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|
{-# LANGUAGE OverloadedStrings #-}
module MdBlocks.Parser
( parseFile
)
where
import qualified Data.Text as T
import Data.Text (Text)
import MdBlocks.Metadata
import MdBlocks.Types
data State
= Normal
| InFence FenceState
| InIndented IndentedState
data FenceState = FenceState
{ fsStartLine :: !Int
, fsFenceTok :: !Text
, fsHeader :: !Text
, fsLines :: [Text]
}
data IndentedState = IndentedState
{ isStartLine :: !Int
, isLines :: [Text]
}
data ParseState = ParseState
{ psFile :: FilePath
, psMode :: State
, psBlocks :: [Block]
}
parseFile
:: FilePath
-> Text
-> [Block]
parseFile fp txt =
assignNumbers
$ finalize
$ foldl step initial numbered
where
numbered =
zip [1..] (T.lines txt)
initial =
ParseState
{ psFile = fp
, psMode = Normal
, psBlocks = []
}
assignNumbers :: [Block] -> [Block]
assignNumbers =
zipWith
(\n b -> b { blockNumber = n })
[1..]
isIndented :: Text -> Bool
isIndented =
(" " `T.isPrefixOf`)
stripIndent :: Text -> Text
stripIndent =
T.drop 4
fenceStart :: Text -> Maybe (Text, Text)
fenceStart line =
let s = T.stripStart line
in if "```" `T.isPrefixOf` s
then Just ("```", T.drop 3 s)
else Nothing
fenceEnd :: Text -> Text -> Bool
fenceEnd marker line =
marker `T.isPrefixOf`
T.stripStart line
step
:: ParseState
-> (Int, Text)
-> ParseState
step st@(ParseState _ Normal _) (ln,txt)
| Just (marker,hdr) <- fenceStart txt =
st
{ psMode =
InFence
FenceState
{ fsStartLine = ln
, fsFenceTok = marker
, fsHeader = T.strip hdr
, fsLines = []
}
}
| isIndented txt =
st
{ psMode =
InIndented
IndentedState
{ isStartLine = ln
, isLines =
[stripIndent txt]
}
}
| otherwise =
st
step st@(ParseState fp (InFence fs) acc) (ln,txt)
| fenceEnd (fsFenceTok fs) txt =
st
{ psMode = Normal
, psBlocks =
mkFenceBlock fp fs ln
: acc
}
| otherwise =
st
{ psMode =
InFence
fs
{ fsLines =
txt : fsLines fs
}
}
step st@(ParseState fp (InIndented is) acc) current@(ln,txt)
| isIndented txt =
st
{ psMode =
InIndented
is
{ isLines =
stripIndent txt
: isLines is
}
}
| otherwise =
let block =
mkIndentedBlock
fp
is
(ln - 1)
reset =
st
{ psMode = Normal
, psBlocks = block : acc
}
in step reset current
finalize :: ParseState -> [Block]
finalize (ParseState _ Normal xs) =
reverse xs
finalize (ParseState fp (InFence fs) xs) =
reverse
( mkFenceBlock fp fs (fsStartLine fs)
: xs
)
finalize (ParseState fp (InIndented is) xs) =
reverse
( mkIndentedBlock fp is (isStartLine is)
: xs
)
mkFenceBlock
:: FilePath
-> FenceState
-> Int
-> Block
mkFenceBlock fp fs endLine =
Block
{ blockFile = fp
, blockNumber = 0
, blockKind = Fenced
, blockMeta = meta
, blockStart = fsStartLine fs
, blockEnd = endLine
, blockContent = body
}
where
body =
T.unlines
(reverse (fsLines fs))
meta =
parseMetadataLine
("@" <> fsHeader fs)
mkIndentedBlock
:: FilePath
-> IndentedState
-> Int
-> Block
mkIndentedBlock fp is endLine =
Block
{ blockFile = fp
, blockNumber = 0
, blockKind = Indented
, blockMeta = meta
, blockStart = isStartLine is
, blockEnd = endLine
, blockContent = code
}
where
raw =
T.unlines
(reverse (isLines is))
(meta, code) =
splitIndentedMetadata raw
splitIndentedMetadata
:: Text
-> (Metadata, Text)
splitIndentedMetadata txt =
case T.lines txt of
[] ->
(emptyMetadata, "")
firstLine : rest
| "@" `T.isPrefixOf` firstLine ->
( parseMetadataLine firstLine
, T.unlines rest
)
| otherwise ->
( emptyMetadata
, txt
)
|