Package com.sun.org.apache.xerces.internal.xs

Examples of com.sun.org.apache.xerces.internal.xs.XSTypeDefinition


   */
  private boolean isDerivedByAny(String ancestorNS, String ancestorName,
      XSTypeDefinition type) {
   
    boolean derivedFrom = false;
    XSTypeDefinition oldType = null;
    // for each base, item or member type
    while (type != null && type != oldType)  {
     
      // If the ancestor type is reached or is the same as this type.
      if ((ancestorName.equals(type.getName()))
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   *
   * @return boolean True if the type is derived by restriciton for the
   *         reference type
   */
  private boolean isDerivedByRestriction (String ancestorNS, String ancestorName, XSTypeDefinition type) {
        XSTypeDefinition oldType = null;
    while (type != null && type != oldType) {
      if ((ancestorName.equals(type.getName()))
          && ((ancestorNS != null && ancestorNS.equals(type.getNamespace()))
              || (type.getNamespace() == null && ancestorNS == null))) {
       
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  private boolean isDerivedByList (String ancestorNS, String ancestorName, XSTypeDefinition type) {
    // If the variety is union
    if (type !=null && ((XSSimpleTypeDefinition)type).getVariety() == VARIETY_LIST) {
     
      // get the {item type}
      XSTypeDefinition itemType = ((XSSimpleTypeDefinition)type).getItemType();
     
      // T2 is the {item type definition}
      if (itemType != null) {
       
        // T2 is derived from the other type definition by DERIVATION_RESTRICTION
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        (AttributePSVI) attributes.getAugmentations(i).getItem(Constants.ATTRIBUTE_PSVI);

      if (attrPSVI != null) {
                //REVISIT: instead we should be using augmentations:
                // to set/retrieve Id attributes
                XSTypeDefinition decl = attrPSVI.getMemberTypeDefinition();
                boolean id = false;
                if (decl != null){
                    id = ((XSSimpleType)decl).isIDType();
                } else{
                    decl = attrPSVI.getTypeDefinition();
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            fAttrChecker.returnAttrArray(derivationTypeAttrValues, schemaDoc);
            throw new ComplexTypeRecoverableError("s4s-att-must-appear",
                    new Object[]{simpleContentName, "base"}, simpleContent);
        }
       
        XSTypeDefinition type = (XSTypeDefinition)fSchemaHandler.getGlobalDecl(schemaDoc,
                XSDHandler.TYPEDECL_TYPE, baseTypeName,
                simpleContent);
        if (type==null) {
            fAttrChecker.returnAttrArray(simpleContentAttrValues, schemaDoc);
            fAttrChecker.returnAttrArray(derivationTypeAttrValues, schemaDoc);
            throw new ComplexTypeRecoverableError();
        }
       
        fBaseType = type;
       
        XSSimpleType baseValidator = null;
        XSComplexTypeDecl baseComplexType = null;
        int baseFinalSet = 0;
       
        // If the base type is complex, it must have simpleContent
        if ((type.getTypeCategory() == XSTypeDefinition.COMPLEX_TYPE)) {
           
            baseComplexType = (XSComplexTypeDecl)type;
            baseFinalSet = baseComplexType.getFinal();
            // base is a CT with simple content (both restriction and extension are OK)
            if (baseComplexType.getContentType() == XSComplexTypeDecl.CONTENTTYPE_SIMPLE) {
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            fAttrChecker.returnAttrArray(derivationTypeAttrValues, schemaDoc);
            throw new ComplexTypeRecoverableError("s4s-att-must-appear",
                    new Object[]{complexContentName, "base"}, complexContent);
        }
       
        XSTypeDefinition type = (XSTypeDefinition)fSchemaHandler.getGlobalDecl(schemaDoc,
                XSDHandler.TYPEDECL_TYPE,
                baseTypeName,
                complexContent);
       
        if (type==null) {
            fAttrChecker.returnAttrArray(complexContentAttrValues, schemaDoc);
            fAttrChecker.returnAttrArray(derivationTypeAttrValues, schemaDoc);
            throw new ComplexTypeRecoverableError();
        }
       
        if (! (type instanceof XSComplexTypeDecl)) {
            fAttrChecker.returnAttrArray(complexContentAttrValues, schemaDoc);
            fAttrChecker.returnAttrArray(derivationTypeAttrValues, schemaDoc);
            throw new ComplexTypeRecoverableError("src-ct.1",
                    new Object[]{fName, type.getName()}, complexContent);
        }
        XSComplexTypeDecl baseType = (XSComplexTypeDecl)type;
        fBaseType = baseType;
       
        // -----------------------------------------------------------------------
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            QName baseTypeStr, short baseRefContext,
            XSDocumentInfo schemaDoc) {
        if (baseTypeStr == null)
            return null;
       
        XSTypeDefinition baseType = (XSTypeDefinition)fSchemaHandler.getGlobalDecl(schemaDoc, XSDHandler.TYPEDECL_TYPE, baseTypeStr, elm);
        if (baseType != null) {
            // if it's a complex type, or if its restriction of anySimpleType
            if (baseType.getTypeCategory() != XSTypeDefinition.SIMPLE_TYPE ||
                    baseType == SchemaGrammar.fAnySimpleType &&
                    baseRefContext == XSConstants.DERIVATION_RESTRICTION) {
                // if the base type is anySimpleType and the current type is
                // a S4S built-in type, return null. (not an error).
                if (baseType == SchemaGrammar.fAnySimpleType &&
                        checkBuiltIn(refName, schemaDoc.fTargetNamespace)) {
                    return null;
                }
                reportSchemaError("cos-st-restricts.1.1", new Object[]{baseTypeStr.rawname, refName}, elm);
                return SchemaGrammar.fAnySimpleType;
            }
            if ((baseType.getFinal() & baseRefContext) != 0) {
                if (baseRefContext == XSConstants.DERIVATION_RESTRICTION) {
                    reportSchemaError("st-props-correct.3", new Object[]{refName, baseTypeStr.rawname}, elm);
                }
                else if (baseRefContext == XSConstants.DERIVATION_LIST) {
                    reportSchemaError("cos-st-restricts.2.3.1.1", new Object[]{baseTypeStr.rawname, refName}, elm);
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            setCharacterData (false);

            if (augs != null) {
                ElementPSVI elementPSVI = (ElementPSVI)augs.getItem (Constants.ELEMENT_PSVI);
                if (elementPSVI != null && fNamespaceAware) {
                    XSTypeDefinition type = elementPSVI.getMemberTypeDefinition ();
                    if (type == null) {
                        type = elementPSVI.getTypeDefinition ();
                    }
                    ((ElementNSImpl)el).setType (type);
                }
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                if (elementPSVI != null) {
                    // Updating TypeInfo. If the declared type is a union the
                    // [member type definition] will only be available at the
                    // end of an element.
                    if (fNamespaceAware) {
                        XSTypeDefinition type = elementPSVI.getMemberTypeDefinition();
                        if (type == null) {
                            type = elementPSVI.getTypeDefinition();
                        }
                        ((ElementNSImpl)fCurrentNode).setType(type);
                    }
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            }
        }
        element.fAnnotation = annotation;
       
        // get 'type definition'
        XSTypeDefinition elementType = null;
        boolean haveAnonType = false;
       
        // Handle Anonymous type if there is one
        if (child != null) {
            String childName = DOMUtil.getLocalName(child);
           
            if (childName.equals(SchemaSymbols.ELT_COMPLEXTYPE)) {
                elementType = fSchemaHandler.fComplexTypeTraverser.traverseLocal(child, schemaDoc, grammar);
                haveAnonType = true;
                child = DOMUtil.getNextSiblingElement(child);
            }
            else if (childName.equals(SchemaSymbols.ELT_SIMPLETYPE)) {
                elementType = fSchemaHandler.fSimpleTypeTraverser.traverseLocal(child, schemaDoc, grammar);
                haveAnonType = true;
                child = DOMUtil.getNextSiblingElement(child);
            }
        }
       
        // Handler type attribute
        if (elementType == null && typeAtt != null) {
            elementType = (XSTypeDefinition)fSchemaHandler.getGlobalDecl(schemaDoc, XSDHandler.TYPEDECL_TYPE, typeAtt, elmDecl);
        }
       
        // Get it from the substitutionGroup declaration
        if (elementType == null && element.fSubGroup != null) {
            elementType = element.fSubGroup.fType;
        }
       
        if (elementType == null) {
            elementType = SchemaGrammar.fAnyType;
        }
       
        element.fType = elementType;
       
        // get 'identity constraint'
       
        // see if there's something here; it had better be key, keyref or unique.
        if (child != null) {
            String childName = DOMUtil.getLocalName(child);
            while (child != null &&
                    (childName.equals(SchemaSymbols.ELT_KEY) ||
                            childName.equals(SchemaSymbols.ELT_KEYREF) ||
                            childName.equals(SchemaSymbols.ELT_UNIQUE))) {
               
                if (childName.equals(SchemaSymbols.ELT_KEY) ||
                        childName.equals(SchemaSymbols.ELT_UNIQUE)) {
                    // need to set <key>/<unique> to hidden before traversing it,
                    // because it has global scope
                    DOMUtil.setHidden(child);
                    fSchemaHandler.fUniqueOrKeyTraverser.traverse(child, element, schemaDoc, grammar);
                    if(DOMUtil.getAttrValue(child, SchemaSymbols.ATT_NAME).length() != 0 ) {
                        fSchemaHandler.checkForDuplicateNames(
                                (schemaDoc.fTargetNamespace == null) ? ","+DOMUtil.getAttrValue(child, SchemaSymbols.ATT_NAME)
                                        : schemaDoc.fTargetNamespace+","+ DOMUtil.getAttrValue(child, SchemaSymbols.ATT_NAME),
                                        fSchemaHandler.getIDRegistry(), fSchemaHandler.getIDRegistry_sub(),
                                        child, schemaDoc);
                    }
                } else if (childName.equals(SchemaSymbols.ELT_KEYREF)) {
                    fSchemaHandler.storeKeyRef(child, schemaDoc, element);
                }
                child = DOMUtil.getNextSiblingElement(child);
                if (child != null) {
                    childName = DOMUtil.getLocalName(child);
                }
            }
        }
       
        // Step 2: register the element decl to the grammar
        if (isGlobal && nameAtt != null)
            grammar.addGlobalElementDecl(element);
       
        // Step 3: check against schema for schemas
       
        // required attributes
        if (nameAtt == null) {
            if (isGlobal)
                reportSchemaError("s4s-att-must-appear", new Object[]{SchemaSymbols.ELT_ELEMENT, SchemaSymbols.ATT_NAME}, elmDecl);
            else
                reportSchemaError("src-element.2.1", null, elmDecl);
            nameAtt = NO_NAME;
        }
       
        // element
        if (child != null) {
            reportSchemaError("s4s-elt-must-match.1", new Object[]{nameAtt, "(annotation?, (simpleType | complexType)?, (unique | key | keyref)*))", DOMUtil.getLocalName(child)}, child);
        }
       
        // Step 4: check 3.3.3 constraints
       
        // src-element
       
        // 1 default and fixed must not both be present.
        if (defaultAtt != null && fixedAtt != null) {
            reportSchemaError("src-element.1", new Object[]{nameAtt}, elmDecl);
        }
       
        // 2 If the item's parent is not <schema>, then all of the following must be true:
        // 2.1 One of ref or name must be present, but not both.
        // This is checked in XSAttributeChecker
       
        // 2.2 If ref is present, then all of <complexType>, <simpleType>, <key>, <keyref>, <unique>, nillable, default, fixed, form, block and type must be absent, i.e. only minOccurs, maxOccurs, id are allowed in addition to ref, along with <annotation>.
        // Attributes are checked in XSAttributeChecker, elements are checked in "traverse" method
       
        // 3 type and either <simpleType> or <complexType> are mutually exclusive.
        if (haveAnonType && (typeAtt != null)) {
            reportSchemaError("src-element.3", new Object[]{nameAtt}, elmDecl);
        }
       
        // Step 5: check 3.3.6 constraints
        // check for NOTATION type
        checkNotationType(nameAtt, elementType, elmDecl);
       
        // e-props-correct
       
        // 2 If there is a {value constraint}, the canonical lexical representation of its value must be valid with respect to the {type definition} as defined in Element Default Valid (Immediate) (3.3.6).
        if (element.fDefault != null) {
            fValidationState.setNamespaceSupport(schemaDoc.fNamespaceSupport);
            if (XSConstraints.ElementDefaultValidImmediate(element.fType, element.fDefault.normalizedValue, fValidationState, element.fDefault) == null) {
                reportSchemaError ("e-props-correct.2", new Object[]{nameAtt, element.fDefault.normalizedValue}, elmDecl);
                element.setConstraintType(XSConstants.VC_NONE);
            }
        }
       
        // 4 If there is an {substitution group affiliation}, the {type definition} of the element declaration must be validly derived from the {type definition} of the {substitution group affiliation}, given the value of the {substitution group exclusions} of the {substitution group affiliation}, as defined in Type Derivation OK (Complex) (3.4.6) (if the {type definition} is complex) or as defined in Type Derivation OK (Simple) (3.14.6) (if the {type definition} is simple).
        if (element.fSubGroup != null) {
            if (!XSConstraints.checkTypeDerivationOk(element.fType, element.fSubGroup.fType, element.fSubGroup.fFinal)) {
                reportSchemaError ("e-props-correct.4", new Object[]{nameAtt, subGroupAtt.prefix+":"+subGroupAtt.localpart}, elmDecl);
            }
        }
       
        // 5 If the {type definition} or {type definition}'s {content type} is or is derived from ID then there must not be a {value constraint}.
        if (element.fDefault != null) {
            if ((elementType.getTypeCategory() == XSTypeDefinition.SIMPLE_TYPE &&
                    ((XSSimpleType)elementType).isIDType()) ||
                    (elementType.getTypeCategory() == XSTypeDefinition.COMPLEX_TYPE &&
                            ((XSComplexTypeDecl)elementType).containsTypeID())) {
                reportSchemaError ("e-props-correct.5", new Object[]{element.fName}, elmDecl);
            }
        }
       
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