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Bit
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The BitMath type exposes the following members.
Name | Description | |
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![]() ![]() | CountBitsCleared(UInt32) | Counts the number of bits that are not set |
![]() ![]() | CountBitsCleared(UInt64) | Counts the number of bits that are not set |
![]() ![]() | CountBitsSet(UInt32) | Counts the number of bits that are set |
![]() ![]() | CountBitsSet(UInt64) | Counts the number of bits that are set |
![]() ![]() | CountLeadingOnes(UInt32) | Counts the number of consecutive 1's starting from the highest bit working down. |
![]() ![]() | CountLeadingOnes(UInt64) | Counts the number of consecutive 1's starting from the highest bit working down. |
![]() ![]() | CountLeadingZeros(UInt32) | Counts the number of consecutive 0's starting from the highest bit working down. |
![]() ![]() | CountLeadingZeros(UInt64) | Counts the number of consecutive 0's starting from the highest bit working down. |
![]() ![]() | CountTrailingOnes(UInt32) | Counts the number of consecutive 1's starting from the lowest bit working up. |
![]() ![]() | CountTrailingOnes(UInt64) | Counts the number of consecutive 1's starting from the lowest bit working up. |
![]() ![]() | CountTrailingZeros(UInt32) | Counts the number of consecutive 0's starting from the lowest bit working up. |
![]() ![]() | CountTrailingZeros(UInt64) | Counts the number of consecutive 0's starting from the lowest bit working up. |
![]() ![]() | CreateBitMask | Creates a bit mask for a number with the given number of bits. |
![]() ![]() | GetClearedBitPositions(UInt32) | Returns the bit position for every bit that is cleared in the provided value. Bit positions are defined as 0-31; |
![]() ![]() | GetClearedBitPositions(UInt64) | Returns the bit position for every bit that is cleared in the provided value. Bit positions are defined as 0-63; |
![]() ![]() | GetSetBitPositions(UInt32) | Returns the bit position for every bit that is set in the provided value. Bit positions are defined as 0-31; |
![]() ![]() | GetSetBitPositions(UInt64) | Returns the bit position for every bit that is set in the provided value. Bit positions are defined as 0-63; |
![]() ![]() | IsPowerOfTwo(Int32) | Determines if the number is a power of 2. |
![]() ![]() | IsPowerOfTwo(Int64) | Determines if the number is a power of 2. |
![]() ![]() | IsPowerOfTwo(UInt32) | Determines if the number is a power of 2. |
![]() ![]() | IsPowerOfTwo(UInt64) | Determines if the number is a power of 2. |
![]() ![]() | RoundDownToNearestPowerOfTwo(UInt32) | Rounds a number down to the nearest power of 2. If the value is a power of two, the same value is returned. If value is zero, 1 is returned. |
![]() ![]() | RoundDownToNearestPowerOfTwo(UInt64) | Rounds a number down to the nearest power of 2. If the value is a power of two, the same value is returned. If value is zero, one is returned. |
![]() ![]() | RoundUpToNearestPowerOfTwo(UInt32) | Rounds a number up to the nearest power of 2. If the value is a power of two, the same value is returned. If the value is larger than the largest power of 2. It is rounded down. |
![]() ![]() | RoundUpToNearestPowerOfTwo(UInt64) | Rounds a number up to the nearest power of 2. If the value is a power of two, the same value is returned. If the value is larger than the largest power of 2. It is rounded down. |