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2920d0f474
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54
day14.hs
54
day14.hs
@@ -3,41 +3,40 @@
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import Data.Maybe (fromJust)
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import Data.Set (Set)
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import qualified Data.Set as S (fromList, insert, lookupMax, member, notMember, union)
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import qualified Data.Set as S (fromList, insert, map, member, notMember, union)
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import Data.Text (Text)
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import qualified Data.Text as T (lines, splitOn, words)
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import qualified Data.Text.Read as T (decimal)
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import Lib (readFile')
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-- ok this is it, this takes 4.54s, kms
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-- this can probably be improved using hashtables in ST monad but will try that later
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-- times can be improved greatly using Data.HashSet in unordered-containers, but i wont use it
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main :: IO ()
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main = do
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input <- parse . T.lines <$> readFile' "day14.in"
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let mx = fst . fromJust $ S.lookupMax input
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let mx = maximum $ S.map snd input
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putStr "Q1: "
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print $ sand (0, 500) input 0 mx Q1
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print $ sand (500, 0) input 0 mx Q1
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putStr "Q2: "
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print $ sand (0, 500) input 0 (mx + 2) Q2
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print $ sand (500, 0) input 0 (mx + 2) Q2
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type Coord = (Int, Int)
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data Q = Q1 | Q2 deriving (Eq)
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sand :: (Int, Int) -> Set (Int, Int) -> Int -> Int -> Q -> Int
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sand (y, x) rocks soFar mx q
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| (q == Q1 && y > mx) || S.member (y, x) rocks = soFar
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| q == Q2 && y + 1 == mx = sand (0, 500) (S.insert (y, x) rocks) (soFar + 1) mx q
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| S.notMember (y + 1, x) rocks = sand (y + 1, x) rocks soFar mx q
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| S.notMember (y + 1, x - 1) rocks = sand (y + 1, x - 1) rocks soFar mx q
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| S.notMember (y + 1, x + 1) rocks = sand (y + 1, x + 1) rocks soFar mx q
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| otherwise = sand (0, 500) (S.insert (y, x) rocks) (soFar + 1) mx q
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sand :: Coord -> Set Coord -> Int -> Int -> Q -> Int
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sand (x, y) rocks soFar mx q
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| (q == Q1 && y > mx) || S.member (x, y) rocks = soFar
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| q == Q2 && y + 1 == mx = sand (500, 0) (S.insert (x, y) rocks) (soFar + 1) mx q
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| S.notMember (x, y + 1) rocks = sand (x, y + 1) rocks soFar mx q
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| S.notMember (x - 1, y + 1) rocks = sand (x - 1, y + 1) rocks soFar mx q
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| S.notMember (x + 1, y + 1) rocks = sand (x + 1, y + 1) rocks soFar mx q
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| otherwise = sand (500, 0) (S.insert (x, y) rocks) (soFar + 1) mx q
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parse :: [Text] -> Set (Int, Int)
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parse :: [Text] -> Set Coord
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parse =
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S.fromList
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. concat
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. map
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. concatMap
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( ranges
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. map
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( (\[x, y] -> (x, y))
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@@ -48,14 +47,13 @@ parse =
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. T.words
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)
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where
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ranges :: [(Int, Int)] -> [(Int, Int)]
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ranges :: [Coord] -> [Coord]
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ranges xs =
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concat $
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foldr
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( \((a, b), (x, y)) z ->
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if a == x
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then zip [min b y .. max b y] (repeat a) : z
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else zip (repeat b) [min a x .. max a x] : z
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)
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[]
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(zip xs (tail xs))
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foldr
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( \((a, b), (x, y)) z ->
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if a == x
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then zip (repeat a) [min b y .. max b y] ++ z
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else zip [min a x .. max a x] (repeat b) ++ z
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)
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[]
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(zip xs (tail xs))
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86
day15.hs
Normal file
86
day15.hs
Normal file
@@ -0,0 +1,86 @@
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE ViewPatterns #-}
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import Data.List (nub, sort)
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import Data.Text (Text)
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import qualified Data.Text as T (lines, null, split)
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import qualified Data.Text.Read as T (decimal, signed)
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import Lib (readFile')
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-- broh this is so slow ~ 20s, -O2 is less than 2s though???????
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-- will optimize this later, along with last 10 days *sigh*
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main :: IO ()
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main = do
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input <- map parse . T.lines <$> readFile' "day15.in"
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putStr "Q1: "
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print $ q1 input 2000000
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putStr "Q2: "
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print $ q2 input input 0 4000000
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type Entity = (Int, Int, Int, Int, Int)
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q1 :: [Entity] -> Int -> Int
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q1 input n = mergeRanges getRanges
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where
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mergeRanges :: [(Int, Int)] -> Int
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mergeRanges [(x0, x1)] = x1 - x0 + 1
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mergeRanges ((x0, x1) : (x2, x3) : xs)
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| x2 - x1 < 2 = mergeRanges $ (x0, max x1 x3) : xs
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| otherwise = x1 - x0 + 1 + mergeRanges ((x2, x3) : xs)
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getRanges :: [(Int, Int)]
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getRanges =
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sort $
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foldr
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( \(x, y, r, a, b) xs -> case r - abs (n - y) of
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dx
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| dx < 0 -> xs
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| n == b -> (x - dx, a - 1) : (a + 1, x + dx) : xs
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| otherwise -> (x - dx, x + dx) : xs
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)
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[]
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input
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q2 :: [Entity] -> [Entity] -> Int -> Int -> Int
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q2 input@((x, y, succ -> e, a, b) : xs) all mn mx =
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let (x', y') = dirs [(-1, -1), (1, -1), (1, 1), (-1, 1)]
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in if (x', y') == (mn - 1, mn - 1) then q2 xs all mn mx else x' * mx + y'
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where
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dirs :: [(Int, Int)] -> (Int, Int)
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dirs [] = (mn - 1, mn - 1)
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dirs ((dx, dy) : ds) =
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let b = border (dx, dy) (if dx * dy > 0 then [0 .. e - 1] else [e, e - 1 .. 1])
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in if b == (mn - 1, mn - 1) then dirs ds else b
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border :: (Int, Int) -> [Int] -> (Int, Int)
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border _ [] = (mn - 1, mn - 1)
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border (dx, dy) (b : bs) =
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let (x', y') = (x + dx * b, y + dy * (e - b))
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in if not (contains (x', y') all) && x' >= mn && x' <= mx && y' >= mn && y' <= mx
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then (x', y')
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else border (dx, dy) bs
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contains :: (Int, Int) -> [Entity] -> Bool
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contains (a', b') = any (\(x, y, r, a, b) -> r >= abs (b' - y) + abs (a' - x))
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parse :: Text -> Entity
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parse =
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( \[ "Sensor",
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"at",
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"x",
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T.signed T.decimal -> Right (x, ""),
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"y",
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T.signed T.decimal -> Right (y, ""),
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"closest",
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"beacon",
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"is",
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"at",
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"x",
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T.signed T.decimal -> Right (a, ""),
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"y",
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T.signed T.decimal -> Right (b, "")
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] -> (x, y, abs (b - y) + abs (a - x), a, b)
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)
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. filter (not . T.null)
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. T.split (`elem` (":=, " :: [Char]))
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