Functional context-free grammar! Worked first time! Well... almost.
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@@ -21,7 +21,8 @@ public class PCGLevel extends Level {
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public static int COIN_REWARD = 1;
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public static int POWERUP_REWARD = 2;
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public static boolean TESTING = true;
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// disable TESTING - enable grammar-based level generation
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public static boolean TESTING = false;
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public static long lastSeed;
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private static Random levelSeedRandom = new Random();
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@@ -181,38 +182,32 @@ public class PCGLevel extends Level {
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for (LevelComponent lcomp : levelTemplate) {
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LevelComponent.TYPE lctype = lcomp.getType();
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System.out.println("Building for: " + lcomp);
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switch (lctype) {
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case FLAT_LO:
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case FLAT_HI:
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length += buildStraight(length, lcomp.getEnd(), true);
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break;
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case PIPE_JUMP:
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length += buildPipeJump(length, width - 64 - length);
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break;
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case PLATFORM_JUMP:
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length += buildPlatformJump(length, width - 64 - length);
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break;
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case MAZE:
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length += buildMaze(length, width - 64 - length);
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break;
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default:
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System.out
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.println("Cannot build level segment for unrecognized LevelComponent type: "
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+ type);
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while (length < Math.min(width - 64, lcomp.getEnd())) {
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switch (lctype) {
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case FLAT_LO:
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case FLAT_HI:
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length += buildStraight(length, lcomp.getEnd(), true);
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break;
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case PIPE_JUMP:
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length += buildPipeJump(length, width - 64 - length);
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break;
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case PLATFORM_JUMP:
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length += buildPlatformJump(length, width - 64 - length);
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break;
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case MAZE:
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length += buildMaze(length, width - 64 - length);
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break;
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default:
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System.out
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.println("Cannot build level segment for unrecognized LevelComponent type: "
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+ type);
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}
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}
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}
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}
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System.out.println("Total length built: " + length);
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/*
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* Original non-PCG code: // create the start location int length =
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* buildStraight(0, width, true); length += buildPipeJump(length, width
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* - length); // length += buildMaze(length, width - length);
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*
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* // create all of the medium sections while (length < width - 64) {
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* length += buildStraight(length, width - length, true); }
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*/
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// set the end piece
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int floor = height - 1 - random.nextInt(4);
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@@ -1187,71 +1182,10 @@ public class PCGLevel extends Level {
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: Level.BLOCK_COIN);
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}
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}
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// if (!safe) {
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// if (length > 5) {
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// decorate(xo, xo + length, floor);
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// }
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// }
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return length;
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}
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// private void decorate(int xStart, int xLength, int floor) {
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// // if its at the very top, just return
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// if (floor < 1)
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// return;
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//
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// // boolean coins = random.nextInt(3) == 0;
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// boolean rocks = true;
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//
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// // add an enemy line above the box
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// addEnemyLine(xStart + 1, xLength - 1, floor - 1);
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//
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// int s = random.nextInt(4);
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// int e = random.nextInt(4);
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//
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// if (floor - 2 > 0) {
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// if ((xLength - 1 - e) - (xStart + 1 + s) > 1) {
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// for (int x = xStart + 1 + s; x < xLength - 1 - e; x++) {
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// setBlock(x, floor - 2, COIN);
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// COINS++;
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// }
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// }
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// }
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//
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// s = random.nextInt(4);
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// e = random.nextInt(4);
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//
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// // this fills the set of blocks and the hidden objects inside them
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// if (floor - 4 > 0) {
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// if ((xLength - 1 - e) - (xStart + 1 + s) > 2) {
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// for (int x = xStart + 1 + s; x < xLength - 1 - e; x++) {
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// if (rocks) {
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// if (x != xStart + 1 && x != xLength - 2
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// && random.nextInt(3) == 0) {
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// if (random.nextInt(4) == 0) {
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// setBlock(x, floor - 4, BLOCK_POWERUP);
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// BLOCKS_POWER++;
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// } else { // the fills a block with a hidden coin
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// setBlock(x, floor - 4, BLOCK_COIN);
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// BLOCKS_COINS++;
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// }
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// } else if (random.nextInt(4) == 0) {
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// if (random.nextInt(4) == 0) {
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// setBlock(x, floor - 4, (byte) (2 + 1 * 16));
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// } else {
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// setBlock(x, floor - 4, (byte) (1 + 1 * 16));
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// }
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// } else {
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// setBlock(x, floor - 4, BLOCK_EMPTY);
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// BLOCKS_EMPTY++;
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// }
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// }
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// }
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// }
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// }
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// }
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private void fixWalls() {
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boolean[][] blockMap = new boolean[width + 1][height + 1];
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@@ -41,4 +41,19 @@ public class AndClause implements Clause {
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public boolean isVariable() {
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return false;
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}
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@Override
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public String toString() {
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if (subClauses.size() == 0) {
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return "(Empty AND clause)";
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}
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StringBuilder sb = new StringBuilder();
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sb.append("(");
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for (int i = 0; i < subClauses.size() - 1; i ++) {
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sb.append(subClauses.get(i).toString());
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sb.append(" AND ");
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}
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sb.append(subClauses.get(subClauses.size()-1).toString());
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sb.append(")");
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return sb.toString();
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}
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}
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@@ -15,8 +15,8 @@ public class LevelGrammarFactory {
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Variable v_HI_LO = new Variable("HI_LO", LevelComponent.TYPE.HI_LO);
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Variable v_LO_PATH = new Variable("LO_PATH", LevelComponent.TYPE.LO_PATH);
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Variable v_HI_PATH = new Variable("HI_PATH", LevelComponent.TYPE.HI_PATH);
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Variable v_lo_path = new Variable("lo_path", LevelComponent.TYPE.LO_PATH);
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Variable v_hi_path = new Variable("hi_path", LevelComponent.TYPE.HI_PATH);
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Variable v_lo_path = new Variable("lo_path", LevelComponent.TYPE.FLAT_LO);
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Variable v_hi_path = new Variable("hi_path", LevelComponent.TYPE.FLAT_HI);
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grammar.addVariable(v_START);
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grammar.addVariable(v_LAND_SEGMENT);
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@@ -56,4 +56,21 @@ public class OrClause implements Clause {
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public boolean isVariable() {
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return false;
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}
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@Override
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public String toString() {
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if (subClauses.size() == 0) {
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return "(Empty OR clause)";
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}
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StringBuilder sb = new StringBuilder();
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sb.append("(");
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for (int i = 0; i < subClauses.size() - 1; i ++) {
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sb.append(subClauses.get(i).toString());
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sb.append(" OR ");
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}
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sb.append(subClauses.get(subClauses.size()-1).toString());
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sb.append(")");
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return sb.toString();
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}
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}
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@@ -1,11 +1,13 @@
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package dk.itu.mario.level.grammar;
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import java.text.DecimalFormat;
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import java.util.ArrayList;
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import java.util.List;
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import dk.itu.mario.level.LevelComponent;
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public class ParseNode {
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private static final DecimalFormat FORMATTER = new DecimalFormat("###.00");
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private LevelComponent.TYPE levelCompType;
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private double percentLength;
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private List<ParseNode> children = new ArrayList<ParseNode>();
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@@ -59,4 +61,8 @@ public class ParseNode {
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public void setPercentLength(double percentLength) {
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this.percentLength = percentLength;
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}
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public String toString() {
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return levelCompType + " (" + FORMATTER.format(percentLength * 100) + "%)";
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}
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}
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