數據結構—平衡二叉樹(Java)
博客說明
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說明
平衡二叉樹也叫平衡二叉搜索樹(Self-balancing binary search tree)又被稱為AVL樹, 可以保證查詢效率較高。
具有以下特點:它是一 棵空樹或它的左右兩個子樹的高度差的絕對值不超過1,並且左右兩個子樹都是一棵平衡二叉樹。平衡二叉樹的常用實現方法有紅黑樹、AVL、替罪羊樹、Treap、伸展樹等。
代碼
package cn.guizimo.avl;
public class AVLTree {
public static void main(String[] args) {
int[] arr = { 10, 11, 7, 6, 8, 9 };
AVLTreeDemo avlTree = new AVLTreeDemo();
for(int i=0; i < arr.length; i++) {
avlTree.add(new Node(arr[i]));
}
System.out.println("中序遍歷");
avlTree.infixOrder();
System.out.println("平衡");
System.out.println("樹的高度:" + avlTree.getRoot().height()); //3
System.out.println("左子樹高度:" + avlTree.getRoot().leftHeight()); // 2
System.out.println("右子樹高度" + avlTree.getRoot().rightHeight()); // 2
System.out.println("根節點:" + avlTree.getRoot());//8
}
}
class AVLTreeDemo{
private Node root;
public Node getRoot() {
return root;
}
//查找當前節點
public Node search(int value) {
if (root == null) {
return null;
} else {
return root.search(value);
}
}
//找到最小值
public int delRightTreeMin(Node node) {
Node target = node;
while(target.left != null) {
target = target.left;
}
delNode(target.value);
return target.value;
}
//刪除節點
public void delNode(int value) {
if (root == null) {
return;
} else {
//刪除葉子節點
Node targetNode = search(value);
if (targetNode == null) {
return;
}
if (root.left == null && root.right == null) {
root = null;
return;
}
Node parent = searchParent(value);
if (targetNode.left == null && targetNode.right == null) {
if (parent.left != null && parent.left.value == value) {
parent.left = null;
} else if (parent.right != null && parent.right.value == value) {
parent.right = null;
}
//刪除兩顆子樹的節點
} else if (targetNode.left != null && targetNode.right != null) {
int i = delRightTreeMin(targetNode.right);
targetNode.value = i;
//刪除一顆子樹的節點
} else {
if (targetNode.left != null) {
if (parent != null) {
if (parent.left.value == value) {
parent.left = targetNode.left;
} else {
parent.right = targetNode.right;
}
} else {
root = targetNode.left;
}
} else {
if (parent != null) {
if (parent.left.value == value) {
parent.left = targetNode.right;
} else if (parent.right.value == value) {
parent.right = targetNode.right;
}
} else {
root = targetNode.right;
}
}
}
}
}
//查詢當前節點的父節點
public Node searchParent(int value) {
if (root == null) {
return null;
} else {
return root.searchParent(value);
}
}
//添加節點
public void add(Node node) {
if (root == null) {
root = node;
} else {
root.add(node);
}
}
//中序遍歷
public void infixOrder() {
if (root != null) {
root.infixOrder();
} else {
System.out.println("");
}
}
}
class Node {
int value;
Node left;
Node right;
public Node(int value) {
this.value = value;
}
//左子樹的高度
public int leftHeight() {
if (left == null) {
return 0;
}
return left.height();
}
// 右子樹的高度
public int rightHeight() {
if (right == null) {
return 0;
}
return right.height();
}
// 當前節點的高度
public int height() {
return Math.max(left == null ? 0 : left.height(), right == null ? 0 : right.height()) + 1;
}
@Override
public String toString() {
return "Node{" +
"value=" + value +
'}';
}
//查找節點
public Node search(int value) {
if (value == this.value) {
return this;
} else if (value < this.value) {
if (this.left == null) {
return null;
}
return this.left.search(value);
} else {
if (this.right == null) {
return null;
}
return this.right.search(value);
}
}
//查詢父節點
public Node searchParent(int value) {
if ((this.left != null && this.left.value == value) ||
(this.right != null && this.right.value == value)) {
return this;
} else {
if (value < this.value && this.left != null) {
return this.left.searchParent(value);
} else if (value >= this.value && this.right != null) {
return this.right.searchParent(value);
} else {
return null;
}
}
}
//添加節點
public void add(Node node) {
if (node == null) {
return;
}
if (node.value < this.value) {
if (this.left == null) {
this.left = node;
} else {
this.left.add(node);
}
} else {
if (this.right == null) {
this.right = node;
} else {
this.right.add(node);
}
}
//左旋轉
if(rightHeight() - leftHeight() > 1) {
if(right != null && right.leftHeight() > right.rightHeight()) {
right.rightRotate();
leftRotate();
} else {
leftRotate();
}
return ;
}
//右旋轉
if(leftHeight() - rightHeight() > 1) {
if(left != null && left.rightHeight() > left.leftHeight()) {
left.leftRotate();
rightRotate();
} else {
rightRotate();
}
}
}
//中序遍歷
public void infixOrder() {
if (this.left != null) {
this.left.infixOrder();
}
System.out.println(this);
if (this.right != null) {
this.right.infixOrder();
}
}
//左旋轉
private void leftRotate() {
Node newNode = new Node(value);
newNode.left = left;
newNode.right = right.left;
value = right.value;
right = right.right;
left = newNode;
}
//右旋轉
private void rightRotate() {
Node newNode = new Node(value);
newNode.right = right;
newNode.left = left.right;
value = left.value;
left = left.left;
right = newNode;
}
}
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