solve part a, not happy with this solution though...
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41
2/cubes.py
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41
2/cubes.py
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from aocd.models import Puzzle
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from aocd import submit
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def valid_games(games:list) -> list:
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"""
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Solve part a.
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- check which of the games are possible with the follwing limitations:
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- 12 red
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- 13 green
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- 14 blue
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- add up their IDs
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"""
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rules = {"red":12, "green":13, "blue":14}
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valid_ids = []
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for i, game in enumerate(games.split("\n"), start=1):
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throws = game.split(":")[1].split(";")
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valid = True
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for throw in throws:
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cubes = throw.split(",")
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for cube in cubes:
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_, amount, color = cube.split(" ")
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if int(amount) > rules[color]:
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valid = False
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if valid:
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valid_ids.append(i)
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return valid_ids
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if __name__ == "__main__":
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# get puzzle and parse data
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puzzle = Puzzle(year=2023, day=2)
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# part a:
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answer_a = sum(valid_games(puzzle.input_data))
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print(f"{answer_a}")
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submit(answer_a, part="a", day=2, year=2023)
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# part b:
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#answer_b = 0
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#print(f"{answer_b}")
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#submit(answer_b, part="b", day=2, year=2023)
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