use of org.eclipse.xtext.common.types.JvmDeclaredType in project xtext-xtend by eclipse.
the class XtendImportedNamespaceScopeProvider method getContainerScope.
private AbstractScope getContainerScope(XtendMember syntacticContainer, AbstractScope result) {
JvmDeclaredType innermost = null;
List<List<JvmTypeParameter>> typeParameters = null;
XtendMember workWithMe = syntacticContainer;
while (workWithMe != null) {
EObject derivedJvmElement = getAssociations().getPrimaryJvmElement(workWithMe);
// scope for JvmTypeParameterDeclarator
if (derivedJvmElement instanceof JvmTypeParameterDeclarator) {
JvmTypeParameterDeclarator parameterDeclarator = (JvmTypeParameterDeclarator) derivedJvmElement;
List<JvmTypeParameter> current = parameterDeclarator.getTypeParameters();
if (!current.isEmpty()) {
if (typeParameters == null) {
typeParameters = Lists.newArrayListWithCapacity(3);
}
typeParameters.add(current);
}
}
if (innermost == null && derivedJvmElement instanceof JvmDeclaredType) {
if (syntacticContainer != workWithMe) {
// prevent stackoverflow / cyclic resolution
innermost = (JvmDeclaredType) derivedJvmElement;
}
}
EObject container = workWithMe;
do {
container = container.eContainer();
if (container == null) {
if (typeParameters == null) {
if (innermost == null)
return result;
return new NestedTypesScope(innermost, this, result);
}
TypeParameterScope typeParameterScope = new TypeParameterScope(typeParameters, result);
if (innermost == null) {
return typeParameterScope;
}
return new NestedTypesScope(innermost, this, typeParameterScope);
}
} while (!(container instanceof XtendMember));
workWithMe = (XtendMember) container;
}
return result;
}
use of org.eclipse.xtext.common.types.JvmDeclaredType in project xtext-xtend by eclipse.
the class XtendImportedNamespaceScopeProvider method getScope.
@Override
public IScope getScope(final EObject context, final EReference reference) {
EClass referenceType = reference.getEReferenceType();
if (TypesPackage.Literals.JVM_TYPE.isSuperTypeOf(referenceType)) {
if (context instanceof XImportDeclaration) {
Resource resource = context.eResource();
IJvmTypeProvider typeProvider = typeScopeProvider.getTypeProvider(resource.getResourceSet());
AbstractTypeScope typeScope = typeScopeProvider.createTypeScope(typeProvider, null);
IResourceDescriptions descriptions = resourceDescriptionsProvider.getResourceDescriptions(context.eResource().getResourceSet());
IResourceDescription resourceDescription = descriptions.getResourceDescription(resource.getURI());
if (resourceDescription != null) {
typeScope = new LocalResourceFilteringTypeScope(typeScope, resourceDescription);
}
RecordingTypeScope recordingTypeScope = new RecordingTypeScope(typeScope, getImportedNamesSet(resource), getQualifiedNameConverter());
// TODO this scope doesn't support binary syntax for inner types. It should be a KnownTypes scope which doesn't allow simple names
// Unfortunately I cannot use a RecordingTypeScope as a parent as it is not compatible...
IScope scope = SelectableBasedScope.createScope(recordingTypeScope, getAllDescriptions(resource), reference.getEReferenceType(), false);
return scope;
}
final XtendFile xtendFile = getXtendFile(context);
final Resource resource = xtendFile.eResource();
AbstractScope result = resourceScopeCache.get("type.scope", xtendFile.eResource(), new Provider<AbstractScope>() {
@Override
public AbstractScope get() {
IJvmTypeProvider typeProvider = typeScopeProvider.getTypeProvider(resource.getResourceSet());
AbstractTypeScope typeScope = typeScopeProvider.createTypeScope(typeProvider, null);
IResourceDescriptions descriptions = resourceDescriptionsProvider.getResourceDescriptions(context.eResource().getResourceSet());
IResourceDescription resourceDescription = descriptions.getResourceDescription(resource.getURI());
if (resourceDescription != null) {
typeScope = new LocalResourceFilteringTypeScope(typeScope, resourceDescription);
}
RecordingTypeScope recordingTypeScope = new RecordingTypeScope(typeScope, getImportedNamesSet(resource), getQualifiedNameConverter());
AbstractScope rootTypeScope = getRootTypeScope(xtendFile, recordingTypeScope);
AbstractScope importScope = getImportScope(xtendFile.getImportSection(), rootTypeScope, recordingTypeScope);
AbstractScope localTypes = getResourceTypeScope(xtendFile.eResource(), xtendFile.getPackage(), importScope);
AbstractScope primitiveAware = new PrimitiveAwareScope(localTypes, typeScope);
AbstractScope caching = new CachingTypeScope(primitiveAware);
return caching;
}
});
if (context instanceof AnonymousClass) {
// necessary for the super type of an anonymous class expression
JvmDeclaredType inferredAnonymousType = associations.getInferredType((AnonymousClass) context);
if (inferredAnonymousType != null)
result = new LocalTypeScope(singletonList(inferredAnonymousType), result);
}
XtendMember syntacticContainer = EcoreUtil2.getContainerOfType(context, XtendMember.class);
if (syntacticContainer != null) {
result = getContainerScope(syntacticContainer, result);
}
EObject logicalContainer = logicalContainerProvider.getNearestLogicalContainer(context);
if (logicalContainer != null) {
List<List<JvmTypeParameter>> typeParameters = new ArrayList<List<JvmTypeParameter>>();
while (logicalContainer instanceof JvmTypeParameterDeclarator) {
JvmTypeParameterDeclarator typeParamProvider = (JvmTypeParameterDeclarator) logicalContainer;
if (!typeParamProvider.getTypeParameters().isEmpty()) {
typeParameters.add(typeParamProvider.getTypeParameters());
}
logicalContainer = logicalContainer.eContainer();
}
if (!typeParameters.isEmpty())
result = new TypeParameterScope(typeParameters, result);
}
return result;
} else if (TypesPackage.Literals.JVM_CONSTRUCTOR.isSuperTypeOf(referenceType)) {
IScope typeScope = getScope(context, TypesPackage.Literals.JVM_PARAMETERIZED_TYPE_REFERENCE__TYPE);
// this is not called from the type resolution where we want to allow constructors to link to interfaces
// in order to improve the error message, therefore we use a strict wrapper here
IScope result = new ConstructorTypeScopeWrapper(context, IVisibilityHelper.ALL, typeScope, true);
return result;
} else {
throw new IllegalArgumentException("Unexpected global request for " + reference);
}
}
use of org.eclipse.xtext.common.types.JvmDeclaredType in project xtext-xtend by eclipse.
the class LocalClassAwareTypeNames method doVisitParameterizedTypeReference.
@Override
protected void doVisitParameterizedTypeReference(ParameterizedTypeReference reference, StringBuilder param) {
JvmType type = reference.getType();
if (type instanceof JvmDeclaredType) {
boolean local = ((JvmDeclaredType) type).isLocal();
if (local) {
param.append("new ");
Iterables.getLast(reference.getSuperTypes()).accept(this, param);
param.append("(){}");
return;
}
}
super.doVisitParameterizedTypeReference(reference, param);
}
use of org.eclipse.xtext.common.types.JvmDeclaredType in project xtext-xtend by eclipse.
the class XtendValidator method checkDuplicateAndOverriddenFunctions.
@Check
public void checkDuplicateAndOverriddenFunctions(XtendTypeDeclaration xtendType) {
final JvmDeclaredType inferredType = associations.getInferredType(xtendType);
if (inferredType instanceof JvmGenericType) {
JavaVersion targetVersion = getGeneratorConfig(xtendType).getJavaSourceVersion();
ResolvedFeatures resolvedFeatures = overrideHelper.getResolvedFeatures(inferredType, targetVersion);
Set<EObject> flaggedOperations = Sets.newHashSet();
doCheckDuplicateExecutables((JvmGenericType) inferredType, resolvedFeatures, flaggedOperations);
doCheckOverriddenMethods(xtendType, (JvmGenericType) inferredType, resolvedFeatures, flaggedOperations);
doCheckFunctionOverrides(resolvedFeatures, flaggedOperations);
}
}
use of org.eclipse.xtext.common.types.JvmDeclaredType in project xtext-xtend by eclipse.
the class XtendValidator method doCheckOverriddenMethods.
protected void doCheckOverriddenMethods(XtendTypeDeclaration xtendType, JvmGenericType inferredType, ResolvedFeatures resolvedFeatures, Set<EObject> flaggedOperations) {
List<IResolvedOperation> operationsMissingImplementation = null;
boolean doCheckAbstract = !inferredType.isAbstract();
if (doCheckAbstract) {
operationsMissingImplementation = Lists.newArrayList();
}
IVisibilityHelper visibilityHelper = new ContextualVisibilityHelper(this.visibilityHelper, resolvedFeatures.getType());
boolean flaggedType = false;
for (IResolvedOperation operation : resolvedFeatures.getAllOperations()) {
JvmDeclaredType operationDeclaringType = operation.getDeclaration().getDeclaringType();
if (operationDeclaringType != inferredType) {
if (operationsMissingImplementation != null && operation.getDeclaration().isAbstract()) {
operationsMissingImplementation.add(operation);
}
if (visibilityHelper.isVisible(operation.getDeclaration())) {
String erasureSignature = operation.getResolvedErasureSignature();
List<IResolvedOperation> declaredOperationsWithSameErasure = resolvedFeatures.getDeclaredOperations(erasureSignature);
for (IResolvedOperation localOperation : declaredOperationsWithSameErasure) {
if (!localOperation.isOverridingOrImplementing(operation.getDeclaration()).isOverridingOrImplementing()) {
EObject source = findPrimarySourceElement(localOperation);
if (flaggedOperations.add(source)) {
if (operation.getDeclaration().isStatic() && !localOperation.getDeclaration().isStatic()) {
error("The instance method " + localOperation.getSimpleSignature() + " cannot override the static method " + operation.getSimpleSignature() + " of type " + getDeclaratorName(operation.getDeclaration()) + ".", source, nameFeature(source), DUPLICATE_METHOD);
} else {
error("Name clash: The method " + localOperation.getSimpleSignature() + " of type " + inferredType.getSimpleName() + " has the same erasure as " + // due to name transformations in JVM model inference
operation.getSimpleSignature() + " of type " + getDeclaratorName(operation.getDeclaration()) + " but does not override it.", source, nameFeature(source), DUPLICATE_METHOD);
}
}
}
}
if (operation instanceof ConflictingDefaultOperation && contributesToConflict(inferredType, (ConflictingDefaultOperation) operation) && !flaggedType) {
IResolvedOperation conflictingOperation = ((ConflictingDefaultOperation) operation).getConflictingOperations().get(0);
// Include the declaring class in the issue code in order to give better quick fixes
String[] uris = new String[] { getDeclaratorName(operation.getDeclaration()) + "|" + EcoreUtil.getURI(operation.getDeclaration()).toString(), getDeclaratorName(conflictingOperation.getDeclaration()) + "|" + EcoreUtil.getURI(conflictingOperation.getDeclaration()).toString() };
if (!operation.getDeclaration().isAbstract() && !conflictingOperation.getDeclaration().isAbstract()) {
error("The type " + inferredType.getSimpleName() + " inherits multiple implementations of the method " + conflictingOperation.getSimpleSignature() + " from " + getDeclaratorName(conflictingOperation.getDeclaration()) + " and " + getDeclaratorName(operation.getDeclaration()) + ".", xtendType, XtendPackage.Literals.XTEND_TYPE_DECLARATION__NAME, CONFLICTING_DEFAULT_METHODS, uris);
} else {
// At least one of the operations is non-abstract
IResolvedOperation abstractOp, nonabstractOp;
if (operation.getDeclaration().isAbstract()) {
abstractOp = operation;
nonabstractOp = conflictingOperation;
} else {
abstractOp = conflictingOperation;
nonabstractOp = operation;
}
error("The non-abstract method " + nonabstractOp.getSimpleSignature() + " inherited from " + getDeclaratorName(nonabstractOp.getDeclaration()) + " conflicts with the method " + abstractOp.getSimpleSignature() + " inherited from " + getDeclaratorName(abstractOp.getDeclaration()) + ".", xtendType, XtendPackage.Literals.XTEND_TYPE_DECLARATION__NAME, CONFLICTING_DEFAULT_METHODS, uris);
}
flaggedType = true;
}
}
}
}
if (operationsMissingImplementation != null && !operationsMissingImplementation.isEmpty() && !flaggedType) {
reportMissingImplementations(xtendType, inferredType, operationsMissingImplementation);
}
}
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