@@ -37,3 +37,9 @@ executable day3
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hs-source-dirs: src
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main-is: Day3.hs
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build-depends: libaoc
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executable day4
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import: common
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hs-source-dirs: src
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main-is: Day4.hs
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build-depends: libaoc
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21
lib/AoC.hs
21
lib/AoC.hs
@@ -1,10 +1,29 @@
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module AoC where
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import Text.Parsec
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import Data.List (transpose)
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import Text.Parsec (ParseError)
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-- extract Right value after parsing
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extract :: Either ParseError a -> a
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extract (Left err) = error ("Parsing failed: " ++ show err)
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extract (Right val) = val
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-- count elements in a list
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count :: (Eq a) => a -> [a] -> Int
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count x = length . filter (x ==)
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-- extract diagonals from a matrix
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diagonals :: [[a]] -> [[a]]
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diagonals =
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(++)
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<$> reverse . transpose . zipWith drop [0 ..]
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<*> transpose . zipWith drop [1 ..] . transpose
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-- get indices of substring sub in str
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findSubstrings :: [Char] -> [Char] -> [Int]
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findSubstrings sub str = findSubstrings' sub str 0
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where
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findSubstrings' _ [] _ = []
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findSubstrings' sub str@(x : xs) idx
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| take (length sub) str == sub = idx : findSubstrings' sub xs (idx + 1)
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| otherwise = findSubstrings' sub xs (idx + 1)
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63
src/Day4.hs
Normal file
63
src/Day4.hs
Normal file
@@ -0,0 +1,63 @@
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module Main where
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import qualified AoC as A (diagonals, findSubstrings)
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import Data.List (intersect, transpose)
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-- |
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-- A.diagonals gives the diagonals of a matrix
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-- A.findSubstrings provides the indices of a substring in a string
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-- We get the number of substrings XMAS and SAMX in all possible ways and add
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part1 :: [[Char]] -> Int
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part1 grid =
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(sum . concat)
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[ map countXmas grid,
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map countXmas $ transpose grid,
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map countXmas $ A.diagonals grid,
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map countXmas $ A.diagonals $ map reverse grid
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]
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where
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countXmas :: [Char] -> Int
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countXmas =
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(+)
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<$> length . A.findSubstrings "XMAS"
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<*> length . A.findSubstrings "SAMX"
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-- |
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-- We get indices of substrings MAS and SAM across only the diagonals
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-- Then we calculate the coordinates of the letter 'A' in those
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-- Then we intersect the lists to find common As
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part2 :: [[Char]] -> Int
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part2 grid =
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let m = length grid
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n = length $ head grid
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-- diagonals = left -> right, top -> bottom
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diags1 = findMas $ A.diagonals grid
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-- diagonals = right -> left, top -> bottom
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diags2 = findMas $ A.diagonals $ map reverse grid
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in length $
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intersect
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-- coordinate calculation for A across diag1 and diag2
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[ if i < n
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then (n - i + diag, diag + 1)
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else (diag + 1, i - n + diag + 2)
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| (i, diags) <- zip [0 ..] diags1,
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diag <- diags
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]
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[ if i < m
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then (i - diag - 1, diag + 1)
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else (m - diag - 2, i - m + diag + 2)
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| (i, diags) <- zip [0 ..] diags2,
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diag <- diags
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]
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where
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-- find indices of MAS and SAM across diagonals
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findMas :: [[Char]] -> [[Int]]
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findMas = map ((++) <$> A.findSubstrings "MAS" <*> A.findSubstrings "SAM")
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main :: IO ()
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main =
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do
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raw <- lines <$> readFile "./inputs/day4.in"
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putStr "Part 1: " >> print (part1 raw)
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putStr "Part 2: " >> print (part2 raw)
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