位掩码(标志)枚举变得太大时该怎么办

Mat*_*nes 70 c# permissions enums types bitmask

我在我的应用程序中拥有一组非常大的权限,我使用Flags枚举表示.它正在快速接近长数据类型的实际上限.我不得不提出一个战略,很快就会转变为一个不同的结构.现在,我可以将此列表分解为更小的部分,但是,根据我们的应用程序布局,这已经只是我们应用程序的总体权限的一部分.在管理权限时,我们广泛使用这种区别用于显示目的,如果我可以避免,我宁愿不再重新访问该代码.

还有其他人遇到过这个问题吗?你是怎么过去的?一般的例子很好,但我最感兴趣的是ac#specific example,如果有任何语言特定的技巧可以用来完成工作.

可能不是必需的,但这里是当前为我正在处理的应用程序部分定义的权限列表.

//Subgroup WebAgent
[Flags]
public enum WebAgentPermission : long
{
    [DescriptionAttribute("View Rule Group")]
    ViewRuleGroup = 1,
    [DescriptionAttribute("Add Rule Group")]
    AddRuleGroup = 2,
    [DescriptionAttribute("Edit Rule Group")]
    EditRuleGroup = 4,
    [DescriptionAttribute("Delete Rule Group")]
    DeleteRuleGroup = 8,
    [DescriptionAttribute("View Rule")]
    ViewRule = 16,
    [DescriptionAttribute("Add Rule")]
    AddRule = 32,
    [DescriptionAttribute("Edit Rule")]
    EditRule = 64,
    [DescriptionAttribute("Delete Rule")]
    DeleteRule = 128,
    [DescriptionAttribute("View Location")]
    ViewLocation = 256,
    [DescriptionAttribute("Add Location")]
    AddLocation = 512,
    [DescriptionAttribute("Edit Location")]
    EditLocation = 1024,
    [DescriptionAttribute("Delete Location")]
    DeleteLocation = 2048,
    [DescriptionAttribute("View Volume Statistics")]
    ViewVolumeStatistics = 4096,
    [DescriptionAttribute("Edit Volume Statistics")]
    EditVolumeStatistics = 8192,
    [DescriptionAttribute("Upload Volume Statistics")]
    UploadVolumeStatistics = 16384,
    [DescriptionAttribute("View Role")]
    ViewRole = 32768,
    [DescriptionAttribute("Add Role")]
    AddRole = 65536,
    [DescriptionAttribute("Edit Role")]
    EditRole = 131072,
    [DescriptionAttribute("Delete Role")]
    DeleteRole = 262144,
    [DescriptionAttribute("View User")]
    ViewUser = 524288,
    [DescriptionAttribute("Add User")]
    AddUser = 1048576,
    [DescriptionAttribute("Edit User")]
    EditUser = 2097152,
    [DescriptionAttribute("Delete User")]
    DeleteUser = 4194304,
    [DescriptionAttribute("Assign Permissions To User")]
    AssignPermissionsToUser = 8388608,
    [DescriptionAttribute("Change User Password")]
    ChangeUserPassword = 16777216,
    [DescriptionAttribute("View Audit Logs")]
    ViewAuditLogs = 33554432,
    [DescriptionAttribute("View Team")]
    ViewTeam = 67108864,
    [DescriptionAttribute("Add Team")]
    AddTeam = 134217728,
    [DescriptionAttribute("Edit Team")]
    EditTeam = 268435456,
    [DescriptionAttribute("Delete Team")]
    DeleteTeam = 536870912,
    [DescriptionAttribute("View Web Agent Reports")]
    ViewWebAgentReports = 1073741824,
    [DescriptionAttribute("View All Locations")]
    ViewAllLocations = 2147483648,
    [DescriptionAttribute("Access to My Search")]
    AccessToMySearch = 4294967296,
    [DescriptionAttribute("Access to Pespective Search")]
    AccessToPespectiveSearch = 8589934592,
    [DescriptionAttribute("Add Pespective Search")]
    AddPespectiveSearch = 17179869184,
    [DescriptionAttribute("Edit Pespective Search")]
    EditPespectiveSearch = 34359738368,
    [DescriptionAttribute("Delete Pespective Search")]
    DeletePespectiveSearch = 68719476736,
    [DescriptionAttribute("Access to Search")]
    AccessToSearch = 137438953472,
    [DescriptionAttribute("View Form Roles")]
    ViewFormRole = 274877906944,
    [DescriptionAttribute("Add / Edit Form Roles")]
    AddFormRole = 549755813888,
    [DescriptionAttribute("Delete UserFormRolesDifferenceMasks")]
    DeleteFormRole = 1099511627776,
    [DescriptionAttribute("Export Locations")]
    ExportLocations = 2199023255552,
    [DescriptionAttribute("Import Locations")]
    ImportLocations = 4398046511104,
    [DescriptionAttribute("Manage Location Levels")]
    ManageLocationLevels = 8796093022208,
    [DescriptionAttribute("View Job Title")]
    ViewJobTitle = 17592186044416,
    [DescriptionAttribute("Add Job Title")]
    AddJobTitle = 35184372088832,
    [DescriptionAttribute("Edit Job Title")]
    EditJobTitle = 70368744177664,
    [DescriptionAttribute("Delete Job Title")]
    DeleteJobTitle = 140737488355328,
    [DescriptionAttribute("View Dictionary Manager")]
    ViewDictionaryManager = 281474976710656,
    [DescriptionAttribute("Add Dictionary Manager")]
    AddDictionaryManager = 562949953421312,
    [DescriptionAttribute("Edit Dictionary Manager")]
    EditDictionaryManager = 1125899906842624,
    [DescriptionAttribute("Delete Dictionary Manager")]
    DeleteDictionaryManager = 2251799813685248,
    [DescriptionAttribute("View Choice Manager")]
    ViewChoiceManager = 4503599627370496,
    [DescriptionAttribute("Add Choice Manager")]
    AddChoiceManager = 9007199254740992,
    [DescriptionAttribute("Edit Chioce Manager")]
    EditChoiceManager = 18014398509481984,
    [DescriptionAttribute("Delete Choice Manager")]
    DeleteChoiceManager = 36028797018963968,
    [DescriptionAttribute("Import Export Choices")] //57
    ImportExportChoices = 72057594037927936
}
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Fre*_*örk 37

我看到至少有少数不同枚举的价值......

我首先想到的是通过在逻辑组拆分权限了(来解决这个问题RuleGroupPermissions,RulePermissions,LocationPermissions,...),然后有一个类(WebAgentPermissions)使每个许可枚举类型的属性.

由于权限值似乎重复,因此最终可能会使用单个枚举:

[Flags]
public enum Permissions
{
    View = 1,
    Add = 2,
    Edit = 4,
    Delete = 8
}
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然后让WebAgentPermissions类为每个要设置权限的区域公开一个属性;

class WebAgentPermissions
{
    public Permissions RuleGroup { get; set; }
    public Permissions Rule{ get; set; }
    public Permissions Location{ get; set; }
    // and so on...
}
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  • 我喜欢这个,虽然它们非常标准,但我认为有足够的偏差使这个解决方案有点麻烦.最后我想我只需要把它搞砸并把这个野兽分成小块,然后重新设计我的应用程序的几个部分来处理这些变化.我只是希望那里有一个我没找到的魔法子弹.谢谢你的时间. (2认同)
  • 在这种情况下,这是一个非常好的解决方案.不幸的是,它没有提供处理类似问题的通用方法,除了"尝试将其分解为最佳的枚举意义". (2认同)

the*_*jxc 21

语言文档说:

http://msdn.microsoft.com/en-us/library/system.flagsattribute.aspx

"底层类型是Int32,因此最大单位标志是1073741824,显然每个枚举总共有32个标志."

但是...更新:

评论者是对的.看看这个:

http://msdn.microsoft.com/en-us/library/ms182147(VS.80).aspx

Int32只是DEFAULT数据类型!实际上,您可以指定Int64.

public enum MyEnumType : Int64
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...允许最多64个值.但这肯定是最大的,之后你会考虑重新设计.在不了解您的其他解决方案的情况下,我无法确切地说出可能适用的内容.但是特权标识符的数组(或哈希映射)可能是最自然的方法.

  • @PatrickM不幸的是,虽然这是一个伟大的轶事,但它不是现实,我需要更多. (4认同)
  • 提示:当将 `enum MyEnumType : Int64` 与移位运算符一起使用时: `[Flags] public enum MyEnumFlags : Int64 { None = 0, A = 1 << 0, B = 1 << 1, C = 1 << 2, . ..etc... ` 请务必使用 1**L** `A = 1L << 0, B = 1L << 1,` 告诉编译器 1 是 long/Int64。否则它会将其解释为 int32,并在第 32 个位置从 1 重新开始,为其他枚举名称提供双精度值。 (3认同)

arb*_*ter 13

你可以检查BitArray类.也许你将来会用它.


Bru*_*son 7

事实证明这是一个比我想象的更常见的问题,我将CSS类表示为标志类型,并且有超过64种可能性.我已经从这个过程中学到了所有知识并将其转换为可重用的模式,虽然它是一个结构,但它是一个复制粘贴类型的模式.

这是BigFlags"枚举类型".它使用BigIntegerfrom System.Numerics,或者如果没有办法可以引用该程序集,则BitArray只需关闭NUMERICS预处理程序指令即可使用回退.

它的行为非常象一个Flags枚举,即使限定这样的事情HasFlag(...),GetNames(),GetValues(),TryParse(...),一个TypeConverter,IConvertible等.由于它定义一个TypeConverterIConvertible,它也适合于,存储在数据存储器中虽然总是为一个字符串或文本数据类型.

您将"枚举"值公开为public static readonly成员.组合的枚举值公开为只获取属性.

要使用它,请复制并粘贴代码,然后搜索并替换BigFlags结构名称,然后删除部分中的枚举TODO并添加值.

希望有人觉得它很有用.

#define NUMERICS

using System;
using System.Collections;
using System.Collections.Concurrent;
using System.Collections.Generic;
using System.ComponentModel;
using System.Globalization;
using System.Linq;
#if NUMERICS
using System.Numerics;
#endif
using System.Reflection;
using System.Text;
using System.Threading.Tasks;


namespace Aim
{
    /// <summary>
    /// The BigFlags struct behaves like a Flags enumerated type.
    /// <para>
    /// Note that if this struct will be stored in some type of data
    /// store, it should be stored as a string type. There are two
    /// reasons for this:
    /// </para>
    /// <para>
    /// 1. Presumably, this pattern is being used because the number
    /// of values will exceed 64 (max positions in a long flags enum).
    /// Since this is so, there is in any case no numeric type which
    /// can store all the possible combinations of flags.
    /// </para>
    /// <para>
    /// 2. The "enum" values are assigned based on the order that the
    /// static public fields are defined. It is much safer to store
    /// these fields by name in case the fields are rearranged. This
    /// is particularly important if this represents a permission set!
    /// </para>
    /// </summary>
    [
    TypeConverter( typeof( BigFlagsConverter ) )
    ]
    public struct BigFlags : IEquatable<BigFlags>,
        IComparable<BigFlags>, IComparable, IConvertible
    {
        #region State...

        private static readonly List<FieldInfo> Fields;
        private static readonly List<BigFlags> FieldValues;
#if NUMERICS
        private static readonly bool ZeroInit = true;
        private BigInteger Value;

        /// <summary>
        /// Creates a value taking ZeroInit into consideration.
        /// </summary>
        /// <param name="index"></param>
        /// <returns></returns>
        private static BigInteger CreateValue( int index )
        {
            if( ZeroInit && index == 0 )
            {
                return 0;
            }
            int idx = ZeroInit ? index - 1 : index;

            return new BigInteger( 1 ) << idx;
        }
#else
        private BitArray Array;

        /// <summary>
        /// Lazy-initialized BitArray.
        /// </summary>
        private BitArray Bits
        {
            get
            {
                if( null == Array )
                {
                    Array = new BitArray( Fields.Count );
                }
                return Array;
            }
        }
#endif
        #endregion ...State

        #region Construction...

        /// <summary>
        /// Static constructor. Sets the static public fields.
        /// </summary>
        static BigFlags()
        {
            Fields = typeof( BigFlags ).GetFields(
                BindingFlags.Public | BindingFlags.Static ).ToList();
            FieldValues = new List<BigFlags>();
            for( int i = 0; i < Fields.Count; i++ )
            {
                var field = Fields[i];
                var fieldVal = new BigFlags();
#if NUMERICS
                fieldVal.Value = CreateValue( i );
#else
                fieldVal.Bits.Set( i, true );
#endif
                field.SetValue( null, fieldVal );
                FieldValues.Add( fieldVal );
            }
        }
        #endregion ...Construction

        #region Operators...

        /// <summary>
        /// OR operator. Or together BigFlags instances.
        /// </summary>
        /// <param name="lhs"></param>
        /// <param name="rhs"></param>
        /// <returns></returns>
        public static BigFlags operator |( BigFlags lhs, BigFlags rhs )
        {
            var result = new BigFlags();
#if NUMERICS
            result.Value = lhs.Value | rhs.Value;
#else
            // BitArray is modified in place - always copy!
            result.Array = new BitArray( lhs.Bits ).Or( rhs.Bits );
#endif

            return result;
        }

        /// <summary>
        /// AND operator. And together BigFlags instances.
        /// </summary>
        /// <param name="lhs"></param>
        /// <param name="rhs"></param>
        /// <returns></returns>
        public static BigFlags operator &( BigFlags lhs, BigFlags rhs )
        {
            var result = new BigFlags();
#if NUMERICS
            result.Value = lhs.Value & rhs.Value;
#else
            // BitArray is modified in place - always copy!
            result.Array = new BitArray( lhs.Bits ).And( rhs.Bits );
#endif

            return result;
        }

        /// <summary>
        /// XOR operator. Xor together BigFlags instances.
        /// </summary>
        /// <param name="lhs"></param>
        /// <param name="rhs"></param>
        /// <returns></returns>
        public static BigFlags operator ^( BigFlags lhs, BigFlags rhs )
        {
            var result = new BigFlags();
#if NUMERICS
            result.Value = lhs.Value ^ rhs.Value;
#else
            // BitArray is modified in place - always copy!
            result.Array = new BitArray( lhs.Bits ).Xor( rhs.Bits );
#endif

            return result;
        }

        /// <summary>
        /// Equality operator.
        /// </summary>
        /// <param name="lhs"></param>
        /// <param name="rhs"></param>
        /// <returns></returns>
        public static bool operator ==( BigFlags lhs, BigFlags rhs )
        {
            return lhs.Equals( rhs );
        }

        /// <summary>
        /// Inequality operator.
        /// </summary>
        /// <param name="lhs"></param>
        /// <param name="rhs"></param>
        /// <returns></returns>
        public static bool operator !=( BigFlags lhs, BigFlags rhs )
        {
            return !( lhs == rhs );
        }
        #endregion ...Operators

        #region System.Object Overrides...

        /// <summary>
        /// Overridden. Returns a comma-separated string.
        /// </summary>
        /// <returns></returns>
        public override string ToString()
        {
#if NUMERICS
            if( ZeroInit && Value == 0 )
            {
                return Fields[0].Name;
            }
#endif
            var names = new List<string>();
            for( int i = 0; i < Fields.Count; i++ )
            {
#if NUMERICS
                if( ZeroInit && i == 0 )
                    continue;

                var bi = CreateValue( i );
                if( ( Value & bi ) ==  bi )
                    names.Add( Fields[i].Name );
#else
                if( Bits[i] )
                    names.Add( Fields[i].Name );
#endif
            }

            return String.Join( ", ", names );
        }

        /// <summary>
        /// Overridden. Compares equality with another object.
        /// </summary>
        /// <param name="obj"></param>
        /// <returns></returns>
        public override bool Equals( object obj )
        {
            if( obj is BigFlags )
            {
                return Equals( (BigFlags)obj );
            }

            return false;
        }

        /// <summary>
        /// Overridden. Gets the hash code of the internal BitArray.
        /// </summary>
        /// <returns></returns>
        public override int GetHashCode()
        {
#if NUMERICS
            return Value.GetHashCode();
#else
            int hash = 17;
            for( int i = 0; i < Bits.Length; i++ )
            {
                if( Bits[i] )
                    hash ^= i;
            }

            return hash;
#endif
        }
        #endregion ...System.Object Overrides

        #region IEquatable<BigFlags> Members...

        /// <summary>
        /// Strongly-typed equality method.
        /// </summary>
        /// <param name="other"></param>
        /// <returns></returns>
        public bool Equals( BigFlags other )
        {
#if NUMERICS
            return Value == other.Value;
#else
            for( int i = 0; i < Bits.Length; i++ )
            {
                if( Bits[i] != other.Bits[i] )
                    return false;
            }

            return true;
#endif
        }
        #endregion ...IEquatable<BigFlags> Members

        #region IComparable<BigFlags> Members...

        /// <summary>
        /// Compares based on highest bit set. Instance with higher
        /// bit set is bigger.
        /// </summary>
        /// <param name="other"></param>
        /// <returns></returns>
        public int CompareTo( BigFlags other )
        {
#if NUMERICS
            return Value.CompareTo( other.Value );
#else
            for( int i = Bits.Length - 1; i >= 0; i-- )
            {
                bool thisVal = Bits[i];
                bool otherVal = other.Bits[i];
                if( thisVal && !otherVal )
                    return 1;
                else if( !thisVal && otherVal )
                    return -1;
            }

            return 0;
#endif
        }
        #endregion ...IComparable<BigFlags> Members

        #region IComparable Members...

        int IComparable.CompareTo( object obj )
        {
            if( obj is BigFlags )
            {
                return CompareTo( (BigFlags)obj );
            }

            return -1;
        }
        #endregion ...IComparable Members

        #region IConvertible Members...

        /// <summary>
        /// Returns TypeCode.Object.
        /// </summary>
        /// <returns></returns>
        public TypeCode GetTypeCode()
        {
            return TypeCode.Object;
        }

        bool IConvertible.ToBoolean( IFormatProvider provider )
        {
            throw new NotSupportedException();
        }

        byte IConvertible.ToByte( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToByte( Value );
#else
            throw new NotSupportedException();
#endif
        }

        char IConvertible.ToChar( IFormatProvider provider )
        {
            throw new NotSupportedException();
        }

        DateTime IConvertible.ToDateTime( IFormatProvider provider )
        {
            throw new NotSupportedException();
        }

        decimal IConvertible.ToDecimal( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToDecimal( Value );
#else
            throw new NotSupportedException();
#endif
        }

        double IConvertible.ToDouble( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToDouble( Value );
#else
            throw new NotSupportedException();
#endif
        }

        short IConvertible.ToInt16( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToInt16( Value );
#else
            throw new NotSupportedException();
#endif
        }

        int IConvertible.ToInt32( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToInt32( Value );
#else
            throw new NotSupportedException();
#endif
        }

        long IConvertible.ToInt64( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToInt64( Value );
#else
            throw new NotSupportedException();
#endif
        }

        sbyte IConvertible.ToSByte( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToSByte( Value );
#else
            throw new NotSupportedException();
#endif
        }

        float IConvertible.ToSingle( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToSingle( Value );
#else
            throw new NotSupportedException();
#endif
        }

        string IConvertible.ToString( IFormatProvider provider )
        {
            return ToString();
        }

        object IConvertible.ToType( Type conversionType, IFormatProvider provider )
        {
            var tc = TypeDescriptor.GetConverter( this );

            return tc.ConvertTo( this, conversionType );
        }

        ushort IConvertible.ToUInt16( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToUInt16( Value );
#else
            throw new NotSupportedException();
#endif
        }

        uint IConvertible.ToUInt32( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToUInt32( Value );
#else
            throw new NotSupportedException();
#endif
        }

        ulong IConvertible.ToUInt64( IFormatProvider provider )
        {
#if NUMERICS
            return Convert.ToUInt64( Value );
#else
            throw new NotSupportedException();
#endif
        }
        #endregion ...IConvertible Members

        #region Public Interface...

        /// <summary>
        /// Checks <paramref name="flags"/> to see if all the bits set in
        /// that flags are also set in this flags.
        /// </summary>
        /// <param name="flags"></param>
        /// <returns></returns>
        public bool HasFlag( BigFlags flags )
        {
            return ( this & flags ) == flags;
        }

        /// <summary>
        /// Gets the names of this BigFlags enumerated type.
        /// </summary>
        /// <returns></returns>
        public static string[] GetNames()
        {
            return Fields.Select( x => x.Name ).ToArray();
        }

        /// <summary>
        /// Gets all the values of this BigFlags enumerated type.
        /// </summary>
        /// <returns></returns>
        public static BigFlags[] GetValues()
        {
            return FieldValues.ToArray();
        }

        /// <summary>
        /// Standard TryParse pattern. Parses a BigFlags result from a string.
        /// </summary>
        /// <param name="s"></param>
        /// <param name="result"></param>
        /// <returns></returns>
        public static bool TryParse( string s, out BigFlags result )
        {
            result = new BigFlags();
            if( String.IsNullOrEmpty( s ) )
                return true;

            var fieldNames = s.Split( ',' );
            foreach( var f in fieldNames )
            {
                var field = Fields.FirstOrDefault( x =>
                    String.Equals( x.Name, f.Trim(),
                    StringComparison.OrdinalIgnoreCase ) );
                if( null == field )
                {
                    result = new BigFlags();
                    return false;
                }
#if NUMERICS
                int i = Fields.IndexOf( field );
                result.Value |= CreateValue( i );
#else
                result.Bits.Set( Fields.IndexOf( field ), true );
#endif
            }

            return true;
        }

        //
        // Expose "enums" as public static readonly fields.
        // TODO: Replace this section with your "enum" values.
        //
        public static readonly BigFlags None;
        public static readonly BigFlags FirstValue;
        public static readonly BigFlags ValueTwo;
        public static readonly BigFlags ValueThree;
        public static readonly BigFlags ValueFour;
        public static readonly BigFlags ValueFive;
        public static readonly BigFlags ValueSix;
        public static readonly BigFlags LastValue;

        /// <summary>
        /// Expose flagged combinations as get-only properties.
        /// </summary>
        public static BigFlags FirstLast
        {
            get
            {
                return BigFlags.FirstValue | BigFlags.LastValue;
            }
        }
        #endregion ...Public Interface
    }

    /// <summary>
    /// Converts objects to and from BigFlags instances.
    /// </summary>
    public class BigFlagsConverter : TypeConverter
    {
        /// <summary>
        /// Can convert to string only.
        /// </summary>
        /// <param name="context"></param>
        /// <param name="destinationType"></param>
        /// <returns></returns>
        public override bool CanConvertTo( ITypeDescriptorContext context,
            Type destinationType )
        {
            return destinationType == typeof( String );
        }

        /// <summary>
        /// Can convert from any object.
        /// </summary>
        /// <param name="context"></param>
        /// <param name="sourceType"></param>
        /// <returns></returns>
        public override bool CanConvertFrom( ITypeDescriptorContext context,
            Type sourceType )
        {
            return true;
        }

        /// <summary>
        /// Converts BigFlags to a string.
        /// </summary>
        /// <param name="context"></param>
        /// <param name="culture"></param>
        /// <param name="value"></param>
        /// <param name="destinationType"></param>
        /// <returns></returns>
        public override object ConvertTo( ITypeDescriptorContext context,
            CultureInfo culture, object value, Type destinationType )
        {
            if( value is BigFlags && CanConvertTo( destinationType ) )
                return value.ToString();

            return null;
        }

        /// <summary>
        /// Attempts to parse <paramref name="value"/> and create and
        /// return a new BigFlags instance.
        /// </summary>
        /// <param name="context"></param>
        /// <param name="culture"></param>
        /// <param name="value"></param>
        /// <returns></returns>
        public override object ConvertFrom( ITypeDescriptorContext context,
            CultureInfo culture, object value )
        {
            var s = Convert.ToString( value );
            BigFlags result;
            BigFlags.TryParse( s, out result );

            return result;
        }
    }
}
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Dav*_*sha 7

不是您问题的答案,而是相关建议:我们使用位移来指定数值,如下所示:

[Flags]
public enum MyEnumFlags : Int64
{
    None = 0,
    A = 1 << 0,
    B = 1 << 1,
    C = 1 << 2,
    D = 1 << 3,
    E = 1 << 4,
    F = 1 << 5,
    ...etc...
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前十个不是那么重要,但之后它变得非常方便。


mqp*_*mqp 5

在C#中,一种表示枚举但更灵活的值的灵活方法是将其表示为具有可用预煮值的静态类,如下所示:

public sealed class WebAgentPermission
{
    private long ID;

    public static readonly WebAgentPermission
        ViewRuleGroup = new WebAgentPermission { ID = 1 };
    public static readonly WebAgentPermission
        AddRuleGroup  = new WebAgentPermission { ID = 2 };

    private WebAgentPermission() { } 

    // considerations: override equals/gethashcode, probably override tostring,
    // maybe implicit cast to/from long, maybe other stuff
}
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或者,只是分开东西; 看起来你可以,如果你真的尝试过.