Decimal.GetBits(Decimal) Decimal.GetBits(Decimal) Decimal.GetBits(Decimal) Decimal.GetBits(Decimal) Method

Definición

Convierte el valor de una instancia de Decimal especificada en la representación binaria equivalente.Converts the value of a specified instance of Decimal to its equivalent binary representation.

public:
 static cli::array <int> ^ GetBits(System::Decimal d);
public static int[] GetBits (decimal d);
static member GetBits : decimal -> int[]
Public Shared Function GetBits (d As Decimal) As Integer()

Parámetros

d
Decimal Decimal Decimal Decimal

Valor que se va a convertir.The value to convert.

Devoluciones

Int32[]

Matriz de enteros de 32 bits con signo con cuatro elementos que contiene la representación binaria de d.A 32-bit signed integer array with four elements that contain the binary representation of d.

Ejemplos

En el ejemplo siguiente se GetBits usa el método para Decimal convertir varios valores en sus representaciones binarias equivalentes.The following example uses the GetBits method to convert several Decimal values to their equivalent binary representations. A continuación, muestra los valores decimales y el valor hexadecimal de los elementos de la matriz GetBits devuelta por el método.It then displays the decimal values and the hexadecimal value of the elements in the array returned by the GetBits method.

using namespace System;

int main()
{
   // Define an array of Decimal values.
   array<Decimal>^ values = gcnew array<Decimal>  { Decimal::One, 
                                  Decimal::Parse("100000000000000"), 
                                  Decimal::Parse("10000000000000000000000000000"),
                                  Decimal::Parse("100000000000000.00000000000000"), 
                                  Decimal::Parse("1.0000000000000000000000000000"),
                                  Decimal::Parse("123456789"), 
                                  Decimal::Parse("0.123456789"), 
                                  Decimal::Parse("0.000000000123456789"), 
                                  Decimal::Parse("0.000000000000000000123456789"), 
                                  Decimal::Parse("4294967295.0"), 
                                  Decimal::Parse("18446744073709551615.0"), 
                                  Decimal::MaxValue, Decimal::MinValue, 
                                  Decimal::Parse("-7.9228162514264337593543950335") }; 

   Console::WriteLine("{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                      "Argument", "Bits[3]", "Bits[2]", "Bits[1]", "Bits[0]" );
   Console::WriteLine("{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                      "--------", "-------", "-------", "-------", "-------" );
   
   for each (Decimal value in values)
   {
      array<int>^ bits = Decimal::GetBits(value); 
      Console::WriteLine("{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                         value, bits[3], bits[2], bits[1], bits[0] );
   }
}

/*
This example of the Decimal::GetBits( Decimal ) method
generates the following output. It displays the argument
as a Decimal and the result array in hexadecimal.

                       Argument     Bits[3]   Bits[2]   Bits[1]   Bits[0]
                       --------     -------   -------   -------   -------
                              1    00000000  00000000  00000000  00000001
                100000000000000    00000000  00000000  00005AF3  107A4000
  10000000000000000000000000000    00000000  204FCE5E  3E250261  10000000
 100000000000000.00000000000000    000E0000  204FCE5E  3E250261  10000000
 1.0000000000000000000000000000    001C0000  204FCE5E  3E250261  10000000
                      123456789    00000000  00000000  00000000  075BCD15
                    0.123456789    00090000  00000000  00000000  075BCD15
           0.000000000123456789    00120000  00000000  00000000  075BCD15
  0.000000000000000000123456789    001B0000  00000000  00000000  075BCD15
                     4294967295    00000000  00000000  00000000  FFFFFFFF
           18446744073709551615    00000000  00000000  FFFFFFFF  FFFFFFFF
  79228162514264337593543950335    00000000  FFFFFFFF  FFFFFFFF  FFFFFFFF
 -79228162514264337593543950335    80000000  FFFFFFFF  FFFFFFFF  FFFFFFFF
-7.9228162514264337593543950335    801C0000  FFFFFFFF  FFFFFFFF  FFFFFFFF
*/
using System;

class Example
{
   public static void Main()
   {
      // Define an array of Decimal values.
      Decimal[] values = { 1M, 100000000000000M, 10000000000000000000000000000M,
                           100000000000000.00000000000000M, 1.0000000000000000000000000000M,
                           123456789M, 0.123456789M, 0.000000000123456789M,
                           0.000000000000000000123456789M, 4294967295M,
                           18446744073709551615M, Decimal.MaxValue,
                           Decimal.MinValue, -7.9228162514264337593543950335M }; 
      
      Console.WriteLine("{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                        "Argument", "Bits[3]", "Bits[2]", "Bits[1]", 
                        "Bits[0]" );
      Console.WriteLine( "{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                         "--------", "-------", "-------", "-------", 
                         "-------" );

      // Iterate each element and display its binary representation
      foreach (var value in values) {
        int[] bits = decimal.GetBits(value);
        Console.WriteLine("{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                          value, bits[3], bits[2], bits[1], bits[0]);
      }
   }
}
// The example displays the following output:
//                           Argument     Bits[3]   Bits[2]   Bits[1]   Bits[0]
//                           --------     -------   -------   -------   -------
//                                  1    00000000  00000000  00000000  00000001
//                    100000000000000    00000000  00000000  00005AF3  107A4000
//      10000000000000000000000000000    00000000  204FCE5E  3E250261  10000000
//     100000000000000.00000000000000    000E0000  204FCE5E  3E250261  10000000
//     1.0000000000000000000000000000    001C0000  204FCE5E  3E250261  10000000
//                          123456789    00000000  00000000  00000000  075BCD15
//                        0.123456789    00090000  00000000  00000000  075BCD15
//               0.000000000123456789    00120000  00000000  00000000  075BCD15
//      0.000000000000000000123456789    001B0000  00000000  00000000  075BCD15
//                         4294967295    00000000  00000000  00000000  FFFFFFFF
//               18446744073709551615    00000000  00000000  FFFFFFFF  FFFFFFFF
//      79228162514264337593543950335    00000000  FFFFFFFF  FFFFFFFF  FFFFFFFF
//     -79228162514264337593543950335    80000000  FFFFFFFF  FFFFFFFF  FFFFFFFF
//    -7.9228162514264337593543950335    801C0000  FFFFFFFF  FFFFFFFF  FFFFFFFF
Module Example
   Public Sub Main()
      ' Define an array of decimal values.
      Dim values() As Decimal = { 1d, 100000000000000d, 
                                  10000000000000000000000000000d,
                                  100000000000000.00000000000000d, 
                                  1.0000000000000000000000000000d,
                                  123456789d, 0.123456789d, 
                                  0.000000000123456789d,
                                  0.000000000000000000123456789d, 
                                  4294967295d,
                                  18446744073709551615d, 
                                  Decimal.MaxValue, Decimal.MinValue, 
                                  -7.9228162514264337593543950335d }

      Console.WriteLine("{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                        "Argument", "Bits[3]", "Bits[2]", "Bits[1]", 
                        "Bits[0]" )
      Console.WriteLine( "{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                         "--------", "-------", "-------", "-------", 
                         "-------" )

      ' Iterate each element and display its binary representation
      For Each value In values
         Dim bits() As Integer = Decimal.GetBits(value)
        Console.WriteLine("{0,31}  {1,10:X8}{2,10:X8}{3,10:X8}{4,10:X8}", 
                          value, bits(3), bits(2), bits(1), bits(0))

       Next
    End Sub
End Module 
' The example displays the following output:
'
'                        Argument     Bits(3)   Bits(2)   Bits(1)   Bits(0)
'                        --------     -------   -------   -------   -------
'                               1    00000000  00000000  00000000  00000001
'                 100000000000000    00000000  00000000  00005AF3  107A4000
'   10000000000000000000000000000    00000000  204FCE5E  3E250261  10000000
'  100000000000000.00000000000000    000E0000  204FCE5E  3E250261  10000000
'  1.0000000000000000000000000000    001C0000  204FCE5E  3E250261  10000000
'                       123456789    00000000  00000000  00000000  075BCD15
'                     0.123456789    00090000  00000000  00000000  075BCD15
'            0.000000000123456789    00120000  00000000  00000000  075BCD15
'   0.000000000000000000123456789    001B0000  00000000  00000000  075BCD15
'                      4294967295    00000000  00000000  00000000  FFFFFFFF
'            18446744073709551615    00000000  00000000  FFFFFFFF  FFFFFFFF
'   79228162514264337593543950335    00000000  FFFFFFFF  FFFFFFFF  FFFFFFFF
'  -79228162514264337593543950335    80000000  FFFFFFFF  FFFFFFFF  FFFFFFFF
' -7.9228162514264337593543950335    801C0000  FFFFFFFF  FFFFFFFF  FFFFFFFF

En el ejemplo siguiente se GetBits usa el método para recuperar las partes componentes de una matriz.The following example uses the GetBits method to retrieve the component parts of an array. A continuación, utiliza esta matriz en la llamada al Decimal(Int32, Int32, Int32, Boolean, Byte) constructor para crear una instancia de Decimal un nuevo valor.It then uses this array in the call to the Decimal(Int32, Int32, Int32, Boolean, Byte) constructor to instantiate a new Decimal value.

using System;

public class Example
{
   public static void Main()
   {
      Decimal[] values = { 1234.96m, -1234.96m };
      foreach (var value in values) {
         int[] parts = Decimal.GetBits(value);
         bool sign = (parts[3] & 0x80000000) != 0;
   
         byte scale = (byte) ((parts[3] >> 16) & 0x7F); 
         Decimal newValue = new Decimal(parts[0], parts[1], parts[2], sign, scale);
         Console.WriteLine("{0} --> {1}", value, newValue);
      }
   }
}
// The example displays the following output:
//       1234.96 --> 1234.96
//       -1234.96 --> -1234.96
Module Example
   Public Sub Main()
      Dim values() As Decimal = { 1234.96d, -1234.96d }
      For Each value In values
         Dim parts() = Decimal.GetBits(value)
         Dim sign As Boolean = (parts(3) And &h80000000) <> 0
         Dim scale As Byte = CByte((parts(3) >> 16) And &H7F)
   
         Dim newValue As New Decimal(parts(0), parts(1), parts(2), sign, scale)    
         Console.WriteLine("{0} --> {1}", value, newValue)
      Next   
   End Sub
End Module
' The example displays the following output:
'    1234.96 --> 1234.96
'    -1234.96 --> -1234.96

Comentarios

La representación binaria de Decimal un número consta de un signo de 1 bit, un número entero de 96 bits y un factor de escala que se usa para dividir el número entero y especificar qué parte es una fracción decimal.The binary representation of a Decimal number consists of a 1-bit sign, a 96-bit integer number, and a scaling factor used to divide the integer number and specify what portion of it is a decimal fraction. El factor de escala es implícitamente el número 10, que se eleva a un exponente que va de 0 a 28.The scaling factor is implicitly the number 10, raised to an exponent ranging from 0 to 28.

El valor devuelto es una matriz de cuatro elementos de enteros de 32 bits con signo.The return value is a four-element array of 32-bit signed integers.

Los elementos primero, segundo y tercero de la matriz devuelta contienen los bits de 32 bajo, medio y alto del número entero de 96 bits.The first, second, and third elements of the returned array contain the low, middle, and high 32 bits of the 96-bit integer number.

El cuarto elemento de la matriz devuelta contiene el factor de escala y el signo.The fourth element of the returned array contains the scale factor and sign. Consta de las siguientes partes:It consists of the following parts:

Los bits 0 a 15, la palabra inferior, no se usan y deben ser cero.Bits 0 to 15, the lower word, are unused and must be zero.

Los bits 16 a 23 deben contener un exponente entre 0 y 28, que indica la potencia de 10 para dividir el número entero.Bits 16 to 23 must contain an exponent between 0 and 28, which indicates the power of 10 to divide the integer number.

Los bits 24 a 30 no se usan y deben ser cero.Bits 24 to 30 are unused and must be zero.

El bit 31 contiene el signo: 0 significa positivo y 1 significa negativo.Bit 31 contains the sign: 0 mean positive, and 1 means negative.

Tenga en cuenta que la representación de bits distingue entre cero positivo y negativo.Note that the bit representation differentiates between negative and positive zero. Estos valores se tratan como iguales en todas las operaciones.These values are treated as being equal in all operations.

Se aplica a

Consulte también: