160 lines
4.3 KiB
Kotlin
160 lines
4.3 KiB
Kotlin
/**
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* File: my_heap.kt
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* Created Time: 2024-01-25
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* Author: curtishd (1023632660@qq.com)
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*/
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package chapter_heap
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import utils.printHeap
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import java.util.*
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/* Max-heap */
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class MaxHeap(nums: MutableList<Int>?) {
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// Use list instead of array to avoid the need for resizing
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private val maxHeap = mutableListOf<Int>()
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/* Constructor, build heap based on input list */
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init {
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// Add all list elements into the heap
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maxHeap.addAll(nums!!)
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// Heapify all nodes except leaves
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for (i in parent(size() - 1) downTo 0) {
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siftDown(i)
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}
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}
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/* Get index of left child node */
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private fun left(i: Int): Int {
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return 2 * i + 1
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}
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/* Get index of right child node */
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private fun right(i: Int): Int {
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return 2 * i + 2
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}
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/* Get index of parent node */
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private fun parent(i: Int): Int {
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return (i - 1) / 2 // Integer division down
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}
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/* Swap elements */
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private fun swap(i: Int, j: Int) {
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val temp = maxHeap[i]
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maxHeap[i] = maxHeap[j]
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maxHeap[j] = temp
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}
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/* Get heap size */
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fun size(): Int {
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return maxHeap.size
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}
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/* Determine if heap is empty */
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fun isEmpty(): Boolean {
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/* Determine if heap is empty */
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return size() == 0
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}
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/* Access heap top element */
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fun peek(): Int {
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return maxHeap[0]
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}
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/* Push the element into heap */
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fun push(_val: Int) {
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// Add node
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maxHeap.add(_val)
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// Heapify from bottom to top
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siftUp(size() - 1)
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}
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/* Start heapifying node i, from bottom to top */
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private fun siftUp(it: Int) {
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// Kotlin's function parameters are immutable, therefore temporary variables are created
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var i = it
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while (true) {
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// Get parent node of node i
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val p = parent(i)
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// When "crossing the root node" or "node does not need repair", end heapification
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if (p < 0 || maxHeap[i] <= maxHeap[p]) break
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// Swap two nodes
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swap(i, p)
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// Loop upwards heapification
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i = p
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}
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}
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/* Element exits heap */
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fun pop(): Int {
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// Empty handling
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if (isEmpty()) throw IndexOutOfBoundsException()
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// Swap the root node with the rightmost leaf node (swap the first element with the last element)
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swap(0, size() - 1)
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// Remove node
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val _val = maxHeap.removeAt(size() - 1)
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// Heapify from top to bottom
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siftDown(0)
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// Return heap top element
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return _val
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}
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/* Start heapifying node i, from top to bottom */
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private fun siftDown(it: Int) {
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// Kotlin's function parameters are immutable, therefore temporary variables are created
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var i = it
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while (true) {
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// Determine the largest node among i, l, r, noted as ma
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val l = left(i)
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val r = right(i)
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var ma = i
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if (l < size() && maxHeap[l] > maxHeap[ma]) ma = l
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if (r < size() && maxHeap[r] > maxHeap[ma]) ma = r
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// If node i is the largest or indices l, r are out of bounds, no further heapification needed, break
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if (ma == i) break
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// Swap two nodes
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swap(i, ma)
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// Loop downwards heapification
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i = ma
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}
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}
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/* Print heap (binary tree) */
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fun print() {
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val queue = PriorityQueue { a: Int, b: Int -> b - a }
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queue.addAll(maxHeap)
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printHeap(queue)
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}
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}
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/* Driver Code */
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fun main() {
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/* Initialize max-heap */
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val maxHeap = MaxHeap(mutableListOf(9, 8, 6, 6, 7, 5, 2, 1, 4, 3, 6, 2))
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println("\nEnter list and build heap")
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maxHeap.print()
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/* Access heap top element */
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var peek = maxHeap.peek()
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print("\nTop element of the heap $peek\n")
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/* Push the element into heap */
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val _val = 7
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maxHeap.push(_val)
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print("\nElement $_val pushed onto heap\n")
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maxHeap.print()
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/* Pop the element at the heap top */
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peek = maxHeap.pop()
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print("\nElement $peek popped from heap\n")
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maxHeap.print()
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/* Get heap size */
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val size = maxHeap.size()
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print("\nNumber of elements in the heap $size\n")
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/* Determine if heap is empty */
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val isEmpty = maxHeap.isEmpty()
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print("\nIs the heap empty $isEmpty\n")
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} |