UTF32Encoding.GetMaxCharCount(Int32) 方法
定义
重要
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计算通过解码指定字节数生成的最大字符数。
public:
override int GetMaxCharCount(int byteCount);
public override int GetMaxCharCount(int byteCount);
override this.GetMaxCharCount : int -> int
Public Overrides Function GetMaxCharCount (byteCount As Integer) As Integer
参数
- byteCount
- Int32
要解码的字节数。
返回
通过解码指定字节数生成的最大字符数。
例外
发生回退(有关详细信息,请参阅 .NET 中的字符编码)
-以及-
示例
以下示例将字符串编码为字节数组,然后将字节解码为字符数组。
using System;
using System.Text;
public class SamplesUTF32Encoding {
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)
// a high-surrogate value (U+D8FF)
// a low-surrogate value (U+DCFF)
String myStr = "za\u0306\u01FD\u03B2\uD8FF\uDCFF";
// barrBE uses the big-endian byte order.
byte[] barrBE = new byte[u32BE.GetByteCount( myStr )];
u32BE.GetBytes( myStr, 0, myStr.Length, barrBE, 0 );
// barrLE uses the little-endian byte order.
byte[] barrLE = new byte[u32LE.GetByteCount( myStr )];
u32LE.GetBytes( myStr, 0, myStr.Length, barrLE, 0 );
// Get the char counts and decode the byte arrays.
Console.Write( "BE array with BE encoding : " );
PrintCountsAndChars( barrBE, u32BE );
Console.Write( "LE array with LE encoding : " );
PrintCountsAndChars( barrLE, u32LE );
// Decode the byte arrays using an encoding with a different byte order.
Console.Write( "BE array with LE encoding : " );
try {
PrintCountsAndChars( barrBE, u32LE );
}
catch ( System.ArgumentException e ) {
Console.WriteLine( e.Message );
}
Console.Write( "LE array with BE encoding : " );
try {
PrintCountsAndChars( barrLE, u32BE );
}
catch ( System.ArgumentException e ) {
Console.WriteLine( e.Message );
}
}
public static void PrintCountsAndChars( byte[] bytes, Encoding enc ) {
// Display the name of the encoding used.
Console.Write( "{0,-25} :", enc.ToString() );
// Display the exact character count.
int iCC = enc.GetCharCount( bytes );
Console.Write( " {0,-3}", iCC );
// Display the maximum character count.
int iMCC = enc.GetMaxCharCount( bytes.Length );
Console.Write( " {0,-3} :", iMCC );
// Decode the bytes and display the characters.
char[] chars = new char[iCC];
enc.GetChars( bytes, 0, bytes.Length, chars, 0 );
Console.WriteLine( chars );
}
}
Imports System.Text
Public Class SamplesUTF32Encoding
Public Shared 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)
' a high-surrogate value (U+D8FF)
' a low-surrogate value (U+DCFF)
Dim myStr As String = "za" & ChrW(&H0306) & ChrW(&H01FD) & ChrW(&H03B2) & ChrW(&HD8FF) & ChrW(&HDCFF)
' barrBE uses the big-endian byte order.
' NOTE: In Visual Basic, arrays contain one extra element by default.
' The following line creates an array with the exact number of elements required.
Dim barrBE(u32BE.GetByteCount(myStr) - 1) As Byte
u32BE.GetBytes(myStr, 0, myStr.Length, barrBE, 0)
' barrLE uses the little-endian byte order.
' NOTE: In Visual Basic, arrays contain one extra element by default.
' The following line creates an array with the exact number of elements required.
Dim barrLE(u32LE.GetByteCount(myStr) - 1) As Byte
u32LE.GetBytes(myStr, 0, myStr.Length, barrLE, 0)
' Get the char counts and decode the byte arrays.
Console.Write("BE array with BE encoding : ")
PrintCountsAndChars(barrBE, u32BE)
Console.Write("LE array with LE encoding : ")
PrintCountsAndChars(barrLE, u32LE)
' Decode the byte arrays using an encoding with a different byte order.
Console.Write("BE array with LE encoding : ")
Try
PrintCountsAndChars(barrBE, u32LE)
Catch e As System.ArgumentException
Console.WriteLine(e.Message)
End Try
Console.Write("LE array with BE encoding : ")
Try
PrintCountsAndChars(barrLE, u32BE)
Catch e As System.ArgumentException
Console.WriteLine(e.Message)
End Try
End Sub
Public Shared Sub PrintCountsAndChars(bytes() As Byte, enc As Encoding)
' Display the name of the encoding used.
Console.Write("{0,-25} :", enc.ToString())
' Display the exact character count.
Dim iCC As Integer = enc.GetCharCount(bytes)
Console.Write(" {0,-3}", iCC)
' Display the maximum character count.
Dim iMCC As Integer = enc.GetMaxCharCount(bytes.Length)
Console.Write(" {0,-3} :", iMCC)
' Decode the bytes and display the characters.
Dim chars(iCC) As Char
enc.GetChars(bytes, 0, bytes.Length, chars, 0)
Console.WriteLine(chars)
End Sub
End Class
注解
若要计算存储生成的字符所需的 GetChars 确切数组大小,请调用 GetCharCount 该方法。 若要计算最大数组大小,请调用 GetMaxCharCount 该方法。 该方法 GetCharCount 通常分配较少的内存,而 GetMaxCharCount 该方法通常执行速度更快。
GetMaxCharCount 是一个最差的数字,包括当前所选 DecoderFallback的最差情况。 如果使用可能较大的字符串选择回退, GetMaxCharCount 可以返回大值。
在大多数情况下,此方法返回小字符串的合理数字。 对于大型字符串,可能需要在极少数情况下使用非常大的缓冲区和捕获错误之间进行选择,即超出更合理的缓冲区。 你可能还想考虑使用其他方法或使用GetCharCountConvert方法。
GetMaxCharCount 与 . 没有关系 GetBytes。 如果需要与使用 GetBytes类似的函数,请使用 GetMaxByteCount。
注释
GetMaxCharCount(N) 不一定与 N* GetMaxCharCount(1)..