导入jar包
<dependency>
<groupId>org.apache.zookeeper</groupId>
<artifactId>zookeeper</artifactId>
<version>3.6.0</version>
</dependency>
普通方式连接:
package com.example.demo01.service;
import org.apache.zookeeper.WatchedEvent;
import org.apache.zookeeper.Watcher;
import org.apache.zookeeper.ZooKeeper;
import java.util.concurrent.CountDownLatch;
public class test1 {
public static void main(String[] args) throws Exception {
//计数器对象(初始值为1)
CountDownLatch countDownLatch = new CountDownLatch(1);
//创建zookeeper连接对象(地址:端口,超时自动关闭时间,重写监视器接口)
ZooKeeper zookeeper = new ZooKeeper("192.168.17.119:2181", 3000, new Watcher() {
@Override
public void process(WatchedEvent event) {
//判断event.getState()连接的状态是否为3
//Event.KeeperState.SyncConnected的值为3
if (event.getState() == Event.KeeperState.SyncConnected) {
System.out.println("连接成功");
//计数器对象加1
countDownLatch.countDown();
}
}
});
// 等待zookeeper对象创建完成后执行
countDownLatch.await();
//获取zookeeper会话id
System.out.println(zookeeper.getSessionId());
//关闭zookeeper连接
zookeeper.close();
}
}
运行结果如下:
连接成功
72057788494839812
利用Watcher接口的实现类连接:
package com.example.demo01.service;
import org.apache.zookeeper.*;
import org.apache.zookeeper.data.Stat;
import org.springframework.stereotype.Service;
import java.util.List;
import java.util.concurrent.CountDownLatch;
@Service
public class ZookeeperService implements Watcher{
//zookeeper对象
private ZooKeeper zookeeper;
//超时时间
private static final int SESSION_TIME_OUT = 5000;
//计数器对象(初始值为1)
private CountDownLatch countDownLatch = new CountDownLatch(1);
@Override
public void process(WatchedEvent event) {
if (event.getState() == Event.KeeperState.SyncConnected) {
System.out.println("连接成功!!!");
// 计时器对象+1
countDownLatch.countDown();
}
}
//连接zookeeper(地址)
public void connectZookeeper(String host) throws Exception{
/*
* host = 地址
* SESSION_TIME_OUT = 超时关闭时间
* this = 当前实现的Watcher监听端口
* */
zookeeper = new ZooKeeper(host, SESSION_TIME_OUT, this);
// 主线程阻塞,等待连接对象创建成功
countDownLatch.await();
}
/**
* 创建节点
* path = /node节点
* data = data数据
*/
public String createNode(String path,String data) throws Exception{
/*
* path = 地址
* data.getBytes() = 将数据转换为字节数组格式
* ZooDefs.Ids.OPEN_ACL_UNSAFE = 设置权限默认anyone
* CreateMode.PERSISTENT = 创建新式
* PERSISTENT = 永久节点
* EPHEMERAL = 临时节点
* PERSISTENT_SEQUENTIAL = 临时无序列节点
* EPHEMERAL_SEQUENTIAL = 临时有序节点
* */
//返回创建的节点名称
return this.zookeeper.create(path,data.getBytes(), ZooDefs.Ids.OPEN_ACL_UNSAFE,CreateMode.PERSISTENT);
}
/**
* 获取路径下所有子节点
* path = /node节点
*/
public List<String> getChildren(String path) throws KeeperException, InterruptedException{
/*
* path = /node节点
* false = 不启用监视
* true = 启用监视
* */
List<String> children = zookeeper.getChildren(path, false);
//返回该节点下的所有子节点,返回值类型为list
return children;
}
/**
* 获取节点的数据
* path = /node节点
*/
public String getData(String path) throws KeeperException, InterruptedException{
/*
* path = /node节点
* false = 不启用监视
* true = 启用监视
* new Stat() = 括号里面设置参数就获取对应的节点信息
* */
byte[] data = zookeeper.getData(path, false, new Stat());
//判断返回的”[B@2af46afd“是否为空
if (data == null) {
//为空就renturn
return "";
}
//返回经过string处理的值[B@2af46afd,结果为节点的参数(llh)
return new String(data);
}
/**
* 设置节点信息
* path = 路径
* data = 数据
*/
public Stat setData(String path,String data) throws KeeperException, InterruptedException{
/*
* path = /node节点
* data.getBytes() = 将数据转换为字节数组格式
* -1 = 代表修改的版本号
* */
Stat stat = zookeeper.setData(path, data.getBytes(), -1);
// 返回获取该节点的值
return stat;
}
/**
* 删除节点
* path = /node节点
*/
public void deleteNode(String path) throws InterruptedException, KeeperException{
/*
* path = /node节点
* -1 = 代表修改的版本号
* */
zookeeper.delete(path, -1);
}
/**
* 获取创建时间
* path = /node节点
*/
public String getCTime(String path) throws KeeperException, InterruptedException{
/*
* path = /node节点
* false = 不启用监视
* true = 启用监视
* */
//返回的是一个stat对象,stat对象包含的-s的信息
Stat stat = zookeeper.exists(path, false);
//返回根据stat信息对象获取创建时间
return String.valueOf(stat.getCtime());
}
/**
* 获取某个路径下孩子的数量
* path = /node节点
*/
public Integer getChildrenNum(String path) throws KeeperException, InterruptedException{
/*
* path = /node节点
* false = 不启用监视
* true = 启用监视
* */
// 返回,一个获取该节点的,所有子字节的,一个list集合,然后点size()方法就可以获取到list长度信息
return zookeeper.getChildren(path, false).size();
}
/**
* 关闭连接
* @throws InterruptedException
*/
public void closeConnection() throws InterruptedException{
// 判断zookeeper连接对象是否为空,为空就关闭
if (zookeeper != null) {
zookeeper.close();
}
}
}
注:
new Stat()对象包含参数入下:
private long czxid;
private long mzxid;
private long ctime;
private long mtime;
private int version;
private int cversion;
private int aversion;
private long ephemeralOwner;
private int dataLength;
private int numChildren;
private long pzxid;
测试实现类的方法:
package com.example.demo01;
import com.example.demo01.service.ZookeeperService;
import org.junit.jupiter.api.Test;
import org.springframework.beans.factory.annotation.Autowired;
import org.springframework.boot.test.context.SpringBootTest;
@SpringBootTest
class Demo01ApplicationTests {
@Autowired
ZookeeperService zookeeperService;
@Test
void t1() throws Exception {
//先连接
zookeeperService.connectZookeeper("192.168.17.119:2181");
//创建
System.out.println(zookeeperService.createNode("/name", "llh"));
//获取
System.out.println(zookeeperService.getData("/name"));
//修改
System.out.println(zookeeperService.setData("/name", "liaolihui"));
//删除
zookeeperService.deleteNode("/name");
}
}
zookeeper配置集群:
第一步 解压3个zookeeper.tar的文件,分别取为(zk1,zk2,zk2) 第二步 分别进入(zk1,zk2,zk2) 给他们创建一个data文件夹 第三步 分别进入(zk1,zk2,zk2)的data文件夹里面创建myid文件,依次写入[1,2,3] 第四步 分别进入(zk1,zk2,zk2)的conf文件夹,分别复制zoo_sample.cfg一份,取名为zoo.cfg 第五步 分别进入(zk1,zk2,zk2)的zoo.cfg文件,修改"端口",和添加, "server.myid的参数=zk服务器的ip:服务器之间通信端口:服务器之间投票选举主机端口" 第六步 分别启动各个服务器
注:
运行./zkServer.sh status
Leader(主节点、领导)
Follower(从节点、跟随者、下属)
Observer(从节点、观察者、下属)
遇到的问题总结:
报错?
-
解决1:检查各服务器的data文件是否一致
-
解决2:尽量同时启动,因为会检索各服务器
如果主机挂了?
-
首先重新选举leader,再正常对外服务
-
大概原理:会比较zxid事务id,谁最大有几率成为主机,如果zxid相同时,则比较他们的myid的值