+ ResultBodyPtr aResult = std::dynamic_pointer_cast<ModelAPI_ResultBody>(*aRIter);
+ allSubs(aResult, theResults);
+ }
+}
+
+//******************************************************************
+bool allDocumentsActivated(std::string& theNotActivatedNames)
+{
+ theNotActivatedNames = "";
+ bool anAllPartActivated = true;
+
+ DocumentPtr aRootDoc = ModelAPI_Session::get()->moduleDocument();
+ int aSize = aRootDoc->size(ModelAPI_ResultPart::group());
+ for (int i = 0; i < aSize; i++) {
+ ObjectPtr aObject = aRootDoc->object(ModelAPI_ResultPart::group(), i);
+ ResultPartPtr aPart = std::dynamic_pointer_cast<ModelAPI_ResultPart>(aObject);
+ if (!aPart->isActivated()) {
+ anAllPartActivated = false;
+ if (!theNotActivatedNames.empty())
+ theNotActivatedNames += ", ";
+ theNotActivatedNames += aObject->data()->name().c_str();
+ }
+ }
+ return anAllPartActivated;
+}
+
+bool removeFeaturesAndReferences(const std::set<FeaturePtr>& theFeatures,
+ const bool theFlushRedisplay,
+ const bool theUseComposite,
+ const bool theUseRecursion)
+{
+#ifdef DEBUG_REMOVE_FEATURES
+ printListInfo(theFeatures, "selection: ");
+#endif
+
+ std::map<FeaturePtr, std::set<FeaturePtr> > aReferences;
+ ModelAPI_Tools::findAllReferences(theFeatures, aReferences, theUseComposite, theUseRecursion);
+#ifdef DEBUG_REMOVE_FEATURES
+ printMapInfo(aReferences, "allDependencies: ");
+#endif
+
+ std::set<FeaturePtr> aFeaturesRefsTo;
+ ModelAPI_Tools::findRefsToFeatures(theFeatures, aReferences, aFeaturesRefsTo);
+#ifdef DEBUG_REMOVE_FEATURES
+ printListInfo(aFeaturesRefsTo, "references: ");
+#endif
+
+ std::set<FeaturePtr> aFeatures = theFeatures;
+ if (!aFeaturesRefsTo.empty())
+ aFeatures.insert(aFeaturesRefsTo.begin(), aFeaturesRefsTo.end());
+#ifdef DEBUG_REMOVE_FEATURES
+ printListInfo(aFeatures, "removeFeatures: ");
+#endif
+
+ return ModelAPI_Tools::removeFeatures(aFeatures, false);
+}
+
+//***********************************************************************
+bool removeFeatures(const std::set<FeaturePtr>& theFeatures,
+ const bool theFlushRedisplay)
+{
+ bool isDone = false;
+ std::set<FeaturePtr>::const_iterator anIt = theFeatures.begin(),
+ aLast = theFeatures.end();
+ for (; anIt != aLast; anIt++) {
+ FeaturePtr aFeature = *anIt;
+ if (aFeature.get()) {
+ DocumentPtr aDoc = aFeature->document();
+ // flush REDISPLAY signal after remove feature
+ aDoc->removeFeature(aFeature);
+ isDone = true;
+ }
+ }
+ if (isDone && theFlushRedisplay) {
+ // the redisplay signal should be flushed in order to erase
+ // the feature presentation in the viewer
+ // if should be done after removeFeature() of document
+ Events_Loop::loop()->flush(Events_Loop::loop()->eventByName(EVENT_OBJECT_TO_REDISPLAY));
+ }
+ return true;
+}
+
+//***********************************************************************
+// Fills the references list by all references of the feature from the references map.
+// This is a recusive method to find references by next found feature in the map of references.
+// \param theFeature a feature to find references
+// \param theReferencesMap a map of references
+// \param theReferences an out container of references
+void addRefsToFeature(const FeaturePtr& theFeature,
+ const std::map<FeaturePtr, std::set<FeaturePtr> >& theReferencesMap,
+ int theRecLevel,
+ std::set<FeaturePtr>& theReferences)
+{
+ if (theRecLevel > RECURSE_TOP_LEVEL)
+ return;
+ theRecLevel++;
+
+ if (theReferencesMap.find(theFeature) == theReferencesMap.end())
+ return; // this feature is not in the selection list, so exists without references to it
+ std::set<FeaturePtr> aMainReferences = theReferencesMap.at(theFeature);
+
+ std::set<FeaturePtr>::const_iterator anIt = aMainReferences.begin(),
+ aLast = aMainReferences.end();
+ for (; anIt != aLast; anIt++) {
+ FeaturePtr aRefFeature = *anIt;
+ if (theReferences.find(aRefFeature) == theReferences.end()) {
+ addRefsToFeature(aRefFeature, theReferencesMap, theRecLevel, theReferences);
+ theReferences.insert(aRefFeature);
+ }
+ }
+}
+
+// For each feature from the feature list it searches references to the feature and append them
+// to the references map. This is a recusive method.
+// \param theFeature a feature to find references
+// \param theReferencesMap a map of references
+// \param theReferences an out container of references
+void findReferences(const std::set<FeaturePtr>& theFeatures,
+ std::map<FeaturePtr, std::set<FeaturePtr> >& theReferences,
+ const bool theUseComposite, const bool theUseRecursion, int theRecLevel)
+{
+ if (theRecLevel > RECURSE_TOP_LEVEL)
+ return;
+ theRecLevel++;
+ std::set<FeaturePtr>::const_iterator anIt = theFeatures.begin(),
+ aLast = theFeatures.end();
+ for (; anIt != aLast; anIt++) {
+ FeaturePtr aFeature = *anIt;
+ if (aFeature.get() && theReferences.find(aFeature) == theReferences.end()) {
+ DocumentPtr aSelFeatureDoc = aFeature->document();
+ std::set<FeaturePtr> aSelRefFeatures;
+ aSelFeatureDoc->refsToFeature(aFeature, aSelRefFeatures, false/*do not emit signals*/);
+ if (theUseComposite) { // do not filter selection
+ theReferences[aFeature] = aSelRefFeatures;
+ }
+ else { // filter references to skip composition features of the current feature
+ std::set<FeaturePtr> aFilteredFeatures;
+ std::set<FeaturePtr>::const_iterator anIt = aSelRefFeatures.begin(),
+ aLast = aSelRefFeatures.end();
+ for (; anIt != aLast; anIt++) {
+ FeaturePtr aCFeature = *anIt;
+ CompositeFeaturePtr aComposite =
+ std::dynamic_pointer_cast<ModelAPI_CompositeFeature>(aCFeature);
+ if (aComposite.get() && aComposite->isSub(aFeature))
+ continue; /// composite of the current feature should be skipped
+ aFilteredFeatures.insert(aCFeature);
+ }
+ theReferences[aFeature] = aFilteredFeatures;
+ }
+ if (theUseRecursion) {
+#ifdef DEBUG_CYCLING_1550
+ findReferences(aSelRefFeatures, theReferences, theUseComposite,
+ theUseRecursion, theRecLevel);
+#else
+ findReferences(theReferences[aFeature], theReferences, theUseComposite, theUseRecursion,
+ theRecLevel);
+#endif