<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>dfs on SAN == 0 ?</title><link>https://lr-ch.netlify.app/tags/dfs/</link><description>Recent content in dfs on SAN == 0 ?</description><generator>Hugo -- gohugo.io</generator><language>zh-tw</language><lastBuildDate>Wed, 31 Aug 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://lr-ch.netlify.app/tags/dfs/index.xml" rel="self" type="application/rss+xml"/><item><title>LeetCode daily challenge (2022/08/31)</title><link>https://lr-ch.netlify.app/p/leetcode-daily-challenge-2022/08/31/</link><pubDate>Wed, 31 Aug 2022 00:00:00 +0000</pubDate><guid>https://lr-ch.netlify.app/p/leetcode-daily-challenge-2022/08/31/</guid><description>&lt;h2 id="417-pacific-atlantic-water-flow">417. Pacific Atlantic Water Flow&lt;/h2>
&lt;p>連續五天都是 matrix 相關的問題啊&amp;hellip;&lt;/p>
&lt;p>這題一開始就決定用深度優先搜尋配合遞迴的解法，使用正向搜尋的邏輯，也就是題目所說的：假如 &lt;code>heights(x, y) &amp;gt;= heights(x + 1, y)&lt;/code> ，河流就可以往 &lt;code>x + 1&lt;/code> 的方向流動，結果發現處理重複尋訪的問題實在很煩人，空間複雜度平白多了 O(m*n) 不說，程式邏輯也是奇醜無比，後來靈光一閃，其實可以用反向搜尋，也就是從岸邊開始往內陸尋找上游，這樣就可以完全無視重複尋訪的問題，有點 DP 的感覺&amp;hellip;&lt;/p>
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&lt;pre tabindex="0" class="chroma">&lt;code class="language-c++" data-lang="c++">&lt;span class="line">&lt;span class="cl">&lt;span class="kt">void&lt;/span> &lt;span class="nf">flow&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">int&lt;/span>&lt;span class="o">&amp;gt;&amp;gt;&amp;amp;&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">bool&lt;/span>&lt;span class="o">&amp;gt;&amp;gt;&amp;amp;&lt;/span> &lt;span class="n">t&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="kt">int&lt;/span> &lt;span class="n">row&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="kt">int&lt;/span> &lt;span class="n">col&lt;/span>&lt;span class="p">)&lt;/span> &lt;span class="p">{&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">row&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="mi">0&lt;/span> &lt;span class="o">||&lt;/span> &lt;span class="n">row&lt;/span> &lt;span class="o">&amp;gt;&lt;/span> &lt;span class="n">m&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span> &lt;span class="o">||&lt;/span> &lt;span class="n">col&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="mi">0&lt;/span> &lt;span class="o">||&lt;/span> &lt;span class="n">col&lt;/span> &lt;span class="o">&amp;gt;&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">)&lt;/span> &lt;span class="k">return&lt;/span>&lt;span class="p">;&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="o">!&lt;/span>&lt;span class="n">t&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">])&lt;/span> &lt;span class="p">{&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">t&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">]&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="nb">true&lt;/span>&lt;span class="p">;&lt;/span>
&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 class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="n">row&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span> &lt;span class="o">&amp;gt;=&lt;/span> &lt;span class="mi">0&lt;/span> &lt;span class="o">&amp;amp;&amp;amp;&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">]&lt;/span> &lt;span class="o">&amp;lt;=&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">])&lt;/span> &lt;span class="n">flow&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">h&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">t&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">row&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">col&lt;/span>&lt;span class="p">);&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="n">col&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span> &lt;span class="o">&amp;gt;=&lt;/span> &lt;span class="mi">0&lt;/span> &lt;span class="o">&amp;amp;&amp;amp;&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">]&lt;/span> &lt;span class="o">&amp;lt;=&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">])&lt;/span> &lt;span class="n">flow&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">h&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">t&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">row&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">col&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">);&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="n">row&lt;/span> &lt;span class="o">+&lt;/span> &lt;span class="mi">1&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="n">m&lt;/span> &lt;span class="o">&amp;amp;&amp;amp;&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">]&lt;/span> &lt;span class="o">&amp;lt;=&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span> &lt;span class="o">+&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">])&lt;/span> &lt;span class="n">flow&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">h&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">t&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">row&lt;/span> &lt;span class="o">+&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">col&lt;/span>&lt;span class="p">);&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="n">col&lt;/span> &lt;span class="o">+&lt;/span> &lt;span class="mi">1&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">&amp;amp;&amp;amp;&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span>&lt;span class="p">]&lt;/span> &lt;span class="o">&amp;lt;=&lt;/span> &lt;span class="n">h&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">row&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">col&lt;/span> &lt;span class="o">+&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">])&lt;/span> &lt;span class="n">flow&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">h&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">t&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">row&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">col&lt;/span> &lt;span class="o">+&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">);&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="p">}&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">&lt;span class="p">}&lt;/span>
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&lt;/div>
&lt;/div>&lt;p>可以看到規則變成 &lt;code>heights(x, y) &amp;lt;= heights(x + 1, y)&lt;/code> 才繼續往 &lt;code>x + 1&lt;/code> 的方向走，反正就是一路往上，如果已經是 true 就直接離開，否則先標記成 true 再繼續溯源。這裡的參數 h 就是原始題目輸入的 heights ， t 則是表示座標 (x, y) 可否流至 Pacific Ocean 或是 Atlantic Ocean 的布林陣列，遞迴的起點就是從岸邊開始&lt;/p>
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&lt;pre tabindex="0" class="chroma">&lt;code class="language-c++" data-lang="c++">&lt;span class="line">&lt;span class="cl">&lt;span class="k">static&lt;/span> &lt;span class="kt">int&lt;/span> &lt;span class="n">m&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">n&lt;/span>&lt;span class="p">;&lt;/span>
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&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">int&lt;/span>&lt;span class="o">&amp;gt;&amp;gt;&lt;/span> &lt;span class="n">pacificAtlantic&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">int&lt;/span>&lt;span class="o">&amp;gt;&amp;gt;&amp;amp;&lt;/span> &lt;span class="n">heights&lt;/span>&lt;span class="p">)&lt;/span> &lt;span class="p">{&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">m&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="n">heights&lt;/span>&lt;span class="p">.&lt;/span>&lt;span class="n">size&lt;/span>&lt;span class="p">(),&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="n">heights&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="mi">0&lt;/span>&lt;span class="p">].&lt;/span>&lt;span class="n">size&lt;/span>&lt;span class="p">();&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">bool&lt;/span>&lt;span class="o">&amp;gt;&amp;gt;&lt;/span> &lt;span class="n">toPac&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">m&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">bool&lt;/span>&lt;span class="o">&amp;gt;&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">n&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="nb">false&lt;/span>&lt;span class="p">));&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">bool&lt;/span>&lt;span class="o">&amp;gt;&amp;gt;&lt;/span> &lt;span class="n">toAtl&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">m&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">bool&lt;/span>&lt;span class="o">&amp;gt;&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">n&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="nb">false&lt;/span>&lt;span class="p">));&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="n">vector&lt;/span>&lt;span class="o">&amp;lt;&lt;/span>&lt;span class="kt">int&lt;/span>&lt;span class="o">&amp;gt;&amp;gt;&lt;/span> &lt;span class="n">ans&lt;/span>&lt;span class="p">;&lt;/span>
&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 class="k">for&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="kt">int&lt;/span> &lt;span class="n">p&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="mi">0&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">p&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="n">m&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">p&lt;/span>&lt;span class="o">++&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">for&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="kt">int&lt;/span> &lt;span class="n">q&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="mi">0&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">q&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="n">n&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">q&lt;/span>&lt;span class="o">++&lt;/span>&lt;span class="p">)&lt;/span> &lt;span class="p">{&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="n">p&lt;/span> &lt;span class="o">==&lt;/span> &lt;span class="n">m&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span> &lt;span class="o">||&lt;/span> &lt;span class="n">q&lt;/span> &lt;span class="o">==&lt;/span> &lt;span class="n">n&lt;/span> &lt;span class="o">-&lt;/span> &lt;span class="mi">1&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">flow&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">heights&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">toAtl&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">p&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">q&lt;/span>&lt;span class="p">);&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="n">p&lt;/span> &lt;span class="o">==&lt;/span> &lt;span class="mi">0&lt;/span> &lt;span class="o">||&lt;/span> &lt;span class="n">q&lt;/span> &lt;span class="o">==&lt;/span> &lt;span class="mi">0&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">flow&lt;/span>&lt;span class="p">(&lt;/span>&lt;span class="n">heights&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">toPac&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">p&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">q&lt;/span>&lt;span class="p">);&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="p">}&lt;/span>
&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 class="k">for&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="kt">int&lt;/span> &lt;span class="n">x&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="mi">0&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">x&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="n">m&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">x&lt;/span>&lt;span class="o">++&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">for&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="kt">int&lt;/span> &lt;span class="n">y&lt;/span> &lt;span class="o">=&lt;/span> &lt;span class="mi">0&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">y&lt;/span> &lt;span class="o">&amp;lt;&lt;/span> &lt;span class="n">n&lt;/span>&lt;span class="p">;&lt;/span> &lt;span class="n">y&lt;/span>&lt;span class="o">++&lt;/span>&lt;span class="p">)&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="k">if&lt;/span> &lt;span class="p">(&lt;/span>&lt;span class="n">toPac&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">x&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">y&lt;/span>&lt;span class="p">]&lt;/span> &lt;span class="o">&amp;amp;&amp;amp;&lt;/span> &lt;span class="n">toAtl&lt;/span>&lt;span class="p">[&lt;/span>&lt;span class="n">x&lt;/span>&lt;span class="p">][&lt;/span>&lt;span class="n">y&lt;/span>&lt;span class="p">])&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl"> &lt;span class="n">ans&lt;/span>&lt;span class="p">.&lt;/span>&lt;span class="n">push_back&lt;/span>&lt;span class="p">({&lt;/span> &lt;span class="n">x&lt;/span>&lt;span class="p">,&lt;/span> &lt;span class="n">y&lt;/span> &lt;span class="p">});&lt;/span>
&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 class="k">return&lt;/span> &lt;span class="n">ans&lt;/span>&lt;span class="p">;&lt;/span>
&lt;/span>&lt;/span>&lt;span class="line">&lt;span class="cl">&lt;span class="p">}&lt;/span>
&lt;/span>&lt;/span>&lt;/code>&lt;/pre>&lt;/td>&lt;/tr>&lt;/table>
&lt;/div>
&lt;/div>&lt;p>因為 Pacific Ocean 是在西北方，所以岸邊座標就是 row = 0 和 column = 0 ，而 Atlantic Ocean 是在東南方，所以從 row = m - 1 和 column = n - 1 的位置開始遞迴，最後找出兩個矩陣的交集就是答案了&lt;/p></description></item></channel></rss>