hledger/hledger.hs

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{-
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hledger - ledger-compatible money management tool (& haskell study)
GPLv3, (c) Simon Michael & contributors
inspired by John Wiegley's ledger at http://newartisans.com/ledger.html
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modules/models are organized roughly like this; each layer can only
reference things below it:
hledger
Options
Tests
Parse
Models
TimeLog
TimeLogEntry
Account
Ledger
EntryTransaction
Entry
Transaction
AccountName
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Amount
BasicTypes
Utils
-}
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module Main
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where
import System
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import Text.ParserCombinators.Parsec (ParseError)
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import Options
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import Models
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import Parse
import Tests
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import Utils
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main :: IO ()
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main = do
(opts, (cmd:args)) <- getArgs >>= parseOptions
let (acctpats, descpats) = parseLedgerPatternArgs args
run cmd opts acctpats descpats
where run cmd opts acctpats descpats
| cmd `isPrefixOf` "register" = register opts acctpats descpats
| cmd `isPrefixOf` "balance" = balance opts acctpats descpats
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| cmd `isPrefixOf` "test" = selftest
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| otherwise = putStr usage
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-- commands
register :: [Flag] -> [String] -> [String] -> IO ()
register opts acctpats descpats = do
doWithLedger opts printRegister
where
printRegister ledger =
putStr $ showTransactionsWithBalances
(ledgerTransactionsMatching (acctpats,descpats) ledger)
0
balance :: [Flag] -> [String] -> [String] -> IO ()
balance opts acctpats _ = do
doWithLedger opts printBalance
where
printBalance ledger =
putStr $ showLedgerAccounts ledger acctpats showsubs maxdepth
where
showsubs = (ShowSubs `elem` opts)
maxdepth = case (acctpats, showsubs) of
([],False) -> 1
otherwise -> 9999
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selftest :: IO ()
selftest = do
Tests.tests
Tests.props
-- Amount.tests
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return ()
-- utils
doWithLedger :: [Flag] -> (Ledger -> IO ()) -> IO ()
doWithLedger opts cmd = do
ledgerFilePath opts >>= parseLedgerFile >>= doWithParsed cmd
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doWithParsed :: Show a => (a -> IO ()) -> (Either ParseError a) -> IO ()
doWithParsed action parsed = do
case parsed of Left e -> parseError e
Right l -> action l
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-- interactive testing:
--
-- p <- ledgerFilePath [] >>= parseLedgerFile
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-- let l = either (\_ -> Ledger [] [] []) id p
-- let ant = ledgerAccountNameTree l
-- let at = ledgerAccountTreeMatching l [] True 999
-- putStr $ drawTree $ treemap show $ ledgerAccountTreeMatching l ["a"] False 999