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java比较器Comparable接口与Comaprator接口的深入分析

2019-11-26 16:04:21
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java的比较器有两类,分别是Comparable接口Comparator接口
在为对象数组进行排序时,比较器的作用非常明显,首先来讲解Comparable接口。
让需要进行排序的对象实现Comparable接口,重写其中的compareTo(T o)方法,在其中定义排序规则,那么就可以直接调用java.util.Arrays.sort()来排序对象数组,实例如下:
复制代码 代码如下:

class Student implements Comparable<Student>{
    private String name;
    private int age;
    private float score;

    public Student(String name, int age, float score) {
        this.name = name;
        this.age = age;
        this.score = score;
    }

    public String toString()
    {
        return name+"/t/t"+age+"/t/t"+score;
    }
    @Override
    public int compareTo(Student o) {
        // TODO Auto-generated method stub
        if(this.score>o.score)//score是private的,为什么能够直接调用,这是因为在Student类内部
            return -1;//由高到底排序
        else if(this.score<o.score)
            return 1;
        else{
            if(this.age>o.age)
                return 1;//由底到高排序
            else if(this.age<o.age)
                return -1;
            else
                return 0;
        }
    }
}
public class ComparableDemo01 {
    /**
     * @param args
     */
    public static void main(String[] args) {
        // TODO Auto-generated method stub
        Student stu[]={new Student("zhangsan",20,90.0f),
                new Student("lisi",22,90.0f),
                new Student("wangwu",20,99.0f),
                new Student("sunliu",22,100.0f)};
        java.util.Arrays.sort(stu);
        for(Student s:stu)
        {
            System.out.println(s);
        }
    }
}

程序运行结果:
sunliu 22 100.0
wangwu 20 99.0
zhangsan 20 90.0
lisi 22 90.0
但是在设计类的时候,往往没有考虑到让类实现Comparable接口,那么我们就需要用到另外的一个比较器接口Comparator。
从上面的实例我们可以发现,compareTo(T o)只有一个参数,而Comparator接口中必须要实现的compare(T o1,T o2)就有两个参数。
代码实例:
复制代码 代码如下:

package edu.sjtu.ist.comutil;
import java.util.Comparator;
class Student {
    private String name;
    private int age;
    private float score;

    public Student(String name, int age, float score) {
        this.name = name;
        this.age = age;
        this.score = score;
    }
    public String getName() {
        return name;
    }
    public void setName(String name) {
        this.name = name;
    }
    public int getAge() {
        return age;
    }
    public void setAge(int age) {
        this.age = age;
    }
    public float getScore() {
        return score;
    }
    public void setScore(float score) {
        this.score = score;
    }
    public String toString()
    {
        return name+"/t/t"+age+"/t/t"+score;
    }
}
class StudentComparator implements Comparator<Student>{
    @Override
    public int compare(Student o1, Student o2) {
        // TODO Auto-generated method stub
        if(o1.getScore()>o2.getScore())
            return -1;
        else if(o1.getScore()<o2.getScore())
            return 1;
        else{
            if(o1.getAge()>o2.getAge())
                return 1;
            else if(o1.getAge()<o2.getAge())
                return -1;
            else
                return 0;
        }
    }

}
public class ComparableDemo02 {
    /**
     * @param args
     */
    public static void main(String[] args) {
        // TODO Auto-generated method stub
        Student stu[]={new Student("zhangsan",20,90.0f),
                new Student("lisi",22,90.0f),
                new Student("wangwu",20,99.0f),
                new Student("sunliu",22,100.0f)};
        java.util.Arrays.sort(stu,new StudentComparator());
        for(Student s:stu)
        {
            System.out.println(s);
        }
    }
}

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