Make the analysis parallel #2
@ -41,6 +41,7 @@ library
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, vector
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, containers
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, filepath
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, parallel
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hs-source-dirs: src
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default-language: Haskell2010
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ghc-options: -Wall
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@ -55,7 +56,7 @@ executable addressbook
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, text
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hs-source-dirs: app
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default-language: Haskell2010
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ghc-options: -Wall -threaded
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ghc-options: -Wall -threaded -eventlog
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test-suite addressbook-test
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import: deps
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@ -1,7 +1,7 @@
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{ mkDerivation, attoparsec, base, bytestring, conduit
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, conduit-extra, containers, criterion, filepath, hedgehog
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, hedgehog-corpus, HUnit, lens, lib, mtl, optparse-applicative
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, tasty, tasty-hedgehog, tasty-hunit, text, vector
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, parallel, tasty, tasty-hedgehog, tasty-hunit, text, vector
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}:
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mkDerivation {
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pname = "addressbook";
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@ -11,10 +11,11 @@ mkDerivation {
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isExecutable = true;
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libraryHaskellDepends = [
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attoparsec base bytestring conduit conduit-extra containers
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filepath lens mtl text vector
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filepath lens mtl parallel text vector
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];
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executableHaskellDepends = [
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base criterion hedgehog-corpus optparse-applicative text
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base bytestring containers criterion hedgehog-corpus
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optparse-applicative text
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];
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testHaskellDepends = [
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base bytestring conduit conduit-extra containers hedgehog
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@ -1,23 +1,18 @@
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module Control.Addressbook.Streaming where
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import qualified Data.Text as T
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import Conduit
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import qualified Data.Conduit.Binary as CB
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import qualified Data.Conduit.Combinators as C
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import qualified Data.Conduit.List as CL
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import qualified Data.Conduit.Text as CT
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import Data.Email
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import Data.Email.Header
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(Header(..))
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import System.IO
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(stdin)
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import qualified Data.Foldable as F
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import qualified Data.Map.Strict as Map
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import Data.Maybe
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(fromMaybe)
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@ -25,28 +20,47 @@ import System.Environment
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(lookupEnv)
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import System.FilePath
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((</>))
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import Data.Set (Set)
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import Data.ByteString (ByteString)
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import qualified Data.Set as Set
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import qualified Data.ByteString.Lazy as LBS
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import Data.Char (ord)
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import qualified Data.ByteString.Lazy.Char8 as LBC
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import System.IO.Unsafe (unsafeInterleaveIO)
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import Control.Parallel.Strategies (rseq, parMap)
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import qualified Data.List as L
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combine :: (MonadUnliftIO m, MonadResource m, MonadThrow m, MonadIO m) => ConduitM FilePath Header m ()
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combine = await >>= \case
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Nothing -> pure ()
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Just path -> (CB.sourceFile path .| parseEmail) >> combine
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chunks :: Int -> [a] -> [[a]]
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chunks n = L.unfoldr $ \case
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[] -> Nothing
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xs -> Just (splitAt n xs)
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run :: IO ()
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run = do
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datDir <- fromMaybe "./" <$> lookupEnv "HOME"
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runResourceT $ do
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x <- runConduit stream
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runConduit (CL.sourceList (Map.keys x) .| C.map (<> "\n") .| CB.sinkFileCautious (datDir </> ".addressbook.dat"))
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xs <- LBS.getContents >>= stream
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let set = F.fold (parMap rseq F.fold (chunks 20 xs))
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runResourceT $
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runConduit $
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CL.sourceList (Set.elems set)
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.| C.map (<> "\n")
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.| CB.sinkFileCautious (datDir </> ".addressbook.dat")
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where
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separate = \case
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From x -> [x]
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To xs -> F.toList xs
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-- A set of (locally) unique addresses. Composes with parMap
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stream :: LBS.ByteString -> IO [Set ByteString]
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stream =
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CB.sourceHandle stdin
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.| CT.decode CT.utf8
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.| CT.lines
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.| C.map T.unpack
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.| combine
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.| C.concatMap separate
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.| CT.encode CT.utf8
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.| C.foldMap (`Map.singleton` ())
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traverse (unsafeInterleaveIO . parse . LBC.unpack)
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. filter (not . LBS.null)
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. LBS.split (fromIntegral $ ord '\n')
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parse path =
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runResourceT $
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runConduit $
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CB.sourceFile path .| parseEmail .| C.concatMap separate .| C.foldMap Set.singleton
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@ -5,12 +5,9 @@ import Data.Email.Header
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import Conduit
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import qualified Data.Conduit.Combinators as C
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import qualified Data.Conduit.Text as CT
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import Data.ByteString
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(ByteString)
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parseEmail :: (MonadUnliftIO m, MonadThrow m, Monad m) => ConduitM ByteString Header m ()
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parseEmail = catchC (CT.decode CT.utf8) err .| CT.lines .| C.concatMap decode
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where
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err e = liftIO (print @CT.TextException e) >> yield ""
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parseEmail = C.linesUnboundedAscii .| C.concatMap decode
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@ -1,29 +1,25 @@
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{-# LANGUAGE OverloadedStrings #-}
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module Data.Email.Header where
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import Data.Text
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(Text)
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import qualified Data.Text as T
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import qualified Data.Foldable as F
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import Data.Attoparsec.Text
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import Data.Attoparsec.ByteString.Char8
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import Data.Vector
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(Vector)
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import qualified Data.Vector as V
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import Data.Char
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(isSpace)
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import Control.Applicative
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((<|>))
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import Data.ByteString (ByteString)
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import qualified Data.ByteString.Char8 as BC
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data Header
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= From !Text
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| To !(Vector Text)
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= From !ByteString
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| To !(Vector ByteString)
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deriving (Show, Eq)
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decode :: Text -> Either String Header
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decode :: ByteString -> Either String Header
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decode = parseOnly parseHeader
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where
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parseHeader :: Parser Header
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@ -33,23 +29,23 @@ decode = parseOnly parseHeader
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parseTo :: Parser Header
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parseTo = To <$> (string "To:" *> emptySpace *> emails)
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emptySpace = many' space
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emails :: Parser (Vector Text)
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emails :: Parser (Vector ByteString)
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emails = V.fromList <$> (bracketEmail <|> email) `sepBy` char ','
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bracketEmail :: Parser Text
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bracketEmail :: Parser ByteString
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bracketEmail = do
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_ <- manyTill anyChar (char '<')
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email
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email :: Parser Text
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email :: Parser ByteString
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email = do
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_ <- many' space
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name <- T.pack <$> many' (satisfy (\c -> not (isSpace c) && c /= '@'))
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name <- BC.pack <$> many' (satisfy (\c -> not (isSpace c) && c /= '@'))
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_ <- char '@'
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rest <- T.pack <$> many' (satisfy (\c -> not (isSpace c) && c /= ',' && c /= '>'))
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rest <- BC.pack <$> many' (satisfy (\c -> not (isSpace c) && c /= ',' && c /= '>'))
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_ <- many' (notChar ',')
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pure (name <> "@" <> rest)
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encode :: Header -> Text
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encode :: Header -> ByteString
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encode = \case
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From addr -> "From: " <> addr
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To addrs -> "To: " <> T.intercalate ", " (F.toList addrs)
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To addrs -> "To: " <> BC.intercalate ", " (F.toList addrs)
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|
@ -10,11 +10,12 @@ import qualified Hedgehog.Corpus as Corpus
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import qualified Hedgehog.Gen as Gen
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import qualified Hedgehog.Range as Range
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|
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import Data.Text
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import qualified Data.Text as T
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import Data.ByteString
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import qualified Data.ByteString as T
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import qualified Data.Vector as V
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|
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import Data.Email.Header
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import qualified Data.ByteString.Char8 as BC
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genHeader :: Gen Header
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genHeader = Gen.choice
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@ -22,17 +23,17 @@ genHeader = Gen.choice
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, To . V.fromList <$> Gen.list (Range.linear 0 10) genEmail
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]
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|
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genEmail :: Gen Text
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genEmail :: Gen ByteString
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genEmail = do
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name <- Gen.element Corpus.simpsons
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domain <- Gen.element Corpus.cooking
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tld <- Gen.element ["com","fi","org"]
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pure $ name <> "@" <> domain <> "." <> tld
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wrapped :: Char -> Text -> Char -> Text
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wrapped l x r = T.singleton l <> x <> T.singleton r
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wrapped :: Char -> ByteString -> Char -> ByteString
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wrapped l x r = BC.singleton l <> x <> BC.singleton r
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|
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genComment :: Gen Text
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genComment :: Gen ByteString
|
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genComment = do
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x <- Gen.element Corpus.simpsons
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Gen.element [x, wrapped '"' x '"']
|
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|
Loading…
Reference in New Issue
Block a user