思路

  完全二叉树和非完全二叉树的最大的区别就是完全二叉树的叶子节点只能在最后一层后者倒数第二层,其他层其实是一个满二叉树,而且最后一层的叶子节点都要靠近最左边。

如图:

  判断一颗二叉树是不是完全二叉树【Java】

二叉树的构成代码和节点代码

二叉树:

package com.example.demo.tree;

import com.sun.scenario.effect.impl.sw.sse.SSEBlend_SRC_OUTPeer;
import org.omg.PortableInterceptor.INACTIVE;

import java.util.Comparator;

/**
 * @author steve
 * @date 2020/4/16 10:03 上午
 */
public class BinaryTree<E> {

    private int size;
    public Node<E> root;
    private Comparator<E> comparator;

    public BinaryTree(Comparator<E> comparator){
        this.comparator = comparator;
    }

    public BinaryTree(){
        this(null);
    }

    public void add(E element){
        if (root == null){
            Node node = new Node(element);
            root = node;
        }else {
            Node<E> parent = root;
            Node<E> node = root;
            int com = 0;
            while (node != null){
                parent = node;
                if (comparator == null){
                    com = ((Comparable)node.element).compareTo(element);
                }else {
                    System.out.println("-------------");
                    com = comparator.compare(node.element,element);
                }
                if (com > 0){
                    node = node.left;
                }else if (com < 0){
                    node = node.right;
                }else {
                    node.element = element;
                    return;
                }
            }
            Node<E> newNode = new Node(element);
            if (com > 0){
                parent.left = newNode;
                newNode.parent = parent.left;
            }else{
                parent.right = newNode;
                newNode.parent = parent.right;
            }
        }
        size ++;
    }
    public boolean isEmpty(){
        return size == 0;
    }
    public int size(){
        return size;
    }

    public String toString() {
        String d = root == null ? null : root.element + "";
        if (root == null){
            return "root:"+d;
        }else {
            String b = root.left == null ? null : root.left.element + "";
            String c = root.right == null ? null : root.right.element + "";
            return "root:"+d + ", left:" + b + ", right:"+ c;
        }

    }


    public static void main(String[] args) {
        //这种方式就是匿名内部类,通过给一个类传一个接口作为参数,然后这个通过一个匿名内部类是实现这个接口来传入实现。
        BinaryTree<Integer> binaryTree = new BinaryTree<>(new Comparator<Integer>() {
            @Override
            public int compare(Integer o1, Integer o2) {
                return o1 - o2;
            }
        });

        BinaryTree<Integer> binaryTree1 = new BinaryTree<>();
        binaryTree1.add(1);
        binaryTree1.add(2);
        binaryTree1.add(0);
        System.out.println(binaryTree1.size());
        System.out.println(binaryTree.toString());
    }
}
View Code

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