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https://github.com/trekhleb/javascript-algorithms.git
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287 lines
6.9 KiB
JavaScript
287 lines
6.9 KiB
JavaScript
import Comparator from '../../utils/comparator/Comparator';
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/**
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* Parent class for Min and Max Heaps.
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*/
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export default class Heap {
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/**
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* @constructs Heap
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* @param {Function} [comparatorFunction]
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*/
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constructor(comparatorFunction) {
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if (new.target === Heap) {
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throw new TypeError('Cannot construct Heap instance directly');
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}
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// Array representation of the heap.
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this.heapContainer = [];
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this.compare = new Comparator(comparatorFunction);
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}
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/**
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* @param {number} parentIndex
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* @return {number}
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*/
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getLeftChildIndex(parentIndex) {
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return (2 * parentIndex) + 1;
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}
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/**
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* @param {number} parentIndex
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* @return {number}
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*/
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getRightChildIndex(parentIndex) {
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return (2 * parentIndex) + 2;
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}
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/**
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* @param {number} childIndex
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* @return {number}
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*/
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getParentIndex(childIndex) {
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return Math.floor((childIndex - 1) / 2);
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}
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/**
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* @param {number} childIndex
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* @return {boolean}
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*/
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hasParent(childIndex) {
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return this.getParentIndex(childIndex) >= 0;
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}
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/**
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* @param {number} parentIndex
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* @return {boolean}
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*/
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hasLeftChild(parentIndex) {
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return this.getLeftChildIndex(parentIndex) < this.heapContainer.length;
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}
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/**
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* @param {number} parentIndex
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* @return {boolean}
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*/
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hasRightChild(parentIndex) {
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return this.getRightChildIndex(parentIndex) < this.heapContainer.length;
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}
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/**
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* @param {number} parentIndex
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* @return {*}
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*/
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leftChild(parentIndex) {
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return this.heapContainer[this.getLeftChildIndex(parentIndex)];
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}
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/**
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* @param {number} parentIndex
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* @return {*}
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*/
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rightChild(parentIndex) {
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return this.heapContainer[this.getRightChildIndex(parentIndex)];
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}
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/**
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* @param {number} childIndex
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* @return {*}
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*/
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parent(childIndex) {
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return this.heapContainer[this.getParentIndex(childIndex)];
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}
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/**
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* @param {number} indexOne
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* @param {number} indexTwo
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*/
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swap(indexOne, indexTwo) {
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const tmp = this.heapContainer[indexTwo];
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this.heapContainer[indexTwo] = this.heapContainer[indexOne];
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this.heapContainer[indexOne] = tmp;
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}
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/**
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* @return {*}
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*/
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peek() {
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if (this.heapContainer.length === 0) {
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return null;
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}
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return this.heapContainer[0];
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}
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/**
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* @return {*}
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*/
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poll() {
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if (this.heapContainer.length === 0) {
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return null;
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}
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if (this.heapContainer.length === 1) {
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return this.heapContainer.pop();
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}
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const item = this.heapContainer[0];
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// Move the last element from the end to the head.
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this.heapContainer[0] = this.heapContainer.pop();
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this.heapifyDown();
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return item;
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}
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/**
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* @param {*} item
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* @return {Heap}
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*/
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add(item) {
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this.heapContainer.push(item);
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this.heapifyUp();
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return this;
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}
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/**
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* @param {*} item
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* @param {Comparator} [comparator]
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* @return {Heap}
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*/
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remove(item, comparator = this.compare) {
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// Find number of items to remove.
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const numberOfItemsToRemove = this.find(item, comparator).length;
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for (let iteration = 0; iteration < numberOfItemsToRemove; iteration += 1) {
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// We need to find item index to remove each time after removal since
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// indices are being changed after each heapify process.
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const indexToRemove = this.find(item, comparator).pop();
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// If we need to remove last child in the heap then just remove it.
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// There is no need to heapify the heap afterwards.
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if (indexToRemove === (this.heapContainer.length - 1)) {
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this.heapContainer.pop();
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} else {
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// Move last element in heap to the vacant (removed) position.
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this.heapContainer[indexToRemove] = this.heapContainer.pop();
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// Get parent.
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const parentItem = this.parent(indexToRemove);
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// If there is no parent or parent is in correct order with the node
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// we're going to delete then heapify down. Otherwise heapify up.
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if (
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this.hasLeftChild(indexToRemove)
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&& (
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!parentItem
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|| this.pairIsInCorrectOrder(parentItem, this.heapContainer[indexToRemove])
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)
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) {
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this.heapifyDown(indexToRemove);
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} else {
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this.heapifyUp(indexToRemove);
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}
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}
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}
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return this;
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}
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/**
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* @param {*} item
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* @param {Comparator} [comparator]
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* @return {Number[]}
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*/
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find(item, comparator = this.compare) {
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const foundItemIndices = [];
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for (let itemIndex = 0; itemIndex < this.heapContainer.length; itemIndex += 1) {
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if (comparator.equal(item, this.heapContainer[itemIndex])) {
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foundItemIndices.push(itemIndex);
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}
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}
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return foundItemIndices;
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}
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/**
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* @return {boolean}
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*/
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isEmpty() {
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return !this.heapContainer.length;
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}
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/**
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* @return {string}
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*/
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toString() {
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return this.heapContainer.toString();
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}
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/**
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* @param {number} [customStartIndex]
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*/
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heapifyUp(customStartIndex) {
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// Take the last element (last in array or the bottom left in a tree)
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// in the heap container and lift it up until it is in the correct
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// order with respect to its parent element.
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let currentIndex = customStartIndex || this.heapContainer.length - 1;
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while (
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this.hasParent(currentIndex)
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&& !this.pairIsInCorrectOrder(this.parent(currentIndex), this.heapContainer[currentIndex])
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) {
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this.swap(currentIndex, this.getParentIndex(currentIndex));
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currentIndex = this.getParentIndex(currentIndex);
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}
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}
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/**
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* @param {number} [customStartIndex]
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*/
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heapifyDown(customStartIndex = 0) {
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// Compare the parent element to its children and swap parent with the appropriate
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// child (smallest child for MinHeap, largest child for MaxHeap).
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// Do the same for next children after swap.
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let currentIndex = customStartIndex;
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let nextIndex = null;
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while (this.hasLeftChild(currentIndex)) {
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if (
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this.hasRightChild(currentIndex)
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&& this.pairIsInCorrectOrder(this.rightChild(currentIndex), this.leftChild(currentIndex))
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) {
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nextIndex = this.getRightChildIndex(currentIndex);
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} else {
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nextIndex = this.getLeftChildIndex(currentIndex);
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}
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if (this.pairIsInCorrectOrder(
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this.heapContainer[currentIndex],
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this.heapContainer[nextIndex],
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)) {
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break;
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}
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this.swap(currentIndex, nextIndex);
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currentIndex = nextIndex;
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}
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}
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/**
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* Checks if pair of heap elements is in correct order.
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* For MinHeap the first element must be always smaller or equal.
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* For MaxHeap the first element must be always bigger or equal.
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*
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* @param {*} firstElement
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* @param {*} secondElement
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* @return {boolean}
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*/
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/* istanbul ignore next */
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pairIsInCorrectOrder(firstElement, secondElement) {
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throw new Error(`
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You have to implement heap pair comparision method
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for ${firstElement} and ${secondElement} values.
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`);
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}
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}
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