2023-12-04 14:31:06 +00:00
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from typing import Tuple, List, Set
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2023-12-03 22:14:42 +00:00
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from dataclasses import dataclass
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@dataclass(frozen=True)
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class Item:
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pos: Tuple[int, int]
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symbol: str
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def browse_schema(schema):
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total_parts = 0
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buf = []
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max_row, max_col = len(schema), len(schema[0])
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symbols: List[Tuple[Item, Set[Item]]] = []
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numbers: List[Item] = []
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for y in range(max_row):
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for x in range(max_col):
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item = schema[y][x]
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if item.isnumeric():
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# continue parsing full number
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buf.append(item)
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else:
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neighbors = get_neighbors_of((x, y), schema)
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symbols.append((Item((x, y), item), set(neighbors)))
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if buf and not item.isnumeric():
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# end of a number, do the engine part check
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number = "".join(buf)
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neighbors = get_neighbors((x, y), len(buf), schema)
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start_pos = (x-len(number), y)
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symbols.append((Item((x, y), number), get_neighbors_of((x, y), schema)))
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numbers.append(Item(start_pos, number))
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if is_engine_part(neighbors):
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total_parts += int(number)
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buf.clear() # reached end of a number, clear buffer
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print(f"Part 1, sum of the parts numbers = {total_parts}")
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part2(symbols, numbers)
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def part2(symbols, numbers):
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total_gears = 0
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stars = [(s, neighbors) for s, neighbors in symbols if s.symbol == "*"]
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for _, neighbors in stars:
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corresponding_numbers = set()
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digits = [n for n in neighbors if n.symbol.isdigit()]
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for digit in digits:
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# find full number (number.start_pos < digit.pos < number.end_pos)
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for number in numbers:
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if number.pos[1] - 1 <= digit.pos[1] <= number.pos[1] + 1 and number.pos[0] <= digit.pos[0] <= number.pos[0]+len(number.symbol):
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corresponding_numbers.add(number.symbol)
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if len(corresponding_numbers) == 2:
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a, b = corresponding_numbers
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total_gears += int(a) * int(b)
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#print(f"star: {star.pos} {corresponding_numbers}")
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print(f"Part 2, sum of gear ratios = {total_gears}")
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def is_engine_part(neighbors: List[Item]) -> bool:
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# get list of symbols (not '.', \n or a number)
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symbols = filter(lambda x: not x.symbol.isnumeric() and not x.symbol in (".", "\n"), neighbors)
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return next(symbols, None) is not None
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def get_neighbors(pos: Tuple[int, int], length: int, schema: List[List[str]]) -> List[Item]:
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x, y = pos
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start_x = x - length
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neighbors = [get_neighbors_of((x, y), schema) for x in range(start_x, x)]
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neighbors = [item for sublist in neighbors for item in sublist] # flatten list of list
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return neighbors
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def get_neighbors_of(pos: Tuple[int, int], schema: List[List[str]]) -> List[Item]:
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max_row, max_col = len(schema), len(schema[0])
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x, y = pos
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neighbors: List[Item] = []
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# top
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if y-1 >= 0:
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neighbors.append(Item((x, y-1), schema[y-1][x]))
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# bottom:
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if y+1 < max_row:
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neighbors.append(Item((x, y+1), schema[y+1][x]))
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# left
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if x-1 >= 0:
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neighbors.append(Item((x-1, y), schema[y][x-1]))
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# right
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if x+1 < max_col:
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neighbors.append(Item((x+1, y), schema[y][x+1]))
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# top-left
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if y-1 >= 0 and x-1 >= 0:
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neighbors.append(Item((x-1, y-1), schema[y-1][x-1]))
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# top-right
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if y-1 >= 0 and x+1 < max_col:
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neighbors.append(Item((x+1, y-1), schema[y-1][x+1]))
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# bottom-left
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if y+1 < max_row and x-1 >= 0:
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neighbors.append(Item((x-1, y+1), schema[y+1][x-1]))
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# bottom-right
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if y+1 < max_row and x+1 < max_col:
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neighbors.append(Item((x+1, y+1), schema[y+1][x+1]))
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return neighbors
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if __name__ == "__main__":
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import sys
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infile = sys.argv[1]
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with open(infile) as f:
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schema = [[c for c in line] for line in f.readlines()]
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browse_schema(schema)
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