TP2
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@ -9,7 +9,7 @@ public class Flocon extends Polygon {
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super();
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}
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private int floc(int n, int offset) {
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private int floc(int n, int offset, int aoffset) {
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if (n < 0) return offset+1;
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Vector2 local = ptable[offset].toLocal(ptable[offset+1]);
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local.div(3);
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@ -18,34 +18,34 @@ public class Flocon extends Polygon {
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ptable[offset+1] = s1;
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if (n > 0) {
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offset = floc(n-1, offset);
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offset = floc(n-1, offset, aoffset);
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} else offset++;
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Vector2 s2 = Vector2.add(s1, Vector2.rotate(local, -60));
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Vector2 s2 = Vector2.add(s1, Vector2.rotate(local, -60 - aoffset));
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ptable[offset+1] = s2;
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if (n > 0) {
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offset = floc(n-1, offset);
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offset = floc(n-1, offset, aoffset);
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} else offset++;
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Vector2 s3 = Vector2.add(s2, Vector2.rotate(local, 60));
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Vector2 s3 = Vector2.add(s2, Vector2.rotate(local, 60 + aoffset));
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ptable[offset+1] = s3;
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if (n > 0) {
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offset = floc(n-1, offset);
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offset = floc(n-1, offset, aoffset);
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} else offset++;
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Vector2 s4 = Vector2.add(s3, local);
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ptable[offset+1] = s4;
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if (n > 0) {
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offset = floc(n-1, offset);
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offset = floc(n-1, offset, aoffset);
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} else offset++;
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return offset;
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}
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public void createFloc(int x, int y, int r, int n) {
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public void createFloc(int x, int y, int r, int n, int aoffset) {
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int size = 4;
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for (int i = 0; i < n; i++) size = size * 4 - 3;
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this.ptable = new Vector2[size];
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@ -53,13 +53,13 @@ public class Flocon extends Polygon {
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ptable[0] = Vector2.rotate(new Vector2(0, -r),-60).add(new Vector2(x, y));
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ptable[1] = Vector2.rotate(new Vector2(0, -r), 60).add(new Vector2(x, y));
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offset = floc(n-1, offset);
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offset = floc(n-1, offset, aoffset);
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ptable[offset+1] = Vector2.rotate(new Vector2(0, -r), 180).add(new Vector2(x, y));
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offset = floc(n-1, offset);
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offset = floc(n-1, offset, aoffset);
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ptable[offset+1] = Vector2.rotate(new Vector2(0, -r), -60).add(new Vector2(x, y));
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floc(n-1, offset);
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floc(n-1, offset, aoffset);
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for (Vector2 v : ptable) {
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@ -76,11 +76,29 @@ public class Flocon extends Polygon {
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f.setSize(1200, 1200);
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Flocon p = new Flocon();
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p.createFloc(f.getWidth() / 2, f.getHeight() / 2 - 100, 500, 5);
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p.createFloc(f.getWidth() / 2, f.getHeight() / 2 - 100, 500, 4, 0);
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FloconPanel fp = new FloconPanel(p);
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f.add(new FloconPanel(p));
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f.add(fp);
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f.setVisible(true);
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int a = 0;
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while(true) {
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try {
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Thread.sleep(16);
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} catch (Exception e) {
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}
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a += 1;
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p.xpoints = new int[0];
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p.ypoints = new int[0];
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p.npoints = 0;
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p.createFloc(f.getWidth() / 2, f.getHeight() / 2 - 100, 500, 4, a);
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fp.repaint();
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}
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}
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}
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14745
DEV 3.4/Ex5/DC.mdj
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14745
DEV 3.4/Ex5/DC.mdj
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6875
DEV 3.4/TP02-3/Diagramme de séquence.mdj
Normal file
6875
DEV 3.4/TP02-3/Diagramme de séquence.mdj
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6
DEV 3.4/TP02-3/synopsis.txt
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6
DEV 3.4/TP02-3/synopsis.txt
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@ -0,0 +1,6 @@
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Le jardinier Papé14 visionne la parcelle initiale du jardin.
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Il constate qu'elle est divisée verticalement.
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Il sélectionne la parcelle de gauche.
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Il affiche les informations de la parcelle P1.
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Il constate qu'elle est divisée horizontalement.
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Il décide donc de réunir la parcelle P1.
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@ -1,6 +1,4 @@
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import java.awt.BorderLayout;
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import java.awt.Color;
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import java.awt.Dimension;
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import javax.swing.JFrame;
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/**
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@ -9,15 +7,25 @@ import javax.swing.JFrame;
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public class Fun {
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public static void main(String[] args) {
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FunPanel p = new FunPanel();
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JFrame frame = new JFrame();
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frame.setDefaultCloseOperation(JFrame.EXIT_ON_CLOSE);
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frame.setLocation(100, 100);
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frame.setSize(700, 700);
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frame.add(p);
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FunPanel p = new FunPanel();
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frame.add(p, BorderLayout.CENTER);
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frame.setVisible(true);
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p.repaint();
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while (true) {
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FunPanel.table += 0.001d;
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p.repaint();
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try {
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Thread.sleep(16L);
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} catch (Exception e) {
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}
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}
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}
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}
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@ -2,8 +2,8 @@ import javax.swing.JPanel;
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import java.awt.*;
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public class FunPanel extends JPanel {
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private int table = 3;
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private int limit = 150;
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public static double table = 50;
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public static int limit = 30;
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public FunPanel() {
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super();
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@ -18,14 +18,25 @@ public class FunPanel extends JPanel {
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gg.fillRect(this.getX(), this.getY(), getWidth(), getHeight());
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}
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double size = (double)getX();
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System.out.println(size);
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double size = (double)(getWidth() > getHeight() ? getHeight() : getWidth()) / 2.5d;
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gg.setColor(Color.RED);
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gg.setColor(Color.BLACK);
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for (double i = 0; i < limit; i++) {
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double theta = (i / (double)limit) * Math.PI * 2;
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gg.fillOval((int)(Math.cos(theta) * size) + getX() / 2, (int)(Math.sin(theta) * size) + getY() / 2, 10, 10);
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gg.fillOval((int)(Math.cos(theta) * size) + getWidth() / 2, (int)(Math.sin(theta) * size) + getHeight() / 2, 6, 6);
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for (double j = 0; j < limit; j++) {
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double theta2 = (table * j / (double)limit) * Math.PI * 2;
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int x1 = (int)(Math.cos(theta) * size) + getWidth() / 2;
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int x2 = (int)(Math.cos(theta2) * size) + getWidth() / 2;
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int y1 = (int)(Math.sin(theta) * size) + getHeight() / 2;
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int y2 = (int)(Math.sin(theta2) * size) + getHeight() / 2;
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gg.drawLine(x1 + 3, y1 + 3, x2 + 3, y2 + 3);
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}
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}
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}
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}
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20
Fun/pointeurs.c
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20
Fun/pointeurs.c
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#include <stdio.h>
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#include <stdlib.h>
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struct t {
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int a;
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int b;
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char c;
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};
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typedef struct t quatre;
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int main(int argc, char** argv) {
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quatre katr = {2, 3, 'q'};
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printf("%d\n", katr.a);
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quatre* katreu = &katr;
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printf("%d\n", katreu->b);
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}
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