#include "FeaturesPlugin_Validators.h"
+#include "FeaturesPlugin_Union.h"
+
#include <ModelAPI_Attribute.h>
+#include <ModelAPI_AttributeInteger.h>
#include <ModelAPI_AttributeSelectionList.h>
#include <ModelAPI_AttributeString.h>
+#include <ModelAPI_AttributeReference.h>
+#include <ModelAPI_Feature.h>
+#include <ModelAPI_ResultCompSolid.h>
#include <ModelAPI_ResultConstruction.h>
+#include <GeomValidators_BodyShapes.h>
+#include <GeomValidators_FeatureKind.h>
#include <GeomValidators_ShapeType.h>
-//=================================================================================================
+#include <GeomAPI_DataMapOfShapeShape.h>
+#include <GeomAPI_Lin.h>
+#include <GeomAPI_PlanarEdges.h>
+#include <GeomAPI_ShapeExplorer.h>
+#include <GeomAPI_ShapeIterator.h>
+
+#include <GeomAlgoAPI_CompoundBuilder.h>
+#include <GeomAlgoAPI_ShapeBuilder.h>
+#include <GeomAlgoAPI_ShapeTools.h>
+#include <GeomAlgoAPI_WireBuilder.h>
+
+#define _USE_MATH_DEFINES
+#include <math.h>
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorPipePath::isValid(const AttributePtr& theAttribute,
+ const std::list<std::string>& theArguments,
+ std::string& theError) const
+{
+ AttributeSelectionPtr aPathAttrSelection = std::dynamic_pointer_cast<ModelAPI_AttributeSelection>(theAttribute);
+ if(!aPathAttrSelection.get()) {
+ theError = "Error: This validator can only work with path selector in \"Pipe\" feature.";
+ return false;
+ }
+
+ GeomShapePtr aPathShape = aPathAttrSelection->value();
+ ResultPtr aContext = aPathAttrSelection->context();
+ if(!aContext.get()) {
+ theError = "Error: Empty context.";
+ return false;
+ }
+ GeomShapePtr aContextShape = aContext->shape();
+ if(aPathShape.get() && aPathShape->shapeType() == GeomAPI_Shape::WIRE && !aPathShape->isEqual(aContextShape)) {
+ theError = "Error: Local selection of wires not allowed.";
+ return false;
+ }
+
+ return true;
+}
+
+//==================================================================================================
bool FeaturesPlugin_ValidatorPipeLocations::isValid(const std::shared_ptr<ModelAPI_Feature>& theFeature,
const std::list<std::string>& theArguments,
std::string& theError) const
static const std::string aLocationsID = "locations_objects";
if(theFeature->getKind() != "Pipe") {
- theError = "Feature \"" + theFeature->getKind() + "\" does not supported by this validator.";
+ theError = "Error: Feature \"" + theFeature->getKind() + "\" does not supported by this validator.";
return false;
}
AttributeStringPtr aCreationMethodAttr = theFeature->string(aCreationMethodID);
if(!aCreationMethodAttr.get()) {
- theError = "Could not get \"" + aCreationMethodID + "\" attribute.";
+ theError = "Error: Could not get \"" + aCreationMethodID + "\" attribute.";
return false;
}
AttributeSelectionListPtr aBaseObjectsSelectionList = theFeature->selectionList(aBaseObjectsID);
if(!aBaseObjectsSelectionList.get()) {
- theError = "Could not get \"" + aBaseObjectsID + "\" attribute.";
+ theError = "Error: Could not get \"" + aBaseObjectsID + "\" attribute.";
return false;
}
AttributeSelectionListPtr aLocationsSelectionList = theFeature->selectionList(aLocationsID);
if(!aLocationsSelectionList.get()) {
- theError = "Could not get \"" + aBaseObjectsID + "\" attribute.";
+ theError = "Error: Could not get \"" + aBaseObjectsID + "\" attribute.";
return false;
}
if(aLocationsSelectionList->size() > 0 && aLocationsSelectionList->size() != aBaseObjectsSelectionList->size()) {
- theError = "Number of locations should be the same as base objects.";
+ theError = "Error: Number of locations should be the same as base objects.";
return false;
}
return true;
}
-//=================================================================================================
+//==================================================================================================
bool FeaturesPlugin_ValidatorPipeLocations::isNotObligatory(std::string theFeature, std::string theAttribute)
{
return false;
}
-//=================================================================================================
+//==================================================================================================
bool FeaturesPlugin_ValidatorBaseForGeneration::isValid(const AttributePtr& theAttribute,
const std::list<std::string>& theArguments,
std::string& theError) const
{
if(theArguments.empty()) {
- theError = "Validator parameters is empty.";
+ theError = "Error: Validator parameters is empty.";
return false;
}
// Checking attribute.
if(!isValidAttribute(theAttribute, theArguments, theError)) {
if(theError.empty()) {
- theError = "Attribute contains unacceptable shape.";
+ theError = "Error: Attribute contains unacceptable shape.";
}
return false;
}
+ std::set<ResultConstructionPtr> aSelectedSketches;
+ std::set<ResultConstructionPtr> aSelectedSketchesFromObjects;
+ GeomAPI_DataMapOfShapeShape aSelectedWiresFromObjects;
+ std::string anAttributeType = theAttribute->attributeType();
+ if(anAttributeType == ModelAPI_AttributeSelectionList::typeId()) {
+ AttributeSelectionListPtr aListAttr = std::dynamic_pointer_cast<ModelAPI_AttributeSelectionList>(theAttribute);
+ for(int anIndex = 0; anIndex < aListAttr->size(); ++anIndex) {
+ AttributeSelectionPtr aSelectionAttr = aListAttr->value(anIndex);
+ ResultPtr aContext = aSelectionAttr->context();
+ if(!aContext.get()) {
+ theError = "Error: Empty context.";
+ return false;
+ }
+
+ ResultConstructionPtr aResultConstruction = std::dynamic_pointer_cast<ModelAPI_ResultConstruction>(aContext);
+ if(!aResultConstruction.get()) {
+ // It is not a result construction. If shape is compound check that it contains only faces and edges.
+ GeomShapePtr aShape = aSelectionAttr->value();
+ if(!aShape.get()) {
+ aShape = aContext->shape();
+ }
+
+ if(aShape->shapeType() == GeomAPI_Shape::COMPOUND) {
+ for(GeomAPI_ShapeIterator anIt(aShape); anIt.more(); anIt.next()) {
+ GeomShapePtr aSubShape = anIt.current();
+ if(aSubShape->shapeType() != GeomAPI_Shape::EDGE
+ && aSubShape->shapeType() != GeomAPI_Shape::FACE) {
+ theError = "Error: Compound should contain only faces and edges.";
+ return false;
+ }
+ }
+ }
+
+ continue;
+ }
+
+ GeomShapePtr aShape = aSelectionAttr->value();
+ GeomShapePtr aContextShape = aResultConstruction->shape();
+ if(!aShape.get()) {
+ // Whole sketch selected.
+ if(aSelectedSketchesFromObjects.find(aResultConstruction) != aSelectedSketchesFromObjects.cend()) {
+ theError = "Error: Object from this sketch is already selected. Sketch is not allowed for selection.";
+ return false;
+ }
+
+ aSelectedSketches.insert(aResultConstruction);
+ } else {
+ // Object from sketch selected.
+ if(aSelectedSketches.find(aResultConstruction) != aSelectedSketches.cend()) {
+ theError = "Error: Whole sketch with this object is already selected. Don't allow to select this object.";
+ return false;
+ }
+
+ for(GeomAPI_ShapeExplorer anExp(aShape, GeomAPI_Shape::WIRE); anExp.more(); anExp.next()) {
+ GeomShapePtr aWire = anExp.current();
+ if(aWire->orientation() != GeomAPI_Shape::FORWARD) {
+ theError = "Error: Wire with wrong orientation selected.";
+ return false;
+ }
+
+ if(aSelectedWiresFromObjects.isBound(aWire)) {
+ theError = "Error: Objects with such wire already selected. Don't allow to select this object.";
+ return false;
+ }
+
+ aSelectedWiresFromObjects.bind(aWire, aWire);
+ aSelectedSketchesFromObjects.insert(aResultConstruction);
+ }
+ }
+ }
+ }
+
return true;
}
-//=================================================================================================
+//==================================================================================================
bool FeaturesPlugin_ValidatorBaseForGeneration::isValidAttribute(const AttributePtr& theAttribute,
const std::list<std::string>& theArguments,
std::string& theError) const
{
if(!theAttribute.get()) {
- theError = "Empty attribute.";
+ theError = "Error: Empty attribute.";
return false;
}
AttributeSelectionPtr anAttr = std::dynamic_pointer_cast<ModelAPI_AttributeSelection>(theAttribute);
ResultPtr aContext = anAttr->context();
if(!aContext.get()) {
- theError = "Attribute have empty context.";
+ theError = "Error: Attribute have empty context.";
return false;
}
aShape = aContextShape;
}
if(!aShape.get()) {
- theError = "Empty shape selected";
+ theError = "Error: Empty shape selected";
return false;
}
if(aConstruction.get()) {
// Construciotn selected. Check that is is not infinite.
if(aConstruction->isInfinite()) {
- theError = "Infinite constructions is not allowed as base.";
+ theError = "Error: Infinite constructions is not allowed as base.";
return false;
}
return true;
}
}
+
+ return false;
}
if(!aShape->isEqual(aContextShape)) {
// Local selection on body does not allowed.
- theError = "Selected shape is in the local selection. Only global selection is allowed.";
+ theError = "Error: Selected shape is in the local selection. Only global selection is allowed.";
return false;
}
// Check that object is a shape with allowed type.
GeomValidators_ShapeType aShapeTypeValidator;
if(!aShapeTypeValidator.isValid(anAttr, theArguments, theError)) {
- theError = "Selected shape has unacceptable type. Acceptable types are: faces or wires on sketch, \
- whole sketch(if it has at least one face), and whole objects with shape types: ";
+ theError = "Error: Selected shape has unacceptable type. Acceptable types are: faces or wires on sketch, "
+ "whole sketch(if it has at least one face), and whole objects with shape types: ";
std::list<std::string>::const_iterator anIt = theArguments.cbegin();
theError += *anIt;
for(++anIt; anIt != theArguments.cend(); ++anIt) {
}
} else {
- theError = "Following attribute does not supported: " + anAttributeType + ".";
+ theError = "Error: Attribute \"" + anAttributeType + "\" does not supported by this validator.";
return false;
}
return true;
}
-//=================================================================================================
+//==================================================================================================
bool FeaturesPlugin_ValidatorCompositeLauncher::isValid(const AttributePtr& theAttribute,
const std::list<std::string>& theArguments,
std::string& theError) const
{
- FeaturesPlugin_ValidatorBaseForGeneration aBaseValidator;
-
- if(aBaseValidator.isValid(theAttribute, theArguments, theError)) {
- return true;
+ if (theAttribute->attributeType() != ModelAPI_AttributeReference::typeId()) {
+ theError = "Error: The attribute with the " + theAttribute->attributeType() + " type is not processed";
+ return false;
}
+ if (theArguments.size() != 2) {
+ theError = "Error: Wrong parameters in XML definition for " + theAttribute->attributeType() + " type";
+ return false;
+ }
+ // first argument is for the base attribute, second - for skipping feature kind
+ std::list<std::string>::const_iterator anIt = theArguments.begin();
+ std::string aBaseAttributeId = *anIt;
+ FeaturePtr aFeature = ModelAPI_Feature::feature(theAttribute->owner());
+ AttributePtr aBaseAttribute = aFeature->attribute(aBaseAttributeId);
+ if (!aBaseAttribute.get()) {
+ theError = "Wrong parameters in XML definition for " + theAttribute->attributeType() + " type";
+ return false;
+ }
+ if (aBaseAttribute->isInitialized()) // when base list of composite feature is already filled,
+ // this validator is not necessary anymore
+ return true;
- // Check that face selected.
- GeomValidators_ShapeType aShapeType;
+ anIt++;
+ std::string aFeatureAttributeKind = *anIt;
+ GeomValidators_FeatureKind* aValidator = new GeomValidators_FeatureKind();
+ // check whether the selection is on the sketch
std::list<std::string> anArguments;
- anArguments.push_back("face");
- if(aShapeType.isValid(theAttribute, anArguments, theError)) {
- return true;
- }
+ anArguments.push_back(aFeatureAttributeKind);
- theError = "Selected shape is not suitable for this operation";
+ bool aFeatureKind = aValidator->isValid(theAttribute, theArguments, theError);
+ bool aPlanarFace = false;
+ // check if selection has Face selected
+ GeomValidators_ShapeType* aShapeType = new GeomValidators_ShapeType();
+ anArguments.clear();
+ anArguments.push_back("face");
+ aPlanarFace = aShapeType->isValid(theAttribute, anArguments, theError);
- return false;
+ bool aValid = !aFeatureKind && aPlanarFace;
+ return aValid;
}
-//=================================================================================================
-bool FeaturesPlugin_ValidatorCanBeEmpty::isValid(const std::shared_ptr<ModelAPI_Feature>& theFeature,
+//==================================================================================================
+bool FeaturesPlugin_ValidatorExtrusionDir::isValid(const std::shared_ptr<ModelAPI_Feature>& theFeature,
const std::list<std::string>& theArguments,
std::string& theError) const
{
- if(theArguments.size() != 5 && theArguments.size() != 6) {
- theError = "Validator should be used with 6 parameters for extrusion and with 5 for revolution.";
+ if(theArguments.size() != 2) {
+ theError = "Error: Validator should be used with 2 parameters for extrusion.";
return false;
}
std::list<std::string>::const_iterator anArgsIt = theArguments.begin(), aLast = theArguments.end();
- std::string aSelectedMethod;
- if(theFeature->string(*anArgsIt)) {
- aSelectedMethod = theFeature->string(*anArgsIt)->value();
- }
- ++anArgsIt;
- std::string aCreationMethod = *anArgsIt;
- ++anArgsIt;
-
AttributePtr aCheckAttribute = theFeature->attribute(*anArgsIt);
++anArgsIt;
- if(isShapesCanBeEmpty(aCheckAttribute, theError)) {
- return true;
- }
-
- if(aSelectedMethod == aCreationMethod) {
- ++anArgsIt;
- ++anArgsIt;
+ GeomShapePtr aDirShape;
+ AttributeSelectionPtr aSelAttr = theFeature->selection(*anArgsIt);
+ if(aSelAttr.get()) {
+ aDirShape = aSelAttr->value();
+ if(!aDirShape.get()) {
+ ResultPtr aContext = aSelAttr->context();
+ if(aContext.get()) {
+ aDirShape = aContext->shape();
+ }
+ }
}
- for(; anArgsIt != theArguments.cend(); ++anArgsIt) {
- AttributeSelectionPtr aSelAttr = theFeature->selection(*anArgsIt);
- if(!aSelAttr.get()) {
- theError = "Could not get selection attribute \"" + *anArgsIt + "\".";
+ if(!aDirShape.get()) {
+ // Check that dir can be empty.
+ if(!isShapesCanBeEmpty(aCheckAttribute, theError)) {
+ theError = "Error: Base objects list contains vertex or edge, so attribute \"" + *anArgsIt
+ + "\" can not be used with default value. Select direction for extrusion.";
return false;
+ } else {
+ return true;
}
+ }
- GeomShapePtr aShape = aSelAttr->value();
- if(!aShape.get()) {
- ResultPtr aContext = aSelAttr->context();
- if(!aContext.get()) {
- theError = "Selection attribute \"" + *anArgsIt + "\" can not be empty.";
- return false;
- }
+ std::shared_ptr<GeomAPI_Edge> aDirEdge(new GeomAPI_Edge(aDirShape));
- aShape = aContext->shape();
+ // If faces selected check that direction not parallel with them.
+ AttributeSelectionListPtr aListAttr = std::dynamic_pointer_cast<ModelAPI_AttributeSelectionList>(aCheckAttribute);
+ for(int anIndex = 0; anIndex < aListAttr->size(); ++anIndex) {
+ AttributeSelectionPtr anAttr = aListAttr->value(anIndex);
+ GeomShapePtr aShapeInList = anAttr->value();
+ if(!aShapeInList.get()) {
+ aShapeInList = anAttr->context()->shape();
}
-
- if(!aShape.get()) {
- theError = "Selection attribute \"" + *anArgsIt + "\" can not be empty.";
+ bool isParallel = true;
+ if(aShapeInList->shapeType() == GeomAPI_Shape::FACE || aShapeInList->shapeType() == GeomAPI_Shape::SHELL) {
+ for(GeomAPI_ShapeExplorer anExp(aShapeInList, GeomAPI_Shape::FACE); anExp.more(); anExp.next()) {
+ std::shared_ptr<GeomAPI_Face> aFace(new GeomAPI_Face(anExp.current()));
+ isParallel = GeomAlgoAPI_ShapeTools::isParallel(aDirEdge, aFace);
+ if(isParallel) {
+ break;
+ }
+ }
+ } else if(aShapeInList->shapeType() == GeomAPI_Shape::COMPOUND) {
+ std::shared_ptr<GeomAPI_PlanarEdges> aPlanarEdges = std::dynamic_pointer_cast<GeomAPI_PlanarEdges>(aShapeInList);
+ if(aPlanarEdges.get()) {
+ std::shared_ptr<GeomAPI_Dir> aSketchDir = aPlanarEdges->norm();
+ if(aDirEdge->isLine()) {
+ std::shared_ptr<GeomAPI_Dir> aDir = aDirEdge->line()->direction();
+ isParallel = abs(aSketchDir->angle(aDir) - M_PI / 2.0) < 10e-7;
+ } else {
+ isParallel = false;
+ }
+ } else {
+ isParallel = false;
+ }
+ } else {
+ isParallel = false;
+ }
+ if(isParallel) {
+ theError = "Error: Direction is parallel to one of the selected face or face on selected shell.";
return false;
}
}
return true;
}
-//=================================================================================================
-bool FeaturesPlugin_ValidatorCanBeEmpty::isNotObligatory(std::string theFeature, std::string theAttribute)
+//==================================================================================================
+bool FeaturesPlugin_ValidatorExtrusionDir::isNotObligatory(std::string theFeature, std::string theAttribute)
{
return false;
}
-//=================================================================================================
-bool FeaturesPlugin_ValidatorCanBeEmpty::isShapesCanBeEmpty(const AttributePtr& theAttribute,
+//==================================================================================================
+bool FeaturesPlugin_ValidatorExtrusionDir::isShapesCanBeEmpty(const AttributePtr& theAttribute,
std::string& theError) const
{
if(!theAttribute.get()) {
return true;
}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorBooleanSelection::isValid(const AttributePtr& theAttribute,
+ const std::list<std::string>& theArguments,
+ std::string& theError) const
+{
+ AttributeSelectionListPtr anAttrSelectionList = std::dynamic_pointer_cast<ModelAPI_AttributeSelectionList>(theAttribute);
+ if(!anAttrSelectionList.get()) {
+ theError = "Error: This validator can only work with selection list attributes in \"Boolean\" feature.";
+ return false;
+ }
+ FeaturePtr aFeature = std::dynamic_pointer_cast<ModelAPI_Feature>(theAttribute->owner());
+ int anOperationType = aFeature->integer("bool_type")->value();
+
+ for(int anIndex = 0; anIndex < anAttrSelectionList->size(); ++anIndex) {
+ AttributeSelectionPtr anAttrSelection = anAttrSelectionList->value(anIndex);
+ if(!anAttrSelection.get()) {
+ theError = "Error: Empty attribute selection.";
+ return false;
+ }
+ ResultPtr aContext = anAttrSelection->context();
+ if(!aContext.get()) {
+ theError = "Error: Empty selection context.";
+ return false;
+ }
+ ResultConstructionPtr aResultConstruction =
+ std::dynamic_pointer_cast<ModelAPI_ResultConstruction>(aContext);
+ if(aResultConstruction.get()) {
+ theError = "Error: Result construction not allowed for selection.";
+ return false;
+ }
+ std::shared_ptr<GeomAPI_Shape> aShape = anAttrSelection->value();
+ if(!aShape.get()) {
+ aShape = aContext->shape();
+ }
+ if(!aShape.get()) {
+ theError = "Error: Empty shape.";
+ return false;
+ }
+ int aShapeType = aShape->shapeType();
+ if(anOperationType == 1) {
+ // Fuse operation. Allow to select edges, faces and solids.
+ if(aShapeType != GeomAPI_Shape::EDGE &&
+ aShapeType != GeomAPI_Shape::FACE &&
+ aShapeType != GeomAPI_Shape::SOLID &&
+ aShapeType != GeomAPI_Shape::COMPSOLID &&
+ aShapeType != GeomAPI_Shape::COMPOUND) {
+ theError = "Error: Selected shape has the wrong type.";
+ return false;
+ }
+ } else {
+ if(aShapeType != GeomAPI_Shape::SOLID &&
+ aShapeType != GeomAPI_Shape::COMPSOLID &&
+ aShapeType != GeomAPI_Shape::COMPOUND) {
+ theError = "Error: Selected shape has the wrong type.";
+ return false;
+ }
+ }
+ }
+
+ return true;
+}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorPartitionSelection::isValid(const AttributePtr& theAttribute,
+ const std::list<std::string>& theArguments,
+ std::string& theError) const
+{
+ AttributeSelectionListPtr anAttrSelectionList = std::dynamic_pointer_cast<ModelAPI_AttributeSelectionList>(theAttribute);
+ if(!anAttrSelectionList.get()) {
+ theError = "Error: This validator can only work with selection list in \"Partition\" feature.";
+ return false;
+ }
+
+ for(int anIndex = 0; anIndex < anAttrSelectionList->size(); ++anIndex) {
+ AttributeSelectionPtr aSelectAttr = anAttrSelectionList->value(anIndex);
+
+ //GeomValidators_BodyShapes aBodyValidator;
+ //if(aBodyValidator.isValid(aSelectAttr, theArguments, theError)) {
+ // continue;
+ //}
+
+ GeomValidators_FeatureKind aFeatureKindValidator;
+ if(aFeatureKindValidator.isValid(aSelectAttr, theArguments, theError)) {
+ continue;
+ }
+
+ ResultPtr aContext = aSelectAttr->context();
+ ResultConstructionPtr aResultConstruction = std::dynamic_pointer_cast<ModelAPI_ResultConstruction>(aContext);
+ if(aResultConstruction.get()) {
+ theError = "Error: Only body shapes and construction planes are allowed for selection.";
+ return false;
+ }
+
+ ResultCompSolidPtr aResultCompsolid = std::dynamic_pointer_cast<ModelAPI_ResultCompSolid>(aContext);
+ if(aResultCompsolid.get()) {
+ continue;
+ }
+
+ theError = "Error: Only body shapes and construction planes are allowed for selection.";
+ return false;
+ }
+
+ theError = "";
+ return true;
+}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorRemoveSubShapesSelection::isValid(const AttributePtr& theAttribute,
+ const std::list<std::string>& theArguments,
+ std::string& theError) const
+{
+ AttributeSelectionListPtr aSubShapesAttrList = std::dynamic_pointer_cast<ModelAPI_AttributeSelectionList>(theAttribute);
+ if(!aSubShapesAttrList.get()) {
+ theError = "Error: This validator can only work with selection list in \"Remove Sub-Shapes\" feature.";
+ return false;
+ }
+
+ static const std::string aBaseShapeID = "base_shape";
+ FeaturePtr aFeature = std::dynamic_pointer_cast<ModelAPI_Feature>(theAttribute->owner());
+ AttributeSelectionPtr aShapeAttrSelection = aFeature->selection(aBaseShapeID);
+
+ if(!aShapeAttrSelection.get()) {
+ theError = "Error: Could not get \"" + aBaseShapeID + "\" attribute.";
+ return false;
+ }
+
+ GeomShapePtr aBaseShape = aShapeAttrSelection->value();
+ ResultPtr aContext = aShapeAttrSelection->context();
+ if(!aContext.get()) {
+ theError = "Error: Empty context.";
+ return false;
+ }
+ if(!aBaseShape.get()) {
+ aBaseShape = aContext->shape();
+ }
+ if(!aBaseShape.get()) {
+ theError = "Error: Empty base shape.";
+ return false;
+ }
+
+ for(int anIndex = 0; anIndex < aSubShapesAttrList->size(); ++anIndex) {
+ bool isSameFound = false;
+ AttributeSelectionPtr anAttrSelectionInList = aSubShapesAttrList->value(anIndex);
+ GeomShapePtr aShapeToAdd = anAttrSelectionInList->value();
+ for(GeomAPI_ShapeIterator anIt(aBaseShape); anIt.more(); anIt.next()) {
+ if(anIt.current()->isEqual(aShapeToAdd)) {
+ isSameFound = true;
+ break;
+ }
+ }
+ if(!isSameFound) {
+ theError = "Error: Only sub-shapes of selected shape is allowed for selection.";
+ return false;
+ }
+ }
+
+ return true;
+}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorRemoveSubShapesResult::isValid(const std::shared_ptr<ModelAPI_Feature>& theFeature,
+ const std::list<std::string>& theArguments,
+ std::string& theError) const
+{
+ static const std::string aBaseShapeID = "base_shape";
+ static const std::string aSubShapesID = "subshapes";
+
+ if(theFeature->getKind() != "Remove_SubShapes") {
+ theError = "Error: Feature \"" + theFeature->getKind() + "\" does not supported by this validator.";
+ return false;
+ }
+
+ AttributeSelectionPtr aShapeAttrSelection = theFeature->selection(aBaseShapeID);
+ if(!aShapeAttrSelection.get()) {
+ theError = "Error: Could not get \"" + aBaseShapeID + "\" attribute.";
+ return false;
+ }
+
+ AttributeSelectionListPtr aSubShapesAttrList = theFeature->selectionList(aSubShapesID);
+ if(!aSubShapesAttrList.get()) {
+ theError = "Error: Could not get \"" + aSubShapesID + "\" attribute.";
+ return false;
+ }
+
+ // Copy base shape.
+ GeomShapePtr aBaseShape = aShapeAttrSelection->value();
+ if(!aBaseShape.get()) {
+ theError = "Error: Base shape is empty.";
+ return false;
+ }
+ GeomShapePtr aResultShape = aBaseShape->emptyCopied();
+
+ // Copy sub-shapes from list to new shape.
+ for(int anIndex = 0; anIndex < aSubShapesAttrList->size(); ++anIndex) {
+ AttributeSelectionPtr anAttrSelectionInList = aSubShapesAttrList->value(anIndex);
+ GeomShapePtr aShapeToAdd = anAttrSelectionInList->value();
+ GeomAlgoAPI_ShapeBuilder::add(aResultShape, aShapeToAdd);
+ }
+
+ // Check new shape.
+ if(!GeomAlgoAPI_ShapeTools::isShapeValid(aResultShape)) {
+ theError = "Error: Resulting shape is not valid.";
+ return false;
+ }
+
+ return true;
+}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorRemoveSubShapesResult::isNotObligatory(std::string theFeature,
+ std::string theAttribute)
+{
+ return false;
+}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorUnionSelection::isValid(const AttributePtr& theAttribute,
+ const std::list<std::string>& theArguments,
+ std::string& theError) const
+{
+ AttributeSelectionListPtr aBaseObjectsAttrList = std::dynamic_pointer_cast<ModelAPI_AttributeSelectionList>(theAttribute);
+ if(!aBaseObjectsAttrList.get()) {
+ theError = "Error: This validator can only work with selection list in \"" + FeaturesPlugin_Union::ID() + "\" feature.";
+ return false;
+ }
+
+ for(int anIndex = 0; anIndex < aBaseObjectsAttrList->size(); ++anIndex) {
+ bool isSameFound = false;
+ AttributeSelectionPtr anAttrSelectionInList = aBaseObjectsAttrList->value(anIndex);
+ ResultCompSolidPtr aResult = std::dynamic_pointer_cast<ModelAPI_ResultCompSolid>(anAttrSelectionInList->context());
+ if(!aResult.get()) {
+ continue;
+ }
+ if(aResult->numberOfSubs() > 0) {
+ theError = "Error: Whole compsolids not allowed for selection.";
+ return false;
+ }
+ }
+
+ return true;
+}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorUnionArguments::isValid(const std::shared_ptr<ModelAPI_Feature>& theFeature,
+ const std::list<std::string>& theArguments,
+ std::string& theError) const
+{
+ // Check feature kind.
+ if(theFeature->getKind() != FeaturesPlugin_Union::ID()) {
+ theError = "Error: This validator supports only \"" + FeaturesPlugin_Union::ID() + "\" feature.";
+ return false;
+ }
+
+ // Get base objects attribute list.
+ AttributeSelectionListPtr aBaseObejctsAttrList = theFeature->selectionList(FeaturesPlugin_Union::BASE_OBJECTS_ID());
+ if(!aBaseObejctsAttrList.get()) {
+ theError = "Error: Could not get \"" + FeaturesPlugin_Union::BASE_OBJECTS_ID() + "\" attribute.";
+ return false;
+ }
+
+ // Get all shapes.
+ ListOfShape aBaseShapesList;
+ for(int anIndex = 0; anIndex < aBaseObejctsAttrList->size(); ++anIndex) {
+ AttributeSelectionPtr anAttrSelectionInList = aBaseObejctsAttrList->value(anIndex);
+ GeomShapePtr aShape = anAttrSelectionInList->value();
+ aBaseShapesList.push_back(aShape);
+ }
+
+ // Make componud and find connected.
+ GeomShapePtr aCompound = GeomAlgoAPI_CompoundBuilder::compound(aBaseShapesList);
+ ListOfShape aCombined, aFree;
+ GeomAlgoAPI_ShapeTools::combineShapes(aCompound, GeomAPI_Shape::COMPSOLID, aCombined, aFree);
+
+ if(aFree.size() > 0 || aCombined.size() > 1) {
+ theError = "Error: Not all shapes have shared topology.";
+ return false;
+ }
+
+ return true;
+}
+
+//==================================================================================================
+bool FeaturesPlugin_ValidatorUnionArguments::isNotObligatory(std::string theFeature,
+ std::string theAttribute)
+{
+ return false;
+}