package com.test;
import java.util.Calendar;
import java.util.Timer;
import java.util.TimerTask;
import java.util.concurrent.Executors;
import java.util.concurrent.ScheduledExecutorService;
import java.util.concurrent.TimeUnit;
public class ThreadTest5
{
/**
* @param args
*/
public static void main(String[] args)
{
timerMethod4();
}
private static void timerMethod1()
{
Timer timer = new Timer();
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
timer.schedule(new TimerTask(){
@Override
public void run()
{
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
System.out.println("running");
}
}, 5000, 2000);
}
private static void timerMethod2()
{
final Timer timer = new Timer();
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
class MyTimerTask extends TimerTask{
@Override
public void run()
{
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
System.out.println("running");
timer.schedule(new MyTimerTask(), 3000);
}
};
timer.schedule(new MyTimerTask(), 2000);
}
private static int i = 0;
private static void timerMethod3()
{
final Timer timer = new Timer();
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
class MyTimerTask extends TimerTask{
@Override
public void run()
{
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
System.out.println("running");
if(i++ % 2 == 0){
timer.schedule(new MyTimerTask(), 3000);
}else{
timer.schedule(new MyTimerTask(), 2000);
}
}
};
timer.schedule(new MyTimerTask(), 2000);
}
private static void timerMethod4()
{
final ScheduledExecutorService pool = Executors.newScheduledThreadPool(1);
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
class MyTask implements Runnable{
public void run()
{
System.out.println(Calendar.getInstance().get(Calendar.SECOND));
System.out.println("running");
if(i++ % 2 == 0){
pool.schedule(new MyTask(), 3, TimeUnit.SECONDS);
}else{
pool.schedule(new MyTask(), 2, TimeUnit.SECONDS);
}
}
}
pool.schedule(new MyTask(), 2, TimeUnit.SECONDS);
}
}