CollectionBase.GetEnumerator メソッド
定義
重要
一部の情報は、リリース前に大きく変更される可能性があるプレリリースされた製品に関するものです。 Microsoft は、ここに記載されている情報について、明示または黙示を問わず、一切保証しません。
CollectionBase インスタンスを反復処理する列挙子を返します。
public:
virtual System::Collections::IEnumerator ^ GetEnumerator();
public System.Collections.IEnumerator GetEnumerator ();
abstract member GetEnumerator : unit -> System.Collections.IEnumerator
override this.GetEnumerator : unit -> System.Collections.IEnumerator
Public Function GetEnumerator () As IEnumerator
戻り値
IEnumerator インスタンスの CollectionBase。
実装
例
次のコード例では、 クラスを CollectionBase 実装し、その実装を使用して オブジェクトの Int16 コレクションを作成します。
#using <System.dll>
using namespace System;
using namespace System::Collections;
public ref class Int16Collection: public CollectionBase
{
public:
property Int16 Item [int]
{
Int16 get( int index )
{
return ( (Int16)(List[ index ]));
}
void set( int index, Int16 value )
{
List[ index ] = value;
}
}
int Add( Int16 value )
{
return (List->Add( value ));
}
int IndexOf( Int16 value )
{
return (List->IndexOf( value ));
}
void Insert( int index, Int16 value )
{
List->Insert( index, value );
}
void Remove( Int16 value )
{
List->Remove( value );
}
bool Contains( Int16 value )
{
// If value is not of type Int16, this will return false.
return (List->Contains( value ));
}
protected:
virtual void OnInsert( int /*index*/, Object^ /*value*/ ) override
{
// Insert additional code to be run only when inserting values.
}
virtual void OnRemove( int /*index*/, Object^ /*value*/ ) override
{
// Insert additional code to be run only when removing values.
}
virtual void OnSet( int /*index*/, Object^ /*oldValue*/, Object^ /*newValue*/ ) override
{
// Insert additional code to be run only when setting values.
}
virtual void OnValidate( Object^ value ) override
{
if ( value->GetType() != Type::GetType( "System.Int16" ) )
throw gcnew ArgumentException( "value must be of type Int16.","value" );
}
};
void PrintIndexAndValues( Int16Collection^ myCol );
void PrintValues2( Int16Collection^ myCol );
int main()
{
// Create and initialize a new CollectionBase.
Int16Collection^ myI16 = gcnew Int16Collection;
// Add elements to the collection.
myI16->Add( (Int16)1 );
myI16->Add( (Int16)2 );
myI16->Add( (Int16)3 );
myI16->Add( (Int16)5 );
myI16->Add( (Int16)7 );
// Display the contents of the collection using the enumerator.
Console::WriteLine( "Contents of the collection (using enumerator):" );
PrintValues2( myI16 );
// Display the contents of the collection using the Count property and the Item property.
Console::WriteLine( "Initial contents of the collection (using Count and Item):" );
PrintIndexAndValues( myI16 );
// Search the collection with Contains and IndexOf.
Console::WriteLine( "Contains 3: {0}", myI16->Contains( 3 ) );
Console::WriteLine( "2 is at index {0}.", myI16->IndexOf( 2 ) );
Console::WriteLine();
// Insert an element into the collection at index 3.
myI16->Insert( 3, (Int16)13 );
Console::WriteLine( "Contents of the collection after inserting at index 3:" );
PrintIndexAndValues( myI16 );
// Get and set an element using the index.
myI16->Item[ 4 ] = 123;
Console::WriteLine( "Contents of the collection after setting the element at index 4 to 123:" );
PrintIndexAndValues( myI16 );
// Remove an element from the collection.
myI16->Remove( (Int16)2 );
// Display the contents of the collection using the Count property and the Item property.
Console::WriteLine( "Contents of the collection after removing the element 2:" );
PrintIndexAndValues( myI16 );
}
// Uses the Count property and the Item property.
void PrintIndexAndValues( Int16Collection^ myCol )
{
for ( int i = 0; i < myCol->Count; i++ )
Console::WriteLine( " [{0}]: {1}", i, myCol->Item[ i ] );
Console::WriteLine();
}
// Uses the enumerator.
void PrintValues2( Int16Collection^ myCol )
{
System::Collections::IEnumerator^ myEnumerator = myCol->GetEnumerator();
while ( myEnumerator->MoveNext() )
Console::WriteLine( " {0}", myEnumerator->Current );
Console::WriteLine();
}
/*
This code produces the following output.
Contents of the collection (using enumerator):
1
2
3
5
7
Initial contents of the collection (using Count and Item):
[0]: 1
[1]: 2
[2]: 3
[3]: 5
[4]: 7
Contains 3: True
2 is at index 1.
Contents of the collection after inserting at index 3:
[0]: 1
[1]: 2
[2]: 3
[3]: 13
[4]: 5
[5]: 7
Contents of the collection after setting the element at index 4 to 123:
[0]: 1
[1]: 2
[2]: 3
[3]: 13
[4]: 123
[5]: 7
Contents of the collection after removing the element 2:
[0]: 1
[1]: 3
[2]: 13
[3]: 123
[4]: 7
*/
using System;
using System.Collections;
public class Int16Collection : CollectionBase {
public Int16 this[ int index ] {
get {
return( (Int16) List[index] );
}
set {
List[index] = value;
}
}
public int Add( Int16 value ) {
return( List.Add( value ) );
}
public int IndexOf( Int16 value ) {
return( List.IndexOf( value ) );
}
public void Insert( int index, Int16 value ) {
List.Insert( index, value );
}
public void Remove( Int16 value ) {
List.Remove( value );
}
public bool Contains( Int16 value ) {
// If value is not of type Int16, this will return false.
return( List.Contains( value ) );
}
protected override void OnInsert( int index, Object value ) {
// Insert additional code to be run only when inserting values.
}
protected override void OnRemove( int index, Object value ) {
// Insert additional code to be run only when removing values.
}
protected override void OnSet( int index, Object oldValue, Object newValue ) {
// Insert additional code to be run only when setting values.
}
protected override void OnValidate( Object value ) {
if ( value.GetType() != typeof(System.Int16) )
throw new ArgumentException( "value must be of type Int16.", "value" );
}
}
public class SamplesCollectionBase {
public static void Main() {
// Create and initialize a new CollectionBase.
Int16Collection myI16 = new Int16Collection();
// Add elements to the collection.
myI16.Add( (Int16) 1 );
myI16.Add( (Int16) 2 );
myI16.Add( (Int16) 3 );
myI16.Add( (Int16) 5 );
myI16.Add( (Int16) 7 );
// Display the contents of the collection using foreach. This is the preferred method.
Console.WriteLine( "Contents of the collection (using foreach):" );
PrintValues1( myI16 );
// Display the contents of the collection using the enumerator.
Console.WriteLine( "Contents of the collection (using enumerator):" );
PrintValues2( myI16 );
// Display the contents of the collection using the Count property and the Item property.
Console.WriteLine( "Initial contents of the collection (using Count and Item):" );
PrintIndexAndValues( myI16 );
// Search the collection with Contains and IndexOf.
Console.WriteLine( "Contains 3: {0}", myI16.Contains( 3 ) );
Console.WriteLine( "2 is at index {0}.", myI16.IndexOf( 2 ) );
Console.WriteLine();
// Insert an element into the collection at index 3.
myI16.Insert( 3, (Int16) 13 );
Console.WriteLine( "Contents of the collection after inserting at index 3:" );
PrintIndexAndValues( myI16 );
// Get and set an element using the index.
myI16[4] = 123;
Console.WriteLine( "Contents of the collection after setting the element at index 4 to 123:" );
PrintIndexAndValues( myI16 );
// Remove an element from the collection.
myI16.Remove( (Int16) 2 );
// Display the contents of the collection using the Count property and the Item property.
Console.WriteLine( "Contents of the collection after removing the element 2:" );
PrintIndexAndValues( myI16 );
}
// Uses the Count property and the Item property.
public static void PrintIndexAndValues( Int16Collection myCol ) {
for ( int i = 0; i < myCol.Count; i++ )
Console.WriteLine( " [{0}]: {1}", i, myCol[i] );
Console.WriteLine();
}
// Uses the foreach statement which hides the complexity of the enumerator.
// NOTE: The foreach statement is the preferred way of enumerating the contents of a collection.
public static void PrintValues1( Int16Collection myCol ) {
foreach ( Int16 i16 in myCol )
Console.WriteLine( " {0}", i16 );
Console.WriteLine();
}
// Uses the enumerator.
// NOTE: The foreach statement is the preferred way of enumerating the contents of a collection.
public static void PrintValues2( Int16Collection myCol ) {
System.Collections.IEnumerator myEnumerator = myCol.GetEnumerator();
while ( myEnumerator.MoveNext() )
Console.WriteLine( " {0}", myEnumerator.Current );
Console.WriteLine();
}
}
/*
This code produces the following output.
Contents of the collection (using foreach):
1
2
3
5
7
Contents of the collection (using enumerator):
1
2
3
5
7
Initial contents of the collection (using Count and Item):
[0]: 1
[1]: 2
[2]: 3
[3]: 5
[4]: 7
Contains 3: True
2 is at index 1.
Contents of the collection after inserting at index 3:
[0]: 1
[1]: 2
[2]: 3
[3]: 13
[4]: 5
[5]: 7
Contents of the collection after setting the element at index 4 to 123:
[0]: 1
[1]: 2
[2]: 3
[3]: 13
[4]: 123
[5]: 7
Contents of the collection after removing the element 2:
[0]: 1
[1]: 3
[2]: 13
[3]: 123
[4]: 7
*/
Imports System.Collections
Public Class Int16Collection
Inherits CollectionBase
Default Public Property Item(index As Integer) As Int16
Get
Return CType(List(index), Int16)
End Get
Set
List(index) = value
End Set
End Property
Public Function Add(value As Int16) As Integer
Return List.Add(value)
End Function 'Add
Public Function IndexOf(value As Int16) As Integer
Return List.IndexOf(value)
End Function 'IndexOf
Public Sub Insert(index As Integer, value As Int16)
List.Insert(index, value)
End Sub
Public Sub Remove(value As Int16)
List.Remove(value)
End Sub
Public Function Contains(value As Int16) As Boolean
' If value is not of type Int16, this will return false.
Return List.Contains(value)
End Function 'Contains
Protected Overrides Sub OnInsert(index As Integer, value As Object)
' Insert additional code to be run only when inserting values.
End Sub
Protected Overrides Sub OnRemove(index As Integer, value As Object)
' Insert additional code to be run only when removing values.
End Sub
Protected Overrides Sub OnSet(index As Integer, oldValue As Object, newValue As Object)
' Insert additional code to be run only when setting values.
End Sub
Protected Overrides Sub OnValidate(value As Object)
If Not GetType(System.Int16).IsAssignableFrom(value.GetType()) Then
Throw New ArgumentException("value must be of type Int16.", "value")
End If
End Sub
End Class
Public Class SamplesCollectionBase
Public Shared Sub Main()
' Creates and initializes a new CollectionBase.
Dim myI16 As New Int16Collection()
' Adds elements to the collection.
myI16.Add( 1 )
myI16.Add( 2 )
myI16.Add( 3 )
myI16.Add( 5 )
myI16.Add( 7 )
' Display the contents of the collection using For Each. This is the preferred method.
Console.WriteLine("Contents of the collection (using For Each):")
PrintValues1(myI16)
' Display the contents of the collection using the enumerator.
Console.WriteLine("Contents of the collection (using enumerator):")
PrintValues2(myI16)
' Display the contents of the collection using the Count property and the Item property.
Console.WriteLine("Initial contents of the collection (using Count and Item):")
PrintIndexAndValues(myI16)
' Searches the collection with Contains and IndexOf.
Console.WriteLine("Contains 3: {0}", myI16.Contains(3))
Console.WriteLine("2 is at index {0}.", myI16.IndexOf(2))
Console.WriteLine()
' Inserts an element into the collection at index 3.
myI16.Insert(3, 13)
Console.WriteLine("Contents of the collection after inserting at index 3:")
PrintIndexAndValues(myI16)
' Gets and sets an element using the index.
myI16(4) = 123
Console.WriteLine("Contents of the collection after setting the element at index 4 to 123:")
PrintIndexAndValues(myI16)
' Removes an element from the collection.
myI16.Remove(2)
' Display the contents of the collection using the Count property and the Item property.
Console.WriteLine("Contents of the collection after removing the element 2:")
PrintIndexAndValues(myI16)
End Sub
' Uses the Count property and the Item property.
Public Shared Sub PrintIndexAndValues(myCol As Int16Collection)
Dim i As Integer
For i = 0 To myCol.Count - 1
Console.WriteLine(" [{0}]: {1}", i, myCol(i))
Next i
Console.WriteLine()
End Sub
' Uses the For Each statement which hides the complexity of the enumerator.
' NOTE: The For Each statement is the preferred way of enumerating the contents of a collection.
Public Shared Sub PrintValues1(myCol As Int16Collection)
Dim i16 As Int16
For Each i16 In myCol
Console.WriteLine(" {0}", i16)
Next i16
Console.WriteLine()
End Sub
' Uses the enumerator.
' NOTE: The For Each statement is the preferred way of enumerating the contents of a collection.
Public Shared Sub PrintValues2(myCol As Int16Collection)
Dim myEnumerator As System.Collections.IEnumerator = myCol.GetEnumerator()
While myEnumerator.MoveNext()
Console.WriteLine(" {0}", myEnumerator.Current)
End While
Console.WriteLine()
End Sub
End Class
'This code produces the following output.
'
'Contents of the collection (using For Each):
' 1
' 2
' 3
' 5
' 7
'
'Contents of the collection (using enumerator):
' 1
' 2
' 3
' 5
' 7
'
'Initial contents of the collection (using Count and Item):
' [0]: 1
' [1]: 2
' [2]: 3
' [3]: 5
' [4]: 7
'
'Contains 3: True
'2 is at index 1.
'
'Contents of the collection after inserting at index 3:
' [0]: 1
' [1]: 2
' [2]: 3
' [3]: 13
' [4]: 5
' [5]: 7
'
'Contents of the collection after setting the element at index 4 to 123:
' [0]: 1
' [1]: 2
' [2]: 3
' [3]: 13
' [4]: 123
' [5]: 7
'
'Contents of the collection after removing the element 2:
' [0]: 1
' [1]: 3
' [2]: 13
' [3]: 123
' [4]: 7
注釈
C# 言語の foreach
ステートメント (Visual Basic の場合は for each
) を使用することで列挙子の複雑さを回避できます。 したがって、列挙子を直接操作するのではなく、foreach
を使用することをお勧めします。
列挙子を使用すると、コレクション内のデータを読み取ることができますが、基になるコレクションを変更することはできません。
最初、列挙子はコレクションの先頭の要素の前に位置付けられます。 また、Reset メソッドは、列挙子を最初の位置に戻します。 この位置で Current を呼び出すと、例外がスローされます。 そのため、MoveNext の値を読み取る前に、Current を呼び出して列挙子をコレクションの最初の要素に進める必要があります。
Current は、MoveNext または Reset が呼び出されるまでは同じオブジェクトを返します。 MoveNext は、Current を次の要素に進めます。
MoveNext がコレクションの末尾を通過した場合、列挙子がコレクション内の最後の要素の後に配置され、MoveNext は false
を返します。 列挙子がこの位置にある場合、後続の MoveNext 呼び出しも false
を返します。 前回 MoveNext を呼び出して false
が返された場合に、Current を呼び出すと例外がスローされます。 コレクションの先頭の要素に再び Current を設定するには、先に Reset を呼び出してから MoveNext を呼び出します。
列挙子は、コレクションが変更されない限り有効です。 要素の追加、変更、削除など、コレクションに変更が加えられた場合、列挙子は回復不能に無効になり、次に を呼び出すかReset、 InvalidOperationExceptionをMoveNextスローします。 MoveNext を呼び出してから Current を呼び出すまでの間にコレクションが変更された場合、列挙子が既に無効になっていても、Current は、設定されている要素を返します。
列挙子には、コレクションへの排他アクセスがありません。したがって、コレクションの列挙処理は本質的にスレッド セーフな処理ではありません。 コレクションが同期されていても、他のスレッドがコレクションを変更する場合があり、このときは列挙子から例外がスローされます。 列挙処理を確実にスレッド セーフに行うには、列挙中にコレクションをロックするか、他のスレッドによって行われた変更によってスローされる例外をキャッチします。
GetEnumeratorメソッドは既定では COM クライアントに表示されませんが、クラスをCollectionBase継承すると、そのメソッドが公開され、COM クライアントで望ましくない動作が発生する可能性があります。
このメソッドは操作です O(1)
。
適用対象
こちらもご覧ください
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