613 lines
22 KiB
Haskell
613 lines
22 KiB
Haskell
{-# LANGUAGE DataKinds #-}
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{-# LANGUAGE FlexibleContexts #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE TypeApplications #-}
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{-# LANGUAGE RankNTypes #-}
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{-# LANGUAGE MultiWayIf #-}
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module AnsiMain where
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import GHCup
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import GHCup.Download
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import GHCup.Errors
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import GHCup.Prelude ( decUTF8Safe )
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import GHCup.Prelude.File
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import GHCup.Prelude.Logger
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import GHCup.Prelude.Process
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import GHCup.Prompts
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import GHCup.Types hiding ( LeanAppState(..) )
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import GHCup.Types.Optics ( getDirs )
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import GHCup.Utils
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import Data.List (sort, intersperse)
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import Data.Versions (prettyPVP)
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import Data.Maybe (catMaybes)
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import Codec.Archive
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import Control.Monad.IO.Class
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import Control.Monad.Trans.Except
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-- import System.Console.ANSI
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import System.Console.ANSI
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import System.Console.ANSI.Codes
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import System.Console.ANSI.Types
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import Terminal.Game
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import Text.PrettyPrint.HughesPJClass ( prettyShow )
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import Control.Exception.Safe
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import Control.Monad ( join, when, void, forM_ )
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import Control.Monad.ST
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import Control.Monad.Reader ( ReaderT(runReaderT), MonadReader, ask, lift )
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import Control.Monad.Trans.Except
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import Control.Monad.Trans.Resource
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import Data.Functor
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import Data.Bifunctor
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import Data.STRef
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import Data.IORef
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import Data.Maybe ( fromMaybe )
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import qualified Data.Text as Tx
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import qualified Data.Tuple as T
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import qualified Data.Vector as V
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import GHC.IO ( unsafePerformIO )
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import Haskus.Utils.Variant.Excepts
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import System.Exit
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import System.Environment (getExecutablePath)
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import Data.Versions (prettyVer)
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import qualified Data.Text as T
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import qualified Data.Text.Lazy.Builder as B
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import qualified Data.Text.Lazy as L
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import System.FilePath
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import URI.ByteString (serializeURIRef')
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data Direction = Up
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| Down
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deriving (Show, Eq)
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data BrickData = BrickData
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{ lr :: [ListResult]
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}
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deriving Show
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data BrickSettings = BrickSettings
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{ showAllVersions :: Bool
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, showAllTools :: Bool
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}
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deriving Show
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data BrickInternalState = BrickInternalState
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{ clr :: V.Vector ListResult
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, ix :: Int
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}
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deriving Show
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data BrickState = BrickState
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{ appData :: BrickData
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, appSettings :: BrickSettings
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, appState :: BrickInternalState
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, appKeys :: KeyBindings
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, appQuit :: Bool
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, appRestart :: Bool
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, appMoreInput :: Maybe String
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}
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deriving Show
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startGame :: BrickState -> IO BrickState
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startGame g = do
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g'@BrickState { appRestart } <- errorPress $ playGameT liftIO (ghcupGame g)
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if appRestart
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then do
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putStrLn "Press enter to continue"
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_ <- getLine
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startGame $ g' { appRestart = False }
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else pure g'
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ansiMain :: AppState -> IO ()
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ansiMain s = do
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writeIORef settings' s
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eAppData <- getAppData (Just $ ghcupInfo s)
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case eAppData of
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Right ad -> do
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let g = BrickState ad
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defaultAppSettings
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(constructList ad defaultAppSettings Nothing)
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(keyBindings (s :: AppState))
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False
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False
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Nothing
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void $ startGame g
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cleanAndExit
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Left e -> do
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flip runReaderT s $ logError $ "Error building app state: " <> Tx.pack
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(show e)
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exitWith $ ExitFailure 2
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where
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sizeCheck :: IO ()
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sizeCheck = let (w, h) = T.swap . snd $ boundaries in assertTermDims w h
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ghcupGame :: BrickState -> Game BrickState
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ghcupGame bs = Game 13
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bs -- ticks per second
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(\ge s e -> logicFun ge s e) -- logic function
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(\r s -> centerFull r $ drawFun s r) -- draw function
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(\bs -> appQuit bs || appRestart bs) -- quit function
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drawFun :: BrickState -> GEnv -> Plane
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drawFun (BrickState {..}) GEnv{..} =
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blankPlane mw mh
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& (1, 1) % box 1 1 '┌'
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& (2, 1) % box 1 (mh - 3) '│'
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& (1, 2) % box (mw - 2) 1 '─'
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& (2, mw) % box 1 (mh - 3) '│'
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& (1, mw) % box 1 1 '┐'
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& (mh-1, 2) % box (mw - 2) 1 '─'
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& (mh-1, 1) % box 1 1 '└'
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& (mh-1, mw) % box 1 1 '┘'
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& (2, 2) % box (mw - 2) (mh - 3) ' '
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& (2, 2) % (header === box (mw - 2) 1 '─' === renderItems)
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& (mh, 1) % footer
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& (1, mw `div` 2 - 2) % stringPlane "GHCup"
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where
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mh :: Height
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mw :: Width
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(mh, mw) = T.swap eTermDims
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footer = hcat
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. intersperse (stringPlane " ")
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. fmap stringPlane
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$ ["q:Quit", "i:Install", "u:Uninstall", "s:Set", "c:Changelog", "a:all versions", "↑:Up", "↓:Down"]
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header = hcat
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. intersperse space
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. fmap stringPlane
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$ ["Tool", "Version", "Tags", "Notes"]
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renderItems = drawListElements renderItem True appState
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renderItem _ b listResult@ListResult{..} =
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let marks = if
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| lSet -> color Green Vivid (stringPlane "✔✔")
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| lInstalled -> color Green Dull (stringPlane "✓ ")
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| otherwise -> color Red Vivid (stringPlane "✗ ")
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ver = case lCross of
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Nothing -> stringPlane . Tx.unpack . prettyVer $ lVer
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Just c -> stringPlane . Tx.unpack $ (c <> "-" <> prettyVer lVer)
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tool = printTool lTool
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tag = let l = catMaybes . fmap printTag $ sort lTag
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in if null l then blankPlane 1 1 else foldr1 (\x y -> x ||| stringPlane "," ||| y) l
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notes = let n = printNotes listResult
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in if null n
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then blankPlane 1 1
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else foldr1 (\x y -> x ||| stringPlane "," ||| y) n
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in hcat [marks, space, space, tool, space, ver, space, tag, space, notes]
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printTag Recommended = Just $ color Green Dull $ stringPlane "recommended"
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printTag Latest = Just $ color Yellow Dull $ stringPlane "latest"
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printTag Prerelease = Just $ color Red Dull $ stringPlane "prerelease"
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printTag (Base pvp'') = Just $ stringPlane ("base-" ++ T.unpack (prettyPVP pvp''))
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printTag Old = Nothing
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printTag (UnknownTag t) = Just $ stringPlane t
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printTool Cabal = stringPlane "cabal"
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printTool GHC = stringPlane "GHC"
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printTool GHCup = stringPlane "GHCup"
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printTool HLS = stringPlane "HLS"
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printTool Stack = stringPlane "Stack"
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printNotes ListResult {..} =
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(if hlsPowered then [color Green Dull $ stringPlane "hls-powered"] else mempty
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)
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++ (if fromSrc then [color Blue Dull $ stringPlane "compiled"] else mempty)
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++ (if lStray then [color Blue Dull $ stringPlane "stray"] else mempty)
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space = stringPlane " "
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-- | Draws the list elements.
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--
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-- Evaluates the underlying container up to, and a bit beyond, the
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-- selected element. The exact amount depends on available height
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-- for drawing and 'listItemHeight'. At most, it will evaluate up to
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-- element @(i + h + 1)@ where @i@ is the selected index and @h@ is the
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-- available height.
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drawListElements :: (Int -> Bool -> ListResult -> Plane)
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-> Bool
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-> BrickInternalState
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-> Plane
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drawListElements drawElem foc is@(BrickInternalState clr _) =
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let es = clr
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listSelected = fmap fst $ listSelectedElement' is
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(drawnElements, selIx) = runST $ do
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ref <- newSTRef (Nothing :: Maybe Int)
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elem' <- newSTRef 0
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arr <- fmap join $ flip V.imapM es $ \i' e -> do
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let isSelected = Just i' == listSelected
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elemWidget = drawElem i' isSelected e
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selItemAttr = if foc
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then listSelectedFocusedAttr
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else listSelectedAttr
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markSelected = if isSelected then selItemAttr else id
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case es V.!? (i' - 1) of
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Just e' | lTool e' /= lTool e -> do
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modifySTRef elem' (+2)
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i <- readSTRef elem'
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when isSelected $ writeSTRef ref (Just i)
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pure $ V.fromList [hBorder, markSelected elemWidget] -- add separator
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_ -> do
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modifySTRef elem' (+1)
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i <- readSTRef elem'
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when isSelected $ writeSTRef ref (Just i)
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pure $ V.fromList [markSelected elemWidget]
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i <- readSTRef ref
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pure (arr, i)
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in vcat $ V.toList (makeVisible drawnElements (mh - 5) selIx)
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where
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makeVisible :: V.Vector Plane -> Height -> Maybe Int -> V.Vector Plane
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makeVisible listElements drawableHeight (Just ix) =
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let listHeight = V.length listElements
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in if | listHeight <= 0 -> listElements
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| listHeight > drawableHeight ->
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if | ix <= drawableHeight -> makeVisible (V.init listElements) drawableHeight (Just ix)
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| otherwise -> makeVisible (V.tail listElements) drawableHeight (Just (ix - 1))
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| otherwise -> listElements
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makeVisible listElements _ Nothing = listElements
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listSelectedFocusedAttr = invert
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listSelectedAttr = invert
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hBorder = box (mw - 2) 1 '─'
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logicFun :: GEnv -> BrickState -> Event -> IO BrickState
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logicFun _ gs (KeyPress 'q') = pure gs { appQuit = True }
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logicFun _ gs Tick = pure gs
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logicFun _ gs@BrickState{appMoreInput = Nothing} (KeyPress '\ESC') = pure gs { appMoreInput = Just "\ESC" }
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logicFun _ gs@BrickState{appMoreInput = Just "\ESC"} (KeyPress '[') = pure gs { appMoreInput = Just "\ESC[" }
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logicFun _ gs@BrickState{appMoreInput = Just "\ESC[", appState = s'} (KeyPress 'A')
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= pure gs { appMoreInput = Nothing, appState = moveCursor 1 s' Up }
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logicFun _ gs@BrickState{appMoreInput = Just "\ESC[", appState = s'} (KeyPress 'B')
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= pure gs { appMoreInput = Nothing, appState = moveCursor 1 s' Down }
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logicFun _ gs@BrickState{appMoreInput = Just _} _ = pure gs { appMoreInput = Nothing }
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logicFun _ gs (KeyPress 'i') = do
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bs <- withIOAction install' gs
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pure bs { appRestart = True }
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logicFun _ gs (KeyPress 'u') = do
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bs <- withIOAction del' gs
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pure bs { appRestart = True }
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logicFun _ gs (KeyPress 's') = do
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bs <- withIOAction set' gs
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pure bs { appRestart = True }
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logicFun _ gs (KeyPress 'c') = do
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bs <- withIOAction changelog' gs
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pure bs { appRestart = True }
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logicFun _ gs (KeyPress 'a') = pure $ hideShowHandler (not . showAllVersions) showAllTools gs
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where
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hideShowHandler :: (BrickSettings -> Bool) -> (BrickSettings -> Bool) -> BrickState -> BrickState
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hideShowHandler f p BrickState{..} =
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let newAppSettings = appSettings { showAllVersions = f appSettings , showAllTools = p appSettings }
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newInternalState = constructList appData newAppSettings (Just appState)
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in BrickState appData newAppSettings newInternalState appKeys appQuit appRestart appMoreInput
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logicFun _ gs (KeyPress c) = pure gs
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withIOAction :: (BrickState
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-> (Int, ListResult)
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-> ReaderT AppState IO (Either String a))
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-> BrickState
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-> IO BrickState
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withIOAction action as = case listSelectedElement' (appState as) of
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Nothing -> pure as
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Just (ix, e) -> do
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clearScreen
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settings <- readIORef settings'
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flip runReaderT settings $ action as (ix, e) >>= \case
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Left err -> liftIO $ putStrLn ("Error: " <> err)
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Right _ -> liftIO $ putStrLn "Success"
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getAppData Nothing >>= \case
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Right data' -> do
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pure (updateList data' as)
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Left err -> throwIO $ userError err
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moveCursor :: Int -> BrickInternalState -> Direction -> BrickInternalState
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moveCursor steps ais@BrickInternalState{..} direction =
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let newIx = if direction == Down then ix + steps else ix - steps
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in case clr V.!? newIx of
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Just _ -> BrickInternalState { ix = newIx, .. }
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Nothing -> ais
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defaultAppSettings :: BrickSettings
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defaultAppSettings =
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BrickSettings { showAllVersions = False, showAllTools = False }
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-- | Update app data and list internal state based on new evidence.
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-- This synchronises @BrickInternalState@ with @BrickData@
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-- and @BrickSettings@.
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updateList :: BrickData -> BrickState -> BrickState
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updateList appD BrickState{..} =
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let newInternalState = constructList appD appSettings (Just appState)
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in BrickState { appState = newInternalState
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, appData = appD
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, appSettings = appSettings
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, appKeys = appKeys
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, appQuit = appQuit
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, appRestart = appRestart
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, appMoreInput = appMoreInput
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}
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constructList
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:: BrickData
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-> BrickSettings
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-> Maybe BrickInternalState
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-> BrickInternalState
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constructList appD appSettings = replaceLR
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(filterVisible (showAllVersions appSettings) (showAllTools appSettings))
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(lr appD)
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-- | Replace the @appState@ or construct it based on a filter function
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-- and a new @[ListResult]@ evidence.
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-- When passed an existing @appState@, tries to keep the selected element.
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replaceLR
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:: (ListResult -> Bool)
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-> [ListResult]
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-> Maybe BrickInternalState
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-> BrickInternalState
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replaceLR filterF lr s =
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let oldElem = s >>= listSelectedElement'
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newVec = V.fromList . filter filterF $ lr
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newSelected =
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case oldElem >>= \(_, oldE) -> V.findIndex (toolEqual oldE) newVec of
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Just ix -> ix
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Nothing -> selectLatest newVec
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in BrickInternalState newVec newSelected
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where
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toolEqual e1 e2 =
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lTool e1 == lTool e2 && lVer e1 == lVer e2 && lCross e1 == lCross e2
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filterVisible :: Bool -> Bool -> ListResult -> Bool
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filterVisible v t e
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| lInstalled e = True
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| v, not t, lTool e `notElem` hiddenTools = True
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| not v, t, Old `notElem` lTag e = True
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| v, t = True
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| otherwise = (Old `notElem` lTag e) && (lTool e `notElem` hiddenTools)
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hiddenTools :: [Tool]
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hiddenTools = []
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selectLatest :: V.Vector ListResult -> Int
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selectLatest = fromMaybe 0
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. V.findIndex (\ListResult {..} -> lTool == GHC && Latest `elem` lTag)
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listSelectedElement' :: BrickInternalState -> Maybe (Int, ListResult)
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listSelectedElement' BrickInternalState {..} = fmap (ix, ) $ clr V.!? ix
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boundaries :: (Coords, Coords)
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boundaries = ((1, 1), (24, 80))
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install' :: (MonadReader AppState m, MonadIO m, MonadThrow m, MonadFail m, MonadMask m, MonadUnliftIO m)
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=> BrickState
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-> (Int, ListResult)
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-> m (Either String ())
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install' _ (_, ListResult {..}) = do
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AppState { ghcupInfo = GHCupInfo { _ghcupDownloads = dls }} <- ask
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let run =
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runResourceT
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. runE
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@'[ AlreadyInstalled
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, ArchiveResult
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, UnknownArchive
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, FileDoesNotExistError
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, CopyError
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, NoDownload
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, NotInstalled
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, BuildFailed
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, TagNotFound
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, DigestError
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, GPGError
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, DownloadFailed
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, DirNotEmpty
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, NoUpdate
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, TarDirDoesNotExist
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, FileAlreadyExistsError
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, ProcessError
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, ToolShadowed
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, UninstallFailed
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, MergeFileTreeError
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]
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run (do
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ce <- liftIO $ fmap (either (const Nothing) Just) $
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try @_ @SomeException $ getExecutablePath >>= canonicalizePath
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dirs <- lift getDirs
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case lTool of
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GHC -> do
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let vi = getVersionInfo lVer GHC dls
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liftE $ installGHCBin lVer GHCupInternal False [] $> (vi, dirs, ce)
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Cabal -> do
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let vi = getVersionInfo lVer Cabal dls
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liftE $ installCabalBin lVer GHCupInternal False $> (vi, dirs, ce)
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GHCup -> do
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let vi = snd <$> getLatest dls GHCup
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liftE $ upgradeGHCup Nothing False False $> (vi, dirs, ce)
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HLS -> do
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let vi = getVersionInfo lVer HLS dls
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liftE $ installHLSBin lVer GHCupInternal False $> (vi, dirs, ce)
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Stack -> do
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let vi = getVersionInfo lVer Stack dls
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liftE $ installStackBin lVer GHCupInternal False $> (vi, dirs, ce)
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)
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>>= \case
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VRight (vi, Dirs{..}, Just ce) -> do
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forM_ (_viPostInstall =<< vi) $ \msg -> logInfo msg
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case lTool of
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GHCup -> do
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up <- liftIO $ fmap (either (const Nothing) Just)
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$ try @_ @SomeException $ canonicalizePath (binDir </> "ghcup" <.> exeExt)
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when ((normalise <$> up) == Just (normalise ce)) $
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-- TODO: track cli arguments of previous invocation
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void $ liftIO $ exec ce ["tui"] Nothing Nothing
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logInfo "Please restart 'ghcup' for the changes to take effect"
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_ -> pure ()
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pure $ Right ()
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VRight (vi, _, _) -> do
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forM_ (_viPostInstall =<< vi) $ \msg -> logInfo msg
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logInfo "Please restart 'ghcup' for the changes to take effect"
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pure $ Right ()
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VLeft (V (AlreadyInstalled _ _)) -> pure $ Right ()
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VLeft (V NoUpdate) -> pure $ Right ()
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VLeft e -> pure $ Left $ prettyShow e <> "\n"
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<> "Also check the logs in ~/.ghcup/logs"
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set' :: (MonadReader AppState m, MonadIO m, MonadThrow m, MonadFail m, MonadMask m, MonadUnliftIO m)
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=> BrickState
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-> (Int, ListResult)
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-> m (Either String ())
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set' bs input@(_, ListResult {..}) = do
|
|
settings <- liftIO $ readIORef settings'
|
|
|
|
let run =
|
|
flip runReaderT settings
|
|
. runE @'[FileDoesNotExistError , NotInstalled , TagNotFound]
|
|
|
|
run (do
|
|
case lTool of
|
|
GHC -> liftE $ setGHC (GHCTargetVersion lCross lVer) SetGHCOnly Nothing $> ()
|
|
Cabal -> liftE $ setCabal lVer $> ()
|
|
HLS -> liftE $ setHLS lVer SetHLSOnly Nothing $> ()
|
|
Stack -> liftE $ setStack lVer $> ()
|
|
GHCup -> pure ()
|
|
)
|
|
>>= \case
|
|
VRight _ -> pure $ Right ()
|
|
VLeft e -> case e of
|
|
(V (NotInstalled tool _)) -> do
|
|
promptAnswer <- getUserPromptResponse userPrompt
|
|
case promptAnswer of
|
|
PromptYes -> do
|
|
res <- install' bs input
|
|
case res of
|
|
(Left err) -> pure $ Left err
|
|
(Right _) -> do
|
|
logInfo "Setting now..."
|
|
set' bs input
|
|
|
|
PromptNo -> pure $ Left (prettyShow e)
|
|
where
|
|
userPrompt = L.toStrict . B.toLazyText . B.fromString $
|
|
"This Version of "
|
|
<> show tool
|
|
<> " you are trying to set is not installed.\n"
|
|
<> "Would you like to install it first? [Y/N]: "
|
|
|
|
_ -> pure $ Left (prettyShow e)
|
|
|
|
|
|
|
|
del' :: (MonadReader AppState m, MonadIO m, MonadFail m, MonadMask m, MonadUnliftIO m)
|
|
=> BrickState
|
|
-> (Int, ListResult)
|
|
-> m (Either String ())
|
|
del' _ (_, ListResult {..}) = do
|
|
AppState { ghcupInfo = GHCupInfo { _ghcupDownloads = dls }} <- ask
|
|
|
|
let run = runE @'[NotInstalled, UninstallFailed]
|
|
|
|
run (do
|
|
let vi = getVersionInfo lVer lTool dls
|
|
case lTool of
|
|
GHC -> liftE $ rmGHCVer (GHCTargetVersion lCross lVer) $> vi
|
|
Cabal -> liftE $ rmCabalVer lVer $> vi
|
|
HLS -> liftE $ rmHLSVer lVer $> vi
|
|
Stack -> liftE $ rmStackVer lVer $> vi
|
|
GHCup -> pure Nothing
|
|
)
|
|
>>= \case
|
|
VRight vi -> do
|
|
forM_ (_viPostRemove =<< vi) $ \msg ->
|
|
logInfo msg
|
|
pure $ Right ()
|
|
VLeft e -> pure $ Left (prettyShow e)
|
|
|
|
|
|
changelog' :: (MonadReader AppState m, MonadIO m)
|
|
=> BrickState
|
|
-> (Int, ListResult)
|
|
-> m (Either String ())
|
|
changelog' _ (_, ListResult {..}) = do
|
|
AppState { pfreq, ghcupInfo = GHCupInfo { _ghcupDownloads = dls }} <- ask
|
|
case getChangeLog dls lTool (Left lVer) of
|
|
Nothing -> pure $ Left $
|
|
"Could not find ChangeLog for " <> prettyShow lTool <> ", version " <> T.unpack (prettyVer lVer)
|
|
Just uri -> do
|
|
let cmd = case _rPlatform pfreq of
|
|
Darwin -> "open"
|
|
Linux _ -> "xdg-open"
|
|
FreeBSD -> "xdg-open"
|
|
Windows -> "start"
|
|
exec cmd [T.unpack $ decUTF8Safe $ serializeURIRef' uri] Nothing Nothing >>= \case
|
|
Right _ -> pure $ Right ()
|
|
Left e -> pure $ Left $ prettyShow e
|
|
|
|
|
|
settings' :: IORef AppState
|
|
{-# NOINLINE settings' #-}
|
|
settings' = unsafePerformIO $ do
|
|
dirs <- getAllDirs
|
|
let loggerConfig = LoggerConfig { lcPrintDebug = False
|
|
, consoleOutter = \_ -> pure ()
|
|
, fileOutter = \_ -> pure ()
|
|
, fancyColors = True
|
|
}
|
|
newIORef $ AppState defaultSettings
|
|
dirs
|
|
defaultKeyBindings
|
|
(GHCupInfo mempty mempty mempty)
|
|
(PlatformRequest A_64 Darwin Nothing)
|
|
loggerConfig
|
|
|
|
|
|
getAppData :: Maybe GHCupInfo -> IO (Either String BrickData)
|
|
getAppData mgi = runExceptT $ do
|
|
r <- ExceptT $ maybe getGHCupInfo (pure . Right) mgi
|
|
liftIO $ modifyIORef settings' (\s -> s { ghcupInfo = r })
|
|
settings <- liftIO $ readIORef settings'
|
|
|
|
flip runReaderT settings $ do
|
|
lV <- listVersions Nothing Nothing
|
|
pure $ BrickData (reverse lV)
|
|
|
|
|
|
getGHCupInfo :: IO (Either String GHCupInfo)
|
|
getGHCupInfo = do
|
|
settings <- readIORef settings'
|
|
|
|
r <-
|
|
flip runReaderT settings
|
|
. runE
|
|
@'[ DigestError
|
|
, GPGError
|
|
, JSONError
|
|
, DownloadFailed
|
|
, FileDoesNotExistError
|
|
]
|
|
$ liftE getDownloadsF
|
|
|
|
case r of
|
|
VRight a -> pure $ Right a
|
|
VLeft e -> pure $ Left (prettyShow e)
|
|
|
|
|