223 lines
4.6 KiB
AppleScript
223 lines
4.6 KiB
AppleScript
------------------------REP-CYCLES-------------------------
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-- repCycles :: String -> [String]
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on repCycles(xs)
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set n to length of xs
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script isCycle
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on |λ|(cs)
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xs = takeCycle(n, cs)
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end |λ|
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end script
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filter(isCycle, tail(inits(take(quot(n, 2), xs))))
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end repCycles
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-- cycleReport :: String -> [String]
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on cycleReport(xs)
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set reps to repCycles(xs)
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if isNull(reps) then
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{xs, "(n/a)"}
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else
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{xs, item -1 of reps}
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end if
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end cycleReport
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---------------------------TEST----------------------------
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on run
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set samples to {"1001110011", "1110111011", "0010010010", ¬
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"1010101010", "1111111111", "0100101101", "0100100", ¬
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"101", "11", "00", "1"}
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unlines(cons("Longest cycle:" & linefeed, ¬
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map(intercalate(" -> "), ¬
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map(cycleReport, samples))))
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end run
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---------------------GENERIC FUNCTIONS---------------------
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-- concat :: [[a]] -> [a] | [String] -> String
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on concat(xs)
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if length of xs > 0 and class of (item 1 of xs) is string then
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set acc to ""
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else
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set acc to {}
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end if
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repeat with i from 1 to length of xs
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set acc to acc & item i of xs
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end repeat
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acc
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end concat
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-- cons :: a -> [a] -> [a]
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on cons(x, xs)
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{x} & xs
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end cons
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-- filter :: (a -> Bool) -> [a] -> [a]
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on filter(f, xs)
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tell mReturn(f)
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set lst to {}
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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 item i of xs
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if |λ|(v, i, xs) then set end of lst to v
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end repeat
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return lst
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end tell
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end filter
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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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-- inits :: [a] -> [[a]]
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-- inits :: String -> [String]
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on inits(xs)
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script elemInit
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on |λ|(_, i, xs)
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items 1 thru i of xs
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end |λ|
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end script
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script charInit
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on |λ|(_, i, xs)
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text 1 thru i of xs
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end |λ|
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end script
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if class of xs is string then
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{""} & map(charInit, xs)
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else
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{{}} & map(elemInit, xs)
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end if
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end inits
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-- intercalate :: Text -> [Text] -> Text
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on intercalate(strText)
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script
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on |λ|(xs)
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set {dlm, my text item delimiters} to {my text item delimiters, strText}
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set strJoined to xs as text
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set my text item delimiters to dlm
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return strJoined
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end |λ|
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end script
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end intercalate
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-- map :: (a -> b) -> [a] -> [b]
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on map(f, 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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-- Lift 2nd class handler function into 1st class script wrapper
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-- mReturn :: Handler -> Script
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on mReturn(f)
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if class of f is script 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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-- isNull :: [a] -> Bool
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on isNull(xs)
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xs = {}
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end isNull
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-- min :: Ord a => a -> a -> a
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on min(x, y)
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if y < x then
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y
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else
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x
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end if
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end min
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-- quot :: Integral a => a -> a -> a
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on quot(n, m)
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n div m
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end quot
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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 n < 1 then return out
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set dbl to {a}
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repeat while (n > 1)
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if (n mod 2) > 0 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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-- tail :: [a] -> [a]
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on tail(xs)
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if length of xs > 1 then
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items 2 thru -1 of xs
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else
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{}
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end if
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end tail
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-- take :: Int -> [a] -> [a]
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on take(n, xs)
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if class of xs is string then
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if n > 0 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
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if n > 0 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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end if
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end take
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-- takeCycle :: Int -> [a] -> [a]
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on takeCycle(n, xs)
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set lng to length of xs
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if lng ≥ n then
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set cycle to xs
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else
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set cycle to concat(replicate((n div lng) + 1, xs))
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end if
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if class of xs is string then
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items 1 thru n of cycle as string
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else
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items 1 thru n of cycle
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end if
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end takeCycle
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-- unlines :: [String] -> String
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on unlines(xs)
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|λ|(xs) of intercalate(linefeed)
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end unlines
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