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https://github.com/Crocmagnon/advent-of-code.git
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123 lines
3.3 KiB
Python
123 lines
3.3 KiB
Python
from __future__ import annotations
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import dataclasses
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def main(filename: str, expected_part_1: int = None, expected_part_2: int = None):
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print(f"\n+ Running on {filename}")
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with open(filename) as f:
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data = f.read().strip().split("\n")
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data = parse_data(data)
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solution_part_1 = solve_part_1(data)
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print(f"1. Found {solution_part_1}")
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if expected_part_1:
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assert expected_part_1 == solution_part_1
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solution_part_2 = solve_part_2(data)
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print(f"2. Found {solution_part_2}")
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if expected_part_2:
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assert expected_part_2 == solution_part_2
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Instruction = tuple[str, int]
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DataType = list[Instruction]
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@dataclasses.dataclass
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class Point:
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x: int = 0
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y: int = 0
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def __eq__(self, other):
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return (self.x, self.y) == (other.x, other.y)
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def move(self, instruction: Instruction) -> None:
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match instruction[0]:
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case "R":
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self.x += 1
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case "L":
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self.x -= 1
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case "U":
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self.y += 1
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case "D":
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self.y -= 1
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def follow(self, other: Point) -> None:
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if self == other:
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return
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if abs(self.x - other.x) <= 1 and abs(self.y - other.y) <= 1:
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return
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if other.x > self.x:
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self.x += 1
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elif other.x < self.x:
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self.x -= 1
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if other.y > self.y:
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self.y += 1
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elif other.y < self.y:
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self.y -= 1
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@property
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def tuple(self) -> tuple[int, int]:
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return self.x, self.y
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def parse_data(data: list[str]) -> DataType:
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instructions = []
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for line in data:
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direction, count = line.split()
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instructions.append((direction, int(count)))
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return instructions
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def solve_part_1(instructions: DataType) -> int:
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head = Point()
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tail = Point()
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visited = set()
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for instruction in instructions:
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count = instruction[1]
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while count > 0:
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head.move(instruction)
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tail.follow(head)
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tail_tuple = tail.tuple
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visited.add(tail_tuple)
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count -= 1
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return len(visited)
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def solve_part_2(instructions: DataType) -> int:
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head = Point()
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tails = [Point() for _ in range(9)]
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visited = set()
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for instruction in instructions:
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print(instruction)
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count = instruction[1]
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while count > 0:
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head.move(instruction)
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tails[0].follow(head)
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for i in range(1, len(tails)):
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tails[i].follow(tails[i - 1])
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tail_tuple = tails[-1].tuple
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visited.add(tail_tuple)
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count -= 1
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# print_grid([head, *tails])
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return len(visited)
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def print_grid(rope: list[Point], size: tuple[int, int] = (21, 27)) -> None:
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rope = [knot.tuple for knot in rope]
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for row in range(int(-size[0] / 2), int(size[0] / 2)):
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for col in range(int(-size[1] / 2), int(size[1] / 2)):
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try:
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char = rope.index((col, row))
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except ValueError:
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char = "."
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print(char, end="")
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print()
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if __name__ == "__main__":
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main("inputs/day09-test1", expected_part_1=13, expected_part_2=1)
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main("inputs/day09-test2", expected_part_2=36)
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main("inputs/day09", expected_part_1=5619, expected_part_2=2376)
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