Package com.barrybecker4.game.multiplayer.poker.hand

Examples of com.barrybecker4.game.multiplayer.poker.hand.HandScore


     */
    private void showOrdersDialog(GalacticController gc) {

        GalacticPlayer currentPlayer = (GalacticPlayer)gc.getCurrentPlayer();

        OrdersDialog ordersDialog =
                new OrdersDialog(null, currentPlayer, gc.getNumberOfYearsRemaining());
        Point p = getParent().getLocationOnScreen();

        // offset the dlg so the Galaxy grid is visible as a reference
        ordersDialog.setLocation((int)(p.getX()+0.7*getParent().getWidth()), (int)(p.getY()+getParent().getHeight()/3.0));

        boolean canceled = ordersDialog.showDialog();
        if ( !canceled ) { // newGame a game with the newly defined options
            currentPlayer.setOrders( ordersDialog.getOrders() );
            gc.advanceToNextPlayer();
        }
    }
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        if (((PokerPlayer)players.get(first)).hasFolded())
            GameContext.log(0, "All players have folded. That was dumb. The winner will be random.");

        Hand bestHand = ((PokerPlayer) players.get(first)).getHand();
        PokerHandScorer scorer = new PokerHandScorer();
        HandScore bestScore = scorer.getScore(bestHand);

        // find the best hand
        for (int i = first + 1; i < players.size(); i++) {
            PokerPlayer player = (PokerPlayer) players.get(i).getActualPlayer();
            HandScore score = scorer.getScore(player.getHand());
            if (!player.hasFolded() && score.compareTo(bestScore) > 0) {
                bestScore = score;
            }
        }

        // find all players with a hand that good (rare that there will be more than one
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        ParameterArray initialGuess = new TantrixPath(board);
        assert(initialGuess.size() > 0) : "The random path should have some tiles!";
        long startTime = System.currentTimeMillis();

        Optimizer optimizer = new Optimizer(this);
        optimizer.setListener(this);

        ParameterArray solution =
            optimizer.doOptimization(strategy, initialGuess, SOLVED_THRESH);

        solution_ =
            new TantrixBoard(((TantrixPath)solution).getTilePlacements(), board.getPrimaryColor());

        TilePlacementList moves;
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     * @return list of moves to a solution.
     */
    @Override
    public TilePlacementList solve()  {

        ParameterArray initialGuess = new TantrixPath(board);
        assert(initialGuess.size() > 0) : "The random path should have some tiles!";
        long startTime = System.currentTimeMillis();

        Optimizer optimizer = new Optimizer(this);
        optimizer.setListener(this);

        ParameterArray solution =
            optimizer.doOptimization(strategy, initialGuess, SOLVED_THRESH);

        solution_ =
            new TantrixBoard(((TantrixPath)solution).getTilePlacements(), board.getPrimaryColor());

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     * Draw one of the tile paths which takes one of three forms.
     */
    public void drawPath(Graphics2D g2, int pathNumber, TilePlacement tilePlacement,
                         Point position, double size) {

        HexTile tile = tilePlacement.getTile();
        int pathStartIndex = getPathStartIndex(tile, pathNumber);

        int i = pathStartIndex + 1;

        PathColor pathColor = tile.getEdgeColor(pathStartIndex);
        while (pathColor != tile.getEdgeColor(i++)) {
            assert(i<6): "Should never exceed 6";
        }

        int pathEndIndex = i-1;
        int diff = pathEndIndex - pathStartIndex;
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        this.numTiles = numTiles;
    }

    public TantrixBoard initialPosition() {
        //MathUtil.RANDOM.setSeed(1);
        return new TantrixBoard(new HexTiles().createRandomList(numTiles));
    }
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    public boolean isGoal(TantrixBoard position) {
        return position.isSolved();
    }

    public TilePlacementList legalMoves(TantrixBoard position) {
        return new MoveGenerator(position).generateMoves();
    }
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        HexTile tile = tilePlacement.getTile();
        int pathStartIndex = getPathStartIndex(tile, pathNumber);

        int i = pathStartIndex + 1;

        PathColor pathColor = tile.getEdgeColor(pathStartIndex);
        while (pathColor != tile.getEdgeColor(i++)) {
            assert(i<6): "Should never exceed 6";
        }

        int pathEndIndex = i-1;
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     */
    private int getPathStartIndex(HexTile tile, int pathNumber) {
        Set<PathColor> set = new HashSet<PathColor>();
        int i = 0;
        do {
            PathColor c = tile.getEdgeColor(i++);
            set.add(c);
        } while (set.size() <= pathNumber);
        return i-1;
    }
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        boolean consistentLoop = isLoop && allFit;
        boolean perfectLoop = false;
        double compactness = determineCompactness(path);

        if (consistentLoop) {
            Tantrix tantrix = new Tantrix(path.getTilePlacements());
            InnerSpaceDetector innerDetector = new InnerSpaceDetector(tantrix);
            perfectLoop = !innerDetector.hasInnerSpaces();
            //System.out.println("perfect loop");
        }
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