mirror of
https://github.com/michaelrausch/Party-Parrots-At-Sea.git
synced 2026-05-09 06:18:44 +00:00
e24203904b
#chore
633 lines
25 KiB
Java
633 lines
25 KiB
Java
package seng302.visualiser;
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import java.util.ArrayList;
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import java.util.Comparator;
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import java.util.HashMap;
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import java.util.List;
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import java.util.Map;
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import javafx.animation.AnimationTimer;
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import javafx.application.Platform;
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import javafx.geometry.Point2D;
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import javafx.geometry.Point3D;
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import javafx.scene.Group;
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import javafx.scene.Node;
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import javafx.scene.PerspectiveCamera;
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import javafx.scene.SceneAntialiasing;
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import javafx.scene.SubScene;
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import javafx.scene.input.KeyEvent;
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import javafx.scene.paint.Color;
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import javafx.scene.transform.Rotate;
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import javafx.scene.transform.Scale;
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import javafx.scene.transform.Translate;
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import seng302.gameServer.messages.RoundingSide;
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import seng302.model.ClientYacht;
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import seng302.model.GeoPoint;
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import seng302.model.Limit;
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import seng302.model.mark.CompoundMark;
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import seng302.model.mark.Corner;
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import seng302.model.mark.Mark;
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import seng302.model.token.Token;
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import seng302.utilities.GeoUtility;
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import seng302.utilities.Sounds;
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import seng302.visualiser.fxObjects.MarkArrowFactory;
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import seng302.visualiser.fxObjects.assets_3D.BoatObject;
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import seng302.visualiser.fxObjects.assets_3D.Marker3D;
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import seng302.visualiser.fxObjects.assets_3D.ModelFactory;
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import seng302.visualiser.fxObjects.assets_3D.ModelType;
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/**
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* Collection of animated3D assets that displays a race.
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*/
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public class GameView3D {
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private final double FOV = 60;
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private final double DEFAULT_CAMERA_DEPTH = -125;
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private final double DEFAULT_CAMERA_X = 0;
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private final double DEFAULT_CAMERA_Y = 155;
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private Group root3D;
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private SubScene view;
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// ParallelCamera camera;
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private PerspectiveCamera camera;
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private Group gameObjects;
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private double bufferSize = 0;
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private double canvasWidth = 200;
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private double canvasHeight = 200;
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private boolean horizontalInversion = false;
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private double distanceScaleFactor;
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private ScaleDirection scaleDirection;
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private GeoPoint minLatPoint, minLonPoint, maxLatPoint, maxLonPoint;
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private double referencePointX, referencePointY;
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private Group raceBorder = new Group();
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/* Note that if either of these is null then values for it have not been added and the other
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should be used as the limits of the map. */
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private List<Limit> borderPoints;
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private Map<Mark, Marker3D> markerObjects;
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private Map<ClientYacht, BoatObject> boatObjects = new HashMap<>();
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private BoatObject selectedBoat = null;
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private Group wakesGroup = new Group();
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private Group boatObjectGroup = new Group();
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private Group markers = new Group();
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private Group tokens = new Group();
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private List<CompoundMark> course = new ArrayList<>();
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private List<Node> mapTokens;
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private AnimationTimer playerBoatAnimationTimer;
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private Group trail = new Group();
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private Double windDir;
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private enum ScaleDirection {
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HORIZONTAL,
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VERTICAL
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}
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public GameView3D () {
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camera = new PerspectiveCamera(true);
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camera.getTransforms().addAll(
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new Translate(DEFAULT_CAMERA_X,DEFAULT_CAMERA_Y, DEFAULT_CAMERA_DEPTH)
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);
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camera.setFarClip(600);
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camera.setNearClip(0.1);
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camera.setFieldOfView(FOV);
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gameObjects = new Group();
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root3D = new Group(camera, gameObjects);
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view = new SubScene(
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root3D, 1000, 1000, true, SceneAntialiasing.BALANCED
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);
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view.setCamera(camera);
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camera.getTransforms().add(new Rotate(30, new Point3D(1,0,0)));
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gameObjects.getChildren().addAll(
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ModelFactory.importModel(ModelType.OCEAN).getAssets(),
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raceBorder, trail, markers, tokens
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);
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view.sceneProperty().addListener((obs, old, scene) -> {
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if (scene != null) {
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scene.addEventHandler(KeyEvent.KEY_PRESSED, this::cameraMovement);
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}
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});
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}
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public void updateCourse(List<CompoundMark> newCourse, List<Corner> sequence) {
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markerObjects = new HashMap<>();
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for (Corner corner : sequence) { //Makes course out of all compound marks.
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for (CompoundMark compoundMark : newCourse) {
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if (corner.getCompoundMarkID() == compoundMark.getId()) {
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course.add(compoundMark);
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}
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}
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}
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// TODO: 16/08/17 Updating mark roundings here. It should not happen here. Nor should it be done this way.
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for (Corner corner : sequence){
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CompoundMark compoundMark = course.get(corner.getSeqID() - 1);
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compoundMark.setRoundingSide(
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RoundingSide.getRoundingSide(corner.getRounding())
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);
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}
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final List<Group> gates = new ArrayList<>();
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//Creates new markers
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for (CompoundMark cMark : newCourse) {
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for (Mark mark : cMark.getMarks()) {
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if (cMark.getId() == sequence.get(0).getCompoundMarkID()) {
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makeAndBindMarker(mark, ModelType.START_MARKER);
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} else if (cMark.getId() == sequence.get(sequence.size() - 1).getCompoundMarkID()) {
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makeAndBindMarker(mark, ModelType.FINISH_MARKER);
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} else {
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makeAndBindMarker(mark, ModelType.PLAIN_MARKER);
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}
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}
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//Create gate line
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if (cMark.isGate()) {
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ModelType gateType;
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if (cMark.getId() == sequence.get(0).getCompoundMarkID()) {
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gateType = ModelType.START_LINE;
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} else if (cMark.getId() == sequence.get(sequence.size() - 1).getCompoundMarkID()) {
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gateType = ModelType.FINISH_LINE;
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} else {
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gateType = ModelType.GATE_LINE;
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}
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gates.add(makeGate(
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cMark.getSubMark(1), cMark.getSubMark(2), gateType
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));
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}
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}
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createMarkArrows();
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//Scale race to markers if there is no border.
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if (borderPoints == null) {
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rescaleRace(new ArrayList<>(markerObjects.keySet()));
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}
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//Move the Markers to initial position.
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markerObjects.forEach(((mark, marker) -> {
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Point2D p2d = findScaledXY(mark.getLat(), mark.getLng());
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marker.setLayoutX(p2d.getX());
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marker.setLayoutY(p2d.getY());
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}));
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Platform.runLater(() -> {
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markers.getChildren().clear();
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markers.getChildren().addAll(gates);
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markers.getChildren().addAll(markerObjects.values());
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});
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}
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/**
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* Creates a new Marker and binds it's position to the given Mark.
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*
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* @param observableMark The mark to bind the marker to.
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* @param markerType the type of marker as a ModelType. Should be PLAIN_MARKER, START_MARKER or END_MARKER
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*/
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private void makeAndBindMarker(Mark observableMark, ModelType markerType) {
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markerObjects.put(observableMark, new Marker3D(markerType));
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observableMark.addPositionListener((mark, lat, lon) -> {
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Point2D p2d = findScaledXY(lat, lon);
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markerObjects.get(mark).setLayoutX(p2d.getX());
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markerObjects.get(mark).setLayoutY(p2d.getY());
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});
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}
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/**
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* Creates a new gate connecting the given marks.
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*
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* @param m1 The first Mark of the gate.
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* @param m2 The second Mark of the gate.
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* @param gateType The type of model for the gate.
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* @return the new gate.
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*/
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private Group makeGate(Mark m1, Mark m2, ModelType gateType) {
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Point2D m1Location = findScaledXY(m1);
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Point2D m2Location = findScaledXY(m2);
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Group barrier = ModelFactory.importModel(gateType).getAssets();
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barrier.getTransforms().addAll(
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new Rotate(
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Math.toDegrees(
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Math.atan2(m2Location.getY() - m1Location.getY(), m2Location.getX() - m1Location.getX())
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) + 90,
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new Point3D(0,0,1)
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),
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new Scale(1, m1Location.distance(m2Location) / 10, 1)
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);
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Point2D midPoint = m2Location.midpoint(m1Location);
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barrier.setLayoutX(midPoint.getX());
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barrier.setLayoutY(midPoint.getY());
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return barrier;
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}
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/**
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* Calculates all the data needed for to create mark arrows. Requires that a course has been
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* added to the gameview.
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*/
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private void createMarkArrows () {
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for (int i=1; i < course.size()-1; i++) { //General case.
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for (Mark mark : course.get(i).getMarks()) {
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markerObjects.get(mark).addArrows(
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mark.getRoundingSide() == RoundingSide.STARBOARD ? MarkArrowFactory.RoundingSide.STARBOARD : MarkArrowFactory.RoundingSide.PORT,
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GeoUtility.getBearing(course.get(i-1).getMidPoint(), mark),
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GeoUtility.getBearing(mark, course.get(i+1).getMidPoint())
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);
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}
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}
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createStartLineArrows();
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createFinishLineArrows();
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}
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private void createStartLineArrows () {
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for (Mark mark : course.get(0).getMarks()) {
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markerObjects.get(mark).addArrows(
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mark.getRoundingSide() == RoundingSide.STARBOARD ? MarkArrowFactory.RoundingSide.STARBOARD : MarkArrowFactory.RoundingSide.PORT,
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0d, //90
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GeoUtility.getBearing(mark, course.get(1).getMidPoint())
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);
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}
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}
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private void createFinishLineArrows () {
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for (Mark mark : course.get(course.size()-1).getMarks()) {
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markerObjects.get(mark).addArrows(
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mark.getRoundingSide() == RoundingSide.STARBOARD ? MarkArrowFactory.RoundingSide.STARBOARD : MarkArrowFactory.RoundingSide.PORT,
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GeoUtility.getBearing(course.get(course.size()-2).getMidPoint(), mark),
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GeoUtility.getBearing(mark, mark)
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);
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}
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}
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/**
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* Sets the class variables minLatPoint, maxLatPoint, minLonPoint, maxLonPoint to the point with
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* the leftmost point, rightmost point, southern most point and northern most point
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* respectively.
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*/
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private void findMinMaxPoint(List<GeoPoint> points) {
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List<GeoPoint> sortedPoints = new ArrayList<>(points);
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sortedPoints.sort(Comparator.comparingDouble(GeoPoint::getLat));
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minLatPoint = new GeoPoint(sortedPoints.get(0).getLat(), sortedPoints.get(0).getLng());
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GeoPoint maxLat = sortedPoints.get(sortedPoints.size() - 1);
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maxLatPoint = new GeoPoint(maxLat.getLat(), maxLat.getLng());
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sortedPoints.sort(Comparator.comparingDouble(GeoPoint::getLng));
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minLonPoint = new GeoPoint(sortedPoints.get(0).getLat(), sortedPoints.get(0).getLng());
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GeoPoint maxLon = sortedPoints.get(sortedPoints.size() - 1);
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maxLonPoint = new GeoPoint(maxLon.getLat(), maxLon.getLng());
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if (maxLonPoint.getLng() - minLonPoint.getLng() > 180) {
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horizontalInversion = true;
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}
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}
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/**
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* Calculates the location of a reference point, this is always the point with minimum latitude,
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* in relation to the canvas.
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*
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* @param minLonToMaxLon The horizontal distance between the point of minimum longitude to
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* maximum longitude.
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*/
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private void calculateReferencePointLocation(double minLonToMaxLon) {
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GeoPoint referencePoint = minLatPoint;
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double referenceAngle;
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if (scaleDirection == ScaleDirection.HORIZONTAL) {
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referenceAngle = Math.abs(
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GeoUtility.getBearingRad(referencePoint, minLonPoint)
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);
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referencePointX =
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-100 + distanceScaleFactor * Math.sin(referenceAngle) * GeoUtility
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.getDistance(referencePoint, minLonPoint);
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referenceAngle = Math.abs(GeoUtility.getDistance(referencePoint, maxLatPoint));
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referencePointY = -100 + canvasHeight - (bufferSize + bufferSize);
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referencePointY -= distanceScaleFactor * Math.cos(referenceAngle) * GeoUtility
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.getDistance(referencePoint, maxLatPoint);
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referencePointY = referencePointY / 2;
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referencePointY += bufferSize;
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referencePointY += distanceScaleFactor * Math.cos(referenceAngle) * GeoUtility
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.getDistance(referencePoint, maxLatPoint);
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} else {
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referencePointY = -100 + canvasHeight - bufferSize;
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referenceAngle = Math.abs(
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Math.toRadians(
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GeoUtility.getDistance(referencePoint, minLonPoint)
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)
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);
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referencePointX = -100 + bufferSize;
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referencePointX += distanceScaleFactor * Math.sin(referenceAngle) * GeoUtility
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.getDistance(referencePoint, minLonPoint);
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referencePointX +=
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((canvasWidth - (bufferSize + bufferSize)) - (minLonToMaxLon * distanceScaleFactor))
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/ 2;
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}
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if (horizontalInversion) {
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referencePointX = -100 + canvasWidth - bufferSize - (referencePointX - bufferSize);
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}
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}
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/**
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* Finds the scale factor necessary to fit all race markers within the onscreen map and assigns
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* it to distanceScaleFactor Returns the max horizontal distance of the map.
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*/
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private double scaleRaceExtremities() {
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double vertAngle = Math.abs(
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GeoUtility.getBearingRad(minLatPoint, maxLatPoint)
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);
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double vertDistance =
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Math.cos(vertAngle) * GeoUtility.getDistance(minLatPoint, maxLatPoint);
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double horiAngle = Math.abs(
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GeoUtility.getBearingRad(minLonPoint, maxLonPoint)
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);
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if (horiAngle <= (Math.PI / 2)) {
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horiAngle = (Math.PI / 2) - horiAngle;
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} else {
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horiAngle = horiAngle - (Math.PI / 2);
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}
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double horiDistance =
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Math.cos(horiAngle) * GeoUtility.getDistance(minLonPoint, maxLonPoint);
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double vertScale = (canvasHeight - (bufferSize + bufferSize)) / vertDistance;
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if ((horiDistance * vertScale) > (canvasWidth - (bufferSize + bufferSize))) {
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distanceScaleFactor = (canvasWidth - (bufferSize + bufferSize)) / horiDistance;
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scaleDirection = ScaleDirection.HORIZONTAL;
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} else {
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distanceScaleFactor = vertScale;
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scaleDirection = ScaleDirection.VERTICAL;
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}
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return horiDistance;
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}
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private Point2D findScaledXY(GeoPoint unscaled) {
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return findScaledXY(unscaled.getLat(), unscaled.getLng());
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}
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private Point2D findScaledXY(double unscaledLat, double unscaledLon) {
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double distanceFromReference;
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double angleFromReference;
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double xAxisLocation = referencePointX;
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double yAxisLocation = referencePointY;
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angleFromReference = GeoUtility.getBearingRad(
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minLatPoint, new GeoPoint(unscaledLat, unscaledLon)
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);
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distanceFromReference = GeoUtility.getDistance(
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minLatPoint, new GeoPoint(unscaledLat, unscaledLon)
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);
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if (angleFromReference >= 0 && angleFromReference <= Math.PI / 2) {
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xAxisLocation += distanceScaleFactor * Math.sin(angleFromReference) * distanceFromReference;
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yAxisLocation -= distanceScaleFactor * Math.cos(angleFromReference) * distanceFromReference;
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} else if (angleFromReference >= 0) {
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angleFromReference = angleFromReference - Math.PI / 2;
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xAxisLocation += distanceScaleFactor * Math.cos(angleFromReference) * distanceFromReference;
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yAxisLocation += distanceScaleFactor * Math.sin(angleFromReference) * distanceFromReference;
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} else if (angleFromReference < 0 && angleFromReference >= -Math.PI / 2) {
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angleFromReference = Math.abs(angleFromReference);
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xAxisLocation -= distanceScaleFactor * Math.sin(angleFromReference) * distanceFromReference;
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yAxisLocation -= distanceScaleFactor * Math.cos(angleFromReference) * distanceFromReference;
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} else {
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angleFromReference = Math.abs(angleFromReference) - Math.PI / 2;
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xAxisLocation -= distanceScaleFactor * Math.cos(angleFromReference) * distanceFromReference;
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yAxisLocation += distanceScaleFactor * Math.sin(angleFromReference) * distanceFromReference;
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}
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if (horizontalInversion) {
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xAxisLocation = canvasWidth - bufferSize - (xAxisLocation - bufferSize);
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}
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return new Point2D(xAxisLocation, yAxisLocation);
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}
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public void cameraMovement(KeyEvent event) {
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switch (event.getCode()) {
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case NUMPAD8:
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camera.getTransforms().addAll(new Rotate(0.5, new Point3D(1,0,0)));
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break;
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case NUMPAD2:
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camera.getTransforms().addAll(new Rotate(-0.5, new Point3D(1,0,0)));
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break;
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case NUMPAD4:
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camera.getTransforms().addAll(new Rotate(-0.5, new Point3D(0,1,0)));
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break;
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case NUMPAD6:
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camera.getTransforms().addAll(new Rotate(0.5, new Point3D(0,1,0)));
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break;
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case Z:
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camera.getTransforms().addAll(new Translate(0, 0, 1.5));
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break;
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case X:
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camera.getTransforms().addAll(new Translate(0, 0, -1.5));
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break;
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case W:
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camera.getTransforms().addAll(new Translate(0, -1, 0));
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break;
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case S:
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camera.getTransforms().addAll(new Translate(0, 1, 0));
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break;
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case A:
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camera.getTransforms().addAll(new Translate(-1, 0, 0));
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break;
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case D:
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camera.getTransforms().addAll(new Translate(1, 0, 0));
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break;
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}
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}
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/**
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* Rescales the race to the size of the window.
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*
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* @param limitingCoordinates the set of geo points that contains the extremities of the race.
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*/
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private void rescaleRace(List<GeoPoint> limitingCoordinates) {
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//Check is called once to avoid unnecessarily change the course limits once the race is running
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findMinMaxPoint(limitingCoordinates);
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double minLonToMaxLon = scaleRaceExtremities();
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calculateReferencePointLocation(minLonToMaxLon);
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// drawGoogleMap();
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}
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/**
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* Draws all the boats.
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* @param yachts The yachts to set in the race
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*/
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public void setBoats(List<ClientYacht> yachts) {
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BoatObject newBoat;
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final List<Group> wakes = new ArrayList<>();
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for (ClientYacht clientYacht : yachts) {
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Color colour = clientYacht.getColour();
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newBoat = new BoatObject();
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newBoat.setFill(colour);
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boatObjects.put(clientYacht, newBoat);
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wakesGroup.getChildren().add(newBoat.getWake());
|
|
wakes.add(newBoat.getWake());
|
|
boatObjectGroup.getChildren().add(newBoat);
|
|
clientYacht.addLocationListener((boat, lat, lon, heading, sailIn, velocity) -> {
|
|
BoatObject bo = boatObjects.get(boat);
|
|
Point2D p2d = findScaledXY(lat, lon);
|
|
bo.moveTo(p2d.getX(), p2d.getY(), heading, velocity, sailIn, windDir);
|
|
});
|
|
}
|
|
Platform.runLater(() -> {
|
|
gameObjects.getChildren().addAll(wakes);
|
|
gameObjects.getChildren().addAll(boatObjectGroup);
|
|
});
|
|
}
|
|
|
|
public Node getAssets () {
|
|
return view;
|
|
}
|
|
|
|
/**
|
|
* Adds a border to the GameView and rescales to the size of the border, does not rescale if a
|
|
* border already exists. Assumes the border is larger than the course.
|
|
*
|
|
* @param border the race border to be drawn.
|
|
*/
|
|
public void updateBorder(List<Limit> border) {
|
|
if (borderPoints == null) {
|
|
borderPoints = border;
|
|
rescaleRace(new ArrayList<>(borderPoints));
|
|
}
|
|
List<Node> boundaryAssets = new ArrayList<>();
|
|
|
|
Point2D lastLocation = findScaledXY(border.get(0).getLat(), border.get(0).getLng());
|
|
Group pylon = ModelFactory.importModel(ModelType.BORDER_PYLON).getAssets();
|
|
pylon.setLayoutX(lastLocation.getX());
|
|
pylon.setLayoutY(lastLocation.getY());
|
|
boundaryAssets.add(pylon);
|
|
|
|
for (int i=1; i<border.size(); i++) {
|
|
Point2D location = findScaledXY(border.get(i).getLat(), border.get(i).getLng());
|
|
pylon = ModelFactory.importModel(ModelType.BORDER_PYLON).getAssets();
|
|
pylon.setLayoutX(location.getX());
|
|
pylon.setLayoutY(location.getY());
|
|
|
|
Group barrier = ModelFactory.importModel(ModelType.BORDER_BARRIER).getAssets();
|
|
barrier.getTransforms().addAll(
|
|
new Rotate(
|
|
Math.toDegrees(
|
|
Math.atan2(location.getY() - lastLocation.getY(), location.getX() - lastLocation.getX())
|
|
),
|
|
new Point3D(0,0,1)
|
|
),
|
|
new Scale((lastLocation.distance(location) / 10)-0.2, 1, 1)
|
|
);
|
|
|
|
Point2D midPoint = location.midpoint(lastLocation);
|
|
barrier.setLayoutX(midPoint.getX());
|
|
barrier.setLayoutY(midPoint.getY());
|
|
|
|
lastLocation = location;
|
|
|
|
boundaryAssets.add(barrier);
|
|
boundaryAssets.add(pylon);
|
|
}
|
|
|
|
Point2D firstLocation = findScaledXY(border.get(0).getLat(), border.get(0).getLng());
|
|
Group barrier = ModelFactory.importModel(ModelType.BORDER_BARRIER).getAssets();
|
|
barrier.getTransforms().addAll(
|
|
new Rotate(
|
|
Math.toDegrees(
|
|
Math.atan2(lastLocation.getY() - firstLocation.getY(), lastLocation.getX() - firstLocation.getX())
|
|
),
|
|
new Point3D(0,0,1)
|
|
),
|
|
new Scale((firstLocation.distance(lastLocation) / 10)-0.2, 1, 1)
|
|
);
|
|
|
|
Point2D midPoint = lastLocation.midpoint(firstLocation);
|
|
barrier.setLayoutX(midPoint.getX());
|
|
barrier.setLayoutY(midPoint.getY());
|
|
boundaryAssets.add(barrier);
|
|
|
|
Platform.runLater(() -> raceBorder.getChildren().setAll(boundaryAssets));
|
|
}
|
|
|
|
/**
|
|
* Replaces all tokens in the course with those passed in
|
|
*
|
|
* @param newTokens the tokens to be put on the course.
|
|
*/
|
|
public void updateTokens(List<Token> newTokens) {
|
|
mapTokens = new ArrayList<>();
|
|
for (Token token : newTokens) {
|
|
Point2D location = findScaledXY(token.getLat(), token.getLng());
|
|
Node tokenObject = ModelFactory.importModel(ModelType.VELOCITY_PICKUP).getAssets();
|
|
tokenObject.setLayoutX(location.getX());
|
|
tokenObject.setLayoutY(location.getY());
|
|
mapTokens.add(tokenObject);
|
|
}
|
|
|
|
Platform.runLater(() -> {
|
|
tokens.getChildren().setAll(mapTokens);
|
|
});
|
|
}
|
|
|
|
public void setBoatAsPlayer (ClientYacht playerYacht) {
|
|
playerBoatAnimationTimer = new AnimationTimer() {
|
|
|
|
double count = 60;
|
|
Point2D lastLocation = findScaledXY(playerYacht.getLocation());
|
|
|
|
@Override
|
|
public void handle(long now) {
|
|
if (--count == 0) {
|
|
count = 60;
|
|
Node segment = ModelFactory.importModel(ModelType.TRAIL_SEGMENT).getAssets();
|
|
Point2D location = findScaledXY(playerYacht.getLocation());
|
|
segment.getTransforms().addAll(
|
|
new Translate(location.getX(), location.getY(), 0),
|
|
new Rotate(playerYacht.getHeading(), new Point3D(0,0,1)),
|
|
new Scale(1, lastLocation.distance(location) / 5, 1)
|
|
);
|
|
trail.getChildren().add(segment);
|
|
if (trail.getChildren().size() > 50) {
|
|
trail.getChildren().remove(0);
|
|
}
|
|
lastLocation = location;
|
|
}
|
|
}
|
|
};
|
|
playerBoatAnimationTimer.start();
|
|
playerYacht.addMarkRoundingListener(this::updateMarkArrows);
|
|
boatObjects.get(playerYacht).addSelectedBoatListener((boatObject, isSelected) -> {
|
|
System.out.println("IS SELECTED " + isSelected);
|
|
});
|
|
}
|
|
|
|
public void setWindDir(double windDir) {
|
|
this.windDir = windDir;
|
|
}
|
|
|
|
private void updateMarkArrows (ClientYacht yacht, int legNumber) {
|
|
CompoundMark compoundMark;
|
|
if (legNumber - 1 >= 0) {
|
|
Sounds.playMarkRoundingSound();
|
|
compoundMark = course.get(legNumber-1);
|
|
for (Mark mark : compoundMark.getMarks()) {
|
|
markerObjects.get(mark).showNextExitArrow();
|
|
}
|
|
}
|
|
CompoundMark nextMark = null;
|
|
if (legNumber < course.size() - 1) {
|
|
Sounds.playMarkRoundingSound();
|
|
nextMark = course.get(legNumber);
|
|
for (Mark mark : nextMark.getMarks()) {
|
|
markerObjects.get(mark).showNextEnterArrow();
|
|
}
|
|
}
|
|
if (legNumber - 2 >= 0) {
|
|
CompoundMark lastMark = course.get(Math.max(0, legNumber - 2));
|
|
if (lastMark != nextMark) {
|
|
for (Mark mark : lastMark.getMarks()) {
|
|
markerObjects.get(mark).hideAllArrows();
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|