Clean up old files
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238
old/DateExpr.hs
238
old/DateExpr.hs
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module DateExpr
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( DateExpr
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, parseDateExpr
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, firstMatchingDay
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, evalDateExpr
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, daily
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, weekly
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) where
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import Control.Applicative
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import Control.Monad
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import Data.List
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import Data.Maybe
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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.MonthDay
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import Data.Time.Calendar.Easter
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import Data.Void
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import Text.Megaparsec
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import Text.Megaparsec.Char
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import qualified Text.Megaparsec.Char.Lexer as L
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import Text.Megaparsec.Expr
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type DateExpr = BoolExpr
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data BoolExpr = BValue Bool
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| BStatement DateStatement
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| BNot BoolExpr
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| BAnd BoolExpr BoolExpr
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| BOr BoolExpr BoolExpr
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| BEq IntExpr IntExpr
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| BGt IntExpr IntExpr
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| BLt IntExpr IntExpr
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deriving (Show)
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data IntExpr = IValue Integer
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| IDate SpecialDate
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| INeg IntExpr
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| IAdd IntExpr IntExpr
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| IMul IntExpr IntExpr
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| IDiv IntExpr IntExpr -- div, not quot!
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| IMod IntExpr IntExpr -- mod, not rem!
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deriving (Show)
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data DateStatement = IsLeapYear
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| IsWeekend
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deriving (Show)
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-- possible additions: IsEaster
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data SpecialDate = SJulianDay
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| SYear | SMonth | SDay
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| SDayOfYear
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| SDayOfWeek
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| SYearCount
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| SMonthCount
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| SEaster
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deriving (Show)
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daily :: DateExpr
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daily = BValue True
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weekly :: DateExpr
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weekly = BEq (IDate SDayOfWeek) (IValue 7)
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{-
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- Evaluating expressions
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-}
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evalDateExpr :: DateExpr -> Day -> Bool
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evalDateExpr expr = fromMaybe False . evalBoolExpr expr
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firstMatchingDay :: DateExpr -> Int -> Day -> Maybe Day
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firstMatchingDay expr duration = find (evalDateExpr expr)
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. take duration . iterate (addDays 1)
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evalBoolExpr :: BoolExpr -> Day -> Maybe Bool
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evalBoolExpr (BValue v) _ = Just v
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evalBoolExpr (BStatement s) d = Just $ evalDateStatement s d
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evalBoolExpr (BNot a) d = not <$> evalBoolExpr a d
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evalBoolExpr (BAnd a b) d = liftA2 (&&) (evalBoolExpr a d) (evalBoolExpr b d)
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evalBoolExpr (BOr a b) d = liftA2 (||) (evalBoolExpr a d) (evalBoolExpr b d)
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evalBoolExpr (BEq a b) d = liftA2 (==) (evalIntExpr a d) (evalIntExpr b d)
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evalBoolExpr (BGt a b) d = liftA2 (>) (evalIntExpr a d) (evalIntExpr b d)
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evalBoolExpr (BLt a b) d = liftA2 (<) (evalIntExpr a d) (evalIntExpr b d)
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evalIntExpr :: IntExpr -> Day -> Maybe Integer
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evalIntExpr (IValue v) _ = Just v
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evalIntExpr (IDate s) d = Just $ evalSpecialDate s d
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evalIntExpr (INeg a) d = negate <$> evalIntExpr a d
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evalIntExpr (IAdd a b) d = liftA2 (+) (evalIntExpr a d) (evalIntExpr b d)
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evalIntExpr (IMul a b) d = liftA2 (*) (evalIntExpr a d) (evalIntExpr b d)
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evalIntExpr (IDiv a b) d = do
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x <- evalIntExpr a d
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y <- evalIntExpr b d
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guard $ y /= 0
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return $ x `div` y
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evalIntExpr (IMod a b) d = do
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x <- evalIntExpr a d
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y <- evalIntExpr b d
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guard $ y /= 0
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return $ x `mod` y
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evalDateStatement :: DateStatement -> Day -> Bool
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evalDateStatement IsLeapYear d = isLeapYear $ year d
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evalDateStatement IsWeekend d = weekday d `elem` [6,7]
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evalSpecialDate :: SpecialDate -> Day -> Integer
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evalSpecialDate SJulianDay d = julian d
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evalSpecialDate SYear d = year d
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evalSpecialDate SMonth d = month d
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evalSpecialDate SDay d = day d
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evalSpecialDate SDayOfYear d = yearday d
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evalSpecialDate SDayOfWeek d = weekday d
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evalSpecialDate SYearCount d = ((yearday d - 1) `div` 7) + 1
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evalSpecialDate SMonthCount d = ((day d - 1) `div` 7) + 1
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evalSpecialDate SEaster d = diffDays d $ orthodoxEaster $ year d
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{-
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- Helper functions for evaluation
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-}
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julian :: Day -> Integer
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julian = flip diffDays (fromGregorian 1858 11 17)
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year :: Day -> Integer
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year d = let (r,_,_) = toGregorian d in r
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month :: Day -> Integer
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month d = let (_,r,_) = toGregorian d in toInteger r
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day :: Day -> Integer
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day d = let (_,_,r) = toGregorian d in toInteger r
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weekday :: Day -> Integer
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weekday d = let (_,_,r) = toWeekDate d in toInteger r
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yearday :: Day -> Integer
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yearday day = let (y,m,d) = toGregorian day
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dayofyear = monthAndDayToDayOfYear (isLeapYear y) m d
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in toInteger dayofyear
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{-
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- Parsing Expressions
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-}
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type Parser = Parsec Void String
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parseDateExpr :: Parser DateExpr
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parseDateExpr = boolExpr
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-- Lexeme parser functions
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sc :: Parser ()
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sc = L.space space1 (L.skipLineComment "//") (L.skipBlockCommentNested "/*" "*/")
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symbol :: String -> Parser String
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symbol = L.symbol sc
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lexeme :: Parser a -> Parser a
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lexeme = L.lexeme sc
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parens :: Parser a -> Parser a
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parens = between (symbol "(") (symbol ")")
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integer :: Parser Integer
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integer = lexeme L.decimal
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bool :: Parser Bool
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bool = (True <$ symbol "true") <|> (False <$ symbol "false")
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-- Helper functions for creating tables
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prefix name f = Prefix (f <$ symbol name)
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infixL name f = InfixL (f <$ symbol name)
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-- Parse IntExpr
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intExpr :: Parser IntExpr
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intExpr = makeExprParser intTerm intTable
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intTable :: [[Operator Parser IntExpr]]
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intTable = [ [prefix "+" id, prefix "-" INeg]
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, [infixL "*" IMul, infixL "/" IDiv, infixL "%" IMod]
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, [infixL "+" IAdd, infixL "-" (IAdd . INeg)]
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]
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intTerm :: Parser IntExpr
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intTerm = parens intExpr
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<|> IValue <$> integer
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<|> IDate <$> pSpecialDate
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<?> "integer expression"
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-- Parse BoolExpr
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boolExpr :: Parser BoolExpr
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boolExpr = makeExprParser boolTerm boolTable
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boolTable :: [[Operator Parser BoolExpr]]
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boolTable = [ [prefix "!" BNot]
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, [infixL "&&" BAnd, infixL "||" BOr]
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]
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boolTerm :: Parser BoolExpr
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boolTerm = parens boolExpr
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<|> BValue <$> bool
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<|> BStatement <$> pDateStatement
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<|> relExpr
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<?> "boolean expression"
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relExpr :: Parser BoolExpr
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relExpr = do
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a <- intExpr
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b <- relation
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c <- intExpr
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return $ b a c
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relation :: Parser (IntExpr -> IntExpr -> BoolExpr)
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relation = (BEq <$ symbol "==")
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<|> ((\a b -> BNot (BEq a b)) <$ symbol "!=")
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<|> ((\a b -> BNot (BLt a b)) <$ symbol ">=")
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<|> ((\a b -> BNot (BGt a b)) <$ symbol "<=")
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<|> (BGt <$ symbol ">")
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<|> (BLt <$ symbol "<")
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<?> "comparison"
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-- Parse SpecialDates and DateStatements
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pSpecialDate :: Parser SpecialDate
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pSpecialDate = (SJulianDay <$ symbol "julian")
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<|> (SYearCount <$ symbol "yearcount")
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<|> (SDayOfYear <$ symbol "yearday")
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<|> (SYear <$ symbol "year")
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<|> (SMonthCount <$ symbol "monthcount")
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<|> (SMonth <$ symbol "month")
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<|> (SDay <$ symbol "day")
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<|> (SDayOfWeek <$ symbol "weekday")
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<|> (SEaster <$ symbol "easter")
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<?> "special date"
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pDateStatement :: Parser DateStatement
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pDateStatement = (IsWeekend <$ symbol "isweekend")
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<|> (IsLeapYear <$ symbol "isleapyear")
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<?> "date statement"
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119
old/Task.hs
119
old/Task.hs
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@ -1,119 +0,0 @@
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module Task where
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import DateExpr
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import Control.Applicative
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import Control.Monad
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import Data.Time.Calendar
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import Data.Void
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import Text.Megaparsec
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import Text.Megaparsec.Char
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import qualified Text.Megaparsec.Char.Lexer as L
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data Priority = Must
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| Should
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| Can
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deriving (Eq, Ord, Enum, Show)
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type Description = String
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type Amount = Integer
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type Duration = Integer
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data When = Forever
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| Until Day
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| During Duration Day
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| Whenever Duration DateExpr
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deriving (Show)
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data Task = Task Priority Description Amount When
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deriving (Show)
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{-
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- Parse Tasks
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-}
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type Parser = Parsec Void String
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sc :: Parser ()
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sc = L.space space1 (L.skipLineComment "//") (L.skipBlockCommentNested "/*" "*/")
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symbol :: String -> Parser String
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symbol = L.symbol sc
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lexeme :: Parser a -> Parser a
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lexeme = L.lexeme sc
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integer :: (Integral i) => Parser i
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integer = lexeme L.decimal
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options :: (a -> Parser a) -> [a] -> Parser a
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options f = choice . map f
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pDateIso :: Parser Day
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pDateIso = do
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y <- integer
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char '-'
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m <- integer
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char '-'
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d <- integer
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return $ fromGregorian y m d
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pDateDots :: Parser Day
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pDateDots = do
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d <- integer
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char '.'
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m <- integer
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char '.'
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y <- integer
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return $ fromGregorian y m d
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pDate :: Parser Day
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pDate = try pDateIso <|> pDateDots
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pDuration :: Parser Duration
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pDuration = do
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symbol "for"
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n <- integer
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symbol "days" <|> symbol "day"
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return n
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pUntil = symbol "until" *> pDate
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pWhenever = symbol "whenever" *> parseDateExpr
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pWhenShortcut :: Parser When
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pWhenShortcut = Whenever 1 daily <$ symbol "daily"
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<|> Whenever 7 weekly <$ symbol "weekly"
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<?> "when"
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pWhen :: Parser When
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pWhen = pWhenShortcut
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<|> liftA Until pUntil
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<|> try (liftA2 During pDuration pUntil)
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<|> try (liftA2 Whenever pDuration pWhenever)
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<|> liftA2 Whenever (return 1) pWhenever
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-- <|> return Forever
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<?> "when"
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pPriority :: Parser Priority
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pPriority = Must <$ symbol "must"
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<|> Should <$ symbol "should"
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<|> Can <$ options symbol ["can", "might", "may"]
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pAmount :: Parser Amount
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pAmount = 1 <$ symbol "once"
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<|> 2 <$ symbol "twice"
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<|> integer <* (symbol "times" <|> symbol "time")
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<?> "amount"
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pDesc :: Parser Description
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-- pDesc = between (symbol "<") (symbol ">")
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-- $ takeWhile1P (Just "description") (not . (`elem` "<>"))
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pDesc = someTill anyChar (try $ lookAhead pAmountOrWhen) <* sc
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where pAmountOrWhen = try (sc <* pAmount)
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<|> sc <* pWhen
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parseTask :: Parser Task
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-- because liftA only goes up to liftA3
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parseTask = try (liftM4 Task pPriority pDesc pAmount pWhen)
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<|> try (liftM4 Task pPriority pDesc (return 1) pWhen)
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<|> try (liftM4 Task pPriority pDesc pAmount (return Forever))
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<|> liftM4 Task pPriority (some anyChar) (return 1) (return Forever)
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85
plan.txt
85
plan.txt
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@ -1,85 +0,0 @@
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Inspired by https://github.com/todotxt/todo.txt
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-----< Basic concept >-----
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The program loads and operates on one todo file at a time.
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A todo file is a text file where (with a few exceptions) every line is one todo item.
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-----< Functionality >-----
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- load file (parsing)
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- save file
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- prune completed tasks
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- "running tasks":
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Two-line structure that contains:
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1. A line to determine when, and set variables (both using calendar formulas)
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2. A "task recipe" that can use $variables (for birthdays etc.)
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Running tasks are computed in the order they appear in the file.
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-----< How it works >-----
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1. $ todo work.todo
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2. load the entire file
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2.1 parse lines
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2.2 preserve structuring of the file: empty lines, comments, order
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2.3 if there's any errors, abort instead of possibly overwriting the file with wrong data later
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3. calculate any running tasks
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3.1 look at the last-calculated date, current date and task duration
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3.2 calculate new tasks and append them to the file
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3.3 update last-calculated date of the task
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3.4 save updates
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4. present user interface (TUI)
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4.1 show tasks
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4.2 search and order tasks
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4.3 check tasks
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4.4 Optional: delete tasks
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4.5 Optional: create new tasks
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4.5 Optional: edit existing tasks (modify text, priority, ...)
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5. overwrite file with new changes
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5.1 instant mode
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5.1.1 after initial running task calculation
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5.1.2 whenever any task was changed (checked, edited, deleted, ...)
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5.2 deferred mode
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5.2.1 save on user save action
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5.2.2 save on close
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5.3 default mode: instant mode?
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-----< The file format >-----
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normal tasks:
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[x] [priority] [[completion-date] creation-date] text
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where completion-date can only be specified if the task was actually completed
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running tasks:
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# [running-date] when-formula template
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text:
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- may include any amount of +projects and @contexts
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(+projects and @contexts are case insensitive)
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- may include key:value specifiers
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(key and value must consist of non-whitespace characters which are not colons)
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(keys are case insensitive too)
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template:
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- consists of any string
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- may include {expressions} which are when-formulas
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(if the when-formula returns a date, the expression is replaced by its YYYY-MM-DD representation)
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(if the when-formula returns a number, the expression is replaced by that number)
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(if the when-formula returns a boolean, the expression is replaced by "yes" or "no")
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-----< Examples/Testing >-----
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The program should work with all https://github.com/todotxt/todo.txt compliant todo files.
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"Running tasks" are merely an extension of the todo format.
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They use a syntax similar to what I expect comments would look in todo.txt 2.0.
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In todo.txt compliant programs, they simply show up as not completed tasks.
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Starting the program
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- read command line options
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- export default config
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- export default theme
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- load config file, looking in default places if no -c flag set
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- merge loaded config with options (options take priority)
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- open db and make sure the correct tables exist (CREATE TABLE IF EXISTS)
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(- possibly import from old table versions)
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- launch actual program
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Actual program
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- print all entries in db for debugging
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