340 lines
7.2 KiB
Plaintext
340 lines
7.2 KiB
Plaintext
!import "base" !Local
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_ = t
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matchList = a b : triage a _ b
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emptyList? = matchList true (_ _ : false)
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head = matchList t (head _ : head)
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tail = matchList t (_ tail : tail)
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append_ self xs ys =
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matchList
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ys
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(h r : pair h (self r ys))
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xs
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append = xs ys : y append_ xs ys
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lExist?_ self x xs =
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matchList
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false
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(h r : or? (equal? x h) (self x r))
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xs
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lExist? = x xs : y lExist?_ x xs
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map_ self l f =
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matchList
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t
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(h r : pair (f h) (self r f))
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l
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map = f l : y map_ l f
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filter_ self l f =
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matchList
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t
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(h r :
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matchBool
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(pair h (self r f))
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(self r f)
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(f h))
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l
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filter = f l : y filter_ l f
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foldl_ self l f acc =
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matchList
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acc
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(h r : self r f (f acc h))
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l
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foldl = f x l : y foldl_ l f x
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foldr_ self l f x =
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matchList
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x
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(h r : f (self r f x) h)
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l
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foldr = f x l : y foldr_ l f x
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length_ self xs =
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matchList
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0
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(_ r : succ (self r))
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xs
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length = xs : y length_ xs
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reverse_ self xs acc =
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matchList
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acc
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(h r : self r (pair h acc))
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xs
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reverse = xs : y reverse_ xs t
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snoc_ self x xs =
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matchList
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(pair x t)
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(h r : pair h (self x r))
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xs
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snoc = x xs : y snoc_ x xs
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count_ self x xs =
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matchList
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0
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(h r :
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matchBool
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(succ (self x r))
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(self x r)
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(equal? x h))
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xs
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count = x xs : y count_ x xs
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last_ self xs =
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matchList
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t
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(h r :
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matchBool
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h
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(self r)
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(emptyList? r))
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xs
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last = xs : y last_ xs
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all?_ self pred xs =
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matchList
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true
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(h r : and? (pred h) (self pred r))
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xs
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all? = pred xs : y all?_ pred xs
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any?_ self pred xs =
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matchList
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false
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(h r : or? (pred h) (self pred r))
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xs
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any? = pred xs : y any?_ pred xs
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intersect = xs ys : filter (x : lExist? x ys) xs
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nth_ self xs n i =
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matchList
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t
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(h r :
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matchBool
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h
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(self r n (succ i))
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(equal? i n))
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xs
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nth = n xs : y nth_ xs n 0
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headMaybe = matchList nothing (h _ : just h)
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lastMaybe_ self xs =
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matchList
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nothing
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(h r :
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matchBool
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(just h)
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(self r)
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(emptyList? r))
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xs
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lastMaybe = xs : y lastMaybe_ xs
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nthMaybe_ self xs n i =
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matchList
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nothing
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(h r :
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matchBool
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(just h)
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(self r n (succ i))
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(equal? i n))
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xs
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nthMaybe = n xs : y nthMaybe_ xs n 0
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take_ self xs n i =
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matchList
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t
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(h r :
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matchBool
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t
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(pair h (self r n (succ i)))
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(equal? i n))
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xs
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take = n xs : y take_ xs n 0
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drop_ self xs n i =
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matchBool
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xs
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(matchList
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t
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(_ r : self r n (succ i))
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xs)
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(equal? i n)
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drop = n xs : y drop_ xs n 0
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splitAt = n xs : pair (take n xs) (drop n xs)
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concatMap_ self f xs =
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matchList
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t
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(h r : append (f h) (self f r))
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xs
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concatMap = f xs : y concatMap_ f xs
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find_ self pred xs =
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matchList
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nothing
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(h r :
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matchBool
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(just h)
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(self pred r)
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(pred h))
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xs
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find = pred xs : y find_ pred xs
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partition_ self pred xs trues falses =
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matchList
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(pair (reverse trues) (reverse falses))
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(h r :
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matchBool
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(self pred r (pair h trues) falses)
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(self pred r trues (pair h falses))
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(pred h))
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xs
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partition = pred xs : y partition_ pred xs t t
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strLength = length
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strAppend = append
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strEq? = equal?
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strEmpty? = emptyList?
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startsWith?_ self prefix input =
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matchList
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true
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(ph pr :
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matchList
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false
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(sh sr :
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matchBool
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(self pr sr)
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false
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(equal? ph sh))
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input)
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prefix
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startsWith? = prefix input : y startsWith?_ prefix input
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endsWith? = prefix str : startsWith? (reverse prefix) (reverse str)
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contains?_ self needle haystack =
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matchBool
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true
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(matchList
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false
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(_ r : self needle r)
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haystack)
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(startsWith? needle haystack)
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contains? = needle haystack : y contains?_ needle haystack
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-- ---------------------------------------------------------------------------
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-- Generic separators
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--
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-- `lines`, `unlines`, `words` and `unwords` at the bottom of this section are
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-- the byte-valued special cases of these primitives.
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--
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-- Joining takes any separator; splitting takes one byte. Separators are removed
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-- rather than kept, and empty fields are preserved.
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--
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-- The workers below follow notes/tricu-normalization-rules.md: consumed data
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-- first, lazy eliminators around every recursive branch, `y` only inside the
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-- public wrapper, and `pair`-only state updates.
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-- ---------------------------------------------------------------------------
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takeWhile_ self xs f =
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lazyList
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(_ : t)
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(h r :
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lazyBool
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(_ : pair h (self r f))
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(_ : t)
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(f h))
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xs
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takeWhile = f xs : y takeWhile_ xs f
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dropWhile_ self xs f =
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lazyList
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(_ : t)
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(h r :
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lazyBool
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(_ : self r f)
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(_ : pair h r)
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(f h))
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xs
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dropWhile = f xs : y dropWhile_ xs f
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-- Byte-level whitespace only: space and horizontal tab (HTTP OWS).
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spaceByte? = b : equal? b 32
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tabByte? = b : equal? b 9
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trimByte? = b : or? (spaceByte? b) (tabByte? b)
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trim = xs : dropWhile trimByte? (reverse (dropWhile trimByte? (reverse xs)))
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intercalate_ self xs sep =
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lazyList
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(_ : t)
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(h r :
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lazyBool
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(_ : h)
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(_ : append h (append sep (self r sep)))
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(emptyList? r))
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xs
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intercalate = sep xs : y intercalate_ xs sep
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-- Separator after every field, including the last one. Line-oriented formats
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-- want this: `joinSuffix "\n" xs` terminates the final line while
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-- `intercalate "\n" xs` does not.
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joinSuffix_ self xs sep =
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lazyList
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(_ : t)
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(h r : append (append h sep) (self r sep))
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xs
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joinSuffix = sep xs : y joinSuffix_ xs sep
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-- Split on a single byte. A separator byte is never stored, so the state
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-- updates stay `pair`s and every recursive argument is a variable: the input is
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-- walked exactly once and the fields are reversed back once, when it ends.
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--
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-- Splitting on a multi-byte separator is deliberately not here. Detecting a
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-- separator longer than a byte means re-walking the remaining input at every
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-- split point (or splicing the field), which is quadratic in the best case and
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-- blew up when tried. `http.tri` wants CRLF and `:` splits; that wants a shape
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-- where the separator drives the recursion instead of the input.
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--
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-- Empty fields are preserved: `splitOnByte 58 "a::b"` is ["a" "" "b"].
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splitByte_ self str byte acc current =
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lazyList
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(_ : map reverse (reverse (pair current acc)))
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(h r :
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lazyBool
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(_ : self r byte (pair current acc) t)
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(_ : self r byte acc (pair h current))
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(equal? h byte))
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str
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splitOnByte = byte str : y splitByte_ str byte t t
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-- Every one of these keeps its arguments bound: partially applying a
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-- multi-argument function at the top level leaves a fixed point exposed.
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lines = str : splitOnByte 10 str
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unlines = xs : joinSuffix "\n" xs
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-- Runs of separators collapse: empty fields are dropped.
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words = str : filter (w : not? (emptyList? w)) (splitOnByte 32 str)
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unwords = xs : intercalate " " xs
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zipWith_ self f xs ys =
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matchList
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t
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(xh xt :
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matchList
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t
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(yh yt : pair (f xh yh) (self f xt yt))
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ys)
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xs
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zipWith = f xs ys : y zipWith_ f xs ys
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