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152 lines
4.4 KiB
Haskell
152 lines
4.4 KiB
Haskell
{-|
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TODO This is slow.
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-}
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module Urbit.Noun.Time where
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import Control.Lens
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import Prelude
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import Data.Bits (shiftL, shiftR, (.&.))
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import Data.List (intercalate)
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import Data.Time.Calendar (toGregorian)
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import Data.Time.Clock (DiffTime, UTCTime(..))
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import Data.Time.Clock (diffTimeToPicoseconds, picosecondsToDiffTime)
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import Data.Time.Clock.System (SystemTime(..), getSystemTime)
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import Data.Time.Clock.System (systemToUTCTime, utcToSystemTime)
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import Data.Time.LocalTime (TimeOfDay(..), timeToTimeOfDay)
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import Data.Word (Word64)
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import Text.Printf (printf)
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import Urbit.Noun (FromNoun, ToNoun)
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-- Types -----------------------------------------------------------------------
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newtype Gap = Gap { _fractoSecs :: Integer }
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deriving newtype (Eq, Ord, Show, Num, ToNoun, FromNoun)
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newtype Unix = Unix { _sinceUnixEpoch :: Gap }
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deriving newtype (Eq, Ord, Show, ToNoun, FromNoun)
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newtype Wen = Wen { _sinceUrbitEpoch :: Gap }
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deriving newtype (Eq, Ord, Show, Num, ToNoun, FromNoun)
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newtype Date = MkDate { _dateWen :: Wen }
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deriving newtype (Eq, Ord, Num, ToNoun, FromNoun)
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-- Record Lenses ---------------------------------------------------------------
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makeLenses ''Gap
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makeLenses ''Unix
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makeLenses ''Wen
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makeLenses ''Date
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-- Instances -------------------------------------------------------------------
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instance Show Date where
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show (MkDate wen) = if fs == 0
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then printf "~%i.%u.%u..%02u.%02u.%02u" y m d h min s
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else printf "~%i.%u.%u..%02u.%02u.%02u..%s" y m d h min s (showGap fs)
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where
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utc = wen ^. systemTime . to systemToUTCTime
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(y, m, d) = toGregorian (utctDay utc)
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TimeOfDay h min (floor -> s::Int) = timeToTimeOfDay (utctDayTime utc)
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fs = (wen ^. wenFracto . to (fromIntegral @Integer @Word64))
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wenFracto :: Lens' Wen Integer
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wenFracto = sinceUrbitEpoch . fractoSecs
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showGap :: Word64 -> String
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showGap gap = intercalate "." (printf "%04x" <$> bs)
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where
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bs = reverse $ dropWhile (== 0) [b4, b3, b2, b1]
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b4 = takeBits 16 gap
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b3 = takeBits 16 (shiftR gap 16)
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b2 = takeBits 16 (shiftR gap 32)
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b1 = takeBits 16 (shiftR gap 48)
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takeBits :: Int -> Word64 -> Word64
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takeBits wid wor = wor .&. (shiftL 1 wid - 1)
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-- Conversion Lenses -----------------------------------------------------------
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diffTime :: Iso' Gap DiffTime
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diffTime = iso fromGap toGap
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where
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fromGap = picosecondsToDiffTime . view picoSecs
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toGap = view (from picoSecs) . diffTimeToPicoseconds
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sysUTC :: Iso' SystemTime UTCTime
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sysUTC = iso systemToUTCTime utcToSystemTime
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utcTime :: Iso' Wen UTCTime
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utcTime = systemTime . sysUTC
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unixEpoch :: Wen
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unixEpoch = Wen (Gap 0x8000_000c_ce9e_0d80_0000_0000_0000_0000)
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unixSystemTime :: Iso' Unix SystemTime
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unixSystemTime = iso toSys fromSys
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where
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toSys (Unix gap) = MkSystemTime (fromInteger sec) (fromInteger ns)
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where (sec, ns) = quotRem (gap ^. nanoSecs) 1_000_000_000
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fromSys (MkSystemTime sec ns) =
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Unix $ (toInteger sec ^. from secs)
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+ (toInteger ns ^. from nanoSecs)
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unix :: Iso' Wen Unix
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unix = iso toUnix fromUnix
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where
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toUnix (Wen g) = Unix (g - unWen unixEpoch)
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fromUnix (Unix g) = Wen (unWen unixEpoch + g)
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unWen (Wen x) = x
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systemTime :: Iso' Wen SystemTime
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systemTime = unix . unixSystemTime
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--------------------------------------------------------------------------------
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toDenomSecs :: Integer -> Gap -> Integer
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toDenomSecs denom (Gap g) = shiftR (g * denom) 64
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fromDenomSecs :: Integer -> Integer -> Gap
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fromDenomSecs denom ds =
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Gap $ (shiftL ds 64) `div` denom
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picoSecs :: Iso' Gap Integer
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picoSecs = iso (toDenomSecs denom) (fromDenomSecs denom)
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where denom = 1_000_000_000_000
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nanoSecs :: Iso' Gap Integer
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nanoSecs = iso (toDenomSecs denom) (fromDenomSecs denom)
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where denom = 1_000_000_000
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microSecs :: Iso' Gap Integer
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microSecs = iso (toDenomSecs denom) (fromDenomSecs denom)
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where denom = 1_000_000
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milliSecs :: Iso' Gap Integer
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milliSecs = iso (toDenomSecs denom) (fromDenomSecs denom)
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where denom = 1_000
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secs :: Iso' Gap Integer
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secs = iso (toDenomSecs denom) (fromDenomSecs denom)
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where denom = 1
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--------------------------------------------------------------------------------
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now :: IO Wen
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now = view (from systemTime) <$> getSystemTime
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gap :: Wen -> Wen -> Gap
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gap (Wen x) (Wen y) | x > y = x - y
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| otherwise = y - x
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addGap :: Wen -> Gap -> Wen
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addGap (Wen x) y = Wen (x+y)
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