/** Map publicid to a resource accessible by a classloader. */ public void registerCatalogEntry(String publicId, String resourceName, ClassLoader loader) { if (id2resource == null) id2resource = new Hashtable(17); id2resource.put(publicId, resourceName); if (loader != null) { if (id2loader == null) id2loader = new Hashtable(17); id2loader.put(publicId, loader); } }
/** * Get the named properties for this resource and (potentially) its children. * * @param names an arrary of property names to retrieve * @return a MultiStatus of PropertyResponses * @exception com.ibm.webdav.WebDAVException */ public MultiStatus getProperties(PropertyName[] names) throws WebDAVException { MultiStatus multiStatus = resource.getProperties(resource.getContext()); MultiStatus newMultiStatus = new MultiStatus(); Enumeration responses = multiStatus.getResponses(); while (responses.hasMoreElements()) { PropertyResponse response = (PropertyResponse) responses.nextElement(); PropertyResponse newResponse = new PropertyResponse(response.getResource()); newResponse.setDescription(response.getDescription()); newMultiStatus.addResponse(newResponse); Hashtable properties = (Hashtable) response.getPropertiesByPropName(); // Hashtable newProperties = (Hashtable) newResponse.getProperties(); for (int i = 0; i < names.length; i++) { if (properties.containsKey(names[i])) { PropertyValue srcval = response.getProperty(names[i]); newResponse.setProperty(names[i], srcval); // newProperties.put(names[i], properties.get(names[i])); } else { Document factory = null; try { factory = DocumentBuilderFactory.newInstance().newDocumentBuilder().newDocument(); } catch (Exception e) { throw new WebDAVException(WebDAVStatus.SC_INTERNAL_SERVER_ERROR, e.getMessage()); } // we'll create an xml element with no value because that's // what webdav will need to return for most methods... even if the // property doesn't exist. That's because the // distinction between a propertyname and propertyvalue // is fuzzy in WebDAV xml. A property name is // essentially an empty property value because // all property values have their property // name stuck on. // if we decide to set reviewStatus to null instead (as // we did previously, then the code for MultiStatus.asXML() // needs to be updated to expect null values. // (jlc 990520) Element elTm = factory.createElementNS("X", "X:" + names[i].getLocal()); elTm.setAttribute("xmlns:X", names[i].getNamespace()); newResponse.addProperty(names[i], elTm, WebDAVStatus.SC_NOT_FOUND); } } } return newMultiStatus; }
// return the resource as a stream private InputStream mapResource(String publicId) { if (publicId == null || id2resource == null) return null; String resourceName = (String) id2resource.get(publicId); ClassLoader loader = null; if (resourceName == null) return null; if (id2loader != null) loader = (ClassLoader) id2loader.get(publicId); if (loader == null) return ClassLoader.getSystemResourceAsStream(resourceName); return loader.getResourceAsStream(resourceName); }
public void remove(Track track) { synchronized (this) { docElt.removeChild(track.getElement()); tracks.remove(track); hash.remove(track.getKey()); } }
public Track add(Track track) { synchronized (this) { Track copy; if ((copy = getTrack(track)) == null) { copy = new Track((Element) doc.importNode(track.getElement(), false)); docElt.appendChild(copy.getElement()); tracks.add(copy); hash.put(copy.getKey(), copy); } return copy; } }
/** * Reads the children of an XML element and matches them to properties of a bean. * * @param ob The bean to receive the values * @param element The element the corresponds to the bean * @throws IOException If there is an error reading the document */ public void readObject(Object ob, Element element) throws IOException { // If the object is null, skip the element if (ob == null) { return; } try { BeanInfo info = (BeanInfo) beanCache.get(ob.getClass()); if (info == null) { // Get the bean info for the object info = Introspector.getBeanInfo(ob.getClass(), Object.class); beanCache.put(ob.getClass(), info); } // Get the object's properties PropertyDescriptor[] props = info.getPropertyDescriptors(); // Get the attributes of the node NamedNodeMap attrs = element.getAttributes(); // Get the children of the XML element NodeList nodes = element.getChildNodes(); int numNodes = nodes.getLength(); for (int i = 0; i < props.length; i++) { // Treat indexed properties a little differently if (props[i] instanceof IndexedPropertyDescriptor) { readIndexedProperty(ob, (IndexedPropertyDescriptor) props[i], nodes, attrs); } else { readProperty(ob, props[i], nodes, attrs); } } } catch (IntrospectionException exc) { throw new IOException( "Error getting bean info for " + ob.getClass().getName() + ": " + exc.toString()); } }
public void load(InputStream is) throws IOException, ParserConfigurationException, SAXException { doc = db.parse(is); docElt = doc.getDocumentElement(); if (docElt.getTagName().equals(docElementName)) { NodeList nl = docElt.getElementsByTagName(trackElementName); for (int i = 0; i < nl.getLength(); i++) { Element elt = (Element) nl.item(i); Track track = new Track(elt); tracks.add(track); hash.put(track.getKey(), track); } } }
public static void loadDict(String strDict) { try { BufferedReader br = new BufferedReader(new FileReader(strDict)); String line = null; while ((line = br.readLine()) != null) { int idx = line.indexOf(','); if (idx > 0) { htDict.put(line.substring(0, idx), line.substring(idx + 1)); } } } catch (FileNotFoundException fnfe) { fnfe.printStackTrace(System.out); } catch (IOException ioe) { ioe.printStackTrace(System.out); } }
/** SAX entity resolver */ public InputSource resolveEntity(String name, String uri) throws IOException, SAXException { InputSource retval; String mappedURI = name2uri(name); InputStream stream = mapResource(name); // prefer explicit URI mappings, then bundled resources... if (mappedURI != null) { retval = new InputSource(mappedURI); retval.setPublicId(name); return retval; } else if (stream != null) { uri = "java:resource:" + (String) id2resource.get(name); // NOI18N retval = new InputSource(stream); retval.setPublicId(name); return retval; } else { return null; } }
/** * XML Circuit constructor * * @param file the file that contains the XML description of the circuit * @param g the graphics that will paint the node * @throws CircuitLoadingException if the internal circuit can not be loaded */ public CircuitUI(File file, Graphics g) throws CircuitLoadingException { this(""); DocumentBuilderFactory factory = DocumentBuilderFactory.newInstance(); DocumentBuilder builder; Document doc; Element root; Hashtable<Integer, Link> linkstable = new Hashtable<Integer, Link>(); try { builder = factory.newDocumentBuilder(); doc = builder.parse(file); } catch (SAXException sxe) { throw new CircuitLoadingException("SAX exception raised, invalid XML file."); } catch (ParserConfigurationException pce) { throw new CircuitLoadingException( "Parser exception raised, parser configuration is invalid."); } catch (IOException ioe) { throw new CircuitLoadingException("I/O exception, file cannot be loaded."); } root = (Element) doc.getElementsByTagName("Circuit").item(0); this.setName(root.getAttribute("name")); NodeList nl = root.getElementsByTagName("Node"); Element e; Node n; Class cl; for (int i = 0; i < nl.getLength(); ++i) { e = (Element) nl.item(i); try { cl = Class.forName(e.getAttribute("class")); } catch (Exception exc) { System.err.println(exc.getMessage()); throw new RuntimeException("Circuit creation from xml."); } try { n = ((Node) cl.newInstance()); } catch (Exception exc) { System.err.println(exc.getMessage()); throw new RuntimeException("Circuit creation from xml."); } this.nodes.add(n); n.setLocation(new Integer(e.getAttribute("x")), new Integer(e.getAttribute("y"))); if (n instanceof giraffe.ui.Nameable) ((Nameable) n).setNodeName(e.getAttribute("node_name")); if (n instanceof giraffe.ui.CompositeNode) { try { ((CompositeNode) n) .load(new File(file.getParent() + "/" + e.getAttribute("file_name")), g); } catch (Exception exc) { /* try to load from the lib */ ((CompositeNode) n) .load(new File(giraffe.Giraffe.PATH + "/lib/" + e.getAttribute("file_name")), g); } } NodeList nlist = e.getElementsByTagName("Anchor"); Element el; for (int j = 0; j < nlist.getLength(); ++j) { el = (Element) nlist.item(j); Anchor a = n.getAnchor(new Integer(el.getAttribute("id"))); NodeList linklist = el.getElementsByTagName("Link"); Element link; Link l; for (int k = 0; k < linklist.getLength(); ++k) { link = (Element) linklist.item(k); int id = new Integer(link.getAttribute("id")); int index = new Integer(link.getAttribute("index")); if (id >= this.linkID) linkID = id + 1; if (linkstable.containsKey(id)) { l = linkstable.get(id); l.addLinkedAnchorAt(a, index); a.addLink(l); } else { l = new Link(id); l.addLinkedAnchorAt(a, index); this.links.add(l); linkstable.put(id, l); a.addLink(l); } } } } }
public Track getTrack(String key) { return (Track) hash.get(key); }
public static PetriNet convert(ConfigurableEPC baseEPC) { HashMap<EPCFunction, Transition> functionActivityMapping; HashMap<EPCConnector, Place> xorconnectorChoiceMapping; // HV: Initialize the mappings. functionActivityMapping = new HashMap<EPCFunction, Transition>(); xorconnectorChoiceMapping = new HashMap<EPCConnector, Place>(); // Check to use the weights if necessary // HV: Add both mappings. On completion, these will be filledd. PetriNet petrinet = EPCToPetriNetConverter.convert( baseEPC, new HashMap(), functionActivityMapping, xorconnectorChoiceMapping); HashSet visible = new HashSet(); // HV: The next block is taken care of by the functionActivityMapping // below. /* * Iterator it = petrinet.getTransitions().iterator(); while * (it.hasNext()) { Transition t = (Transition) it.next(); if (t.object * instanceof EPCFunction) { // if (t.getLogEvent() != null) { // Add * transitions with LogEvent (i.e. referring to functions) * visible.add(t); } } */ // HV: Prevent the places mapped onto from being reduced. visible.addAll(functionActivityMapping.values()); visible.addAll(xorconnectorChoiceMapping.values()); Message.add(visible.toString(), Message.DEBUG); Iterator it = petrinet.getPlaces().iterator(); while (it.hasNext()) { Place p = (Place) it.next(); if (p.inDegree() * p.outDegree() == 0) { // Add Initial and final places to visible, i.e. places that // refer to in and output events visible.add(p); } } // Reduce the PetriNet with Murata rules, while keeping the visible ones PetriNetReduction pnred = new PetriNetReduction(); pnred.setNonReducableNodes(visible); HashMap pnMap = new HashMap(); // Used to map pre-reduction nodes to // post-reduction nodes. PetriNet reduced = pnred.reduce(petrinet, pnMap); if (reduced != petrinet) { // Update both mappings from pre-reduction nodes to post-reduction // nodes. HashMap<EPCFunction, Transition> newFunctionActivityMapping = new HashMap<EPCFunction, Transition>(); for (EPCFunction function : functionActivityMapping.keySet()) { Transition transition = (Transition) functionActivityMapping.get(function); if (pnMap.keySet().contains(transition)) { newFunctionActivityMapping.put(function, (Transition) pnMap.get(transition)); } } functionActivityMapping = newFunctionActivityMapping; HashMap<EPCConnector, Place> newXorconnectorChoiceMapping = new HashMap<EPCConnector, Place>(); for (EPCConnector connector : xorconnectorChoiceMapping.keySet()) { Place place = (Place) xorconnectorChoiceMapping.get(connector); if (pnMap.keySet().contains(place)) { newXorconnectorChoiceMapping.put(connector, (Place) pnMap.get(place)); } } xorconnectorChoiceMapping = newXorconnectorChoiceMapping; } reduced.makeClusters(); // filter the \nunknown:normal ArrayList<Transition> alTrans = reduced.getVisibleTasks(); for (int i = 0; i < alTrans.size(); i++) { Transition t = alTrans.get(i); String id = t.getIdentifier(); int idx = id.indexOf("\\nunknown:normal"); if (idx > 0) { id = id.substring(0, idx); } // �˴������ֵ��ѯ�滻���е�label String mappedId = htDict.get(id); if (mappedId != null) { t.setIdentifier(mappedId); } else { t.setIdentifier(id); } } return reduced; }
// maps the public ID to an alternate URI, if one is registered private String name2uri(String publicId) { if (publicId == null || id2uri == null) return null; return (String) id2uri.get(publicId); }
public void registerCatalogEntry(String publicId, String uri) { if (id2uri == null) id2uri = new Hashtable(17); id2uri.put(publicId, uri); }