public void init() { try { this.imLogo = this.getImage("icon.png"); tracker.addImage(this.imLogo, 0); tracker.waitForID(0); } catch (InterruptedException inex) { } try { this.imHelp = this.getImage("helpphoto.png"); tracker.addImage(this.imHelp, 1); tracker.waitForID(1); } catch (InterruptedException ie) { } this.fontTitle = new Font("GB2312", Font.BOLD, 25); this.fontText = new Font("GB2312", Font.PLAIN, 18); this.setBackground(Color.BLACK); this.setForeground(Color.WHITE); this.timer = new Timer( 500, new ActionListener() { public void actionPerformed(ActionEvent ev) { world = new OSCWorld(); world.onEnter(); repaint(); timer.stop(); } }); this.timer.start(); }
public ToolButton(PaletteListener listener, String iconName, String name, Tool tool) { super(listener); tool.addToolListener(this); setEnabled(tool.isUsable()); // use a Mediatracker to ensure that all the images are initially loaded Iconkit kit = Iconkit.instance(); if (kit == null) { throw new JHotDrawRuntimeException("Iconkit instance isn't set"); } Image im[] = new Image[3]; im[0] = kit.loadImageResource(iconName + "1.gif"); im[1] = kit.loadImageResource(iconName + "2.gif"); im[2] = kit.loadImageResource(iconName + "3.gif"); MediaTracker tracker = new MediaTracker(this); for (int i = 0; i < 3; i++) { tracker.addImage(im[i], i); } try { tracker.waitForAll(); } catch (Exception e) { // ignore exception } fIcon = new PaletteIcon(new Dimension(24, 24), im[0], im[1], im[2]); fTool = tool; fName = name; setIcon(new ImageIcon(im[0])); setPressedIcon(new ImageIcon(im[1])); setSelectedIcon(new ImageIcon(im[2])); setToolTipText(name); }
/** * Create a splash screen (borderless graphic for display while other operations are taking * place). * * @param filename a class-relative path to the splash graphic * @param callingClass the class to which the graphic filename location is relative */ public SplashScreen(String filename, Class callingClass) { super(new Frame()); URL imageURL = callingClass.getResource(filename); image = Toolkit.getDefaultToolkit().createImage(imageURL); // Load the image MediaTracker mt = new MediaTracker(this); mt.addImage(image, 0); try { mt.waitForID(0); } catch (InterruptedException ie) { } // Center the window on the screen int imgWidth = image.getWidth(this); int imgHeight = image.getHeight(this); setSize(imgWidth, imgHeight); Dimension screenDim = Toolkit.getDefaultToolkit().getScreenSize(); setLocation((screenDim.width - imgWidth) / 2, (screenDim.height - imgHeight) / 2); setVisible(true); repaint(); // if on a single processor machine, wait for painting (see Fast Java Splash Screen.pdf) if (!EventQueue.isDispatchThread()) { synchronized (this) { while (!this.paintCalled) { try { this.wait(); } catch (InterruptedException e) { } } } } }
/** * Loads all images to be used by the GUI, and waits for them to be fully loaded before returning. */ private void loadImages() { MediaTracker tracker = new MediaTracker(this); Toolkit tk = Toolkit.getDefaultToolkit(); background = loadImage(tk, "images/background.gif", tracker); try { tracker.waitForID(0); } catch (InterruptedException ie) { } }
public RotatePanel(Image image) { this.image = image; MediaTracker mt = new MediaTracker(this); mt.addImage(image, 0); try { mt.waitForID(0); } catch (Exception e) { e.printStackTrace(); } }
private static boolean waitForImage(Image image) { if (image == null) return false; if (image.getWidth(null) > 0) return true; MediaTracker mediatracker = new MediaTracker(ourComponent); mediatracker.addImage(image, 1); try { mediatracker.waitForID(1, 5000); } catch (InterruptedException ex) { LOG.info(ex); } return !mediatracker.isErrorID(1); }
/** * Konstruktor MapView Aufgabe ist das Setzen der WorldMap und die Hintergrundgrafik (Landkarte) * zu setzen. * * @param worldMap Zum View gehoerige Instanz der Klasse WorldMap. */ public MapView(WorldMap worldMap) { this.worldMap = worldMap; this.territoryBattle = new ArrayList<Territory>(); this.setLayout(null); String path = System.getProperty("java.class.path") + "/risk/maps/" + worldMap.getGraphic(); // String path = "/home/swa/Desktop/maps/"+worldMap.getGraphic(); MediaTracker mt = new MediaTracker(this); this.img = Toolkit.getDefaultToolkit().getImage(path); mt.addImage(this.img, 0); try { mt.waitForAll(); } catch (InterruptedException e) { e.printStackTrace(); } this.setPreferredSize(new Dimension(img.getWidth(null), img.getHeight(null))); this.setVisible(true); }
/** ****************** Open & Read an Image ********************** */ void OpenImage2() { int returnVal = jfc.showOpenDialog(IPToolKit.this); if (returnVal == JFileChooser.APPROVE_OPTION) { file1 = jfc.getSelectedFile(); String path = file.getAbsolutePath(); // image = Toolkit.getDefaultToolkit().getImage(path); try { try { inImage1 = new FileImageInputStream(file1); len1 = (int) inImage1.length(); byteArray1 = new byte[len1]; // System.out.println(len); inImage1.read(byteArray1, 0, len1); image1 = Toolkit.getDefaultToolkit().createImage(byteArray1); MediaTracker t = new MediaTracker(this); t.addImage(image1, 0); try { t.waitForID(1); } catch (Exception eeee) { System.out.println(eeee); } w1 = image1.getWidth(null); h1 = image1.getHeight(null); // System.out.println(w+"\t"+h); } catch (Exception fnfe) { JOptionPane.showMessageDialog(this, "File: Not Found"); } } catch (Exception ice) { JOptionPane.showMessageDialog(this, "File I/O Error"); } } }
/** * Loads an image from a file. * * @param tk The toolkit to be used to load the image. * @param file The name of the file containing the image. * @param tracker The media tracker tracking the progress of the load. * @return The image that was loaded, as an Image object. */ private Image loadImage(Toolkit tk, String file, MediaTracker tracker) { Image result = tk.createImage(file); tracker.addImage(result, 0); return result; }
/** * Creates a new NetworkPanel * * @param _g The genome of the network * @param _w The weights of the network */ public NetworkPanel(Genome _g, Link[] _w) { setBackground(Color.white); genome = _g; weights = _w; // Tracker for the images tracker.addImage(inputNeuron, 0); tracker.addImage(hiddenNeuron, 1); tracker.addImage(outputNeuron, 2); try { tracker.waitForAll(); } catch (InterruptedException e) { } // Create the lines for the links between the layers // The array of lines is actually complete (as for a fully connected network) // The loop in paintComponent decideds whether to draw the line or not. linkLines = new Line2D.Double[weights.length]; int counter = 0; double fromX = leftMargin + inW; double fromY = topMargin + titleSpace + iconHeight / 2.0; double toX = leftMargin + space; double toY = fromY; // Create the lines for the links between the first hidden layer and the input layer for (int i = 0; i < genome.getNeuronsInHiddenLayer(); i++) // Loop through the neurons in 1st hidden layer { fromY = topMargin + titleSpace + iconHeight / 2.0; for (int j = 0; j < genome.getInputs(); j++) // Loop through the neurons in the input layer { linkLines[counter] = new Line2D.Double(fromX, fromY, toX, toY); fromY += space; counter++; } toY += space; } // Create the lines for the links between the hidden layers fromX += space; fromY = topMargin + titleSpace + iconHeight / 2.0; toX = fromX + space - hW; toY = fromY; for (int i = 0; i < genome.getHiddenLayers() - 1; i++) // Loop across the hidden layers { fromY = topMargin + titleSpace + iconHeight / 2.0; toY = fromY; for (int j = 0; j < genome.getNeuronsInHiddenLayer(); j++) // Loop down the 'to' hidden layer { fromY = topMargin + titleSpace + iconHeight / 2.0; for (int k = 0; k < genome.getNeuronsInHiddenLayer(); k++) // Loop down the 'from' hidden layer { linkLines[counter] = new Line2D.Double(fromX, fromY, toX, toY); fromY += space; counter++; } toY += space; } fromX += space; toX = fromX + space - hW; } // Create the lines for the links between the output layer and the final hidden layer fromX = leftMargin + space * genome.getHiddenLayers() + hW; fromY = topMargin + titleSpace + iconHeight / 2.0; toX = leftMargin + space * (genome.getHiddenLayers() + 1); toY = fromY; for (int i = 0; i < genome.getOutputs(); i++) // Loop through the outputs { fromY = topMargin + titleSpace + 14.0; for (int j = 0; j < genome.getNeuronsInHiddenLayer(); j++) // Loop through the neurons in the final hidden layer { linkLines[counter] = new Line2D.Double(fromX, fromY, toX, toY); fromY += space; counter++; } toY += space; } }
public void actionPerformed(ActionEvent e) { String arg = (String) e.getActionCommand(); /** ******************** Open an Image **************** */ if (e.getSource() == m_Open) { int returnVal = jfc.showOpenDialog(IPToolKit.this); if (returnVal == JFileChooser.APPROVE_OPTION) { file = jfc.getSelectedFile(); String path = file.getAbsolutePath(); // image = Toolkit.getDefaultToolkit().getImage(path); try { try { inImage = new FileImageInputStream(file); len = (int) inImage.length(); byteArray = new byte[len]; // System.out.println(len); inImage.read(byteArray, 0, len); image = Toolkit.getDefaultToolkit().createImage(byteArray); MediaTracker t = new MediaTracker(this); t.addImage(image, 0); try { t.waitForID(0); } catch (Exception eeee) { System.out.println(eeee); } w = image.getWidth(null); h = image.getHeight(null); // System.out.println(w+"\t"+h); } catch (Exception fnfe) { JOptionPane.showMessageDialog(this, "File: Not Found"); } } catch (Exception ice) { JOptionPane.showMessageDialog(this, "File I/O Error"); } } if (image != null) { pix_temp = new int[h * w]; ImageIcon icon = new ImageIcon(image); lbl_img.setIcon(icon); setVisible(true); } pix_temp = pixel_grab(image, w, h); pix_temp = pix_pack(pix_temp, w, h); grayImageDisplay(w, h, pix_temp); } /** ****************** Add one image to another ************** */ if (e.getSource() == mAddImg) { OpenImage2(); pix_temp1 = new int[w * h]; pix_res = new int[w * h]; pix_temp1 = pixel_grab(image1, w1, h1); pix_temp1 = pix_pack(pix_temp1, w1, h1); for (int s = 0; s < w * h; s++) { pix_res[s] = pix_temp[s] + pix_temp1[s]; } ; pix_temp1 = saturate(pix_temp1, w, h); imageResultDisplay(w, h, pix_res); } /** * *********************** Add Constant value and then use Satuartion technique *************** */ if (e.getSource() == mAddSat) { String add_value; Image img_add = image; pixel_add = new int[w * h]; pixel_result = pixel_grab(img_add, w, h); add_value = JOptionPane.showInputDialog("Enter Value you wish to add to the image"); int number = Integer.parseInt(add_value); for (int r = 0; r < w * h; r++) { pixel_add[r] = number + pixel_result[r]; } pixel_add = saturate(pixel_add, w, h); pixel_add = pix_pack(pixel_add, w, h); imageResultDisplay(w, h, pixel_add); } /** ************ Add constant by Wrap Around technique ********** */ if (e.getSource() == mAddWrap) { String add_value; Image img_add = image; pixel_add = new int[w * h]; pixel_result = pixel_grab(img_add, w, h); add_value = JOptionPane.showInputDialog("Enter Value you wish to add to the image"); int number = Integer.parseInt(add_value); for (int r = 0; r < w * h; r++) { pixel_add[r] = number + pixel_result[r]; } pixel_add = WrapAround(pixel_add, w, h); pixel_add = pix_pack(pixel_add, w, h); imageResultDisplay(w, h, pixel_add); } /** ****************** Subtract one image from another ************** */ if (e.getSource() == mSubImg) { OpenImage2(); pix_temp1 = new int[w * h]; pix_res = new int[w * h]; pix_temp1 = pixel_grab(image1, w1, h1); pix_temp1 = pix_pack(pix_temp1, w1, h1); for (int s = 0; s < w * h; s++) { pix_res[s] = pix_temp[s] - pix_temp1[s]; } pix_temp1 = saturate(pix_temp1, w1, h1); imageResultDisplay(w1, h1, pix_res); } /** * *********************** Subtract Constant value and then use Satuartion technique * *************** */ if (e.getSource() == mSubSat) { String sub_value; Image img_add = image; pixel_sub = new int[w * h]; pixel_result = pixel_grab(img_add, w, h); sub_value = JOptionPane.showInputDialog("Enter Value you wish to subtract from the image"); int number = Integer.parseInt(sub_value); for (int r = 0; r < w * h; r++) { pixel_sub[r] = pixel_result[r] - number; } pixel_sub = saturate(pixel_sub, w, h); pixel_sub = pix_pack(pixel_sub, w, h); imageResultDisplay(w, h, pixel_sub); } /** ************ Subtract constant by Wrap Around technique ********** */ if (e.getSource() == mSubWrap) { String sub_value; Image img_add = image; pixel_sub = new int[w * h]; pixel_result = pixel_grab(img_add, w, h); sub_value = JOptionPane.showInputDialog("Enter Value you wish to add to the image"); int number = Integer.parseInt(sub_value); for (int r = 0; r < w * h; r++) { pixel_sub[r] = pixel_result[r] - number; } pixel_sub = WrapAround(pixel_sub, w, h); pixel_sub = pix_pack(pixel_sub, w, h); imageResultDisplay(w, h, pixel_sub); } /** ****************** Multiply one image with another ************** */ if (e.getSource() == mMulImg) { OpenImage2(); pix_temp1 = new int[w * h]; pix_res = new int[w * h]; pix_temp1 = pixel_grab(image1, w1, h1); pix_temp1 = pix_pack(pix_temp1, w1, h1); for (int s = 0; s < w * h; s++) { pix_res[s] = pix_temp[s] * pix_temp1[s]; } pix_temp1 = saturate(pix_temp1, w1, h1); imageResultDisplay(w1, h1, pix_res); } /** * *********************** Multiply Constant value and then use Satuartion technique * *************** */ if (e.getSource() == mMulSat) { String mul_value; Image img_mul = image; pixel_mul = new int[w * h]; pixel_result = pixel_grab(img_mul, w, h); mul_value = JOptionPane.showInputDialog("Enter Value you wish to multiply to the image"); int number = Integer.parseInt(mul_value); for (int r = 0; r < w * h; r++) { pixel_mul[r] = pixel_result[r] * number; } pixel_mul = saturate(pixel_mul, w, h); pixel_mul = pix_pack(pixel_mul, w, h); imageResultDisplay(w, h, pixel_mul); } /** ************ Multiply constant by Wrap Around technique ********** */ if (e.getSource() == mMulWrap) { String mul_value; Image img_mul = image; pixel_mul = new int[w * h]; pixel_result = pixel_grab(img_mul, w, h); mul_value = JOptionPane.showInputDialog("Enter Value you wish to multiply to the image"); int number = Integer.parseInt(mul_value); for (int r = 0; r < w * h; r++) { pixel_mul[r] = pixel_result[r] * number; } pixel_mul = WrapAround(pixel_mul, w, h); pixel_mul = pix_pack(pixel_mul, w, h); imageResultDisplay(w, h, pixel_mul); } /** ****************** Divide one image by another ************** */ if (e.getSource() == mDivImg) { OpenImage2(); pix_temp1 = new int[w * h]; pix_res = new int[w * h]; pix_temp1 = pixel_grab(image1, w1, h1); pix_temp1 = pix_pack(pix_temp1, w1, h1); for (int s = 0; s < w * h; s++) { pix_res[s] = pix_temp1[s] / pix_temp[s]; } // pix_temp1 = saturate(pix_temp1,w1,h1); pix_temp1 = WrapAround(pix_temp1, w, h); imageResultDisplay(w1, h1, pix_res); } /** * *********************** Divide by Constant value and then use Saturation technique * *************** */ if (e.getSource() == mDivSat) { String div_value; Image img_add = image; pixel_div = new int[w * h]; pixel_result = pixel_grab(img_add, w, h); div_value = JOptionPane.showInputDialog("Enter value to divide the image by"); int number = Integer.parseInt(div_value); for (int r = 0; r < w * h; r++) { pixel_div[r] = pixel_result[r] / number; } pixel_div = saturate(pixel_div, w, h); pixel_div = pix_pack(pixel_div, w, h); imageResultDisplay(w, h, pixel_div); } /** ************ Divide constant by Wrap Around technique ********** */ if (e.getSource() == mDivWrap) { String div_value; Image img_add = image; pixel_div = new int[w * h]; pixel_result = pixel_grab(img_add, w, h); div_value = JOptionPane.showInputDialog("Enter value to divide image by"); int number = Integer.parseInt(div_value); for (int r = 0; r < w * h; r++) { pixel_div[r] = pixel_result[r] / number; } pixel_div = WrapAround(pixel_div, w, h); pixel_div = pix_pack(pixel_div, w, h); imageResultDisplay(w, h, pixel_div); } /** ******************** Thresholding ************* */ if (e.getSource() == mThreshold) { String thresh_value; Image img_add = image; pixel_result = pixel_grab(img_add, w, h); thresh_value = JOptionPane.showInputDialog("Enter value to threshold the image"); int number = Integer.parseInt(thresh_value); for (int r = 0; r < w * h; r++) { if (pixel_result[r] >= number) pixel_result[r] = 255; else if (pixel_result[r] <= number) pixel_result[r] = 0; } pixel_result = pix_pack(pixel_result, w, h); imageResultDisplay(w, h, pixel_result); } if (e.getSource() == m_Save) { FileImageOutputStream src_img; int returnVal = jfc.showSaveDialog(IPToolKit.this); if (returnVal == JFileChooser.APPROVE_OPTION) { File fileR = jfc.getSelectedFile(); String fileToSave = file.getAbsolutePath(); if (!fileToSave.toLowerCase().endsWith(".jpg")) { fileR = new File(fileToSave + ".jpg"); } try { src_img = new FileImageOutputStream(fileR); buf_img = getImageFromArray(pixel_result, w, h); ImageIO.write(buf_img, "jpg", src_img); } catch (IOException ex8) { System.out.println(ex8); } } // } } /** ***************************** Increase brightness **************** */ if (e.getSource() == mBright) { String bright_value; Image img_add = image; pixel_result = pixel_grab(img_add, w, h); bright_value = JOptionPane.showInputDialog("Enter value to increase brightness"); int number = Integer.parseInt(bright_value); for (int r = 0; r < w * h; r++) { pixel_result[r] = pixel_result[r] + number; } pixel_result = saturate(pixel_result, w, h); pixel_result = pix_pack(pixel_result, w, h); imageResultDisplay(w, h, pixel_result); } /** ****************** Contrast Strtching *************** */ if (e.getSource() == mContrast) { String cont_value1, cont_value2; Image img_add = image; pixel_cont = new int[w * h]; pixel_result = pixel_grab(img_add, w, h); cont_value1 = JOptionPane.showInputDialog("Enter lower limit for contrast stretch"); int number = Integer.parseInt(cont_value1); cont_value2 = JOptionPane.showInputDialog("Enter higher limit for contrast stretch"); int number1 = Integer.parseInt(cont_value2); for (int r = 0; r < w * h; r++) { if (pixel_result[r] <= number1) { pixel_cont[r] = pixel_result[r] - 50; if (pixel_cont[r] < 0) pixel_cont[r] = 0; } else if (pixel_result[r] >= number) { pixel_cont[r] = pixel_result[r] + 50; if (pixel_cont[r] > 255) pixel_cont[r] = 255; } else pixel_cont[r] = pixel_result[r]; } pixel_cont = saturate(pixel_cont, w, h); pixel_cont = pix_pack(pixel_cont, w, h); imageResultDisplay(w, h, pixel_cont); } /** ******************* Low Pass Filter ****************** */ if (e.getSource() == mlowPass) { int mask[][] = {{1, 1, 1}, {1, 1, 1}, {1, 1, 1}}; pixel_result = pixel_grab(image, w, h); int pix_tempLow[][] = new int[h][w]; pix_tempLow = OneD_ArrayToTwoD_Array(w, h, pixel_result); pix_tempLow = MaskOperation(w, h, pix_tempLow, mask); int pix_temp1D[] = new int[(w) * (h)]; pix_temp1D = TwoD_ArrayToOneD_Array(w, h, pix_tempLow); pix_temp1D = restrict(pix_temp1D); pix_temp1D = pix_pack(pix_temp1D, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_temp1D); } /** ********************* High Pass Filter *************** */ if (e.getSource() == mhighPass) { int mask[][] = {{-1, -1, -1}, {-1, 8, -1}, {-1, -1, -1}}; pixel_result = pixel_grab(image, w, h); int pix_tempLow[][] = new int[h][w]; pix_tempLow = OneD_ArrayToTwoD_Array(w, h, pixel_result); pix_tempLow = MaskOperation(w, h, pix_tempLow, mask); int pix_temp1D[] = new int[(w) * (h)]; pix_temp1D = TwoD_ArrayToOneD_Array(w, h, pix_tempLow); pix_temp1D = saturate(pix_temp1D, w - 2, h - 2); pix_temp1D = restrict(pix_temp1D); pix_temp1D = pix_pack(pix_temp1D, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_temp1D); } /** *************************** High Boost Filter **************** */ if (e.getSource() == mhighBoost) { int mask[][] = {{-1, -1, -1}, {-1, 9, -1}, {-1, -1, -1}}; pixel_result = pixel_grab(image, w, h); int pix_tempLow[][] = new int[h][w]; pix_tempLow = OneD_ArrayToTwoD_Array(w, h, pixel_result); pix_tempLow = MaskOperation(w, h, pix_tempLow, mask); int pix_temp1D[] = new int[(w) * (h)]; pix_temp1D = TwoD_ArrayToOneD_Array(w, h, pix_tempLow); pix_temp1D = saturate(pix_temp1D, w - 2, h - 2); pix_temp1D = restrict(pix_temp1D); pix_temp1D = pix_pack(pix_temp1D, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_temp1D); } if (e.getSource() == m_Save) { for (int i = 0; i < w * h; i++) { System.out.println(pixel_result[i]); } FileImageOutputStream src_img; int returnVal = jfc.showSaveDialog(IPToolKit.this); if (returnVal == JFileChooser.APPROVE_OPTION) { File fileR = jfc.getSelectedFile(); String fileToSave = file.getAbsolutePath(); if (!fileToSave.toLowerCase().endsWith(".jpg")) { fileR = new File(fileToSave + ".jpg"); } try { src_img = new FileImageOutputStream(fileR); buf_img = getImageFromArray(pixel_result, w, h); ImageIO.write(buf_img, "jpg", src_img); } catch (IOException ex8) { System.out.println(ex8); } } } /** ********************* Invert and image ************ */ if (e.getSource() == mInvert) { Image img_Invert = image; pixel_result = new int[w * h]; pixel_result = pixel_grab(img_Invert, w, h); for (int r = 0; r < w * h; r++) { pixel_result[r] = 255 - pixel_result[r]; } // pixel_div = saturate(pixel_div,w,h); pixel_result = pix_pack(pixel_result, w, h); imageResultDisplay(w, h, pixel_result); } /** *************************** Median Filter **************** */ if (arg.equals("Median")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = median_filter(p2d); pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Prewits Horizontal Edge Detection ******************* */ if (arg.equals("Prewits Horizontal")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; int mask[][] = {{-1, -1, -1}, {0, 0, 0}, {1, 1, 1}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask); pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pres = saturate(pres, w - 2, h - 2); pres = restrict(pres); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Prewits Vertical Edge Detection ******************* */ if (arg.equals("Prewits Vertical")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; int mask[][] = {{-1, 0, 1}, {-1, 0, 1}, {-1, 0, 1}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask); pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pres = saturate(pres, w - 2, h - 2); pres = restrict(pres); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Prewits Edge Detection ******************* */ if (arg.equals("Prewits Both")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres1[] = new int[h * w]; int pres2[] = new int[h * w]; int pres[] = new int[h * w]; int mask1[][] = {{-1, -1, -1}, {0, 0, 0}, {1, 1, 1}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask1); pres1 = TwoD_ArrayToOneD_Array(w, h, pp2d); pres1 = saturate(pres1, w - 2, h - 2); pres1 = restrict(pres1); int mask2[][] = {{-1, 0, 1}, {-1, 0, 1}, {-1, 0, 1}}; p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask2); pres2 = TwoD_ArrayToOneD_Array(w, h, pp2d); pres2 = saturate(pres2, w - 2, h - 2); pres2 = restrict(pres2); for (int i = 0; i < ((h - 2) * (w - 2)); i++) { pres[i] = pres1[i] + pres2[i]; } pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Sobel Horizontal Edge Detection ******************* */ if (arg.equals("Sobel Horizontal")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; int mask[][] = {{-1, -2, -1}, {0, 0, 0}, {1, 2, 1}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask); pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pres = saturate(pres, w - 2, h - 2); pres = restrict(pres); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Sobel Vertical Edge Detection ******************* */ if (arg.equals("Sobel Vertical")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; int mask[][] = {{-1, 0, 1}, {-2, 0, 2}, {-1, 0, 1}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask); pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pres = saturate(pres, w - 2, h - 2); pres = restrict(pres); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Sobel Edge Detection ******************* */ if (arg.equals("Sobel Both")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres1[] = new int[h * w]; int pres2[] = new int[h * w]; int pres[] = new int[h * w]; int mask1[][] = {{-1, -2, -1}, {0, 0, 0}, {1, 2, 1}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask1); pres1 = TwoD_ArrayToOneD_Array(w, h, pp2d); pres1 = saturate(pres1, w - 2, h - 2); pres1 = restrict(pres1); int mask2[][] = {{-1, 0, 1}, {-2, 0, 2}, {-1, 0, 1}}; p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask2); pres2 = TwoD_ArrayToOneD_Array(w, h, pp2d); pres2 = saturate(pres2, w - 2, h - 2); pres2 = restrict(pres2); for (int i = 0; i < ((h - 2) * (w - 2)); i++) { pres[i] = pres1[i] + pres2[i]; } pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Roberts Edge Detection ******************* */ if (arg.equals("Roberts")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; int mask[][] = {{1, 0}, {0, -1}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); for (int i = 1; i < h - 1; i++) { for (int j = 1; j < w - 1; j++) { pp2d[i][j] = ((mask[0][0] * p2d[i - 1][j - 1] + mask[1][0] * p2d[i + 1][j - 1]) + (mask[0][1] * p2d[i - 1][j + 1] + mask[1][1] * p2d[i + 1][j + 1])) / 2; } } pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pres = saturate(pres, w - 2, h - 2); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Mean Filter ******************* */ if (arg.equals("Mean")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = mean_filt(p2d); pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Laplacian Edge Detector ******************* */ if (arg.equals("Laplacian")) { int[] pix_grabed = new int[w * h]; int[][] p2d = new int[h][w]; int[][] pp2d = new int[h][w]; int pix_pcked[] = new int[w * h]; int pres[] = new int[h * w]; int mask[][] = {{0, -2, 0}, {-2, 8, -2}, {0, -2, 0}}; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); pp2d = MaskOperation(w, h, p2d, mask); pres = TwoD_ArrayToOneD_Array(w, h, pp2d); pres = saturate(pres, w - 2, h - 2); pres = restrict(pres); pix_pcked = pix_pack(pres, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pix_pcked); } /** ********************** Histogram Equalization ******************* */ if (arg.equals("Histogram Equalization")) { int[] pix_grabed = new int[h * w]; int pres[] = new int[h * w]; int cnt_pix[] = new int[256]; int pixx[] = new int[h * w]; int pix_pcked[] = new int[h * w]; int pix_res[] = new int[h * w]; int len = h * w; int res = 0; pix_grabed = pixel_grab(image, w, h); for (int i = 0; i < h * w; i++) { pixx[i] = pix_grabed[i]; } for (int i = 0; i < 256; i++) { cnt_pix[i] = 0; } for (int i = 0; i < len; i++) { int ind = pixx[i]; cnt_pix[ind]++; } for (int i = 0; i < w * h; i++) { float a = 0; for (int j = 0; j < (pixx[i] + 1); j++) { float b = (float) cnt_pix[j]; float c = (float) (h * w); a = a + (b / c); } res = (int) (a * 255); if (res > 255) res = 255; pix_res[i] = (0xff000000 | (res << 16) | (res << 8) | res); } pix_pcked = pix_pack(pix_res, w, h); imageResultDisplay(w, h, pix_pcked); } if (arg.equals("Connected Component")) { int pix_grabed[] = new int[h * w]; int p2d[][] = new int[h][w]; conect_input = new int[h][w]; conect_output = new int[h][w]; int x1 = x_cor; int y1 = y_cor; pix_grabed = pixel_grab(image, w, h); p2d = OneD_ArrayToTwoD_Array(w, h, pix_grabed); s = 0; t = 0; obj_size = 0; intensity = p2d[y1][x1]; for (int i = 0; i < h; i++) { for (int j = 0; j < w; j++) { conect_input[i][j] = p2d[i][j]; conect_output[i][j] = 0; } } connect(y1, x1); int pixx[] = new int[h * w]; int pp[] = new int[h * w]; pixx = TwoD_ArrayToOneD_Array(w, h, conect_output); pixx = saturate(pixx, w - 2, h - 2); pp = pix_pack(pixx, w - 2, h - 2); imageResultDisplay(w - 2, h - 2, pp); } /** ********************** Blending ******************* */ if (arg.equals("Blending")) { int size; int hei, wid; if (h1 > h) hei = h1; else hei = h; if (w1 > w) wid = w1; else wid = w; size = hei * wid; int pix_img1[] = new int[size]; int pix_img2[] = new int[size]; int pix_res[] = new int[size]; int pixx[] = new int[h1 * w1]; double x = 0.5; pix_img1 = pixel_grab(image, w, h); OpenImage2(); pix_img2 = pixel_grab(image1, w1, h1); // grayImageDisplay(w1,h1,pixx) for (int i = 0; i < size; i++) { pix_res[i] = (int) ((x * pix_img1[i]) + ((1 - x) * (pix_img2[i]))); } int pix_pcked[] = new int[size]; pix_pcked = pix_pack(pix_res, wid, hei); imageResultDisplay(wid, hei, pix_pcked); } /** ****************** Quit OR Exit **************** */ if (arg.equals("Exit")) { System.exit(0); } }
// // Build installer window // public static void showInstallerWindow() { _installerFrame = new JFrame(Config.getWindowTitle()); Container cont = _installerFrame.getContentPane(); cont.setLayout(new BorderLayout()); // North pane Box topPane = new Box(BoxLayout.X_AXIS); JLabel title = new JLabel(Config.getWindowHeading()); Font titleFont = new Font("SansSerif", Font.BOLD, 22); title.setFont(titleFont); title.setForeground(Color.black); // Create Sun logo URL urlLogo = Main.class.getResource(Config.getWindowLogo()); Image img = Toolkit.getDefaultToolkit().getImage(urlLogo); MediaTracker md = new MediaTracker(_installerFrame); md.addImage(img, 0); try { md.waitForAll(); } catch (Exception ioe) { Config.trace(ioe.toString()); } if (md.isErrorID(0)) Config.trace("Error loading image"); Icon sunLogo = new ImageIcon(img); JLabel logoLabel = new JLabel(sunLogo); logoLabel.setOpaque(true); topPane.add(topPane.createHorizontalStrut(5)); topPane.add(title); topPane.add(topPane.createHorizontalGlue()); topPane.add(logoLabel); topPane.add(topPane.createHorizontalStrut(5)); // West Pane Box westPane = new Box(BoxLayout.X_AXIS); westPane.add(westPane.createHorizontalStrut(10)); // South Pane Box bottomPane = new Box(BoxLayout.X_AXIS); bottomPane.add(bottomPane.createHorizontalGlue()); JButton abortButton = new JButton(Config.getWindowAbortButton()); abortButton.setMnemonic(Config.getWindowAbortMnemonic()); bottomPane.add(abortButton); bottomPane.add(bottomPane.createHorizontalGlue()); bottomPane.setBorder(BorderFactory.createEmptyBorder(0, 0, 5, 0)); // Center Pane Box centerPane = new Box(BoxLayout.Y_AXIS); JLabel hidden = new JLabel(Config.getWindowHiddenLabel()); hidden.setVisible(false); centerPane.add(hidden); _stepLabels = new JLabel[5]; for (int i = 0; i < _stepLabels.length; i++) { _stepLabels[i] = new JLabel(Config.getWindowStep(i)); _stepLabels[i].setEnabled(false); centerPane.add(_stepLabels[i]); // install label's length will expand,so set a longer size. if (i == STEP_INSTALL) { Dimension dim = new JLabel(Config.getWindowStepWait(STEP_INSTALL)).getPreferredSize(); _stepLabels[i].setPreferredSize(dim); } } hidden = new JLabel(Config.getWindowHiddenLabel()); hidden.setVisible(false); centerPane.add(hidden); // Setup box layout cont.add(topPane, "North"); cont.add(westPane, "West"); cont.add(bottomPane, "South"); cont.add(centerPane, "Center"); _installerFrame.pack(); Dimension dim = _installerFrame.getSize(); // hard code to ensure title is completely visible on Sol/lin. if (dim.width < 400) { dim.width = 400; _installerFrame.setSize(dim); } Rectangle size = _installerFrame.getBounds(); Dimension screenSize = Toolkit.getDefaultToolkit().getScreenSize(); size.width = Math.min(screenSize.width, size.width); size.height = Math.min(screenSize.height, size.height); // Put window at 1/4, 1/4 of screen resoluion _installerFrame.setBounds( (screenSize.width - size.width) / 4, (screenSize.height - size.height) / 4, size.width, size.height); // Setup event listners _installerFrame.addWindowListener( new WindowAdapter() { public void windowClosing(WindowEvent we) { installFailed("Window closed", null); } }); abortButton.addActionListener( new ActionListener() { public void actionPerformed(ActionEvent ae) { installFailed("Abort pressed", null); } }); // Show window _installerFrame.show(); }