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https://github.com/simonmichael/hledger.git
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150 lines
6.0 KiB
Haskell
150 lines
6.0 KiB
Haskell
{-|
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A 'TimeclockEntry' is a clock-in, clock-out, or other directive in a timeclock
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file (see timeclock.el or the command-line version). These can be
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converted to 'Transactions' and queried like a ledger.
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-}
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{-# LANGUAGE OverloadedStrings #-}
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module Hledger.Data.Timeclock (
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timeclockEntriesToTransactions
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,tests_Timeclock
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)
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where
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import Data.Maybe
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-- import Data.Text (Text)
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import qualified Data.Text as T
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import Data.Time.Calendar
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import Data.Time.Clock
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import Data.Time.Format
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import Data.Time.LocalTime
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import Text.Printf
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import Hledger.Utils
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import Hledger.Data.Types
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import Hledger.Data.Dates
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import Hledger.Data.Amount
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import Hledger.Data.Posting
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import Hledger.Data.Transaction
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instance Show TimeclockEntry where
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show t = printf "%s %s %s %s" (show $ tlcode t) (show $ tldatetime t) (tlaccount t) (tldescription t)
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instance Show TimeclockCode where
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show SetBalance = "b"
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show SetRequiredHours = "h"
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show In = "i"
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show Out = "o"
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show FinalOut = "O"
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instance Read TimeclockCode where
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readsPrec _ ('b' : xs) = [(SetBalance, xs)]
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readsPrec _ ('h' : xs) = [(SetRequiredHours, xs)]
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readsPrec _ ('i' : xs) = [(In, xs)]
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readsPrec _ ('o' : xs) = [(Out, xs)]
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readsPrec _ ('O' : xs) = [(FinalOut, xs)]
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readsPrec _ _ = []
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-- | Convert time log entries to journal transactions. When there is no
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-- clockout, add one with the provided current time. Sessions crossing
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-- midnight are split into days to give accurate per-day totals.
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timeclockEntriesToTransactions :: LocalTime -> [TimeclockEntry] -> [Transaction]
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timeclockEntriesToTransactions _ [] = []
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timeclockEntriesToTransactions now [i]
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| tlcode i /= In = errorExpectedCodeButGot In i
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| odate > idate = entryFromTimeclockInOut i o' : timeclockEntriesToTransactions now [i',o]
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| otherwise = [entryFromTimeclockInOut i o]
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where
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o = TimeclockEntry (tlsourcepos i) Out end "" ""
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end = if itime > now then itime else now
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(itime,otime) = (tldatetime i,tldatetime o)
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(idate,odate) = (localDay itime,localDay otime)
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o' = o{tldatetime=itime{localDay=idate, localTimeOfDay=TimeOfDay 23 59 59}}
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i' = i{tldatetime=itime{localDay=addDays 1 idate, localTimeOfDay=midnight}}
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timeclockEntriesToTransactions now (i:o:rest)
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| tlcode i /= In = errorExpectedCodeButGot In i
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| tlcode o /= Out =errorExpectedCodeButGot Out o
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| odate > idate = entryFromTimeclockInOut i o' : timeclockEntriesToTransactions now (i':o:rest)
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| otherwise = entryFromTimeclockInOut i o : timeclockEntriesToTransactions now rest
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where
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(itime,otime) = (tldatetime i,tldatetime o)
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(idate,odate) = (localDay itime,localDay otime)
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o' = o{tldatetime=itime{localDay=idate, localTimeOfDay=TimeOfDay 23 59 59}}
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i' = i{tldatetime=itime{localDay=addDays 1 idate, localTimeOfDay=midnight}}
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{- HLINT ignore timeclockEntriesToTransactions -}
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errorExpectedCodeButGot expected actual = errorWithSourceLine line $ "expected timeclock code " ++ (show expected) ++ " but got " ++ show (tlcode actual)
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where
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line = case tlsourcepos actual of
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GenericSourcePos _ l _ -> l
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JournalSourcePos _ (l, _) -> l
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errorWithSourceLine line msg = error $ "line " ++ show line ++ ": " ++ msg
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-- | Convert a timeclock clockin and clockout entry to an equivalent journal
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-- transaction, representing the time expenditure. Note this entry is not balanced,
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-- since we omit the \"assets:time\" transaction for simpler output.
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entryFromTimeclockInOut :: TimeclockEntry -> TimeclockEntry -> Transaction
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entryFromTimeclockInOut i o
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| otime >= itime = t
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| otherwise =
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error' $ "clock-out time less than clock-in time in:\n" ++ showTransaction t -- PARTIAL:
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where
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t = Transaction {
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tindex = 0,
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tsourcepos = tlsourcepos i,
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tdate = idate,
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tdate2 = Nothing,
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tstatus = Cleared,
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tcode = "",
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tdescription = desc,
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tcomment = "",
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ttags = [],
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tpostings = ps,
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tprecedingcomment=""
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}
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itime = tldatetime i
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otime = tldatetime o
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itod = localTimeOfDay itime
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otod = localTimeOfDay otime
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idate = localDay itime
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desc | T.null (tldescription i) = T.pack $ showtime itod ++ "-" ++ showtime otod
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| otherwise = tldescription i
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showtime = take 5 . show
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hours = elapsedSeconds (toutc otime) (toutc itime) / 3600 where toutc = localTimeToUTC utc
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acctname = tlaccount i
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amount = Mixed [hrs hours]
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ps = [posting{paccount=acctname, pamount=amount, ptype=VirtualPosting, ptransaction=Just t}]
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-- tests
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tests_Timeclock = tests "Timeclock" [
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testCaseSteps "timeclockEntriesToTransactions tests" $ \step -> do
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step "gathering data"
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today <- getCurrentDay
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now' <- getCurrentTime
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tz <- getCurrentTimeZone
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let now = utcToLocalTime tz now'
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nowstr = showtime now
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yesterday = prevday today
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clockin = TimeclockEntry nullsourcepos In
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mktime d = LocalTime d . fromMaybe midnight .
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parseTimeM True defaultTimeLocale "%H:%M:%S"
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showtime = formatTime defaultTimeLocale "%H:%M"
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txndescs = map (T.unpack . tdescription) . timeclockEntriesToTransactions now
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future = utcToLocalTime tz $ addUTCTime 100 now'
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futurestr = showtime future
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step "started yesterday, split session at midnight"
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txndescs [clockin (mktime yesterday "23:00:00") "" ""] @?= ["23:00-23:59","00:00-"++nowstr]
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step "split multi-day sessions at each midnight"
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txndescs [clockin (mktime (addDays (-2) today) "23:00:00") "" ""] @?= ["23:00-23:59","00:00-23:59","00:00-"++nowstr]
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step "auto-clock-out if needed"
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txndescs [clockin (mktime today "00:00:00") "" ""] @?= ["00:00-"++nowstr]
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step "use the clockin time for auto-clockout if it's in the future"
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txndescs [clockin future "" ""] @?= [printf "%s-%s" futurestr futurestr]
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]
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