fin arbre
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import java.util.Queue;
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public class Arithmetique {
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public static void main(String[] args) {
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if (args.length == 0) {
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System.out.println("Veuillez fournir une expression en notation polonaise inversée.");
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return;
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}
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// Utilisation de notre implémentation FileChainee pour la file
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Queue<Integer> queue = new FileChainee<>();
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try {
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for (String token : args) {
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switch (token) {
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case "+":
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// Addition
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queue.offer(queue.poll() + queue.poll());
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break;
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case "-":
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// Soustraction (attention à l'ordre)
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int b = queue.poll();
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int a = queue.poll();
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queue.offer(a - b);
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break;
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case "x":
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// Multiplication
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queue.offer(queue.poll() * queue.poll());
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break;
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case "/":
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// Division (attention à l'ordre)
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b = queue.poll();
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a = queue.poll();
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if (b == 0) {
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throw new ArithmeticException("Division par zéro");
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}
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queue.offer(a / b);
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break;
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default:
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// Si ce n'est pas un opérateur, alors c'est un nombre
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queue.offer(Integer.parseInt(token));
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break;
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}
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}
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// Le résultat final doit être le seul élément restant dans la file
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if (queue.size() == 1) {
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System.out.println("= " + queue.poll());
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} else {
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System.out.println("Erreur : Expression incorrecte.");
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}
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} catch (Exception e) {
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System.out.println("Erreur lors de l'évaluation de l'expression : " + e.getMessage());
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}
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}
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}
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import java.util.AbstractQueue;
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import java.util.Iterator;
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import java.util.NoSuchElementException;
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import java.util.Queue;
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public class FileChainee<E> extends AbstractQueue<E> implements Queue<E> {
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private static class Node<E> {
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E data;
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Node<E> next;
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Node(E data) {
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this.data = data;
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}
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}
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private Node<E> head; // Premier élément de la file
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private Node<E> tail; // Dernier élément de la file
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private int size = 0; // Taille de la file
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@Override
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public boolean offer(E element) {
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Node<E> newNode = new Node<>(element);
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if (head == null) {
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tail = newNode;
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} else {
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newNode.next = head;
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}
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head = newNode;
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size++;
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return true;
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}
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@Override
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public E poll() {
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if (isEmpty()) {
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return null;
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}
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E data = head.data;
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head = head.next;
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if (head == null) {
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tail = null;
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}
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size--;
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return data;
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}
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@Override
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public E peek() {
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return (head == null) ? null : head.data;
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}
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@Override
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public Iterator<E> iterator() {
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return new Iterator<>() {
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private Node<E> current = head;
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@Override
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public boolean hasNext() {
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return current != null;
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}
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@Override
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public E next() {
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if (!hasNext()) {
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throw new NoSuchElementException();
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}
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E data = current.data;
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current = current.next;
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return data;
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}
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};
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}
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@Override
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public int size() {
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return size;
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}
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}
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BIN
DEV3.2/Files/chaine/LinkedQueue$1.class
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DEV3.2/Files/chaine/LinkedQueue$1.class
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DEV3.2/Files/chaine/LinkedQueue.class
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DEV3.2/Files/chaine/LinkedQueue.class
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DEV3.2/Files/chaine/LinkedQueue.java
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DEV3.2/Files/chaine/LinkedQueue.java
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import java.util.AbstractQueue;
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import java.util.Iterator;
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import java.util.NoSuchElementException;
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public class LinkedQueue<E> extends AbstractQueue<E> {
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private Node<E> head; // Tête de la file
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private Node<E> tail; // Fin de la file
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private int size; // Taille de la file
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public LinkedQueue() {
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head = null;
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tail = null;
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size = 0;
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}
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@Override
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public boolean offer(E e) {
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if (e == null) {
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throw new NullPointerException("Les éléments null ne sont pas autorisés.");
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}
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Node<E> newNode = new Node<>(e);
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if (tail == null) { // File vide
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head = newNode;
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tail = newNode;
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} else {
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tail.next = newNode;
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tail = newNode;
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}
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size++;
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return true;
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}
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@Override
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public E poll() {
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if (head == null) { // File vide
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return null;
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}
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E element = head.element;
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head = head.next;
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if (head == null) { // La file est maintenant vide
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tail = null;
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}
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size--;
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return element;
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}
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@Override
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public E peek() {
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return (head == null) ? null : head.element;
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}
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@Override
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public Iterator<E> iterator() {
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return new Iterator<E>() {
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private Node<E> current = head;
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@Override
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public boolean hasNext() {
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return current != null;
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}
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@Override
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public E next() {
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if (current == null) {
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throw new NoSuchElementException();
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}
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E element = current.element;
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current = current.next;
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return element;
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}
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};
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}
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@Override
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public int size() {
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return size;
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}
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}
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DEV3.2/Files/chaine/MergeSortQueue.class
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DEV3.2/Files/chaine/MergeSortQueue.class
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76
DEV3.2/Files/chaine/MergeSortQueue.java
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76
DEV3.2/Files/chaine/MergeSortQueue.java
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import java.util.Queue;
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public class MergeSortQueue {
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// Méthode de tri principal qui effectue le tri fusion
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public static <T extends Comparable<T>> Queue<T> trier(Queue<T> file) {
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if (file.size() <= 1) {
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return file;
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}
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// Séparer la file en deux moitiés
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Queue<T> file1 = new LinkedQueue<>();
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Queue<T> file2 = new LinkedQueue<>();
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scinder(file, file1, file2);
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// Tri de chaque moitié de façon récursive
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file1 = trier(file1);
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file2 = trier(file2);
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// Fusion des deux moitiés triées
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return fusionner(file1, file2);
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}
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// Méthode pour diviser une file en deux moitiés
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private static <T> void scinder(Queue<T> source, Queue<T> file1, Queue<T> file2) {
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int taille = source.size();
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for (int i = 0; i < taille / 2; i++) {
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file1.offer(source.poll());
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}
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while (!source.isEmpty()) {
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file2.offer(source.poll());
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}
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}
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// Méthode pour fusionner deux files triées en une seule file triée
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private static <T extends Comparable<T>> Queue<T> fusionner(Queue<T> file1, Queue<T> file2) {
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Queue<T> resultat = new LinkedQueue<>();
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while (!file1.isEmpty() && !file2.isEmpty()) {
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if (file1.peek().compareTo(file2.peek()) <= 0) {
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resultat.offer(file1.poll());
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} else {
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resultat.offer(file2.poll());
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}
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}
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// Ajouter les éléments restants de chaque file, s'il en reste
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while (!file1.isEmpty()) {
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resultat.offer(file1.poll());
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}
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while (!file2.isEmpty()) {
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resultat.offer(file2.poll());
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}
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return resultat;
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}
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// Méthode de test pour le tri
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public static void main(String[] args) {
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Queue<Double> file = new LinkedQueue<>();
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// Remplir la file avec les arguments passés en ligne de commande
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for (String arg : args) {
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file.offer(Double.parseDouble(arg));
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}
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// Tri de la file
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Queue<Double> fileTriee = trier(file);
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// Affichage des éléments triés
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for (Double valeur : fileTriee) {
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System.out.print(valeur + " ");
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}
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System.out.println("");
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}
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}
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BIN
DEV3.2/Files/chaine/Node.class
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BIN
DEV3.2/Files/chaine/Node.class
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9
DEV3.2/Files/chaine/Node.java
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9
DEV3.2/Files/chaine/Node.java
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// Classe interne pour représenter un nœud
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public class Node<E> {
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E element;
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Node<E> next;
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Node(E element) {
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this.element = element;
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}
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}
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