+std::shared_ptr<GeomAPI_Shape> shape(const ResultPtr& theResult)
+{
+ return theResult->shape();
+}
+
+const char* toString(ModelAPI_ExecState theExecState)
+{
+#define TO_STRING(__NAME__) case __NAME__: return #__NAME__;
+ switch (theExecState) {
+ TO_STRING(ModelAPI_StateDone)
+ TO_STRING(ModelAPI_StateMustBeUpdated)
+ TO_STRING(ModelAPI_StateExecFailed)
+ TO_STRING(ModelAPI_StateInvalidArgument)
+ TO_STRING(ModelAPI_StateNothing)
+ default: return "Unknown ExecState.";
+ }
+#undef TO_STRING
+}
+
+std::string getFeatureError(const FeaturePtr& theFeature)
+{
+ std::string anError;
+ if (!theFeature.get() || !theFeature->data()->isValid() || theFeature->isAction())
+ return anError;
+
+ // to be removed later, this error should be got from the feature
+ if (theFeature->data()->execState() == ModelAPI_StateDone ||
+ theFeature->data()->execState() == ModelAPI_StateMustBeUpdated)
+ return anError;
+
+ // set error indication
+ anError = theFeature->error();
+ if (anError.empty()) {
+ bool isDone = ( theFeature->data()->execState() == ModelAPI_StateDone
+ || theFeature->data()->execState() == ModelAPI_StateMustBeUpdated );
+ if (!isDone) {
+ anError = toString(theFeature->data()->execState());
+ // If the feature is Composite and error is StateInvalidArgument,
+ // error text should include error of first invalid sub-feature. Otherwise
+ // it is not clear what is the reason of the invalid argument.
+ if (theFeature->data()->execState() == ModelAPI_StateInvalidArgument) {
+ CompositeFeaturePtr aComposite =
+ std::dynamic_pointer_cast<ModelAPI_CompositeFeature>(theFeature);
+ if (aComposite) {
+ for (int i = 0, aSize = aComposite->numberOfSubs(); i < aSize; i++) {
+ FeaturePtr aSubFeature = aComposite->subFeature(i);
+ std::string aSubFeatureError = getFeatureError(aSubFeature);
+ if (!aSubFeatureError.empty()) {
+ anError = anError + " in " + aSubFeature->getKind() + ".\n" + aSubFeatureError;
+ break;
+ }
+ }
+ }
+ }
+ }
+ }
+
+ return anError;
+}
+
+ObjectPtr objectByName(const DocumentPtr& theDocument, const std::string& theGroup,
+ const std::string& theName)
+{
+ for (int anIndex = 0; anIndex < theDocument->size(theGroup); ++anIndex) {
+ ObjectPtr anObject = theDocument->object(theGroup, anIndex);
+ if (anObject->data()->name() == theName)
+ return anObject;
+ }
+ // not found
+ return ObjectPtr();
+}
+
+bool findVariable(const DocumentPtr& theDocument, FeaturePtr theSearcher,
+ const std::string& theName, double& outValue, ResultParameterPtr& theParam)
+{
+ ObjectPtr aParamObj = objectByName(theDocument, ModelAPI_ResultParameter::group(), theName);
+ theParam = std::dynamic_pointer_cast<ModelAPI_ResultParameter>(aParamObj);
+ if (!theParam.get())
+ return false;
+ // avoid usage of parameters created later than the initial parameter
+
+ if (theSearcher.get()) {
+ FeaturePtr aParamFeat = theDocument->feature(theParam);
+ if (aParamFeat == theSearcher || theDocument->isLater(aParamFeat, theSearcher))
+ return false;
+ }
+ AttributeDoublePtr aValueAttribute = theParam->data()->real(ModelAPI_ResultParameter::VALUE());
+ outValue = aValueAttribute->value();
+ return true;
+}
+
+bool findVariable(FeaturePtr theSearcher, const std::string& theName, double& outValue,
+ ResultParameterPtr& theParam, const DocumentPtr& theDocument)
+{
+ SessionPtr aSession = ModelAPI_Session::get();
+ std::list<DocumentPtr> aDocList;
+ DocumentPtr aDocument = theDocument.get() ? theDocument : aSession->activeDocument();
+ if (findVariable(aDocument, theSearcher, theName, outValue, theParam))
+ return true;
+ DocumentPtr aRootDocument = aSession->moduleDocument();
+ if (aDocument != aRootDocument) {
+ // any parameters in PartSet is okindependently on the Part position (issu #1504)
+ if (findVariable(aRootDocument, FeaturePtr(), theName, outValue, theParam))
+ return true;
+ }
+ return false;
+}
+
+ResultPtr findPartResult(const DocumentPtr& theMain, const DocumentPtr& theSub)
+{
+ // to optimize and avoid of crash on partset document close
+ // (don't touch the sub-document structure)
+ if (theMain != theSub) {
+ for (int a = theMain->size(ModelAPI_ResultPart::group()) - 1; a >= 0; a--) {
+ ResultPartPtr aPart = std::dynamic_pointer_cast<ModelAPI_ResultPart>(
+ theMain->object(ModelAPI_ResultPart::group(), a));
+ if (aPart && aPart->data()->document(ModelAPI_ResultPart::DOC_REF())->value() == theSub) {
+ return aPart;
+ }
+ }
+ }
+ return ResultPtr();
+}
+
+FeaturePtr findPartFeature(const DocumentPtr& theMain, const DocumentPtr& theSub)
+{
+ // to optimize and avoid of crash on partset document close
+ // (don't touch the sub-document structure)
+ if (theMain != theSub) {
+ // iteration from top to bottom to avoid finding the movement documents before the original
+ int aSize = theMain->size(ModelAPI_Feature::group());
+ for (int a = 0; a < aSize; a++) {
+ FeaturePtr aPartFeat = std::dynamic_pointer_cast<ModelAPI_Feature>(
+ theMain->object(ModelAPI_Feature::group(), a));
+ if (aPartFeat.get()) {
+ const std::list<std::shared_ptr<ModelAPI_Result> >& aResList = aPartFeat->results();
+ std::list<std::shared_ptr<ModelAPI_Result> >::const_iterator aRes = aResList.begin();
+ for(; aRes != aResList.end(); aRes++) {
+ ResultPartPtr aPart = std::dynamic_pointer_cast<ModelAPI_ResultPart>(*aRes);
+ if (aPart.get()) {
+ if (aPart->isActivated() && aPart->partDoc() == theSub)
+ return aPartFeat;
+ } else break; // if the first is not Part, others are also not
+ }
+ }
+ }
+ }
+ return FeaturePtr();
+}
+
+CompositeFeaturePtr compositeOwner(const FeaturePtr& theFeature)
+{
+ if (theFeature.get() && theFeature->data()->isValid()) {
+ const std::set<std::shared_ptr<ModelAPI_Attribute> >& aRefs = theFeature->data()->refsToMe();
+ std::set<std::shared_ptr<ModelAPI_Attribute> >::const_iterator aRefIter = aRefs.begin();
+ for(; aRefIter != aRefs.end(); aRefIter++) {
+ CompositeFeaturePtr aComp = std::dynamic_pointer_cast<ModelAPI_CompositeFeature>
+ ((*aRefIter)->owner());
+ if (aComp.get() && aComp->data()->isValid() && aComp->isSub(theFeature))
+ return aComp;
+ }
+ }
+ return CompositeFeaturePtr(); // not found
+}
+
+ResultCompSolidPtr compSolidOwner(const ResultPtr& theSub)
+{
+ int anIndex;
+ ResultBodyPtr aBody = std::dynamic_pointer_cast<ModelAPI_ResultBody>(theSub);
+ if (aBody.get()) {
+ FeaturePtr aFeatureOwner = aBody->document()->feature(aBody);
+ if (aFeatureOwner.get()) {
+ std::list<std::shared_ptr<ModelAPI_Result> >::const_iterator aResIter =
+ aFeatureOwner->results().cbegin();
+ for(; aResIter != aFeatureOwner->results().cend(); aResIter++) {
+ ResultCompSolidPtr aComp = std::dynamic_pointer_cast<ModelAPI_ResultCompSolid>(*aResIter);
+ if (aComp && aComp->isSub(aBody, anIndex))
+ return aComp;
+ }
+ }
+ }
+ return ResultCompSolidPtr(); // not found
+}
+
+int compSolidIndex(const ResultPtr& theSub)
+{
+ int anIndex = -1;
+ ResultBodyPtr aBody = std::dynamic_pointer_cast<ModelAPI_ResultBody>(theSub);
+ if (aBody.get()) {
+ FeaturePtr aFeatureOwner = aBody->document()->feature(aBody);
+ if (aFeatureOwner.get()) {
+ std::list<std::shared_ptr<ModelAPI_Result> >::const_iterator aResIter =
+ aFeatureOwner->results().cbegin();
+ for(; aResIter != aFeatureOwner->results().cend(); aResIter++) {
+ ResultCompSolidPtr aComp = std::dynamic_pointer_cast<ModelAPI_ResultCompSolid>(*aResIter);
+ if (aComp && aComp->isSub(aBody, anIndex))
+ return anIndex;
+ }
+ }
+ }
+ return anIndex; // not found
+}
+
+bool hasSubResults(const ResultPtr& theResult)
+{
+ ResultCompSolidPtr aCompSolid = std::dynamic_pointer_cast<ModelAPI_ResultCompSolid>(theResult);
+ return aCompSolid.get() && aCompSolid->numberOfSubs() > 0;
+}
+
+void allResults(const FeaturePtr& theFeature, std::list<ResultPtr>& theResults)
+{
+ if (!theFeature.get()) // safety: for empty feature no results
+ return;
+ const std::list<std::shared_ptr<ModelAPI_Result> >& aResults = theFeature->results();
+ std::list<std::shared_ptr<ModelAPI_Result> >::const_iterator aRIter = aResults.begin();
+ for (; aRIter != aResults.cend(); aRIter++) {
+ theResults.push_back(*aRIter);
+ // iterate sub-bodies of compsolid
+ ResultCompSolidPtr aComp = std::dynamic_pointer_cast<ModelAPI_ResultCompSolid>(*aRIter);
+ if (aComp.get()) {
+ int aNumSub = aComp->numberOfSubs();
+ for(int a = 0; a < aNumSub; a++) {
+ theResults.push_back(aComp->subResult(a));
+ }
+ }
+ }
+}
+
+//******************************************************************
+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,
+ std::map<FeaturePtr, std::set<FeaturePtr> >& theProcessedReferences,
+ int theRecLevel,
+ std::set<FeaturePtr>& theReferences)
+{
+ if (theRecLevel > RECURSE_TOP_LEVEL)
+ return;
+ theRecLevel++;