Array.Clear Método
Definición
Importante
Parte de la información hace referencia a la versión preliminar del producto, que puede haberse modificado sustancialmente antes de lanzar la versión definitiva. Microsoft no otorga ninguna garantía, explícita o implícita, con respecto a la información proporcionada aquí.
Sobrecargas
Clear(Array) |
Borra el contenido de una matriz. |
Clear(Array, Int32, Int32) |
Establece un intervalo de elementos de una matriz en el valor predeterminado de cada tipo de elemento. |
Clear(Array)
- Source:
- Array.CoreCLR.cs
- Source:
- Array.CoreCLR.cs
- Source:
- Array.CoreCLR.cs
Borra el contenido de una matriz.
public:
static void Clear(Array ^ array);
public static void Clear (Array array);
static member Clear : Array -> unit
Public Shared Sub Clear (array As Array)
Parámetros
- array
- Array
Matriz que se va a borrar.
Excepciones
array
es null
.
Se aplica a
Clear(Array, Int32, Int32)
- Source:
- Array.CoreCLR.cs
- Source:
- Array.CoreCLR.cs
- Source:
- Array.CoreCLR.cs
Establece un intervalo de elementos de una matriz en el valor predeterminado de cada tipo de elemento.
public:
static void Clear(Array ^ array, int index, int length);
public static void Clear (Array array, int index, int length);
static member Clear : Array * int * int -> unit
Public Shared Sub Clear (array As Array, index As Integer, length As Integer)
Parámetros
- array
- Array
La matriz cuyos elementos deben borrarse.
- index
- Int32
Índice inicial del intervalo de elementos que se va a borrar.
- length
- Int32
Número de elementos que se van a borrar.
Excepciones
array
es null
.
index
es menor que el límite inferior de array
.
o bien
length
es menor que cero.
o bien
La suma de index
y length
es mayor que el tamaño de array
.
Ejemplos
En el ejemplo siguiente se usa el Clear método para restablecer valores enteros en una matriz unidimensional, bidimensional y tridimensional.
using System;
class Example
{
public static void Main()
{
Console.WriteLine("One dimension (Rank=1):");
int[] numbers1 = { 1, 2, 3, 4, 5, 6, 7, 8, 9 };
for (int i = 0; i < 9; i++)
{
Console.Write("{0} ", numbers1[i]);
}
Console.WriteLine();
Console.WriteLine();
Console.WriteLine("Array.Clear(numbers1, 2, 5)");
Array.Clear(numbers1, 2, 5);
for (int i = 0; i < 9; i++)
{
Console.Write("{0} ", numbers1[i]);
}
Console.WriteLine();
Console.WriteLine();
Console.WriteLine("Two dimensions (Rank=2):");
int[,] numbers2 = { { 1, 2, 3 }, { 4, 5, 6 }, { 7, 8, 9 } };
for (int i = 0; i < 3; i++)
{
for (int j = 0; j < 3; j++)
{
Console.Write("{0} ", numbers2[i, j]);
}
Console.WriteLine();
}
Console.WriteLine();
Console.WriteLine("Array.Clear(numbers2, 2, 5)");
Array.Clear(numbers2, 2, 5);
for (int i = 0; i < 3; i++)
{
for (int j = 0; j < 3; j++)
{
Console.Write("{0} ", numbers2[i, j]);
}
Console.WriteLine();
}
Console.WriteLine("Three dimensions (Rank=3):");
int[, ,] numbers3 = {{{1, 2}, {3, 4}},
{{5, 6}, {7, 8}},
{{9, 10}, {11, 12}}};
for (int i = 0; i < 2; i++)
{
for (int j = 0; j < 2; j++)
{
for (int k = 0; k < 2; k++)
{
Console.Write("{0} ", numbers3[i, j, k]);
}
Console.WriteLine();
}
Console.WriteLine();
}
Console.WriteLine("Array.Clear(numbers3, 2, 5)");
Array.Clear(numbers3, 2, 5);
for (int i = 0; i < 2; i++)
{
for (int j = 0; j < 2; j++)
{
for (int k = 0; k < 2; k++)
{
Console.Write("{0} ", numbers3[i, j, k]);
}
Console.WriteLine();
}
Console.WriteLine();
}
}
}
/* This code example produces the following output:
*
* One dimension (Rank=1):
* 1 2 3 4 5 6 7 8 9
*
* Array.Clear(numbers1, 2, 5)
* 1 2 0 0 0 0 0 8 9
*
* Two dimensions (Rank=2):
* 1 2 3
* 4 5 6
* 7 8 9
*
* Array.Clear(numbers2, 2, 5)
* 1 2 0
* 0 0 0
* 0 8 9
*
* Three dimensions (Rank=3):
* 1 2
* 3 4
*
* 5 6
* 7 8
*
* Array.Clear(numbers3, 2, 5)
* 1 2
* 0 0
*
* 0 0
* 0 8
*/
open System
printfn "One dimension (Rank=1):"
let numbers1 = [| 1..9 |]
for i in numbers1 do
printf $"{i} "
printfn "\n\nArray.Clear(numbers1, 2, 5)"
Array.Clear(numbers1, 2, 5)
for i in numbers1 do
printf $"{i} "
printfn "\n\nTwo dimensions (Rank=2):"
let numbers2 = array2D [ [ 1; 2; 3 ]; [ 4; 5; 6 ]; [ 7; 8; 9 ] ]
for i = 0 to 2 do
for j = 0 to 2 do
printfn $"{numbers2[i, j]} "
printfn ""
printfn "\nArray.Clear(numbers2, 2, 5)"
Array.Clear(numbers2, 2, 5)
for i = 0 to 2 do
for j = 0 to 2 do
printfn $"{numbers2[i, j]} "
printfn ""
printfn "Three dimensions (Rank=3):"
let numbers3 = Array3D.zeroCreate 2 2 2
numbers3[0, 0, 0] <- 1
numbers3[0, 0, 1] <- 2
numbers3[0, 1, 0] <- 3
numbers3[0, 1, 1] <- 4
numbers3[1, 0, 0] <- 5
numbers3[1, 1, 0] <- 7
numbers3[1, 0, 1] <- 6
numbers3[1, 1, 1] <- 8
for i = 0 to 1 do
for j = 0 to 1 do
for k = 0 to 1 do
printf $"{numbers3[i, j, k]} "
printfn ""
printfn ""
printfn "Array.Clear(numbers3, 2, 5)"
Array.Clear(numbers3, 2, 5)
for i = 0 to 1 do
for j = 0 to 1 do
for k = 0 to 1 do
printf $"{numbers3[i, j, k]} "
printfn ""
printfn ""
// This code example produces the following output:
//
// One dimension (Rank=1):
// 1 2 3 4 5 6 7 8 9
//
// Array.Clear(numbers1, 2, 5)
// 1 2 0 0 0 0 0 8 9
//
// Two dimensions (Rank=2):
// 1 2 3
// 4 5 6
// 7 8 9
//
// Array.Clear(numbers2, 2, 5)
// 1 2 0
// 0 0 0
// 0 8 9
//
// Three dimensions (Rank=3):
// 1 2
// 3 4
//
// 5 6
// 7 8
//
// Array.Clear(numbers3, 2, 5)
// 1 2
// 0 0
//
// 0 0
// 0 8
//
Module Example
Sub Main()
Console.WriteLine(vbLf & "One dimension (Rank=1):")
Dim numbers1() As Integer = {1, 2, 3, 4, 5, 6, 7, 8, 9}
For i As Integer = 0 To 8
Console.Write("{0} ", numbers1(i))
Next
Console.WriteLine()
Console.WriteLine(vbLf & "Array.Clear(numbers1, 2, 5)")
Array.Clear(numbers1, 2, 5)
For i As Integer = 0 To 8
Console.Write("{0} ", numbers1(i))
Next
Console.WriteLine()
Console.WriteLine(vbLf & "Two dimensions (Rank=2):")
Dim numbers2(,) As Integer = {{ 1, 2, 3 }, { 4, 5, 6 }, { 7, 8, 9 }}
For i As Integer = 0 To 2
For j As Integer = 0 To 2
Console.Write("{0} ", numbers2(i, j))
Next
Console.WriteLine()
Next
Console.WriteLine(vbLf & "Array.Clear(numbers2, 2, 5)")
Array.Clear(numbers2, 2, 5)
For i As Integer = 0 To 2
For j As Integer = 0 To 2
Console.Write("{0} ", numbers2(i, j))
Next
Console.WriteLine()
Next
Console.WriteLine(vbLf & "Three dimensions (Rank=3):")
Dim numbers3(,,) As Integer = {{{ 1, 2 }, { 3, 4 }}, _
{{ 5, 6 }, { 7, 8 }}, _
{{ 9, 10 }, { 11, 12 }}}
For i As Integer = 0 To 1
For j As Integer = 0 To 1
For k As Integer = 0 To 1
Console.Write("{0} ", numbers3(i, j, k))
Next
Console.WriteLine()
Next
Console.WriteLine()
Next
Console.WriteLine()
Console.WriteLine("Array.Clear(numbers3, 2, 5)")
Array.Clear(numbers3, 2, 5)
For i As Integer = 0 To 1
For j As Integer = 0 To 1
For k As Integer = 0 To 1
Console.Write("{0} ", numbers3(i, j, k))
Next
Console.WriteLine()
Next
Console.WriteLine()
Next
End Sub
End Module
' The example displays the following output:
' One dimension (Rank=1):
' 1 2 3 4 5 6 7 8 9
'
' Array.Clear(numbers1, 2, 5)
' 1 2 0 0 0 0 0 8 9
'
' Two dimensions (Rank=2):
' 1 2 3
' 4 5 6
' 7 8 9
'
' Array.Clear(numbers2, 2, 5)
' 1 2 0
' 0 0 0
' 0 8 9
'
' Three dimensions (Rank=3):
' 1 2
' 3 4
'
' 5 6
' 7 8
'
' Array.Clear(numbers3, 2, 5)
' 1 2
' 0 0
'
' 0 0
' 0 8
En el ejemplo siguiente se define una TimeZoneTime
estructura que incluye un TimeZoneInfo campo y un DateTimeOffset campo. A continuación, llama al Clear método para borrar un elemento en una matriz de dos elementos de TimeZoneTime
valores. El método establece el valor del elemento borrado en el valor predeterminado de un TimeZoneInfo objeto , que es null
y el valor predeterminado de un DateTimeOffset objeto , que es DateTimeOffset.MinValue.
using System;
public struct TimeZoneTime
{
private DateTimeOffset dt;
private TimeZoneInfo tz;
public TimeZoneTime(DateTimeOffset dateTime, TimeZoneInfo timeZone)
{
dt = dateTime;
tz = timeZone;
}
public DateTimeOffset DateTime
{ get { return dt; } }
public TimeZoneInfo TimeZone
{ get { return tz; } }
}
public class Example
{
public static void Main()
{
// Declare an array with two elements.
TimeZoneTime[] timeZoneTimes = { new TimeZoneTime(DateTime.Now, TimeZoneInfo.Local),
new TimeZoneTime(DateTime.Now, TimeZoneInfo.Utc) };
foreach (var timeZoneTime in timeZoneTimes)
Console.WriteLine("{0}: {1:G}",
timeZoneTime.TimeZone == null ? "<null>" : timeZoneTime.TimeZone.ToString(),
timeZoneTime.DateTime);
Console.WriteLine();
Array.Clear(timeZoneTimes, 1, 1);
foreach (var timeZoneTime in timeZoneTimes)
Console.WriteLine("{0}: {1:G}",
timeZoneTime.TimeZone == null ? "<null>" : timeZoneTime.TimeZone.ToString(),
timeZoneTime.DateTime);
}
}
// The example displays the following output:
// (UTC-08:00) Pacific Time (US & Canada): 1/20/2014 12:11:00 PM
// UTC: 1/20/2014 12:11:00 PM
//
// (UTC-08:00) Pacific Time (US & Canada): 1/20/2014 12:11:00 PM
// <null>: 1/1/0001 12:00:00 AM
open System
[<Struct>]
type TimeZoneTime =
{ DateTime: DateTimeOffset
TimeZone: TimeZoneInfo }
// Declare an array with two elements.
let timeZoneTimes =
[| { DateTime = DateTimeOffset.Now; TimeZone = TimeZoneInfo.Local }
{ DateTime = DateTimeOffset.Now; TimeZone = TimeZoneInfo.Local } |]
for timeZoneTime in timeZoneTimes do
let tz = if isNull timeZoneTime.TimeZone then "<null>" else string timeZoneTime.TimeZone
printfn $"{tz}: {timeZoneTime.DateTime:G}"
printfn ""
Array.Clear(timeZoneTimes, 1, 1)
for timeZoneTime in timeZoneTimes do
let tz = if isNull timeZoneTime.TimeZone then "<null>" else string timeZoneTime.TimeZone
printfn $"{tz}: {timeZoneTime.DateTime:G}"
// The example displays the following output:
// (UTC-08:00) Pacific Time (US & Canada): 1/20/2014 12:11:00 PM
// UTC: 1/20/2014 12:11:00 PM
//
// (UTC-08:00) Pacific Time (US & Canada): 1/20/2014 12:11:00 PM
// <null>: 1/1/0001 12:00:00 AM
Public Structure TimeZoneTime
Private dt As DateTimeOffset
Private tz As TimeZoneInfo
Public Sub New(dateTime As DateTimeOffset, timeZone As TimeZoneInfo)
dt = dateTime
tz = timeZone
End Sub
Public ReadOnly Property DateTime As DateTimeOffset
Get
Return dt
End Get
End Property
Public ReadOnly Property TimeZone As TimeZoneInfo
Get
Return tz
End Get
End Property
End Structure
Module Example
Public Sub Main()
' Declare an array with two elements.
Dim timeZoneTimes() As TimeZoneTime = { New TimeZoneTime(Date.Now, TimeZoneInfo.Local),
New TimeZoneTime(Date.Now, TimeZoneInfo.Utc) }
For Each timeZoneTime In timeZoneTimes
Console.WriteLine("{0}: {1:G}",
If(timeZoneTime.TimeZone Is Nothing, "<null>", timeZoneTime.TimeZone),
timeZoneTime.DateTime)
Next
Console.WriteLine()
Array.Clear(timeZoneTimes, 1, 1)
For Each timeZoneTime In timeZoneTimes
Console.WriteLine("{0}: {1:G}",
If(timeZoneTime.TimeZone Is Nothing, "<null>", timeZoneTime.TimeZone),
timeZoneTime.DateTime)
Next
End Sub
End Module
' The example displays output like the following:
' (UTC-08:00) Pacific Time (US & Canada): 1/20/2014 12:11:00 PM
' UTC: 1/20/2014 12:11:00 PM
'
' (UTC-08:00) Pacific Time (US & Canada): 1/20/2014 12:11:00 PM
' <null>: 1/1/0001 12:00:00 AM
Comentarios
Este método restablece cada elemento de una matriz al valor predeterminado del tipo de elemento. Establece elementos de tipos de referencia (incluidos String elementos) null
en y establece elementos de tipos de valor en los valores predeterminados que se muestran en la tabla siguiente.
Tipo | Value |
---|---|
Boolean | false |
Todos los tipos numéricos enteros y de punto flotante | 0 (cero) |
DateTime | DateTime.MinValue |
Otros tipos de valor | Valor predeterminado de los campos del tipo |
El intervalo de elementos borrados se ajusta de fila a fila en una matriz multidimensional.
Este método solo borra los valores de los elementos; no elimina los propios elementos. Una matriz tiene un tamaño fijo; por lo tanto, no se pueden agregar ni quitar elementos.
Este método es una operación O(n
), donde n
es length
.