211 lines
7.6 KiB
C++
211 lines
7.6 KiB
C++
/*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed with
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* this work for additional information regarding copyright ownership.
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* The ASF licenses this file to You under the Apache License, Version 2.0
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* (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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/*
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* $Id: SubstitutionGroupComparator.cpp 794273 2009-07-15 14:13:07Z amassari $
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*/
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// ---------------------------------------------------------------------------
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// Includes
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// ---------------------------------------------------------------------------
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#include <xercesc/framework/XMLGrammarPool.hpp>
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#include <xercesc/framework/XMLSchemaDescription.hpp>
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#include <xercesc/framework/psvi/XSAnnotation.hpp>
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#include <xercesc/validators/schema/SubstitutionGroupComparator.hpp>
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#include <xercesc/validators/common/Grammar.hpp>
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#include <xercesc/validators/schema/SchemaGrammar.hpp>
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#include <xercesc/validators/schema/ComplexTypeInfo.hpp>
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#include <xercesc/validators/schema/SchemaSymbols.hpp>
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XERCES_CPP_NAMESPACE_BEGIN
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bool SubstitutionGroupComparator::isEquivalentTo(const QName* const anElement
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, const QName* const exemplar)
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{
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if (!anElement && !exemplar)
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return true;
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if ((!anElement && exemplar) || (anElement && !exemplar))
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return false;
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if (XMLString::equals(anElement->getLocalPart(), exemplar->getLocalPart()) &&
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(anElement->getURI() == exemplar->getURI()))
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return true; // they're the same!
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if (!fGrammarResolver || !fStringPool )
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{
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ThrowXMLwithMemMgr(RuntimeException, XMLExcepts::SubGrpComparator_NGR, anElement->getMemoryManager());
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}
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unsigned int uriId = anElement->getURI();
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if (uriId == XMLContentModel::gEOCFakeId ||
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uriId == XMLContentModel::gEpsilonFakeId ||
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uriId == XMLElementDecl::fgPCDataElemId ||
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uriId == XMLElementDecl::fgInvalidElemId)
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return false;
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const XMLCh* uri = fStringPool->getValueForId(uriId);
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const XMLCh* localpart = anElement->getLocalPart();
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// In addition to simply trying to find a chain between anElement and exemplar,
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// we need to make sure that no steps in the chain are blocked.
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// That is, at every step, we need to make sure that the element
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// being substituted for will permit being substituted
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// for, and whether the type of the element will permit derivations in
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// instance documents of this sort.
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if (!uri)
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return false;
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SchemaGrammar *sGrammar = (SchemaGrammar*) fGrammarResolver->getGrammar(uri);
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if (!sGrammar || sGrammar->getGrammarType() == Grammar::DTDGrammarType)
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return false;
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SchemaElementDecl* anElementDecl = (SchemaElementDecl*) sGrammar->getElemDecl(uriId, localpart, 0, Grammar::TOP_LEVEL_SCOPE);
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if (!anElementDecl)
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return false;
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SchemaElementDecl* pElemDecl = anElementDecl->getSubstitutionGroupElem();
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bool foundIt = false;
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while (pElemDecl) //(substitutionGroupFullName)
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{
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if (XMLString::equals(pElemDecl->getBaseName(), exemplar->getLocalPart()) &&
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(pElemDecl->getURI() == exemplar->getURI()))
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{
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// time to check for block value on element
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if((pElemDecl->getBlockSet() & SchemaSymbols::XSD_SUBSTITUTION) != 0)
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return false;
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foundIt = true;
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break;
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}
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pElemDecl = pElemDecl->getSubstitutionGroupElem();
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}//while
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if (!foundIt)
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return false;
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// this will contain anElement's complexType information.
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ComplexTypeInfo *aComplexType = anElementDecl->getComplexTypeInfo();
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int exemplarBlockSet = pElemDecl->getBlockSet();
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if(!aComplexType)
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{
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// check on simpleType case
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DatatypeValidator *anElementDV = anElementDecl->getDatatypeValidator();
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DatatypeValidator *exemplarDV = pElemDecl->getDatatypeValidator();
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return((anElementDV == 0) ||
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((anElementDV == exemplarDV) ||
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((exemplarBlockSet & SchemaSymbols::XSD_RESTRICTION) == 0)));
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}
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// 2.3 The set of all {derivation method}s involved in the derivation of D's {type definition} from C's {type definition} does not intersect with the union of the blocking constraint, C's {prohibited substitutions} (if C is complex, otherwise the empty set) and the {prohibited substitutions} (respectively the empty set) of any intermediate {type definition}s in the derivation of D's {type definition} from C's {type definition}.
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// prepare the combination of {derivation method} and
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// {disallowed substitution}
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int devMethod = 0;
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int blockConstraint = exemplarBlockSet;
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ComplexTypeInfo *exemplarComplexType = pElemDecl->getComplexTypeInfo();
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ComplexTypeInfo *tempType = aComplexType;;
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while (tempType != 0 &&
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tempType != exemplarComplexType)
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{
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devMethod |= tempType->getDerivedBy();
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tempType = tempType->getBaseComplexTypeInfo();
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if (tempType) {
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blockConstraint |= tempType->getBlockSet();
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}
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}
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if (tempType != exemplarComplexType) {
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return false;
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}
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if ((devMethod & blockConstraint) != 0) {
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return false;
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}
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return true;
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}
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bool SubstitutionGroupComparator::isAllowedByWildcard(SchemaGrammar* const pGrammar,
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QName* const element,
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unsigned int wuri, bool wother)
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{
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// whether the uri is allowed directly by the wildcard
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unsigned int uriId = element->getURI();
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// Here we assume that empty string has id 1.
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//
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if ((!wother && uriId == wuri) ||
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(wother &&
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uriId != 1 &&
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uriId != wuri &&
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uriId != XMLContentModel::gEOCFakeId &&
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uriId != XMLContentModel::gEpsilonFakeId &&
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uriId != XMLElementDecl::fgPCDataElemId &&
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uriId != XMLElementDecl::fgInvalidElemId))
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{
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return true;
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}
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// get all elements that can substitute the current element
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RefHash2KeysTableOf<ElemVector>* theValidSubstitutionGroups = pGrammar->getValidSubstitutionGroups();
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if (!theValidSubstitutionGroups)
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return false;
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ValueVectorOf<SchemaElementDecl*>* subsElements = theValidSubstitutionGroups->get(element->getLocalPart(), uriId);
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if (!subsElements)
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return false;
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// then check whether there exists one element that is allowed by the wildcard
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XMLSize_t size = subsElements->size();
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for (XMLSize_t i = 0; i < size; i++)
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{
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unsigned int subUriId = subsElements->elementAt(i)->getElementName()->getURI();
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// Here we assume that empty string has id 1.
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//
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if ((!wother && subUriId == wuri) ||
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(wother &&
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subUriId != 1 &&
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subUriId != wuri &&
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subUriId != XMLContentModel::gEOCFakeId &&
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subUriId != XMLContentModel::gEpsilonFakeId &&
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subUriId != XMLElementDecl::fgPCDataElemId &&
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subUriId != XMLElementDecl::fgInvalidElemId))
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{
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return true;
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}
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}
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return false;
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}
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XERCES_CPP_NAMESPACE_END
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/**
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* End of file SubstitutionGroupComparator.cpp
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*/
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