397 lines
12 KiB
Haskell
397 lines
12 KiB
Haskell
{- scheduled activities
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-
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- Copyright 2013-2014 Joey Hess <joey@kitenet.net>
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-
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- Licensed under the GNU GPL version 3 or higher.
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-}
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module Utility.Scheduled (
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Schedule(..),
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Recurrance(..),
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ScheduledTime(..),
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NextTime(..),
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WeekDay,
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MonthDay,
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YearDay,
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nextTime,
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calcNextTime,
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startTime,
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fromSchedule,
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fromScheduledTime,
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toScheduledTime,
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fromRecurrance,
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toRecurrance,
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toSchedule,
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parseSchedule,
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prop_schedule_roundtrips,
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prop_past_sane,
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) where
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import Utility.Data
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import Utility.QuickCheck
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import Utility.PartialPrelude
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import Utility.Misc
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import Control.Applicative
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import Data.List
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import Data.Time.Clock
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import Data.Time.LocalTime
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import Data.Time.Calendar
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import Data.Time.Calendar.WeekDate
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import Data.Time.Calendar.OrdinalDate
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import Data.Tuple.Utils
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import Data.Char
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{- Some sort of scheduled event. -}
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data Schedule = Schedule Recurrance ScheduledTime
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deriving (Eq, Read, Show, Ord)
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data Recurrance
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= Daily
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| Weekly (Maybe WeekDay)
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| Monthly (Maybe MonthDay)
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| Yearly (Maybe YearDay)
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| Divisible Int Recurrance
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-- ^ Days, Weeks, or Months of the year evenly divisible by a number.
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-- (Divisible Year is years evenly divisible by a number.)
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deriving (Eq, Read, Show, Ord)
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type WeekDay = Int
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type MonthDay = Int
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type YearDay = Int
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data ScheduledTime
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= AnyTime
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| SpecificTime Hour Minute
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deriving (Eq, Read, Show, Ord)
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type Hour = Int
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type Minute = Int
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-- | Next time a Schedule should take effect. The NextTimeWindow is used
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-- when a Schedule is allowed to start at some point within the window.
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data NextTime
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= NextTimeExactly LocalTime
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| NextTimeWindow LocalTime LocalTime
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deriving (Eq, Read, Show)
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startTime :: NextTime -> LocalTime
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startTime (NextTimeExactly t) = t
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startTime (NextTimeWindow t _) = t
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nextTime :: Schedule -> Maybe LocalTime -> IO (Maybe NextTime)
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nextTime schedule lasttime = do
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now <- getCurrentTime
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tz <- getTimeZone now
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return $ calcNextTime schedule lasttime $ utcToLocalTime tz now
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-- | Calculate the next time that fits a Schedule, based on the
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-- last time it occurred, and the current time.
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calcNextTime :: Schedule -> Maybe LocalTime -> LocalTime -> Maybe NextTime
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calcNextTime schedule@(Schedule recurrance scheduledtime) lasttime currenttime
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| scheduledtime == AnyTime = do
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next <- findfromtoday True
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return $ case next of
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NextTimeWindow _ _ -> next
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NextTimeExactly t -> window (localDay t) (localDay t)
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| otherwise = NextTimeExactly . startTime <$> findfromtoday False
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where
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findfromtoday anytime = findfrom recurrance afterday today
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where
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today = localDay currenttime
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afterday = sameaslastrun || toolatetoday
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toolatetoday = not anytime && localTimeOfDay currenttime >= nexttime
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sameaslastrun = lastrun == Just today
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lastrun = localDay <$> lasttime
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nexttime = case scheduledtime of
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AnyTime -> TimeOfDay 0 0 0
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SpecificTime h m -> TimeOfDay h m 0
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exactly d = NextTimeExactly $ LocalTime d nexttime
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window startd endd = NextTimeWindow
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(LocalTime startd nexttime)
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(LocalTime endd (TimeOfDay 23 59 0))
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findfrom r afterday candidate
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| ynum candidate > (ynum (localDay currenttime)) + 100 =
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-- avoid possible infinite recusion
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error $ "bug: calcNextTime did not find a time within 100 years to run " ++
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show (schedule, lasttime, currenttime)
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| otherwise = findfromChecked r afterday candidate
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findfromChecked r afterday candidate = case r of
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Daily
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| afterday -> Just $ exactly $ addDays 1 candidate
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| otherwise -> Just $ exactly candidate
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Weekly Nothing
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| afterday -> skip 1
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| otherwise -> case (wday <$> lastrun, wday candidate) of
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(Nothing, _) -> Just $ window candidate (addDays 6 candidate)
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(Just old, curr)
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| old == curr -> Just $ window candidate (addDays 6 candidate)
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| otherwise -> skip 1
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Monthly Nothing
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| afterday -> skip 1
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| maybe True (candidate `oneMonthPast`) lastrun ->
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Just $ window candidate (endOfMonth candidate)
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| otherwise -> skip 1
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Yearly Nothing
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| afterday -> skip 1
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| maybe True (candidate `oneYearPast`) lastrun ->
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Just $ window candidate (endOfYear candidate)
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| otherwise -> skip 1
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Weekly (Just w)
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| w < 0 || w > maxwday -> Nothing
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| w == wday candidate -> if afterday
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then Just $ exactly $ addDays 7 candidate
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else Just $ exactly candidate
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| otherwise -> Just $ exactly $
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addDays (fromIntegral $ (w - wday candidate) `mod` 7) candidate
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Monthly (Just m)
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| m < 0 || m > maxmday -> Nothing
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-- TODO can be done more efficiently than recursing
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| m == mday candidate -> if afterday
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then skip 1
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else Just $ exactly candidate
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| otherwise -> skip 1
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Yearly (Just y)
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| y < 0 || y > maxyday -> Nothing
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| y == yday candidate -> if afterday
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then skip 365
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else Just $ exactly candidate
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| otherwise -> skip 1
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Divisible n r'@Daily -> handlediv n r' yday (Just maxyday)
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Divisible n r'@(Weekly _) -> handlediv n r' wnum (Just maxwnum)
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Divisible n r'@(Monthly _) -> handlediv n r' mnum (Just maxmnum)
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Divisible n r'@(Yearly _) -> handlediv n r' ynum Nothing
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Divisible _ r'@(Divisible _ _) -> findfrom r' afterday candidate
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where
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skip n = findfrom r False (addDays n candidate)
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handlediv n r' getval mmax
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| n > 0 && maybe True (n <=) mmax =
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findfromwhere r' (divisible n . getval) afterday candidate
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| otherwise = Nothing
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findfromwhere r p afterday candidate
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| maybe True (p . getday) next = next
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| otherwise = maybe Nothing (findfromwhere r p True . getday) next
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where
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next = findfrom r afterday candidate
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getday = localDay . startTime
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divisible n v = v `rem` n == 0
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-- Check if the new Day occurs one month or more past the old Day.
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oneMonthPast :: Day -> Day -> Bool
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new `oneMonthPast` old = fromGregorian y (m+1) d <= new
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where
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(y,m,d) = toGregorian old
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-- Check if the new Day occurs one year or more past the old Day.
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oneYearPast :: Day -> Day -> Bool
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new `oneYearPast` old = fromGregorian (y+1) m d <= new
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where
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(y,m,d) = toGregorian old
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endOfMonth :: Day -> Day
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endOfMonth day =
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let (y,m,_d) = toGregorian day
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in fromGregorian y m (gregorianMonthLength y m)
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endOfYear :: Day -> Day
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endOfYear day =
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let (y,_m,_d) = toGregorian day
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in endOfMonth (fromGregorian y maxmnum 1)
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-- extracting various quantities from a Day
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wday :: Day -> Int
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wday = thd3 . toWeekDate
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wnum :: Day -> Int
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wnum = snd3 . toWeekDate
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mday :: Day -> Int
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mday = thd3 . toGregorian
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mnum :: Day -> Int
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mnum = snd3 . toGregorian
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yday :: Day -> Int
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yday = snd . toOrdinalDate
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ynum :: Day -> Int
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ynum = fromIntegral . fst . toOrdinalDate
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-- Calendar max values.
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maxyday :: Int
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maxyday = 366 -- with leap days
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maxwnum :: Int
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maxwnum = 53 -- some years have more than 52
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maxmday :: Int
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maxmday = 31
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maxmnum :: Int
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maxmnum = 12
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maxwday :: Int
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maxwday = 7
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fromRecurrance :: Recurrance -> String
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fromRecurrance (Divisible n r) =
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fromRecurrance' (++ "s divisible by " ++ show n) r
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fromRecurrance r = fromRecurrance' ("every " ++) r
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fromRecurrance' :: (String -> String) -> Recurrance -> String
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fromRecurrance' a Daily = a "day"
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fromRecurrance' a (Weekly n) = onday n (a "week")
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fromRecurrance' a (Monthly n) = onday n (a "month")
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fromRecurrance' a (Yearly n) = onday n (a "year")
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fromRecurrance' a (Divisible _n r) = fromRecurrance' a r -- not used
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onday :: Maybe Int -> String -> String
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onday (Just n) s = "on day " ++ show n ++ " of " ++ s
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onday Nothing s = s
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toRecurrance :: String -> Maybe Recurrance
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toRecurrance s = case words s of
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("every":"day":[]) -> Just Daily
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("on":"day":sd:"of":"every":something:[]) -> withday sd something
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("every":something:[]) -> noday something
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("days":"divisible":"by":sn:[]) ->
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Divisible <$> getdivisor sn <*> pure Daily
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("on":"day":sd:"of":something:"divisible":"by":sn:[]) ->
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Divisible
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<$> getdivisor sn
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<*> withday sd something
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("every":something:"divisible":"by":sn:[]) ->
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Divisible
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<$> getdivisor sn
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<*> noday something
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(something:"divisible":"by":sn:[]) ->
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Divisible
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<$> getdivisor sn
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<*> noday something
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_ -> Nothing
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where
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constructor "week" = Just Weekly
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constructor "month" = Just Monthly
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constructor "year" = Just Yearly
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constructor u
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| "s" `isSuffixOf` u = constructor $ reverse $ drop 1 $ reverse u
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| otherwise = Nothing
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withday sd u = do
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c <- constructor u
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d <- readish sd
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Just $ c (Just d)
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noday u = do
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c <- constructor u
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Just $ c Nothing
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getdivisor sn = do
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n <- readish sn
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if n > 0
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then Just n
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else Nothing
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fromScheduledTime :: ScheduledTime -> String
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fromScheduledTime AnyTime = "any time"
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fromScheduledTime (SpecificTime h m) =
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show h' ++ (if m > 0 then ":" ++ pad 2 (show m) else "") ++ " " ++ ampm
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where
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pad n s = take (n - length s) (repeat '0') ++ s
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(h', ampm)
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| h == 0 = (12, "AM")
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| h < 12 = (h, "AM")
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| h == 12 = (h, "PM")
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| otherwise = (h - 12, "PM")
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toScheduledTime :: String -> Maybe ScheduledTime
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toScheduledTime "any time" = Just AnyTime
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toScheduledTime v = case words v of
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(s:ampm:[])
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| map toUpper ampm == "AM" ->
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go s h0
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| map toUpper ampm == "PM" ->
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go s (\h -> (h0 h) + 12)
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| otherwise -> Nothing
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(s:[]) -> go s id
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_ -> Nothing
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where
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h0 h
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| h == 12 = 0
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| otherwise = h
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go :: String -> (Int -> Int) -> Maybe ScheduledTime
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go s adjust =
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let (h, m) = separate (== ':') s
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in SpecificTime
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<$> (adjust <$> readish h)
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<*> if null m then Just 0 else readish m
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fromSchedule :: Schedule -> String
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fromSchedule (Schedule recurrance scheduledtime) = unwords
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[ fromRecurrance recurrance
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, "at"
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, fromScheduledTime scheduledtime
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]
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toSchedule :: String -> Maybe Schedule
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toSchedule = eitherToMaybe . parseSchedule
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parseSchedule :: String -> Either String Schedule
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parseSchedule s = do
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r <- maybe (Left $ "bad recurrance: " ++ recurrance) Right
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(toRecurrance recurrance)
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t <- maybe (Left $ "bad time of day: " ++ scheduledtime) Right
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(toScheduledTime scheduledtime)
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Right $ Schedule r t
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where
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(rws, tws) = separate (== "at") (words s)
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recurrance = unwords rws
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scheduledtime = unwords tws
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instance Arbitrary Schedule where
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arbitrary = Schedule <$> arbitrary <*> arbitrary
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instance Arbitrary ScheduledTime where
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arbitrary = oneof
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[ pure AnyTime
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, SpecificTime
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<$> choose (0, 23)
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<*> choose (1, 59)
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]
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instance Arbitrary Recurrance where
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arbitrary = oneof
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[ pure Daily
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, Weekly <$> arbday
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, Monthly <$> arbday
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, Yearly <$> arbday
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, Divisible
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<$> positive arbitrary
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<*> oneof -- no nested Divisibles
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[ pure Daily
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, Weekly <$> arbday
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, Monthly <$> arbday
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, Yearly <$> arbday
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]
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]
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where
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arbday = oneof
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[ Just <$> nonNegative arbitrary
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, pure Nothing
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]
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prop_schedule_roundtrips :: Schedule -> Bool
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prop_schedule_roundtrips s = toSchedule (fromSchedule s) == Just s
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prop_past_sane :: Bool
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prop_past_sane = and
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[ all (checksout oneMonthPast) (mplus1 ++ yplus1)
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, all (not . (checksout oneMonthPast)) (map swap (mplus1 ++ yplus1))
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, all (checksout oneYearPast) yplus1
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, all (not . (checksout oneYearPast)) (map swap yplus1)
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]
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where
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mplus1 = -- new date old date, 1+ months before it
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[ (fromGregorian 2014 01 15, fromGregorian 2013 12 15)
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, (fromGregorian 2014 01 15, fromGregorian 2013 02 15)
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, (fromGregorian 2014 02 15, fromGregorian 2013 01 15)
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, (fromGregorian 2014 03 01, fromGregorian 2013 01 15)
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, (fromGregorian 2014 03 01, fromGregorian 2013 12 15)
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, (fromGregorian 2015 01 01, fromGregorian 2010 01 01)
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]
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yplus1 = -- new date old date, 1+ years before it
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[ (fromGregorian 2014 01 15, fromGregorian 2012 01 16)
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, (fromGregorian 2014 01 15, fromGregorian 2013 01 14)
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, (fromGregorian 2022 12 31, fromGregorian 2000 01 01)
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]
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checksout cmp (new, old) = new `cmp` old
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swap (a,b) = (b,a)
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