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154 lines
4.1 KiB
Python
154 lines
4.1 KiB
Python
"""
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File: time_complexity.py
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Created Time: 2022-11-25
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Author: krahets (krahets@163.com)
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"""
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def constant(n: int) -> int:
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"""定数階"""
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count = 0
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size = 100000
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for _ in range(size):
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count += 1
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return count
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def linear(n: int) -> int:
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"""線形階"""
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count = 0
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for _ in range(n):
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count += 1
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return count
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def array_traversal(nums: list[int]) -> int:
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"""線形時間(配列を走査)"""
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count = 0
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# ループ回数は配列長に比例する
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for num in nums:
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count += 1
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return count
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def quadratic(n: int) -> int:
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"""二乗階"""
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count = 0
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# ループ回数はデータサイズ n の二乗に比例する
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for i in range(n):
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for j in range(n):
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count += 1
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return count
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def bubble_sort(nums: list[int]) -> int:
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"""二次時間(バブルソート)"""
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count = 0 # カウンタ
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# 外側のループ:未ソート区間は [0, i]
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for i in range(len(nums) - 1, 0, -1):
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# 内側のループ:未ソート区間 [0, i] の最大要素をその区間の最右端へ交換
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for j in range(i):
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if nums[j] > nums[j + 1]:
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# nums[j] と nums[j + 1] を交換
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tmp: int = nums[j]
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nums[j] = nums[j + 1]
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nums[j + 1] = tmp
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count += 3 # 要素交換には 3 回の単位操作が含まれる
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return count
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def exponential(n: int) -> int:
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"""指数時間(ループ実装)"""
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count = 0
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base = 1
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# 細胞は各ラウンドで 2 つに分裂し、数列 1, 2, 4, 8, ..., 2^(n-1) を形成する
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for _ in range(n):
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for _ in range(base):
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count += 1
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base *= 2
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# count = 1 + 2 + 4 + 8 + .. + 2^(n-1) = 2^n - 1
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return count
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def exp_recur(n: int) -> int:
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"""指数時間(再帰実装)"""
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if n == 1:
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return 1
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return exp_recur(n - 1) + exp_recur(n - 1) + 1
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def logarithmic(n: int) -> int:
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"""対数時間(ループ実装)"""
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count = 0
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while n > 1:
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n = n / 2
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count += 1
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return count
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def log_recur(n: int) -> int:
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"""対数時間(再帰実装)"""
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if n <= 1:
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return 0
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return log_recur(n / 2) + 1
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def linear_log_recur(n: int) -> int:
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"""線形対数時間"""
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if n <= 1:
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return 1
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# 二つに分割すると、部分問題の規模は半分になる
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count = linear_log_recur(n // 2) + linear_log_recur(n // 2)
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# 現在の部分問題には n 個の操作が含まれる
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for _ in range(n):
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count += 1
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return count
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def factorial_recur(n: int) -> int:
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"""階乗時間(再帰実装)"""
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if n == 0:
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return 1
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count = 0
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# 1個から n 個に分裂
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for _ in range(n):
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count += factorial_recur(n - 1)
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return count
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"""Driver Code"""
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if __name__ == "__main__":
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# n を変えて実行し、各計算量で操作回数がどう変化するかを確認できる
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n = 8
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print("入力データサイズ n =", n)
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count = constant(n)
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print("定数時間の操作回数 =", count)
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count = linear(n)
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print("線形時間の操作回数 =", count)
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count = array_traversal([0] * n)
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print("線形時間(配列走査)の操作回数 =", count)
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count = quadratic(n)
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print("二乗時間の操作回数 =", count)
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nums = [i for i in range(n, 0, -1)] # [n, n-1, ..., 2, 1]
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count = bubble_sort(nums)
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print("二乗時間(バブルソート)の操作回数 =", count)
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count = exponential(n)
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print("指数時間(ループ実装)の操作回数 =", count)
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count = exp_recur(n)
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print("指数時間(再帰実装)の操作回数 =", count)
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count = logarithmic(n)
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print("対数時間(ループ実装)の操作回数 =", count)
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count = log_recur(n)
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print("対数時間(再帰実装)の操作回数 =", count)
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count = linear_log_recur(n)
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print("線形対数時間(再帰実装)の操作回数 =", count)
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count = factorial_recur(n)
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print("階乗時間(再帰実装)の操作回数 =", count)
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