push garbage code

This commit is contained in:
Adam Jeniski 2023-12-14 12:36:34 -05:00
parent 6c967062d9
commit da6af5f342
3 changed files with 266 additions and 0 deletions

59
2023/src/day12.clj Normal file
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(ns day12
(:require
[clojure.string :as str]
[core :refer [get-puzzle-input]]))
(defn parse-line [line] (-> (str/split line #" ")
(update 1 #(->> (str/split % #",")
(mapv parse-long)))))
(defn make-anso []
(with-local-vars
[ans (memoize
(fn f [dots blocks i bi current]
(let [len-blocks (count blocks)
dot_i (when (< i (count dots)) (get dots i))]
(if (= i (count dots))
(cond (and (= bi len-blocks)
(= current 0))
1
(and (= bi (dec len-blocks))
(= current (get blocks bi)))
1
:else
0)
(->> [\. \#]
(map #(if (or (= dot_i %)
(= dot_i \?))
(cond (and (= % \.)
(= current 0))
(f dots blocks (inc i) bi 0)
(and (= % \.)
(> current 0)
(< bi len-blocks)
(= (get blocks bi) current))
(f dots blocks (inc i) (inc bi) 0)
(= % \#)
(f dots blocks (inc i) bi (inc current))
:else 0)
0))
(reduce +))))))]
(.bindRoot ans @ans)
@ans))
(->> (get-puzzle-input 12)
(map parse-line)
(map #((make-anso) (first %) (second %) 0 0 0))
(reduce +))
(->> (get-puzzle-input 12)
(map parse-line)
(mapv (fn [[s cnts]]
[(str/join (interpose "?" (repeat 5 s)))
(vec (apply concat (repeat 5 cnts)))]))
(pmap #((make-anso) (first %) (second %) 0 0 0))
(reduce +))

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2023/src/day13.clj Normal file
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(ns day13
(:require
[clojure.string :refer [split-lines]]
[core :refer [get-puzzle-input]]))
(def input (->> (get-puzzle-input 13)
(partition-by empty?)
(filter (comp not-empty first))))
(def sample-input (->> (split-lines "#.##..##.
..#.##.#.
##......#
##......#
..#.##.#.
..##..##.
#.#.##.#.
#...##..#
#....#..#
..##..###
#####.##.
#####.##.
..##..###
#....#..#")
(partition-by empty?)
(filter (comp not-empty first))))
(defn get-col [m c] (->> m
(filter (fn [[[_ col]]]
(= c col)))
(map second)))
(defn get-row [m r] (->> m
(filter (fn [[[row]]] (= r row)))
(map second)))
(defn get-refl-value [m num-rows num-cols & [discriminator]]
(let [rows (range 0 num-rows)
cols (range 0 num-cols)]
(when discriminator
(println discriminator))
(or (->> cols
(map #(for [c (range (min (inc %) (- (dec num-cols) %)))]
[(- % c) (inc (+ % c))]))
(filter not-empty)
(filter #(or (not= (second discriminator) :row)
(not= (first discriminator) %)))
(map (partial map (fn [[a b]]
; (println a b :col discriminator)
(= (get-col m a)
(get-col m b)))))
(map-indexed vector)
(filter (comp (partial every? identity)
second))
(filter second)
first
(#(when %
[(inc (first %)) :col])))
(->> rows
(map #(for [r (range (min (inc %) (- (dec num-rows) %)))]
[(- % r) (inc (+ % r))]))
(filter not-empty)
(filter #(or (not= (second discriminator) :row)
(not= (first discriminator) %)))
(map (partial map (fn [[a b]]
; (println a b :row discriminator)
(= (get-row m a)
(get-row m b)))))
(map-indexed vector)
(filter (comp (partial every? identity)
second))
(filter second)
first
(#(when %
[(inc (first %)) :row]))))))
(defn gen-map [input]
(->> input
(map-indexed (fn [row line]
(map-indexed (fn [col c] [[row col] c])
line)))
(apply concat)
(into (sorted-map))))
;; part 1
(->> input
(map #(get-refl-value (gen-map %)
(count %)
(count (first %))))
(map #(update % 1 (fn [x] (condp = x
:col 1
:row 100))))
(map (partial apply *))
(reduce +))
;; part 2
(->> sample-input
(mapv #(let [num-rows (count %)
num-cols (count (first %))
m (gen-map %)
smudge (get-refl-value m num-rows num-cols)]
(->>
(for [r (range num-rows)
c (range num-cols)]
(let [m-prime (update m [r c] (fn [c] (if (= c \#) \. \#)))
res (get-refl-value m-prime num-rows num-cols smudge)]
res))
(filter identity)
first)))
; (map get-refl-value)
; (map #(update % 1 (fn [x] (condp = x
; :col 1
; :row 100))))
; (map (partial apply *))
; (reduce +)
)

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2023/src/day14.clj Normal file
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(ns day14
(:require
[clojure.string :as str]
[core :refer [get-puzzle-input]]))
(comment
(def input (reverse (str/split-lines "O....#....
O.OO#....#
.....##...
OO.#O....O
.O.....O#.
O.#..O.#.#
..O..#O..O
.......O..
#....###..
#OO..#....")))
(def input (reverse (get-puzzle-input 14))))
(defn sorting-fn [& args]
(apply compare (map (juxt #(* -1 (first %))
#(second %))
args)))
(defn gen-map [input]
(->> input
(map-indexed (fn [row line]
(map-indexed (fn [col c]
[[(inc row) (inc col)] c])
line)))
(apply concat)
(into (sorted-map-by sorting-fn))))
(def empty-space-chars #{\. \O})
(defn get-next-pos [[r c] dir]
(condp = dir
:north [(inc r) c]
:east [r (inc c)]
:south [(dec r) c]
:west [r (dec c)]))
(defn next-os [m os dir]
(->> os
(map (fn [pos]
(let [next-pos (get-next-pos pos dir)
ch (m next-pos)]
(if (and ch
(empty-space-chars ch)
(not (os next-pos)))
next-pos
pos))))
(into (sorted-set-by sorting-fn))))
(defn print-board [m os]
(println)
(doseq [line (->> m
(group-by ffirst)
(sort-by first)
(reverse)
(map second)
(map (partial map #(cond (os (first %)) \O
(= (second %) \O) \.
:else (second %))))
(map #(str/join "" %)))]
(println line)))
(->> (let [m (gen-map input)]
(loop [os (->> m
(filter #(= (second %) \O))
(map first)
(into (sorted-set-by sorting-fn)))
dirs (take (* 1000 4) (cycle [:north :west :south :east]))
dbg 1]
(if (not-empty dirs)
(let [os' (next-os m os (first dirs))]
(if (= os os')
(recur os (rest dirs) (if (= (first dirs) :east)
(do (println dbg (reduce + (map first os)))
(inc dbg))
dbg))
(recur os' dirs dbg)))
os)))
(map first)
(reduce +))
;; pushing garbage code. use prints to uncover cycles. use basic math to find p2 solution