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import gl4java.*;
import gl4java.drawable.*;
import gl4java.awt.GLAnimCanvas;
import gl4java.applet.SimpleGLAnimApplet1;
import gl4java.utils.textures.*;
import gl4java.utils.glf.*;
import java.awt.*;
import java.awt.event.*;
import java.applet.*;
import java.net.*;
public class glf3dtext extends SimpleGLAnimApplet1
{
public void init()
{
super.init();
GLContext.gljNativeDebug = false;
GLContext.gljClassDebug = false;
Dimension d = getSize();
GLCapabilities caps = new GLCapabilities();
canvas =
GLDrawableFactory.getFactory().createGLAnimCanvas(caps, d.width, d.height);
glf3dtextRenderer renderer = new glf3dtextRenderer();
canvas.addGLEventListener(renderer);
add("Center", canvas);
addMouseListener(this);
}
public static void main( String args[] )
{
Frame mainFrame = new Frame("font test 2");
glf3dtext applet = new glf3dtext();
applet.setSize(400, 400);
applet.init();
applet.start();
mainFrame.add(applet);
mainFrame.pack();
mainFrame.setVisible(true);
}
class glf3dtextRenderer
implements GLEventListener, MouseListener,MouseMotionListener
{
float []mPosObjTrans;
float []mPosObjRot;
Point mousePoint;
Point oldMousePoint;
boolean mouseMoveFlag;
private GLFunc gl;
private GLUFunc glu;
private GLContext glj;
protected GLF glf = null;
int fArial1 = 0;
int fArialBMF = 0;
int fTechno1 = 0;
int fTechnoBMF = 0;
int fTimesNew1 = 0;
int fTimesNewBMF = 0;
public glf3dtextRenderer ()
{
super();
}
public void init(GLDrawable drawable)
{
gl = drawable.getGL();
glu = drawable.getGLU();
glj = drawable.getGLContext();
glf = new GLF();
fArial1 = glf.glfLoadFont("arial1.glf");
fArialBMF = glf.glfLoadBFont("arial.bmf");
fTechno1 = glf.glfLoadFont("techno1.glf");
fTechnoBMF = glf.glfLoadBFont("techno.bmf");
fTimesNew1 = glf.glfLoadFont("times_new1.glf");
fTimesNewBMF = glf.glfLoadBFont("times_new.bmf");
// cameraMatrix init
mPosObjTrans=new float[16];
for(int i=0;i<16;i++)
mPosObjTrans[i]=0f;
mPosObjTrans[0]=mPosObjTrans[5]=mPosObjTrans[10]=mPosObjTrans[15]=1f;
mPosObjRot=new float[16];
for(int i=0;i<16;i++)
mPosObjRot[i]=0f;
mPosObjRot[0]=mPosObjRot[5]=mPosObjRot[10]=mPosObjRot[15]=1f;
TranlateObj(0f,0f,-10f);
gl.glShadeModel (GL_SMOOTH);
gl.glEnable(GL_DEPTH_TEST);
gl.glClearColor(0.2f, 0.2f, 0.2f, 1.0f);
gl.glPolygonMode(GL_FRONT_AND_BACK, GL_FILL);
glj.gljCheckGL();
canvas.addMouseListener(this);
canvas.addMouseMotionListener(this);
mouseMoveFlag=false;
}
public void cleanup(GLDrawable drawable)
{
System.out.println("destroy(): " + this);
removeMouseListener(this);
removeMouseMotionListener(this);
}
public void display(GLDrawable drawable)
{
int i;
// just render it
gl.glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
SetCamera();
DrawScene();
glj.gljCheckGL();
}
public void preDisplay(GLDrawable drawable)
{
}
public void postDisplay(GLDrawable drawable)
{
}
public void reshape(gl4java.drawable.GLDrawable gld,int width,int height)
{
gl.glMatrixMode (GL_MODELVIEW);
gl.glViewport (0, 0, width, height);
gl.glLoadIdentity();
SetCamera();
}
public void drawGrid(float x0, float y0,
float width, float height, float step)
{
float i,j;
/* draw grid */
gl.glBegin(GL_LINES);
for(i=x0;i<width;i+=step)
for(j=y0;j<height;j+=step)
{
if(i==0f && j==0f)
gl.glColor3f (1f,0f,0f);
else
gl.glColor3f (0.6f,0.5f,0.5f);
gl.glVertex2f(0f,j);
gl.glVertex2f(width,j);
gl.glVertex2f(i,height);
gl.glVertex2f(i,0f);
}
gl.glEnd();
}
void DrawScene()
{
gl.glMatrixMode (GL_MODELVIEW);
gl.glLoadIdentity ();
// kamera setzen
gl.glLoadMatrixf(mPosObjTrans);
gl.glMultMatrixf(mPosObjRot);
gl.glPushMatrix();
drawGrid(0f, 0f, 10f, 10f, 0.5f);
gl.glPopMatrix();
// obj zeichnen
gl.glPushMatrix();
gl.glColor3d(0.3,0,0);
gl.glBegin(GL_POLYGON);
gl.glVertex2d(0,-0.5);
gl.glVertex2d(0.5,0.5);
gl.glVertex2d(-0.5,0.5);
gl.glEnd();
gl.glColor3d(1,1,1);
gl.glPopMatrix();
gl.glPushMatrix();
gl.glScalef(0.5f, 0.5f, 0.5f);
gl.glTranslatef(-2.2f,-4f,0.5f);
gl.glTranslatef(0f,2f,0f);
glf.glfDraw3DWiredStringF(fArial1, "Arial - GLF 3D Text");
gl.glTranslatef(0f,2f,0f);
glf.glfDraw3DSolidStringF(fArial1, "Arial - GLF 3D Text");
gl.glTranslatef(0f,2f,0f);
glf.glfDraw3DWiredStringF(fTechno1, "Techno - GLF 3D Text");
gl.glTranslatef(0f,2f,0f);
glf.glfDraw3DSolidStringF(fTechno1, "Techno - GLF 3D Text");
gl.glTranslatef(0f,2f,0f);
glf.glfDraw3DWiredStringF(fTimesNew1, "TimesNew - GLF 3D Text");
gl.glTranslatef(0f,2f,0f);
glf.glfDraw3DSolidStringF(fTimesNew1, "TimesNew - GLF 3D Text");
gl.glTranslatef(0f,2f,0f);
glf.glfBeginBFont(fArialBMF);
glf.glfDrawBString("Arial BMF - GLF 3D Text");
glf.glfEndBFont();
gl.glTranslatef(0f, 2f, 0f);
glf.glfBeginBFont(fTechnoBMF);
glf.glfDrawBString("Techno BMF - GLF 3D Text");
glf.glfEndBFont();
gl.glTranslatef(0f, 2f, 0f);
glf.glfBeginBFont(fTimesNewBMF);
glf.glfDrawBString("TimesNew BMF - GLF 3D Text");
glf.glfEndBFont();
gl.glPopMatrix();
}
void SetCamera()
{
Dimension dim=getSize();
float aspect=(float)dim.width/(float)dim.height;
gl.glMatrixMode (GL_PROJECTION);
gl.glLoadIdentity ();
glu.gluPerspective(60f,aspect,.01,100);
}
void RotateObj(float degree,
float axisX,
float axisY,
float axisZ)
{
gl.glMatrixMode (GL_MODELVIEW);
gl.glLoadIdentity ();
// kamera setzen
gl.glRotatef(degree,axisX,axisY,axisZ);
gl.glMultMatrixf(mPosObjRot);
gl.glGetFloatv(GL_MODELVIEW_MATRIX,mPosObjRot);
}
void TranlateObj(float x,float y,float z)
{
gl.glMatrixMode (GL_MODELVIEW);
gl.glLoadIdentity ();
// kamera setzen
gl.glLoadMatrixf(mPosObjTrans);
gl.glTranslatef(x,y,z);
gl.glGetFloatv(GL_MODELVIEW_MATRIX,mPosObjTrans);
}
// entfernt rotationen aus aktueller matrix
double Billboard()
{
float[] mat=new float[16];
gl.glGetFloatv(GL_MODELVIEW_MATRIX,mat);
mat[0] = mat[5] = mat[10] = 1;
mat[1] = mat[2] = mat[4] = mat[6] = mat[8] = mat[9] = 0;
gl.glLoadMatrixf(mat);
return mat[14];
}
// Methods required for the implementation of MouseListener
public void mouseEntered( MouseEvent evt )
{
}
public void mouseExited( MouseEvent evt )
{
}
public void mousePressed( MouseEvent evt )
{
if(mouseMoveFlag==false)
{ // start drag
mouseMoveFlag=true;
mousePoint=evt.getPoint();
}
}
public void mouseReleased( MouseEvent evt )
{
mouseMoveFlag=false;
}
public void mouseClicked( MouseEvent evt )
{
Component comp = evt.getComponent();
}
public void mouseDragged(MouseEvent e)
{
if(mouseMoveFlag==true)
{
oldMousePoint=new Point(mousePoint);
mousePoint=e.getPoint();
Point dif=new Point(mousePoint.x-oldMousePoint.x,
mousePoint.y-oldMousePoint.y);
if( glj.gljMakeCurrent() == false )
{
System.out.println("problem in use() method");
return;
}
if(e.isShiftDown()==true)
TranlateObj((float)dif.x/6.0f,(float)dif.y/-6.0f,0f);
else if(e.isAltDown()==true)
{
TranlateObj(0f,0f,(float)dif.y/6.0f);
RotateObj(dif.x,0f,0f,1f);
}
else
{
RotateObj(dif.x,0f,1f,0f);
RotateObj(dif.y,1f,0f,0f);
}
glj.gljFree();
repaint();
}
}
public void mouseMoved(MouseEvent e)
{
}
}
}
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