277 lines
6.3 KiB
AppleScript
277 lines
6.3 KiB
AppleScript
-- thueMorse :: Int -> [Int]
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on thueMorse(base)
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-- Non-finite sequence of Thue-Morse terms for a given base.
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fmapGen(baseDigitsSumModBase(base), enumFrom(0))
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end thueMorse
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-- baseDigitsSumModBase :: Int -> Int -> Int
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on baseDigitsSumModBase(b)
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script
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on |λ|(n)
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script go
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on |λ|(x)
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if 0 < x then
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Just(Tuple(x mod b, x div b))
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else
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Nothing()
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end if
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end |λ|
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end script
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sum(unfoldl(go, n)) mod b
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end |λ|
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end script
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end baseDigitsSumModBase
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-------------------------- TEST ---------------------------
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on run
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script rjust
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on |λ|(x)
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justifyRight(2, space, str(x))
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end |λ|
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end script
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script test
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on |λ|(n)
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|λ|(n) of rjust & " -> " & ¬
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showList(map(rjust, take(25, thueMorse(n))))
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end |λ|
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end script
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unlines({"First 25 fairshare terms for N players:"} & ¬
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map(test, {2, 3, 5, 11}))
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end run
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-------------------- GENERIC FUNCTIONS --------------------
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-- Just :: a -> Maybe a
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on Just(x)
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-- Constructor for an inhabited Maybe (option type) value.
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-- Wrapper containing the result of a computation.
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{type:"Maybe", Nothing:false, Just:x}
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end Just
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-- Nothing :: Maybe a
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on Nothing()
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-- Constructor for an empty Maybe (option type) value.
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-- Empty wrapper returned where a computation is not possible.
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{type:"Maybe", Nothing:true}
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end Nothing
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-- Tuple (,) :: a -> b -> (a, b)
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on Tuple(a, b)
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-- Constructor for a pair of values, possibly of two different types.
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{type:"Tuple", |1|:a, |2|:b, length:2}
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end Tuple
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-- enumFrom :: Enum a => a -> [a]
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on enumFrom(x)
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script
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property v : missing value
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property blnNum : class of x is not text
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on |λ|()
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if missing value is not v then
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if blnNum then
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set v to 1 + v
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else
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set v to succ(v)
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end if
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else
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set v to x
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end if
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return v
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end |λ|
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end script
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end enumFrom
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-- fmapGen <$> :: (a -> b) -> Gen [a] -> Gen [b]
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on fmapGen(f, gen)
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script
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property g : mReturn(f)
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on |λ|()
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set v to gen's |λ|()
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if v is missing value then
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v
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else
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g's |λ|(v)
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end if
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end |λ|
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end script
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end fmapGen
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-- foldl :: (a -> b -> a) -> a -> [b] -> a
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on foldl(f, startValue, xs)
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tell mReturn(f)
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set v to startValue
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set lng to length of xs
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repeat with i from 1 to lng
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set v to |λ|(v, item i of xs, i, xs)
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end repeat
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return v
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end tell
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end foldl
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-- intercalateS :: String -> [String] -> String
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on intercalate(delim, xs)
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set {dlm, my text item delimiters} to ¬
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{my text item delimiters, delim}
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set s to xs as text
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set my text item delimiters to dlm
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s
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end intercalate
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-- justifyRight :: Int -> Char -> String -> String
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on justifyRight(n, cFiller, s)
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if n > length of s then
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text -n thru -1 of ((replicate(n, cFiller) as text) & s)
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else
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s
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end if
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end justifyRight
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-- map :: (a -> b) -> [a] -> [b]
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on map(f, xs)
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-- The list obtained by applying f
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-- to each element of xs.
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tell mReturn(f)
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set lng to length of xs
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set lst to {}
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repeat with i from 1 to lng
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set end of lst to |λ|(item i of xs, i, xs)
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end repeat
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return lst
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end tell
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end map
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-- mReturn :: First-class m => (a -> b) -> m (a -> b)
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on mReturn(f)
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-- 2nd class handler function lifted into 1st class script wrapper.
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if script is class of f then
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f
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else
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script
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property |λ| : f
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end script
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end if
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end mReturn
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-- Egyptian multiplication - progressively doubling a list, appending
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-- stages of doubling to an accumulator where needed for binary
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-- assembly of a target length
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-- replicate :: Int -> a -> [a]
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on replicate(n, a)
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set out to {}
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if 1 > n then return out
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set dbl to {a}
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repeat while (1 < n)
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if 0 < (n mod 2) then set out to out & dbl
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set n to (n div 2)
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set dbl to (dbl & dbl)
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end repeat
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return out & dbl
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end replicate
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-- showList :: [a] -> String
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on showList(xs)
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"[" & intercalate(",", map(my str, xs)) & "]"
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end showList
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-- str :: a -> String
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on str(x)
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x as string
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end str
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-- sum :: [Num] -> Num
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on sum(xs)
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script add
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on |λ|(a, b)
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a + b
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end |λ|
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end script
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foldl(add, 0, xs)
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end sum
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-- take :: Int -> [a] -> [a]
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-- take :: Int -> String -> String
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on take(n, xs)
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set c to class of xs
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if list is c then
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if 0 < n then
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items 1 thru min(n, length of xs) of xs
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else
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{}
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end if
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else if string is c then
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if 0 < n then
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text 1 thru min(n, length of xs) of xs
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else
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""
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end if
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else if script is c then
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set ys to {}
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repeat with i from 1 to n
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set v to |λ|() of xs
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if missing value is v then
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return ys
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else
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set end of ys to v
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end if
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end repeat
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return ys
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else
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missing value
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end if
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end take
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-- > unfoldl (\b -> if b == 0 then Nothing else Just (b, b-1)) 10
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-- > [1,2,3,4,5,6,7,8,9,10]
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-- unfoldl :: (b -> Maybe (b, a)) -> b -> [a]
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on unfoldl(f, v)
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set xr to Tuple(v, v) -- (value, remainder)
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set xs to {}
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tell mReturn(f)
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repeat -- Function applied to remainder.
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set mb to |λ|(|2| of xr)
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if Nothing of mb then
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exit repeat
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else -- New (value, remainder) tuple,
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set xr to Just of mb
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-- and value appended to output list.
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set xs to ({|1| of xr} & xs)
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end if
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end repeat
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end tell
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return xs
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end unfoldl
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-- unlines :: [String] -> String
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on unlines(xs)
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-- A single string formed by the intercalation
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-- of a list of strings with the newline character.
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set {dlm, my text item delimiters} to ¬
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{my text item delimiters, linefeed}
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set s to xs as text
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set my text item delimiters to dlm
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s
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end unlines
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