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| package GUI.Horodateur;
import java.awt.AlphaComposite;
import java.awt.BasicStroke;
import java.awt.Color;
import java.awt.Font;
import java.awt.Graphics;
import java.awt.Graphics2D;
import java.awt.Rectangle;
import java.awt.RenderingHints;
import java.awt.geom.Ellipse2D;
import java.awt.geom.Line2D;
import java.math.BigInteger;
import java.util.Calendar;
import java.util.TimerTask;
/**
*
* @author thierry
*/
public class JHorloge extends javax.swing.JPanel {
private Line2D.Double aiguilleSeconde, aiguilleMinute, aiguilleHeure;
private final int SECONDE = 1;
private final int MINUTE = 2;
private final int HEURE = 3;
private Rectangle rafraichisseur = new Rectangle(100, 100);
/** Creates new form BeanForm */
public JHorloge() {
initComponents();
setSize(201, 120);
java.util.Timer timer2 = new java.util.Timer("mecaniqueHorloge", true);
TimerTask tachePeriodique = new TimerTask() {
@Override
public void run() {
repaint(rafraichisseur);
}
};
timer2.schedule(tachePeriodique, (long) 0, (long) 1000);
}
/** This method is called from within the constructor to
* initialize the form.
* WARNING: Do NOT modify this code. The content of this method is
* always regenerated by the Form Editor.
*/
// <editor-fold defaultstate="collapsed" desc="Generated Code">
private void initComponents() {
setOpaque(false);
setLayout(null);
}// </editor-fold>
// Variables declaration - do not modify
// End of variables declaration
private double calculX2(int type) {
double reponse = 0;
if (type == SECONDE) reponse = (java.lang.Math.cos(determineAngle(Calendar.getInstance().get(Calendar.SECOND))) * 40) + 60;
if (type == MINUTE) reponse = (java.lang.Math.cos(determineAngle(Calendar.getInstance().get(Calendar.MINUTE))) * 40) + 60;
if (type == HEURE) reponse = (java.lang.Math.cos(determineAngleHeure(Calendar.getInstance().get(Calendar.HOUR), Calendar.getInstance().get(Calendar.MINUTE))) * 25) + 60;
return reponse;
}
private int calculY2(int type) {
double reponse = 0;
if (type == SECONDE) reponse = (java.lang.Math.sin(determineAngle(Calendar.getInstance().get(Calendar.SECOND))) * 40) + 60;
if (type == MINUTE) reponse = (java.lang.Math.sin(determineAngle(Calendar.getInstance().get(Calendar.MINUTE))) * 40) + 60;
if (type == HEURE) reponse = (java.lang.Math.sin(determineAngleHeure(Calendar.getInstance().get(Calendar.HOUR), Calendar.getInstance().get(Calendar.MINUTE))) * 25) + 60;
return Double.valueOf(reponse).intValue();
}
private double determineAngle(int tempsEnSecondes) {
double reponse;
reponse = Double.valueOf(6 * (tempsEnSecondes) - 90).doubleValue();
return java.lang.Math.toRadians(reponse);
}
private double determineAngleHeure(int tempsEnHeure, int tempsEnMinute) {
double reponse;
reponse = Double.valueOf(30 * (tempsEnHeure) - 90).doubleValue();
if (tempsEnMinute >= 15) reponse = Double.valueOf(30 * (tempsEnHeure) - 82.5).doubleValue();
if (tempsEnMinute >= 30) reponse = Double.valueOf(30 * (tempsEnHeure) - 75).doubleValue();
if (tempsEnMinute >= 45) reponse = Double.valueOf(30 * (tempsEnHeure) - 67.5).doubleValue();
return java.lang.Math.toRadians(reponse);
}
@Override
public void paintComponent(Graphics g) {
Graphics2D g2 = (Graphics2D)g;
g2.setRenderingHint(RenderingHints.KEY_ANTIALIASING, RenderingHints.VALUE_ANTIALIAS_ON);
g2.setComposite(AlphaComposite.getInstance(AlphaComposite.SRC_ATOP));
Ellipse2D.Double cadran;
int x1, x2, y1, y2;
double rayon = 50.0;
double longueur;
BigInteger[] diviseur;
g2.setColor(Color.WHITE);
// Peinture du fond dégradé circulaire du cadran de l'horloge.
for (int i = 10 ; i <= 100 ; i ++) {
float RGB_R = Float.valueOf(255 - (i * 40/(Double.valueOf(rayon * 2).intValue()))).floatValue();
float RGB_G = Float.valueOf(255 - (i * 55/(Double.valueOf(rayon * 2).intValue()))).floatValue();
float RGB_B = Float.valueOf(255 - (i * 232/(Double.valueOf(rayon * 2).intValue()))).floatValue();
g2.setColor(new Color(Float.valueOf(RGB_R).intValue(), Float.valueOf(RGB_G).intValue(), Float.valueOf(RGB_B).intValue()));
cadran = new Ellipse2D.Double(((100.0 - Double.valueOf(i).doubleValue()) / 2.0) + 10.0, ((100.0 - Double.valueOf(i).doubleValue()) / 2.0) + 10.0, Double.valueOf(i).doubleValue(), Double.valueOf(i).doubleValue());
g2.draw(cadran);
}
// Peinture des graduations de l'horloge.
g2.setColor(new Color(90, 90, 90));
g2.setStroke(new BasicStroke(Float.valueOf(2).floatValue()));
for (int alpha = 0 ; alpha < 360 ; alpha += 6) {
diviseur = BigInteger.valueOf(Long.valueOf(alpha).longValue()).divideAndRemainder(BigInteger.valueOf(Long.valueOf(5).longValue()));
if (diviseur[1].intValue() == 0) longueur = 10.0;
else longueur = 5.0;
x1 = Double.valueOf(java.lang.Math.cos(java.lang.Math.toRadians(alpha)) * rayon).intValue();
x2 = Double.valueOf(java.lang.Math.cos(java.lang.Math.toRadians(alpha)) * (rayon - longueur)).intValue();
y1 = Double.valueOf(java.lang.Math.sin(java.lang.Math.toRadians(alpha)) * rayon).intValue();
y2 = Double.valueOf(java.lang.Math.sin(java.lang.Math.toRadians(alpha)) * (rayon - longueur)).intValue();
g.drawLine(x2 + Double.valueOf(rayon).intValue() + 10, y2 + Double.valueOf(rayon).intValue() + 10, x1 + Double.valueOf(rayon).intValue() + 10, y1 + Double.valueOf(rayon).intValue() + 10);
}
g2.setFont(new Font("Arial", Font.BOLD, 12));
int hauteur, largeur;
hauteur = Double.valueOf(g2.getFontMetrics().getStringBounds("12", g2).getHeight()).intValue();
largeur = Double.valueOf(g2.getFontMetrics().getStringBounds("12", g2).getWidth()).intValue();
g2.drawString("12", 60 - (largeur / 2), 22 + hauteur);
largeur = Double.valueOf(g2.getFontMetrics().getStringBounds("3", g2).getWidth()).intValue();
g2.drawString("3", 95 - largeur, 63);
largeur = Double.valueOf(g2.getFontMetrics().getStringBounds("6", g2).getWidth()).intValue();
g2.drawString("6", 61 - (largeur / 2), 95);
largeur = Double.valueOf(g2.getFontMetrics().getStringBounds("9", g2).getWidth()).intValue();
g2.drawString("9", 20 + largeur, 63);
// A partir d'ici, il faut lancer le Timer et lui donner le moyen de peindre et de faire tourner les aiguilles...
//g2.setColor(Color.BLACK);
g2.setColor(Color.BLACK);
g2.setStroke(new BasicStroke(Float.valueOf(1).floatValue()));
aiguilleSeconde = new Line2D.Double(60.0, 60.0, calculX2(SECONDE), calculY2(SECONDE));
g2.draw(aiguilleSeconde);
g2.setStroke(new BasicStroke(Float.valueOf(3).floatValue()));
g2.setColor(new Color(100, 100, 100));
aiguilleMinute = new Line2D.Double(60.0, 60.0, calculX2(MINUTE), calculY2(MINUTE));
g2.draw(aiguilleMinute);
g2.setStroke(new BasicStroke(Float.valueOf(4).floatValue()));
aiguilleHeure = new Line2D.Double(60.0, 60.0, calculX2(HEURE), calculY2(HEURE));
g2.draw(aiguilleHeure);
//Peinture du plot central de l'horloge.
cadran = new Ellipse2D.Double(55.0, 55.0, 10.0, 10.0);
g2.setStroke(new BasicStroke(Float.valueOf(1).floatValue()));
g2.setColor(Color.WHITE);
g2.fill(cadran);
g2.setColor(Color.BLACK);
g2.draw(cadran);
g2.setColor(Color.LIGHT_GRAY);
cadran = new Ellipse2D.Double(9, 9, 102, 102);
g2.draw(cadran);
g2.setColor(Color.GRAY);
cadran = new Ellipse2D.Double(8, 8, 104, 104);
g2.draw(cadran);
g2.setColor(Color.DARK_GRAY);
cadran = new Ellipse2D.Double(7, 7, 106, 106);
g2.draw(cadran);
g2.setColor(Color.LIGHT_GRAY);
cadran = new Ellipse2D.Double(6, 6, 108, 108);
g2.draw(cadran);
g2.setColor(Color.DARK_GRAY);
cadran = new Ellipse2D.Double(5, 5, 110, 110);
g2.draw(cadran);
g2.setColor(Color.GRAY);
cadran = new Ellipse2D.Double(4, 4, 112, 112);
g2.draw(cadran);
g2.setColor(Color.LIGHT_GRAY);
cadran = new Ellipse2D.Double(3, 3, 114, 114);
g2.draw(cadran);
paintComponents((Graphics)g2);
}
} |
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