import java.util.ArrayList; import java.util.Random; public class GA { public static ArrayList> crossover(Individual a, Individual b, int[][] imgArray){ ArrayList> newRoots = new ArrayList<>(); for (int i = 0; i < a.getSegments().size(); i++) { ArrayList currRootCoords = new ArrayList<>(); //Calculate average coords int newX = (a.getSegments().get(i).getRootNode().getX() + b.getSegments().get(i).getRootNode().getX() ) / 2; int newY = (a.getSegments().get(i).getRootNode().getY() + b.getSegments().get(i).getRootNode().getY() ) / 2; currRootCoords.add(newX); currRootCoords.add(newY); newRoots.add(currRootCoords); } return newRoots; } public static Individual tournamentSelection(Individual a, Individual b){ if (a.getRank() == b.getRank()){ return a.getCrowdingDistance() > b.getCrowdingDistance() ? a : b; } else { return a.getRank() > b.getRank() ? a: b; } } public static ArrayList>> mutate(ArrayList>> children, int[][] imgArray){ Random r = new Random(); for (int i = 0; i < children.size(); i++) { for (int j = 0; j < children.get(i).size(); j++) { if(r.nextDouble() < 0.8){ int newX = r.nextInt(imgArray[0].length); int newY = r.nextInt(imgArray.length); children.get(i).get(j).set(0, newY); children.get(i).get(j).set(1, newX); } } } return children; } public static ArrayList>> doGA(int[][] imgArray, Population parentPopulation, int numIndividuals){ ArrayList parents = parentPopulation.getIndividuals(); ArrayList>> children = new ArrayList<>(); for (int i = 0; i < numIndividuals * 3; i++) { Random r = new Random(); //TODO: Ensure that we cannot get the same two individuals Individual crossover_individual_a = GA.tournamentSelection(parents.get(r.nextInt(parents.size())), parents.get(r.nextInt(parents.size()))); Individual crossover_individual_b = GA.tournamentSelection(parents.get(r.nextInt(parents.size())), parents.get(r.nextInt(parents.size()))); children.add((GA.crossover(crossover_individual_a, crossover_individual_b, imgArray))); } children = mutate(children, imgArray); return children; } }