mirror of
https://github.com/michaelrausch/Party-Parrots-At-Sea.git
synced 2026-05-09 14:28:43 +00:00
Fixed wind walker and bumper
Added a hack to bumper so that the collision distance is larger than the regular collision distance Wind walker now makes you go at you max speed rather than VMG speed #story[1293]
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@@ -382,8 +382,8 @@ public class GameState implements Runnable {
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//Get a random token location with random type
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Token token = allTokens.get(random.nextInt(allTokens.size()));
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// token.assignRandomType();
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token.assignType(TokenType.BUMPER);
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token.assignRandomType();
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// token.assignType(TokenType.WIND_WALKER);
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logger.debug("Spawned token of type " + token.getTokenType());
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@@ -440,8 +440,9 @@ public class GameState implements Runnable {
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windWalk(yacht);
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break;
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case BUMPER:
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ServerYacht collidedYacht = checkYachtCollision(yacht);
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ServerYacht collidedYacht = checkYachtCollision(yacht, true);
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if (collidedYacht != null) {
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System.out.println("WE OUT HERE");
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yacht.powerDown();
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boatTempShutDown(collidedYacht);
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notifyMessageListeners(MessageFactory.makePowerDownMessage(yacht));
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@@ -497,17 +498,12 @@ public class GameState implements Runnable {
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/**
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* This function changes the wind to be at an angle that causes the yacht in question to be at
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* VMG.
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* its fastest velocity
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*
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* @param yacht The yacht to fix the wind for
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*/
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private void windWalk(ServerYacht yacht) {
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HashMap<Double, Double> upwindOptimal = PolarTable.getOptimalUpwindVMG(windSpeed);
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Double optimalAngle = null;
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for (Double windAngle : upwindOptimal.keySet()) {
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optimalAngle = windAngle;
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}
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Double optimalAngle = PolarTable.getOptimalAngle();
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Double heading = yacht.getHeading();
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windDirection = (double) Math.floorMod(Math.round(heading + optimalAngle), 360L);
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}
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@@ -597,7 +593,7 @@ public class GameState implements Runnable {
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*/
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public static void checkCollision(ServerYacht serverYacht) {
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//Yacht Collision
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ServerYacht collidedYacht = checkYachtCollision(serverYacht);
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ServerYacht collidedYacht = checkYachtCollision(serverYacht, false);
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Mark collidedMark = checkMarkCollision(serverYacht);
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if (collidedYacht != null) {
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@@ -946,15 +942,22 @@ public class GameState implements Runnable {
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* Collision detection which iterates through all the yachts and check if any yacht collided
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* with this yacht. Return collided yacht or null if no collision.
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*
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* UPDATE: HACK!!! wmu16 - forBumperCollision is (the goddamn dirtiest) dirty flag to fix a
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* weird bug where the bumper collision would not be registerd but the knock back collision would.
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* In other words, only set the 'forBumperCollision' flag true if used for the bumper power up.
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*
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* @return yacht to compare to all other yachts.
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*/
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private static ServerYacht checkYachtCollision(ServerYacht yacht) {
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private static ServerYacht checkYachtCollision(ServerYacht yacht, Boolean forBumperCollision) {
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Double collisionDistance =
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(forBumperCollision) ? YACHT_COLLISION_DISTANCE + 2.5 : YACHT_COLLISION_DISTANCE;
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for (ServerYacht otherYacht : GameState.getYachts().values()) {
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if (otherYacht != yacht) {
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Double distance = GeoUtility
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.getDistance(otherYacht.getLocation(), yacht.getLocation());
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if (distance < YACHT_COLLISION_DISTANCE) {
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;
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if (distance < collisionDistance) {
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return otherYacht;
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}
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}
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@@ -4,7 +4,9 @@ import java.io.BufferedReader;
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import java.io.IOException;
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import java.io.InputStream;
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import java.io.InputStreamReader;
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import java.util.Collections;
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import java.util.HashMap;
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import java.util.Map;
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/**
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* A static class for parsing and storing the polars. Will parse the whole polar table and also store the optimised
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@@ -17,6 +19,7 @@ public final class PolarTable {
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private static HashMap<Double, HashMap<Double, Double>> polarTable;
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private static HashMap<Double, HashMap<Double, Double>> upwindOptimal;
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private static HashMap<Double, HashMap<Double, Double>> downwindOptimal;
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private static Double optimalAngle;
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private static int upTwaIndex;
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private static int dnTwaIndex;
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@@ -33,11 +36,13 @@ public final class PolarTable {
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upwindOptimal = new HashMap<>();
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downwindOptimal = new HashMap<>();
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String line;
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String line = null;
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String check;
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Boolean isHeaderLine = true;
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try (BufferedReader br = new BufferedReader(new InputStreamReader(polarFile))) {
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while ((line = br.readLine()) != null) {
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while ((check = br.readLine()) != null) {
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line = check;
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String[] thisLine = line.split(",");
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//Initial line in file
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@@ -66,7 +71,10 @@ public final class PolarTable {
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upwindOptimal.put(thisWindSpeed, thisUpWindPolar);
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downwindOptimal.put(thisWindSpeed, thisDnWindPolar);
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}
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}
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getMaxSpeedAngle(line);
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} catch (IOException e) {
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System.out.println("[PolarTable] IO exception");
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@@ -74,6 +82,27 @@ public final class PolarTable {
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}
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/**
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* Passes the final line of the polar table and iterates over the speeds for each
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* angle, velocity pair to find the angle that produces the highest velocity
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*
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* @param line The last line of the polar file
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*/
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private static void getMaxSpeedAngle(String line) {
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String[] theLastLine = line.split(",");
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Double maxWindVal = Double.parseDouble(theLastLine[0]);
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Double optimalAngle = Double.parseDouble(theLastLine[1]);
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Double maxSpeed = Double.parseDouble(theLastLine[2]);
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for (Map.Entry<Double, Double> entry : polarTable.get(maxWindVal).entrySet()) {
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if (entry.getValue() > maxSpeed) {
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maxSpeed = entry.getValue();
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optimalAngle = entry.getKey();
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}
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}
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PolarTable.optimalAngle = optimalAngle;
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}
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/**
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* Parses the header line of a polar file
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@@ -85,14 +114,18 @@ public final class PolarTable {
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String thisItem = thisLine[i];
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if (thisItem.toLowerCase().startsWith("uptwa")) {
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upTwaIndex = i;
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}
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else if (thisItem.toLowerCase().startsWith("dntwa")) {
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} else if (thisItem.toLowerCase().startsWith("dntwa")) {
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dnTwaIndex = i;
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}
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}
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}
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public static Double getOptimalAngle() {
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return optimalAngle;
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}
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/**
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* @return The entire polar table
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*/
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