I've been programming in Java for a while and just got thrown onto a project that's written entirely in C#. I'm trying to come up to speed in C#, and noticed enums used in several places in my new project, but at first glance, C#'s enums seem to be more simplistic than the Java 1.5+ implementation. Can anyone enumerate the differences between C# and Java enums, and how to overcome the differences? (I don't want to start a language flame war, I just want to know how to do some things in C# that I used to do in Java). For example, could someone post a C# counterpart to Sun's famous Planet enum example?

public enum Planet {
  MERCURY (3.303e+23, 2.4397e6),
  VENUS   (4.869e+24, 6.0518e6),
  EARTH   (5.976e+24, 6.37814e6),
  MARS    (6.421e+23, 3.3972e6),
  JUPITER (1.9e+27,   7.1492e7),
  SATURN  (5.688e+26, 6.0268e7),
  URANUS  (8.686e+25, 2.5559e7),
  NEPTUNE (1.024e+26, 2.4746e7),
  PLUTO   (1.27e+22,  1.137e6);

  private final double mass;   // in kilograms
  private final double radius; // in meters
  Planet(double mass, double radius) {
      this.mass = mass;
      this.radius = radius;
  }
  public double mass()   { return mass; }
  public double radius() { return radius; }

  // universal gravitational constant  (m3 kg-1 s-2)
  public static final double G = 6.67300E-11;

  public double surfaceGravity() {
      return G * mass / (radius * radius);
  }
  public double surfaceWeight(double otherMass) {
      return otherMass * surfaceGravity();
  }
}

// Example usage (slight modification of Sun's example):
public static void main(String[] args) {
    Planet pEarth = Planet.EARTH;
    double earthRadius = pEarth.radius(); // Just threw it in to show usage

    // Argument passed in is earth Weight.  Calculate weight on each planet:
    double earthWeight = Double.parseDouble(args[0]);
    double mass = earthWeight/pEarth.surfaceGravity();
    for (Planet p : Planet.values())
       System.out.printf("Your weight on %s is %f%n",
                         p, p.surfaceWeight(mass));
}

// Example output:
$ java Planet 175
Your weight on MERCURY is 66.107583
Your weight on VENUS is 158.374842
[etc ...]

当前回答

Java中的枚举比c#中的枚举复杂得多,因此功能更强大。 由于它只是另一种编译时语法糖,我想知道考虑到它在实际应用程序中的有限使用,是否真的值得包含该语言。 有时候,将一些东西排除在语言之外比屈服于包含一个小特性的压力更难。

其他回答

CLR中的枚举被简单命名为常量。基础类型必须是整型。在Java中,枚举更像是类型的命名实例。该类型可能相当复杂,并且—如您的示例所示—包含多个不同类型的字段。

为了将这个例子移植到c#,我只需要将枚举更改为一个不可变的类,并公开该类的静态只读实例:

using System;
using System.Collections.Generic;

namespace ConsoleApplication1
{
    class Program
    {
        static void Main(string[] args)
        {
            Planet planetEarth = Planet.MERCURY;

            double earthRadius = pEarth.Radius; // Just threw it in to show usage
            double earthWeight = double.Parse("123");
            double earthMass   = earthWeight / pEarth.SurfaceGravity();

            foreach (Planet p in Planet.Values)
                Console.WriteLine($"Your weight on {p} is {p.SurfaceWeight(mass)}");

            Console.ReadKey();
        }
    }

    public class Planet
    {
        public static readonly Planet MERCURY = new Planet("Mercury", 3.303e+23, 2.4397e6);
        public static readonly Planet VENUS   = new Planet("Venus", 4.869e+24, 6.0518e6);
        public static readonly Planet EARTH   = new Planet("Earth", 5.976e+24, 6.37814e6);
        public static readonly Planet MARS    = new Planet("Mars", 6.421e+23, 3.3972e6);
        public static readonly Planet JUPITER = new Planet("Jupiter", 1.9e+27, 7.1492e7);
        public static readonly Planet SATURN  = new Planet("Saturn", 5.688e+26, 6.0268e7);
        public static readonly Planet URANUS  = new Planet("Uranus", 8.686e+25, 2.5559e7);
        public static readonly Planet NEPTUNE = new Planet("Neptune", 1.024e+26, 2.4746e7);
        public static readonly Planet PLUTO   = new Planet("Pluto", 1.27e+22, 1.137e6);

        public static IEnumerable<Planet> Values
        {
            get
            {
                yield return MERCURY;
                yield return VENUS;
                yield return EARTH;
                yield return MARS;
                yield return JUPITER;
                yield return SATURN;
                yield return URANUS;
                yield return NEPTUNE;
                yield return PLUTO;
            }
        }

        public string Name   { get; private set; }
        public double Mass   { get; private set; }
        public double Radius { get; private set; }

        Planet(string name, double mass, double radius) => 
            (Name, Mass, Radius) = (name, mass, radius);

        // Wniversal gravitational constant  (m3 kg-1 s-2)
        public const double G = 6.67300E-11;
        public double SurfaceGravity()            => G * mass / (radius * radius);
        public double SurfaceWeight(double other) => other * SurfaceGravity();
        public override string ToString()         => name;
    }
}

在c#中,你可以在枚举上定义扩展方法,这弥补了一些缺失的功能。

您可以将Planet定义为枚举,也可以使用与surfaceGravity()和surfaceWeight()等效的扩展方法。

我已经按照Mikhail的建议使用了自定义属性,但是使用Dictionary也可以达到同样的效果。

using System;
using System.Reflection;

class PlanetAttr: Attribute
{
    internal PlanetAttr(double mass, double radius)
    {
        this.Mass = mass;
        this.Radius = radius;
    }
    public double Mass { get; private set; }
    public double Radius { get; private set; }
}

public static class Planets
{
    public static double GetSurfaceGravity(this Planet p)
    {
        PlanetAttr attr = GetAttr(p);
        return G * attr.Mass / (attr.Radius * attr.Radius);
    }

    public static double GetSurfaceWeight(this Planet p, double otherMass)
    {
        return otherMass * p.GetSurfaceGravity();
    }

    public const double G = 6.67300E-11;

    private static PlanetAttr GetAttr(Planet p)
    {
        return (PlanetAttr)Attribute.GetCustomAttribute(ForValue(p), typeof(PlanetAttr));
    }

    private static MemberInfo ForValue(Planet p)
    {
        return typeof(Planet).GetField(Enum.GetName(typeof(Planet), p));
    }

}

public enum Planet
{
    [PlanetAttr(3.303e+23, 2.4397e6)]  MERCURY,
    [PlanetAttr(4.869e+24, 6.0518e6)]  VENUS,
    [PlanetAttr(5.976e+24, 6.37814e6)] EARTH,
    [PlanetAttr(6.421e+23, 3.3972e6)]  MARS,
    [PlanetAttr(1.9e+27,   7.1492e7)]  JUPITER,
    [PlanetAttr(5.688e+26, 6.0268e7)]  SATURN,
    [PlanetAttr(8.686e+25, 2.5559e7)]  URANUS,
    [PlanetAttr(1.024e+26, 2.4746e7)]  NEPTUNE,
    [PlanetAttr(1.27e+22,  1.137e6)]   PLUTO
}
//Review the sample enum below for a template on how to implement a JavaEnum.
//There is also an EnumSet implementation below.

public abstract class JavaEnum : IComparable {
    public static IEnumerable<JavaEnum> Values {
        get {
            throw new NotImplementedException("Enumeration missing");
        }
    }

    public readonly string Name;

    public JavaEnum(string name) {
        this.Name = name;
    }

    public override string ToString() {
        return base.ToString() + "." + Name.ToUpper();
    }

    public int CompareTo(object obj) {
        if(obj is JavaEnum) {
            return string.Compare(this.Name, ((JavaEnum)obj).Name);
        } else {
            throw new ArgumentException();
        }
    }


    //Dictionary values are of type SortedSet<T>
    private static Dictionary<Type, object> enumDictionary;
    public static SortedSet<T> RetrieveEnumValues<T>() where T : JavaEnum {
        if(enumDictionary == null) {
            enumDictionary = new Dictionary<Type, object>();
        }
        object enums;
        if(!enumDictionary.TryGetValue(typeof(T), out enums)) {
            enums = new SortedSet<T>();
            FieldInfo[] myFieldInfo = typeof(T).GetFields(BindingFlags.Static | BindingFlags.DeclaredOnly | BindingFlags.Public);
            foreach(FieldInfo f in myFieldInfo) {
                if(f.FieldType == typeof(T)) {
                    ((SortedSet<T>)enums).Add((T)f.GetValue(null));
                }
            }
            enumDictionary.Add(typeof(T), enums);
        }
        return (SortedSet<T>)enums;
    }
}


//Sample JavaEnum
public class SampleEnum : JavaEnum {
    //Enum values
    public static readonly SampleEnum A = new SampleEnum("A", 1);
    public static readonly SampleEnum B = new SampleEnum("B", 2);
    public static readonly SampleEnum C = new SampleEnum("C", 3);

    //Variables or Properties common to all enums of this type
    public int int1;
    public static int int2 = 4;
    public static readonly int int3 = 9;

    //The Values property must be replaced with a call to JavaEnum.generateEnumValues<MyEnumType>() to generate an IEnumerable set.
    public static new IEnumerable<SampleEnum> Values {
        get {
            foreach(var e in JavaEnum.RetrieveEnumValues<SampleEnum>()) {
                yield return e;
            }
            //If this enum should compose several enums, add them here
            //foreach(var e in ChildSampleEnum.Values) {
            //    yield return e;
            //}
        }
    }

    public SampleEnum(string name, int int1)
        : base(name) {
        this.int1 = int1;
    }
}


public class EnumSet<T> : SortedSet<T> where T : JavaEnum {
    // Creates an enum set containing all of the elements in the specified element type.
    public static EnumSet<T> AllOf(IEnumerable<T> values) {
        EnumSet<T> returnSet = new EnumSet<T>();
        foreach(T item in values) {
            returnSet.Add(item);
        }
        return returnSet;
    }

    // Creates an enum set with the same element type as the specified enum set, initially containing all the elements of this type that are not contained in the specified set.
    public static EnumSet<T> ComplementOf(IEnumerable<T> values, EnumSet<T> set) {
        EnumSet<T> returnSet = new EnumSet<T>();
        foreach(T item in values) {
            if(!set.Contains(item)) {
                returnSet.Add(item);
            }
        }
        return returnSet;
    }

    // Creates an enum set initially containing all of the elements in the range defined by the two specified endpoints.
    public static EnumSet<T> Range(IEnumerable<T> values, T from, T to) {
        EnumSet<T> returnSet = new EnumSet<T>();
        if(from == to) {
            returnSet.Add(from);
            return returnSet;
        }
        bool isFrom = false;
        foreach(T item in values) {
            if(isFrom) {
                returnSet.Add(item);
                if(item == to) {
                    return returnSet;
                }
            } else if(item == from) {
                isFrom = true;
                returnSet.Add(item);
            }
        }
        throw new ArgumentException();
    }

    // Creates an enum set initially containing the specified element(s).
    public static EnumSet<T> Of(params T[] setItems) {
        EnumSet<T> returnSet = new EnumSet<T>();
        foreach(T item in setItems) {
            returnSet.Add(item);
        }
        return returnSet;
    }

    // Creates an empty enum set with the specified element type.
    public static EnumSet<T> NoneOf() {
        return new EnumSet<T>();
    }

    // Returns a copy of the set passed in.
    public static EnumSet<T> CopyOf(EnumSet<T> set) {
        EnumSet<T> returnSet = new EnumSet<T>();
        returnSet.Add(set);
        return returnSet;
    }

    // Adds a set to an existing set.
    public void Add(EnumSet<T> enumSet) {
        foreach(T item in enumSet) {
            this.Add(item);
        }
    }

    // Removes a set from an existing set.
    public void Remove(EnumSet<T> enumSet) {
        foreach(T item in enumSet) {
            this.Remove(item);
        }
    }
}

Java枚举是一种语法糖,用于以面向对象的方式表示枚举。它们是在Java中扩展Enum类的抽象类,每个枚举值都类似于枚举类的静态最终公共实例实现。查看生成的类,对于包含10个值的枚举“Foo”,您将看到生成了“Foo$1”到“Foo$10”类。

虽然我不懂c#,但我只能推测,这种语言中的枚举更像C风格语言中的传统枚举。然而,我从一个快速的谷歌搜索中看到,它们可以保存多个值,因此它们可能以类似的方式实现,但限制比Java编译器所允许的要多得多。

我怀疑c#中的枚举只是CLR内部的常量,但不是很熟悉它们。我已经在Java中反编译了一些类,我可以告诉你想要的enum是一旦你转换。

Java做了一些狡猾的事情。它将枚举类视为一个普通类,在引用枚举值时使用大量宏。如果在使用枚举的Java类中有case语句,则它将枚举引用替换为整数。如果需要转到string,它会创建一个字符串数组,由它在每个类中使用的序数索引。我猜是为了节省拳击的费用。

如果你下载了这个反编译器,你会看到它如何创建它的类并集成它。说实话,相当吸引人。我过去不使用枚举类,因为我认为它对于一个常量数组来说太臃肿了。比起在c#中有限的使用方式,我更喜欢它。

http://members.fortunecity.com/neshkov/dj.html——Java反编译器