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@ -19,6 +19,7 @@
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(define-values (head tail) (splitf-at others (compose1 not pred)))
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(define-values (head tail) (splitf-at others (compose1 not pred)))
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(cons (append (or car-match null) head) (slicef-at tail pred force?))]))
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(cons (append (or car-match null) head) (slicef-at tail pred force?))]))
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(define+provide/contract (slice-at xs len [force? #f])
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(define+provide/contract (slice-at xs len [force? #f])
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((list? (and/c integer? positive?)) (boolean?) . ->* . list-of-lists?)
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((list? (and/c integer? positive?)) (boolean?) . ->* . list-of-lists?)
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(cond
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(cond
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@ -26,17 +27,20 @@
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[(len . > . (length xs)) (if force? null (list xs))]
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[(len . > . (length xs)) (if force? null (list xs))]
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[else (cons (take xs len) (slice-at (drop xs len) len force?))]))
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[else (cons (take xs len) (slice-at (drop xs len) len force?))]))
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(define+provide/contract (filter-split xs split-test)
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(define+provide/contract (filter-split xs split-test)
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(list? predicate/c . -> . list-of-lists?)
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(list? predicate/c . -> . list-of-lists?)
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(let loop ([xs (trimf xs split-test)] [acc '()])
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(define-values (last-list list-of-lists)
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(if (empty? xs)
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(for/fold ([current-list empty][list-of-lists empty])
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(reverse acc) ; because accumulation is happening backward
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([x (in-list xs)])
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(let-values ([(item rest)
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(if (split-test x)
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;; drop matching elements from front
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(values empty (if (not (empty? current-list))
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;; then split on nonmatching
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(cons (reverse current-list) list-of-lists)
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;; = nonmatching item + other elements (which will start with matching)
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list-of-lists))
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(splitf-at (dropf xs split-test) (compose1 not split-test))])
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(values (cons x current-list) list-of-lists))))
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(loop rest (cons item acc))))))
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(reverse (if (not (empty? last-list))
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(cons (reverse last-list) list-of-lists)
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list-of-lists)))
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(define+provide/contract (frequency-hash x)
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(define+provide/contract (frequency-hash x)
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