Double.Equals 方法
定義
重要
部分資訊涉及發行前產品,在發行之前可能會有大幅修改。 Microsoft 對此處提供的資訊,不做任何明確或隱含的瑕疵擔保。
回傳一個值,表示兩個 的 Double 實例是否代表相同值。
多載
| 名稱 | Description |
|---|---|
| Equals(Double) |
回傳一個值,表示該實例與指定 Double 物件是否代表相同值。 |
| Equals(Object) |
傳回值,指出這個實例是否等於指定的物件。 |
Equals(Double)
- 來源:
- Double.cs
- 來源:
- Double.cs
- 來源:
- Double.cs
- 來源:
- Double.cs
- 來源:
- Double.cs
回傳一個值,表示該實例與指定 Double 物件是否代表相同值。
public:
virtual bool Equals(double obj);
public bool Equals(double obj);
override this.Equals : double -> bool
Public Function Equals (obj As Double) As Boolean
參數
傳回
true若等obj於此實例;否則,。 false
實作
備註
此 Double.Equals(Double) 方法實作了 System.IEquatable<T> 介面,且因為其不必將 Double.Equals(Object) 參數轉換成物件,表現略優於 obj。
擴充轉換
視您的程式設計語言而定,可能會撰寫 Equals 方法的程序代碼,其中參數型別的位數比實例類型少(較窄)。 這是可能的,因為某些程式語言會執行隱式擴大轉換,把參數表示成與實例具有相同位元數的類型。
例如,假設實體類型為 Double ,且參數類型為 Int32。 Microsoft C# 編譯程式會產生指示,以將參數的值表示為 Double 對象,然後產生 Double.Equals(Double) 方法,以比較 實例的值和參數的擴大表示法。
請參閱程式設計語言的檔,以判斷其編譯程式是否執行數值類型的隱含擴大轉換。 如需詳細資訊,請參閱 類型轉換數據表 主題。
比較中的精確度
Equals方法應該謹慎使用,因為兩個明顯相等的值可能會因為兩個值的不同精確度而不相等。 下列範例會報告 Double 值 .333333 和 Double 1 除以 3 所傳回的值不相等。
// Initialize two doubles with apparently identical values
double double1 = .33333;
double double2 = (double) 1/3;
// Compare them for equality
Console.WriteLine(double1.Equals(double2)); // displays false
// Initialize two doubles with apparently identical values
let double1 = 0.33333
let double2 = double (1 / 3)
// Compare them for equality
printfn $"{double1.Equals double2}" // displays false
' Initialize two doubles with apparently identical values
Dim double1 As Double = .33333
Dim double2 As Double = 1/3
' Compare them for equality
Console.WriteLine(double1.Equals(double2)) ' displays False
與其直接比較相等性,一種方法涉及定義兩個值之間可接受的相對差異幅度(如其中一個值的0.001%)。 如果兩個值之間的差異絕對值小於或等於該邊界,則差異可能是由於有效位數的差異,因此,這些值可能會相等。 下列範例會使用這項技術來比較 .33333 和 1/3,前述 Double 程式碼範例發現兩個值不相等。 在此情況下,數值相等。
// Initialize two doubles with apparently identical values
double double1 = .333333;
double double2 = (double) 1/3;
// Define the tolerance for variation in their values
double difference = Math.Abs(double1 * .00001);
// Compare the values
// The output to the console indicates that the two values are equal
if (Math.Abs(double1 - double2) <= difference)
Console.WriteLine("double1 and double2 are equal.");
else
Console.WriteLine("double1 and double2 are unequal.");
// Initialize two doubles with apparently identical values
let double1 = 0.333333
let double2 = double (1 / 3)
// Define the tolerance for variation in their values
let difference = abs (double1 * 0.00001)
// Compare the values
// The output to the console indicates that the two values are equal
if abs (double1 - double2) <= difference then
printfn "double1 and double2 are equal."
else
printfn "double1 and double2 are unequal."
' Initialize two doubles with apparently identical values
Dim double1 As Double = .33333
Dim double2 As Double = 1/3
' Define the tolerance for variation in their values
Dim difference As Double = Math.Abs(double1 * .00001)
' Compare the values
' The output to the console indicates that the two values are equal
If Math.Abs(double1 - double2) <= difference Then
Console.WriteLine("double1 and double2 are equal.")
Else
Console.WriteLine("double1 and double2 are unequal.")
End If
Note
由於 Epsilon 定義範圍接近零之正值的最小運算式,因此兩個相似值之間的差異邊界必須大於 Epsilon。 通常,它是 Epsilon的好幾倍。 因此,建議您不要使用Epsilon來比較Double值的相等性。
第二種技術涉及比較兩個浮點數與某些絕對值之間的差異。 如果差異小於或等於該絕對值,數位就會相等。 如果某個數字大於另一個,則數字不相等。 其中一個替代方法是任意選取絕對值。 不過,這是有問題的,因為可接受的差異邊界取決於值的大小 Double 。 第二個替代方法會利用浮點格式的設計功能:兩個浮點值的整數表示之間的差異表示可能分隔它們的浮點值數目。 例如,0.0 和 Epsilon 之間的差異是 1,因為在使用值為零的 Epsilon 時,Double 是最小可表示的值。 下列範例會使用這項技術來比較 .33333 和 1/3,這是上一個程式代碼範例使用 Double 方法發現不相等的兩個 Equals(Double) 值。 此範例使用 BitConverter.DoubleToInt64Bits 方法,將雙精確度浮點值轉換為其整數表示法。 如果整數表示法之間沒有可能的浮點值,則此範例會將值宣告為相等。
public static void Main()
{
// Initialize the values.
double value1 = .1 * 10;
double value2 = 0;
for (int ctr = 0; ctr < 10; ctr++)
value2 += .1;
Console.WriteLine($"{value1:R} = {value2:R}: " +
$"{HasMinimalDifference(value1, value2, 1)}");
}
public static bool HasMinimalDifference(
double value1,
double value2,
int allowableDifference
)
{
// Convert the double values to long values.
long lValue1 = BitConverter.DoubleToInt64Bits(value1);
long lValue2 = BitConverter.DoubleToInt64Bits(value2);
// If the signs are different, return false except for +0 and -0.
if ((lValue1 >> 63) != (lValue2 >> 63))
{
if (value1 == value2)
return true;
return false;
}
// Calculate the number of possible
// floating-point values in the difference.
long diff = Math.Abs(lValue1 - lValue2);
if (diff <= allowableDifference)
return true;
return false;
}
// The example displays the following output:
//
// 1 = 0.99999999999999989: True
open System
let hasMinimalDifference (value1: double) (value2: double) (units: int) =
let lValue1 = BitConverter.DoubleToInt64Bits value1
let lValue2 = BitConverter.DoubleToInt64Bits value2
// If the signs are different, return false except for +0 and -0.
if (lValue1 >>> 63) <> (lValue2 >>> 63) then
value1 = value2
else
let diff = abs (lValue1 - lValue2)
diff <= int64 units
let value1 = 0.1 * 10.
let mutable value2 = 0.
for _ = 0 to 9 do
value2 <- value2 + 0.1
printfn $"{value1:R} = {value2:R}: {hasMinimalDifference value1 value2 1}"
// The example displays the following output:
// 1 = 0.99999999999999989: True
Module Example1
Public Sub Main()
Dim value1 As Double = .1 * 10
Dim value2 As Double = 0
For ctr As Integer = 0 To 9
value2 += .1
Next
Console.WriteLine("{0:R} = {1:R}: {2}", value1, value2,
HasMinimalDifference(value1, value2, 1))
End Sub
Public Function HasMinimalDifference(value1 As Double, value2 As Double, units As Integer) As Boolean
Dim lValue1 As long = BitConverter.DoubleToInt64Bits(value1)
Dim lValue2 As long = BitConverter.DoubleToInt64Bits(value2)
' If the signs are different, Return False except for +0 and -0.
If ((lValue1 >> 63) <> (lValue2 >> 63)) Then
If value1 = value2 Then
Return True
End If
Return False
End If
Dim diff As Long = Math.Abs(lValue1 - lValue2)
If diff <= units Then
Return True
End If
Return False
End Function
End Module
' The example displays the following output:
' 1 = 0.99999999999999989: True
Note
對於某些值,即使整數表示法之間有可能的浮點值,您仍可能會將其視為相等。 例如,請考慮雙精度值 0.39 和 1.69 - 1.3(其計算結果為 0.3899999999999999)。 在小端電腦上,這些值的整數表示分別為 4600697235336603894 和 4600697235336603892。 整數值之間的差異是 2,這表示 和 之間0.39有1.69 - 1.3可能的浮點值。
版本差異
在超出文件所記載的精確度時,浮點數的精確度是特定於 .NET 的實作和版本的。 因此,兩個特定數字的比較可能會在 .NET 版本之間變更,因為數位的內部表示精確度可能會變更。
NAN
如果利用Double.NaN方法測試兩個Equals值是否相等,該方法會回傳true。 不過,如果使用等號運算子測試兩個Double.NaN值是否相等,運算符會傳false回 。 當您想要判斷 Double 的值是否為非數字(NaN)時,可以呼叫 IsNaN 方法作為替代方法。
給呼叫者的注意事項
編譯器過載解析可能解釋兩種 Equals(Object) 方法過載行為上的表面差異。 如果定義了參數與 a obj 之間的Double隱式轉換,且參數未被指定為 Object,編譯器可能會執行隱式轉換並呼叫該Equals(Double)方法。 否則,他們會呼叫 該Equals(Object)方法,且當其false參數不是obj值時,該方法總是回傳Double。 以下範例說明兩種方法過載行為的差異。 在所有原始數值型別(除了 Decimal 和 C#)的情況下,第一次比較回傳 true 是因為編譯器會自動執行擴大轉換並呼叫該 Equals(Double) 方法;而第二次比較則回傳 false 是因為編譯器呼叫該 Equals(Object) 方法。
using System;
public class OverExample
{
static double value = 112;
public static void Main()
{
byte byte1= 112;
Console.WriteLine("value = byte1: {0,16}", value.Equals(byte1));
TestObjectForEquality(byte1);
short short1 = 112;
Console.WriteLine("value = short1: {0,16}", value.Equals(short1));
TestObjectForEquality(short1);
int int1 = 112;
Console.WriteLine("value = int1: {0,18}", value.Equals(int1));
TestObjectForEquality(int1);
long long1 = 112;
Console.WriteLine("value = long1: {0,17}", value.Equals(long1));
TestObjectForEquality(long1);
sbyte sbyte1 = 112;
Console.WriteLine("value = sbyte1: {0,16}", value.Equals(sbyte1));
TestObjectForEquality(sbyte1);
ushort ushort1 = 112;
Console.WriteLine("value = ushort1: {0,16}", value.Equals(ushort1));
TestObjectForEquality(ushort1);
uint uint1 = 112;
Console.WriteLine("value = uint1: {0,18}", value.Equals(uint1));
TestObjectForEquality(uint1);
ulong ulong1 = 112;
Console.WriteLine("value = ulong1: {0,17}", value.Equals(ulong1));
TestObjectForEquality(ulong1);
decimal dec1 = 112m;
Console.WriteLine("value = dec1: {0,21}", value.Equals(dec1));
TestObjectForEquality(dec1);
float sng1 = 112;
Console.WriteLine("value = sng1: {0,19}", value.Equals(sng1));
TestObjectForEquality(sng1);
}
private static void TestObjectForEquality(Object obj)
{
Console.WriteLine("{0} ({1}) = {2} ({3}): {4}\n",
value, value.GetType().Name,
obj, obj.GetType().Name,
value.Equals(obj));
}
}
// The example displays the following output:
// value = byte1: True
// 112 (Double) = 112 (Byte): False
//
// value = short1: True
// 112 (Double) = 112 (Int16): False
//
// value = int1: True
// 112 (Double) = 112 (Int32): False
//
// value = long1: True
// 112 (Double) = 112 (Int64): False
//
// value = sbyte1: True
// 112 (Double) = 112 (SByte): False
//
// value = ushort1: True
// 112 (Double) = 112 (UInt16): False
//
// value = uint1: True
// 112 (Double) = 112 (UInt32): False
//
// value = ulong1: True
// 112 (Double) = 112 (UInt64): False
//
// value = dec1: False
// 112 (Double) = 112 (Decimal): False
//
// value = sng1: True
// 112 (Double) = 112 (Single): False
let value = 112
let testObjectForEquality (obj: obj) =
printfn $"{value} ({value.GetType().Name}) = {obj} ({obj.GetType().Name}): {value.Equals obj}\n"
let byte1 = 112uy
printfn $"value = byte1: {value.Equals byte1,16}"
testObjectForEquality byte1
let short1 = 112s
printfn $"value = short1: {value.Equals short1,16}"
testObjectForEquality short1
let int1 = 112
printfn $"value = int1: {value.Equals int1,18}"
testObjectForEquality int1
let long1 = 112L
printfn $"value = long1: {value.Equals long1,17}"
testObjectForEquality long1
let sbyte1 = 112y
printfn $"value = sbyte1: {value.Equals sbyte1,16}"
testObjectForEquality sbyte1
let ushort1 = 112us
printfn $"value = ushort1: {value.Equals ushort1,16}"
testObjectForEquality ushort1
let uint1 = 112u
printfn $"value = uint1: {value.Equals uint1,18}"
testObjectForEquality uint1
let ulong1 = 112uL
printfn $"value = ulong1: {value.Equals ulong1,17}"
testObjectForEquality ulong1
let dec1 = 112m
printfn $"value = dec1: {value.Equals dec1,21}"
testObjectForEquality dec1
let sng1 = 112f
printfn $"value = sng1: {value.Equals sng1,19}"
testObjectForEquality sng1
// The example displays the following output:
// value = byte1: True
// 112 (Double) = 112 (Byte): False
//
// value = short1: True
// 112 (Double) = 112 (Int16): False
//
// value = int1: True
// 112 (Double) = 112 (Int32): False
//
// value = long1: True
// 112 (Double) = 112 (Int64): False
//
// value = sbyte1: True
// 112 (Double) = 112 (SByte): False
//
// value = ushort1: True
// 112 (Double) = 112 (UInt16): False
//
// value = uint1: True
// 112 (Double) = 112 (UInt32): False
//
// value = ulong1: True
// 112 (Double) = 112 (UInt64): False
//
// value = dec1: False
// 112 (Double) = 112 (Decimal): False
//
// value = sng1: True
// 112 (Double) = 112 (Single): False
Module Example2
Dim value As Double = 112
Public Sub Main()
Dim byte1 As Byte = 112
Console.WriteLine("value = byte1: {0,16}", value.Equals(byte1))
TestObjectForEquality(byte1)
Dim short1 As Short = 112
Console.WriteLine("value = short1: {0,16}", value.Equals(short1))
TestObjectForEquality(short1)
Dim int1 As Integer = 112
Console.WriteLine("value = int1: {0,18}", value.Equals(int1))
TestObjectForEquality(int1)
Dim long1 As Long = 112
Console.WriteLine("value = long1: {0,17}", value.Equals(long1))
TestObjectForEquality(long1)
Dim sbyte1 As SByte = 112
Console.WriteLine("value = sbyte1: {0,16}", value.Equals(sbyte1))
TestObjectForEquality(sbyte1)
Dim ushort1 As UShort = 112
Console.WriteLine("value = ushort1: {0,16}", value.Equals(ushort1))
TestObjectForEquality(ushort1)
Dim uint1 As UInteger = 112
Console.WriteLine("value = uint1: {0,18}", value.Equals(uint1))
TestObjectForEquality(uint1)
Dim ulong1 As ULong = 112
Console.WriteLine("value = ulong1: {0,17}", value.Equals(ulong1))
TestObjectForEquality(ulong1)
Dim dec1 As Decimal = 112d
Console.WriteLine("value = dec1: {0,20}", value.Equals(dec1))
TestObjectForEquality(dec1)
Dim sng1 As Single = 112
Console.WriteLine("value = sng1: {0,19}", value.Equals(sng1))
TestObjectForEquality(sng1)
End Sub
Private Sub TestObjectForEquality(obj As Object)
Console.WriteLine("{0} ({1}) = {2} ({3}): {4}",
value, value.GetType().Name,
obj, obj.GetType().Name,
value.Equals(obj))
Console.WriteLine()
End Sub
End Module
' The example displays the following output:
' value = byte1: True
' 112 (Double) = 112 (Byte): False
'
' value = short1: True
' 112 (Double) = 112 (Int16): False
'
' value = int1: True
' 112 (Double) = 112 (Int32): False
'
' value = long1: True
' 112 (Double) = 112 (Int64): False
'
' value = sbyte1: True
' 112 (Double) = 112 (SByte): False
'
' value = ushort1: True
' 112 (Double) = 112 (UInt16): False
'
' value = uint1: True
' 112 (Double) = 112 (UInt32): False
'
' value = ulong1: True
' 112 (Double) = 112 (UInt64): False
'
' value = dec1: True
' 112 (Double) = 112 (Decimal): False
'
' value = sng1: True
' 112 (Double) = 112 (Single): False
另請參閱
適用於
Equals(Object)
- 來源:
- Double.cs
- 來源:
- Double.cs
- 來源:
- Double.cs
- 來源:
- Double.cs
- 來源:
- Double.cs
傳回值,指出這個實例是否等於指定的物件。
public:
override bool Equals(System::Object ^ obj);
public override bool Equals(object obj);
public override bool Equals(object? obj);
override this.Equals : obj -> bool
Public Overrides Function Equals (obj As Object) As Boolean
參數
- obj
- Object
一個可以與此事比較的物件。
傳回
true 若 obj 是 的 Double 一個實例,且 等於該實例的值;否則, false。
備註
Equals方法應該謹慎使用,因為兩個明顯相等的值可能會因為兩個值的不同精確度而不相等。 下列範例報告 Double 的值為 .3333,而將 1 除以 3 所得到的 Double 不相等。
// Initialize two doubles with apparently identical values
double double1 = .33333;
object double2 = (double) 1/3;
// Compare them for equality
Console.WriteLine(double1.Equals(double2)); // displays false
// Initialize two doubles with apparently identical values
let double1 = 0.33333
let double2 = double (1 / 3) |> box
// Compare them for equality
printfn $"{double1.Equals double2}" // displays false
' Initialize two doubles with apparently identical values
Dim double1 As Double = .33333
Dim double2 As Object = 1/3
' Compare them for equality
Console.WriteLine(double1.Equals(double2)) ' displays False
關於呼叫方法 Equals 的替代方案,請參閱過載文件 Equals(Double) 。
浮點數超出文件精度的精確度,取決於 .NET 框架的實作與版本。 因此,兩個特定數字的比較可能會因 .NET 框架內部表示的精確度而改變。
如果利用Double.NaN方法測試兩個Equals值是否相等,該方法會回傳true。 然而,若使用等號算子測試兩個 NaN 值是否相等,則算子返回 false。 當您想要判斷 Double 的值是否為非數字(NaN)時,可以呼叫 IsNaN 方法作為替代方法。
給呼叫者的注意事項
編譯器過載解析可能解釋兩種 Equals(Object) 方法過載行為上的表面差異。 如果定義了參數與 a obj 之間的Double隱式轉換,且參數未被指定為 Object,編譯器可能會執行隱式轉換並呼叫該Equals(Double)方法。 否則,他們會呼叫 該Equals(Object)方法,且當其false參數不是obj值時,該方法總是回傳Double。 以下範例說明兩種方法過載行為的差異。 在所有原始數值型別(除了 Decimal 和 C#)的情況下,第一次比較回傳 true 是因為編譯器會自動執行擴大轉換並呼叫該 Equals(Double) 方法;而第二次比較則回傳 false 是因為編譯器呼叫該 Equals(Object) 方法。
using System;
public class OverExample
{
static double value = 112;
public static void Main()
{
byte byte1= 112;
Console.WriteLine("value = byte1: {0,16}", value.Equals(byte1));
TestObjectForEquality(byte1);
short short1 = 112;
Console.WriteLine("value = short1: {0,16}", value.Equals(short1));
TestObjectForEquality(short1);
int int1 = 112;
Console.WriteLine("value = int1: {0,18}", value.Equals(int1));
TestObjectForEquality(int1);
long long1 = 112;
Console.WriteLine("value = long1: {0,17}", value.Equals(long1));
TestObjectForEquality(long1);
sbyte sbyte1 = 112;
Console.WriteLine("value = sbyte1: {0,16}", value.Equals(sbyte1));
TestObjectForEquality(sbyte1);
ushort ushort1 = 112;
Console.WriteLine("value = ushort1: {0,16}", value.Equals(ushort1));
TestObjectForEquality(ushort1);
uint uint1 = 112;
Console.WriteLine("value = uint1: {0,18}", value.Equals(uint1));
TestObjectForEquality(uint1);
ulong ulong1 = 112;
Console.WriteLine("value = ulong1: {0,17}", value.Equals(ulong1));
TestObjectForEquality(ulong1);
decimal dec1 = 112m;
Console.WriteLine("value = dec1: {0,21}", value.Equals(dec1));
TestObjectForEquality(dec1);
float sng1 = 112;
Console.WriteLine("value = sng1: {0,19}", value.Equals(sng1));
TestObjectForEquality(sng1);
}
private static void TestObjectForEquality(Object obj)
{
Console.WriteLine("{0} ({1}) = {2} ({3}): {4}\n",
value, value.GetType().Name,
obj, obj.GetType().Name,
value.Equals(obj));
}
}
// The example displays the following output:
// value = byte1: True
// 112 (Double) = 112 (Byte): False
//
// value = short1: True
// 112 (Double) = 112 (Int16): False
//
// value = int1: True
// 112 (Double) = 112 (Int32): False
//
// value = long1: True
// 112 (Double) = 112 (Int64): False
//
// value = sbyte1: True
// 112 (Double) = 112 (SByte): False
//
// value = ushort1: True
// 112 (Double) = 112 (UInt16): False
//
// value = uint1: True
// 112 (Double) = 112 (UInt32): False
//
// value = ulong1: True
// 112 (Double) = 112 (UInt64): False
//
// value = dec1: False
// 112 (Double) = 112 (Decimal): False
//
// value = sng1: True
// 112 (Double) = 112 (Single): False
let value = 112
let testObjectForEquality (obj: obj) =
printfn $"{value} ({value.GetType().Name}) = {obj} ({obj.GetType().Name}): {value.Equals obj}\n"
let byte1 = 112uy
printfn $"value = byte1: {value.Equals byte1,16}"
testObjectForEquality byte1
let short1 = 112s
printfn $"value = short1: {value.Equals short1,16}"
testObjectForEquality short1
let int1 = 112
printfn $"value = int1: {value.Equals int1,18}"
testObjectForEquality int1
let long1 = 112L
printfn $"value = long1: {value.Equals long1,17}"
testObjectForEquality long1
let sbyte1 = 112y
printfn $"value = sbyte1: {value.Equals sbyte1,16}"
testObjectForEquality sbyte1
let ushort1 = 112us
printfn $"value = ushort1: {value.Equals ushort1,16}"
testObjectForEquality ushort1
let uint1 = 112u
printfn $"value = uint1: {value.Equals uint1,18}"
testObjectForEquality uint1
let ulong1 = 112uL
printfn $"value = ulong1: {value.Equals ulong1,17}"
testObjectForEquality ulong1
let dec1 = 112m
printfn $"value = dec1: {value.Equals dec1,21}"
testObjectForEquality dec1
let sng1 = 112f
printfn $"value = sng1: {value.Equals sng1,19}"
testObjectForEquality sng1
// The example displays the following output:
// value = byte1: True
// 112 (Double) = 112 (Byte): False
//
// value = short1: True
// 112 (Double) = 112 (Int16): False
//
// value = int1: True
// 112 (Double) = 112 (Int32): False
//
// value = long1: True
// 112 (Double) = 112 (Int64): False
//
// value = sbyte1: True
// 112 (Double) = 112 (SByte): False
//
// value = ushort1: True
// 112 (Double) = 112 (UInt16): False
//
// value = uint1: True
// 112 (Double) = 112 (UInt32): False
//
// value = ulong1: True
// 112 (Double) = 112 (UInt64): False
//
// value = dec1: False
// 112 (Double) = 112 (Decimal): False
//
// value = sng1: True
// 112 (Double) = 112 (Single): False
Module Example2
Dim value As Double = 112
Public Sub Main()
Dim byte1 As Byte = 112
Console.WriteLine("value = byte1: {0,16}", value.Equals(byte1))
TestObjectForEquality(byte1)
Dim short1 As Short = 112
Console.WriteLine("value = short1: {0,16}", value.Equals(short1))
TestObjectForEquality(short1)
Dim int1 As Integer = 112
Console.WriteLine("value = int1: {0,18}", value.Equals(int1))
TestObjectForEquality(int1)
Dim long1 As Long = 112
Console.WriteLine("value = long1: {0,17}", value.Equals(long1))
TestObjectForEquality(long1)
Dim sbyte1 As SByte = 112
Console.WriteLine("value = sbyte1: {0,16}", value.Equals(sbyte1))
TestObjectForEquality(sbyte1)
Dim ushort1 As UShort = 112
Console.WriteLine("value = ushort1: {0,16}", value.Equals(ushort1))
TestObjectForEquality(ushort1)
Dim uint1 As UInteger = 112
Console.WriteLine("value = uint1: {0,18}", value.Equals(uint1))
TestObjectForEquality(uint1)
Dim ulong1 As ULong = 112
Console.WriteLine("value = ulong1: {0,17}", value.Equals(ulong1))
TestObjectForEquality(ulong1)
Dim dec1 As Decimal = 112d
Console.WriteLine("value = dec1: {0,20}", value.Equals(dec1))
TestObjectForEquality(dec1)
Dim sng1 As Single = 112
Console.WriteLine("value = sng1: {0,19}", value.Equals(sng1))
TestObjectForEquality(sng1)
End Sub
Private Sub TestObjectForEquality(obj As Object)
Console.WriteLine("{0} ({1}) = {2} ({3}): {4}",
value, value.GetType().Name,
obj, obj.GetType().Name,
value.Equals(obj))
Console.WriteLine()
End Sub
End Module
' The example displays the following output:
' value = byte1: True
' 112 (Double) = 112 (Byte): False
'
' value = short1: True
' 112 (Double) = 112 (Int16): False
'
' value = int1: True
' 112 (Double) = 112 (Int32): False
'
' value = long1: True
' 112 (Double) = 112 (Int64): False
'
' value = sbyte1: True
' 112 (Double) = 112 (SByte): False
'
' value = ushort1: True
' 112 (Double) = 112 (UInt16): False
'
' value = uint1: True
' 112 (Double) = 112 (UInt32): False
'
' value = ulong1: True
' 112 (Double) = 112 (UInt64): False
'
' value = dec1: True
' 112 (Double) = 112 (Decimal): False
'
' value = sng1: True
' 112 (Double) = 112 (Single): False