Queue<T>.ToArray Método

Definición

Copia los elementos Queue<T> en una matriz nueva.

public:
 cli::array <T> ^ ToArray();
public T[] ToArray ();
member this.ToArray : unit -> 'T[]
Public Function ToArray () As T()

Devoluciones

T[]

Nueva matriz que contiene elementos copiados de Queue<T>.

Ejemplos

En el ejemplo de código siguiente se muestran varios métodos de la Queue<T> clase genérica, incluido el ToArray método .

En el ejemplo de código se crea una cola de cadenas con capacidad predeterminada y se usa el Enqueue método para poner en cola cinco cadenas. Los elementos de la cola se enumeran, lo que no cambia el estado de la cola. El Dequeue método se usa para quitar de la cola la primera cadena. El Peek método se usa para examinar el siguiente elemento de la cola y, a continuación, se usa el método para quitarlo de la Dequeue cola.

El ToArray método se usa para crear una matriz y copiar los elementos de cola en ella y, a continuación, la matriz se pasa al Queue<T> constructor que toma IEnumerable<T>, creando una copia de la cola. Se muestran los elementos de la copia.

Se crea una matriz dos veces el tamaño de la cola y el CopyTo método se usa para copiar los elementos de la matriz a partir del centro de la matriz. El Queue<T> constructor se usa de nuevo para crear una segunda copia de la cola que contiene tres elementos NULL al principio.

El Contains método se usa para mostrar que la cadena "cuatro" está en la primera copia de la cola, después de la cual el Clear método borra la copia y la Count propiedad muestra que la cola está vacía.

using System;
using System.Collections.Generic;

class Example
{
    public static void Main()
    {
        Queue<string> numbers = new Queue<string>();
        numbers.Enqueue("one");
        numbers.Enqueue("two");
        numbers.Enqueue("three");
        numbers.Enqueue("four");
        numbers.Enqueue("five");

        // A queue can be enumerated without disturbing its contents.
        foreach( string number in numbers )
        {
            Console.WriteLine(number);
        }

        Console.WriteLine("\nDequeuing '{0}'", numbers.Dequeue());
        Console.WriteLine("Peek at next item to dequeue: {0}",
            numbers.Peek());
        Console.WriteLine("Dequeuing '{0}'", numbers.Dequeue());

        // Create a copy of the queue, using the ToArray method and the
        // constructor that accepts an IEnumerable<T>.
        Queue<string> queueCopy = new Queue<string>(numbers.ToArray());

        Console.WriteLine("\nContents of the first copy:");
        foreach( string number in queueCopy )
        {
            Console.WriteLine(number);
        }

        // Create an array twice the size of the queue and copy the
        // elements of the queue, starting at the middle of the
        // array.
        string[] array2 = new string[numbers.Count * 2];
        numbers.CopyTo(array2, numbers.Count);

        // Create a second queue, using the constructor that accepts an
        // IEnumerable(Of T).
        Queue<string> queueCopy2 = new Queue<string>(array2);

        Console.WriteLine("\nContents of the second copy, with duplicates and nulls:");
        foreach( string number in queueCopy2 )
        {
            Console.WriteLine(number);
        }

        Console.WriteLine("\nqueueCopy.Contains(\"four\") = {0}",
            queueCopy.Contains("four"));

        Console.WriteLine("\nqueueCopy.Clear()");
        queueCopy.Clear();
        Console.WriteLine("\nqueueCopy.Count = {0}", queueCopy.Count);
    }
}

/* This code example produces the following output:

one
two
three
four
five

Dequeuing 'one'
Peek at next item to dequeue: two
Dequeuing 'two'

Contents of the first copy:
three
four
five

Contents of the second copy, with duplicates and nulls:



three
four
five

queueCopy.Contains("four") = True

queueCopy.Clear()

queueCopy.Count = 0
 */
open System
open System.Collections.Generic

let numbers = Queue()
numbers.Enqueue "one"
numbers.Enqueue "two"
numbers.Enqueue "three"
numbers.Enqueue "four"
numbers.Enqueue "five"

// A queue can be enumerated without disturbing its contents.
for number in numbers do
    printfn $"{number}"

printfn $"\nDequeuing '{numbers.Dequeue()}'"
printfn $"Peek at next item to dequeue: {numbers.Peek()}"
printfn $"Dequeuing '{numbers.Dequeue()}'"

// Create a copy of the queue, using the ToArray method and the
// constructor that accepts an IEnumerable<T>.
let queueCopy = numbers.ToArray() |> Queue

printfn $"\nContents of the first copy:"
for number in queueCopy do
    printfn $"{number}"

// Create an array twice the size of the queue and copy the
// elements of the queue, starting at the middle of the
// array.
let array2 = numbers.Count * 2 |> Array.zeroCreate
numbers.CopyTo(array2, numbers.Count)

// Create a second queue, using the constructor that accepts an
// IEnumerable(Of T).
let queueCopy2 = Queue array2

printfn $"\nContents of the second copy, with duplicates and nulls:"
for number in queueCopy2 do
    printfn $"{number}"
printfn $"""\nqueueCopy.Contains "four" = {queueCopy.Contains "four"}"""

printfn $"\nqueueCopy.Clear()"
queueCopy.Clear()
printfn $"queueCopy.Count = {queueCopy.Count}"

// This code example produces the following output:
//       one
//       two
//       three
//       four
//       five
//       
//       Dequeuing 'one'
//       Peek at next item to dequeue: two
//       Dequeuing 'two'
//       
//       Contents of the first copy:
//       three
//       four
//       five
//       
//       Contents of the second copy, with duplicates and nulls:
//       
//       
//       
//       three
//       four
//       five
//       
//       queueCopy.Contains "four" = True
//       
//       queueCopy.Clear()
//       
//       queueCopy.Count = 0
Imports System.Collections.Generic

Module Example

    Sub Main

        Dim numbers As New Queue(Of String)
        numbers.Enqueue("one")
        numbers.Enqueue("two")
        numbers.Enqueue("three")
        numbers.Enqueue("four")
        numbers.Enqueue("five")

        ' A queue can be enumerated without disturbing its contents.
        For Each number As String In numbers
            Console.WriteLine(number)
        Next

        Console.WriteLine(vbLf & "Dequeuing '{0}'", numbers.Dequeue())
        Console.WriteLine("Peek at next item to dequeue: {0}", _
            numbers.Peek())    
        Console.WriteLine("Dequeuing '{0}'", numbers.Dequeue())

        ' Create a copy of the queue, using the ToArray method and the
        ' constructor that accepts an IEnumerable(Of T).
        Dim queueCopy As New Queue(Of String)(numbers.ToArray())

        Console.WriteLine(vbLf & "Contents of the first copy:")
        For Each number As String In queueCopy
            Console.WriteLine(number)
        Next
        
        ' Create an array twice the size of the queue, compensating
        ' for the fact that Visual Basic allocates an extra array 
        ' element. Copy the elements of the queue, starting at the
        ' middle of the array. 
        Dim array2((numbers.Count * 2) - 1) As String
        numbers.CopyTo(array2, numbers.Count)
        
        ' Create a second queue, using the constructor that accepts an
        ' IEnumerable(Of T).
        Dim queueCopy2 As New Queue(Of String)(array2)

        Console.WriteLine(vbLf & _
            "Contents of the second copy, with duplicates and nulls:")
        For Each number As String In queueCopy2
            Console.WriteLine(number)
        Next

        Console.WriteLine(vbLf & "queueCopy.Contains(""four"") = {0}", _
            queueCopy.Contains("four"))

        Console.WriteLine(vbLf & "queueCopy.Clear()")
        queueCopy.Clear()
        Console.WriteLine(vbLf & "queueCopy.Count = {0}", _
            queueCopy.Count)
    End Sub
End Module

' This code example produces the following output:
'
'one
'two
'three
'four
'five
'
'Dequeuing 'one'
'Peek at next item to dequeue: two
'
'Dequeuing 'two'
'
'Contents of the copy:
'three
'four
'five
'
'Contents of the second copy, with duplicates and nulls:
'
'
'
'three
'four
'five
'
'queueCopy.Contains("four") = True
'
'queueCopy.Clear()
'
'queueCopy.Count = 0

Comentarios

no Queue<T> se modifica. El orden de los elementos de la nueva matriz es el mismo que el orden de los elementos desde el principio de Queue<T> hasta su fin.

Este método es una operación O(n), donde n es Count.

Se aplica a