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2021/25-Sea Cucumber.py

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# -------------------------------- Input data ---------------------------------------- #
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import os, grid, graph, dot, assembly, re, itertools, copy, functools
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from collections import Counter, deque, defaultdict
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from compass import *
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# This functions come from https://github.com/mcpower/adventofcode - Thanks!
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def lmap(func, *iterables):
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return list(map(func, *iterables))
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def ints(s: str):
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return lmap(int, re.findall(r"-?\d+", s)) # thanks mserrano!
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def positive_ints(s: str):
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return lmap(int, re.findall(r"\d+", s)) # thanks mserrano!
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def floats(s: str):
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return lmap(float, re.findall(r"-?\d+(?:\.\d+)?", s))
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def positive_floats(s: str):
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return lmap(float, re.findall(r"\d+(?:\.\d+)?", s))
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def words(s: str):
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return re.findall(r"[a-zA-Z]+", s)
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test_data = {}
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test = 1
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test_data[test] = {
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"input": """v...>>.vv>
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.vv>>.vv..
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>>.>v>...v
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>>v>>.>.v.
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v>v.vv.v..
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>.>>..v...
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.vv..>.>v.
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v.v..>>v.v
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....v..v.>""",
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"expected": ["Unknown", "Unknown"],
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}
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test = "real"
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input_file = os.path.join(
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os.path.dirname(__file__),
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"Inputs",
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os.path.basename(__file__).replace(".py", ".txt"),
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)
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test_data[test] = {
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"input": open(input_file, "r+").read(),
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"expected": ["Unknown", "Unknown"],
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}
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# -------------------------------- Control program execution ------------------------- #
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case_to_test = "real"
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part_to_test = 1
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# -------------------------------- Initialize some variables ------------------------- #
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puzzle_input = test_data[case_to_test]["input"]
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puzzle_expected_result = test_data[case_to_test]["expected"][part_to_test - 1]
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puzzle_actual_result = "Unknown"
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# -------------------------------- Actual code execution ----------------------------- #
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# Conver integer to 36-character binary
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# str_value = "{0:>036b}".format(value)
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# Convert binary string to number
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# value = int(str_value, 2)
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@functools.lru_cache
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def new_position(position, direction):
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if direction == 1:
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return (position.real + 1) % width + 1j * position.imag
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if direction == -1j:
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if -position.imag == height - 1:
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return position.real
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else:
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return position.real + 1j * (position.imag - 1)
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if part_to_test == 1:
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area = grid.Grid()
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area.text_to_dots(puzzle_input)
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east_facing = [dot.position for dot in area.dots.values() if dot.terrain == ">"]
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south_facing = [dot.position for dot in area.dots.values() if dot.terrain == "v"]
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width, height = area.get_size()
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for generation in range(10 ** 6):
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# print('Generation', generation)
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new_area = grid.Grid()
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new_east_facing = set(
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new_position(position, 1)
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if new_position(position, 1) not in east_facing
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and new_position(position, 1) not in south_facing
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else position
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for position in east_facing
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)
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new_south_facing = set(
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new_position(position, -1j)
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if new_position(position, -1j) not in south_facing
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and new_position(position, -1j) not in new_east_facing
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else position
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for position in south_facing
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)
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if east_facing == new_east_facing:
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if south_facing == new_south_facing:
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break
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east_facing = new_east_facing
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south_facing = new_south_facing
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puzzle_actual_result = generation + 1
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else:
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for string in puzzle_input.split("\n"):
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if string == "":
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continue
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# -------------------------------- Outputs / results --------------------------------- #
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print("Case :", case_to_test, "- Part", part_to_test)
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print("Expected result : " + str(puzzle_expected_result))
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print("Actual result : " + str(puzzle_actual_result))
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# Date created: 2021-12-25 08:15:28.182606
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# Part 1: 2021-12-25 08:53:05

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