Type Class

Definition

Represents type declarations: class types, interface types, array types, value types, enumeration types, type parameters, generic type definitions, and open or closed constructed generic types.

[System.Runtime.InteropServices.ClassInterface(System.Runtime.InteropServices.ClassInterfaceType.None)]
[System.Runtime.InteropServices.ComVisible(true)]
public abstract class Type : System.Reflection.MemberInfo, System.Reflection.IReflect, System.Runtime.InteropServices._Type
Inheritance
Derived
Attributes
Implements

Inherited Members

System.Object

System.Reflection.MemberInfo

Examples

The following example shows a few representative features of Type. The C# typeof operator (GetType operator in Visual Basic, typeid operator in Visual C++) is used to get a Type object representing String. From this Type object, the GetMethod method is used to get a MethodInfo representing the Substring overload that takes a starting location and a length.

To identify the overload signature, the code example creates a temporary array containing two Type objects representing int (Integer in Visual Basic).

Note

To be precise, the array contains two references to the instance of Type that represents int in the current application domain. For any type, there is only one instance of Type per application domain.

The code example uses the MethodInfo to invoke the Substring method on the string "Hello, World!", and displays the result.

#using <System.dll>

using namespace System;
using namespace System::Reflection;

void main()
{
    // Get a Type object representing the System.String type.
    Type^ t = String::typeid;

    MethodInfo^ substr = t->GetMethod("Substring", 
        gcnew array<Type^> { int::typeid, int::typeid });

    Object^ result = 
        substr->Invoke("Hello, World!", gcnew array<Object^> { 7, 5 });
    Console::WriteLine("{0} returned \"{1}\".", substr, result);
}

/* This code example produces the following output:

System.String Substring(Int32, Int32) returned "World".
 */
using System;
using System.Reflection;

class Example
{
    static void Main()
    {
        Type t = typeof(String);

        MethodInfo substr = t.GetMethod("Substring", 
            new Type[] { typeof(int), typeof(int) });

        Object result = 
            substr.Invoke("Hello, World!", new Object[] { 7, 5 });
        Console.WriteLine("{0} returned \"{1}\".", substr, result);
    }
}

/* This code example produces the following output:

System.String Substring(Int32, Int32) returned "World".
 */
Imports System
Imports System.Reflection

Module Example
    
    Sub Main() 

        Dim t As Type = GetType(String)
        
        Dim substr As MethodInfo = t.GetMethod("Substring", _
            New Type() { GetType(Integer), GetType(Integer) })
        
        Dim result As Object = _ 
            substr.Invoke("Hello, World!", New Object() { 7, 5 })
        Console.WriteLine("{0} returned ""{1}"".", substr, result)
    
    End Sub 
End Module

' This code example produces the following output:
'
'System.String Substring(Int32, Int32) returned "World".

Remarks

Note

To view the .NET Framework source code for this type, see the Reference Source. You can browse through the source code online, download the reference for offline viewing, and step through the sources (including patches and updates) during debugging; see instructions.

Type is the root of the System.Reflection functionality and is the primary way to access metadata. Use the members of Type to get information about a type declaration, about the members of a type (such as the constructors, methods, fields, properties, and events of a class), as well as the module and the assembly in which the class is deployed.

No permissions are required for code to use reflection to get information about types and their members, regardless of their access levels. No permissions are required for code to use reflection to access public members, or other members whose access levels would make them visible during normal compilation. However, in order for your code to use reflection to access members that would normally be inaccessible, such as private or internal methods, or protected fields of a type your class does not inherit, your code must have ReflectionPermission. See Security Considerations for Reflection.

Type is an abstract base class that allows multiple implementations. The system will always provide the derived class RuntimeType. In reflection, all classes beginning with the word Runtime are created only once per object in the system and support comparison operations.

Note

In multithreading scenarios, do not lock Type objects in order to synchronize access to static data. Other code, over which you have no control, might also lock your class type. This might result in a deadlock. Instead, synchronize access to static data by locking a private static object.

Note

A derived class can access protected members of the calling code's base classes. Also, access is allowed to assembly members of the calling code's assembly. As a rule, if you are allowed access in early-bound code, then you are also allowed access in late-bound code.

Note

Interfaces that extend other interfaces do not inherit the methods defined in the extended interfaces.

In this section:

What types does a Type object represent?
Retrieving a Type object
Comparing type objects for equality

What types does a Type object represent?

This class is thread safe; multiple threads can concurrently read from an instance of this type. An instance of the Type class can represent any of the following types:

  • Classes

  • Value types

  • Arrays

  • Interfaces

  • Enumerations

  • Delegates

  • Constructed generic types and generic type definitions

  • Type arguments and type parameters of constructed generic types, generic type definitions, and generic method definitions

Retrieving a Type object

The Type object associated with a particular type can be obtained in the following ways:

  • The instance System.Object.GetType method returns a Type object that represents the type of an instance. Because all managed types derive from Object, the GetType method can be called on an instance of any type.

    The following example calls the System.Object.GetType method to determine the runtime type of each object in an object array.

    using namespace System;
    
    void main()
    {
       array<Object^>^ values = { "word", true, 120, 136.34 };
       for each (Object^ value in values)
          Console::WriteLine("{0} - type {1}", value, 
                            value->GetType()->Name);
    }
    // The example displays the following output:
    //       word - type String
    //       True - type Boolean
    //       120 - type Int32
    //       136.34 - type Double
    
    using System;
    
    public class Example
    {
       public static void Main()
       {
          object[] values = { "word", true, 120, 136.34, 'a' };
          foreach (var value in values)
             Console.WriteLine("{0} - type {1}", value, 
                               value.GetType().Name);
       }
    }
    // The example displays the following output:
    //       word - type String
    //       True - type Boolean
    //       120 - type Int32
    //       136.34 - type Double
    //       a - type Char
    
    Module Example
       Public Sub Main()
          Dim values() As Object = { "word", True, 120, 136.34, "a"c }
          For Each value In values
             Console.WriteLine("{0} - type {1}", value, 
                               value.GetType().Name)
          Next
       End Sub
    End Module
    ' The example displays the following output:
    '       word - type String
    '       True - type Boolean
    '       120 - type Int32
    '       136.34 - type Double
    '       a - type Char
    
  • The static System.Type.GetType methods return a Type object that represents a type specified by its fully qualified name.

  • The System.Reflection.Module.GetTypes, System.Reflection.Module.GetType, and System.Reflection.Module.FindTypes methods return Type objects that represent the types defined in a module. The first method can be used to obtain an array of Type objects for all the public and private types defined in a module. (You can obtain an instance of Module through the System.Reflection.Assembly.GetModule or System.Reflection.Assembly.GetModules method, or through the System.Type.Module property.)

  • The System.Reflection.Assembly object contains a number of methods to retrieve the classes defined in an assembly, including System.Reflection.Assembly.GetType, System.Reflection.Assembly.GetTypes, and System.Reflection.Assembly.GetExportedTypes.

  • The FindInterfaces method returns a filtered list of interface types supported by a type.

  • The GetElementType method returns a Type object that represents the element.

  • The GetInterfaces and GetInterface methods return Type objects representing the interface types supported by a type.

  • The GetTypeArray method returns an array of Type objects representing the types specified by an arbitrary set of objects. The objects are specified with an array of type Object.

  • The GetTypeFromProgID and GetTypeFromCLSID methods are provided for COM interoperability. They return a Type object that represents the type specified by a ProgID or CLSID.

  • The GetTypeFromHandle method is provided for interoperability. It returns a Type object that represents the type specified by a class handle.

  • The C# typeof operator, the C++ typeid operator, and the Visual Basic GetType operator obtain the Type object for a type.

  • The MakeGenericType method returns a Type object representing a constructed generic type, which is an open constructed type if its ContainsGenericParameters property returns true, and a closed constructed type otherwise. A generic type can be instantiated only if it is closed.

  • The MakeArrayType, MakePointerType, and MakeByRefType methods return Type objects that represent, respectively, an array of a specified type, a pointer to a specified type, and the type of a reference parameter (ref in C#, ByRef in Visual Basic).

Comparing type objects for equality

A Type object that represents a type is unique; that is, two Type object references refer to the same object if and only if they represent the same type. This allows for comparison of Type objects using reference equality. The following example compares the Type objects that represent a number of integer values to determine whether they are of the same type.

using namespace System;

void main()
{
   Int64 number1 = 1635429;
   Int32 number2 = 16203;
   double number3 = 1639.41;
   Int64 number4 = 193685412;
   
   // Get the type of number1.
   Type^ t = number1.GetType();
   
   // Compare types of all objects with number1.
   Console::WriteLine("Type of number1 and number2 are equal: {0}",
                      Object::ReferenceEquals(t, number2.GetType()));
   Console::WriteLine("Type of number1 and number3 are equal: {0}",
                      Object::ReferenceEquals(t, number3.GetType()));
   Console::WriteLine("Type of number1 and number4 are equal: {0}",
                      Object::ReferenceEquals(t, number4.GetType()));
}
// The example displays the following output:
//       Type of number1 and number2 are equal: False
//       Type of number1 and number3 are equal: False
//       Type of number1 and number4 are equal: True
using System;

public class Example
{
   public static void Main()
   {
      long number1 = 1635429;
      int number2 = 16203;
      double number3 = 1639.41;
      long number4 = 193685412;
      
      // Get the type of number1.
      Type t = number1.GetType();
      
      // Compare types of all objects with number1.
      Console.WriteLine("Type of number1 and number2 are equal: {0}",
                        Object.ReferenceEquals(t, number2.GetType()));
      Console.WriteLine("Type of number1 and number3 are equal: {0}",
                        Object.ReferenceEquals(t, number3.GetType()));
      Console.WriteLine("Type of number1 and number4 are equal: {0}",
                        Object.ReferenceEquals(t, number4.GetType()));
   }
}
// The example displays the following output:
//       Type of number1 and number2 are equal: False
//       Type of number1 and number3 are equal: False
//       Type of number1 and number4 are equal: True
Module Example
   Public Sub Main()
      Dim number1 As Long = 1635429
      Dim number2 As Integer = 16203
      Dim number3 As Double = 1639.41
      Dim number4 As Long = 193685412
      
      ' Get the type of number1.
      Dim t As Type = number1.GetType()
      
      ' Compare types of all objects with number1.
      Console.WriteLine("Type of number1 and number2 are equal: {0}",
                        Object.ReferenceEquals(t, number2.GetType()))
      Console.WriteLine("Type of number1 and number3 are equal: {0}",
                        Object.ReferenceEquals(t, number3.GetType()))
      Console.WriteLine("Type of number1 and number4 are equal: {0}",
                        Object.ReferenceEquals(t, number4.GetType()))
   End Sub
End Module
' The example displays the following output:
'       Type of number1 and number2 are equal: False
'       Type of number1 and number3 are equal: False
'       Type of number1 and number4 are equal: True

Constructors

Type()

Initializes a new instance of the Type class.

Fields

Delimiter

Separates names in the namespace of the Type. This field is read-only.

Empty​Types

Represents an empty array of type Type. This field is read-only.

Filter​Attribute

Represents the member filter used on attributes. This field is read-only.

Filter​Name

Represents the case-sensitive member filter used on names. This field is read-only.

Filter​Name​Ignore​Case

Represents the case-insensitive member filter used on names. This field is read-only.

Missing

Represents a missing value in the Type information. This field is read-only.

Properties

Assembly

Gets the Assembly in which the type is declared. For generic types, gets the Assembly in which the generic type is defined.

Assembly​Qualified​Name

Gets the assembly-qualified name of the type, which includes the name of the assembly from which this Type object was loaded.

Attributes

Gets the attributes associated with the Type.

Base​Type

Gets the type from which the current Type directly inherits.

Contains​Generic​Parameters

Gets a value indicating whether the current Type object has type parameters that have not been replaced by specific types.

Declaring​Method

Gets a MethodBase that represents the declaring method, if the current Type represents a type parameter of a generic method.

Declaring​Type

Gets the type that declares the current nested type or generic type parameter.

Default​Binder

Gets a reference to the default binder, which implements internal rules for selecting the appropriate members to be called by InvokeMember(String, BindingFlags, Binder, Object, Object[], ParameterModifier[], CultureInfo, String[]).

Full​Name

Gets the fully qualified name of the type, including its namespace but not its assembly.

Generic​Parameter​Attributes

Gets a combination of GenericParameterAttributes flags that describe the covariance and special constraints of the current generic type parameter.

Generic​Parameter​Position

Gets the position of the type parameter in the type parameter list of the generic type or method that declared the parameter, when the Type object represents a type parameter of a generic type or a generic method.

Generic​Type​Arguments

Gets an array of the generic type arguments for this type.

G​UI​D

Gets the GUID associated with the Type.

Has​Element​Type

Gets a value indicating whether the current Type encompasses or refers to another type; that is, whether the current Type is an array, a pointer, or is passed by reference.

Is​Abstract

Gets a value indicating whether the Type is abstract and must be overridden.

Is​Ansi​Class

Gets a value indicating whether the string format attribute AnsiClass is selected for the Type.

Is​Array

Gets a value that indicates whether the type is an array.

Is​Auto​Class

Gets a value indicating whether the string format attribute AutoClass is selected for the Type.

Is​Auto​Layout

Gets a value indicating whether the fields of the current type are laid out automatically by the common language runtime.

Is​By​Ref

Gets a value indicating whether the Type is passed by reference.

Is​Class

Gets a value indicating whether the Type is a class or a delegate; that is, not a value type or interface.

Is​CO​MObject

Gets a value indicating whether the Type is a COM object.

Is​Constructed​Generic​Type

Gets a value that indicates whether this object represents a constructed generic type. You can create instances of a constructed generic type.

Is​Contextful

Gets a value indicating whether the Type can be hosted in a context.

Is​Enum

Gets a value indicating whether the current Type represents an enumeration.

Is​Explicit​Layout

Gets a value indicating whether the fields of the current type are laid out at explicitly specified offsets.

Is​Generic​Parameter

Gets a value indicating whether the current Type represents a type parameter in the definition of a generic type or method.

Is​Generic​Type

Gets a value indicating whether the current type is a generic type.

Is​Generic​Type​Definition

Gets a value indicating whether the current Type represents a generic type definition, from which other generic types can be constructed.

Is​Import

Gets a value indicating whether the Type has a ComImportAttribute attribute applied, indicating that it was imported from a COM type library.

Is​Interface

Gets a value indicating whether the Type is an interface; that is, not a class or a value type.

Is​Layout​Sequential

Gets a value indicating whether the fields of the current type are laid out sequentially, in the order that they were defined or emitted to the metadata.

Is​Marshal​By​Ref

Gets a value indicating whether the Type is marshaled by reference.

Is​Nested

Gets a value indicating whether the current Type object represents a type whose definition is nested inside the definition of another type.

Is​Nested​Assembly

Gets a value indicating whether the Type is nested and visible only within its own assembly.

Is​Nested​Fam​AN​DAssem

Gets a value indicating whether the Type is nested and visible only to classes that belong to both its own family and its own assembly.

Is​Nested​Family

Gets a value indicating whether the Type is nested and visible only within its own family.

Is​Nested​Fam​OR​Assem

Gets a value indicating whether the Type is nested and visible only to classes that belong to either its own family or to its own assembly.

Is​Nested​Private

Gets a value indicating whether the Type is nested and declared private.

Is​Nested​Public

Gets a value indicating whether a class is nested and declared public.

Is​Not​Public

Gets a value indicating whether the Type is not declared public.

Is​Pointer

Gets a value indicating whether the Type is a pointer.

Is​Primitive

Gets a value indicating whether the Type is one of the primitive types.

Is​Public

Gets a value indicating whether the Type is declared public.

Is​Sealed

Gets a value indicating whether the Type is declared sealed.

Is​Security​Critical

Gets a value that indicates whether the current type is security-critical or security-safe-critical at the current trust level, and therefore can perform critical operations.

Is​Security​Safe​Critical

Gets a value that indicates whether the current type is security-safe-critical at the current trust level; that is, whether it can perform critical operations and can be accessed by transparent code.

Is​Security​Transparent

Gets a value that indicates whether the current type is transparent at the current trust level, and therefore cannot perform critical operations.

Is​Serializable

Gets a value indicating whether the Type is serializable.

Is​Special​Name

Gets a value indicating whether the type has a name that requires special handling.

Is​SZ​Array
Is​Type​Definition
Is​Unicode​Class

Gets a value indicating whether the string format attribute UnicodeClass is selected for the Type.

Is​Value​Type

Gets a value indicating whether the Type is a value type.

Is​Variable​Bound​Array
Is​Visible

Gets a value indicating whether the Type can be accessed by code outside the assembly.

Member​Type

Gets a MemberTypes value indicating that this member is a type or a nested type.

Module

Gets the module (the DLL) in which the current Type is defined.

Name
Namespace

Gets the namespace of the Type.

Reflected​Type

Gets the class object that was used to obtain this member.

Struct​Layout​Attribute

Gets a StructLayoutAttribute that describes the layout of the current type.

Type​Handle

Gets the handle for the current Type.

Type​Initializer

Gets the initializer for the type.

Underlying​System​Type

Indicates the type provided by the common language runtime that represents this type.

Methods

Equals(​Object)

Determines if the underlying system type of the current Type object is the same as the underlying system type of the specified Object.

Equals(​Type)

Determines if the underlying system type of the current Type is the same as the underlying system type of the specified Type.

Find​Interfaces(​Type​Filter, ​Object)

Returns an array of Type objects representing a filtered list of interfaces implemented or inherited by the current Type.

Find​Members(​Member​Types, ​Binding​Flags, ​Member​Filter, ​Object)

Returns a filtered array of MemberInfo objects of the specified member type.

Get​Array​Rank()

Gets the number of dimensions in an array.

Get​Attribute​Flags​Impl()

When overridden in a derived class, implements the Attributes property and gets a bitmask indicating the attributes associated with the Type.

Get​Constructor(​Type[])

Searches for a public instance constructor whose parameters match the types in the specified array.

Get​Constructor(​Binding​Flags, ​Binder, ​Type[], ​Parameter​Modifier[])

Searches for a constructor whose parameters match the specified argument types and modifiers, using the specified binding constraints.

Get​Constructor(​Binding​Flags, ​Binder, ​Calling​Conventions, ​Type[], ​Parameter​Modifier[])

Searches for a constructor whose parameters match the specified argument types and modifiers, using the specified binding constraints and the specified calling convention.

Get​Constructor​Impl(​Binding​Flags, ​Binder, ​Calling​Conventions, ​Type[], ​Parameter​Modifier[])

When overridden in a derived class, searches for a constructor whose parameters match the specified argument types and modifiers, using the specified binding constraints and the specified calling convention.

Get​Constructors()

Returns all the public constructors defined for the current Type.

Get​Constructors(​Binding​Flags)

When overridden in a derived class, searches for the constructors defined for the current Type, using the specified BindingFlags.

Get​Default​Members()

Searches for the members defined for the current Type whose DefaultMemberAttribute is set.

Get​Element​Type()

When overridden in a derived class, returns the Type of the object encompassed or referred to by the current array, pointer or reference type.

Get​Enum​Name(​Object)

Returns the name of the constant that has the specified value, for the current enumeration type.

Get​Enum​Names()

Returns the names of the members of the current enumeration type.

Get​Enum​Underlying​Type()

Returns the underlying type of the current enumeration type.

Get​Enum​Values()

Returns an array of the values of the constants in the current enumeration type.

Get​Event(​String)

Returns the EventInfo object representing the specified public event.

Get​Event(​String, ​Binding​Flags)

When overridden in a derived class, returns the EventInfo object representing the specified event, using the specified binding constraints.

Get​Events()

Returns all the public events that are declared or inherited by the current Type.

Get​Events(​Binding​Flags)

When overridden in a derived class, searches for events that are declared or inherited by the current Type, using the specified binding constraints.

Get​Field(​String)

Searches for the public field with the specified name.

Get​Field(​String, ​Binding​Flags)

Searches for the specified field, using the specified binding constraints.

Get​Fields()

Returns all the public fields of the current Type.

Get​Fields(​Binding​Flags)

When overridden in a derived class, searches for the fields defined for the current Type, using the specified binding constraints.

Get​Generic​Arguments()

Returns an array of Type objects that represent the type arguments of a closed generic type or the type parameters of a generic type definition.

Get​Generic​Parameter​Constraints()

Returns an array of Type objects that represent the constraints on the current generic type parameter.

Get​Generic​Type​Definition()

Returns a Type object that represents a generic type definition from which the current generic type can be constructed.

Get​Hash​Code()

Returns the hash code for this instance.

Get​Interface(​String)

Searches for the interface with the specified name.

Get​Interface(​String, ​Boolean)

When overridden in a derived class, searches for the specified interface, specifying whether to do a case-insensitive search for the interface name.

Get​Interface​Map(​Type)

Returns an interface mapping for the specified interface type.

Get​Interfaces()

When overridden in a derived class, gets all the interfaces implemented or inherited by the current Type.

Get​Member(​String)

Searches for the public members with the specified name.

Get​Member(​String, ​Binding​Flags)

Searches for the specified members, using the specified binding constraints.

Get​Member(​String, ​Member​Types, ​Binding​Flags)

Searches for the specified members of the specified member type, using the specified binding constraints.

Get​Members()

Returns all the public members of the current Type.

Get​Members(​Binding​Flags)

When overridden in a derived class, searches for the members defined for the current Type, using the specified binding constraints.

Get​Method(​String, ​Binding​Flags, ​Binder, ​Calling​Conventions, ​Type[], ​Parameter​Modifier[])

Searches for the specified method whose parameters match the specified argument types and modifiers, using the specified binding constraints and the specified calling convention.

Get​Method(​String, ​Binding​Flags, ​Binder, ​Type[], ​Parameter​Modifier[])

Searches for the specified method whose parameters match the specified argument types and modifiers, using the specified binding constraints.

Get​Method(​String, ​Type[], ​Parameter​Modifier[])

Searches for the specified public method whose parameters match the specified argument types and modifiers.

Get​Method(​String)

Searches for the public method with the specified name.

Get​Method(​String, ​Binding​Flags)

Searches for the specified method, using the specified binding constraints.

Get​Method(​String, ​Type[])

Searches for the specified public method whose parameters match the specified argument types.

Get​Method​Impl(​String, ​Binding​Flags, ​Binder, ​Calling​Conventions, ​Type[], ​Parameter​Modifier[])

When overridden in a derived class, searches for the specified method whose parameters match the specified argument types and modifiers, using the specified binding constraints and the specified calling convention.

Get​Methods()

Returns all the public methods of the current Type.

Get​Methods(​Binding​Flags)

When overridden in a derived class, searches for the methods defined for the current Type, using the specified binding constraints.

Get​Nested​Type(​String, ​Binding​Flags)

When overridden in a derived class, searches for the specified nested type, using the specified binding constraints.

Get​Nested​Type(​String)

Searches for the public nested type with the specified name.

Get​Nested​Types(​Binding​Flags)

When overridden in a derived class, searches for the types nested in the current Type, using the specified binding constraints.

Get​Nested​Types()

Returns the public types nested in the current Type.

Get​Properties()

Returns all the public properties of the current Type.

Get​Properties(​Binding​Flags)

When overridden in a derived class, searches for the properties of the current Type, using the specified binding constraints.

Get​Property(​String)

Searches for the public property with the specified name.

Get​Property(​String, ​Binding​Flags)

Searches for the specified property, using the specified binding constraints.

Get​Property(​String, ​Type)

Searches for the public property with the specified name and return type.

Get​Property(​String, ​Type[])

Searches for the specified public property whose parameters match the specified argument types.

Get​Property(​String, ​Type, ​Type[])

Searches for the specified public property whose parameters match the specified argument types.

Get​Property(​String, ​Type, ​Type[], ​Parameter​Modifier[])

Searches for the specified public property whose parameters match the specified argument types and modifiers.

Get​Property(​String, ​Binding​Flags, ​Binder, ​Type, ​Type[], ​Parameter​Modifier[])

Searches for the specified property whose parameters match the specified argument types and modifiers, using the specified binding constraints.

Get​Property​Impl(​String, ​Binding​Flags, ​Binder, ​Type, ​Type[], ​Parameter​Modifier[])

When overridden in a derived class, searches for the specified property whose parameters match the specified argument types and modifiers, using the specified binding constraints.

Get​Type(​String, ​Func<​Assembly​Name,​Assembly>, ​Func<​Assembly,​String,​Boolean,​Type>, ​Boolean, ​Boolean)

Gets the type with the specified name, specifying whether to perform a case-sensitive search and whether to throw an exception if the type is not found, and optionally providing custom methods to resolve the assembly and the type.

Get​Type(​String, ​Func<​Assembly​Name,​Assembly>, ​Func<​Assembly,​String,​Boolean,​Type>, ​Boolean)

Gets the type with the specified name, specifying whether to throw an exception if the type is not found, and optionally providing custom methods to resolve the assembly and the type.

Get​Type(​String, ​Func<​Assembly​Name,​Assembly>, ​Func<​Assembly,​String,​Boolean,​Type>)

Gets the type with the specified name, optionally providing custom methods to resolve the assembly and the type.

Get​Type()

Gets the current Type.

Get​Type(​String, ​Boolean)

Gets the Type with the specified name, performing a case-sensitive search and specifying whether to throw an exception if the type is not found.

Get​Type(​String)

Gets the Type with the specified name, performing a case-sensitive search.

Get​Type(​String, ​Boolean, ​Boolean)

Gets the Type with the specified name, specifying whether to throw an exception if the type is not found and whether to perform a case-sensitive search.

Get​Type​Array(​Object[])

Gets the types of the objects in the specified array.

Get​Type​Code(​Type)

Gets the underlying type code of the specified Type.

Get​Type​Code​Impl()

Returns the underlying type code of this Type instance.

Get​Type​From​CL​SI​D(​Guid, ​String, ​Boolean)

Gets the type associated with the specified class identifier (CLSID) from the specified server, specifying whether to throw an exception if an error occurs while loading the type.

Get​Type​From​CL​SI​D(​Guid, ​String)

Gets the type associated with the specified class identifier (CLSID) from the specified server.

Get​Type​From​CL​SI​D(​Guid, ​Boolean)

Gets the type associated with the specified class identifier (CLSID), specifying whether to throw an exception if an error occurs while loading the type.

Get​Type​From​CL​SI​D(​Guid)

Gets the type associated with the specified class identifier (CLSID).

Get​Type​From​Handle(​Runtime​Type​Handle)

Gets the type referenced by the specified type handle.

Get​Type​From​Prog​ID(​String)

Gets the type associated with the specified program identifier (ProgID), returning null if an error is encountered while loading the Type.

Get​Type​From​Prog​ID(​String, ​Boolean)

Gets the type associated with the specified program identifier (ProgID), specifying whether to throw an exception if an error occurs while loading the type.

Get​Type​From​Prog​ID(​String, ​String)

Gets the type associated with the specified program identifier (progID) from the specified server, returning null if an error is encountered while loading the type.

Get​Type​From​Prog​ID(​String, ​String, ​Boolean)

Gets the type associated with the specified program identifier (progID) from the specified server, specifying whether to throw an exception if an error occurs while loading the type.

Get​Type​Handle(​Object)

Gets the handle for the Type of a specified object.

Has​Element​Type​Impl()

When overridden in a derived class, implements the HasElementType property and determines whether the current Type encompasses or refers to another type; that is, whether the current Type is an array, a pointer, or is passed by reference.

Invoke​Member(​String, ​Binding​Flags, ​Binder, ​Object, ​Object[], ​Parameter​Modifier[], ​Culture​Info, ​String[])

When overridden in a derived class, invokes the specified member, using the specified binding constraints and matching the specified argument list, modifiers and culture.

Invoke​Member(​String, ​Binding​Flags, ​Binder, ​Object, ​Object[])

Invokes the specified member, using the specified binding constraints and matching the specified argument list.

Invoke​Member(​String, ​Binding​Flags, ​Binder, ​Object, ​Object[], ​Culture​Info)

Invokes the specified member, using the specified binding constraints and matching the specified argument list and culture.

Is​Array​Impl()

When overridden in a derived class, implements the IsArray property and determines whether the Type is an array.

Is​Assignable​From(​Type)

Determines whether an instance of a specified type can be assigned to an instance of the current type.

Is​By​Ref​Impl()

When overridden in a derived class, implements the IsByRef property and determines whether the Type is passed by reference.

Is​CO​MObject​Impl()

When overridden in a derived class, implements the IsCOMObject property and determines whether the Type is a COM object.

Is​Contextful​Impl()

Implements the IsContextful property and determines whether the Type can be hosted in a context.

Is​Enum​Defined(​Object)

Returns a value that indicates whether the specified value exists in the current enumeration type.

Is​Equivalent​To(​Type)

Determines whether two COM types have the same identity and are eligible for type equivalence.

Is​Instance​Of​Type(​Object)

Determines whether the specified object is an instance of the current Type.

Is​Marshal​By​Ref​Impl()

Implements the IsMarshalByRef property and determines whether the Type is marshaled by reference.

Is​Pointer​Impl()

When overridden in a derived class, implements the IsPointer property and determines whether the Type is a pointer.

Is​Primitive​Impl()

When overridden in a derived class, implements the IsPrimitive property and determines whether the Type is one of the primitive types.

Is​Subclass​Of(​Type)

Determines whether the current Type derives from the specified Type.

Is​Value​Type​Impl()

Implements the IsValueType property and determines whether the Type is a value type; that is, not a class or an interface.

Make​Array​Type(​Int32)

Returns a Type object representing an array of the current type, with the specified number of dimensions.

Make​Array​Type()

Returns a Type object representing a one-dimensional array of the current type, with a lower bound of zero.

Make​By​Ref​Type()

Returns a Type object that represents the current type when passed as a ref parameter (ByRef parameter in Visual Basic).

Make​Generic​Type(​Type[])

Substitutes the elements of an array of types for the type parameters of the current generic type definition and returns a Type object representing the resulting constructed type.

Make​Pointer​Type()

Returns a Type object that represents a pointer to the current type.

Reflection​Only​Get​Type(​String, ​Boolean, ​Boolean)

Gets the Type with the specified name, specifying whether to perform a case-sensitive search and whether to throw an exception if the type is not found. The type is loaded for reflection only, not for execution.

To​String()

Returns a String representing the name of the current Type.

Operators

Equality(​Type, ​Type)

Indicates whether two Type objects are equal.

Inequality(​Type, ​Type)

Indicates whether two Type objects are not equal.

Explicit Interface Implementations

_​Type.​Get​IDs​Of​Names(​Guid, ​Int​Ptr, ​UInt32, ​UInt32, ​Int​Ptr)

Maps a set of names to a corresponding set of dispatch identifiers.

_​Type.​Get​Type​Info(​UInt32, ​UInt32, ​Int​Ptr)

Retrieves the type information for an object, which can then be used to get the type information for an interface.

_​Type.​Get​Type​Info​Count(​UInt32)

Retrieves the number of type information interfaces that an object provides (either 0 or 1).

_​Type.​Invoke(​UInt32, ​Guid, ​UInt32, ​Int16, ​Int​Ptr, ​Int​Ptr, ​Int​Ptr, ​Int​Ptr)

Provides access to properties and methods exposed by an object.

Extension Methods

GetCustomAttribute(MemberInfo, Type)
GetCustomAttribute(MemberInfo, Type, Boolean)
GetCustomAttribute<T>(MemberInfo)
GetCustomAttribute<T>(MemberInfo, Boolean)
GetCustomAttributes(MemberInfo)
GetCustomAttributes(MemberInfo, Boolean)
GetCustomAttributes(MemberInfo, Type)
GetCustomAttributes(MemberInfo, Type, Boolean)
GetCustomAttributes<T>(MemberInfo)
GetCustomAttributes<T>(MemberInfo, Boolean)
IsDefined(MemberInfo, Type)
IsDefined(MemberInfo, Type, Boolean)
GetTypeInfo(Type)
GetMetadataToken(MemberInfo)
HasMetadataToken(MemberInfo)
GetRuntimeEvent(Type, String)
GetRuntimeEvents(Type)
GetRuntimeField(Type, String)
GetRuntimeFields(Type)
GetRuntimeMethod(Type, String, Type[])
GetRuntimeMethods(Type)
GetRuntimeProperties(Type)
GetRuntimeProperty(Type, String)
GetConstructor(Type, Type[])
GetConstructors(Type)
GetConstructors(Type, BindingFlags)
GetDefaultMembers(Type)
GetEvent(Type, String)
GetEvent(Type, String, BindingFlags)
GetEvents(Type)
GetEvents(Type, BindingFlags)
GetField(Type, String)
GetField(Type, String, BindingFlags)
GetFields(Type)
GetFields(Type, BindingFlags)
GetGenericArguments(Type)
GetInterfaces(Type)
GetMember(Type, String)
GetMember(Type, String, BindingFlags)
GetMembers(Type)
GetMembers(Type, BindingFlags)
GetMethod(Type, String)
GetMethod(Type, String, BindingFlags)
GetMethod(Type, String, Type[])
GetMethods(Type)
GetMethods(Type, BindingFlags)
GetNestedType(Type, String, BindingFlags)
GetNestedTypes(Type, BindingFlags)
GetProperties(Type)
GetProperties(Type, BindingFlags)
GetProperty(Type, String)
GetProperty(Type, String, BindingFlags)
GetProperty(Type, String, Type)
GetProperty(Type, String, Type, Type[])
IsAssignableFrom(Type, Type)
IsInstanceOfType(Type, Object)

Thread Safety

This type is thread safe.