zoukankan      html  css  js  c++  java
  • Java对多线程~~~Fork/Join同步和异步帧

    于Fork/Join骨架,当提交的任务,有两个同步和异步模式。它已被用于invokeAll()该方法是同步的。是任何

    务提交后,这种方法不会返回直到全部的任务都处理完了。而还有还有一种方式,就是使用fork方法,这个是异步的。也

    就是你提交任务后,fork方法马上返回。能够继续以下的任务。

    这个线程也会继续执行。


    以下我们以一个查询磁盘的以log结尾的文件的程序样例来说明异步的使用方法。


    package com.bird.concursey.charpet8;
    
    import java.io.File;
    import java.util.ArrayList;
    import java.util.List;
    import java.util.concurrent.ForkJoinPool;
    import java.util.concurrent.RecursiveTask;
    
    public class FolderProcessor extends RecursiveTask<List<String>> {
    
    	private static final long serialVersionUID = 1L;
    	
    	private String path;
    	private String extension;
    
    	public FolderProcessor(String path, String extension) {
    		super();
    		this.path = path;
    		this.extension = extension;
    	}
    
    	@Override
    	protected List<String> compute() {
    		List<String> list = new ArrayList<String>();
    		List<FolderProcessor> tasks = new ArrayList<FolderProcessor>();
    		File file = new File(path);
    		File content[] = file.listFiles();
    		if(content != null) {
    			for(int i = 0; i < content.length; i++) {
    				if(content[i].isDirectory()) {
    					FolderProcessor task = new FolderProcessor(content[i].getAbsolutePath(), extension);
    					//异步方式提交任务
    					task.fork();
    					tasks.add(task);
    				}else{
    					if(checkFile(content[i].getName())) {
    						list.add(content[i].getAbsolutePath());
    					}
    				}
    			}
    		}
    		if(tasks.size() > 50) {
    			System.out.printf("%s: %d tasks ran.
    ",file.getAbsolutePath(),tasks.size());
    		}
    		
    		addResultsFromTasks(list,tasks);
    		return list;
    	}
    
    	/**
    	 * that will add to the list of files
    the results returned by the subtasks launched by this task.
    	 * @param list
    	 * @param tasks
    	 */
    	private void addResultsFromTasks(List<String> list,
    			List<FolderProcessor> tasks) {
    		for(FolderProcessor item: tasks) {
    			list.addAll(item.join());
    		}
    	}
    	
    	/**
    	 * This method compares if the name of a file
    passed as a parameter ends with the extension you are looking for
    	 * @param name
    	 * @return
    	 */
    	private boolean checkFile(String name) {
    		return name.endsWith(extension);
    	}
    	
    	public static void main(String[] args) {
    		ForkJoinPool pool = new ForkJoinPool();
    		FolderProcessor system = new FolderProcessor("C:\Windows", "log");
    		FolderProcessor apps = new FolderProcessor("C:\Program Files", "log");
    		
    		pool.execute(system);
    		pool.execute(apps);
    		
    		pool.shutdown();
    		
    		List<String> results = null;
    		results = system.join();
    		System.out.printf("System: %d files found.
    ",results.size());
    		
    		results = apps.join();
    		System.out.printf("Apps: %d files found.
    ",results.size());
    		
    		
    	}
    }
    

    The key of this example is in the FolderProcessor class. Each task processes the content
    of a folder. As you know, this content has the following two kinds of elements:


    ff Files


    ff Other folders


    If the task finds a folder, it creates another Task object to process that folder and sends it to
    the pool using the fork() method. This method sends the task to the pool that will execute it
    if it has a free worker-thread or it can create a new one. The method returns immediately, so
    the task can continue processing the content of the folder. For every file, a task compares its
    extension with the one it's looking for and, if they are equal, adds the name of the file to the
    list of results.


    Once the task has processed all the content of the assigned folder, it waits for the finalization
    of all the tasks it sent to the pool using the join() method. This method called in a task
    waits for the finalization of its execution and returns the value returned by the compute()
    method. The task groups the results of all the tasks it sent with its own results and returns
    that list as a return value of the compute() method.


    The ForkJoinPool class also allows the execution of tasks in an asynchronous way. You
    have used the execute() method to send the three initial tasks to the pool. In the Main
    class, you also finished the pool using the shutdown() method and wrote information about
    the status and the evolution of the tasks that are running in it. The ForkJoinPool class
    includes more methods that can be useful for this purpose. See the Monitoring a Fork/Join
    pool recipe to see a complete list of those methods.


    版权声明:本文博主原创文章,博客,未经同意不得转载。

  • 相关阅读:
    NX二次开发-UFUN设置显示状态抑制显示UF_DISP_set_display
    NX二次开发-使用NXOPEN C++向导模板做二次开发
    ANTV/G6 怎么按条件自定义节点颜色(Graphin)
    js数组去重及数组对象去重
    vue组件老胡机抽奖(转载)
    Kafka第二节
    Kafka第一节
    更改idea的database数据库连接的ddl格式
    不推荐别的了,IDEA 自带的数据库工具就很牛逼!
    MongoDB 按照时间段查询某个物理机的CPU使用率,按照时间倒序排序,取出最新的5条数据
  • 原文地址:https://www.cnblogs.com/mengfanrong/p/4867239.html
Copyright © 2011-2022 走看看