2016: d13: ex2: add solution
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2016/d13/ex2/ex2.py
Executable file
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2016/d13/ex2/ex2.py
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#!/usr/bin/env python
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import functools
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import heapq
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import sys
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from collections.abc import Callable, Iterator
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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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def solve(input: str) -> int:
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def office_location_open(p: Point, number: int) -> bool:
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x, y = p
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return (x * x + 3 * x + 2 * x * y + y + y * y + number).bit_count() % 2 == 0
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def office_neighbours(p: Point, number: int) -> Iterator[Point]:
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for dx, dy in (
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(-1, 0),
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(1, 0),
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(0, -1),
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(0, 1),
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):
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n = Point(p.x + dx, p.y + dy)
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if n.x < 0 or n.y < 0:
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continue
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if office_location_open(n, number):
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yield n
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def explore(
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start: Point,
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max_steps: int,
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neighbours: Callable[[Point], Iterator[Point]],
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) -> int:
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queue = [(0, start)]
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seen: set[Point] = set()
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while len(queue) > 0:
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dist, p = heapq.heappop(queue)
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if dist > max_steps:
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continue
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# We must have seen p with a smaller distance before
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if p in seen:
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continue
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# First time encountering p, must be the smallest distance to it
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seen.add(p)
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# Add all neighbours to be visited
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for n in neighbours(p):
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heapq.heappush(queue, (dist + 1, n))
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return len(seen)
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favorite_number = int(input.strip())
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neighbours = functools.partial(office_neighbours, number=favorite_number)
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return explore(Point(1, 1), 50, neighbours)
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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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