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101 lines
3.5 KiB
Haskell
101 lines
3.5 KiB
Haskell
{-# LANGUAGE NamedFieldPuns #-}
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module VerifyParseTerminfoCaps where
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import Prelude hiding ( catch )
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import qualified System.Console.Terminfo as Terminfo
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import Verify.Data.Terminfo.Parse
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import Verify.Graphics.Vty.Output
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import Verify
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import Data.Maybe ( catMaybes, fromJust )
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import Data.Word
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import Numeric
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-- If a terminal defines one of the caps then it's expected to be parsable.
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-- TODO: reduce duplication with terminfo terminal implementation.
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capsOfInterest =
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[ "cup"
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, "sc"
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, "rc"
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, "setf"
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, "setb"
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, "setaf"
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, "setab"
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, "op"
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, "cnorm"
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, "civis"
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, "smcup"
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, "rmcup"
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, "clear"
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, "hpa"
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, "vpa"
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, "sgr"
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, "sgr0"
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]
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fromCapname ti name = fromJust $ Terminfo.getCapability ti (Terminfo.tiGetStr name)
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tests :: IO [Test]
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tests = do
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parseTests <- concat <$> forM terminalsOfInterest (\termName ->
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liftIO (try $ Terminfo.setupTerm termName)
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>>= either (\(_e :: SomeException) -> return [])
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(\ti -> concat <$> forM capsOfInterest (\capName -> do
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let caseName = "\tparsing cap: " ++ capName
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liftIO $ putStrLn caseName
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return $ case Terminfo.getCapability ti (Terminfo.tiGetStr capName) of
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Just capDef -> [verify (caseName ++ " -> " ++ show capDef)
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(verifyParseCap capDef $ const succeeded)]
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Nothing -> []
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)
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)
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)
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return $ [ verify "parse_nonParamaterizedCaps" nonParamaterizedCaps
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, verify "parse cap string with literal %" literalPercentCaps
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, verify "parse cap string with %i op" incFirstTwoCaps
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, verify "parse cap string with %pN op" pushParamCaps
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] ++ parseTests
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verifyParseCap capString onParse =
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case parseCapExpression capString of
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Left error -> failed { reason = "parse error " ++ show error }
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Right e -> onParse e
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nonParamaterizedCaps (NonParamCapString cap) = do
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verifyParseCap cap $ \e ->
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let expectedBytes = map (toEnum . fromEnum) cap
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outBytes = bytesForRange e 0 (length cap)
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in verifyBytesEqual outBytes expectedBytes
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literalPercentCaps (LiteralPercentCap capString expectedBytes) = do
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verifyParseCap capString $ \e -> verifyBytesEqual (collectBytes e) expectedBytes
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incFirstTwoCaps (IncFirstTwoCap capString expectedBytes) = do
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verifyParseCap capString $ \e -> verifyBytesEqual (collectBytes e) expectedBytes
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pushParamCaps (PushParamCap capString expectedParamCount expectedBytes) = do
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verifyParseCap capString $ \e ->
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let outBytes = collectBytes e
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outParamCount = paramCount e
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in if outParamCount == expectedParamCount
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then verifyBytesEqual outBytes expectedBytes
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else failed { reason = "out param count /= expected param count" }
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decPrintParamCaps (DecPrintCap capString expectedParamCount expectedBytes) = do
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verifyParseCap capString $ \e ->
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let outBytes = collectBytes e
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outParamCount = paramCount e
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in if outParamCount == expectedParamCount
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then verifyBytesEqual outBytes expectedBytes
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else failed { reason = "out param count /= expected param count" }
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printCap ti capName = do
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putStrLn $ capName ++ ": " ++ show (fromCapname ti capName)
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printExpression ti capName = do
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let parseResult = parseCapExpression $ fromCapname ti capName
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putStrLn $ capName ++ ": " ++ show parseResult
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