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61 lines
1.9 KiB
Java
61 lines
1.9 KiB
Java
package com.thealgorithms.backtracking;
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import java.util.Arrays;
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import java.util.LinkedList;
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import java.util.List;
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import java.util.TreeSet;
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/**
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* Finds all permutations of given array
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* @author Alan Piao (<a href="https://github.com/cpiao3">git-Alan Piao</a>)
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*/
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public final class Combination {
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private Combination() {
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}
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private static int length;
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/**
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* Find all combinations of given array using backtracking
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* @param arr the array.
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* @param n length of combination
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* @param <T> the type of elements in the array.
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* @return a list of all combinations of length n. If n == 0, return null.
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*/
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public static <T> List<TreeSet<T>> combination(T[] arr, int n) {
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if (n == 0) {
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return null;
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}
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length = n;
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T[] array = arr.clone();
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Arrays.sort(array);
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List<TreeSet<T>> result = new LinkedList<>();
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backtracking(array, 0, new TreeSet<T>(), result);
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return result;
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}
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/**
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* Backtrack all possible combinations of a given array
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* @param arr the array.
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* @param index the starting index.
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* @param currSet set that tracks current combination
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* @param result the list contains all combination.
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* @param <T> the type of elements in the array.
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*/
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private static <T> void backtracking(T[] arr, int index, TreeSet<T> currSet, List<TreeSet<T>> result) {
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if (index + length - currSet.size() > arr.length) return;
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if (length - 1 == currSet.size()) {
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for (int i = index; i < arr.length; i++) {
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currSet.add(arr[i]);
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result.add((TreeSet<T>) currSet.clone());
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currSet.remove(arr[i]);
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}
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}
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for (int i = index; i < arr.length; i++) {
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currSet.add(arr[i]);
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backtracking(arr, i + 1, currSet, result);
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currSet.remove(arr[i]);
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}
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}
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}
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