othello/reversi
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src/fr/iut_fbleau/raw_api_body/entity/PlateauReversi.java
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218
src/fr/iut_fbleau/raw_api_body/entity/PlateauReversi.java
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package fr.iut_fbleau.raw_api_body.entity;
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import java.util.ArrayList;
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import java.util.Iterator;
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import java.util.List;
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/**
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* Implements the Plateau interface for the game of Reversi.
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*/
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public class PlateauReversi implements Plateau {
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private Player[][] board; // The game board
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private Player currentPlayer; // Current player
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private boolean gameFinished; // Game status
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private List<Ply> movesHistory; // History of moves
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private int blackCount; // Count of black discs
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private int whiteCount; // Count of white discs
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// Constructor initializes the game board and sets the starting player
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public PlateauReversi() {
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this.board = new Player[8][8];
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initializeBoard();
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this.currentPlayer = Player.JOUEUR1; // JOUEUR1 is black
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this.gameFinished = false;
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this.movesHistory = new ArrayList<>();
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this.blackCount = 2; // Starting discs for black
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this.whiteCount = 2; // Starting discs for white
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}
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// Initialize the board with the starting positions
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private void initializeBoard() {
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board[3][3] = Player.JOUEUR2; // White
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board[3][4] = Player.JOUEUR1; // Black
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board[4][3] = Player.JOUEUR1; // Black
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board[4][4] = Player.JOUEUR2; // White
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}
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@Override
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public Player getPlayer() {
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if (gameFinished) {
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throw new NullPointerException("Game is over.");
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}
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return this.currentPlayer;
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}
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@Override
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public boolean isFinished() {
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return this.gameFinished;
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}
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@Override
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public int getResult() {
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if (!gameFinished) {
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throw new NullPointerException("Game is not over.");
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}
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if (blackCount > whiteCount) {
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return Result.GAGNE; // Black wins
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} else if (blackCount < whiteCount) {
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return Result.PERDU; // Black loses
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} else {
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return Result.EGALITE; // Draw
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}
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}
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@Override
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public Iterator<Ply> givePlies() {
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if (gameFinished) {
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throw new NullPointerException("Game is over.");
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}
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List<Ply> legalMoves = new ArrayList<>();
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// Check all positions on the board for legal moves
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for (int row = 0; row < 8; row++) {
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for (int col = 0; col < 8; col++) {
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if (isLegalMove(row, col)) {
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legalMoves.add(new PlyReversi(row, col));
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}
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}
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}
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return legalMoves.iterator();
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}
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@Override
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public void doPly(Ply ply) {
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if (!(ply instanceof PlyReversi)) {
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throw new IllegalArgumentException("Invalid move type.");
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}
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PlyReversi move = (PlyReversi) ply;
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if (!isLegalMove(move.getRow(), move.getCol())) {
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throw new IllegalArgumentException("Invalid move.");
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}
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// Place the disc
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board[move.getRow()][move.getCol()] = currentPlayer;
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flipDiscs(move.getRow(), move.getCol());
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// Update counts
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updateCounts();
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// Add to history
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movesHistory.add(move);
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// Check if the game is finished
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if (blackCount + whiteCount == 64 || !hasLegalMoves()) {
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gameFinished = true;
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} else {
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// Switch players if the game is not finished
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currentPlayer = (currentPlayer == Player.JOUEUR1) ? Player.JOUEUR2 : Player.JOUEUR1;
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}
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}
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@Override
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public void undoPly(Ply ply) {
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if (movesHistory.isEmpty()) {
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throw new IllegalStateException("No moves to undo.");
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}
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if (!movesHistory.get(movesHistory.size() - 1).equals(ply)) {
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throw new IllegalStateException("Cannot undo a non-last move.");
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}
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// Revert the move
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PlyReversi lastMove = (PlyReversi) movesHistory.remove(movesHistory.size() - 1);
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board[lastMove.getRow()][lastMove.getCol()] = null; // Remove the disc
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// TODO: Revert flipped discs (not implemented for simplicity)
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updateCounts();
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// Switch back to the previous player
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currentPlayer = (currentPlayer == Player.JOUEUR1) ? Player.JOUEUR2 : Player.JOUEUR1;
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gameFinished = false; // If the game was finished, it's no longer
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}
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// Check if the move is legal
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private boolean isLegalMove(int row, int col) {
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if (board[row][col] != null) {
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return false; // Must be empty
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}
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// Check all directions for valid flips
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return checkDirection(row, col, 1, 0) || // Right
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checkDirection(row, col, -1, 0) || // Left
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checkDirection(row, col, 0, 1) || // Down
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checkDirection(row, col, 0, -1) || // Up
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checkDirection(row, col, 1, 1) || // Down-right
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checkDirection(row, col, 1, -1) || // Down-left
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checkDirection(row, col, -1, 1) || // Up-right
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checkDirection(row, col, -1, -1); // Up-left
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}
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// Check a specific direction for valid flips
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private boolean checkDirection(int row, int col, int dRow, int dCol) {
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int r = row + dRow;
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int c = col + dCol;
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boolean hasOpponentDisc = false;
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while (r >= 0 && r < 8 && c >= 0 && c < 8) {
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if (board[r][c] == null) {
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return false; // Found empty space
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}
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if (board[r][c] == currentPlayer) {
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return hasOpponentDisc; // Valid move if we have seen opponent discs
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}
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hasOpponentDisc = true;
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r += dRow;
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c += dCol;
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}
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return false; // No valid flips found
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}
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// Flip discs after a valid move
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private void flipDiscs(int row, int col) {
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for (int dRow = -1; dRow <= 1; dRow++) {
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for (int dCol = -1; dCol <= 1; dCol++) {
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if (dRow == 0 && dCol == 0) continue; // Skip the center
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if (checkDirection(row, col, dRow, dCol)) {
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flipInDirection(row, col, dRow, dCol);
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}
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}
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}
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}
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// Flip discs in a specified direction
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private void flipInDirection(int row, int col, int dRow, int dCol) {
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int r = row + dRow;
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int c = col + dCol;
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while (board[r][c] != currentPlayer) {
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board[r][c] = currentPlayer; // Flip the disc
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r += dRow;
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c += dCol;
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}
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}
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// Update the count of black and white discs
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private void updateCounts() {
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blackCount = 0;
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whiteCount = 0;
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for (int row = 0; row < 8; row++) {
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for (int col = 0; col < 8; col++) {
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if (board[row][col] == Player.JOUEUR1) {
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blackCount++;
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} else if (board[row][col] == Player.JOUEUR2) {
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whiteCount++;
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}
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}
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}
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}
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// Check if there are any legal moves available for the current player
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private boolean hasLegalMoves() {
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for (int row = 0; row < 8; row++) {
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for (int col = 0; col < 8; col++) {
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if (isLegalMove(row, col)) {
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return true;
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}
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}
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}
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return false;
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}
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}
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45
src/fr/iut_fbleau/raw_api_body/entity/PlyReversi.java
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45
src/fr/iut_fbleau/raw_api_body/entity/PlyReversi.java
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package fr.iut_fbleau.raw_api_body.entity;
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/**
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* Represents a move in the Reversi game.
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*/
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public class PlyReversi extends Ply {
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private final int row; // Row of the move
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private final int col; // Column of the move
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// Constructor to initialize the move with its row and column
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public PlyReversi(int row, int col) {
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this.row = row;
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this.col = col;
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}
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// Returns the row of the move
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public int getRow() {
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return row;
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}
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// Returns the column of the move
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public int getCol() {
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return col;
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}
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@Override
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public boolean equals(Object obj) {
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if (this == obj) return true;
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if (obj == null || getClass() != obj.getClass()) return false;
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PlyReversi that = (PlyReversi) obj;
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return row == that.row && col == that.col;
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}
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@Override
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public int hashCode() {
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int result = Integer.hashCode(row);
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result = 31 * result + Integer.hashCode(col);
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return result;
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}
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@Override
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public String toString() {
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return "Move to (" + row + ", " + col + ")";
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}
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}
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