcess-Event-" + processId + "-" + eventSubProcessNode.getUniqueId();
EventTypeFilter eventTypeFilter = new EventTypeFilter();
eventTypeFilter.setType(type);
eventSubProcessNode.addEvent(eventTypeFilter);
eventSubProcessNode.addEvent("variableChanged");
((StartNode) subNode).setCondition(context -> {
return (boolean) MVEL.executeExpression(constraintTrigger.getConstraint(), context.getProcessInstance().getVariables());
});
}
}
}
}
// for( Node subNode : nodes)
}
postProcessNodes(process, (NodeContainer) node);
} else if (node instanceof EndNode) {
handleIntermediateOrEndThrowCompensationEvent((EndNode) node);
} else if (node instanceof ActionNode) {
handleIntermediateOrEndThrowCompensationEvent((ActionNode) node);
} else if (node instanceof EventNode) {
final EventNode eventNode = (EventNode) node;
if (!(eventNode instanceof BoundaryEventNode) && eventNode.getDefaultIncomingConnections().size() == 0) {
throw new IllegalArgumentException("Event node '" + node.getName() + "' [" + node.getId() + "] has no incoming connection");
}
}
}
// handler
for (Node node : container.getNodes()) {
if (node instanceof FaultNode) {
FaultNode faultNode = (FaultNode) node;
if (eventSubProcessHandlers.contains(faultNode.getFaultName())) {
faultNode.setTerminateParent(false);
}
}
}
}
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