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Copy pathright_view_of_binary_Tree.cpp
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86 lines (68 loc) · 1.95 KB
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//iterative approach
void rightView_helper(Node *root,int level,int*maxlevel)
{
if(root == NULL)
return;
if(*maxlevel < level)
{
cout<<root -> data<<" ";
*maxlevel = level;
}
rightView_helper(root->right, level + 1,maxlevel);
rightView_helper(root->left, level + 1, maxlevel);
}
void rightView(Node *root)
{
int max_level = 0;
rightView_helper(root,1,&max_level);
}
//recursive approach
void rightView(struct Node *root);
// 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;
}