adopt F# conventions
This commit is contained in:
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350cd98661
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b116e29fea
8 changed files with 33 additions and 204 deletions
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@ -10,6 +10,7 @@
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</PropertyGroup>
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</PropertyGroup>
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<ItemGroup>
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<ItemGroup>
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<Compile Include="Seq.fs" />
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<Compile Include="logginghelpers.fs" />
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<Compile Include="logginghelpers.fs" />
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<Compile Include="binaryprefix.fs" />
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<Compile Include="binaryprefix.fs" />
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<Compile Include="pervasives.fs" />
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<Compile Include="pervasives.fs" />
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12
Pentole/Seq.fs
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12
Pentole/Seq.fs
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@ -0,0 +1,12 @@
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namespace Pentole
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module Seq =
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/// <summary>
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/// Pass each item to a function and return the item unchanged.
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/// Useful in the middle of pipelines to see what values are being passed or log.
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/// </summary>
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let tee lambda (iterable: 'a seq) = seq {
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for o in iterable do
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lambda o
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yield o
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}
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@ -12,7 +12,7 @@ type IECBit =
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[<CustomComparison>]
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[<CustomComparison>]
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type Bits (n: double, scale: IECBit) =
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type Bits (n: double, scale: IECBit) =
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struct
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struct
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member x.bits =
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member _.bits =
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match scale with
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match scale with
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| Bit -> n
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| Bit -> n
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| Kb -> n * 1000.0
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| Kb -> n * 1000.0
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@ -21,7 +21,7 @@ type Bits (n: double, scale: IECBit) =
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| Tb -> n * 1000.0 * 1000.0 * 1000.0 * 1000.0
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| Tb -> n * 1000.0 * 1000.0 * 1000.0 * 1000.0
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| Pb -> n * 1000.0 * 1000.0 * 1000.0 * 1000.0 * 1000.0
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| Pb -> n * 1000.0 * 1000.0 * 1000.0 * 1000.0 * 1000.0
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member x.bytes =
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member _.bytes =
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match scale with
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match scale with
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| Bit -> n / 8.0
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| Bit -> n / 8.0
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| Kb -> n * 1000.0 / 8.0
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| Kb -> n * 1000.0 / 8.0
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@ -62,7 +62,7 @@ type IECByte =
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[<CustomComparison>]
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[<CustomComparison>]
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type Bytes (n: double, scale: IECByte) =
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type Bytes (n: double, scale: IECByte) =
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struct
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struct
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member x.bits =
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member _.bits =
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match scale with
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match scale with
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| Byte -> n * 8.0
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| Byte -> n * 8.0
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| KB -> n * 1000.0 * 8.0
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| KB -> n * 1000.0 * 8.0
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@ -77,7 +77,7 @@ type Bytes (n: double, scale: IECByte) =
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| TiB -> n * 1024.0 * 1024.0 * 1024.0 * 1024.0 * 8.0
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| TiB -> n * 1024.0 * 1024.0 * 1024.0 * 1024.0 * 8.0
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| PiB -> n * 1024.0 * 1024.0 * 1024.0 * 1024.0 * 1024.0 * 8.0
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| PiB -> n * 1024.0 * 1024.0 * 1024.0 * 1024.0 * 1024.0 * 8.0
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member x.bytes =
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member _.bytes =
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match scale with
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match scale with
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| Byte -> n
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| Byte -> n
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| KB -> n * 1000.0
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| KB -> n * 1000.0
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@ -103,7 +103,7 @@ type Bytes (n: double, scale: IECByte) =
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| :? Bytes as b -> a.bytes = b.bytes
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| :? Bytes as b -> a.bytes = b.bytes
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| _ -> false
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| _ -> false
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override this.ToString () = $"Bytes({n} {scale})"
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override _.ToString () = $"Bytes({n} {scale})"
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override this.GetHashCode () = this.bits.GetHashCode()
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override this.GetHashCode () = this.bits.GetHashCode()
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end
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end
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@ -1,182 +0,0 @@
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module Pentole.BinaryPrefix
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type Bit =
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| Bit of double
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| Kb of double
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| Mb of double
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| Gb of double
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| Tb of double
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| Pb of double
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member this.bytes =
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match this with
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| Bit.Bit i -> i
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| Bit.Kb i -> i * 1000.0 / 8.0
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| Bit.Mb i -> i * 1000.0 * 1000.0 / 8.0
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| Bit.Gb i -> i * 1000.0 * 1000.0 * 1000.0 / 8.0
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| Bit.Tb i -> i * 1000.0 * 1000.0 * 1000.0 * 1000.0 / 8.0
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| Bit.Pb i -> i * 1000.0 * 1000.0 * 1000.0 * 1000.0 * 1000.0 / 8.0
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type Byte =
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| Byte of double
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| KB of double
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| MB of double
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| GB of double
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| TB of double
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| PB of double
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| KiB of double
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| MiB of double
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| GiB of double
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| TiB of double
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| PiB of double
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member this.bytes =
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match this with
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| Byte.Byte i -> i
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| Byte.KB i -> i * 1000.0
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| Byte.MB i -> i * 1000.0 * 1000.0
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| Byte.GB i -> i * 1000.0 * 1000.0 * 1000.0
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| Byte.TB i -> i * 1000.0 * 1000.0 * 1000.0 * 1000.0
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| Byte.PB i -> i * 1000.0 * 1000.0 * 1000.0 * 1000.0 * 1000.0
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| Byte.KiB i -> i * 1024.0
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| Byte.MiB i -> i * 1024.0 * 1024.0
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| Byte.GiB i -> i * 1024.0 * 1024.0 * 1024.0
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| Byte.TiB i -> i * 1024.0 * 1024.0 * 1024.0 * 1024.0
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| Byte.PiB i -> i * 1024.0 * 1024.0 * 1024.0 * 1024.0 * 1024.0
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type System.Double with
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member this.bit = Bit this
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member this.Kb = Bit this
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member this.Mb = Mb this
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member this.Gb = Gb this
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member this.Tb = Tb this
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member this.Pb = Pb this
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member this.byte = Bit this
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member this.KB = Bit this
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member this.MB = Mb this
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member this.GB = Gb this
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member this.TB = Tb this
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member this.PB = Pb this
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member this.KiB = Bit this
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member this.MiB = Mb this
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member this.GiB = Gb this
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member this.TiB = Tb this
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member this.PiB = Pb this
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module =
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type IECBitUnit =
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| Bit
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| Kilobit
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| Megabit
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| Gigabit
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| Terabit
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| Petabit
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type IECByteUnit =
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| Byte
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| Kilobyte
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| Kibibyte
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| Megabyte
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| Mebibyte
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| Gigabyte
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| Gibibyte
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| Terabyte
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| Tebibyte
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| Petabyte
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| Pebibyte
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let private get_i_byte = function
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| KB i | MB i | GB i | TB i | PB i
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| KiB i | MiB i | GiB i | TiB i | PiB i
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| Byte.Byte i -> i
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let convert_bytes (scale: IECBitUnit) (old_value: Byte) =
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let x = get_i_byte old_value
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let up, base_ =
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match old_value with
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| Byte.Byte _ -> 0.0, 1000.0
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| KB _ -> 1.0, 1000.0
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| MB _ -> 2.0, 1000.0
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| GB _ -> 3.0, 1000.0
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| TB _ -> 4.0, 1000.0
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| PB _ -> 5.0, 1000.0
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| KiB _ -> 1.0, 1024.0
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| MiB _ -> 2.0, 1024.0
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| GiB _ -> 3.0, 1024.0
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| TiB _ -> 4.0, 1024.0
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| PiB _ -> 5.0, 1024.0
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let down =
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match scale with
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| Bit -> 0.0
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| Kilobit -> 1.0
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| Megabit -> 2.0
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| Gigabit -> 3.0
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| Terabit -> 4.0
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| Petabit -> 5.0
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let new_value = x * 8.0 * (base_ ** (up - down))
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match scale with
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| Bit -> Bit.Bit new_value
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| Kilobit -> Bit.Kb new_value
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| Megabit -> Bit.Mb new_value
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| Gigabit -> Bit.Gb new_value
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| Terabit -> Bit.Tb new_value
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| Petabit -> Bit.Pb new_value
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let inline convert_bytes (scale: IECByteUnit) (old_value: Byte) =
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let x = get_i_byte old_value
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let up, base_ =
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match old_value with
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| KB _ -> 1.0, 1000.0
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| MB _ -> 2.0, 1000.0
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| GB _ -> 3.0, 1000.0
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| TB _ -> 4.0, 1000.0
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| PB _ -> 5.0, 1000.0
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| KiB _ -> 1.0, 1024.0
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| MiB _ -> 2.0, 1024.0
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| GiB _ -> 3.0, 1024.0
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| TiB _ -> 4.0, 1024.0
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| PiB _ -> 5.0, 1024.0
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| Byte.Byte _ -> 0.0, 1000.0
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let down =
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match scale with
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| Kilobyte -> 1.0
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| Megabyte -> 2.0
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| Gigabyte -> 3.0
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| Terabyte -> 4.0
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| Petabyte -> 5.0
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| Kibibyte -> 1.0
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| Mebibyte -> 2.0
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| Gibibyte -> 3.0
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| Tebibyte -> 4.0
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| Pebibyte -> 5.0
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| Byte -> 0.0
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let new_value = x * 8.0 * (base_ ** (up - down))
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match scale with
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| Byte -> Byte.Byte new_value
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| Kilobyte -> KB new_value
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| Megabyte -> MB new_value
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| Gigabyte -> GB new_value
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| Terabyte -> TB new_value
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| Petabyte -> PB new_value
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| Kibibyte -> KiB new_value
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| Mebibyte -> MiB new_value
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| Gibibyte -> GiB new_value
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| Tebibyte -> TiB new_value
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| Pebibyte -> PiB new_value
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@ -26,6 +26,9 @@ module PathInternal =
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|> trim
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|> trim
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|> fun p -> Ok (p, false)
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|> fun p -> Ok (p, false)
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/// <summary>
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/// See RelativePath and AbsolutePath
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/// </summary>
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type IPath =
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type IPath =
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abstract member ToString: unit -> string
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abstract member ToString: unit -> string
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/// The string value of the path. Mainly useful for C# interop.
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/// The string value of the path. Mainly useful for C# interop.
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@ -45,7 +48,7 @@ type IPath =
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type AbsolutePath internal (path: string) =
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type AbsolutePath internal (path: string) =
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interface IPath with
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interface IPath with
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member _.ToString () = $"AbsolutePath {path}"
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member _.ToString () = $"AbsolutePath {path}"
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member _.string_value = path
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override _.string_value = path
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member x.CompareTo (o: obj) =
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member x.CompareTo (o: obj) =
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match o with
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match o with
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@ -1,14 +1,9 @@
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module Pentole.Pervasives
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namespace Pentole
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/// <summary>
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[<AutoOpen>]
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/// The identity function.
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module Pervasives =
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/// </summary>
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let identity = id
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/// <summary>
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/// <summary>
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/// Pass the object to a function and return the object unchanged.
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/// The identity function.
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/// Useful in the middle of pipelines to see what values are being passed or log
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/// </summary>
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/// </summary>
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let identity = id
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let tee fun_ obj =
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fun_ obj
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obj
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@ -7,13 +7,13 @@ module Result =
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Ok (f x)
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Ok (f x)
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with e -> Error e
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with e -> Error e
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let inline pairwise_map fun_ (x: 'a, y: 'a) =
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let inline pairwiseMap fun_ (x: 'a, y: 'a) =
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match fun_ x with
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match fun_ x with
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| Error e -> Error e
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| Error e -> Error e
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| Ok o ->
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| Ok o ->
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match fun_ y with | Ok o' -> Ok (o, o') | Error e -> Error e
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match fun_ y with | Ok o' -> Ok (o, o') | Error e -> Error e
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let of_option = function | Some s -> Ok s | None -> Error ()
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let fromOption = function | Some s -> Ok s | None -> Error ()
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let zip a b =
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let zip a b =
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match (a, b) with
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match (a, b) with
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@ -1,6 +1,6 @@
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module Pentole.String
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module Pentole.String
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let split(separator: string) (target: string) : string list =
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let split (separator: string) (target: string) : string list =
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if System.String.IsNullOrEmpty separator then
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if System.String.IsNullOrEmpty separator then
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[target]
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[target]
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else
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else
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Reference in a new issue