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@ -1,5 +1,3 @@
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(require '[clojure.core.reducers :as r])
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(def input (->> (slurp "./in")
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(def input (->> (slurp "./in")
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(clojure.string/split-lines)
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(clojure.string/split-lines)
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(mapv (partial mapv (comp read-string str)))
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(mapv (partial mapv (comp read-string str)))
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@ -7,38 +5,26 @@
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{[y x] (get-in % [y x])}))
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{[y x] (get-in % [y x])}))
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(into {})))
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(into {})))
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(defn min-distance [dist Q]
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(def dim (apply max (map first (keys input))))
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(r/fold
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(r/monoid
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#(if (< (first %1) (first %2)) %1 %2)
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(constantly [##Inf []]))
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(r/monoid
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#(if (< (first %1) (dist %2)) %1 [(dist %2) %2])
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(constantly [##Inf []]))
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(r/filter
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(partial contains? dist)
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(apply vector Q))))
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(defn find-neighbors [Q u]
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(defn find-neighbors [u]
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(filter #(contains? Q %) [(update u 0 inc)
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(filter #(contains? input %) [(update u 0 inc)
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(update u 0 dec)
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(update u 0 dec)
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(update u 1 inc)
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(update u 1 inc)
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(update u 1 dec)]))
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(update u 1 dec)]))
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(let [dim (apply max (map first (keys input)))]
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(loop [dist (zipmap (keys input) (repeat ##Inf))
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(loop [Q (apply sorted-set (keys input))
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Q {[0 0] 0}]
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dist (assoc (hash-map) [0 0] 0)]
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(when (= 0 (rem (count Q) 500)) (println (count Q)))
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(if (empty? Q)
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(if (empty? Q)
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(println (dist [dim dim]))
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(println (dist [dim dim]))
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(let [[u vu] (min-distance dist Q)]
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(let [[u distu] (first Q)
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(recur
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NN (reduce
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(disj Q vu)
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#(let [dv (+ distu (input %2))]
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(reduce
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#(let [alt (+ u (input %2))]
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(cond-> %1
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(cond-> %1
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(or (not (contains? dist %2)) (< alt (dist %2)))
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(> ((first %1) %2) dv)
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(assoc %2 alt)))
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(-> (update 0 assoc %2 dv)
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dist
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(update 1 assoc %2 dv))))
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(find-neighbors Q vu)))))))
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[dist {}]
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(find-neighbors u))]
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(recur (first NN) (sort-by val < (into (rest Q) (second NN)))))))
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