Solve round 2 and 3 for 2024
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43
2024/puzzle-2.py
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43
2024/puzzle-2.py
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lines = []
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with open("2-input", "r") as fp:
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lines = fp.readlines()
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levels = [list(map(int, line.strip().split(" "))) for line in lines]
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def is_good_level_1(level):
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# 1) Is decreasing
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# 2) Sliding window of two cells (x, y) => 1 <= |x-y| <= 3
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# figure out if decreasing from first two
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decreasing = level[0] > level[1]
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for i in range(len(level) - 1):
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x = level[i]
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y = level[i + 1]
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diff = abs(x - y)
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if (decreasing and x < y) or (not decreasing and x > y) or not (diff <= 3 and diff >= 1):
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return False
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return True
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good_levels = [level for level in levels if is_good_level_1(level)]
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print(f"Round 1: {len(good_levels)}")
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def check_two_levels(x, y, decreasing):
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diff = abs(x - y)
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return not ((decreasing and x < y) or (not decreasing and x > y) or not (diff <= 3 and diff >= 1))
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def is_good_level_2(level):
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# 1) Is decreasing
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# 2) Sliding window of two cells (x, y) => 1 <= |x-y| <= 3
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# 3) Can remove any one item to make it safe
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ret = is_good_level_1(level)
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if not ret:
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# Consider slices of the level and check if they're good
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slices = [level[:i] + level[i + 1:] for i in range(len(level))]
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for s in slices:
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if is_good_level_1(s):
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return True
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else:
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return True
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return False
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good_levels = [level for level in levels if is_good_level_2(level)]
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print(f"Round 2: {len(good_levels)}")
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58
2024/puzzle-3.lisp
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58
2024/puzzle-3.lisp
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(load "util.lisp")
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(defparameter input (uiop:read-file-string "3-input"))
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(defun is-good-mul (str)
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(let* ((delimiter (search "," str))
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(end (search ")" str)))
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(if (or (null delimiter) (null end)
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(> delimiter end)
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(not (eq #\( (char str 3))))
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nil
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(let* ((first-arg (subseq str 4 delimiter))
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(second-arg (subseq str (1+ delimiter) end)))
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(and (every #'digit-char-p first-arg)
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(every #'digit-char-p second-arg))))))
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(defun trim-mul (str)
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(subseq str 0 (1+ (search ")" str))))
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(defun parse-mul (str)
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(let ((start (search "(" str))
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(middle (search "," str))
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(end (search ")" str)))
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(list (parse-integer (subseq str (1+ start) middle))
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(parse-integer (subseq str (1+ middle) end)))))
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(defun parse-input-muls (line)
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(let ((possible (search-all "mul" line)))
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(--> (cdr possible)
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(append _ (list (length line)))
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(mapcar (lambda (z1 z2) (cons z1 (subseq line z1 z2))) possible _)
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(remove-if-not (lambda (x) (is-good-mul (cdr x))) _)
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(mapcar (lambda (x) (cons (car x) (trim-mul (cdr x)))) _)
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(mapcar (lambda (x) (cons (car x) (parse-mul (cdr x)))) _))))
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(format t "Round 1: ~a~%"
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(loop for (pos x y) in (parse-input-muls input)
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sum (* x y)))
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(defun parse-input-conds (input)
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(let ((dos (search-all "do()" input))
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(donts (search-all "don't()" input)))
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(cons
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'(do . 0)
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(sort (append (mapcar (lambda (x) (cons 'do x)) dos)
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(mapcar (lambda (x) (cons 'dont x)) donts))
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(lambda (x y) (< (cdr x) (cdr y)))))))
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(defun current-cond (pos conds)
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(caar (last (remove-if (lambda (x) (> (cdr x) pos)) conds))))
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(format t "Round 2: ~a~%"
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(let ((conds (parse-input-conds input))
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(muls (parse-input-muls input)))
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(loop for (pos x y) in muls
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for current = (current-cond pos conds)
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if (eq current 'do)
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sum (* x y))))
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