线程间通信
一、线程通信方式-共享变量
package com.louis.线程;
import java.util.ArrayList;
import java.util.List;
public class ListAdd1 {
private volatile static List list = new ArrayList();
public void add(){
list.add("bjsxt");
}
public int size(){
return list.size();
}
public static void main(String[] args) {
final ListAdd1 list1 = new ListAdd1();
Thread t1 = new Thread(new Runnable() {
@Override
public void run() {
try {
for(int i = 0; i <10; i++){
list1.add();
System.out.println("当前线程:" + Thread.currentThread().getName() + "添加了一个元素..");
Thread.sleep(500);
}
} catch (InterruptedException e) {
e.printStackTrace();
}
}
}, "t1");
Thread t2 = new Thread(new Runnable() {
@Override
public void run() {
while(true){
if(list1.size() == 5){
System.out.println("当前线程收到通知:" + Thread.currentThread().getName() + " list size = 5 线程停止..");
throw new RuntimeException();
}
}
}
}, "t2");
t1.start();
t2.start();
}
}
第二个线程一直在循环
线程通信方式-wait/notify
wait()释放锁,notify不释放锁
package com.louis.线程;
import java.util.ArrayList;
import java.util.List;
import java.util.Queue;
import java.util.concurrent.CountDownLatch;
import java.util.concurrent.LinkedBlockingDeque;
import java.util.concurrent.LinkedBlockingQueue;
/**
* wait notfiy 方法,wait释放锁,notfiy不释放锁
* @author alienware
*
*/
public class ListAdd2 {
private volatile static List list = new ArrayList();
public void add(){
list.add("bjsxt");
}
public int size(){
return list.size();
}
public static void main(String[] args) {
final ListAdd2 list2 = new ListAdd2();
// 1 实例化出来一个 lock
// 当使用wait 和 notify 的时候 , 一定要配合着synchronized关键字去使用
final Object lock = new Object();
// final CountDownLatch countDownLatch = new CountDownLatch(1);
Thread t1 = new Thread(new Runnable() {
@Override
public void run() {
try {
synchronized (lock) {
for(int i = 0; i <10; i++){
list2.add();
System.out.println("当前线程:" + Thread.currentThread().getName() + "添加了一个元素..");
Thread.sleep(500);
if(list2.size() == 5){
System.out.println("已经发出通知..");
// countDownLatch.countDown();
lock.notify();
}
}
}
} catch (InterruptedException e) {
e.printStackTrace();
}
}
}, "t1");
Thread t2 = new Thread(new Runnable() {
@Override
public void run() {
synchronized (lock) {
if(list2.size() != 5){
try {
//System.out.println("t2进入...");
lock.wait();
// countDownLatch.await();
} catch (InterruptedException e) {
e.printStackTrace();
}
}
System.out.println("当前线程:" + Thread.currentThread().getName() + "收到通知线程停止..");
throw new RuntimeException();
}
}
}, "t2");
t2.start();
t1.start();
}
}
缺点:notify不会释放锁,在notify后到wait执行完这段时间是一直占有锁的。
改进:countDownLatch
线程间通信-countDownLatch
public class ListAdd2 {
private volatile static List list = new ArrayList();
public void add(){
list.add("bjsxt");
}
public int size(){
return list.size();
}
public static void main(String[] args) {
final ListAdd2 list2 = new ListAdd2();
// 1 实例化出来一个 lock
// 当使用wait 和 notify 的时候 , 一定要配合着synchronized关键字去使用
//final Object lock = new Object();
final CountDownLatch countDownLatch = new CountDownLatch(1);
Thread t1 = new Thread(new Runnable() {
@Override
public void run() {
try {
//synchronized (lock) {
for(int i = 0; i <10; i++){
list2.add();
System.out.println("当前线程:" + Thread.currentThread().getName() + "添加了一个元素..");
Thread.sleep(500);
if(list2.size() == 5){
System.out.println("已经发出通知..");
countDownLatch.countDown();
//lock.notify();
}
}
//}
} catch (InterruptedException e) {
e.printStackTrace();
}
}
}, "t1");
Thread t2 = new Thread(new Runnable() {
@Override
public void run() {
//synchronized (lock) {
if(list2.size() != 5){
try {
//System.out.println("t2进入...");
//lock.wait();
countDownLatch.await();
} catch (InterruptedException e) {
e.printStackTrace();
}
}
System.out.println("当前线程:" + Thread.currentThread().getName() + "收到通知线程停止..");
throw new RuntimeException();
//}
}
}, "t2");
t2.start();
t1.start();
}
}
可以立即受到通知。