51 - 适配器模式

2021-09-20  本文已影响0人  舍是境界

本文再来学习一个结构型设计模式:适配器模式,本文主要介绍它的两种实现方式,类适配器和对象适配器,以及 5 种常见的应用场景

适配器模式的原理与实现

// 类适配器: 基于继承
public interface ITarget {
  void f1();
  void f2();
  void fc();
}
public class Adaptee {
  public void fa() { //... }
  public void fb() { //... }
  public void fc() { //... }
}
public class Adaptor extends Adaptee implements ITarget {
  public void f1() {
    super.fa();
  }
  
  public void f2() {
    //...重新实现f2()...
  }
  
  // 这里fc()不需要实现,直接继承自Adaptee,这是跟对象适配器最大的不同点
}
// 对象适配器:基于组合
public interface ITarget {
  void f1();
  void f2();
  void fc();
}
public class Adaptee {
  public void fa() { //... }
  public void fb() { //... }
  public void fc() { //... }
}
public class Adaptor implements ITarget {
  private Adaptee adaptee;
  
  public Adaptor(Adaptee adaptee) {
    this.adaptee = adaptee;
  }
  
  public void f1() {
    adaptee.fa(); //委托给Adaptee
  }
  
  public void f2() {
    //...重新实现f2()...
  }
  
  public void fc() {
    adaptee.fc();
  }
}

适配器模式应用场景总结

  1. 封装有缺陷的接口设计
public class CD { //这个类来自外部sdk,我们无权修改它的代码
  //...
  public static void staticFunction1() { //... }
  
  public void uglyNamingFunction2() { //... }
  public void tooManyParamsFunction3(int paramA, int paramB, ...) { //... }
  
   public void lowPerformanceFunction4() { //... }
}
// 使用适配器模式进行重构
public class ITarget {
  void function1();
  void function2();
  void fucntion3(ParamsWrapperDefinition paramsWrapper);
  void function4();
  //...
}
// 注意:适配器类的命名不一定非得末尾带Adaptor
public class CDAdaptor extends CD implements ITarget {
  //...
  public void function1() {
     super.staticFunction1();
  }
  
  public void function2() {
    super.uglyNamingFucntion2();
  }
  
  public void function3(ParamsWrapperDefinition paramsWrapper) {
     super.tooManyParamsFunction3(paramsWrapper.getParamA(), ...);
  }
  
  public void function4() {
    //...reimplement it...
  }
}
  1. 统一多个类的接口设计
public class ASensitiveWordsFilter { // A敏感词过滤系统提供的接口
  //text是原始文本,函数输出用***替换敏感词之后的文本
  public String filterSexyWords(String text) {
    // ...
  }
  
  public String filterPoliticalWords(String text) {
    // ...
  } 
}
public class BSensitiveWordsFilter  { // B敏感词过滤系统提供的接口
  public String filter(String text) {
    //...
  }
}
public class CSensitiveWordsFilter { // C敏感词过滤系统提供的接口
  public String filter(String text, String mask) {
    //...
  }
}
// 未使用适配器模式之前的代码:代码的可测试性、扩展性不好
public class RiskManagement {
  private ASensitiveWordsFilter aFilter = new ASensitiveWordsFilter();
  private BSensitiveWordsFilter bFilter = new BSensitiveWordsFilter();
  private CSensitiveWordsFilter cFilter = new CSensitiveWordsFilter();
  
  public String filterSensitiveWords(String text) {
    String maskedText = aFilter.filterSexyWords(text);
    maskedText = aFilter.filterPoliticalWords(maskedText);
    maskedText = bFilter.filter(maskedText);
    maskedText = cFilter.filter(maskedText, "***");
    return maskedText;
  }
}
// 使用适配器模式进行改造
public interface ISensitiveWordsFilter { // 统一接口定义
  String filter(String text);
}
public class ASensitiveWordsFilterAdaptor implements ISensitiveWordsFilter {
  private ASensitiveWordsFilter aFilter;
  public String filter(String text) {
    String maskedText = aFilter.filterSexyWords(text);
    maskedText = aFilter.filterPoliticalWords(maskedText);
    return maskedText;
  }
}
//...省略BSensitiveWordsFilterAdaptor、CSensitiveWordsFilterAdaptor...
// 扩展性更好,更加符合开闭原则,如果添加一个新的敏感词过滤系统,
// 这个类完全不需要改动;而且基于接口而非实现编程,代码的可测试性更好。
public class RiskManagement { 
  private List<ISensitiveWordsFilter> filters = new ArrayList<>();
 
  public void addSensitiveWordsFilter(ISensitiveWordsFilter filter) {
    filters.add(filter);
  }
  
  public String filterSensitiveWords(String text) {
    String maskedText = text;
    for (ISensitiveWordsFilter filter : filters) {
      maskedText = filter.filter(maskedText);
    }
    return maskedText;
  }
}
  1. 替换依赖的外部系统
// 外部系统A
public interface IA {
  //...
  void fa();
}
public class A implements IA {
  //...
  public void fa() { //... }
}
// 在我们的项目中,外部系统A的使用示例
public class Demo {
  private IA a;
  public Demo(IA a) {
    this.a = a;
  }
  //...
}
Demo d = new Demo(new A());
// 将外部系统A替换成外部系统B
public class BAdaptor implemnts IA {
  private B b;
  public BAdaptor(B b) {
    this.b= b;
  }
  public void fa() {
    //...
    b.fb();
  }
}
// 借助BAdaptor,Demo的代码中,调用IA接口的地方都无需改动,
// 只需要将BAdaptor如下注入到Demo即可。
Demo d = new Demo(new BAdaptor(new B()));
  1. 兼容老版本接口
public class Collections {
  public static Emueration emumeration(final Collection c) {
    return new Enumeration() {
      Iterator i = c.iterator();
      
      public boolean hasMoreElments() {
        return i.hashNext();
      }
      
      public Object nextElement() {
        return i.next():
      }
    }
  }
}
  1. 适配不同格式的数据
List<String> stooges = Arrays.asList("Larry", "Moe", "Curly");

剖析适配器模式在 Java 日志中的应用

// slf4j统一的接口定义
package org.slf4j;
public interface Logger {
  public boolean isTraceEnabled();
  public void trace(String msg);
  public void trace(String format, Object arg);
  public void trace(String format, Object arg1, Object arg2);
  public void trace(String format, Object[] argArray);
  public void trace(String msg, Throwable t);
 
  public boolean isDebugEnabled();
  public void debug(String msg);
  public void debug(String format, Object arg);
  public void debug(String format, Object arg1, Object arg2)
  public void debug(String format, Object[] argArray)
  public void debug(String msg, Throwable t);
  //...省略info、warn、error等一堆接口
}
// log4j日志框架的适配器
// Log4jLoggerAdapter实现了LocationAwareLogger接口,
// 其中LocationAwareLogger继承自Logger接口,
// 也就相当于Log4jLoggerAdapter实现了Logger接口。
package org.slf4j.impl;
public final class Log4jLoggerAdapter extends MarkerIgnoringBase
  implements LocationAwareLogger, Serializable {
  final transient org.apache.log4j.Logger logger; // log4j
 
  public boolean isDebugEnabled() {
    return logger.isDebugEnabled();
  }
 
  public void debug(String msg) {
    logger.log(FQCN, Level.DEBUG, msg, null);
  }
 
  public void debug(String format, Object arg) {
    if (logger.isDebugEnabled()) {
      FormattingTuple ft = MessageFormatter.format(format, arg);
      logger.log(FQCN, Level.DEBUG, ft.getMessage(), ft.getThrowable());
    }
  }
 
  public void debug(String format, Object arg1, Object arg2) {
    if (logger.isDebugEnabled()) {
      FormattingTuple ft = MessageFormatter.format(format, arg1, arg2);
      logger.log(FQCN, Level.DEBUG, ft.getMessage(), ft.getThrowable());
    }
  }
 
  public void debug(String format, Object[] argArray) {
    if (logger.isDebugEnabled()) {
      FormattingTuple ft = MessageFormatter.arrayFormat(format, argArray);
      logger.log(FQCN, Level.DEBUG, ft.getMessage(), ft.getThrowable());
    }
  }
 
  public void debug(String msg, Throwable t) {
    logger.log(FQCN, Level.DEBUG, msg, t);
  }
  //...省略一堆接口的实现...
}

代理、桥接、装饰器、适配器 4 种设计模式的区别

小结

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