Update SortUtils (#4139)
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@ -54,7 +54,8 @@ class CombSort implements SortAlgorithm {
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for (int i = 0; i < size - gap; i++) {
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if (less(arr[i + gap], arr[i])) {
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// Swap arr[i] and arr[i+gap]
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swapped = swap(arr, i, i + gap);
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swap(arr, i, i + gap);
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swapped = true;
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}
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}
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}
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@ -2,121 +2,118 @@ package com.thealgorithms.sorts;
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import java.util.Arrays;
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import java.util.List;
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import java.util.stream.Collectors;
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/**
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* The class contains util methods
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*
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* @author Podshivalov Nikita (https://github.com/nikitap492)
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*/
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final class SortUtils {
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/**
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* Helper method for swapping places in array
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* Swaps two elements at the given positions in an array.
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*
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* @param array The array which elements we want to swap
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* @param idx index of the first element
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* @param idy index of the second element
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* @param array the array in which to swap elements
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* @param i the index of the first element to swap
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* @param j the index of the second element to swap
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* @param <T> the type of elements in the array
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*/
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static <T> boolean swap(T[] array, int idx, int idy) {
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T swap = array[idx];
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array[idx] = array[idy];
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array[idy] = swap;
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return true;
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public static <T> void swap(T[] array, int i, int j) {
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T temp = array[i];
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array[i] = array[j];
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array[j] = temp;
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}
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/**
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* This method checks if first element is less than the other element
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* Compares two elements to see if the first is less than the second.
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*
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* @param v first element
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* @param w second element
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* @return true if the first element is less than the second element
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* @param firstElement the first element to compare
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* @param secondElement the second element to compare
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* @return true if the first element is less than the second, false otherwise
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*/
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static <T extends Comparable<T>> boolean less(T v, T w) {
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return v.compareTo(w) < 0;
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public static <T extends Comparable<T>> boolean less(T firstElement, T secondElement) {
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return firstElement.compareTo(secondElement) < 0;
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}
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/**
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* This method checks if first element is greater than the other element
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* Compares two elements to see if the first is greater than the second.
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*
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* @param v first element
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* @param w second element
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* @return true if the first element is greater than the second element
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* @param firstElement the first element to compare
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* @param secondElement the second element to compare
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* @return true if the first element is greater than the second, false otherwise
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*/
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static <T extends Comparable<T>> boolean greater(T v, T w) {
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return v.compareTo(w) > 0;
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public static <T extends Comparable<T>> boolean greater(T firstElement, T secondElement) {
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return firstElement.compareTo(secondElement) > 0;
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}
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/**
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* This method checks if first element is greater than or equal the other
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* element
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* Compares two elements to see if the first is greater than or equal to the second.
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*
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* @param v first element
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* @param w second element
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* @return true if the first element is greater than or equal the second
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* element
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* @param firstElement the first element to compare
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* @param secondElement the second element to compare
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* @return true if the first element is greater than or equal to the second, false otherwise
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*/
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static <T extends Comparable<T>> boolean greaterOrEqual(T v, T w) {
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return v.compareTo(w) >= 0;
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static <T extends Comparable<T>> boolean greaterOrEqual(T firstElement, T secondElement) {
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return firstElement.compareTo(secondElement) >= 0;
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}
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/**
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* Prints a list
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* Prints the elements of a list to standard output.
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*
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* @param toPrint - a list which should be printed
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* @param listToPrint the list to print
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*/
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static void print(List<?> toPrint) {
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toPrint
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.stream()
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static void print(List<?> listToPrint) {
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String result = listToPrint.stream()
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.map(Object::toString)
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.map(str -> str + " ")
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.forEach(System.out::print);
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System.out.println();
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.collect(Collectors.joining(" "));
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System.out.println(result);
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}
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/**
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* Prints an array
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* Prints the elements of an array to standard output.
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*
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* @param toPrint - an array which should be printed
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* @param array the array to print
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*/
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static void print(Object[] toPrint) {
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System.out.println(Arrays.toString(toPrint));
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static <T> void print(T[] array) {
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System.out.println(Arrays.toString(array));
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}
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/**
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* Swaps all position from {
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* Flips the order of elements in the specified range of an array.
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*
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* @param left} to @{
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* @param right} for {
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* @param array}
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*
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* @param array is an array
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* @param left is a left flip border of the array
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* @param right is a right flip border of the array
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* @param array the array whose elements are to be flipped
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* @param left the left boundary of the range to be flipped (inclusive)
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* @param right the right boundary of the range to be flipped (inclusive)
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*/
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static <T extends Comparable<T>> void flip(T[] array, int left, int right) {
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public static <T extends Comparable<T>> void flip(T[] array, int left, int right) {
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while (left <= right) {
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swap(array, left++, right--);
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}
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}
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/**
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* Function to check if the array is sorted. By default, it will check if the array is sorted in ASC order.
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* Checks whether the array is sorted in ascending order.
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*
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* @param array - an array which to check is it sorted or not.
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* @return true - if array sorted in ASC order, false otherwise.
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* @param array the array to check
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* @return true if the array is sorted in ascending order, false otherwise
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*/
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static <T extends Comparable<T>> boolean isSorted(T[] array) {
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for (int i = 1; i < array.length; i++)
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if (less(array[i], array[i - 1]))
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public static <T extends Comparable<T>> boolean isSorted(T[] array) {
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for (int i = 1; i < array.length; i++) {
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if (less(array[i], array[i - 1])) {
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return false;
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}
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}
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return true;
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}
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static <T extends Comparable<T>> boolean isSorted(List<T> list) {
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for (int i = 1; i < list.size(); i++)
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if (less(list.get(i), list.get(i - 1)))
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/**
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* Checks whether the list is sorted in ascending order.
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*
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* @param list the list to check
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* @return true if the list is sorted in ascending order, false otherwise
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*/
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public static <T extends Comparable<T>> boolean isSorted(List<T> list) {
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for (int i = 1; i < list.size(); i++) {
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if (less(list.get(i), list.get(i - 1))) {
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return false;
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}
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}
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return true;
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}
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}
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