module Hledger.Data.Amount (
  
  amount,
  nullamt,
  missingamt,
  num,
  usd,
  eur,
  gbp,
  hrs,
  at,
  (@@),
  amountWithCommodity,
  
  costOfAmount,
  divideAmount,
  
  amountstyle,
  showAmount,
  cshowAmount,
  showAmountWithZeroCommodity,
  showAmountDebug,
  showAmountWithoutPrice,
  maxprecision,
  maxprecisionwithpoint,
  setAmountPrecision,
  withPrecision,
  canonicaliseAmount,
  
  nullmixedamt,
  missingmixedamt,
  mixed,
  amounts,
  filterMixedAmount,
  filterMixedAmountByCommodity,
  normaliseMixedAmountSquashPricesForDisplay,
  normaliseMixedAmount,
  
  costOfMixedAmount,
  divideMixedAmount,
  averageMixedAmounts,
  isNegativeAmount,
  isNegativeMixedAmount,
  isZeroAmount,
  isReallyZeroAmount,
  isZeroMixedAmount,
  isReallyZeroMixedAmount,
  isReallyZeroMixedAmountCost,
  
  showMixedAmount,
  showMixedAmountOneLine,
  showMixedAmountDebug,
  showMixedAmountWithoutPrice,
  showMixedAmountOneLineWithoutPrice,
  cshowMixedAmountWithoutPrice,
  cshowMixedAmountOneLineWithoutPrice,
  showMixedAmountWithZeroCommodity,
  showMixedAmountWithPrecision,
  setMixedAmountPrecision,
  canonicaliseMixedAmount,
  
  ltraceamount,
  tests_Hledger_Data_Amount
) where
import Data.Char (isDigit)
import Data.Decimal (roundTo)
import Data.Function (on)
import Data.List
import Data.Map (findWithDefault)
import Data.Maybe
import qualified Data.Text as T
import Test.HUnit
import Text.Printf
import qualified Data.Map as M
import Hledger.Data.Types
import Hledger.Data.Commodity
import Hledger.Utils
deriving instance Show MarketPrice
amountstyle = AmountStyle L False 0 (Just '.') Nothing
instance Show Amount where
  show _a@Amount{..}
    
    
    | debugLevel < 6 =
       printf "Amount {acommodity=%s, aquantity=%s, ..}" (show acommodity) (show aquantity)
    | otherwise      = 
       printf "Amount {acommodity=%s, aquantity=%s, aprice=%s, astyle=%s}" (show acommodity) (show aquantity) (showPriceDebug aprice) (show astyle)
instance Num Amount where
    abs a@Amount{aquantity=q}    = a{aquantity=abs q}
    signum a@Amount{aquantity=q} = a{aquantity=signum q}
    fromInteger i                = nullamt{aquantity=fromInteger i}
    negate a@Amount{aquantity=q} = a{aquantity=(q)}
    (+)                          = similarAmountsOp (+)
    ()                          = similarAmountsOp ()
    (*)                          = similarAmountsOp (*)
amount, nullamt :: Amount
amount = Amount{acommodity="", aquantity=0, aprice=NoPrice, astyle=amountstyle, amultiplier=False}
nullamt = amount
missingamt :: Amount
missingamt = amount{acommodity="AUTO"}
num n = amount{acommodity="",  aquantity=n}
hrs n = amount{acommodity="h", aquantity=n,           astyle=amountstyle{asprecision=2, ascommodityside=R}}
usd n = amount{acommodity="$", aquantity=roundTo 2 n, astyle=amountstyle{asprecision=2}}
eur n = amount{acommodity="€", aquantity=roundTo 2 n, astyle=amountstyle{asprecision=2}}
gbp n = amount{acommodity="£", aquantity=roundTo 2 n, astyle=amountstyle{asprecision=2}}
amt `at` priceamt = amt{aprice=UnitPrice priceamt}
amt @@ priceamt = amt{aprice=TotalPrice priceamt}
similarAmountsOp :: (Quantity -> Quantity -> Quantity) -> Amount -> Amount -> Amount
similarAmountsOp op Amount{acommodity=_,  aquantity=q1, astyle=AmountStyle{asprecision=p1}}
                    Amount{acommodity=c2, aquantity=q2, astyle=s2@AmountStyle{asprecision=p2}} =
   
   amount{acommodity=c2, aquantity=q1 `op` q2, astyle=s2{asprecision=max p1 p2}}
  
  
amountWithCommodity :: CommoditySymbol -> Amount -> Amount
amountWithCommodity c a = a{acommodity=c, aprice=NoPrice}
costOfAmount :: Amount -> Amount
costOfAmount a@Amount{aquantity=q, aprice=price} =
    case price of
      NoPrice -> a
      UnitPrice  p@Amount{aquantity=pq} -> p{aquantity=pq * q}
      TotalPrice p@Amount{aquantity=pq} -> p{aquantity=pq * signum q}
divideAmount :: Amount -> Quantity -> Amount
divideAmount a@Amount{aquantity=q} d = a{aquantity=q/d}
isNegativeAmount :: Amount -> Bool
isNegativeAmount Amount{aquantity=q} = q < 0
digits = "123456789" :: String
isZeroAmount :: Amount -> Bool
isZeroAmount a 
               | otherwise     = (null . filter (`elem` digits) . showAmountWithoutPriceOrCommodity) a
isReallyZeroAmount :: Amount -> Bool
isReallyZeroAmount Amount{aquantity=q} = q == 0
showAmountWithPrecision :: Int -> Amount -> String
showAmountWithPrecision p = showAmount . setAmountPrecision p
setAmountPrecision :: Int -> Amount -> Amount
setAmountPrecision p a@Amount{astyle=s} = a{astyle=s{asprecision=p}}
withPrecision :: Amount -> Int -> Amount
withPrecision = flip setAmountPrecision
showAmountDebug :: Amount -> String
showAmountDebug Amount{acommodity="AUTO"} = "(missing)"
showAmountDebug Amount{..} = printf "Amount {acommodity=%s, aquantity=%s, aprice=%s, astyle=%s}" (show acommodity) (show aquantity) (showPriceDebug aprice) (show astyle)
showAmountWithoutPrice :: Amount -> String
showAmountWithoutPrice a = showAmount a{aprice=NoPrice}
cshowAmountWithoutPrice :: Amount -> String
cshowAmountWithoutPrice a = cshowAmount a{aprice=NoPrice}
showAmountWithoutPriceOrCommodity :: Amount -> String
showAmountWithoutPriceOrCommodity a = showAmount a{acommodity="", aprice=NoPrice}
showPrice :: Price -> String
showPrice NoPrice         = ""
showPrice (UnitPrice pa)  = " @ "  ++ showAmount pa
showPrice (TotalPrice pa) = " @@ " ++ showAmount pa
showPriceDebug :: Price -> String
showPriceDebug NoPrice         = ""
showPriceDebug (UnitPrice pa)  = " @ "  ++ showAmountDebug pa
showPriceDebug (TotalPrice pa) = " @@ " ++ showAmountDebug pa
showAmount :: Amount -> String
showAmount = showAmountHelper False
cshowAmount :: Amount -> String
cshowAmount a =
  (if isNegativeAmount a then color Dull Red else id) $
  showAmountHelper False a
showAmountHelper :: Bool -> Amount -> String
showAmountHelper _ Amount{acommodity="AUTO"} = ""
showAmountHelper showzerocommodity a@(Amount{acommodity=c, aprice=p, astyle=AmountStyle{..}}) =
    case ascommodityside of
      L -> printf "%s%s%s%s" (T.unpack c') space quantity' price
      R -> printf "%s%s%s%s" quantity' space (T.unpack c') price
    where
      quantity = showamountquantity a
      displayingzero = null $ filter (`elem` digits) $ quantity
      (quantity',c') | displayingzero && not showzerocommodity = ("0","")
                     | otherwise = (quantity, quoteCommoditySymbolIfNeeded c)
      space = if (not (T.null c') && ascommodityspaced) then " " else "" :: String
      price = showPrice p
showAmountWithZeroCommodity :: Amount -> String
showAmountWithZeroCommodity = showAmountHelper True
showamountquantity :: Amount -> String
showamountquantity Amount{aquantity=q, astyle=AmountStyle{asprecision=p, asdecimalpoint=mdec, asdigitgroups=mgrps}} =
    punctuatenumber (fromMaybe '.' mdec) mgrps $ qstr
    where
      
      qstr 
        | p == maxprecisionwithpoint = show q
        | p == maxprecision          = chopdotzero $ show q
        | otherwise                  = show $ roundTo (fromIntegral p) q
punctuatenumber :: Char -> Maybe DigitGroupStyle -> String -> String
punctuatenumber dec mgrps s = sign ++ reverse (applyDigitGroupStyle mgrps (reverse int)) ++ frac''
    where
      (sign,num) = break isDigit s
      (int,frac) = break (=='.') num
      frac' = dropWhile (=='.') frac
      frac'' | null frac' = ""
             | otherwise  = dec:frac'
applyDigitGroupStyle :: Maybe DigitGroupStyle -> String -> String
applyDigitGroupStyle Nothing s = s
applyDigitGroupStyle (Just (DigitGroups c gs)) s = addseps (repeatLast gs) s
  where
    addseps [] s = s
    addseps (g:gs) s
      | length s <= g = s
      | otherwise     = let (part,rest) = splitAt g s
                        in part ++ [c] ++ addseps gs rest
    repeatLast [] = []
    repeatLast gs = init gs ++ repeat (last gs)
chopdotzero str = reverse $ case reverse str of
                              '0':'.':s -> s
                              s         -> s
maxprecision :: Int
maxprecision = 999998
maxprecisionwithpoint :: Int
maxprecisionwithpoint = 999999
canonicaliseAmount :: M.Map CommoditySymbol AmountStyle -> Amount -> Amount
canonicaliseAmount styles a@Amount{acommodity=c, astyle=s} = a{astyle=s'}
    where
      s' = findWithDefault s c styles
instance Show MixedAmount where
  show
    | debugLevel < 3 = intercalate "\\n" . lines . showMixedAmountWithoutPrice
    
    | otherwise      = showMixedAmountDebug
instance Num MixedAmount where
    fromInteger i = Mixed [fromInteger i]
    negate (Mixed as) = Mixed $ map negate as
    (+) (Mixed as) (Mixed bs) = normaliseMixedAmount $ Mixed $ as ++ bs
    (*)    = error' "error, mixed amounts do not support multiplication"
    abs    = error' "error, mixed amounts do not support abs"
    signum = error' "error, mixed amounts do not support signum"
nullmixedamt :: MixedAmount
nullmixedamt = Mixed []
missingmixedamt :: MixedAmount
missingmixedamt = Mixed [missingamt]
mixed :: [Amount] -> MixedAmount
mixed = normaliseMixedAmount . Mixed
normaliseMixedAmount :: MixedAmount -> MixedAmount
normaliseMixedAmount = normaliseHelper False
normaliseHelper :: Bool -> MixedAmount -> MixedAmount
normaliseHelper squashprices (Mixed as)
  | missingamt `elem` as = missingmixedamt 
  | null nonzeros        = Mixed [newzero]
  | otherwise            = Mixed nonzeros
  where
    newzero = case filter (/= "") (map acommodity zeros) of
               _:_ -> last zeros
               _   -> nullamt
    (zeros, nonzeros) = partition isReallyZeroAmount $
                        map sumSimilarAmountsUsingFirstPrice $
                        groupBy groupfn $
                        sortBy sortfn $
                        as
    sortfn  | squashprices = compare `on` acommodity
            | otherwise    = compare `on` \a -> (acommodity a, aprice a)
    groupfn | squashprices = (==) `on` acommodity
            | otherwise    = \a1 a2 -> acommodity a1 == acommodity a2 && combinableprices a1 a2
    combinableprices Amount{aprice=NoPrice} Amount{aprice=NoPrice} = True
    combinableprices Amount{aprice=UnitPrice p1} Amount{aprice=UnitPrice p2} = p1 == p2
    combinableprices _ _ = False
tests_normaliseMixedAmount = [
  "normaliseMixedAmount" ~: do
   
   assertEqual "any missing amount means a missing mixed amount" missingmixedamt (normaliseMixedAmount $ Mixed [usd 0, missingamt])
   assertEqual "unpriced same-commodity amounts are combined" (Mixed [usd 2]) (normaliseMixedAmount $ Mixed [usd 0, usd 2])
   
   normaliseMixedAmount (Mixed [usd 1 `at` eur 1, usd 1 `at` eur 1]) `is` Mixed [usd 2 `at` eur 1]
   
   normaliseMixedAmount (Mixed [usd 1 `at` eur 1, usd 1 `at` eur 2]) `is` Mixed [usd 1 `at` eur 1, usd 1 `at` eur 2]
   
   normaliseMixedAmount (Mixed  [usd 1 @@ eur 1, usd 1 @@ eur 1]) `is` Mixed [usd 1 @@ eur 1, usd 1 @@ eur 1]
 ]
normaliseMixedAmountSquashPricesForDisplay :: MixedAmount -> MixedAmount
normaliseMixedAmountSquashPricesForDisplay = normaliseHelper True
tests_normaliseMixedAmountSquashPricesForDisplay = [
  "normaliseMixedAmountSquashPricesForDisplay" ~: do
    normaliseMixedAmountSquashPricesForDisplay (Mixed []) `is` Mixed [nullamt]
    assertBool "" $ isZeroMixedAmount $ normaliseMixedAmountSquashPricesForDisplay
      (Mixed [usd 10
             ,usd 10 @@ eur 7
             ,usd (10)
             ,usd (10) @@ eur 7
             ])
 ]
sumSimilarAmountsUsingFirstPrice :: [Amount] -> Amount
sumSimilarAmountsUsingFirstPrice [] = nullamt
sumSimilarAmountsUsingFirstPrice as = (sumStrict as){aprice=aprice $ head as}
amounts :: MixedAmount -> [Amount]
amounts (Mixed as) = as
filterMixedAmount :: (Amount -> Bool) -> MixedAmount -> MixedAmount
filterMixedAmount p (Mixed as) = Mixed $ filter p as
filterMixedAmountByCommodity :: CommoditySymbol -> MixedAmount -> MixedAmount
filterMixedAmountByCommodity c (Mixed as) = Mixed as'
  where
    as' = case filter ((==c) . acommodity) as of
            []   -> [nullamt{acommodity=c}]
            as'' -> [sum as'']
costOfMixedAmount :: MixedAmount -> MixedAmount
costOfMixedAmount (Mixed as) = Mixed $ map costOfAmount as
divideMixedAmount :: MixedAmount -> Quantity -> MixedAmount
divideMixedAmount (Mixed as) d = Mixed $ map (flip divideAmount d) as
averageMixedAmounts :: [MixedAmount] -> MixedAmount
averageMixedAmounts [] = 0
averageMixedAmounts as = sum as `divideMixedAmount` fromIntegral (length as)
isNegativeMixedAmount :: MixedAmount -> Maybe Bool
isNegativeMixedAmount m = case as of [a] -> Just $ isNegativeAmount a
                                     _   -> Nothing
    where as = amounts $ normaliseMixedAmountSquashPricesForDisplay m
isZeroMixedAmount :: MixedAmount -> Bool
isZeroMixedAmount = all isZeroAmount . amounts . normaliseMixedAmountSquashPricesForDisplay
isReallyZeroMixedAmount :: MixedAmount -> Bool
isReallyZeroMixedAmount = all isReallyZeroAmount . amounts . normaliseMixedAmountSquashPricesForDisplay
isReallyZeroMixedAmountCost :: MixedAmount -> Bool
isReallyZeroMixedAmountCost = isReallyZeroMixedAmount . costOfMixedAmount
showMixedAmount :: MixedAmount -> String
showMixedAmount = showMixedAmountHelper False False
showMixedAmountWithZeroCommodity :: MixedAmount -> String
showMixedAmountWithZeroCommodity = showMixedAmountHelper True False
showMixedAmountOneLine :: MixedAmount -> String
showMixedAmountOneLine = showMixedAmountHelper False True
showMixedAmountHelper :: Bool -> Bool -> MixedAmount -> String
showMixedAmountHelper showzerocommodity useoneline m =
  join $ map showamt $ amounts $ normaliseMixedAmountSquashPricesForDisplay m
  where
    join | useoneline = intercalate ", "
         | otherwise  = vConcatRightAligned
    showamt | showzerocommodity = showAmountWithZeroCommodity
            | otherwise         = showAmount
ltraceamount :: String -> MixedAmount -> MixedAmount
ltraceamount s = traceWith (((s ++ ": ") ++).showMixedAmount)
setMixedAmountPrecision :: Int -> MixedAmount -> MixedAmount
setMixedAmountPrecision p (Mixed as) = Mixed $ map (setAmountPrecision p) as
showMixedAmountWithPrecision :: Int -> MixedAmount -> String
showMixedAmountWithPrecision p m =
    vConcatRightAligned $ map (showAmountWithPrecision p) $ amounts $ normaliseMixedAmountSquashPricesForDisplay m
showMixedAmountDebug :: MixedAmount -> String
showMixedAmountDebug m | m == missingmixedamt = "(missing)"
                       | otherwise       = printf "Mixed [%s]" as
    where as = intercalate "\n       " $ map showAmountDebug $ amounts m
showMixedAmountWithoutPrice :: MixedAmount -> String
showMixedAmountWithoutPrice m = concat $ intersperse "\n" $ map showfixedwidth as
    where
      (Mixed as) = normaliseMixedAmountSquashPricesForDisplay $ stripPrices m
      stripPrices (Mixed as) = Mixed $ map stripprice as where stripprice a = a{aprice=NoPrice}
      width = maximum $ map (length . showAmount) as
      showfixedwidth = printf (printf "%%%ds" width) . showAmountWithoutPrice
cshowMixedAmountWithoutPrice :: MixedAmount -> String
cshowMixedAmountWithoutPrice m = concat $ intersperse "\n" $ map showamt as
    where
      (Mixed as) = normaliseMixedAmountSquashPricesForDisplay $ stripPrices m
      stripPrices (Mixed as) = Mixed $ map stripprice as where stripprice a = a{aprice=NoPrice}
      width = maximum $ map (length . showAmount) as
      showamt a = 
        (if isNegativeAmount a then color Dull Red else id) $
        printf (printf "%%%ds" width) $ showAmountWithoutPrice a
showMixedAmountOneLineWithoutPrice :: MixedAmount -> String
showMixedAmountOneLineWithoutPrice m = concat $ intersperse ", " $ map showAmountWithoutPrice as
    where
      (Mixed as) = normaliseMixedAmountSquashPricesForDisplay $ stripPrices m
      stripPrices (Mixed as) = Mixed $ map stripprice as where stripprice a = a{aprice=NoPrice}
cshowMixedAmountOneLineWithoutPrice :: MixedAmount -> String
cshowMixedAmountOneLineWithoutPrice m = concat $ intersperse ", " $ map cshowAmountWithoutPrice as
    where
      (Mixed as) = normaliseMixedAmountSquashPricesForDisplay $ stripPrices m
      stripPrices (Mixed as) = Mixed $ map stripprice as where stripprice a = a{aprice=NoPrice}
canonicaliseMixedAmount :: M.Map CommoditySymbol AmountStyle -> MixedAmount -> MixedAmount
canonicaliseMixedAmount styles (Mixed as) = Mixed $ map (canonicaliseAmount styles) as
tests_Hledger_Data_Amount = TestList $
     tests_normaliseMixedAmount
  ++ tests_normaliseMixedAmountSquashPricesForDisplay
  ++ [
  
   "costOfAmount" ~: do
    costOfAmount (eur 1) `is` eur 1
    costOfAmount (eur 2){aprice=UnitPrice $ usd 2} `is` usd 4
    costOfAmount (eur 1){aprice=TotalPrice $ usd 2} `is` usd 2
    costOfAmount (eur (1)){aprice=TotalPrice $ usd 2} `is` usd (2)
  ,"isZeroAmount" ~: do
    assertBool "" $ isZeroAmount $ amount
    assertBool "" $ isZeroAmount $ usd 0
  ,"negating amounts" ~: do
    let a = usd 1
    negate a `is` a{aquantity=(1)}
    let b = (usd 1){aprice=UnitPrice $ eur 2}
    negate b `is` b{aquantity=(1)}
  ,"adding amounts without prices" ~: do
    let a1 = usd 1.23
    let a2 = usd (1.23)
    let a3 = usd (1.23)
    (a1 + a2) `is` usd 0
    (a1 + a3) `is` usd 0
    (a2 + a3) `is` usd (2.46)
    (a3 + a3) `is` usd (2.46)
    sum [a1,a2,a3,a3] `is` usd 0
    
    let ap1 = usd 1 `withPrecision` 1
        ap3 = usd 1 `withPrecision` 3
    (asprecision $ astyle $ sum [ap1,ap3]) `is` 3
    (asprecision $ astyle $ sum [ap3,ap1]) `is` 3
    
    assertBool "" $ isZeroAmount (a1  eur 1.23)
  ,"showAmount" ~: do
    showAmount (usd 0 + gbp 0) `is` "0"
  
  ,"adding mixed amounts to zero, the commodity and amount style are preserved" ~: do
    (sum $ map (Mixed . (:[]))
             [usd 1.25
             ,usd (1) `withPrecision` 3
             ,usd (0.25)
             ])
      `is` Mixed [usd 0 `withPrecision` 3]
  ,"adding mixed amounts with total prices" ~: do
    (sum $ map (Mixed . (:[]))
     [usd 1 @@ eur 1
     ,usd (2) @@ eur 1
     ])
      `is` (Mixed [usd 1 @@ eur 1
                  ,usd (2) @@ eur 1
                  ])
  ,"showMixedAmount" ~: do
    showMixedAmount (Mixed [usd 1]) `is` "$1.00"
    showMixedAmount (Mixed [usd 1 `at` eur 2]) `is` "$1.00 @ €2.00"
    showMixedAmount (Mixed [usd 0]) `is` "0"
    showMixedAmount (Mixed []) `is` "0"
    showMixedAmount missingmixedamt `is` ""
  ,"showMixedAmountWithoutPrice" ~: do
    let a = usd 1 `at` eur 2
    showMixedAmountWithoutPrice (Mixed [a]) `is` "$1.00"
    showMixedAmountWithoutPrice (Mixed [a, (a)]) `is` "0"
  ]