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* formatting source-code for 72c365dcd34d9776fac3e2b58b41891b3619b02e * Fixed Bug [munmap_chunck() core dumped] * formatting source-code for b06bbf4dc6c46a3284d7852bb570438384eef4ef * fixed line spacing * fixed line spacing * fixed documentation * closed the paranthesis of line 3 * formatting source-code for 8233eda8894f46785f288e72c639d201852f6096 * Bug Fix heap sort [Fresh Implementation] * formatting source-code for e464ddac3688834ce46c59bada5ad3fddbfa2254 * Bug Fix heap sort [Fresh Implementation] * formatting source-code for 803981c831b36bf940d3fa2a901340cb0029717b * switched to normal functions from lambda * formatting source-code for ced5dcd6c4db53ece27d22ecd1dd1c1fcce6afb0 * Added template and test cases * formatting source-code for 7c8617fa46d41481c68ae2ae9d4f6a89ca42a4ff * fixed docs * fixed line spacing in tests * fix docs * Multiplication result may overflow 'int' before it is converted to 'long'. * fixed cpplint long -> int64 * fixed compiler error Co-authored-by: github-actions <${GITHUB_ACTOR}@users.noreply.github.com>
37 lines
881 B
C++
37 lines
881 B
C++
/**
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* @file
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* @brief Compute prime numbers upto 1 billion
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* @see prime_numbers.cpp sieve_of_eratosthenes.cpp
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*/
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#include <cstring>
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#include <iostream>
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/** array to store the primes */
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char prime[100000000];
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/** Perform Sieve algorithm */
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void Sieve(int64_t n) {
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memset(prime, '1', sizeof(prime)); // intitize '1' to every index
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prime[0] = '0'; // 0 is not prime
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prime[1] = '0'; // 1 is not prime
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for (int64_t p = 2; p * p <= n; p++) {
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if (prime[p] == '1') {
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for (int64_t i = p * p; i <= n; i += p)
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prime[i] = '0'; // set all multiples of p to false
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}
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}
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}
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/** Main function */
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int main() {
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Sieve(100000000);
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int64_t n;
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std::cin >> n; // 10006187
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if (prime[n] == '1')
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std::cout << "YES\n";
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else
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std::cout << "NO\n";
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return 0;
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}
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