elemcalltemplate.java

来自「java jdk 1.4的源码」· Java 代码 · 共 400 行

JAVA
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/* * The Apache Software License, Version 1.1 * * * Copyright (c) 1999 The Apache Software Foundation.  All rights  * reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * * 1. Redistributions of source code must retain the above copyright *    notice, this list of conditions and the following disclaimer.  * * 2. Redistributions in binary form must reproduce the above copyright *    notice, this list of conditions and the following disclaimer in *    the documentation and/or other materials provided with the *    distribution. * * 3. The end-user documentation included with the redistribution, *    if any, must include the following acknowledgment:   *       "This product includes software developed by the *        Apache Software Foundation (http://www.apache.org/)." *    Alternately, this acknowledgment may appear in the software itself, *    if and wherever such third-party acknowledgments normally appear. * * 4. The names "Xalan" and "Apache Software Foundation" must *    not be used to endorse or promote products derived from this *    software without prior written permission. For written  *    permission, please contact apache@apache.org. * * 5. Products derived from this software may not be called "Apache", *    nor may "Apache" appear in their name, without prior written *    permission of the Apache Software Foundation. * * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESSED OR IMPLIED * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * DISCLAIMED.  IN NO EVENT SHALL THE APACHE SOFTWARE FOUNDATION OR * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. * ==================================================================== * * This software consists of voluntary contributions made by many * individuals on behalf of the Apache Software Foundation and was * originally based on software copyright (c) 1999, Lotus * Development Corporation., http://www.lotus.com.  For more * information on the Apache Software Foundation, please see * <http://www.apache.org/>. */package org.apache.xalan.templates;import javax.xml.transform.SourceLocator;import javax.xml.transform.TransformerException;import org.apache.xalan.res.XSLTErrorResources;import org.apache.xalan.transformer.TransformerImpl;import org.apache.xml.utils.QName;import org.apache.xpath.VariableStack;import org.apache.xpath.XPathContext;import org.apache.xpath.objects.XObject;/** * <meta name="usage" content="advanced"/> * Implement xsl:call-template. * <pre> * &amp;!ELEMENT xsl:call-template (xsl:with-param)*> * &amp;!ATTLIST xsl:call-template *   name %qname; #REQUIRED * &amp; * </pre> * @see <a href="http://www.w3.org/TR/xslt#named-templates">named-templates in XSLT Specification</a> */public class ElemCallTemplate extends ElemForEach{  /**   * An xsl:call-template element invokes a template by name;   * it has a required name attribute that identifies the template to be invoked.   * @serial   */  public QName m_templateName = null;  /**   * Set the "name" attribute.   * An xsl:call-template element invokes a template by name;   * it has a required name attribute that identifies the template to be invoked.   *   * @param name Name attribute to set   */  public void setName(QName name)  {    m_templateName = name;  }  /**   * Get the "name" attribute.   * An xsl:call-template element invokes a template by name;   * it has a required name attribute that identifies the template to be invoked.   *   * @return Name attribute of this element   */  public QName getName()  {    return m_templateName;  }  /**   * The template which is named by QName.   * @serial   */  private ElemTemplate m_template = null;  /**   * Get an int constant identifying the type of element.   * @see org.apache.xalan.templates.Constants   *   * @return The token ID for this element    */  public int getXSLToken()  {    return Constants.ELEMNAME_CALLTEMPLATE;  }  /**   * Return the node name.   *   * @return The name of this element   */  public String getNodeName()  {    return Constants.ELEMNAME_CALLTEMPLATE_STRING;  }    /**   * This function is called after everything else has been   * recomposed, and allows the template to set remaining   * values that may be based on some other property that   * depends on recomposition.   */  public void compose(StylesheetRoot sroot) throws TransformerException  {    super.compose(sroot);        // Call compose on each param no matter if this is apply-templates     // or call templates.    int length = getParamElemCount();    for (int i = 0; i < length; i++)     {      ElemWithParam ewp = getParamElem(i);      ewp.compose(sroot);    }        if ((null != m_templateName) && (null == m_template))    {      m_template =        this.getStylesheetRoot().getTemplateComposed(m_templateName);              if(null == m_template)        return; // %REVIEW% error?          length = getParamElemCount();      for (int i = 0; i < length; i++)       {        ElemWithParam ewp = getParamElem(i);        ewp.m_index = -1;        // Find the position of the param in the template being called,         // and set the index of the param slot.        int etePos = 0;        for (ElemTemplateElement ete = m_template.getFirstChildElem();              null != ete; ete = ete.getNextSiblingElem())         {          if(ete.getXSLToken() == Constants.ELEMNAME_PARAMVARIABLE)          {            ElemParam ep = (ElemParam)ete;            if(ep.getName().equals(ewp.getName()))            {              ewp.m_index = etePos;            }          }          else            break;          etePos++;        }              }    }  }    /**   * This after the template's children have been composed.   */  public void endCompose(StylesheetRoot sroot) throws TransformerException  {    int length = getParamElemCount();    for (int i = 0; i < length; i++)     {      ElemWithParam ewp = getParamElem(i);      ewp.endCompose(sroot);    }            super.endCompose(sroot);  }  /**   * Invoke a named template.   * @see <a href="http://www.w3.org/TR/xslt#named-templates">named-templates in XSLT Specification</a>   *   * @param transformer non-null reference to the the current transform-time state.   * @param sourceNode non-null reference to the <a href="http://www.w3.org/TR/xslt#dt-current-node">current source node</a>.   * @param mode reference, which may be null, to the <a href="http://www.w3.org/TR/xslt#modes">current mode</a>.   *   * @throws TransformerException   */  public void execute(          TransformerImpl transformer)            throws TransformerException  {    if (TransformerImpl.S_DEBUG)      transformer.getTraceManager().fireTraceEvent(this);    if (null != m_template)    {      XPathContext xctxt = transformer.getXPathContext();      VariableStack vars = xctxt.getVarStack();      int thisframe = vars.getStackFrame();      int nextFrame = vars.link(m_template.m_frameSize);            // We have to clear the section of the stack frame that has params       // so that the default param evaluation will work correctly.      if(m_template.m_inArgsSize > 0)      {        vars.clearLocalSlots(0, m_template.m_inArgsSize);              if(null != m_paramElems)        {          int currentNode = xctxt.getCurrentNode();          vars.setStackFrame(thisframe);          int size = m_paramElems.length;                    for (int i = 0; i < size; i++)           {            ElemWithParam ewp = m_paramElems[i];            if(ewp.m_index >= 0)            {              XObject obj = ewp.getValue(transformer, currentNode);                            // Note here that the index for ElemWithParam must have been               // statically made relative to the xsl:template being called,               // NOT this xsl:template.              vars.setLocalVariable(ewp.m_index, obj, nextFrame);            }          }          vars.setStackFrame(nextFrame);        }      }            SourceLocator savedLocator = xctxt.getSAXLocator();      try      {        xctxt.setSAXLocator(m_template);        // template.executeChildTemplates(transformer, sourceNode, mode, true);        transformer.pushElemTemplateElement(m_template);        m_template.execute(transformer);      }      finally      {        transformer.popElemTemplateElement();        xctxt.setSAXLocator(savedLocator);        // When we entered this function, the current         // frame buffer (cfb) index in the variable stack may         // have been manually set.  If we just call         // unlink(), however, it will restore the cfb to the         // previous link index from the link stack, rather than         // the manually set cfb.  So,         // the only safe solution is to restore it back         // to the same position it was on entry, since we're         // really not working in a stack context here. (Bug4218)        vars.unlink(thisframe);      }    }    else    {      transformer.getMsgMgr().error(this, XSLTErrorResources.ER_TEMPLATE_NOT_FOUND,                                    new Object[]{ m_templateName });  //"Could not find template named: '"+templateName+"'");    }        if (TransformerImpl.S_DEBUG)	  transformer.getTraceManager().fireTraceEndEvent(this);   }    /** Vector of xsl:param elements associated with this element.    *  @serial */  protected ElemWithParam[] m_paramElems = null;  /**   * Get the count xsl:param elements associated with this element.   * @return The number of xsl:param elements.   */  public int getParamElemCount()  {    return (m_paramElems == null) ? 0 : m_paramElems.length;  }  /**   * Get a xsl:param element associated with this element.   *   * @param i Index of element to find   *   * @return xsl:param element at given index   */  public ElemWithParam getParamElem(int i)  {    return m_paramElems[i];  }  /**   * Set a xsl:param element associated with this element.   *   * @param ParamElem xsl:param element to set.    */  public void setParamElem(ElemWithParam ParamElem)  {    if (null == m_paramElems)    {      m_paramElems = new ElemWithParam[1];      m_paramElems[0] = ParamElem;    }    else    {      // Expensive 1 at a time growth, but this is done at build time, so       // I think it's OK.      int length = m_paramElems.length;      ElemWithParam[] ewp = new ElemWithParam[length + 1];      System.arraycopy(m_paramElems, 0, ewp, 0, length);      m_paramElems = ewp;      ewp[length] = ParamElem;    }  }  /**   * Add a child to the child list.   * <!ELEMENT xsl:apply-templates (xsl:sort|xsl:with-param)*>   * <!ATTLIST xsl:apply-templates   *   select %expr; "node()"   *   mode %qname; #IMPLIED   * >   *   * @param newChild Child to add to this node's children list   *   * @return The child that was just added the children list    *   * @throws DOMException   */  public ElemTemplateElement appendChild(ElemTemplateElement newChild)  {    int type = ((ElemTemplateElement) newChild).getXSLToken();    if (Constants.ELEMNAME_WITHPARAM == type)    {      setParamElem((ElemWithParam) newChild);    }    // You still have to append, because this element can    // contain a for-each, and other elements.    return super.appendChild(newChild);  }      /**     * Call the children visitors.     * @param visitor The visitor whose appropriate method will be called.     */    public void callChildVisitors(XSLTVisitor visitor, boolean callAttrs)    {//      if (null != m_paramElems)//      {//        int size = m_paramElems.length;////        for (int i = 0; i < size; i++)//        {//          ElemWithParam ewp = m_paramElems[i];//          ewp.callVisitors(visitor);//        }//      }      super.callChildVisitors(visitor, callAttrs);    }}

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