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41c45e09fb
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145
05-trees/BinaryTree.cpp
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145
05-trees/BinaryTree.cpp
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// Implementation file for the BinaryTree class
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#include <iostream> // For cout and NULL
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#include "BinaryTree.h"
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#include <cstdlib> // For rand()
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#include <ctime> // For time()
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using namespace std;
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/**~*~*
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Constructor
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*~**/
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BinaryTree::BinaryTree() {
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root = NULL;
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count = 0;
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}
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/**~*~*
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This function calls a recursive function to traverse the
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tree in postorder
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*~**/
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void BinaryTree::postOrder(void visit(const Data &)) const {
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_postOrder(root, visit);
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}
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/**~*~*
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Postorder Traversal of the Binary Tree:
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Left-Right-Root
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*~**/
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void BinaryTree::_postOrder(BinaryTree::Node *root, void visit(const Data &)) const {
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if (root == nullptr) return;
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_postOrder(root->left, visit);
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_postOrder(root->right, visit);
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visit(root->data);
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}
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/**~*~*
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This function calls a recursive function to traverse the
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tree in preorder
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*~**/
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void BinaryTree::preOrder(void visit(const Data &)) const {
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_preOrder(root, visit);
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}
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/**~*~*
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Postorder Traversal of the Binary Tree:
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Left-Right-Root
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*~**/
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void BinaryTree::_preOrder(BinaryTree::Node *root, void visit(const Data &)) const {
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if (root == nullptr) return;
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visit(root->data);
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_preOrder(root->left, visit);
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_preOrder(root->right, visit);
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}
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/**~*~*
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This function calls a recursive function to traverse the
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tree in inorder
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*~**/
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void BinaryTree::inOrder(void visit(const Data &)) const {
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_inOrder(root, visit);
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}
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/**~*~*
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Inorder Traversal of the Binary Tree:
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Left-Root-Right
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*~**/
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void BinaryTree::_inOrder(Node *root, void visit(const Data &)) const {
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if (root) {
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_inOrder(root->left, visit);
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//cout << root->data.num << " ";
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visit(root->data);
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// cout has been replaced with a call for visit
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// What is visit?
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// visit is a generic name for a display function
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// in main(), when inOrder is called, it is decided what function address to assign to visit
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// here, you just use visit the way you would use/call a function
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_inOrder(root->right, visit);
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// ------------------^^^^^^ visit as an argument
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}
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}
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/**~*~*
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Insert data into a random Binary Tree
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*~**/
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void BinaryTree::insert(Data dataIn) {
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Node *newNode;
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Node *pWalk;
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Node *parent;
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int rand_num;
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// allocate the new node
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newNode = new Node;
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newNode->data = dataIn;
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newNode->left = NULL;
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newNode->right = NULL;
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// find a "random" parent
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if (!root) // tree is empty
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root = newNode;
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else {
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parent = NULL; // root does not have a parent
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pWalk = root;
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while (pWalk) {
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parent = pWalk;
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rand_num = rand() % 100;
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if (rand_num % 2) // if odd - take left
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pWalk = pWalk->left;
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else
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pWalk = pWalk->right;
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}
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// insert the new node
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if (!parent->left) // no left child
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parent->left = newNode;
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else
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parent->right = newNode;
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}
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count++;
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}
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/**~*~*
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Destructor
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This function calls a recursive function to delete all nodes in the binary tree
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*~**/
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BinaryTree::~BinaryTree() {
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if (root)
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_destroy(root);
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}
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/**~*~*
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This function traverses the binary tree in postorder and deletes every node
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*~**/
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void BinaryTree::_destroy(Node *root) {
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if (root) {
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_destroy(root->left);
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_destroy(root->right);
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delete root;
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}
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}
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47
05-trees/BinaryTree.h
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47
05-trees/BinaryTree.h
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// Specification file for the BinaryTree class
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#ifndef BINARY_TREE_H
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#define BINARY_TREE_H
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struct Data {
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int num;
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// more fields could be added if needed
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};
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class BinaryTree {
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private:
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struct Node {
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Data data; // The value in this node
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Node *left; // To point to the left node
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Node *right; // To point to the right node
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};
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Node *root; // root of the tree
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int count; // number of nodes in the tree
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public:
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// Constructor
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BinaryTree();
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// Destructor
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~BinaryTree();
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// Binary Tree operations
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void insert(Data dataIn);
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void inOrder(void visit(const Data &)) const;
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void preOrder(void visit(const Data &)) const;
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void postOrder(void visit(const Data &)) const;
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private:
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void _inOrder(Node *root, void visit(const Data &)) const;
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void _preOrder(Node *root, void visit(const Data &)) const;
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void _postOrder(Node *root, void visit(const Data &)) const;
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void _destroy(Node *root);
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};
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#endif
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90
05-trees/BinaryTree_Demo.cpp
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90
05-trees/BinaryTree_Demo.cpp
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/**
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Test Driver for Binary Tree functions
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This program builds a BT of random integers
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Note: The BT_insert() function is specific to this exercise
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The main goal of this example is build a binary tree that could be used to
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test the traversal and other binary tree functions
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*/
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#include <iostream>
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#include <fstream>
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#include <cstdlib>
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#include <cstdlib>
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#include <ctime>
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#include "BinaryTree.h"
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using namespace std;
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void build_BT(BinaryTree &tree, int n);
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void hDisplay(const Data &item); // horizontal display: all items on one line
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void vDisplay(const Data &item); // vertical display: one item per line
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int main(void) {
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BinaryTree tree;
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int n; // number of nodes
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char option;
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cout << "What is the number of nodes in the BT? " << endl;
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cin >> n;
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cout << "What traversal[prE/posT]? " << endl;
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cin >> option;
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build_BT(tree, n);
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cout << " Inorder: ";
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tree.inOrder(hDisplay); // hDisplay is the inOrder's argument
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cout << endl;
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if (option == 'T' || option == 't') {
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cout << "Postorder: ";
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tree.postOrder(hDisplay); // passing hDisplay to postOrder
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cout << endl;
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tree.postOrder(vDisplay); // passing vDisplay to postOrder
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cout << endl;
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}
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if (option == 'E' || option == 'e') {
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cout << " Preorder: ";
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tree.preOrder(hDisplay); // passing hDisplay to preOrder
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cout << endl;
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tree.preOrder(vDisplay); // passing vDisplay to preOrder
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cout << endl;
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}
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return 0;
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}
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/**~*~*
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Builds a random Binary Tree of integer numbers within the range
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[10, 99]; root is always 50
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*/
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void build_BT(BinaryTree &tree, int n) {
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Data data = {50};
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// allocate and initialize the root
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tree.insert(data);
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//srand((unsigned int)time(0));
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while (--n) {
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data.num = rand() % 90 + 10;
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tree.insert(data);
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}
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}
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// The following two functions are used as arguments to other functions
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/**~*~*
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horizontal display: all items on one line
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*/
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void hDisplay(const Data &item) {
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cout << item.num << " ";
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}
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/**~*~*
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// vertical display: one item per line
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*/
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void vDisplay(const Data &item) {
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cout << item.num << endl;
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}
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8
05-trees/CMakeLists.txt
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8
05-trees/CMakeLists.txt
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cmake_minimum_required(VERSION 3.28)
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project(05_trees)
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set(CMAKE_CXX_STANDARD 20)
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add_executable(05_trees BinaryTree_Demo.cpp
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BinaryTree.cpp
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BinaryTree.h)
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