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https://github.moeyy.xyz/https://github.com/trekhleb/javascript-algorithms.git
synced 2024-12-26 07:01:18 +08:00
Refactor BST.
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857edbf3a8
commit
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@ -14,41 +14,7 @@ export default class BinarySearchTree {
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}
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remove(value) {
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const nodeToRemove = this.root.find(value);
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if (!nodeToRemove) {
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throw new Error('Item not found in the tree');
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}
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const { parent } = nodeToRemove;
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if (!nodeToRemove.left && !nodeToRemove.right) {
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// Node is a leaf and thus has no children.
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// Just remove the pointer to this node from the parent node.
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parent.removeChild(nodeToRemove);
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} else if (nodeToRemove.left && nodeToRemove.right) {
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// Node has two children.
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// Find the next biggest value (minimum value in the right branch)
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// and replace current value node with that next biggest value.
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const nextBiggerNode = nodeToRemove.right.findMin();
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if (nextBiggerNode !== nodeToRemove.right) {
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this.remove(nextBiggerNode.value);
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nodeToRemove.value = nextBiggerNode.value;
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} else {
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// In case if next right value is the next bigger one and it doesn't have left child
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// then just replace node that is going to be deleted with the right node.
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nodeToRemove.value = nodeToRemove.right.value;
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nodeToRemove.right = nodeToRemove.right.right;
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}
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} else {
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// Node has only one child.
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// Make this child to be a direct child of current node's parent.
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if (nodeToRemove.left) {
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parent.replaceChild(nodeToRemove, nodeToRemove.left);
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} else {
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parent.replaceChild(nodeToRemove, nodeToRemove.right);
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}
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}
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return this.root.remove(value);
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}
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toString() {
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@ -47,6 +47,44 @@ export default class BinarySearchTreeNode extends BinaryTreeNode {
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return !!this.find(value);
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}
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remove(value) {
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const nodeToRemove = this.find(value);
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if (!nodeToRemove) {
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throw new Error('Item not found in the tree');
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}
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const { parent } = nodeToRemove;
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if (!nodeToRemove.left && !nodeToRemove.right) {
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// Node is a leaf and thus has no children.
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// Just remove the pointer to this node from the parent node.
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parent.removeChild(nodeToRemove);
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} else if (nodeToRemove.left && nodeToRemove.right) {
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// Node has two children.
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// Find the next biggest value (minimum value in the right branch)
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// and replace current value node with that next biggest value.
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const nextBiggerNode = nodeToRemove.right.findMin();
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if (nextBiggerNode !== nodeToRemove.right) {
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this.remove(nextBiggerNode.value);
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nodeToRemove.value = nextBiggerNode.value;
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} else {
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// In case if next right value is the next bigger one and it doesn't have left child
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// then just replace node that is going to be deleted with the right node.
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nodeToRemove.value = nodeToRemove.right.value;
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nodeToRemove.right = nodeToRemove.right.right;
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}
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} else {
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// Node has only one child.
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// Make this child to be a direct child of current node's parent.
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if (nodeToRemove.left) {
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parent.replaceChild(nodeToRemove, nodeToRemove.left);
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} else {
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parent.replaceChild(nodeToRemove, nodeToRemove.right);
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}
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}
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}
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findMin() {
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if (!this.left) {
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return this;
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@ -32,7 +32,7 @@ describe('BinarySearchTree', () => {
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expect(bst.contains(40)).toBeFalsy();
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});
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it('should remove leaf nodes', () => {
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it('should remove nodes', () => {
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const bst = new BinarySearchTree();
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bst.insert(10);
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@ -46,68 +46,4 @@ describe('BinarySearchTree', () => {
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bst.remove(20);
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expect(bst.toString()).toBe('10');
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});
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it('should remove nodes with one child', () => {
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const bst = new BinarySearchTree();
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bst.insert(10);
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bst.insert(20);
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bst.insert(5);
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bst.insert(30);
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expect(bst.toString()).toBe('5,10,20,30');
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bst.remove(20);
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expect(bst.toString()).toBe('5,10,30');
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bst.insert(1);
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expect(bst.toString()).toBe('1,5,10,30');
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bst.remove(5);
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expect(bst.toString()).toBe('1,10,30');
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});
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it('should remove nodes with two children', () => {
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const bst = new BinarySearchTree();
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bst.insert(10);
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bst.insert(20);
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bst.insert(5);
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bst.insert(30);
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bst.insert(15);
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bst.insert(25);
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expect(bst.toString()).toBe('5,10,15,20,25,30');
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expect(bst.root.find(20).left.value).toBe(15);
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expect(bst.root.find(20).right.value).toBe(30);
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bst.remove(20);
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expect(bst.toString()).toBe('5,10,15,25,30');
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bst.remove(15);
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expect(bst.toString()).toBe('5,10,25,30');
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bst.remove(10);
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expect(bst.toString()).toBe('5,25,30');
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expect(bst.root.value).toBe(25);
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bst.remove(25);
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expect(bst.toString()).toBe('5,30');
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bst.remove(5);
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expect(bst.toString()).toBe('30');
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});
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it('should throw error when trying to remove not existing node', () => {
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const bst = new BinarySearchTree();
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bst.insert(10);
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bst.insert(20);
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function removeNotExistingElementFromTree() {
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bst.remove(30);
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}
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expect(removeNotExistingElementFromTree).toThrow();
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});
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});
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@ -92,4 +92,83 @@ describe('BinarySearchTreeNode', () => {
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expect(node.find(5)).not.toBeNull();
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expect(node.find(5).value).toBe(5);
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});
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it('should remove leaf nodes', () => {
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const bstRootNode = new BinarySearchTreeNode();
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bstRootNode.insert(10);
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bstRootNode.insert(20);
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bstRootNode.insert(5);
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expect(bstRootNode.toString()).toBe('5,10,20');
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bstRootNode.remove(5);
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expect(bstRootNode.toString()).toBe('10,20');
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bstRootNode.remove(20);
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expect(bstRootNode.toString()).toBe('10');
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});
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it('should remove nodes with one child', () => {
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const bstRootNode = new BinarySearchTreeNode();
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bstRootNode.insert(10);
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bstRootNode.insert(20);
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bstRootNode.insert(5);
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bstRootNode.insert(30);
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expect(bstRootNode.toString()).toBe('5,10,20,30');
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bstRootNode.remove(20);
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expect(bstRootNode.toString()).toBe('5,10,30');
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bstRootNode.insert(1);
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expect(bstRootNode.toString()).toBe('1,5,10,30');
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bstRootNode.remove(5);
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expect(bstRootNode.toString()).toBe('1,10,30');
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});
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it('should remove nodes with two children', () => {
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const bstRootNode = new BinarySearchTreeNode();
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bstRootNode.insert(10);
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bstRootNode.insert(20);
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bstRootNode.insert(5);
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bstRootNode.insert(30);
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bstRootNode.insert(15);
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bstRootNode.insert(25);
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expect(bstRootNode.toString()).toBe('5,10,15,20,25,30');
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expect(bstRootNode.find(20).left.value).toBe(15);
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expect(bstRootNode.find(20).right.value).toBe(30);
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bstRootNode.remove(20);
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expect(bstRootNode.toString()).toBe('5,10,15,25,30');
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bstRootNode.remove(15);
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expect(bstRootNode.toString()).toBe('5,10,25,30');
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bstRootNode.remove(10);
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expect(bstRootNode.toString()).toBe('5,25,30');
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expect(bstRootNode.value).toBe(25);
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bstRootNode.remove(25);
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expect(bstRootNode.toString()).toBe('5,30');
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bstRootNode.remove(5);
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expect(bstRootNode.toString()).toBe('30');
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});
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it('should throw error when trying to remove not existing node', () => {
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const bstRootNode = new BinarySearchTreeNode();
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bstRootNode.insert(10);
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bstRootNode.insert(20);
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function removeNotExistingElementFromTree() {
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bstRootNode.remove(30);
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}
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expect(removeNotExistingElementFromTree).toThrow();
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});
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});
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