UTF32Encoding.GetString(Byte[], Int32, Int32) 方法

定义

将字节数组中某个范围的字节解码为一个字符串。

public:
 override System::String ^ GetString(cli::array <System::Byte> ^ bytes, int index, int count);
public override string GetString (byte[] bytes, int index, int count);
override this.GetString : byte[] * int * int -> string
Public Overrides Function GetString (bytes As Byte(), index As Integer, count As Integer) As String

参数

bytes
Byte[]

包含要解码的字节序列的字节数组。

index
Int32

第一个要解码的字节的索引。

count
Int32

要解码的字节数。

返回

包含指定字节序列解码结果的字符串。

例外

bytesnull

indexcount 小于零。

indexcount 不表示 bytes 中的有效范围。

启用了错误检测,并且 bytes 包含无效的字节序列。

(发生回退,有关详细信息,请参阅 .NET 中的字符编码 以获取) 的完整说明。

-和-

DecoderFallback 设置为 DecoderExceptionFallback

示例

以下示例将一个字符串编码为两个字节数组,一个以小端顺序,另一个以 big-endian 顺序。 然后,它将字节解码回字符串。

using System;
using System.Text;

public class Example  
{
   public static void Main()  
   {
      // Create two instances of UTF32Encoding: one with little-endian byte order and one with big-endian byte order.
      UTF32Encoding u32LE = new UTF32Encoding(false, true, true);
      UTF32Encoding u32BE = new UTF32Encoding(true, true, true);

      // Create byte arrays from the same string containing the following characters:
      //    Latin Small Letter Z (U+007A)
      //    Latin Small Letter A (U+0061)
      //    Combining Breve (U+0306)
      //    Latin Small Letter AE With Acute (U+01FD)
      //    Greek Small Letter Beta (U+03B2)
      String str = "za\u0306\u01FD\u03B2";

      // barrBE uses the big-endian byte order.
      byte[] barrBE = new byte[u32BE.GetByteCount(str)];
      u32BE.GetBytes(str, 0, str.Length, barrBE, 0);

      // barrLE uses the little-endian byte order.
      byte[] barrLE = new byte[u32LE.GetByteCount(str)];
      u32LE.GetBytes(str, 0, str.Length, barrLE, 0);

      // Decode the byte arrays.
      Console.WriteLine("BE array with BE encoding:");
      DisplayString(barrBE, u32BE);
      Console.WriteLine();

      Console.WriteLine("LE array with LE encoding:");
      DisplayString(barrLE, u32LE);
      Console.WriteLine();
   
      // Decode the byte arrays using an encoding with a different byte order.
      Console.WriteLine("BE array with LE encoding:");
      try  {
         DisplayString(barrBE, u32LE);
      }
      catch (System.ArgumentException e)  {
         Console.WriteLine(e.Message);
      }
      Console.WriteLine();

      Console.WriteLine("LE array with BE encoding:");
      try  {
         DisplayString(barrLE, u32BE);
      }
      catch (ArgumentException e)  {
         Console.WriteLine(e.Message);
      }
      Console.WriteLine();
   }

   public static void DisplayString(byte[] bytes, Encoding enc)  
   {
      // Display the name of the encoding used.
      Console.Write("{0,-25}: ", enc.ToString());

      // Decode the bytes and display the characters.
      Console.WriteLine(enc.GetString(bytes, 0, bytes.Length));
   }
}
// This example displays the following output:
//   BE array with BE encoding:
//   System.Text.UTF32Encoding: zăǽβ
//
//   LE array with LE encoding:
//   System.Text.UTF32Encoding: zăǽβ
//
//   BE array with LE encoding:
//   System.Text.UTF32Encoding: Unable to translate bytes [00][00][00][7A] at index 0 from specified code page to Unicode.
//
//   LE array with BE encoding:
//   System.Text.UTF32Encoding: Unable to translate bytes [7A][00][00][00] at index 0 from specified code page to Unicode.
Imports System.Text

Public Module Example  
   Public Sub Main()  
      ' Create two instances of UTF32Encoding: one with little-endian byte order and one with big-endian byte order.
      Dim u32LE As New UTF32Encoding(False, True, True)
      Dim u32BE As New UTF32Encoding(True, True, True)

      ' Create byte arrays from the same string containing the following characters:
      '    Latin Small Letter Z (U+007A)
      '    Latin Small Letter A (U+0061)
      '    Combining Breve (U+0306)
      '    Latin Small Letter AE With Acute (U+01FD)
      '    Greek Small Letter Beta (U+03B2)
      Dim str As String = "za" + ChrW(&h0306) + ChrW(&h01FD) + ChrW(&h03B2)

      ' barrBE uses the big-endian byte order.
      Dim barrBE(u32BE.GetByteCount(str) - 1) As Byte
      u32BE.GetBytes(str, 0, str.Length, barrBE, 0)

      ' barrLE uses the little-endian byte order.
      Dim barrLE(u32LE.GetByteCount(str) - 1) As Byte
      u32LE.GetBytes(str, 0, str.Length, barrLE, 0)

      ' Decode the byte arrays.
      Console.WriteLine("BE array with BE encoding:")
      DisplayString(barrBE, u32BE)
      Console.WriteLine()

      Console.WriteLine("LE array with LE encoding:")
      DisplayString(barrLE, u32LE)
      Console.WriteLine()
   
      ' Decode the byte arrays using an encoding with a different byte order.
      Console.WriteLine("BE array with LE encoding:")
      Try  
         DisplayString(barrBE, u32LE)
      Catch e As ArgumentException
         Console.WriteLine(e.Message)
      End Try
      Console.WriteLine()

      Console.WriteLine("LE array with BE encoding:")
      Try  
         DisplayString(barrLE, u32BE)
      Catch e As ArgumentException
         Console.WriteLine(e.Message)
      End Try
      Console.WriteLine()
   End Sub

   Public Sub DisplayString(bytes As Byte(), enc As Encoding )  
      ' Display the name of the encoding used.
      Console.Write("{0,-25}: ", enc.ToString())

      ' Decode the bytes and display the characters.
      Console.WriteLine(enc.GetString(bytes, 0, bytes.Length))
   End Sub
End Module
' This example displays the following output:
'   BE array with BE encoding:
'   System.Text.UTF32Encoding: zăǽβ
'
'   LE array with LE encoding:
'   System.Text.UTF32Encoding: zăǽβ
'
'   BE array with LE encoding:
'   System.Text.UTF32Encoding: Unable to translate bytes [00][00][00][7A] at index 0 from specified code page to Unicode.
'
'   LE array with BE encoding:
'   System.Text.UTF32Encoding: Unable to translate bytes [7A][00][00][00] at index 0 from specified code page to Unicode.

以下示例通过调用 GetByteCount 方法初始化数组,以确定编码字符串所需的字节数,然后在 BOM) (添加字节顺序标记的大小。 然后,该示例调用 GetPreamble 方法以将 BOM 存储到数组,然后调用 GetBytes 方法将编码的字节存储到数组。 然后,该示例调用 GetString 方法来解码字符串。

using System;
using System.Text;

public class Example
{
   public static void Main()
   {
      var utf32 = new UTF32Encoding(! BitConverter.IsLittleEndian, true);

      String s = "It was the best of times, it was the worst of times...";

      // We need to dimension the array, since we'll populate it with 2 method calls.
      Byte[] bytes = new Byte[utf32.GetByteCount(s) + utf32.GetPreamble().Length];
      // Encode the string.
      Array.Copy(utf32.GetPreamble(), bytes, utf32.GetPreamble().Length);
      utf32.GetBytes(s, 0, s.Length, bytes, utf32.GetPreamble().Length);

      // Decode the byte array.
      String s2 = utf32.GetString(bytes, 0, bytes.Length);
      Console.WriteLine(s2);
   }
}
// The example displays the following output:
//        ?It was the best of times, it was the worst of times...
Imports System.Text

Module Example
   Public Sub Main()
      Dim utf32 As New UTF32Encoding(Not BitConverter.IsLittleEndian, True)

      Dim s As String = "It was the best of times, it was the worst of times..."

      ' We need to dimension the array, since we'll populate it with 2 method calls.
      Dim bytes(utf32.GetByteCount(s) + utf32.GetPreamble().Length - 1) As Byte
      ' Encode the string.
      Array.Copy(utf32.GetPreamble(), bytes, utf32.GetPreamble().Length)
      utf32.GetBytes(s, 0, s.Length, bytes, utf32.GetPreamble().Length)

      ' Decode the byte array.
      Dim s2 As String = utf32.GetString(bytes, 0, bytes.Length)
      Console.WriteLine(s2)
   End Sub
End Module
' The example displays the following output:
'       ?It was the best of times, it was the worst of times...

请注意,在这种情况下,解码的字符串与原始字符串不同,因为它以 32 位字节顺序标记 U+FFFE U+0000 开头。 这意味着这两个字符串将比较为不相等,如果字符串为输出,则 BOM 将显示为替换字符“?”。

注解

使用错误检测时,无效序列会导致此方法引发 ArgumentException。 如果不进行错误检测,将忽略无效序列,并且不会引发异常。

如果要解码的字节范围包括 BOM) (字节顺序标记,并且字节数组由非 BOM 感知类型的方法返回,则字符 U+FFFE 包含在此方法返回的字符数组中。 可以通过调用 String.TrimStart 方法将其删除。

要转换的数据(例如从流读取的数据)可能仅在顺序块中可用。 在这种情况下,或者,如果数据量太大,需要划分为较小的块,则应用程序应分别使用 Decoder 方法或 Encoder 方法提供的 GetDecoderGetEncoder

适用于

另请参阅