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Copy pathcheck_Given_Tree_Is_A_CompleteBinary_Tree_Or_Not.cpp
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130 lines (109 loc) · 2.91 KB
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#include <stdio.h>
#include <malloc.h>
/* nodes tree node*/
struct node {
int key;
struct node * left;
struct node * right;
};
/* function for creating new node of tree*/
struct node *newNode(int data)
{
struct node *node = (struct node *)malloc(sizeof(struct node));
node->key = data;
node->left = NULL;
node->right = NULL;
return (node);
}
/*queue*/
struct qnode {
struct node * point ;
struct qnode * next ;
};
struct qnode * start = NULL;
void enQueue(struct qnode ** start,struct node ** treenode){
struct qnode * temp = *start;
struct qnode *qnodetemp = (struct qnode *)malloc(sizeof(struct qnode));
qnodetemp->point = *treenode;
qnodetemp->next = NULL;
if (*start == NULL){
*start = qnodetemp;
} else{
while(temp->next != NULL){
temp = temp->next;
}
temp->next = qnodetemp;
}
}
void deQueue(struct qnode ** start){
struct qnode * temp = *start;
*start = temp->next;
free(temp);
}
struct node * peekqueue(struct qnode ** start){
return (*start)->point;
}
int emptyqueue(){
if (start == NULL){
return 1;
}
else{
return 0;
}
}
int lengthQueue(){
if(start == NULL){
return 0;
}
int height = 0;
struct qnode* tempiter = start;
while(tempiter != NULL){
tempiter = tempiter->next;
height++;
}
return height;
}
/*function for level order traversal iteratively*/
void checkGivenTreeIsACompleteBinaryTreeOrNot(struct node * root){
int condition = 1;
struct node * temp = NULL;
if(root == NULL){
} else{
enQueue(&start,&root);
while(!emptyqueue()){
int size = lengthQueue();
while(size--){
temp = peekqueue(&start);
if(temp->left == NULL && temp->right != NULL || temp->right == NULL && temp->left != NULL){condition = 0;}
deQueue(&start);
if(temp->left) {enQueue(&start,&temp->left);}
if(temp->right) {enQueue(&start,&temp->right);}
}
}
}
if(condition){
printf("%s\n","Given Binary Tree Is Complete Binary Tree");
} else{
printf("%s\n","Given Binary Tree Is Not A Complete Binary Tree");
}
}
int main(){
struct node *root = newNode(1);
root->left = newNode(2);
root->right = newNode(3);
root->left->right = newNode(4);
root->right->left = newNode(5);
root->right->right = newNode(6);
root->right->left->left = newNode(7);
root->right->left->right = newNode(8);
checkGivenTreeIsACompleteBinaryTreeOrNot(root);
struct node *root1 = newNode(1);
root->left = newNode(2);
root->right = newNode(3);
root->left->left = newNode(4);
root->left->right = newNode(5);
root->right->left = newNode(6);
root->right->right = newNode(7);
checkGivenTreeIsACompleteBinaryTreeOrNot(root1);
return 0;
}