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56 lines
1.3 KiB
Python
56 lines
1.3 KiB
Python
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"""
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https://en.wikipedia.org/wiki/Karnaugh_map
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https://www.allaboutcircuits.com/technical-articles/karnaugh-map-boolean-algebraic-simplification-technique
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"""
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def simplify_kmap(kmap: list[list[int]]) -> str:
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"""
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Simplify the Karnaugh map.
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>>> simplify_kmap(kmap=[[0, 1], [1, 1]])
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"A'B + AB' + AB"
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>>> simplify_kmap(kmap=[[0, 0], [0, 0]])
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''
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>>> simplify_kmap(kmap=[[0, 1], [1, -1]])
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"A'B + AB' + AB"
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>>> simplify_kmap(kmap=[[0, 1], [1, 2]])
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"A'B + AB' + AB"
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>>> simplify_kmap(kmap=[[0, 1], [1, 1.1]])
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"A'B + AB' + AB"
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>>> simplify_kmap(kmap=[[0, 1], [1, 'a']])
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"A'B + AB' + AB"
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"""
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simplified_f = []
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for a, row in enumerate(kmap):
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for b, item in enumerate(row):
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if item:
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term = ("A" if a else "A'") + ("B" if b else "B'")
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simplified_f.append(term)
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return " + ".join(simplified_f)
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def main() -> None:
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"""
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Main function to create and simplify a K-Map.
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>>> main()
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[0, 1]
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[1, 1]
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Simplified Expression:
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A'B + AB' + AB
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"""
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kmap = [[0, 1], [1, 1]]
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# Manually generate the product of [0, 1] and [0, 1]
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for row in kmap:
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print(row)
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print("Simplified Expression:")
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print(simplify_kmap(kmap))
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if __name__ == "__main__":
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main()
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print(f"{simplify_kmap(kmap=[[0, 1], [1, 1]]) = }")
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