/* Copyright or (C) or Copr. GET / ENST, Telecom-Paris, Ludovic Apvrille
 * 
 * ludovic.apvrille AT enst.fr
 * 
 * This software is a computer program whose purpose is to allow the
 * edition of TURTLE analysis, design and deployment diagrams, to
 * allow the generation of RT-LOTOS or Java code from this diagram,
 * and at last to allow the analysis of formal validation traces
 * obtained from external tools, e.g. RTL from LAAS-CNRS and CADP
 * from INRIA Rhone-Alpes.
 * 
 * This software is governed by the CeCILL  license under French law and
 * abiding by the rules of distribution of free software.  You can  use,
 * modify and/ or redistribute the software under the terms of the CeCILL
 * license as circulated by CEA, CNRS and INRIA at the following URL
 * "http://www.cecill.info".
 * 
 * As a counterpart to the access to the source code and  rights to copy,
 * modify and redistribute granted by the license, users are provided only
 * with a limited warranty  and the software's author,  the holder of the
 * economic rights,  and the successive licensors  have only  limited
 * liability.
 * 
 * In this respect, the user's attention is drawn to the risks associated
 * with loading,  using,  modifying and/or developing or reproducing the
 * software by the user in light of its specific status of free software,
 * that may mean  that it is complicated to manipulate,  and  that  also
 * therefore means  that it is reserved for developers  and  experienced
 * professionals having in-depth computer knowledge. Users are therefore
 * encouraged to load and test the software's suitability as regards their
 * requirements in conditions enabling the security of their systems and/or
 * data to be ensured and,  more generally, to use and operate it in the
 * same conditions as regards security.
 * 
 * The fact that you are presently reading this means that you have had
 * knowledge of the CeCILL license and that you accept its terms.
 */




package ui.avatardd;

import org.w3c.dom.Element;
import org.w3c.dom.Node;
import org.w3c.dom.NodeList;
import ui.*;
import ui.util.IconManager;

import javax.swing.*;
import java.awt.*;

/**
 * Class ADDDMANode
 * Node. To be used in Avatar deployment diagrams.
 * Creation: 30/06/2014
 * @version 1.0 30/06/2014
 * @author Ludovic APVRILLE
 */
public class ADDDMANode extends ADDCommunicationNode implements WithAttributes {
    private int textY1 = 15;
    private int textY2 = 30;
    private int derivationx = 2;
    private int derivationy = 3;
    private String stereotype = "DMA";
	
    
    public ADDDMANode(int _x, int _y, int _minX, int _maxX, int _minY, int _maxY, boolean _pos, TGComponent _father, TDiagramPanel _tdp)  {
        super(_x, _y, _minX, _maxX, _minY, _maxY, _pos, _father, _tdp);
        
        width = 200;
        height = 200;
        minWidth = 100;
        minHeight = 50;
        
        nbConnectingPoint = 16;
        connectingPoint = new TGConnectingPoint[16];
        
        connectingPoint[0] = new ADDConnectingPoint(this, 0, 0, false, true, 0.0, 0.0);
        connectingPoint[1] = new ADDConnectingPoint(this, 0, 0, false, true, 0.5, 0.0);
        connectingPoint[2] = new ADDConnectingPoint(this, 0, 0, false, true, 1.0, 0.0);
        connectingPoint[3] = new ADDConnectingPoint(this, 0, 0, false, true, 0.0, 0.5);
        connectingPoint[4] = new ADDConnectingPoint(this, 0, 0, false, true, 1.0, 0.5);
        connectingPoint[5] = new ADDConnectingPoint(this, 0, 0, false, true, 0.0, 1.0);
        connectingPoint[6] = new ADDConnectingPoint(this, 0, 0, false, true, 0.5, 1.0);
        connectingPoint[7] = new ADDConnectingPoint(this, 0, 0, false, true, 1.0, 1.0);
        
        connectingPoint[8] = new ADDConnectingPoint(this, 0, 0, false, true, 0.25, 0.0);
        connectingPoint[9] = new ADDConnectingPoint(this, 0, 0, false, true, 0.75, 0.0);
        connectingPoint[10] = new ADDConnectingPoint(this, 0, 0, false, true, 0.0, 0.25);
        connectingPoint[11] = new ADDConnectingPoint(this, 0, 0, false, true, 1.0, 0.25);
        connectingPoint[12] = new ADDConnectingPoint(this, 0, 0, false, true, 0.0, 0.75);
        connectingPoint[13] = new ADDConnectingPoint(this, 0, 0, false, true, 1.0, 0.75);
        connectingPoint[14] = new ADDConnectingPoint(this, 0, 0, false, true, 0.25, 1.0);
        connectingPoint[15] = new ADDConnectingPoint(this, 0, 0, false, true, 0.75, 1.0);
        
        addTGConnectingPointsComment();
        
        nbInternalTGComponent = 0;
        
        moveable = true;
        editable = true;
        removable = true;
        userResizable = true;
        
		name = tdp.findNodeName("DMA");
		value = "name";
        
        myImageIcon = IconManager.imgic1110;
    }
    
    public void internalDrawing(Graphics g) {
		Color c = g.getColor();
		g.draw3DRect(x, y, width, height, true);
		
        // Top lines
        g.drawLine(x, y, x + derivationx, y - derivationy);
        g.drawLine(x + width, y, x + width + derivationx, y - derivationy);
        g.drawLine(x + derivationx, y - derivationy, x + width + derivationx, y - derivationy);
        
        // Right lines
        g.drawLine(x + width, y + height, x + width + derivationx, y - derivationy + height);
        g.drawLine(x + derivationx + width, y - derivationy, x + width + derivationx, y - derivationy + height);
		
		// Filling color
		g.setColor(ColorManager.DMA_BOX);
		g.fill3DRect(x+1, y+1, width-1, height-1, true);
		g.setColor(c);
        
        // Strings
        String ster = "<<" + stereotype + ">>";
        int w  = g.getFontMetrics().stringWidth(ster);
		Font f = g.getFont();
		g.setFont(f.deriveFont(Font.BOLD));
        drawSingleString(g, ster, x + (width - w)/2, y + textY1);
        w  = g.getFontMetrics().stringWidth(name);
		g.setFont(f);
        drawSingleString(g, name, x + (width - w)/2, y + textY2);
		
		// Icon
		//g.drawImage(IconManager.imgic1108.getImage(), x + width - 20, y + 4, null);
		g.drawImage(IconManager.imgic1108.getImage(), x + 4, y + 4, null);
		//g.drawImage(IconManager.img9, x + width - 20, y + 4, null);
    }
    
    public TGComponent isOnOnlyMe(int x1, int y1) {
        
        Polygon pol = new Polygon();
        pol.addPoint(x, y);
        pol.addPoint(x + derivationx, y - derivationy);
        pol.addPoint(x + derivationx + width, y - derivationy);
        pol.addPoint(x + derivationx + width, y + height - derivationy);
        pol.addPoint(x + width, y + height);
        pol.addPoint(x, y + height);
        if (pol.contains(x1, y1)) {
            return this;
        }
        
        return null;
    }
    
    public String getStereotype() {
        return stereotype;
        
    }
    
    public String getNodeName() {
        return name;
    }
    
    public boolean editOnDoubleClick(JFrame frame) {
		//boolean error = false;
	//	String errors = "";
		//int tmp;
		//String tmpName;
        
		/*JDialogDMANode dialog = new JDialogDMANode(frame, "Setting Memory attributes", this);
		dialog.setSize(400, 300);
        GraphicLib.centerOnParent(dialog);
        dialog.show(); // blocked until dialog has been closed
        
		if (!dialog.isRegularClose()) {
			return false;
		}
		
		if (dialog.getNodeName().length() != 0) {
			tmpName = dialog.getNodeName();
			tmpName = tmpName.trim();
			 if (!TAttribute.isAValidId(tmpName, false, false)) {
                error = true;
				errors += "Name of the node  ";
			 } else {
				 name = tmpName;
			 }
		}
		
		if (dialog.getByteDataSize().length() != 0) {	
			try {
				tmp = byteDataSize;
				byteDataSize = Integer.decode(dialog.getByteDataSize()).intValue();
				if (byteDataSize <= 0) {
					byteDataSize = tmp;
					error = true;
					errors += "Data size  ";
				}
			} catch (Exception e) {
				error = true;
				errors += "Data size  ";
			}
		}
		
		if (dialog.getNbOfChannels().length() != 0) {	
			try {
				tmp = nbOfChannels;
				nbOfChannels = Integer.decode(dialog.getNbOfChannels()).intValue();
				if (nbOfChannels <= 0) {
					nbOfChannels = tmp;
					error = true;
					errors += "nb of channels  ";
				}
			} catch (Exception e) {
				error = true;
				errors += "nb of channels  ";
			}
		}
		
		if (dialog.getClockRatio().length() != 0) {	
			try {
				tmp = clockRatio;
				clockRatio = Integer.decode(dialog.getClockRatio()).intValue();
				if (clockRatio <= 0) {
					clockRatio = tmp;
					error = true;
					errors += "Clock ratio  ";
				}
			} catch (Exception e) {
				error = true;
				errors += "Clock ratio  ";
			}
		}
		
		if (error) {
			JOptionPane.showMessageDialog(frame,
                "Invalid value for the following attributes: " + errors,
                "Error",
                JOptionPane.INFORMATION_MESSAGE);
                return false;
		}*/
		
        return true;
    }
    
    
    public int getType() {
        return TGComponentManager.ADD_DMANODE;
    }
    
    protected String translateExtraParam() {
        StringBuffer sb = new StringBuffer("<extraparam>\n");
        sb.append("<info stereotype=\"" + stereotype + "\" nodeName=\"" + name);
        sb.append("\" />\n");
		/*sb.append("<attributes byteDataSize=\"" + byteDataSize + "\" nbOfChannels=\"" + nbOfChannels + "\"");
		sb.append(" clockRatio=\"" + clockRatio + "\" ");
        sb.append("/>\n");*/
        sb.append("</extraparam>\n");
        return new String(sb);
    }
    
    @Override
    public void loadExtraParam(NodeList nl, int decX, int decY, int decId) throws MalformedModelingException{
        //
        try {
            
            NodeList nli;
            Node n1, n2;
            Element elt;
        //    int t1id;
            String sstereotype = null, snodeName = null;
            
            for(int i=0; i<nl.getLength(); i++) {
                n1 = nl.item(i);
                //
                if (n1.getNodeType() == Node.ELEMENT_NODE) {
                    nli = n1.getChildNodes();

                    // Issue #17 copy-paste error on j index
                    for(int j=0; j<nli.getLength(); j++) {
                        n2 = nli.item(j);
                        //
                        if (n2.getNodeType() == Node.ELEMENT_NODE) {
                            elt = (Element) n2;
                            if (elt.getTagName().equals("info")) {
                                sstereotype = elt.getAttribute("stereotype");
                                snodeName = elt.getAttribute("nodeName");
                            }
                            if (sstereotype != null) {
                                stereotype = sstereotype;
                            } 
                            if (snodeName != null){
                                name = snodeName;
                            }
							
							/*if (elt.getTagName().equals("attributes")) {
                                byteDataSize = Integer.decode(elt.getAttribute("byteDataSize")).intValue();
                                nbOfChannels = Integer.decode(elt.getAttribute("nbOfChannels")).intValue();
								if ((elt.getAttribute("clockRatio") != null) &&  (elt.getAttribute("clockRatio").length() > 0)){
									clockRatio = Integer.decode(elt.getAttribute("clockRatio")).intValue();
								}
                            }*/
                        }
                    }
                }
            }
            
        } catch (Exception e) {
            throw new MalformedModelingException();
        }
    }
    
	  
	  /*public int getByteDataSize(){
		  return byteDataSize;
	  }
	  
	  public int getNbOfChannels(){
		  return nbOfChannels;
	  }*/
	  
	  public String getAttributes() {
		  String attr = "";
		  /*attr += "Data size (in byte) = " + byteDataSize + "\n";
		  attr += "Nb of channels = " + nbOfChannels + "\n";*/
		  attr += "Clock ratio = " + clockRatio + "\n";
		  return attr;
	  }
	  
    
}