Finish Day 2 - Part 1
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@ -11,6 +11,8 @@
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"factorise",
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"factorise",
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"foldl",
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"foldl",
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"HLINT",
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"HLINT",
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"mempty",
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"Prec",
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"unrecognised"
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"unrecognised"
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]
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]
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}
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}
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@ -1,25 +1,78 @@
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-- https://adventofcode.com/2023/day/2
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-- https://adventofcode.com/2023/day/2
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{-# LANGUAGE OverloadedStrings #-}
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-- imports
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import Data.Bifunctor (Bifunctor (bimap, second))
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import Data.Char (isSpace)
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import Data.List (foldl', sort, (!!))
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import Data.Text (Text)
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import qualified Data.Text as T
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import qualified Data.Text.IO as T
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main :: IO ()
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main :: IO ()
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main = do
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main = do
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entries <- lines <$> readFile "src/advent_of_code/2023/input2"
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entries <- T.lines <$> T.readFile "src/advent_of_code/2023/input2"
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print "Advent of Code 2023 - Day 2"
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putStrLn "Advent of Code 2023 - Day 2"
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-- print entries
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print ("Part 1: " <> show (solveP1 entries))
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putStrLn ("Part 1: " <> show (solveP1 entries))
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print ("Part 2: " <> show (solveP2 entries))
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-- putStrLn ("Part 2: " <> show (solveP2 entries))
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--
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--
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-- Part 1
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-- Part 1
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--
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--
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solveP1 :: [String] -> [String]
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data Colour
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solveP1 = id
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= Red
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| Green
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| Blue
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deriving (Show, Read, Ord, Eq)
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data Cube c n
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= Cube c n
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deriving (Show, Read, Ord, Eq)
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cubeLessThanLimit :: (Cube Colour Int, Cube Colour Int, Cube Colour Int) -> Cube Colour Int -> Bool
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cubeLessThanLimit (Cube Red n, _, _) (Cube Red v) = v <= n
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cubeLessThanLimit (_, Cube Green n, _) (Cube Green v) = v <= n
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cubeLessThanLimit (_, _, Cube Blue n) (Cube Blue v) = v <= n
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lessThanP1 :: Cube Colour Int -> Bool
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lessThanP1 = cubeLessThanLimit p1Limit
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p1Limit :: (Cube Colour Int, Cube Colour Int, Cube Colour Int)
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p1Limit = (Cube Red 12, Cube Green 13, Cube Blue 14)
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solveP1 :: [Text] -> Int
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solveP1 = sum . map fst . filter snd . map (second (all (== True) . concatMap (map lessThanP1)) . parseInput)
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--
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--
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-- Part 2
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-- Part 2
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--
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--
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solveP2 :: [String] -> [String]
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solveP2 = id
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solveP2 = id
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--
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-- Parsing
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--
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parseInput :: Text -> (Int, [[Cube Colour Int]])
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parseInput = bimap (read . T.unpack . T.drop 5) (map (map stringToCube . T.splitOn ", ") . T.splitOn "; " . T.drop 2) . T.breakOn ": "
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stringToCube :: Text -> Cube Colour Int
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stringToCube str = read $ "Cube " <> colour' <> " " <> n'
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where
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(n, colour) = second (T.drop 1) . T.break isSpace $ str
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colour' = T.unpack (T.toTitle colour)
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n' = T.unpack n
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--
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-- Examples
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--
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example1 :: [Text]
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example1 =
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[ "Game 1: 3 blue, 4 red; 1 red, 2 green, 6 blue; 2 green"
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, "Game 2: 1 blue, 2 green; 3 green, 4 blue, 1 red; 1 green, 1 blue"
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, "Game 3: 8 green, 6 blue, 20 red; 5 blue, 4 red, 13 green; 5 green, 1 red"
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, "Game 4: 1 green, 3 red, 6 blue; 3 green, 6 red; 3 green, 15 blue, 14 red"
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, "Game 5: 6 red, 1 blue, 3 green; 2 blue, 1 red, 2 green"
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]
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