DynEditorExample.icl 16.1 KB
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module DynEditorExample

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import StdEnv
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import Data.Func
import Data.Functor
import iTasks
import iTasks.Extensions.Editors.DynamicEditor
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// Helpers /////////////////////////////////////////////////////////////////////
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:: List a :== [a]
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:: Message :== String
:: Button :== String
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always x :== const True x
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(>?>) infixl 1 :: (Task a) (List ( Button, a -> Bool, a -> Task b )) -> Task b | iTask a & iTask b
(>?>) task options = task >>* map trans options
where
  trans ( a, p, t ) = OnAction (Action a) (ifValue p t)
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// Main ////////////////////////////////////////////////////////////////////////

Start world = doTasks (editTaskExpr Nothing) world

editTaskExpr :: (Maybe (DynamicEditorValue TaskExpr)) -> Task (Maybe (DynamicEditorValue TaskExpr))
editTaskExpr mv =
  enterOrUpdateExpr ("Contruct a task", info1) mv >?>
    [ ( "Run", always, \v -> viewInformation ("Evaluate the task", info2) [] () ||- (evalTaskExpr (toValue taskEditor v) <<@ ApplyLayout frameCompact) >?>
        [ ( "Finish", always, \r -> viewInformation ("Done!", info3) [] r >?>
            [ ( "Back", always, \_ -> editTaskExpr (Just v) ) ]
          )
        ]
      )
    ]
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where
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  info1 :: String
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  info1 = "Select the editors and combinators you'd like to use. When you're ready, push the 'Continue' button below to run your program."
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  info2 :: String
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  info2 = "Now step through the task you just created to test it."
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  info3 :: String
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  info3 = "The program is done, the result is given below."
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  enterOrUpdateExpr msg Nothing = enterInformation msg [EnterUsing id $ dynamicEditor taskEditor]
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  enterOrUpdateExpr msg (Just v) = updateInformation msg [UpdateUsing id (curry snd) (dynamicEditor taskEditor)] v
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// Data ////////////////////////////////////////////////////////////////////////

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:: TaskExpr
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  = Done Expr
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  | EnterInfo Ty String
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  | Then TaskExpr TaskFunc
  | Both TaskExpr TaskExpr
  | Any TaskExpr TaskExpr
  | One TaskExpr TaskExpr
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:: TaskFunc
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  = ThenF TaskFunc TaskFunc
  | ViewF String Func
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  | UpdateF String
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:: Expr
  = Int Int
  | Bool Bool
  | String String
  | Tuple Expr Expr
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  | Apply Func Expr
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:: Func
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  = Identity
  | Conj Expr
  | Disj Expr
  | Not
  | Gt Expr
  | Ge Expr
  | Eq Expr
  | Le Expr
  | Lt Expr
  | Add Expr
  | Sub Expr
  | Mul Expr
  | Div Expr
  | Fst
  | Snd
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:: Value
  = VInt Int
  | VBool Bool
  | VString String
  | VTuple Value Value

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:: Ty
  = E.a: Ty (a -> Value) & iTask a

:: Typed a b
  =: Typed a
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derive class iTask TaskExpr, TaskFunc, Expr, Func, Value, Typed
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// These instances cannot be auto derived because of the existential quantifier.
// However, they will be never used, so we make them undefined.
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gDefault{|Ty|} = undef
gEq{|Ty|} _ _ = undef
JSONEncode{|Ty|} _ _ = undef
JSONDecode{|Ty|} _ _ = undef
gText{|Ty|} _ _ = undef
gEditor{|Ty|} = undef

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// Editor //////////////////////////////////////////////////////////////////////

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taskEditor :: DynamicEditor TaskExpr
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taskEditor = DynamicEditor
  [ // This cons is used to provide untyped `TaskExpr` values.
    DynamicCons
      $ functionConsDyn "TaskExpr" "(enter task)" (dynamic \(Typed taskExpr) -> taskExpr ::  A.a: (Typed TaskExpr a) -> TaskExpr)
      <<@@@ HideIfOnlyChoice
  , DynamicConsGroup "Combinators"
      [ functionConsDyn "Then" "sequence"
          ( dynamic \(Typed task) (Typed taskFunc) -> Typed (Then task taskFunc) ::
              A.a b:
              (Typed TaskExpr (Task a)) (Typed TaskFunc (a -> Task b))
              -> Typed TaskExpr (Task b)
          )
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          <<@@@ applyVerticalClasses
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      , functionConsDyn "ThenF" "sequence"
          ( dynamic \(Typed taskFunc1) (Typed taskFunc2) -> Typed (ThenF taskFunc1 taskFunc2) ::
              A.a b c:
              (Typed TaskFunc (a -> Task b)) (Typed TaskFunc (b -> Task c))
              -> Typed TaskFunc (a -> Task c)
          )
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          <<@@@ applyVerticalClasses
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      , functionConsDyn "Both" "both"
          ( dynamic \(Typed task1) (Typed task2) -> Typed (Both task1 task2) ::
              A.a b:
              (Typed TaskExpr (Task a))
              (Typed TaskExpr (Task b))
              -> Typed TaskExpr (Task (a, b))
          )
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          <<@@@ applyVerticalClasses
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      , functionConsDyn "Any" "any of"
          ( dynamic \(Typed task1) (Typed task2) -> Typed (Any task1 task2) ::
              A.a b:
              (Typed TaskExpr (Task a))
              (Typed TaskExpr (Task a))
              -> Typed TaskExpr (Task a)
          )
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          <<@@@ applyVerticalClasses
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      , functionConsDyn "One" "one of"
          ( dynamic \(Typed task1) (Typed task2) -> Typed (One task1 task2) ::
              A.a b:
              (Typed TaskExpr (Task a))
              (Typed TaskExpr (Task a))
              -> Typed TaskExpr (Task a)
          )
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          <<@@@ applyVerticalClasses
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      // , functionConsDyn "When" "guarded sequence"
      //     ( dynamic \(Typed task1) (Typed steps) -> Typed (When task1 steps) ::
      //       // Typed (When task1 [(expr, pred, tfExpr) \\ (Typed expr, pred, Typed tfExpr) <- steps]) ::
      //         A.a b:
      //         (Typed TaskExpr (Task a))
      //         (Typed (List TaskContExpr) (a -> Task b))
      //         // (Typed (List (Typed Func (a -> Bool), String, Typed TaskFunc (a -> Task a))) (a -> Task b))
      //         -> Typed TaskExpr (Task b)
      //     )
      //     <<@@@ applyHorizontalClasses
      // , listConsDyn "List TaskContExpr" "continuations"
      //     ( dynamic \typedSteps -> Typed ((\(Typed expr) -> expr) <$> typedSteps) ::
      //         A.a b:
      //         (List (Typed TaskContExpr (a -> Task b)))
      //         -> Typed (List TaskContExpr) (a -> Task b)
      //     )
      //     <<@@@ HideIfOnlyChoice
      // , functionConsDyn "TaskContExpr" "continuation"
      //     ( dynamic \s (Typed func) (Typed taskFunc) -> Typed {name = s, pred = func, cont = taskFunc} ::
      //         A.a b:
      //         String
      //         (Typed Func a)
      //         (Typed TaskFunc (a -> Task b))
      //         -> Typed TaskContExpr (a -> Task b)
      //     )
      //     <<@@@ HideIfOnlyChoice
      //     <<@@@ AddLabels [Just "name", Just "predicate", Just "continuation"]
      ]
  , DynamicConsGroup "Editors"
      [ functionConsDyn "Enter" "enter"
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          ( dynamic \(Typed ty) s -> Typed (EnterInfo ty s) ::
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              A.a:
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              (Typed Ty a)
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              String
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              -> Typed TaskExpr (Task a)
          )
          <<@@@ applyHorizontalClasses
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          <<@@@ AddLabels [Nothing, Just "message"]
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      , functionConsDyn "ViewF" "view"
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          ( dynamic \s (Typed func) -> Typed (ViewF s func) ::
              A.a b:
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              String
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              (Typed Func (a -> b))
              -> Typed TaskFunc (a -> Task b)
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          )
          <<@@@ applyHorizontalClasses
      , functionConsDyn "UpdateF" "update"
          ( dynamic \s -> Typed (UpdateF s) ::
              A.a:
              String
              -> Typed TaskFunc (a -> Task a)
          )
          <<@@@ applyHorizontalClasses
      ]
    , DynamicConsGroup "Special"
      [ functionConsDyn "Done" "done"
          ( dynamic \(Typed expr) -> Typed (Done expr) ::
              A.a:
              (Typed Expr a)
              -> Typed TaskExpr (Task a)
          )
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          <<@@@ applyHorizontalClasses
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      ]
  // Non-task functions:
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  , DynamicConsGroup "Basics"
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      [ functionConsDyn "Identity" "this value"
          (dynamic Typed Identity :: A.a: Typed Func (a -> a))
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "Apply" "apply"
          ( dynamic \(Typed func) (Typed expr) ->
            Typed (Apply func expr) ::
              A.a b:
              (Typed Func (a -> b))
              (Typed Expr a)
              -> Typed Expr b
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          )
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Fst" "fst"
          (dynamic Typed Fst :: A.a b: Typed Func ((a, b) -> a))
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "Snd" "snd"
          (dynamic Typed Snd :: A.a b: Typed Func ((a, b) -> b))
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          <<@@@ applyHorizontalClassesNoBorder
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      ]
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  , DynamicConsGroup "Arithmetic"
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      [ functionConsDyn "Add" "add"
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          (dynamic \(Typed i) -> Typed (Add i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Sub" "sub"
          (dynamic \(Typed i) -> Typed (Sub i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Mul" "mul"
          (dynamic \(Typed i) -> Typed (Mul i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Div" "div"
          (dynamic \(Typed i) -> Typed (Div i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
      ]
  , DynamicConsGroup "Logic"
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      [ functionConsDyn "Conj" "and"
          (dynamic \(Typed b) -> Typed (Conj b) :: (Typed Expr Bool) -> Typed Func (Bool -> Bool))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Disj" "or"
          (dynamic \(Typed b) -> Typed (Disj b) :: (Typed Expr Bool) -> Typed Func (Bool -> Bool))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Not" "not"
          (dynamic Typed Not :: Typed Func (Bool -> Bool))
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          <<@@@ applyHorizontalClassesNoBorder
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      ]
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  , DynamicConsGroup "Comparison"
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      [ functionConsDyn "Gt" "greater than"
          (dynamic \(Typed i) -> Typed (Gt i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Ge" "greater or equal"
          (dynamic \(Typed i) -> Typed (Ge i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Eq" "equal to"
          (dynamic \(Typed i) -> Typed (Eq i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Le" "lesser than"
          (dynamic \(Typed i) -> Typed (Le i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
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      , functionConsDyn "Lt" "lesser than"
          (dynamic \(Typed i) -> Typed (Lt i) :: (Typed Expr Int) -> Typed Func (Int -> Int))
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          <<@@@ applyHorizontalClasses
      ]
  // Non-task expressions:
  , DynamicConsGroup "Values"
      [ functionConsDyn "Int" "the integer"
          (dynamic \i -> Typed (Int i) :: Int -> Typed Expr Int)
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "Bool" "the boolean"
          (dynamic \b -> Typed (Bool b) :: Bool -> Typed Expr Bool)
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "String" "the string"
          (dynamic \s -> Typed (String s) :: String -> Typed Expr String)
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "Tuple" "the tuple"
          ( dynamic \(Typed a) (Typed b) ->
            Typed (Tuple a b) ::
              A.a b:
                (Typed Expr a) (Typed Expr b) -> Typed Expr (a, b)
          )
          <<@@@ applyHorizontalClasses
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    ]
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  // Types
  , DynamicConsGroup "Types"
      [ functionConsDyn "Ty.Int" "Int"
          (dynamic Typed (Ty VInt) :: Typed Ty Int)
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "Ty.Bool" "Bool"
          (dynamic Typed (Ty VBool) :: Typed Ty Bool)
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "Ty.String" "String"
          (dynamic Typed (Ty VString) :: Typed Ty String)
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          <<@@@ applyHorizontalClassesNoBorder
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      , functionConsDyn "Ty.Tuple" "Tuple"
          ( dynamic \(Typed (Ty toValue1)) (Typed (Ty toValue2)) -> Typed (Ty \(x, y) -> VTuple (toValue1 x) (toValue2 y)) ::
              A.a b:
              (Typed Ty a) (Typed Ty b) -> Typed Ty (a, b)
          )
          <<@@@ applyHorizontalClasses
      ]
  // Internal helper editors
  , DynamicConsGroup "Helpers"
    [ customEditorCons "int" "(enter integer)" intEditor <<@@@ HideIfOnlyChoice
    , customEditorCons "bool" "(enter boolean)" boolEditor <<@@@ HideIfOnlyChoice
    , customEditorCons "string" "(enter string )" stringEditor <<@@@ HideIfOnlyChoice
    ]
  ]
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where
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  intEditor :: Editor Int
  intEditor = gEditor{|*|}
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  boolEditor :: Editor Bool
  boolEditor = gEditor{|*|}
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  stringEditor :: Editor String
  stringEditor = gEditor{|*|}
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  applyHorizontalClasses         = ApplyCssClasses ["typedTaskEditor", "itasks-horizontal", "itasks-wrap-width", "itasks-wrap-height", "typedTaskEditorWithBorder"]
  applyHorizontalClassesNoBorder = ApplyCssClasses ["typedTaskEditor", "itasks-horizontal", "itasks-wrap-width", "itasks-wrap-height"]
  applyVerticalClasses           = ApplyCssClasses ["typedTaskEditor", "itasks-vertical", "itasks-wrap-width", "itasks-wrap-height", "typedTaskEditorWithBorder"]
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// Evaluation //////////////////////////////////////////////////////////////////

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evalTaskExpr :: TaskExpr -> Task Value
evalTaskExpr (Done expr) = return $ evalExpr expr
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evalTaskExpr (EnterInfo (Ty toValue) msg) = enterInformation msg [] @ toValue
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evalTaskExpr (Then task taskFunc) = evalTaskExpr task >>= evalTaskFunc taskFunc
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evalTaskExpr (Any task1 task2) = (evalTaskExpr task1 -||- evalTaskExpr task2) <<@ ApplyLayout arrangeHorizontal
evalTaskExpr (Both task1 task2) = (evalTaskExpr task1 -&&- evalTaskExpr task2) <<@ ApplyLayout arrangeHorizontal @ \(a, b) -> VTuple a b
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// evalTaskExpr (When task1 options) = evalTaskExpr task1
//   >>* [ OnAction (Action name) (ifValue (test pred) (evalTaskFunc cont))
//       \\ {name, pred, cont} <- options
//       ]
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// where
//   test pred (VInt i) = case pred of
//     Lt (VInt j) -> i < j
//     Gt (VInt j) -> i > j
//     Eq (VInt j) -> i == j
//   test pred (VBool i) = case pred of
//     Eq (VBool j) -> i == j
//     Lt (VBool j) -> False
//     Gt (VBool j) -> False
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evalTaskFunc :: TaskFunc Value -> Task Value
evalTaskFunc (ThenF this next) val = evalTaskFunc this val >>= evalTaskFunc next
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evalTaskFunc (ViewF msg func) val = case evalFunc val func of
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  (VInt i) -> (viewInformation msg [] i @ VInt) <<@ ApplyLayout arrangeHorizontal
  (VBool b) -> (viewInformation msg [] b @ VBool) <<@ ApplyLayout arrangeHorizontal
  (VString s) -> (viewInformation msg [] s @ VString) <<@ ApplyLayout arrangeHorizontal
  (VTuple a b) ->
    ( viewInformation msg [] ()
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      ||- evalTaskFunc (ViewF "" Identity) a -&&- evalTaskFunc (ViewF "" Identity) b
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      @ \(a, b) -> VTuple a b
    )
      <<@ ApplyLayout arrangeHorizontal
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evalTaskFunc (UpdateF msg) val = case val of
  (VInt i) -> (updateInformation msg [] i @ VInt) <<@ ApplyLayout arrangeHorizontal
  (VBool b) -> (updateInformation msg [] b @ VBool) <<@ ApplyLayout arrangeHorizontal
  (VString s) -> (updateInformation msg [] s @ VString) <<@ ApplyLayout arrangeHorizontal
  (VTuple a b) ->
    ( viewInformation msg [] ()
      ||- evalTaskFunc (UpdateF "") a
      -&&- evalTaskFunc (UpdateF "") b
      @ \(a, b) -> VTuple a b
    )
      <<@ ApplyLayout arrangeHorizontal

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evalExpr :: Expr -> Value
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evalExpr (Int i) = VInt i
evalExpr (Bool b) = VBool b
evalExpr (String s) = VString s
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evalExpr (Tuple fstExpr sndExpr) = VTuple (evalExpr fstExpr) (evalExpr sndExpr)
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evalExpr (Apply func expr) = evalFunc (evalExpr expr) func
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evalFunc :: Value Func -> Value
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evalFunc val Identity = val
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evalFunc (VInt i1) func = case func of
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  (Gt expr) -> VBool $ i1 > evalInt expr
  (Ge expr) -> VBool $ i1 >= evalInt expr
  (Eq expr) -> VBool $ i1 == evalInt expr
  (Le expr) -> VBool $ i1 <= evalInt expr
  (Lt expr) -> VBool $ i1 < evalInt expr
  (Add expr) -> VInt $ i1 + evalInt expr
  (Sub expr) -> VInt $ i1 - evalInt expr
  (Mul expr) -> VInt $ i1 * evalInt expr
  (Div expr) -> VInt $ i1 / evalInt expr
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where
  evalInt :: Expr -> Int
  evalInt expr = case evalExpr expr of
    (VInt i) -> i

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evalFunc (VBool b1) func = case func of
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  (Eq expr) -> VBool $ b1 == evalBool expr
  (Conj expr) -> VBool $ b1 && evalBool expr
  (Disj expr) -> VBool $ b1 || evalBool expr
  (Not) -> VBool $ not b1
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where
  evalBool :: Expr -> Bool
  evalBool expr = case evalExpr expr of
    (VBool b) -> b

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evalFunc (VString s1) func = case func of
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  (Eq expr) -> VBool $ s1 == evalString expr
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where
  evalString :: Expr -> String
  evalString expr = case evalExpr expr of
    (VString s) -> s
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evalFunc (VTuple x1 x2) func = case func of
  Fst -> x1
  Snd -> x2