feat: Read and Show for all the types
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9 changed files with 87 additions and 25 deletions
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@ -19,6 +19,7 @@ extra-source-files:
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description: Please see the README on GitHub at <https://github.com/githubuser/scalie#readme>
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default-extensions:
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- DerivingStrategies
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- ImportQualifiedPost
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- NoImplicitPrelude
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- StandaloneKindSignatures
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@ -19,11 +19,8 @@ extra-source-files:
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library
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exposed-modules:
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Control.Ord.LexicographicallySorted
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Data.Map.Implicit
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Language.Scalie.Ast
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Language.Scalie.Ast.Definition
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Language.Scalie.Ast.Definition.Body
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Language.Scalie.Ast.Expression
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Language.Scalie.Ast.Module
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Language.Scalie.Ast.Pattern
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@ -33,6 +30,7 @@ library
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hs-source-dirs:
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src
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default-extensions:
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DerivingStrategies
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ImportQualifiedPost
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NoImplicitPrelude
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StandaloneKindSignatures
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@ -52,6 +50,7 @@ executable scalie-exe
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hs-source-dirs:
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app
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default-extensions:
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DerivingStrategies
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ImportQualifiedPost
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NoImplicitPrelude
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StandaloneKindSignatures
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@ -73,6 +72,7 @@ test-suite scalie-test
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hs-source-dirs:
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test
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default-extensions:
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DerivingStrategies
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ImportQualifiedPost
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NoImplicitPrelude
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StandaloneKindSignatures
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@ -1,17 +1,25 @@
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{-# LANGUAGE Safe #-}
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{-# LANGUAGE TypeFamilies #-}
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--
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{-# LANGUAGE StandaloneDeriving #-} -- specify instance contexts
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{-# LANGUAGE FlexibleContexts #-} -- use non type-variable argument in instance head
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{-# LANGUAGE UndecidableInstances #-} -- use type family in instance head
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-- | A Map that derives the keys for the mapping from the items.
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module Data.Map.Implicit (ImplicitMap(), get, ImplicitKeyOf(..), empty) where
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import Data.Kind (Type, Constraint)
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import Data.Map (Map)
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import Data.Map qualified as Map
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import Text.Show (Show)
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import Text.Read (Read)
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import Data.Ord (Ord)
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type ImplicitMap :: Type -> Type
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type role ImplicitMap nominal
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newtype ImplicitMap v = ImplicitMap { get :: Map (KeyType v) v }
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deriving stock instance (Show (KeyType v), Show v) => Show (ImplicitMap v)
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deriving stock instance (Read (KeyType v), Ord (KeyType v), Read v) => Read (ImplicitMap v)
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type ImplicitKeyOf :: Type -> Constraint
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class ImplicitKeyOf v where
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@ -1,26 +1,51 @@
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{-# LANGUAGE Safe #-}
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{-# LANGUAGE InstanceSigs #-}
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{-# LANGUAGE TypeFamilies #-}
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{-# LANGUAGE StandaloneDeriving #-}
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{-# LANGUAGE UndecidableInstances #-}
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module Language.Scalie.Ast.Definition (Definition(..)) where
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import Data.Kind (Type)
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import Data.Text (Text)
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import Language.Scalie.Domain.Type qualified as Scalie.Domain
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import Language.Scalie.Ast.Definition.Body (DefinitionBody)
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import Data.Map.Implicit (ImplicitKeyOf (KeyType, keyOf))
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import Language.Scalie.Domain.Type qualified as Scalie.Domain
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import Language.Scalie.Ast.Expression (Expression)
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import Text.Show (Show)
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import Text.Read (Read)
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-- | The definition of a value or a function (which is also a value)
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--
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-- >>> import Data.Functor.Identity (Identity(Identity))
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-- >>> import Data.Function (($))
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-- >>> :set -XOverloadedStrings
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-- >>> import Language.Scalie.Ast.Expression qualified as Expression
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-- >>> Definition (Identity Scalie.Domain.RawInt) (Identity "x") (Identity (Expression.RawInt 5))
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-- Definition {signature = Identity RawInt, name = Identity "x", body = Identity (RawInt 5)}
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--
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-- >>> import Data.Maybe (Maybe(..))
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-- >>> Definition Nothing (Just "x") (Just (Expression.RawInt 5))
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-- Definition {signature = Nothing, name = Just "x", body = Just (RawInt 5)}
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--
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-- >>> import Text.Read (readMaybe)
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-- >>> readMaybe "Definition {signature = Just RawInt, name = Nothing, body = Nothing}" :: Maybe (Definition Maybe)
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-- Just (Definition {signature = Just RawInt, name = Nothing, body = Nothing})
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type Definition :: (Type -> Type) -> Type
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type role Definition nominal
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data Definition f = Definition
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{ signature :: f Scalie.Domain.Type
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-- ^ What is the type
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, name :: f Text
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-- ^ Which name will be used to refer to this definition
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, body :: f (DefinitionBody f)
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-- ^ Which name can be used to refer to this definition
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, body :: f Expression
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-- ^ What needs to be evaluated to get the value
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}
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deriving stock instance (Show (f Expression), Show (f Scalie.Domain.Type), Show (f Text)) => Show (Definition f)
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deriving stock instance (Read (f Expression), Read (f Scalie.Domain.Type), Read (f Text)) => Read (Definition f)
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instance ImplicitKeyOf (Definition f) where
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type KeyType (Definition f) = f Text
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keyOf :: Definition f -> KeyType (Definition f)
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@ -1,15 +0,0 @@
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{-# LANGUAGE Trustworthy #-} -- I declare trustworthiness because I only use Vector, I do not call any unsafe functions.
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module Language.Scalie.Ast.Definition.Body (DefinitionBody(..)) where
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import Data.Vector (Vector)
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import Language.Scalie.Ast.Expression (Expression)
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import Language.Scalie.Ast.Pattern (Pattern)
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import Data.Kind (Type)
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type DefinitionBody :: (Type -> Type) -> Type
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type role DefinitionBody representational
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data DefinitionBody f = DefinitionBody
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{ arguments :: f (Vector Pattern)
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, rhs :: f Expression
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}
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@ -3,7 +3,10 @@ module Language.Scalie.Ast.Expression (Expression(..)) where
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import Prelude (Integer)
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import Data.Kind (Type)
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import Text.Show (Show)
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import Text.Read (Read)
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type Expression :: Type
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data Expression
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= RawInt Integer
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deriving stock (Show, Read)
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@ -1,13 +1,27 @@
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{-# LANGUAGE Safe #-}
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{-# LANGUAGE StandaloneKindSignatures #-}
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{-# LANGUAGE StandaloneKindSignatures #-} -- because of -Weverything
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{-# LANGUAGE StandaloneDeriving #-} -- to specify contexts
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{-# LANGUAGE FlexibleContexts #-} -- 'non type-variable argument'
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{-# LANGUAGE UndecidableInstances #-} -- instance head no smaller...
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module Language.Scalie.Ast.Module (Module(..)) where
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import Data.Kind (Type)
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import Language.Scalie.Ast.Definition (Definition)
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import Data.Map.Implicit (ImplicitMap)
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import Text.Show ( Show )
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import Text.Read (Read)
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import Data.Text (Text)
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import Language.Scalie.Ast.Expression (Expression)
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import Language.Scalie.Domain.Type qualified as Scalie.Domain
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import Data.Ord (Ord)
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-- | A module groups multiple related definitions.
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type Module :: (Type -> Type) -> Type
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type role Module nominal
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data Module f = Module
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{ definitions :: ImplicitMap (Definition f)
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}
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deriving stock instance (Show (f Text), Show (f Expression), Show (f Scalie.Domain.Type)) => Show (Module f)
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deriving stock instance (Read (f Text), Ord (f Text), Read (f Expression), Read (f Scalie.Domain.Type)) => Read (Module f)
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@ -1,6 +1,28 @@
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{-# LANGUAGE Safe #-}
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{-# LANGUAGE DerivingStrategies #-}
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module Language.Scalie.Ast.Pattern (Pattern(..)) where
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import Prelude (Integer)
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import Text.Show (Show)
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import Text.Read (Read, readMaybe)
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import Data.Kind qualified
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-- | A pattern in scalie. Used to select branches to jump to, with pattern matching.
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--
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-- >>> RawInt 15
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-- RawInt 15
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--
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-- >>> import Data.Maybe (Maybe)
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-- >>> readMaybe "RawInt (-5)" :: Maybe Pattern
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-- Just (RawInt (-5))
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--
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-- >>> readMaybe "RawInt (+5)" :: Maybe Pattern
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-- Nothing
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--
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-- >>> readMaybe "RawInt (5)" :: Maybe Pattern
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-- Just (RawInt 5)
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type Pattern :: Data.Kind.Type
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data Pattern
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= RawInt Integer
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deriving stock (Show, Read)
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@ -2,7 +2,11 @@
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module Language.Scalie.Domain.Type (Type(..)) where
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import Data.Kind qualified
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import Text.Show (Show)
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import Text.Read (Read)
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type Type :: Data.Kind.Type
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data Type
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data Type
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= RawInt
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deriving stock (Show, Read)
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