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@ -38,7 +38,7 @@ lE =
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Int -> Int -> Int))), ["(+)", "(-)", "(*)"]),
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            -- Logic
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Bool -> Bool))), ["(&&)", "(||)"]),
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            -- Ordered Enums
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            -- Ordered
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Int -> Int -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(AccountStatus -> AccountStatus -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(CreditHistory -> CreditHistory -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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@ -46,7 +46,7 @@ lE =
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            ((Ref.SomeTypeRep (Ref.TypeRep @(EmploymentStatus -> EmploymentStatus -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(OtherDebtors -> OtherDebtors -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Job -> Job -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            -- Eq Enum
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            -- Eq
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            ((Ref.SomeTypeRep (Ref.TypeRep @(GermanClass -> GermanClass -> Bool))), ["(==)", "(/=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Purpose -> Purpose -> Bool))), ["(==)", "(/=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(StatusAndSex -> StatusAndSex -> Bool))), ["(==)", "(/=)"]),
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@ -55,7 +55,7 @@ lE =
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Housing -> Housing -> Bool))), ["(==)", "(/=)"]),
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            -- Any Type
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Int -> Int -> Int))), ["if'"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> GermanClass -> GermanClass -> GermanClass))), ["if'","if'","if'","if'","if'","if'","if'","if'"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> GermanClass -> GermanClass -> GermanClass))), ["if'"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> AccountStatus -> AccountStatus -> AccountStatus))), ["if'"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> CreditHistory -> CreditHistory -> CreditHistory))), ["if'"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Purpose -> Purpose -> Purpose))), ["if'"]),
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@ -86,13 +86,13 @@ lE =
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Job))), [(fmap show (enumUniform UnemployedOrUnskilledNonResident HighlySkilled ))])
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          ],
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      targetType = (Ref.SomeTypeRep (Ref.TypeRep @(AccountStatus -> Int -> CreditHistory -> Purpose -> Int -> Savings -> EmploymentStatus -> Int -> StatusAndSex -> OtherDebtors -> Int -> Property -> Int -> OtherPlans -> Housing -> Int -> Job -> Int -> Bool -> Bool -> GermanClass))),
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      maxDepth = 8,
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      maxDepth = 9,
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      weights =
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        ExpressionWeights
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          { lambdaSpucker = 1,
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            lambdaSchlucker = 2,
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            symbol = 30,
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            variable = 10,
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          { lambdaSpucker = 0,
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            lambdaSchlucker = 10,
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            symbol = 100,
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            variable = 5,
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            constant = 5
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          }
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    }
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@ -151,6 +151,7 @@ data LamdaExecutionEnv = LamdaExecutionEnv
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data FittnesRes = FittnesRes
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  { total :: R,
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    fitnessTotal :: R,
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    costAccordingToDataset :: N,
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    fitnessGeoMean :: R,
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    fitnessMean :: R,
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    accuracy :: R,
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@ -189,8 +190,9 @@ evalResults ex trs = do
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evalResult :: LamdaExecutionEnv -> TypeRequester -> (AccountStatus -> Int -> CreditHistory -> Purpose -> Int -> Savings -> EmploymentStatus -> Int -> StatusAndSex -> OtherDebtors -> Int -> Property -> Int -> OtherPlans -> Housing -> Int -> Job -> Int -> Bool -> Bool -> GermanClass) -> (TypeRequester, FittnesRes)
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evalResult ex tr result = ( tr,
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      FittnesRes
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        { total = score,
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        { total = (biasSmall - 1) - (fromIntegral costAccordingToDS),
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          fitnessTotal = fitness',
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          costAccordingToDataset = costAccordingToDS,
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          fitnessMean = meanOfAccuricyPerClass resAndTarget,
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          fitnessGeoMean = geomeanOfDistributionAccuracy resAndTarget,
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          accuracy = acc,
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@ -201,7 +203,8 @@ evalResult ex tr result = ( tr,
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    where
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    res = map (\(a, b, c, d, e, f, g, h, i, j, k, l, m, n, o, p, q, r, s, t) -> result a b c d e f g h i j k l m n o p q r s t) (fst (dset ex))
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    resAndTarget = (zip (snd (dset ex)) res)
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    acc = (foldr (\ts s -> if ((fst ts) == (snd ts)) then s + 1 else s) 0 resAndTarget) / fromIntegral (length resAndTarget)
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    acc = (foldr (\(actual,predicted) s -> if (actual == predicted) then s + 1 else s) 0 resAndTarget) / fromIntegral (length resAndTarget)
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    costAccordingToDS = (foldr (\(actual,predicted) s -> if ((actual) == (predicted)) then s else (if actual == Deny then s+5 else s+1)) 0 resAndTarget)
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    biasSmall = exp ((-(fromIntegral (countTrsR tr))) / 1000) -- 0 (schlecht) bis 1 (gut)
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    fitness' = meanOfAccuricyPerClass resAndTarget
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    score = fitness' + (biasSmall - 1)
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@ -34,12 +34,17 @@ lE =
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  LambdaEnviroment
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    { functions =
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        Map.fromList
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          [ ((Ref.SomeTypeRep (Ref.TypeRep @(Float -> Float -> Float))), ["(+)", "(-)", "(*)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Float -> Float -> Bool))), ["(>)", "(==)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(IrisClass -> IrisClass -> Bool))), ["(==)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Float -> Float -> Float))), ["if'","if'","if'","if'","if'","if'","if'","if'"]),
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          [  -- Math
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Float -> Float -> Float))), ["(+)", "(-)", "(*)"]),
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            -- Logic
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Bool -> Bool))), ["(&&)", "(||)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> IrisClass -> IrisClass -> IrisClass))), ["if'","if'","if'","if'","if'","if'","if'","if'","if'","if'"])
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            -- Ordered
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Float -> Float -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            -- Eq
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            ((Ref.SomeTypeRep (Ref.TypeRep @(IrisClass -> IrisClass -> Bool))), ["(==)","(/=)"]),
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            -- Any Type
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Float -> Float -> Float))), ["if'"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> IrisClass -> IrisClass -> IrisClass))), ["if'"])
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          ],
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      constants =
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        Map.fromList
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@ -48,13 +53,13 @@ lE =
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            ((Ref.SomeTypeRep (Ref.TypeRep @(IrisClass))), [(fmap show (enumUniform Setosa Versicolor :: RVar IrisClass))])
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          ],
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      targetType = (Ref.SomeTypeRep (Ref.TypeRep @(Float -> Float -> Float -> Float -> IrisClass))),
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      maxDepth = 10,
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      maxDepth = 9,
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      weights =
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        ExpressionWeights
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          { lambdaSpucker = 1,
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            lambdaSchlucker = 1,
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            symbol = 30,
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            variable = 100,
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          { lambdaSpucker = 0,
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            lambdaSchlucker = 10,
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            symbol = 100,
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            variable = 5,
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            constant = 5
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          }
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    }
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@ -63,7 +68,7 @@ lEE :: LamdaExecutionEnv
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lEE =
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  LamdaExecutionEnv
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    { -- For now these need to define all available functions and types. Generic functions can be used.
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      imports = ["LambdaDatasets.IrisDataset"],
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      imports = ["LambdaDatasets.IrisDefinition"],
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      training = True,
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      trainingData =
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        ( map fst (takeFraktion 0.8 irisTrainingData),
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@ -84,7 +89,7 @@ shuffledLEE = do
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  itD <- smpl $ shuffle irisTrainingData
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  return  LamdaExecutionEnv
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    { -- For now these need to define all available functions and types. Generic functions can be used.
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      imports = ["LambdaDatasets.IrisDataset"],
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      imports = ["LambdaDatasets.IrisDefinition"],
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      training = True,
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      trainingData =
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        ( map fst (takeFraktion 0.8 itD),
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@ -150,7 +155,7 @@ evalResults ex trs = do
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evalResult :: LamdaExecutionEnv -> TypeRequester -> (Float -> Float -> Float -> Float -> IrisClass) -> (TypeRequester, FittnesRes)
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evalResult ex tr result = ( tr,
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      FittnesRes
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        { total = score,
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        { total = acc * 100 + (biasSmall - 1),
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          fitnessTotal = fitness',
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          fitnessMean = meanOfAccuricyPerClass resAndTarget,
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          fitnessGeoMean = geomeanOfDistributionAccuracy resAndTarget,
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@ -37,7 +37,7 @@ lE =
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          [ -- Math
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            -- Logic
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Bool -> Bool))), ["(&&)", "(||)"]),
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            -- Ordered Enums
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            -- Ordered
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            ((Ref.SomeTypeRep (Ref.TypeRep @(NurseryClass -> NurseryClass -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Parents -> Parents -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(HasNurs -> HasNurs -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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@ -47,7 +47,7 @@ lE =
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Finance -> Finance -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Social -> Social -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Health -> Health -> Bool))), ["(>)", "(==)", "(/=)", "(>=)"]),
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            -- Eq Enum
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            -- Eq
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            -- Any Type
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> Int -> Int -> Int))), ["if'"]),
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Bool -> NurseryClass -> NurseryClass -> NurseryClass))), ["if'","if'","if'","if'","if'","if'","if'","if'"]),
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@ -74,13 +74,13 @@ lE =
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            ((Ref.SomeTypeRep (Ref.TypeRep @(Health))), [(fmap show (enumUniform NotRecommendHealth PriorityHealth ))])
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          ],
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      targetType = (Ref.SomeTypeRep (Ref.TypeRep @(Parents -> HasNurs -> Form -> Children -> Housing -> Finance -> Social -> Health -> NurseryClass))),
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      maxDepth = 8,
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      maxDepth = 9,
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      weights =
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        ExpressionWeights
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          { lambdaSpucker = 1,
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            lambdaSchlucker = 2,
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            symbol = 30,
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            variable = 20,
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          { lambdaSpucker = 0,
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            lambdaSchlucker = 10,
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            symbol = 100,
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            variable = 5,
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            constant = 5
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          }
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    }
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@ -9,8 +9,8 @@ import Pretty
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import Protolude hiding (for)
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import System.IO
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-- import LambdaDatasets.IrisDataset
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import LambdaDatasets.NurseryDataset
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-- import LambdaDatasets.GermanDataset
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-- import LambdaDatasets.NurseryDataset
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import LambdaDatasets.GermanDataset
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import Debug.Trace as DB
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import qualified Data.Map.Strict as Map
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@ -35,7 +35,7 @@ options =
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      ( long "population-size"
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          <> short 'p'
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          <> metavar "N"
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          <> value 400
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          <> value 100
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          <> help "Population size"
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      )
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@ -59,7 +59,7 @@ main =
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      selectionType = Tournament 3,
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      termination = (steps (iterations opts)),
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      poulationSize = (populationSize opts),
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      stepSize = 120,
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      stepSize = 90,
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      elitismRatio = 5/100
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    }
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    pop' <- runEffect (for (run cfg) logCsv)
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