< Summary

Information
Class: LeetCode.Algorithms.NaryTreePostorderTraversal.NaryTreePostorderTraversalTwoStacks
Assembly: LeetCode
File(s): D:\a\LeetCode-CS\LeetCode-CS\source\LeetCode\Algorithms\NaryTreePostorderTraversal\NaryTreePostorderTraversalTwoStacks.cs
Line coverage
100%
Covered lines: 27
Uncovered lines: 0
Coverable lines: 27
Total lines: 65
Line coverage: 100%
Branch coverage
100%
Covered branches: 10
Total branches: 10
Branch coverage: 100%
Method coverage

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Metrics

MethodBranch coverage Crap Score Cyclomatic complexity Line coverage
Postorder(...)100%1010100%

File(s)

D:\a\LeetCode-CS\LeetCode-CS\source\LeetCode\Algorithms\NaryTreePostorderTraversal\NaryTreePostorderTraversalTwoStacks.cs

#LineLine coverage
 1// --------------------------------------------------------------------------------
 2// Copyright (C) 2025 Eugene Eremeev (also known as Yevhenii Yeriemeieiv).
 3// All Rights Reserved.
 4// --------------------------------------------------------------------------------
 5// This software is the confidential and proprietary information of Eugene Eremeev
 6// (also known as Yevhenii Yeriemeieiv) ("Confidential Information"). You shall not
 7// disclose such Confidential Information and shall use it only in accordance with
 8// the terms of the license agreement you entered into with Eugene Eremeev (also
 9// known as Yevhenii Yeriemeieiv).
 10// --------------------------------------------------------------------------------
 11
 12using LeetCode.Core.Models;
 13
 14namespace LeetCode.Algorithms.NaryTreePostorderTraversal;
 15
 16/// <inheritdoc />
 17public class NaryTreePostorderTraversalTwoStacks : INaryTreePostorderTraversal
 18{
 19    /// <summary>
 20    ///     Time complexity - O(n)
 21    ///     Space complexity - O(n)
 22    /// </summary>
 23    /// <param name="root"></param>
 24    /// <returns></returns>
 25    public IList<int> Postorder(Node? root)
 326    {
 327        if (root == null)
 128        {
 129            return new List<int>();
 30        }
 31
 232        var result = new List<int>();
 33
 234        var traverseStack = new Stack<Node>();
 235        var valueStack = new Stack<Node>();
 36
 237        traverseStack.Push(root);
 38
 2239        while (traverseStack.Count > 0)
 2040        {
 2041            var node = traverseStack.Pop();
 42
 2043            valueStack.Push(node);
 44
 2045            if (node.children == null)
 746            {
 747                continue;
 48            }
 49
 7550            foreach (var child in node.children)
 1851            {
 1852                traverseStack.Push(child);
 1853            }
 1354        }
 55
 2256        while (valueStack.Count > 0)
 2057        {
 2058            var node = valueStack.Pop();
 59
 2060            result.Add(node.val);
 2061        }
 62
 263        return result;
 364    }
 65}