177 lines
		
	
	
		
			5.5 KiB
		
	
	
	
		
			Haskell
		
	
	
	
	
	
			
		
		
	
	
			177 lines
		
	
	
		
			5.5 KiB
		
	
	
	
		
			Haskell
		
	
	
	
	
	
| {-|
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| 
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| Standard imports and utilities which are useful everywhere, or needed low
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| in the module hierarchy. This is the bottom of hledger's module graph.
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| 
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| -}
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| 
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| module Hledger.Utils (---- provide these frequently used modules - or not, for clearer api:
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|                           -- module Control.Monad,
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|                           -- module Data.List,
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|                           -- module Data.Maybe,
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|                           -- module Data.Time.Calendar,
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|                           -- module Data.Time.Clock,
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|                           -- module Data.Time.LocalTime,
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|                           -- module Data.Tree,
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|                           -- module Text.RegexPR,
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|                           -- module Test.HUnit,
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|                           -- module Text.Printf,
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|                           ---- all of this one:
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|                           module Hledger.Utils,
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|                           module Hledger.Utils.Debug,
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|                           module Hledger.Utils.Parse,
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|                           module Hledger.Utils.Regex,
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|                           module Hledger.Utils.String,
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|                           module Hledger.Utils.Text,
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|                           module Hledger.Utils.Test,
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|                           module Hledger.Utils.Tree,
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|                           -- Debug.Trace.trace,
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|                           -- module Data.PPrint,
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|                           -- module Hledger.Utils.UTF8IOCompat
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|                           SystemString,fromSystemString,toSystemString,error',userError',
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|                           -- the rest need to be done in each module I think
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|                           )
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| where
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| import Control.Monad (liftM)
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| -- import Data.Char
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| -- import Data.List
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| -- import Data.Maybe
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| -- import Data.PPrint
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| import Data.Text (Text)
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| import qualified Data.Text.IO as T
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| import Data.Time.Clock
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| import Data.Time.LocalTime
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| -- import Data.Text (Text)
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| -- import qualified Data.Text as T
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| import System.Directory (getHomeDirectory)
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| import System.FilePath((</>), isRelative)
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| import System.IO
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| -- import Text.Printf
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| -- import qualified Data.Map as Map
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| 
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| import Hledger.Utils.Debug
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| import Hledger.Utils.Parse
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| import Hledger.Utils.Regex
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| import Hledger.Utils.String
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| import Hledger.Utils.Text
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| import Hledger.Utils.Test
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| import Hledger.Utils.Tree
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| -- import Prelude hiding (readFile,writeFile,appendFile,getContents,putStr,putStrLn)
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| -- import Hledger.Utils.UTF8IOCompat   (readFile,writeFile,appendFile,getContents,putStr,putStrLn)
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| import Hledger.Utils.UTF8IOCompat (SystemString,fromSystemString,toSystemString,error',userError')
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| 
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| 
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| -- tuples
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| 
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| first3  (x,_,_) = x
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| second3 (_,x,_) = x
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| third3  (_,_,x) = x
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| 
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| first4  (x,_,_,_) = x
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| second4 (_,x,_,_) = x
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| third4  (_,_,x,_) = x
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| fourth4 (_,_,_,x) = x
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| 
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| first5  (x,_,_,_,_) = x
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| second5 (_,x,_,_,_) = x
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| third5  (_,_,x,_,_) = x
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| fourth5 (_,_,_,x,_) = x
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| fifth5  (_,_,_,_,x) = x
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| 
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| first6  (x,_,_,_,_,_) = x
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| second6 (_,x,_,_,_,_) = x
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| third6  (_,_,x,_,_,_) = x
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| fourth6 (_,_,_,x,_,_) = x
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| fifth6  (_,_,_,_,x,_) = x
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| sixth6  (_,_,_,_,_,x) = x
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| 
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| -- lists
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| 
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| splitAtElement :: Eq a => a -> [a] -> [[a]]
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| splitAtElement x l =
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|   case l of
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|     []          -> []
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|     e:es | e==x -> split es
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|     es          -> split es
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|   where
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|     split es = let (first,rest) = break (x==) es
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|                in first : splitAtElement x rest
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| 
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| -- text
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| 
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| -- time
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| 
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| getCurrentLocalTime :: IO LocalTime
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| getCurrentLocalTime = do
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|   t <- getCurrentTime
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|   tz <- getCurrentTimeZone
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|   return $ utcToLocalTime tz t
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| 
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| getCurrentZonedTime :: IO ZonedTime
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| getCurrentZonedTime = do
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|   t <- getCurrentTime
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|   tz <- getCurrentTimeZone
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|   return $ utcToZonedTime tz t
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| 
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| -- misc
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| 
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| isLeft :: Either a b -> Bool
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| isLeft (Left _) = True
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| isLeft _        = False
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| 
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| isRight :: Either a b -> Bool
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| isRight = not . isLeft
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| 
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| -- | Apply a function the specified number of times. Possibly uses O(n) stack ?
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| applyN :: Int -> (a -> a) -> a -> a
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| applyN n f = (!! n) . iterate f
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| -- from protolude, compare
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| -- applyN :: Int -> (a -> a) -> a -> a
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| -- applyN n f = X.foldr (.) identity (X.replicate n f)
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| 
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| -- | Convert a possibly relative, possibly tilde-containing file path to an absolute one,
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| -- given the current directory. ~username is not supported. Leave "-" unchanged.
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| -- Can raise an error.
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| expandPath :: FilePath -> FilePath -> IO FilePath -- general type sig for use in reader parsers
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| expandPath _ "-" = return "-"
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| expandPath curdir p = (if isRelative p then (curdir </>) else id) `liftM` expandPath' p
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|   where
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|     expandPath' ('~':'/':p)  = (</> p) <$> getHomeDirectory
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|     expandPath' ('~':'\\':p) = (</> p) <$> getHomeDirectory
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|     expandPath' ('~':_)      = ioError $ userError "~USERNAME in paths is not supported"
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|     expandPath' p            = return p
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| 
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| firstJust ms = case dropWhile (==Nothing) ms of
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|     [] -> Nothing
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|     (md:_) -> md
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| 
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| -- | Read a file in universal newline mode, handling any of the usual line ending conventions.
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| readFile' :: FilePath -> IO Text
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| readFile' name =  do
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|   h <- openFile name ReadMode
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|   hSetNewlineMode h universalNewlineMode
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|   T.hGetContents h
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| 
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| -- | Read a file in universal newline mode, handling any of the usual line ending conventions.
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| readFileAnyLineEnding :: FilePath -> IO Text
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| readFileAnyLineEnding path =  do
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|   h <- openFile path ReadMode
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|   hSetNewlineMode h universalNewlineMode
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|   T.hGetContents h
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| 
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| -- | Read the given file, or standard input if the path is "-", using
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| -- universal newline mode.
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| readFileOrStdinAnyLineEnding :: String -> IO Text
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| readFileOrStdinAnyLineEnding f = do
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|   h <- fileHandle f
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|   hSetNewlineMode h universalNewlineMode
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|   T.hGetContents h
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|   where
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|     fileHandle "-" = return stdin
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|     fileHandle f = openFile f ReadMode
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| 
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| -- | Total version of maximum, for integral types, giving 0 for an empty list.
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| maximum' :: Integral a => [a] -> a
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| maximum' [] = 0
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| maximum' xs = maximum xs
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