<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>에라토스테네스의 체 on kenji.blog</title><link>http://kenji.blog/ko/tags/%EC%97%90%EB%9D%BC%ED%86%A0%EC%8A%A4%ED%85%8C%EB%84%A4%EC%8A%A4%EC%9D%98-%EC%B2%B4/</link><description>Recent content in 에라토스테네스의 체 on kenji.blog</description><generator>Hugo -- gohugo.io</generator><language>ko</language><copyright>kenjinote</copyright><lastBuildDate>Sun, 09 Apr 2023 12:54:24 +0900</lastBuildDate><atom:link href="http://kenji.blog/ko/tags/%EC%97%90%EB%9D%BC%ED%86%A0%EC%8A%A4%ED%85%8C%EB%84%A4%EC%8A%A4%EC%9D%98-%EC%B2%B4/index.xml" rel="self" type="application/rss+xml"/><item><title>'에라토스테네스의 체를 사용하여 1000 이하의 소수를 나열하는 방법'</title><link>http://kenji.blog/ko/p/%E3%82%A8%E3%83%A9%E3%83%88%E3%82%B9%E3%83%86%E3%83%8D%E3%82%B9%E3%81%AE%E7%AF%A9%E3%82%92%E4%BD%BF%E3%81%A3%E3%81%A61000%E4%BB%A5%E4%B8%8B%E3%81%AE%E7%B4%A0%E6%95%B0%E3%82%92%E5%88%97%E6%8C%99%E3%81%99%E3%82%8B%E6%96%B9%E6%B3%95/</link><pubDate>Sun, 09 Apr 2023 12:54:24 +0900</pubDate><guid>http://kenji.blog/ko/p/%E3%82%A8%E3%83%A9%E3%83%88%E3%82%B9%E3%83%86%E3%83%8D%E3%82%B9%E3%81%AE%E7%AF%A9%E3%82%92%E4%BD%BF%E3%81%A3%E3%81%A61000%E4%BB%A5%E4%B8%8B%E3%81%AE%E7%B4%A0%E6%95%B0%E3%82%92%E5%88%97%E6%8C%99%E3%81%99%E3%82%8B%E6%96%B9%E6%B3%95/</guid><description>&lt;img src="http://kenji.blog/p/%E3%82%A8%E3%83%A9%E3%83%88%E3%82%B9%E3%83%86%E3%83%8D%E3%82%B9%E3%81%AE%E7%AF%A9%E3%82%92%E4%BD%BF%E3%81%A3%E3%81%A61000%E4%BB%A5%E4%B8%8B%E3%81%AE%E7%B4%A0%E6%95%B0%E3%82%92%E5%88%97%E6%8C%99%E3%81%99%E3%82%8B%E6%96%B9%E6%B3%95/img.png" alt="Featured image of post '에라토스테네스의 체를 사용하여 1000 이하의 소수를 나열하는 방법'" />&lt;h2 id="에라토스테네스의-체란">에라토스테네스의 체란
&lt;/h2>&lt;p>에라토스테네스의 체는 어떤 수 이하의 소수를 나열하는 알고리즘입니다.
알고리즘은 단순하며, 다음 절차로 구현할 수 있습니다.&lt;/p>
&lt;ol>
&lt;li>N개의 요소를 가진 bool 값 배열을 만들고, 모든 요소를 true로 초기화한다&lt;/li>
&lt;li>배열의 0번째와 1번째 요소를 false로 한다(0과 1은 소수가 아니기 때문)&lt;/li>
&lt;li>배열의 2번째 요소가 true라면, 2를 소수로 출력한다&lt;/li>
&lt;li>배열의 $2^2$ 이상의 2의 배수 번째 요소를 모두 false로 한다※&lt;/li>
&lt;li>배열의 3번째 요소가 true라면, 3을 소수로 출력한다&lt;/li>
&lt;li>배열의 $3^2$ 이상의 3의 배수 번째 요소를 모두 false로 한다&lt;/li>
&lt;li>4번째, 5번째, &amp;hellip;, N번째 요소에 대해 동일한 처리를 반복한다&lt;/li>
&lt;/ol>
&lt;p>※ 2제곱 이상의 요소를 false의 대상으로 하는 이유는, 2제곱보다 작은 수에 대해서는 이미 처리가 완료되었기(나열이 완료되었기) 때문입니다.&lt;/p>
&lt;p>&lt;img src="http://kenji.blog/p/%E3%82%A8%E3%83%A9%E3%83%88%E3%82%B9%E3%83%86%E3%83%8D%E3%82%B9%E3%81%AE%E7%AF%A9%E3%82%92%E4%BD%BF%E3%81%A3%E3%81%A61000%E4%BB%A5%E4%B8%8B%E3%81%AE%E7%B4%A0%E6%95%B0%E3%82%92%E5%88%97%E6%8C%99%E3%81%99%E3%82%8B%E6%96%B9%E6%B3%95/Animation_Sieb_des_Eratosthenes.gif"
width="445"
height="369"
srcset="http://kenji.blog/p/%E3%82%A8%E3%83%A9%E3%83%88%E3%82%B9%E3%83%86%E3%83%8D%E3%82%B9%E3%81%AE%E7%AF%A9%E3%82%92%E4%BD%BF%E3%81%A3%E3%81%A61000%E4%BB%A5%E4%B8%8B%E3%81%AE%E7%B4%A0%E6%95%B0%E3%82%92%E5%88%97%E6%8C%99%E3%81%99%E3%82%8B%E6%96%B9%E6%B3%95/Animation_Sieb_des_Eratosthenes_hua63c6218ac9f9cdba93ccb20db392e0e_206214_480x0_resize_box_1.gif 480w, http://kenji.blog/p/%E3%82%A8%E3%83%A9%E3%83%88%E3%82%B9%E3%83%86%E3%83%8D%E3%82%B9%E3%81%AE%E7%AF%A9%E3%82%92%E4%BD%BF%E3%81%A3%E3%81%A61000%E4%BB%A5%E4%B8%8B%E3%81%AE%E7%B4%A0%E6%95%B0%E3%82%92%E5%88%97%E6%8C%99%E3%81%99%E3%82%8B%E6%96%B9%E6%B3%95/Animation_Sieb_des_Eratosthenes_hua63c6218ac9f9cdba93ccb20db392e0e_206214_1024x0_resize_box_1.gif 1024w"
loading="lazy"
class="gallery-image"
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>&lt;/p>
&lt;h2 id="rust에서의-구현">Rust에서의 구현
&lt;/h2>&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt"> 1
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&lt;/span>&lt;/code>&lt;/pre>&lt;/td>
&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-fallback" data-lang="fallback">&lt;span class="line">&lt;span class="cl">fn main() {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> let n = 1000;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> let mut is_prime = vec![true; n+1];
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> is_prime[0] = false;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> is_prime[1] = false;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> for i in 2..=n {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> if is_prime[i] {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> println!(&amp;#34;{}&amp;#34;, i);
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> let mut j = i * i;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> while j &amp;lt;= n {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> is_prime[j] = false;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> j += i;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">}
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;h2 id="조금-더-고속화된-버전">조금 더 고속화된 버전
&lt;/h2>&lt;p>다음 사항을 고려하여, 조금 더 고속화된 구현을 수행합니다.&lt;/p>
&lt;ul>
&lt;li>배열을 true로 초기화하는 것이 아니라, false로 초기화한다 (이 편이 더 고속)&lt;/li>
&lt;li>2의 배수는 소수가 아니므로, 2의 배수 요소를 false로 하는 처리를 생략&lt;/li>
&lt;li>n까지 루프를 돌 필요 없이, n의 제곱근까지의 소수를 나열하면, n 이하의 소수를 나열할 수 있다&lt;/li>
&lt;/ul>
&lt;div class="highlight">&lt;div class="chroma">
&lt;table class="lntable">&lt;tr>&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code>&lt;span class="lnt"> 1
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&lt;td class="lntd">
&lt;pre tabindex="0" class="chroma">&lt;code class="language-fallback" data-lang="fallback">&lt;span class="line">&lt;span class="cl">fn main() {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> let n = 1000;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> let mut is_prime = vec![false; n+1];
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> is_prime[2] = true;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> for i in (3..=n).step_by(2) {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> is_prime[i] = true;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> for i in 3..=((n as f64).sqrt() as usize) {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> if is_prime[i] {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> let mut j = i * i;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> while j &amp;lt;= n {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> is_prime[j] = false;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> j += i * 2;
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> for i in (2..=n).filter(|&amp;amp;x| is_prime[x]) {
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> println!(&amp;#34;{}&amp;#34;, i);
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> }
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">}
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;h2 id="참고">참고
&lt;/h2>&lt;ul>
&lt;li>&lt;a class="link" href="https://ja.wikipedia.org/wiki/%E3%82%A8%E3%83%A9%E3%83%88%E3%82%B9%E3%83%86%E3%83%8D%E3%82%B9%E3%81%AE%E7%AF%A9" target="_blank" rel="noopener"
>에라토스테네스의 체&lt;/a>&lt;/li>
&lt;/ul></description></item></channel></rss>