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@ -5,6 +5,8 @@ from pathlib import Path
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with open(Path(__file__).parent.joinpath("inputs", "day1.txt")) as fp:
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with open(Path(__file__).parent.joinpath("inputs", "day1.txt")) as fp:
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lines = fp.readlines()
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lines = fp.readlines()
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# we store the list of calories for each elf in values, and we use the last element
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# of values to accumulate
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values: list[int] = [0]
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values: list[int] = [0]
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for line in lines:
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for line in lines:
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if not line.strip():
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if not line.strip():
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11
2022/day2.py
11
2022/day2.py
@ -2,6 +2,8 @@
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from pathlib import Path
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from pathlib import Path
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# we read the lines in a Nx2 in array with value 0/1/2 instead of A/B/C or X/Y/Z for
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# easier manipulation
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with open(Path(__file__).parent.joinpath("inputs", "day2.txt")) as fp:
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with open(Path(__file__).parent.joinpath("inputs", "day2.txt")) as fp:
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values = [
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values = [
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(ord(row[0]) - ord("A"), ord(row[2]) - ord("X")) for row in fp.readlines()
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(ord(row[0]) - ord("A"), ord(row[2]) - ord("X")) for row in fp.readlines()
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@ -9,10 +11,17 @@ with open(Path(__file__).parent.joinpath("inputs", "day2.txt")) as fp:
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def score_1(ux: int, vx: int) -> int:
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def score_1(ux: int, vx: int) -> int:
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return 1 + vx + ((1 - ((ux - vx) % 3)) % 3) * 3
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# explanation:
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# - (1 + vx) is just the score of the shape
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# - ((1 - (ux - vx)) % 3) gives 0 for loss, 1 for draw and 2 for win, that we
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# can multiply with 3 to get the outcome score
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return (1 + vx) + ((1 - (ux - vx)) % 3) * 3
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def score_2(ux: int, vx: int) -> int:
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def score_2(ux: int, vx: int) -> int:
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# explanation:
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# - (ux + vx - 1) % 3 gives the target shape (0, 1, 2), we add one to get the score
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# - vx * 3 is simply the outcome score
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return (ux + vx - 1) % 3 + 1 + vx * 3
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return (ux + vx - 1) % 3 + 1 + vx * 3
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