2018: d22: ex1: add solution
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2018/d22/ex1/ex1.py
Executable file
67
2018/d22/ex1/ex1.py
Executable file
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#!/usr/bin/env python
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import enum
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import itertools
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import sys
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from typing import NamedTuple
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class Point(NamedTuple):
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x: int
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y: int
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class Region(enum.IntEnum):
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ROCKY = 0
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WET = 1
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NARROW = 2
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def solve(input: str) -> int:
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def parse(input: list[str]) -> tuple[int, Point]:
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depth = input[0].removeprefix("depth: ")
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target = input[1].removeprefix("target: ")
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return int(depth), Point(*(int(n) for n in target.split(",")))
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def compute_erosions(depth: int, target: Point) -> dict[Point, int]:
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res: dict[Point, int] = {}
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for x in range(0, target.x + 1):
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for y in range(0, target.y + 1):
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p = Point(x, y)
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if p == Point(0, 0) or p == target:
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res[p] = 0
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elif p.y == 0:
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res[p] = p.x * 16807
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elif p.x == 0:
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res[p] = p.y * 48271
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else:
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res[p] = res[Point(p.x - 1, p.y)] * res[Point(p.x, p.y - 1)]
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# Go from geologic index to erosion level
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res[p] += depth
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res[p] %= 20183
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return res
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def compute_regions(depth: int, target: Point) -> dict[Point, Region]:
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return {
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p: Region(erosion % 3)
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for p, erosion in compute_erosions(depth, target).items()
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}
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depth, target = parse(input.splitlines())
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regions = compute_regions(depth, target)
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return sum(
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regions[p]
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for p in map(
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Point._make,
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itertools.product(range(0, target.x + 1), range(target.y + 1)),
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)
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)
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def main() -> None:
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input = sys.stdin.read()
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print(solve(input))
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if __name__ == "__main__":
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main()
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