Package com.sun.xml.internal.bind.v2.model.impl

Examples of com.sun.xml.internal.bind.v2.model.impl.RuntimeElementInfoImpl


        UnmarshallerImpl u = (UnmarshallerImpl)_u;
        return ((JAXBElement<T>)u.unmarshal0(in,bi)).getValue();
    }

    public @NotNull T unmarshal(Unmarshaller _u, Node n) throws JAXBException {
        UnmarshallerImpl u = (UnmarshallerImpl)_u;
        return ((JAXBElement<T>)u.unmarshal0(n,bi)).getValue();
    }
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                throw new AccessorException(e);
            }
        }

        public BeanT parse(CharSequence lexical) throws AccessorException, SAXException {
            UnmarshallingContext ctxt = UnmarshallingContext.getInstance();
            BeanT inst;
            if(ctxt!=null)
                inst = (BeanT)ctxt.createInstance(ownerClass);
            else
                // when this runs for parsing enum constants,
                // there's no UnmarshallingContext.
                inst = ClassFactory.create(ownerClass);
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            state.intercepter = this;

            // TODO: make sure there aren't too many duplicate of this code
            // create the object to unmarshal
            Object child;
            UnmarshallingContext context = state.getContext();

            // let's see if we can reuse the existing peer object
            child = context.getOuterPeer();

            if(child!=null && jaxbType!=child.getClass())
                child = null;   // unexpected type.

            if(child!=null)
                reset((JAXBElement)child,context);

            if(child==null)
                child = context.createInstance(ElementBeanInfoImpl.this);

            fireBeforeUnmarshal(ElementBeanInfoImpl.this, child, state);

            context.recordOuterPeer(child);
            UnmarshallingContext.State p = state.prev;
            p.backup = p.target;
            p.target = child;

            core.startElement(state,ea);
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    public LeafBeanInfoImpl(JAXBContextImpl grammar, RuntimeLeafInfo li) {
        super(grammar,li,li.getClazz(),li.getTypeNames(),li.isElement(),true,false);

        xducer = li.getTransducer();
        loader = new TextLoader(xducer);
        loaderWithSubst = new XsiTypeLoader(this);

        if(isElement())
            tagName = grammar.nameBuilder.createElementName(li.getElementName());
        else
            tagName = null;
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            // these variables have to be set before they are initialized,
            // because the initialization may build other loaders and they may refer to this.
            StructureLoader sl = new StructureLoader(this);
            loader = sl;
            if(ci.hasSubClasses())
                loaderWithTypeSubst = new XsiTypeLoader(this);
            else
                // optimization. we know there can be no @xsi:type
                loaderWithTypeSubst = loader;

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                if(decl.getTargetNamespace().equals(""))
                    hasComponentInNoNamespace = true;
            }

            OutputStream os = new FileOutputStream(episodeFile);
            Bindings bindings = TXW.create(Bindings.class, new StreamSerializer(os, "UTF-8"));
            if(hasComponentInNoNamespace) // otherwise jaxb binding NS should be the default namespace
                bindings._namespace(Const.JAXB_NSURI,"jaxb");
            else
                bindings._namespace(Const.JAXB_NSURI,"");
            bindings.version("2.1");
            bindings._comment("\n\n"+opt.getPrologComment()+"\n  ");

            // generate listing per schema
            for (Map.Entry<XSSchema,List<ClassOutline>> e : perSchema.entrySet()) {
                Bindings group = bindings.bindings();
                String tns = e.getKey().getTargetNamespace();
                if(!tns.equals(""))
                    group._namespace(tns,"tns");

                group.scd("x-schema::"+(tns.equals("")?"":"tns"));
                group.schemaBindings().map(false);

                for (ClassOutline co : e.getValue()) {
                    Bindings child = group.bindings();
                    child.scd(co.target.getSchemaComponent().apply(SCD));
                    child.klass().ref(co.implClass.fullName());
                }
                group.commit(true);
            }

            bindings.commit();
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                        if(ep.isCollectionNillable()) {
                            e.nillable(true);
                        }
                        writeOccurs(e,!ep.isCollectionRequired(),repeated);

                        ComplexType p = e.complexType();
                        choice.write(p);
                    }
                };
            } else {// non-wrapped
                return choice;
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                        elementFormDefault.writeForm(e,ename);
                        if(rp.isCollectionNillable())
                            e.nillable(true);
                        writeOccurs(e,true,repeated);

                        ComplexType p = e.complexType();
                        choice.write(p);
                    }
                };
            } else { // unwrapped
                return choice;
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                    if(mp.isCollectionNillable())
                        e.nillable(true);

                    e = e.name(ename.getLocalPart());
                    writeOccurs(e,isOptional,repeated);
                    ComplexType p = e.complexType();

                    // TODO: entry, key, and value are always unqualified. that needs to be fixed, too.
                    // TODO: we need to generate the corresponding element declaration, if they are qualified
                    e = p.sequence().element();
                    e.name("entry").minOccurs(0).maxOccurs("unbounded");

                    ExplicitGroup seq = e.complexType().sequence();
                    writeKeyOrValue(seq, "key", mp.getKeyType());
                    writeKeyOrValue(seq, "value", mp.getValueType());
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                    // TODO: entry, key, and value are always unqualified. that needs to be fixed, too.
                    // TODO: we need to generate the corresponding element declaration, if they are qualified
                    e = p.sequence().element();
                    e.name("entry").minOccurs(0).maxOccurs("unbounded");

                    ExplicitGroup seq = e.complexType().sequence();
                    writeKeyOrValue(seq, "key", mp.getKeyType());
                    writeKeyOrValue(seq, "value", mp.getValueType());
                }
            };
        }
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