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/*
* Jsr231Driver.java
* Copyright (C) 2004
*
*/
/*
Copyright (C) 1997-2001 Id Software, Inc.
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
See the GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*/
package jake2.render.opengl;
import jake2.Defines;
import jake2.Globals;
import jake2.SizeChangeListener;
import jake2.client.VID;
import jake2.qcommon.Cbuf;
import jake2.qcommon.xcommand_t;
import jake2.render.Base;
import jake2.sys.JOGLKBD;
import java.awt.*;
import java.awt.event.WindowAdapter;
import java.awt.event.WindowEvent;
import java.util.LinkedList;
import javax.media.opengl.*;
import javax.swing.ImageIcon;
/**
* JoglCommon
*/
public abstract class Jsr231Driver extends Jsr231GL implements GLDriver {
protected Jsr231Driver() {
// singleton
}
private GraphicsDevice device;
private DisplayMode oldDisplayMode;
private volatile Display display;
private volatile Frame window;
// This is either the above Window reference or the global
// applet if we're running in applet mode
private volatile Container container;
// window position on the screen
int window_xpos, window_ypos;
public DisplayMode[] getModeList() {
DisplayMode[] modes = device.getDisplayModes();
LinkedList l = new LinkedList();
l.add(oldDisplayMode);
for (int i = 0; i < modes.length; i++) {
DisplayMode m = modes[i];
if (m.getBitDepth() != oldDisplayMode.getBitDepth()) continue;
if (m.getRefreshRate() > oldDisplayMode.getRefreshRate()) continue;
if (m.getHeight() < 240 || m.getWidth() < 320) continue;
int j = 0;
DisplayMode ml = null;
for (j = 0; j < l.size(); j++) {
ml = (DisplayMode)l.get(j);
if (ml.getWidth() > m.getWidth()) break;
if (ml.getWidth() == m.getWidth() && ml.getHeight() >= m.getHeight()) break;
}
if (j == l.size()) {
l.addLast(m);
} else if (ml.getWidth() > m.getWidth() || ml.getHeight() > m.getHeight()) {
l.add(j, m);
} else if (m.getRefreshRate() > ml.getRefreshRate()){
l.remove(j);
l.add(j, m);
}
}
DisplayMode[] ma = new DisplayMode[l.size()];
l.toArray(ma);
return ma;
}
DisplayMode findDisplayMode(Dimension dim) {
DisplayMode mode = null;
DisplayMode m = null;
DisplayMode[] modes = getModeList();
int w = dim.width;
int h = dim.height;
for (int i = 0; i < modes.length; i++) {
m = modes[i];
if (m.getWidth() == w && m.getHeight() == h) {
mode = m;
break;
}
}
if (mode == null) mode = oldDisplayMode;
return mode;
}
String getModeString(DisplayMode m) {
StringBuffer sb = new StringBuffer();
sb.append(m.getWidth());
sb.append('x');
sb.append(m.getHeight());
sb.append('x');
sb.append(m.getBitDepth());
sb.append('@');
sb.append(m.getRefreshRate());
sb.append("Hz");
return sb.toString();
}
/**
* @param dim
* @param mode
* @param fullscreen
* @return enum Base.rserr_t
*/
public int setMode(Dimension dim, int mode, boolean fullscreen) {
final Dimension newDim = new Dimension();
VID.Printf(Defines.PRINT_ALL, "Initializing OpenGL display\n");
VID.Printf(Defines.PRINT_ALL, "...setting mode " + mode + ":");
if (Globals.appletMode && container == null) {
container = (Container) Globals.applet;
}
/*
* full screen handling
*/
if (device == null) {
GraphicsEnvironment env = GraphicsEnvironment.getLocalGraphicsEnvironment();
device = env.getDefaultScreenDevice();
}
if (oldDisplayMode == null) {
oldDisplayMode = device.getDisplayMode();
}
if (!VID.GetModeInfo(newDim, mode)) {
VID.Printf(Defines.PRINT_ALL, " invalid mode\n");
return Base.rserr_invalid_mode;
}
VID.Printf(Defines.PRINT_ALL, " " + newDim.width + " " + newDim.height + '\n');
if (!Globals.appletMode) {
// destroy the existing window
if (window != null) shutdown();
window = new Frame("Jake2 (jsr231)");
container = window;
ImageIcon icon = new ImageIcon(getClass().getResource("/icon-small.png"));
window.setIconImage(icon.getImage());
window.setLayout(new GridBagLayout());
// register event listener
window.addWindowListener(new WindowAdapter() {
public void windowClosing(WindowEvent e) {
Cbuf.ExecuteText(Defines.EXEC_APPEND, "quit");
}
});
}
if (Globals.appletMode) {
// Destroy the previous display if there is one
shutdown();
// We don't support full-screen mode
fullscreen = false;
// We need to feed the container to the JOGL
// keyboard class manually because we'll never get
// a component shown event for it
JOGLKBD.Init(container);
}
Display canvas = new Display(new GLCapabilities());
// we want keypressed events for TAB key
canvas.setFocusTraversalKeysEnabled(false);
canvas.setSize(newDim.width, newDim.height);
// the OpenGL canvas grows and shrinks with the window
final GridBagConstraints gbc = new GridBagConstraints();
gbc.fill = GridBagConstraints.BOTH;
gbc.weightx = gbc.weighty = 1;
// D I F F E R E N T J A K E 2 E V E N T P R O C E S S I N G
container.addComponentListener(JOGLKBD.listener);
canvas.addKeyListener(JOGLKBD.listener);
canvas.addMouseListener(JOGLKBD.listener);
canvas.addMouseMotionListener(JOGLKBD.listener);
canvas.addMouseWheelListener(JOGLKBD.listener);
if (fullscreen) {
container.add(canvas, gbc);
DisplayMode displayMode = findDisplayMode(newDim);
newDim.width = displayMode.getWidth();
newDim.height = displayMode.getHeight();
window.setUndecorated(true);
window.setResizable(false);
device.setFullScreenWindow(window);
if (device.isFullScreenSupported())
device.setDisplayMode(displayMode);
window.setLocation(0, 0);
window.setSize(displayMode.getWidth(), displayMode.getHeight());
canvas.setSize(displayMode.getWidth(), displayMode.getHeight());
VID.Printf(Defines.PRINT_ALL, "...setting fullscreen " + getModeString(displayMode) + '\n');
} else {
if (!Globals.appletMode) {
container.add(canvas, gbc);
final Frame f2 = window;
try {
EventQueue.invokeAndWait(new Runnable() {
public void run() {
//f2.setLocation(window_xpos, window_ypos);
f2.pack();
f2.setResizable(false);
f2.setVisible(true);
}
});
} catch (Exception e) {
e.printStackTrace();
}
} else {
final Display fd = canvas;
try {
EventQueue.invokeAndWait(new Runnable() {
public void run() {
container.add(fd, BorderLayout.CENTER);
// Notify the size listener about the change
SizeChangeListener listener = Globals.sizeChangeListener;
if (listener != null) {
listener.sizeChanged(newDim.width, newDim.height);
}
fd.setSize(newDim.width, newDim.height);
}
});
} catch (Exception e) {
e.printStackTrace();
}
}
}
if (!Globals.appletMode) {
while (!canvas.isDisplayable() || !window.isDisplayable()) {
try {
Thread.sleep(100);
} catch (InterruptedException e) {}
}
}
canvas.requestFocus();
this.display = canvas;
setGL(display.getGL());
init(0, 0);
return Base.rserr_ok;
}
public void shutdown() {
if (!Globals.appletMode) {
try {
EventQueue.invokeAndWait(new Runnable() {
public void run() {
if (oldDisplayMode != null
&& device.getFullScreenWindow() != null) {
try {
if (device.isFullScreenSupported()) {
if (!device.getDisplayMode().equals(oldDisplayMode))
device.setDisplayMode(oldDisplayMode);
}
device.setFullScreenWindow(null);
} catch (Exception e) {
e.printStackTrace();
}
}
}
});
} catch (Exception e) {
e.printStackTrace();
}
if (window != null) {
if (display != null) display.destroy();
window.dispose();
while (window.isDisplayable()) {
try {
Thread.sleep(100);
} catch (InterruptedException e) {
}
}
}
} else {
if (display != null) {
display.destroy();
// Remove the old display if there is one
container.remove(display);
}
}
display = null;
}
/**
* @return true
*/
public boolean init(int xpos, int ypos) {
// set window position
window_xpos = xpos;
window_ypos = ypos;
// clear the screen
// first buffer
beginFrame(0.0f);
glViewport(0, 0, display.getWidth(), display.getHeight());
glClearColor(0, 0, 0, 0);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
endFrame();
// second buffer
beginFrame(0.0f);
glViewport(0, 0, display.getWidth(), display.getHeight());
glClearColor(0, 0, 0, 0);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
endFrame();
return true;
}
public void beginFrame(float camera_separation) {
display.activate();
}
public void endFrame() {
glFlush();
display.update();
}
public void appActivate(boolean activate) {
// do nothing
}
public void enableLogging(boolean enable) {
// do nothing
}
public void logNewFrame() {
// do nothing
}
/*
* @see jake2.client.refexport_t#updateScreen()
*/
public void updateScreen(xcommand_t callback) {
callback.execute();
}
protected void activate() {
display.activate();
}
// --------------------------------------------------------------------------
private static class Display extends Canvas {
private GLDrawable drawable;
private GLContext context;
public Display(GLCapabilities capabilities) {
super(unwrap((AWTGraphicsConfiguration)GLDrawableFactory.getFactory().chooseGraphicsConfiguration(capabilities, null, null)));
drawable = GLDrawableFactory.getFactory().getGLDrawable(this, capabilities, null);
context = drawable.createContext(null);
}
GL getGL() {
activate();
return context.getGL();
}
/**
* @see java.awt.Component#setBounds(int, int, int, int)
*/
public void setBounds(int x, int y, int width, int height) {
final int mask = ~0x03;
if ((width & 0x03) != 0) {
width &= mask;
width += 4;
}
// System.out.println("display bounds: " + x + ", " + y + ", " + width + ", " + height);
super.setBounds(x, y, width, height);
Base.setVid(width, height);
// let the sound and input subsystems know about the new window
VID.NewWindow(width, height);
}
/** <B>Overrides:</B>
<DL><DD><CODE>paint</CODE> in class <CODE>java.awt.Component</CODE></DD></DL> */
// Overridden from Canvas to prevent the AWT's clearing of the
// canvas from interfering with the OpenGL rendering.
public void paint(Graphics g) {
// do nothing
}
/** <B>Overrides:</B>
<DL><DD><CODE>update</CODE> in class <CODE>java.awt.Component</CODE></DD></DL> */
// Overridden from Canvas to prevent the AWT's clearing of the
// canvas from interfering with the OpenGL rendering.
public void update(Graphics g) {
// do nothing
//paint(g);
}
public void addNotify() {
super.addNotify();
super.setBackground(Color.BLACK);
drawable.setRealized(true);
}
public void removeNotify() {
if (drawable != null) {
drawable.setRealized(false);
drawable = null;
}
super.removeNotify();
}
void activate() {
if (GLContext.getCurrent() != context)
context.makeCurrent();
}
private void release() {
if (GLContext.getCurrent() == context)
context.release();
}
void update() {
release();
drawable.swapBuffers();
}
void destroy() {
if (context != null) {
release();
context.destroy();
context = null;
}
}
private static GraphicsConfiguration unwrap(AWTGraphicsConfiguration config) {
if (config == null) {
return null;
}
return config.getGraphicsConfiguration();
}
}
}
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