Files
Arcade/model/objects/PlayArea.java
T

135 lines
5.5 KiB
Java

package model.objects;
import image.Images;
import java.awt.Color;
import java.awt.Graphics2D;
import java.awt.Polygon;
import java.awt.RenderingHints;
import java.awt.Transparency;
import java.awt.geom.Line2D;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.awt.image.BufferedImage;
import java.awt.image.VolatileImage;
import java.util.ArrayList;
import java.util.List;
import model.drawObjects.Enemy;
import model.gameState.PlayState;
public class PlayArea {
public List<Path> paths;
private Polygon octagon,hitArea;
public Rectangle2D[] hitAreas; //de area voor elk path die de enemy moet raken
private VolatileImage background;
public PlayArea(double xToRight,double heightOfGameScreen,double widthOfGameScreen, int sizeOctagon) {
super();
paths = new ArrayList<Path>();
int amountOfAngles = 8;
double middlePointX = widthOfGameScreen/2+xToRight;
double middlePointY = heightOfGameScreen/2;
octagon = new Polygon();
for(int i = 0; i < amountOfAngles; i++){
octagon.addPoint((int)(middlePointX+sizeOctagon*Math.cos(i*Math.PI/(amountOfAngles/2))),
(int)(middlePointY+sizeOctagon*Math.sin(i*Math.PI/(amountOfAngles/2))));
}
hitArea = new Polygon();
sizeOctagon += PlayState.sizeOfEnemy;
for(int i = 0; i < amountOfAngles; i++){
hitArea.addPoint((int)(middlePointX+sizeOctagon*Math.cos(i*Math.PI/(amountOfAngles/2))),
(int)(middlePointY+sizeOctagon*Math.sin(i*Math.PI/(amountOfAngles/2))));
}
hitAreas = new Rectangle2D[amountOfAngles];
int newIndex;
Point2D beginPoint,endPoint;
for(int index = 0; index < hitAreas.length; index++){
//in het polygon staat de cooridinaten van de top niet als eerste in de array, maar op index 6.n
newIndex = (index+6+8)%8;
hitAreas[index] = new Rectangle2D.Double();
beginPoint = new Point2D.Double(octagon.xpoints[newIndex], octagon.ypoints[newIndex]);
endPoint = new Point2D.Double(hitArea.xpoints[newIndex], hitArea.ypoints[newIndex]);
hitAreas[index].setFrameFromDiagonal(beginPoint,endPoint);
}
Rectangle2D cr = null;//cr --> current rectangle
double size = (hitAreas[1].getWidth() - 10)/2;//dit is de grootte van een zijde als die van de oorspronklijke 0 was.
cr = hitAreas[0];
hitAreas[0].setFrame(cr.getX()-size/2, cr.getY()+1, size, cr.getHeight());
cr = hitAreas[2];
hitAreas[2].setFrame(cr.getX()-1, cr.getY()-size/2, cr.getWidth(), size);
cr = hitAreas[4];
hitAreas[4].setFrame(cr.getX()-size/2, cr.getY()-1, size, cr.getHeight());
cr = hitAreas[6];
hitAreas[6].setFrame(cr.getX()+1, cr.getY()-size/2, cr.getWidth(), size);
widthOfGameScreen += xToRight;
// paths.add(new Path(middlePointX,0 ,hitArea.xpoints[6],hitArea.ypoints[6]));//top
// paths.add(new Path(widthOfGameScreen,0 ,hitArea.xpoints[7],hitArea.ypoints[7]));//right -top
// paths.add(new Path(widthOfGameScreen,middlePointY ,hitArea.xpoints[0],hitArea.ypoints[0]));//right
// paths.add(new Path(widthOfGameScreen,heightOfGameScreen,hitArea.xpoints[1],hitArea.ypoints[1]));//right -down
// paths.add(new Path(middlePointX,heightOfGameScreen ,hitArea.xpoints[2],hitArea.ypoints[2]));//down
// paths.add(new Path(xToRight,heightOfGameScreen ,hitArea.xpoints[3],hitArea.ypoints[3]));//left -down
// paths.add(new Path(xToRight,middlePointY ,hitArea.xpoints[4],hitArea.ypoints[4]));//left
// paths.add(new Path(xToRight,0 ,hitArea.xpoints[5],hitArea.ypoints[5]));//left -top
double angleX,angleY;
angleX = (Math.cos(Math.toRadians(45)))*Enemy.distanceToOctagon;
angleY = (Math.sin(Math.toRadians(45)))*Enemy.distanceToOctagon;
paths.add(new Path(hitArea.xpoints[6],hitArea.ypoints[6]-Enemy.distanceToOctagon ,hitArea.xpoints[6],hitArea.ypoints[6]));//top
paths.add(new Path(hitArea.xpoints[7] + angleX,hitArea.ypoints[7] - angleY ,hitArea.xpoints[7],hitArea.ypoints[7]));//right -top
paths.add(new Path(hitArea.xpoints[0]+Enemy.distanceToOctagon,hitArea.ypoints[0] ,hitArea.xpoints[0],hitArea.ypoints[0]));//right
paths.add(new Path(hitArea.xpoints[1]+angleX,hitArea.ypoints[1]+angleY ,hitArea.xpoints[1],hitArea.ypoints[1]));//right -down
paths.add(new Path(hitArea.xpoints[2],hitArea.ypoints[2]+Enemy.distanceToOctagon ,hitArea.xpoints[2],hitArea.ypoints[2]));//down
paths.add(new Path(hitArea.xpoints[3] - angleX,hitArea.ypoints[3] + angleY ,hitArea.xpoints[3],hitArea.ypoints[3]));//left -down
paths.add(new Path(hitArea.xpoints[4] - Enemy.distanceToOctagon,hitArea.ypoints[4] ,hitArea.xpoints[4],hitArea.ypoints[4]));//left
paths.add(new Path(hitArea.xpoints[5] - angleX,hitArea.ypoints[5] - angleY ,hitArea.xpoints[5],hitArea.ypoints[5]));//left -top
//drawing into buffer
background = Images.initVolatileImage(1280,1024, Transparency.BITMASK);
Graphics2D g2 = background.createGraphics();
RenderingHints rh = new RenderingHints(RenderingHints.KEY_ANTIALIASING, RenderingHints.VALUE_ANTIALIAS_ON);
g2.setRenderingHints(rh);
Line2D current;
int index;
g2.setColor(Color.BLACK);
for(int i = 0; i < paths.size(); i++){
current = paths.get(i);
index = (i+14)%8;
g2.drawLine((int)current.getX1(), (int)current.getY1(), octagon.xpoints[index],octagon.ypoints[index]);
}
g2.draw(octagon);
g2.draw(hitArea);
g2.dispose();
background.createGraphics();
}
public void draw(Graphics2D g2){
g2.drawImage(background, 0, 0, 1280, 1024, null);
}
public Line2D getLine(int index){
if(index < 0){
index = 0;
}
if(index >= 8 ){
index = 7;
}
return paths.get(index);
}
}