mirror of
https://github.com/Drezil/dear-imgui.hs.git
synced 2024-11-25 10:07:01 +00:00
198 lines
6.1 KiB
Haskell
198 lines
6.1 KiB
Haskell
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{-# LANGUAGE DerivingStrategies #-}
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{-# LANGUAGE FlexibleContexts #-}
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{-# LANGUAGE FlexibleInstances #-}
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{-# LANGUAGE LambdaCase #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE TypeApplications #-}
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{-# LANGUAGE ViewPatterns #-}
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module DearImGui.Generator.Tokeniser where
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-- base
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import Control.Arrow
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( first, second )
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import Control.Applicative
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( (<|>), some )
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import Data.Char
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( isAlpha, isAlphaNum, isDigit, isPunctuation, isSpace, isSymbol, toLower )
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import Data.Function
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( (&) )
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import Data.Functor
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( ($>) )
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import Data.Monoid
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( Sum(..) )
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-- megaparsec
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import Text.Megaparsec
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( MonadParsec, VisualStream(..)
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, chunk, parseMaybe, satisfy, try
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)
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import Text.Megaparsec.Char.Lexer
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( hexadecimal, scientific )
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-- parser-combinators
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import Control.Monad.Combinators
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( optional )
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-- scientific
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import Data.Scientific
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( Scientific )
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-- text
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import Data.Text
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( Text )
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import qualified Data.Text as Text
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( break, breakOn, cons, drop, dropWhile
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, head, last, length
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, pack, snoc, span, strip, tail, take
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, uncons, unpack
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)
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-- unordered-containers
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import Data.HashSet
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( HashSet )
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import qualified Data.HashSet as HashSet
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( fromList, member )
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--------------------------------------------------------------------------------
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data TokeniserError
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= Couldn'tParseNumber { problem :: !Text }
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| UnhandledCase { unhandled :: !( Char, Text ) }
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deriving stock ( Eq, Ord, Show )
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data Tok
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= Keyword !Text
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| ReservedSymbol !Char
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| Symbolic !Text
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| Identifier !Text
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| Comment !Text
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| Char !Char
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| String !Text
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| Number !Scientific !Text
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| BeginCPP !Text
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| EndCPPLine
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deriving stock ( Show, Eq, Ord )
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showToken :: Tok -> String
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showToken = \case
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Keyword t -> Text.unpack t
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ReservedSymbol c -> [c]
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Symbolic t -> Text.unpack t
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Identifier t -> Text.unpack t
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Comment t -> Text.unpack t
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Char c -> [c]
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String t -> Text.unpack t
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Number s t -> show s <> Text.unpack t
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BeginCPP t -> "#" <> Text.unpack t
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EndCPPLine -> "EndCppLine"
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tokenLength :: Tok -> Int
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tokenLength = \case
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Keyword t -> Text.length t
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ReservedSymbol _ -> 1
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Symbolic t -> Text.length t
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Identifier t -> Text.length t
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Comment t -> Text.length t
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Char _ -> 1
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String t -> Text.length t
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Number s t -> length ( show s ) + Text.length t
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BeginCPP t -> 1 + Text.length t
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EndCPPLine -> length ( "EndCPPLine" :: String )
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instance VisualStream [Tok] where
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showTokens _ = foldMap showToken
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tokensLength _ = getSum . foldMap ( Sum . tokenLength )
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keywords :: HashSet Text
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keywords = HashSet.fromList
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[ "auto", "break", "case", "char", "const", "continue", "default", "do", "double"
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, "else", "enum", "extern", "float", "for", "goto", "if", "inline", "int", "long"
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, "register", "restrict", "return", "short", "signed", "sizeof", "static", "struct"
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, "switch", "typedef", "union", "unsigned", "void", "volatile", "while"
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]
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reservedSymbols :: HashSet Char
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reservedSymbols = HashSet.fromList [ '(', ')', '{', '}', ',', ';', '=', '#' ]
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tokenise :: Text -> Either TokeniserError [ Tok ]
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tokenise ( Text.uncons -> Just ( c, cs ) )
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| isSpace c
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= tokenise ( Text.dropWhile isSpace cs )
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| isAlpha c || c == '_'
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, let
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this, rest :: Text
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( this, rest ) = first ( c `Text.cons` ) $ Text.span ( \ x -> isAlphaNum x || x == '_' ) cs
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= if this `HashSet.member` keywords
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then ( Keyword this : ) <$> tokenise rest
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else ( Identifier this : ) <$> tokenise rest
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| isDigit c
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, let
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this, rest :: Text
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( this, rest ) = continuePastExponent $ first ( c `Text.cons` ) $ Text.span ( \ x -> isAlphaNum x || x == '.' ) cs
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= case parseMaybe @() parseNumber this of
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Just numTok -> ( numTok : ) <$> tokenise rest
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Nothing -> Left ( Couldn'tParseNumber { problem = this } )
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| c == '\''
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, Just ( '\'', rest ) <- Text.uncons ( Text.drop 1 cs )
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= ( Char ( Text.head cs ) : ) <$> tokenise rest
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| c == '\"'
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, let
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this, rest :: Text
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( this, rest ) = second Text.tail $ Text.break ( == '"') cs
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= ( String this : ) <$> tokenise rest
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| c == '#'
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, let
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directive, line, rest :: Text
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( directive, ( line, rest ) )
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= cs
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& Text.break ( isSpace )
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& second ( Text.break ( `elem` [ '\n', '\r' ] ) )
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= do
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lineTokens <- tokenise line
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restTokens <- tokenise rest
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pure ( ( BeginCPP directive : lineTokens ) <> ( EndCPPLine : restTokens ) )
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| c `HashSet.member` reservedSymbols
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= ( ReservedSymbol c : ) <$> tokenise cs
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| c == '/'
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= case Text.take 1 cs of
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"/" ->
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let
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comm, rest :: Text
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( comm, rest ) = first Text.strip $ Text.break ( `elem` [ '\n', '\r' ] ) ( Text.drop 1 cs )
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in ( Comment comm : ) <$> tokenise rest
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"*" ->
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let
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comm, rest :: Text
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( comm, rest ) = Text.breakOn "*/" ( Text.drop 1 cs )
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in ( Comment comm : ) <$> tokenise rest
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_ ->
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let
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this, rest :: Text
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( this, rest ) = first ( c `Text.cons` ) $ Text.span ( \ x -> x /= '_' && ( isSymbol x || isPunctuation x ) ) cs
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in ( Symbolic this : ) <$> tokenise rest
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| isSymbol c || isPunctuation c
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, let
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this, rest :: Text
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( this, rest ) = first ( c `Text.cons` ) $ Text.span ( \ x -> x /= '_' && ( isSymbol x || isPunctuation x ) ) cs
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= ( Symbolic this : ) <$> tokenise rest
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| otherwise
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= Left $ UnhandledCase { unhandled = ( c, cs ) }
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tokenise _ = Right []
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continuePastExponent :: ( Text, Text ) -> ( Text, Text )
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continuePastExponent ( this, rest )
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| toLower ( Text.last this ) `elem` [ 'e', 'p' ]
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, Just ( r, rs ) <- Text.uncons rest
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, r `elem` [ '+', '-' ]
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, ( this', rest' ) <- Text.span isAlphaNum rs
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= ( this `Text.snoc` r <> this', rest' )
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| otherwise
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= ( this, rest )
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parseNumber :: MonadParsec e Text m => m Tok
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parseNumber = try ( chunk "0.f" $> Number 0 "f" ) <|> do
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value <- try ( chunk "0x" *> hexadecimal ) <|> scientific
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mbSuffix <- fmap ( maybe "" Text.pack ) . optional . some $ satisfy ( \ s -> toLower s `elem` ( "uflz" :: String ) )
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pure ( Number value mbSuffix )
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