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271 lines
12 KiB
Haskell
Executable File
271 lines
12 KiB
Haskell
Executable File
#!/usr/bin/env stack
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-- stack runghc --verbosity info
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-- --package hledger --package string-qq --package text --package time --package microlens
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--
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-- Using unreleased hledger: from inside the hledger source tree,
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--
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-- Run interpreted:
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-- bin/hledger-move.hs
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--
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-- Compile:
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-- stack ghc -- bin/hledger-move.hs -ihledger-lib -ihledger
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-- or use bin/compile.sh
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--
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-- Debug:
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-- stack ghci bin/hledger-move.hs --ghc-options=-'ihledger-lib -ihledger'
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--
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-- Watch compilation:
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-- stack exec ghcid bin/hledger-move.hs -- --command="ghci -ihledger-lib -ihledger"
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--
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-- There are some tests in hledger/test/_move.test
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{-# LANGUAGE MultiWayIf #-}
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{-# LANGUAGE NamedFieldPuns #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE QuasiQuotes #-}
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{-# LANGUAGE RecordWildCards #-}
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import Control.Monad (when)
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import Data.Function (on)
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import Data.List (find, groupBy, mapAccumL)
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import Data.Maybe (fromMaybe, isNothing)
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import Data.String.QQ (s)
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import Data.Time (addDays)
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import Safe (headDef)
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import System.Exit (exitFailure)
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import System.IO (hPutStrLn, stderr)
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import System.IO.Unsafe (unsafePerformIO)
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import Lens.Micro ((^.))
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import Text.Printf
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import qualified Data.Text as T
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import qualified Data.Text.IO as T
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import Hledger.Cli
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------------------------------------------------------------------------------
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cmdmode = hledgerCommandMode
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-- Command name and help text goes here. Current limitations:
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-- help text must be above _FLAGS, blank lines will not be displayed.
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[s| hledger-move
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Print an entry to move funds between accounts, preserving costs and subaccounts
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.
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Usage: hledger-move AMT FROMACCT TOACCT
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.
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This command prints a journal entry which you can add to your journal,
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representing a transfer of some amount from a source account (and/or
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its subaccounts) to a destination account.
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It is mainly intended for moving assets, especially investment assets
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with subaccounts representing lots.
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.
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AMT is a positive hledger amount, including a commodity symbol.
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.
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FROMACCT is the source account (an account name, or a regular expression
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whose alphanumerically first match is the source account).
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.
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TOACCT is the destination account (or account-matching regexp).
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.
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This command can also transfer from, and to, child accounts.
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It will move amounts first out of FROMACCT if possible,
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then as needed out of its subaccounts in alphanumerical order,
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until the total requested amount is moved.
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Ie, if subaccounts are named by acquisition date (eg ":YYYYMMDD"),
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they will be withdrawn in FIFO order.
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.
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Any subaccounts withdrawn from will be recreated under TOACCT,
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unless the --consolidate flag is used. With --consolidate,
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all amounts are transferred to TOACCT, discarding lot information.
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.
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If there is not a sufficient positive balance in FROMACCT and its subaccounts
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to supply the requested amount, the command will fail.
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.
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Examples:
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.
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$ hledger-move $50 assets:checking assets:cash # withdraw cash from bank
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$ hledger-move ADA1000 ada:wallet1 ada:wallet2 # move 1000 ADA, keeping lots
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_FLAGS
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|]
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{- NOT YET IMPLEMENTED:
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As a convenience, no symbol means "move the account's only commodity";
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this works when the source account contains just one commodity.
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$ hledger-move 50 checking cash # the same, less typing
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A zero AMT means "move all of the specified commodity".
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or the keyword "all"
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An "all" AMT does the same, but for all commodities present;
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it works when all of the source account's commodities are positive.
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$ hledger-move all savings checking # all savings -> checking
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$ hledger-move all assets:broker1:FOO assets:broker2:FOO # move all lots
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It is aware of account balances, and prevents overdraft/overpay:
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it will fail if the requested transfer would make
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the source account go negative (as when overdrawing an asset)
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or the destination account go positive (as when over-paying a liability).
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You can disable this validation by adding the --force flag.
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balance assertions
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respecting end date, for calculating balances and generated txn date
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-}
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------------------------------------------------------------------------------
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[flagNone ["consolidate"] (setboolopt "consolidate") "don't recreate subaccounts"
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-- ,flagNone ["force"] (setboolopt "force") "don't prevent overdraw/overpay"
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]
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[generalflagsgroup1]
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[]
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([arg "AMT"
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,arg "FROMACCT"
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,arg "TOACCT"
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],
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Nothing
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)
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where
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arg name = flagArg (\val rawopts -> Right $ setopt name val rawopts) name
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------------------------------------------------------------------------------
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main :: IO ()
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main = do
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copts@CliOpts{rawopts_=rawopts, reportspec_=rspec0} <- getHledgerCliOpts cmdmode
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withJournalDo copts $ \j -> do
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-- d <- getCurrentDay
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let
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-- arg errors
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-- clunky
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shortusage = "Usage: hledger-move AMT FROMACCT TOACCT"
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longusage = unlines
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[ shortusage
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, "AMT the total amount to move, as a hledger amount with commodity symbol"
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, "FROMACCT the main account to move it from; subaccounts can also be drained"
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, "TOACCT the main account to move it to; subaccounts can be recreated here"
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]
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-- No args should show usage, not "Error:" (but I guess still needs a failure exit code)
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exitUsage = unsafePerformIO $ hPutStrLn stderr longusage >> exitFailure
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mamtarg = maybestringopt "AMT" rawopts
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mfromacctarg = maybestringopt "FROMACCT" rawopts
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mtoacctarg = maybestringopt "TOACCT" rawopts
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noargs = all isNothing [mamtarg, mfromacctarg, mtoacctarg]
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amtarg = fromMaybe (error' $ "Please specify the amount to move as first argument.\n"++shortusage) mamtarg -- won't happen
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fromacctarg = fromMaybe (error' $ "Please specify a source account name or pattern as second argument.\n"++shortusage) mfromacctarg
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toacctarg = fromMaybe (error' $ "Please specify a destination account name or pattern as third argument.\n"++shortusage) mtoacctarg
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consolidate = boolopt "consolidate" rawopts
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force = boolopt "force" rawopts
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-- parse the AMT arg as a cost-less Amount (any provided cost is ignored)
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eamt = styleAmount (journalCommodityStyles j) . amountStripPrices <$> parseamount amtarg
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amt = case eamt of
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Left err ->
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error' $ "could not parse " ++ show amtarg ++ " as a hledger amount\n" ++ customErrorBundlePretty err ++ "\n" ++shortusage
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Right a | isNegativeAmount a ->
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error' $ amtarg ++ " is negative, please specify a positive amount to move.\n"++shortusage
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Right a -> a
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comm = acommodity amt
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-- when comparing with zero, it needs to have the same commodity
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zero = amt{aquantity=0}
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accts = journalAccountNamesDeclaredOrImplied j
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fromacct = amt `seq` fromMaybe (error' $ fromacctarg ++ " did not match any account.") $ firstMatch (T.pack fromacctarg) accts
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fromacctlen = length $ accountNameComponents fromacct
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toacct = fromacct `seq` fromMaybe (error' $ toacctarg ++ " did not match any account.") $ firstMatch (T.pack toacctarg) accts
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-- get account names and balances of fromacct and any subs, ordered by name
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ropts = (_rsReportOpts rspec0){balanceaccum_=Historical, accountlistmode_=ALFlat}
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rspec =
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setDefaultConversionOp NoConversionOp -- ?
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rspec0{
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_rsReportOpts = ropts
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,_rsQuery = Acct $ accountNameToAccountRegex $ fromacct
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}
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acctbals = fst $ balanceReport rspec j
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availablebal =
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headDef zero $ amounts $
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filterMixedAmountByCommodity comm $
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mixedAmountStripPrices $ sum $ map fourth4 acctbals
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-- Take just enough of these account balances, in the order given,
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-- to cover the requested AMT. Or if there is not enough, take what is there.
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-- AMT is a single-commodity, cost-less amount.
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-- Account balances can be multi-commodity, but only AMT's commodity will be moved.
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-- An account balance could also possibly have multiple costs in that commodity;
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-- in that case we raise an error, for now. (Could take amounts in order of cost's
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-- commodity and amount).
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(unmoved, moveamts) = go (dbgamt "requested amt to move" amt) [] acctbals
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where
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dbgamt lbl = id -- dbg0With (((lbl++": ")++).showAmount)
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dbgmamt lbl = id -- dbg0With (((lbl++": ")++).showMixedAmountOneLine)
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go :: Amount -> [(AccountName, MixedAmount)] -> [BalanceReportItem] -> (Amount, [(AccountName, MixedAmount)])
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go stilltomove balscollected [] = (stilltomove, reverse balscollected)
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go stilltomove balscollected ((acct,_,_,bal):rest)
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| stilltomovenext > zero = go stilltomovenext ((acct,balincomm) : balscollected) rest
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| otherwise =
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let
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-- the final balance portion to move
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finalamt = dbgamt "final amt to move" $
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(balincommsinglecost + stilltomovenext)
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{aprice=aprice balincommsinglecost} -- + discards cost, need to restore it
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in (0, reverse $ (acct, mixed [finalamt]) : balscollected)
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where
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-- how much of the requested commodity is in this account
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comm = acommodity stilltomove
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balincomm = filterMixedAmountByCommodity comm bal
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-- for now, ensure there is at most one cost basis (and convert to Amount)
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balincommsinglecost =
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case amounts $ balincomm of
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[b] -> dbgamt ("acct balance in "++show comm) b
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_ -> error' $ "sorry, we can't yet move funds out of a multi-cost balance ("
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++ showMixedAmountOneLine balincomm ++ ")"
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-- subtract this from the amount remaining to move (ignoring cost)
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stilltomovenext = dbgamt "remaining amt to move" $
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stilltomove - amountStripPrices balincommsinglecost
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-- since balance assertion amounts are required to be exact, the
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-- amounts in opening/closing transactions should be too (#941, #1137)
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-- amountSetFullPrecision
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fromps = [
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posting{paccount = a
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,pamount = mixedAmount $ negate b
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-- ,pbalanceassertion = Just nullassertion{baamount=precise b{aquantity=0, aprice=Nothing}}
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}
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| -- get the balances for each commodity and transaction price
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(a,mixedb) <- moveamts
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, let bs0 = amounts mixedb
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-- mark the last balance in each commodity with True
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, let bs2 = concat [reverse $ zip (reverse bs1) (True : repeat False)
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| bs1 <- groupBy ((==) `on` acommodity) bs0]
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, (b, islast) <- bs2
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]
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tops = if consolidate
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then [
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posting{paccount = toacct, pamount = mixed [amt]}
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]
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else [
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posting{paccount = a', pamount = negate b}
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| Posting{paccount=a, pamount=b} <- fromps
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, let subacctcomps = drop fromacctlen $ accountNameComponents a
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, let a' = accountNameFromComponents $ toacctcomps ++ subacctcomps
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]
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where
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toacctcomps = accountNameComponents toacct
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if
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| noargs -> exitUsage
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| unmoved > zero -> error' $
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"could not move " ++ showAmount amt ++ ", only " ++ showAmount availablebal ++ " is available in commodity " ++ show comm
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| otherwise ->
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T.putStr $ showTransaction $ nulltransaction{
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tdate = _rsDay rspec
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,tdescription = ""
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,tpostings = fromps ++ tops
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}
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firstMatch :: T.Text -> [T.Text] -> Maybe T.Text
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firstMatch pat vals =
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let re = toRegexCI' pat
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in find (regexMatchText re) vals
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