Refactor 2024 day 5 without networkx.
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@ -1,27 +1,42 @@
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import sys
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import sys
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from collections import defaultdict
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from collections import defaultdict
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import networkx as nx
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def in_correct_order(update: list[int], requirements: dict[int, set[int]]) -> bool:
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def in_correct_order(update: list[int], requirements: dict[int, set[int]]) -> bool:
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for i_value, value in enumerate(update):
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return all(
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if any(value_2 in requirements[value] for value_2 in update[i_value:]):
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not any(value_2 in requirements[value] for value_2 in update[i_value:])
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return False
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for i_value, value in enumerate(update)
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return True
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def fix_order(update: list[int], requirements: dict[int, set[int]]) -> list[int]:
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graph = nx.DiGraph()
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graph.add_nodes_from(update)
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graph.add_edges_from(
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(v, k)
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for k, vs in requirements.items()
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for v in vs
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if k in update and v in update
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)
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)
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return list(nx.topological_sort(graph))
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def fix_order(
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update: list[int],
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requirements: dict[int, set[int]],
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max_update_length: int | None = None,
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) -> list[int]:
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# copy requirements to update
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requirements = {
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value: {predecessor for predecessor in predecessors if predecessor in update}
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for value, predecessors in requirements.items()
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if value in update
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}
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max_update_length = max_update_length or len(update)
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update = []
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while requirements and len(update) < max_update_length:
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value = next(
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value for value, predecessors in requirements.items() if not predecessors
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)
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update.append(value)
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del requirements[value]
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for predecessors in requirements.values():
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if value in predecessors:
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predecessors.remove(value)
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return update
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part1, part2 = sys.stdin.read().split("\n\n")
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part1, part2 = sys.stdin.read().split("\n\n")
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@ -40,7 +55,7 @@ answer_1 = sum(
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)
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)
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answer_2 = sum(
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answer_2 = sum(
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fix_order(update, requirements)[len(update) // 2]
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fix_order(update, requirements, len(update) // 2 + 1)[-1]
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for update in updates
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for update in updates
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if not in_correct_order(update, requirements)
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if not in_correct_order(update, requirements)
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)
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)
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