Package mf.org.apache.xerces.impl.xs

Examples of mf.org.apache.xerces.impl.xs.XSModelGroupImpl


        particle = null;
        XInt minAtt = (XInt)attrValues[XSAttributeChecker.ATTIDX_MINOCCURS];
        XInt maxAtt = (XInt)attrValues[XSAttributeChecker.ATTIDX_MAXOCCURS];
        Long defaultVals = (Long)attrValues[XSAttributeChecker.ATTIDX_FROMDEFAULT];
       
        XSModelGroupImpl group = new XSModelGroupImpl();
        group.fCompositor = XSModelGroupImpl.MODELGROUP_ALL;
        group.fParticleCount = fPArray.getParticleCount();
        group.fParticles = fPArray.popContext();
        XSObjectList annotations;
        if (annotation != null) {
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        XInt minAtt = (XInt)attrValues[XSAttributeChecker.ATTIDX_MINOCCURS];
        XInt maxAtt = (XInt)attrValues[XSAttributeChecker.ATTIDX_MAXOCCURS];
        Long defaultVals = (Long)attrValues[XSAttributeChecker.ATTIDX_FROMDEFAULT];
       
        XSModelGroupImpl group = new XSModelGroupImpl();
        group.fCompositor = choice ? XSModelGroupImpl.MODELGROUP_CHOICE : XSModelGroupImpl.MODELGROUP_SEQUENCE;
        group.fParticleCount = fPArray.getParticleCount();
        group.fParticles = fPArray.popContext();
        XSObjectList annotations;
        if (annotation != null) {
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            XSParticleDecl particle = new XSParticleDecl();
            particle.fType = XSParticleDecl.PARTICLE_WILDCARD;
            particle.fValue = getErrorWildcard();
            particle.fMinOccurs = 0;
            particle.fMaxOccurs = SchemaSymbols.OCCURRENCE_UNBOUNDED;
            XSModelGroupImpl group = new XSModelGroupImpl();
            group.fCompositor = XSModelGroupImpl.MODELGROUP_SEQUENCE;
            group.fParticleCount = 1;
            group.fParticles = new XSParticleDecl[1];
            group.fParticles[0] = particle;
            XSParticleDecl errorContent = new XSParticleDecl();
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                    fAttrChecker.returnAttrArray(derivationTypeAttrValues, schemaDoc);
                    throw new ComplexTypeRecoverableError("cos-all-limited.1.2",
                            new Object[]{}, complexContent);
                }
                // the "sequence" model group to contain both particles
                XSModelGroupImpl group = new XSModelGroupImpl();
                group.fCompositor = XSModelGroupImpl.MODELGROUP_SEQUENCE;
                group.fParticleCount = 2;
                group.fParticles = new XSParticleDecl[2];
                group.fParticles[0] = (XSParticleDecl)baseType.getParticle();
                group.fParticles[1] = fParticle;
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            }
            else if (childName.equals(SchemaSymbols.ELT_SEQUENCE)) {
                particle = traverseSequence(complexContentChild,schemaDoc,grammar,
                        NOT_ALL_CONTEXT,fComplexTypeDecl);
                if (particle != null) {
                    XSModelGroupImpl group = (XSModelGroupImpl)particle.fValue;
                    if (group.fParticleCount == 0)
                        emptyParticle = true;
                }
                attrNode = DOMUtil.getNextSiblingElement(complexContentChild);
            }
            else if (childName.equals(SchemaSymbols.ELT_CHOICE)) {
                particle = traverseChoice(complexContentChild,schemaDoc,grammar,
                        NOT_ALL_CONTEXT,fComplexTypeDecl);
                if (particle != null && particle.fMinOccurs == 0) {
                    XSModelGroupImpl group = (XSModelGroupImpl)particle.fValue;
                    if (group.fParticleCount == 0)
                        emptyParticle = true;
                }
                attrNode = DOMUtil.getNextSiblingElement(complexContentChild);
            }
            else if (childName.equals(SchemaSymbols.ELT_ALL)) {
                particle = traverseAll(complexContentChild,schemaDoc,grammar,
                        PROCESSING_ALL_GP,fComplexTypeDecl);
                if (particle != null) {
                    XSModelGroupImpl group = (XSModelGroupImpl)particle.fValue;
                    if (group.fParticleCount == 0)
                        emptyParticle = true;
                }
                attrNode = DOMUtil.getNextSiblingElement(complexContentChild);
            }
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    XSCMValidator createAllCM(XSParticleDecl particle) {
        if (particle.fMaxOccurs == 0)
            return null;

        // get the model group, and add all children of it to the content model
        XSModelGroupImpl group = (XSModelGroupImpl)particle.fValue;
        // create an all content model. the parameter indicates whether
        // the <all> itself is optional
        XSAllCM allContent = new XSAllCM(particle.fMinOccurs == 0, group.fParticleCount);
        for (int i = 0; i < group.fParticleCount; i++) {
            // add the element decl to the all content model
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                nodeRet.setIsCompactUPAModel(compactedForUPA);
            }
        }
        else if (type == XSParticleDecl.PARTICLE_MODELGROUP) {
            // (task 1,3) convert model groups to binary trees
            XSModelGroupImpl group = (XSModelGroupImpl)particle.fValue;
            CMNode temp = null;
            // when the model group is a choice of more than one particles, but
            // only one of the particle is not empty, (for example
            // <choice>
            //   <sequence/>
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        if ((type == XSParticleDecl.PARTICLE_WILDCARD) ||
            (type == XSParticleDecl.PARTICLE_ELEMENT)) {
            return buildCompactSyntaxTree2(particle, minOccurs, maxOccurs);
        }
        else if (type == XSParticleDecl.PARTICLE_MODELGROUP) {
            XSModelGroupImpl group = (XSModelGroupImpl)particle.fValue;
            if (group.fParticleCount == 1 && (minOccurs != 1 || maxOccurs != 1)) {
                return buildCompactSyntaxTree2(group.fParticles[0], minOccurs, maxOccurs);
            }
            else {
                CMNode temp = null;
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        int maxOccurs = particle.fMaxOccurs;
        int minOccurs = particle.fMinOccurs;
        short type = particle.fType;
       
        if (type == XSParticleDecl.PARTICLE_MODELGROUP) {
            XSModelGroupImpl group = (XSModelGroupImpl) particle.fValue;
            if (minOccurs != 1 || maxOccurs != 1) {
                if (group.fParticleCount == 1) {
                    XSParticleDecl particle2 = (XSParticleDecl) group.fParticles[0];
                    short type2 = particle2.fType;
                    return ((type2 == XSParticleDecl.PARTICLE_ELEMENT ||
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            XSDocumentInfo currSchema = fLocalElementDecl_schema[i];
            SchemaGrammar currGrammar = fGrammarBucket.getGrammar(currSchema.fTargetNamespace);
            fElementTraverser.traverseLocal (fParticle[i], currElem, currSchema, currGrammar, fAllContext[i], fParent[i], fLocalElemNamespaceContext[i]);
            // If it's an empty particle, remove it from the containing component.
            if (fParticle[i].fType == XSParticleDecl.PARTICLE_EMPTY) {
                XSModelGroupImpl group = null;
                if (fParent[i] instanceof XSComplexTypeDecl) {
                    XSParticle p = ((XSComplexTypeDecl)fParent[i]).getParticle();
                    if (p != null)
                        group = (XSModelGroupImpl)p.getTerm();
                }
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