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* Fixes: #3163 - Add new solution for problem 234 * Apply review suggestions
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@ -17,40 +17,103 @@ up to 1000 is 34825.
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What is the sum of all semidivisible numbers not exceeding 999966663333 ?
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What is the sum of all semidivisible numbers not exceeding 999966663333 ?
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"""
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"""
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import math
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def fib(a, b, n):
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if n == 1:
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return a
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elif n == 2:
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return b
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elif n == 3:
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return str(a) + str(b)
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temp = 0
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for x in range(2, n):
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c = str(a) + str(b)
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temp = b
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b = c
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a = temp
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return c
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def solution(n):
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def prime_sieve(n: int) -> list:
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"""Returns the sum of all semidivisible numbers not exceeding n."""
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"""
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semidivisible = []
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Sieve of Erotosthenes
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for x in range(n):
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Function to return all the prime numbers up to a certain number
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l = [i for i in input().split()] # noqa: E741
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https://en.wikipedia.org/wiki/Sieve_of_Eratosthenes
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c2 = 1
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>>> prime_sieve(3)
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while 1:
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[2]
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if len(fib(l[0], l[1], c2)) < int(l[2]):
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>>> prime_sieve(50)
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c2 += 1
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[2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47]
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else:
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"""
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is_prime = [True] * n
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is_prime[0] = False
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is_prime[1] = False
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is_prime[2] = True
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for i in range(3, int(n ** 0.5 + 1), 2):
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index = i * 2
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while index < n:
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is_prime[index] = False
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index = index + i
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primes = [2]
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for i in range(3, n, 2):
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if is_prime[i]:
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primes.append(i)
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return primes
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def solution(limit: int = 999_966_663_333) -> int:
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"""
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Computes the solution to the problem up to the specified limit
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>>> solution(1000)
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34825
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>>> solution(10_000)
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1134942
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>>> solution(100_000)
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36393008
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"""
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primes_upper_bound = math.floor(math.sqrt(limit)) + 100
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primes = prime_sieve(primes_upper_bound)
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matches_sum = 0
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prime_index = 0
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last_prime = primes[prime_index]
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while (last_prime ** 2) <= limit:
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next_prime = primes[prime_index + 1]
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lower_bound = last_prime ** 2
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upper_bound = next_prime ** 2
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# Get numbers divisible by lps(current)
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current = lower_bound + last_prime
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while upper_bound > current <= limit:
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matches_sum += current
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current += last_prime
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# Reset the upper_bound
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while (upper_bound - next_prime) > limit:
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upper_bound -= next_prime
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# Add the numbers divisible by ups(current)
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current = upper_bound - next_prime
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while current > lower_bound:
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matches_sum += current
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current -= next_prime
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# Remove the numbers divisible by both ups and lps
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current = 0
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while upper_bound > current <= limit:
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if current <= lower_bound:
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# Increment the current number
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current += last_prime * next_prime
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continue
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if current > limit:
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break
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break
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semidivisible.append(fib(l[0], l[1], c2 + 1)[int(l[2]) - 1])
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return semidivisible
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# Remove twice since it was added by both ups and lps
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matches_sum -= current * 2
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# Increment the current number
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current += last_prime * next_prime
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# Setup for next pair
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last_prime = next_prime
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prime_index += 1
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return matches_sum
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if __name__ == "__main__":
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if __name__ == "__main__":
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for i in solution(int(str(input()).strip())):
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print(solution())
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print(i)
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