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Check for Children Sum Property in a Binary Tree.cpp
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Check for Children Sum Property in a Binary Tree.cpp
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//{ Driver Code Starts
//Initial Template for C++
#include <bits/stdc++.h>
using namespace std;
// Tree Node
struct Node {
int data;
Node* left;
Node* right;
};
// Utility function to create a new Tree Node
Node* newNode(int val) {
Node* temp = new Node;
temp->data = val;
temp->left = NULL;
temp->right = NULL;
return temp;
}
// Function to Build Tree
Node* buildTree(string str) {
// Corner Case
if (str.length() == 0 || str[0] == 'N') return NULL;
// Creating vector of strings from input
// string after spliting by space
vector<string> ip;
istringstream iss(str);
for (string str; iss >> str;) ip.push_back(str);
// Create the root of the tree
Node* root = newNode(stoi(ip[0]));
// Push the root to the queue
queue<Node*> queue;
queue.push(root);
// Starting from the second element
int i = 1;
while (!queue.empty() && i < ip.size()) {
// Get and remove the front of the queue
Node* currNode = queue.front();
queue.pop();
// Get the current node's value from the string
string currVal = ip[i];
// If the left child is not null
if (currVal != "N") {
// Create the left child for the current node
currNode->left = newNode(stoi(currVal));
// Push it to the queue
queue.push(currNode->left);
}
// For the right child
i++;
if (i >= ip.size()) break;
currVal = ip[i];
// If the right child is not null
if (currVal != "N") {
// Create the right child for the current node
currNode->right = newNode(stoi(currVal));
// Push it to the queue
queue.push(currNode->right);
}
i++;
}
return root;
}
// } Driver Code Ends
/*Complete the function below
struct Node
{
int data;
struct Node* left;
struct Node* right;
Node(int x){
data = x;
left = right = NULL;
}
};
*/
class Solution{
public:
//Function to check whether all nodes of a tree have the value
//equal to the sum of their child nodes.
int solve(Node* root, bool &flag){
if(root==NULL ) return 0;
if(root->left==NULL && root->right==NULL ) return root->data;
int left=solve(root->left,flag);
int right=solve(root->right,flag);
if(left+right!=root->data){
flag=false;
}
return root->data;
}
int isSumProperty(Node *root)
{
// Add your code here
bool flag=true;
solve(root,flag);
return flag==0 ? 0 : 1;
}
};
//{ Driver Code Starts.
/* Driver program to test size function*/
int main() {
int t;
scanf("%d ", &t);
while (t--) {
string s, ch;
getline(cin, s);
Node* root = buildTree(s);
Solution ob;
cout << ob.isSumProperty(root) << endl;
}
return 0;
}
// } Driver Code Ends