2022: d08: ex2: add solution
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2022/d08/ex2/ex2.py
Executable file
60
2022/d08/ex2/ex2.py
Executable file
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#!/usr/bin/env python
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import dataclasses
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import sys
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from collections.abc import Iterator
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@dataclasses.dataclass
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class Point:
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x: int
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y: int
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def solve(input: list[list[int]]) -> int:
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def up(p: Point) -> Iterator[Point]:
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x = p.x
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while (x := x - 1) >= 0:
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yield Point(x, p.y)
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def down(p: Point) -> Iterator[Point]:
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x = p.x
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while (x := x + 1) < len(input):
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yield Point(x, p.y)
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def left(p: Point) -> Iterator[Point]:
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y = p.y
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while (y := y - 1) >= 0:
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yield Point(p.x, y)
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def right(p: Point) -> Iterator[Point]:
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y = p.y
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while (y := y + 1) < len(input[0]):
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yield Point(p.x, y)
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def visible_trees(p: Point, neighbours: Iterator[Point]) -> Iterator[Point]:
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height = input[p.x][p.y]
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for n in neighbours:
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yield n
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if height <= input[n.x][n.y]:
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break
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def score(p: Point) -> int:
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score = 1
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for neighbours in (up, down, left, right):
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score *= len(list(visible_trees(p, neighbours(p))))
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return score
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scores = [
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[score(Point(x, y)) for y in range(len(input[x]))] for x in range(len(input))
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]
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return max(map(max, scores))
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def main() -> None:
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input = [[int(c) for c in line] for line in sys.stdin.read().splitlines()]
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print(solve(input))
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if __name__ == "__main__":
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main()
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