Implement day 4 solver
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84
puzzles/4.py
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84
puzzles/4.py
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from typing import Iterator
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test_input_p1 = test_input_p2 = """
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MMMSXXMASM
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MSAMXMSMSA
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AMXSXMAAMM
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MSAMASMSMX
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XMASAMXAMM
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XXAMMXXAMA
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SMSMSASXSS
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SAXAMASAAA
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MAMMMXMMMM
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MXMXAXMASX
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""".strip()
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test_solution_p1 = 18
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test_solution_p2 = 9
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def solve_p1(puzzle_input: str) -> int:
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word_grid = _parse_world_grid(puzzle_input)
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return sum(_count_xmas(line) for line in _scan_word_grid(word_grid))
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def solve_p2(puzzle_input: str) -> int:
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word_grid = _parse_world_grid(puzzle_input)
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squares = _three_squares(word_grid)
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return sum(1 for square in squares if _has_cross_mas(square))
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def _parse_world_grid(puzzle_input: str) -> tuple[tuple[str, ...], ...]:
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return tuple(tuple(row) for row in puzzle_input.splitlines())
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def _scan_word_grid(
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char_grid: tuple[tuple[str, ...], ...]
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) -> Iterator[tuple[str, ...]]:
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yield from (row for row in char_grid)
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yield from (tuple(col) for col in zip(*char_grid))
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yield from (
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_diagonal(char_grid, i)
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for i in range(-len(char_grid) + 1, len(char_grid[0]))
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)
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yield from (
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_diagonal(tuple(reversed(char_grid)), i)
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for i in range(-len(char_grid) + 1, len(char_grid[0]))
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)
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def _diagonal(grid: tuple[tuple[str, ...], ...], offset=0) -> tuple[str, ...]:
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return tuple(
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grid[i][i + offset] for i in range(len(grid)) if 0 <= i + offset < len(grid)
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)
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def _count_xmas(line: tuple[str, ...]) -> int:
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return sum(
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1
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for i
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in range(len(line) - 3)
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if line[i : i + 4] in (("X", "M", "A", "S"), ("S", "A", "M", "X"))
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)
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ThreeSquare = tuple[
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tuple[str, str, str],
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tuple[str, str, str],
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tuple[str, str, str]
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]
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def _three_squares(word_grid: tuple[tuple[str, ...], ...]) -> Iterator[ThreeSquare]:
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yield from (
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(word_grid[i][j:j+3], word_grid[i+1][j:j+3], word_grid[i+2][j:j+3])
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for i in range(len(word_grid) - 2)
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for j in range(len(word_grid[0]) - 2)
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)
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def _has_cross_mas(square: ThreeSquare):
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diag_1 = (square[0][0], square[1][1], square[2][2])
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diag_2 = (square[0][2], square[1][1], square[2][0])
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return (
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(diag_1 == ("M", "A", "S") or diag_1 == ("S", "A", "M"))
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and (diag_2 == ("M", "A", "S") or diag_2 == ("S", "A", "M"))
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)
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