| [5] | 1 | {-# LANGUAGE ScopedTypeVariables, ExistentialQuantification, Rank2Types #-} |
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| 2 | module Examples where |
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| 3 | |
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| 4 | import Lambda |
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| 5 | import SizedExp |
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| 6 | import Prelude (($)) |
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| 7 | import Constraints |
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| 8 | import Prelude ( (+), (-), Int, (==), (*), (<), (>), (<=), (>=), (/=) ) |
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| 9 | import qualified Prelude as P |
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| 10 | import qualified Control.Monad as M |
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| 11 | import qualified Data.List as List |
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| 12 | import Debug.Trace |
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| 13 | |
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| 14 | head :: (SizedExp se ) => Size se ([l] -> l) |
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| 15 | head = bind headc body |
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| 16 | where |
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| 17 | body l = match l true (\x xs -> x) |
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| 18 | |
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| 19 | tail :: (SizedExp se ) => Size se ([l] -> [l]) |
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| 20 | tail = bind tailc body |
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| 21 | where body l = match l true (\x xs -> xs) |
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| 22 | |
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| 23 | cons :: (SizedExp se) => Size se (x -> [x] -> [x]) |
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| 24 | cons = bind conss true |
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| 25 | |
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| 26 | t3 :: (SizedExp se) => Size se ( (a -> a) -> a -> a ) |
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| 27 | t3 = bind t3s body |
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| 28 | where body f x = f `app` (f `app` (f `app` x)) |
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| 29 | |
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| 30 | nil :: (SizedExp se) => Size se ([x]) |
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| 31 | nil = bind nils true |
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| 32 | |
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| 33 | map :: (SizedExp se) => Size se ( (a->b) -> [a] -> [b] ) |
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| 34 | map = bind smap body |
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| 35 | where body f l = match l (nil) |
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| 36 | ( \x xs -> cons `app` (f `app` x) `app` (map `app` f `app` xs )) |
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| 37 | |
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| 38 | heads :: (SizedExp se) => Size se ( [[a]] -> [a] ) |
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| 39 | heads = bind sheads $ \l -> map `app` head `app` l |
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| 40 | |
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| 41 | tails :: (SizedExp se) => Size se ( [[a]] -> [[a]] ) |
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| 42 | tails = bind stails $ \l -> map `app` tail `app` l |
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| 43 | |
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| 44 | append :: (SizedExp se) => Size se ([a] -> [a] -> [a]) |
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| 45 | append = bind appends body |
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| 46 | where body l1 l2 = match l1 (l2) |
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| 47 | (\x xs -> cons `app` x `app` (append `app` xs `app` l2)) |
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| 48 | |
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| 49 | t27 :: (SizedExp se) => Size se ((a -> a) -> a -> a) |
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| 50 | t27 = bind ( App t3s t3s) $ t3 `app` t3 |
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| 51 | |
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| 52 | t27_ :: (SizedExp se) => Size se ((a -> a) -> a -> a) |
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| 53 | t27_ = bind ( App t3s t3s) $ |
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| 54 | \f -> t3 `app` t3 `app` f |
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| 55 | |
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| 56 | t27__ :: (SizedExp se) => Size se ((a -> a) -> a -> a) |
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| 57 | t27__ = bind ( App t3s t3s) $ \f x -> |
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| 58 | t3 `app` t3 `app` f `app` x |
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| 59 | |
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| 60 | pam :: (SizedExp se) => Size se ([a -> b] -> a -> [b]) |
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| 61 | pam = bind (AAbs 1 2 $ Abs 3 $ List (Var 1) (Abs 4 $ (App (App (Var 2) (Var 4)) (Var 3)))) $ \fl x -> match fl (nil) |
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| 62 | (\f fs -> cons `app` (f `app` x) `app` (pam `app` fs `app` x)) |
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| 63 | |
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| 64 | reverse :: (SizedExp se) => Size se([a] -> [a]) |
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| 65 | reverse = bind reverses $ \l -> match l ( |
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| 66 | nil |
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| 67 | )( |
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| 68 | \x xs -> append `app` (reverse `app` xs) `app` (cons `app` x `app` nil) |
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| 69 | ) |
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| 70 | |
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| 71 | addone :: (SizedExp se) => Size se ([P.Int] -> [P.Int]) |
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| 72 | addone = bind addones $ \l -> cons `app` 1 `app` l |
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| 73 | |
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| 74 | add3 :: (SizedExp se) => Size se ([P.Int] -> [P.Int]) |
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| 75 | add3 = bind (AAbs 0 1 $ List (Op (Var 0) '+' (Num 3)) (Var 1)) $ |
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| 76 | \l -> t3 `app` addone `app` l |
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| 77 | |
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| 78 | add3_ :: (SizedExp se) => Size se ([P.Int] -> [P.Int]) |
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| 79 | add3_ = bind (AAbs 0 1 $ List (Op (Var 0) '+' (Num 3)) (Var 1)) $ |
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| 80 | t3 `app` addone |
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| 81 | |
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| 82 | t9_ :: (SizedExp se) => Size se ((a -> a) -> a -> a) |
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| 83 | t9_ = bind ( Abs 0 $ App t3s (App t3s (Var 0))) $ |
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| 84 | \f -> t3 `app` (t3 `app` f) |
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| 85 | |
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| 86 | t9 :: (SizedExp se) => Size se ((a -> a) -> a -> a) |
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| 87 | t9 = bind ( Abs 0 $ App t3s (App t3s (Var 0))) $ |
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| 88 | \f x -> t3 `app` (t3 `app` f) `app` x |
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| 89 | |
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| 90 | add27s = (AAbs 0 1 $ List (Op (Var 0) '+' (Num 27)) (Abs 2 Unsized)) |
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| 91 | add27 :: (SizedExp se) => Size se ([P.Int] -> [P.Int]) |
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| 92 | add27 = bind add27s $ \x -> t27 `app` addone `app` x |
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| 93 | |
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| 94 | |
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| 95 | zipWiths = let q = App (Var 4) $ Op (Op (Var 5) '+' (Var 3)) '-' (Var 1) in |
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| 96 | (Abs 0 $ AAbs 1 2 $ AAbs 3 4 $ List (Var 1) (Abs 5 $ App (App (Var 0) (App (Var 2) (Var 5))) q )) |
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| 97 | zipWith :: (SizedExp se) => Size se ((a2 -> a1 -> a) -> [a2] -> [a1] -> [a]) |
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| 98 | zipWith = bind zipWiths $ \f l1 l2 -> |
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| 99 | match l1 ( |
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| 100 | nil |
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| 101 | ) ( |
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| 102 | \x xs -> match l2 ( |
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| 103 | true |
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| 104 | ) ( |
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| 105 | \y ys -> cons `app` (f `app` x `app` y) `app` (zipWith `app` f `app` xs `app` ys) |
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| 106 | ) |
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| 107 | ) |
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| 108 | appAll :: (SizedExp se) => Size se ( [a -> b] -> a -> [b] ) |
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| 109 | appAll = bind (AAbs 0 1 $ Abs 2 $ List (Var 0) (Abs 3 $ Var 1 `App` Var 3 `App` Var 2 ) ) $ \fl x -> match fl ( |
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| 110 | nil |
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| 111 | ) ( |
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| 112 | \f fs -> cons `app` (f `app` x) `app` (appAll `app` fs `app` x) |
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| 113 | ) |
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| 114 | |
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| 115 | conspack :: (SizedExp se) => Size se (P.Int -> [P.Int] -> [P.Int]) |
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| 116 | conspack = bind (Abs 0 $ AAbs 1 2 $ List (Op (Var 1) '+' (Num 1)) (Abs 3 Unsized)) $ \x l -> |
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| 117 | match l (cons `app` x `app` l) |
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| 118 | (\hd tl -> iff (x == hd) ( |
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| 119 | cons `app` x `app` l |
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| 120 | ) ( |
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| 121 | cons `app` hd `app` (conspack `app` x `app` tl) |
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| 122 | ) |
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| 123 | ) |
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| 124 | |
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| 125 | cprod :: (SizedExp se) => Size se ([P.Int] -> [P.Int] -> [[P.Int]]) |
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| 126 | cprod = known (AAbs 0 1 $ AAbs 2 3 $ List (Op (Var 0) '*' (Var 2)) $ Abs 4 $ List (Num 2) $ Abs 5 Unsized) |
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| 127 | |
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| 128 | sqdiff :: SizedExp se => Size se ([Int] -> [Int] -> [[Int]]) |
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| 129 | sqdiff = bind (let sq l = Op l '*' l in AAbs 0 1 $ AAbs 2 3 $ List (sq $ Op (Var 0) '-' (Var 2)) $ Abs 4 $ List (Num 2) $ Abs 5 Unsized) $ |
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| 130 | \l1 l2 -> match l1 (cprod `app` l2 `app` l2) |
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| 131 | (\hd1 tl1 -> match l2 (cprod `app` l1 `app` l1) |
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| 132 | (\hd2 tl2 -> sqdiff `app` tl1 `app` tl2)) |
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| 133 | |
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| 134 | replace :: SizedExp se => Size se (Int -> [Int] -> [Int]) |
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| 135 | replace = bind (Abs 0 $ AAbs 1 2 $ List (Var 1) (Abs 3 Unsized)) $ |
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| 136 | \x l -> match l (nil) (\hd tl -> cons `app` (x+hd) `app` tl) |
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| 137 | |
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| 138 | scalar_prod :: (SizedExp se0) => Size se0 ([Int] -> [Int] -> [Int]) |
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| 139 | scalar_prod = bind (AAbs 0 1 $ AAbs 2 3 $ List (Num 1) (Abs 4 Unsized)) $ |
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| 140 | \l1 l2 -> match l1 ( |
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| 141 | match l2 ( cons `app` 0 `app` nil ) |
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| 142 | (\hd2 tl2 -> true) |
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| 143 | ) ( \hd1 tl1 -> |
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| 144 | match l2 (true) |
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| 145 | ( \hd2 tl2 -> replace `app` (hd1 * hd2) `app` (scalar_prod `app` tl1 `app` tl2) ) |
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| 146 | ) |
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| 147 | |
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| 148 | mlist :: SizedExp se => Size se (a -> [a -> x] -> [x]) |
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| 149 | mlist = bind (Abs 0 $ AAbs 1 2 $ List (Var 1) (Abs 3 $ Var 2 `App` Var 3 `App` Var 0)) |
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| 150 | $ \x l -> match l nil (\f fs -> cons `app` (f `app` x) `app` (mlist `app` x `app` fs)) |
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| 151 | |
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| 152 | strange :: (SizedExp se) => Size se ([Int] -> [Int]) |
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| 153 | strange = bind (AAbs 0 1 $ List (Num 2) (Abs 2 Unsized)) $ \l1 -> |
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| 154 | let b = match l1 nil (\x1 l2 -> match l2 nil (\x2 l3 -> cons `app` x2 `app` (cons `app` x1 `app` nil))) |
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| 155 | in match b (cons `app` 0 `app` (cons `app` 0 `app` nil)) (\x xs -> b) |
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| 156 | |
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| 157 | |
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| 158 | take4 :: SizedExp se => Size se (([a] -> [a]) -> [[a]]) |
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| 159 | take4 = bind (Abs 0 $ List (Num 1) (Abs 2 (Var 0 `App` (Var 0 `App` List (Num 0) (Abs 1 $ Bottom))))) $ |
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| 160 | \f ->cons `app` (f `app` (f `app` nil) ) `app` nil |
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| 161 | |
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| 162 | |
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| 163 | merge :: SizedExp se => Size se ([Int] -> [Int] -> [Int]) |
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| 164 | merge = bind (AAbs 0 1 $ AAbs 2 3 $ List (Op (Var 0) '+' (Var 2)) (Abs 4 $ Unsized))$ |
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| 165 | \l1 l2 -> match l1 l2 ( |
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| 166 | \x xs -> match l2 l1 ( |
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| 167 | \y ys -> iff (x>y) (cons `app` x `app` (merge `app` xs `app` l2)) |
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| 168 | (cons `app` y `app` (merge `app` l1 `app` ys)) |
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| 169 | ) |
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| 170 | ) |
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| 171 | |
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| 172 | split1 :: SizedExp se => Size se ([Int] -> [Int]) |
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| 173 | split1 = bind (AAbs 0 1 $ List (Op (Op (Var 0) '+' (Num 1))'/' (Num 2)) (Abs 2 $ Unsized)) $ |
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| 174 | \z -> match z nil (\y ys -> cons `app` y `app` (split2 `app` ys)) |
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| 175 | |
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| 176 | split2 :: SizedExp se => Size se ([Int] -> [Int]) |
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| 177 | split2 = bind (AAbs 0 1 $ List (Op (Var 0) '/' (Num 2)) (Abs 2 $ Unsized)) $ |
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| 178 | \z -> match z nil (\y ys -> split1 `app` ys) |
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| 179 | |
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| 180 | ms = (AAbs 0 1 $ List (Var 0) (Abs 4 $ Unsized)) |
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| 181 | mergesort :: SizedExp se => Size se ([Int] -> [Int]) |
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| 182 | mergesort = bind ms $ |
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| 183 | \l -> match l nil (\x xs -> |
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| 184 | merge `app` (mergesort `app` (split1 `app` l)) `app` (mergesort `app` (split2 `app` l)) |
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| 185 | ) |
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| 186 | |
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| 187 | last :: SizedExp se => Size se ([a] -> a) |
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| 188 | last = bind (AAbs 0 1 $ App (Var 1) (Num 0)) $ |
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| 189 | \l -> match l true (\x xs -> match xs x (\_ _ -> last `app` xs)) |
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| 190 | |
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| 191 | charm :: SizedExp se => Size se (([a] -> [a]) -> a) |
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| 192 | charm = bind (Abs 0 $ App (AAbs 2 3 $ App (Var 3) (Num 0)) (App (Var 0) (List (Num 0) $ Abs 1 Bottom))) $ |
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| 193 | \ f -> last `app` (f `app` nil) |
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| 194 | |
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| 195 | fix :: SizedExp se => Size se ((a -> a) -> a) |
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| 196 | fix = bind (Abs 2 $ App y (Var 2)) $ |
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| 197 | \f -> f `app` (fix `app` f) |
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| 198 | |
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| 199 | transpose :: SizedExp se => Size se ([[a]] -> [[a]]) |
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| 200 | transpose = bind transposec $ \l -> match l true $ |
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| 201 | \l1 xss -> match l1 true $ |
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| 202 | \x xs -> cons `app` (cons `app` x `app` (heads `app` xss)) |
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| 203 | `app` (transpose `app` (cons `app` xs `app` (tails `app` xss))) |
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| 204 | transposec = (AAbs 18 5 $ List len fun ) |
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| 205 | where |
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| 206 | len = (AAbs 19 6 $ (Var 19) ) `App` (Var 5 `App` Num 0) |
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| 207 | fun = Abs 8 $ List (Var 18) (Abs 9 $ (AAbs 19 6 $ Var 6 `App` Var 8 ) `App` (Var 5 `App` Var 9) ) |
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| 208 | |
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| 209 | comps = (Abs 2 $ Abs 3 $ Abs 4 $ App (Var 2) (App (Var 3) (Var 4)) ) |
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| 210 | comp :: (SizedExp se) => Size se ( (b->c) -> (a->b) -> a->c ) |
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| 211 | comp = bind comps $ \f g x -> f `app` (g `app` x) |
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| 212 | |
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| 213 | data TestCase = forall a . TestCase P.String (forall se. SizedExp se => Size se a) |
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| 214 | |
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| 215 | tests :: [TestCase] |
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| 216 | tests = [ |
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| 217 | TestCase "append" append |
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| 218 | , TestCase "reverse" reverse |
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| 219 | , TestCase "heads" heads |
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| 220 | , TestCase "map" map |
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| 221 | , TestCase "pam" pam |
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| 222 | , TestCase "head" head |
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| 223 | , TestCase "tail" tail |
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| 224 | , TestCase "t3" t3 |
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| 225 | , TestCase "t9" t9 |
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| 226 | -- , TestCase "t9_" t9_ -- too few arguments in definition |
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| 227 | , TestCase "t27" t27 |
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| 228 | , TestCase "t27_" t27_ |
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| 229 | , TestCase "t27__" t27__ |
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| 230 | , TestCase "addone" addone |
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| 231 | , TestCase "add3" add3 |
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| 232 | -- , TestCase "add3_" add3_ -- too few arguments in definition |
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| 233 | , TestCase "add27" add27 |
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| 234 | , TestCase "zipWith" zipWith |
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| 235 | , TestCase "appAll" appAll |
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| 236 | , TestCase "conspack" conspack |
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| 237 | , TestCase "scalar_prod" scalar_prod |
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| 238 | , TestCase "sqdiff" sqdiff |
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| 239 | , TestCase "mlist" mlist |
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| 240 | , TestCase "strange" strange |
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| 241 | , TestCase "take4" take4 |
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| 242 | , TestCase "charm" charm |
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| 243 | , TestCase "comp" comp |
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| 244 | ] |
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| 245 | |
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| 246 | runTests = do |
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| 247 | failed <- M.forM tests $ \(TestCase name test) -> do |
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| 248 | P.print$ " +++++++++++++++++++++++++++++++" |
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| 249 | P.print$ " + Proving " P.++ name |
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| 250 | P.print$ " +++++++++++++++++++++++++++++++" |
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| 251 | |
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| 252 | s <- prove test |
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| 253 | if P.not s then |
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| 254 | M.return [name] |
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| 255 | else |
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| 256 | M.return [] |
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| 257 | |
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| 258 | let f = P.concat failed |
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| 259 | if List.null f then |
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| 260 | P.putStrLn "All ok." |
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| 261 | else do |
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| 262 | P.putStr $ "\n\nFailed test cases: " |
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| 263 | P.putStrLn $ List.intercalate ", " f |
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