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2024 day 6 (part 2 slow and unoptimized)
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2024/day6/day6.py
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80
2024/day6/day6.py
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from itertools import cycle
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from dataclasses import dataclass
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from pprint import pprint
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@dataclass(frozen=True)
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class Vec2d:
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x: int
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y: int
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def __add__(self, other):
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return Vec2d(self.x + other.x, self.y + other.y)
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DIRECTIONS = (
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Vec2d(0, -1), # N
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Vec2d(1, 0), # E
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Vec2d(0, 1), # S
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Vec2d(-1, 0), # W
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)
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def find_start_pos(grid):
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for y, row in enumerate(grid):
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for x, c in enumerate(row):
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if c == "^":
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return Vec2d(x, y)
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raise RuntimeError("No start position found")
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def find_path(grid, pos):
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directions = cycle(DIRECTIONS)
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direction = next(directions)
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path = {(pos, direction)}
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while True:
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new_pos = pos + direction
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if 0 <= new_pos.y < len(grid) and 0 <= new_pos.x < len(grid[0]):
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while grid[new_pos.y][new_pos.x] == "#":
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direction = next(directions)
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new_pos = pos + direction
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pos = new_pos
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if (pos, direction) in path: # if we visited this position while going the same direction, we are in a loop
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visited = [x for x, _ in path]
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return visited, True
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path.add((pos, direction))
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else:
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visited = [x for x, _ in path]
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return visited, False
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raise RuntimeError("Should not happen")
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def main(grid):
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pos = find_start_pos(grid)
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path, _ = find_path(grid, pos)
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print("Part 1: ", len(set(path)))
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loops = []
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last_obstacle_pos = None
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for obstacle_pos in path:
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if pos == obstacle_pos:
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continue
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grid[obstacle_pos.y][obstacle_pos.x] = "#"
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path, is_loop = find_path(grid, pos)
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if is_loop:
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loops.append(obstacle_pos)
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grid[obstacle_pos.y][obstacle_pos.x] = "."
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print("Part 2: ", len(set(loops)))
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if __name__ == "__main__":
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import sys
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infile = sys.argv[1] if 1 < len(sys.argv) else "example.txt"
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with open(infile) as f:
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grid = [list(l.rstrip()) for l in f.readlines()]
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main(grid)
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