101 lines
2.9 KiB
Scheme
101 lines
2.9 KiB
Scheme
(import (rnrs))
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(define-syntax curry
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(syntax-rules ()
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[(_ f x ...) (lambda (y) (f x ... y))]))
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(define (mapmap f lst) (map (curry map f) lst))
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(define (split-at ch str)
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(let [(len (string-length str))]
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(let loop [(start 0) (end 0) (acc '())]
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(cond
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[(>= start len)
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(reverse (if (= start end) (cons "" acc) acc))]
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[(>= end len)
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(reverse (cons (substring str start len) acc))]
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[(char=? ch (string-ref str end))
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(loop (+ end 1) (+ end 1) (cons (substring str start end) acc))]
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[else (loop start (+ end 1) acc)]))))
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(define (trim str)
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(let loop [(i 0)]
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(if (char-whitespace? (string-ref str i))
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(loop (+ i 1))
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(let loop [(j (- (string-length str) 1))]
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(if (char-whitespace? (string-ref str j))
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(loop (- j 1))
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(substring str i (+ j 1)))))))
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(define (one-col str)
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(let* [(str (trim str))
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(words (split-at #\space str))]
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(cons (string->symbol (cadr words)) (string->number (car words)))))
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(define (split-line line)
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(let* [(line (split-at #\: line))
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(id (car line)) (line (cadr line))
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(id (string->number (cadr (split-at #\space id))))
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(draws (split-at #\; line))
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(colours (map (curry split-at #\,) draws))
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(pairs (mapmap one-col colours))]
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(cons id pairs)))
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(define (max-count col)
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(case col [(red) 12] [(green) 13] [(blue) 14]))
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(define-syntax case-list
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(syntax-rules (nil cons)
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[(_ lst [nil n ...] [(cons x xs) c ...])
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(if (null? lst)
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(begin n ...)
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(let [(x (car lst)) (xs (cdr lst))] c ...))]
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[(_ lst [(cons x xs) c ...] [nil n ...])
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(case-list lst [nil n ...] [(cons x xs) c ...])]))
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(define-syntax let-pair
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(syntax-rules ()
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[(_ [(x y) pair] body ...)
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(let [(x (car pair)) (y (cdr pair))] body ...)]))
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(define (valid-draw draws)
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(case-list draws
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[nil #t]
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[(cons this rest)
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(let-pair [(col count) this]
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(if (<= count (max-count col)) (valid-draw rest) #f))]))
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(define (valid line)
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(let-pair [(id draws) line]
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(if (for-all valid-draw draws) id #f)))
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(define (read-file path)
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(let* [(str (call-with-input-file path get-string-all))]
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(map split-line
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(filter (lambda (s) (not (string=? s "")))
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(split-at #\newline str)))))
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(define (total lines)
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(apply + (map (lambda (line) (or (valid line) 0)) lines)))
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(define input (read-file "in/day2"))
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(define (part1) (total input))
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(display (cons "part1" (part1))) (newline)
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(define (min-cubes draws)
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(fold-left
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(lambda (a b)
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(let* [(get (lambda (col draw) (cond [(assq col draw) => cdr] [else 0])))
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(get-max (lambda (c) (cons c (max (get c a) (get c b)))))]
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(list (get-max 'red) (get-max 'green) (get-max 'blue))))
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'() draws))
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(define (power line)
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(fold-left (lambda (n c) (* n (cdr c))) 1 (min-cubes (cdr line))))
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(define (part2) (apply + (map power input)))
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(display (cons "part2" (part2))) (newline)
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