{-# LANGUAGE DeriveDataTypeable #-}
{-# LANGUAGE DeriveGeneric #-}
module Distribution.SPDX.LicenseReference (
    LicenseRef,
    licenseRef,
    licenseDocumentRef,
    mkLicenseRef,
    mkLicenseRef',
    ) where

import Prelude ()
import Distribution.Compat.Prelude

import Distribution.Utils.Generic (isAsciiAlphaNum)
import Distribution.Pretty
import Distribution.Parsec

import qualified Distribution.Compat.CharParsing as P
import qualified Text.PrettyPrint as Disp

-- | A user defined license reference denoted by @LicenseRef-[idstring]@ (for a license not on the SPDX License List);
data LicenseRef = LicenseRef
    { LicenseRef -> Maybe String
_lrDocument :: !(Maybe String)
    , LicenseRef -> String
_lrLicense  :: !String
    }
  deriving (Int -> LicenseRef -> ShowS
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-- | License reference.
licenseRef :: LicenseRef -> String
licenseRef :: LicenseRef -> String
licenseRef = LicenseRef -> String
_lrLicense

-- | Document reference.
licenseDocumentRef :: LicenseRef -> Maybe String
licenseDocumentRef :: LicenseRef -> Maybe String
licenseDocumentRef = LicenseRef -> Maybe String
_lrDocument

instance Binary LicenseRef
instance Structured LicenseRef

instance NFData LicenseRef where
    rnf :: LicenseRef -> ()
rnf (LicenseRef Maybe String
d String
l) = Maybe String -> ()
forall a. NFData a => a -> ()
rnf Maybe String
d () -> () -> ()
`seq` String -> ()
forall a. NFData a => a -> ()
rnf String
l

instance Pretty LicenseRef where
    pretty :: LicenseRef -> Doc
pretty (LicenseRef Maybe String
Nothing String
l) = String -> Doc
Disp.text String
"LicenseRef-" Doc -> Doc -> Doc
<<>> String -> Doc
Disp.text String
l
    pretty (LicenseRef (Just String
d) String
l) =
        String -> Doc
Disp.text String
"DocumentRef-" Doc -> Doc -> Doc
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Disp.text String
d Doc -> Doc -> Doc
<<>> Char -> Doc
Disp.char Char
':' Doc -> Doc -> Doc
<<>> String -> Doc
Disp.text String
"LicenseRef-" Doc -> Doc -> Doc
<<>> String -> Doc
Disp.text String
l

instance Parsec LicenseRef where
    parsec :: m LicenseRef
parsec = m LicenseRef
name m LicenseRef -> m LicenseRef -> m LicenseRef
forall (f :: * -> *) a. Alternative f => f a -> f a -> f a
<|> m LicenseRef
doc
      where
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name = do
            String
_ <- String -> m String
forall (m :: * -> *). CharParsing m => String -> m String
P.string String
"LicenseRef-"
            String
n <- m Char -> m String
forall (f :: * -> *) a. Alternative f => f a -> f [a]
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forall a b. (a -> b) -> a -> b
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'.'
            LicenseRef -> m LicenseRef
forall (f :: * -> *) a. Applicative f => a -> f a
pure (Maybe String -> String -> LicenseRef
LicenseRef Maybe String
forall a. Maybe a
Nothing String
n)

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forall (m :: * -> *). CharParsing m => String -> m String
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forall (f :: * -> *) a. Applicative f => a -> f a
pure (Maybe String -> String -> LicenseRef
LicenseRef (String -> Maybe String
forall a. a -> Maybe a
Just String
d) String
n)

-- | Create 'LicenseRef' from optional document ref and name.
mkLicenseRef :: Maybe String -> String -> Maybe LicenseRef
mkLicenseRef :: Maybe String -> String -> Maybe LicenseRef
mkLicenseRef Maybe String
d String
l = do
    Maybe String
d' <- (String -> Maybe String) -> Maybe String -> Maybe (Maybe String)
forall (t :: * -> *) (f :: * -> *) a b.
(Traversable t, Applicative f) =>
(a -> f b) -> t a -> f (t b)
traverse String -> Maybe String
forall (t :: * -> *). Foldable t => t Char -> Maybe (t Char)
checkIdString Maybe String
d
    String
l' <- String -> Maybe String
forall (t :: * -> *). Foldable t => t Char -> Maybe (t Char)
checkIdString String
l
    LicenseRef -> Maybe LicenseRef
forall (f :: * -> *) a. Applicative f => a -> f a
pure (Maybe String -> String -> LicenseRef
LicenseRef Maybe String
d' String
l')
  where
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s
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all (\Char
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s = t Char -> Maybe (t Char)
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s
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otherwise = Maybe (t Char)
forall a. Maybe a
Nothing

-- | Like 'mkLicenseRef' but convert invalid characters into @-@.
mkLicenseRef' :: Maybe String -> String -> LicenseRef
mkLicenseRef' :: Maybe String -> String -> LicenseRef
mkLicenseRef' Maybe String
d String
l = Maybe String -> String -> LicenseRef
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forall (f :: * -> *) a b. Functor f => (a -> b) -> f a -> f b
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g
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c
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