diff --git a/src/Traversal.java b/src/Traversal.java index 8da0f79..1ba6617 100644 --- a/src/Traversal.java +++ b/src/Traversal.java @@ -1,5 +1,174 @@ +import java.util.HashMap; +import java.util.LinkedHashSet; +import java.util.Map; +import java.util.Stack; +import java.util.Queue; +import java.util.LinkedList; + + + public class Traversal { public static void main(String[] args) { + TreeNode root = new TreeNode(10, null, null); + // TreeNode root = new TreeNode(10, null, null); + root.left = new TreeNode(9, null, null); + root.left.left = new TreeNode(5, null, null); + root.left.right = new TreeNode(2, null, null); + + root.right = new TreeNode(15, null, null); + root.right.left = new TreeNode(-3, null, null); + root.right.right = new TreeNode(5, null, null); + root.right.right.right = new TreeNode(22, null, null); + + TreeNode stringRoot = new TreeNode("hello", null, null); + stringRoot.left = new TreeNode("how", null, null); + stringRoot.left.left = new TreeNode("are", null, null); + stringRoot.left.right = new TreeNode("hello", null, null); + + stringRoot.right = new TreeNode("you", null, null); + stringRoot.right.left = new TreeNode("i", null, null); + stringRoot.right.right = new TreeNode("miss", null, null); + stringRoot.right.right.right = new TreeNode("you", null, null); + + TreeNode megaRoot = new TreeNode(1, null, null); + + TreeNode current = megaRoot; + + for (int i = 2; i <= 50000; i++) { + current.right = new TreeNode(i, null, null); + current = current.right; + } + + levelOrder(root); + // preOrderIter(megaRoot); + // System.out.println("Preorder recursive"); + // preorder(root); + // System.out.println("preorder iterative"); + // preOrderIter(root); + // // preOrder(root); // root in the beginning + // postOrder(root); // root in the end + // inOrder(root); // root in the middle + // printGreater(root, 100); + // System.out.println(countNodes(root)); + // Map counts = new HashMap<>(); + // System.out.println(toMap(stringRoot)); + + } + // print a tree routed at the given node in pre order + public static void preOrder(TreeNode node) { + if(node == null) {// if full return + return; + } + System.out.println(node.value); // print value + preOrder(node.left); // traverse left + preOrder(node.right); // traverse right + + } + + public static void preOrderIter(TreeNode node) { + Stack> stack = new Stack<>(); + stack.push(node); + + while(!stack.empty()) { + TreeNode current = stack.pop(); + + if (current ==null ) { + continue; + } + + // if (current != null) { + System.out.println(current.value); + stack.push(current.right); + stack.push(current.left); + + } } -} + public static void levelOrder(TreeNode node) { + Queue> queue = new LinkedList<>(); + queue.add(node); + + while(!queue.isEmpty()) { + TreeNode current = queue.poll(); + + if (current ==null ) { + continue; + } + + // if (current != null) { + System.out.println(current.value); + queue.add(current.left); + queue.add(current.right); + + } + + } + public static Map toMap(TreeNode node) { + Map counts = new HashMap<>(); + toMap(node, counts); + return counts; + } + + private static void toMap(TreeNode node, Map counts) { + if (node == null) { + return; + } + // fill up the counts + counts.put(node.value, counts.getOrDefault(node.value, 0) + 1); + toMap(node.left, counts); + toMap(node.right, counts); + + + } + + + public static int countNodes(TreeNode node) { + // if node is null : return 0; + if (node == null) return 0; + return 1 + countNodes(node.left) + countNodes(node.right); + + // or + // return node == null? 0 : 1 + countNodes(node.left) + countNodes(node.right); + + + // // leftCount = count nodes in left subtree + // int leftCount = countNodes(node.left); + // // rightCount = count nodes in right subtree + // int rightCount = countNodes(node.right); + // // overallCount = leftcount + rightcount + 1 --> 1 is th eparent + // int overallCount = leftCount + rightCount + 1; + // // return overallCount + // return overallCount; + + } + public static void printGreater(TreeNode node, int threshold) { + if (node == null) return; + if (node.value > threshold) { + System.out.println(node.value); + } + printGreater(node.left, threshold); + printGreater(node.right, threshold); + + + } + + + // print after recursion + public static void postOrder(TreeNode node) { + if (node == null) return; + postOrder(node.left); + postOrder(node.right); + System.out.println(node.value); + } + + public static void inOrder(TreeNode node) { + if (node == null) return; + inOrder(node.left); + System.out.println(node.value); + inOrder(node.right); + + + } + } + + diff --git a/src/TreeNode.java b/src/TreeNode.java index acd9639..dae07f1 100644 --- a/src/TreeNode.java +++ b/src/TreeNode.java @@ -1,4 +1,14 @@ -public class TreeNode { +public class TreeNode { + public T value; + public TreeNode left; + public TreeNode right; + + public TreeNode( T value, TreeNode left, TreeNode right) { + this.value = value; + this.left = left; + this.right = right; + + } } \ No newline at end of file