<span class="comment">/* * A JavaScript implementation of the RSA Data Security, Inc. MD4 Message * Digest Algorithm, as defined in RFC 1320. * Version 2.1 Copyright (C) Jerrad Pierce, Paul Johnston 1999 - 2002. * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet * Distributed under the BSD License * See http://pajhome.org.uk/crypt/md5 for more info. */</span> <span class="comment">/* * Configurable variables. You may need to tweak these to be compatible with * the server-side, but the defaults work in most cases. */</span> <span class="reserved_word">var</span> hexcase <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> <span class="comment">/* hex output format. 0 - lowercase; 1 - uppercase */</span> <span class="reserved_word">var</span> b64pad <span class="symbol">=</span> <span class="string">""</span><span class="symbol">;</span> <span class="comment">/* base-64 pad character. "=" for strict RFC compliance */</span> <span class="reserved_word">var</span> chrsz <span class="symbol">=</span> <span class="numeric">8</span><span class="symbol">;</span> <span class="comment">/* bits per input character. 8 - ASCII; 16 - Unicode */</span> <span class="comment">/* * These are the functions you'll usually want to call */</span> <span class="reserved_word">function</span> hex_md4<span class="braces">(</span>s<span class="braces">)</span><span class="braces">{</span> <span class="reserved_word">return</span> binl2hex<span class="braces">(</span>core_md4<span class="braces">(</span>str2binl<span class="braces">(</span>s<span class="braces">)</span>, s.<span class="predefined_identifier">length</span> * chrsz<span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span><span class="braces">}</span> <span class="reserved_word">function</span> b64_md4<span class="braces">(</span>s<span class="braces">)</span><span class="braces">{</span> <span class="reserved_word">return</span> binl2b64<span class="braces">(</span>core_md4<span class="braces">(</span>str2binl<span class="braces">(</span>s<span class="braces">)</span>, s.<span class="predefined_identifier">length</span> * chrsz<span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span><span class="braces">}</span> <span class="reserved_word">function</span> str_md4<span class="braces">(</span>s<span class="braces">)</span><span class="braces">{</span> <span class="reserved_word">return</span> binl2str<span class="braces">(</span>core_md4<span class="braces">(</span>str2binl<span class="braces">(</span>s<span class="braces">)</span>, s.<span class="predefined_identifier">length</span> * chrsz<span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span><span class="braces">}</span> <span class="reserved_word">function</span> hex_hmac_md4<span class="braces">(</span>key, data<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> binl2hex<span class="braces">(</span>core_hmac_md4<span class="braces">(</span>key, data<span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">function</span> b64_hmac_md4<span class="braces">(</span>key, data<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> binl2b64<span class="braces">(</span>core_hmac_md4<span class="braces">(</span>key, data<span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">function</span> str_hmac_md4<span class="braces">(</span>key, data<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> binl2str<span class="braces">(</span>core_hmac_md4<span class="braces">(</span>key, data<span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Perform a simple self-test to see if the VM is working */</span> <span class="reserved_word">function</span> md4_vm_test<span class="braces">(</span><span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> hex_md4<span class="braces">(</span><span class="string">"abc"</span><span class="braces">)</span> <span class="symbol">=</span><span class="symbol">=</span> <span class="string">"a448017aaf21d8525fc10ae87aa6729d"</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Calculate the MD4 of an array of little-endian words, and a bit length */</span> <span class="reserved_word">function</span> core_md4<span class="braces">(</span>x, len<span class="braces">)</span> <span class="braces">{</span> <span class="comment">/* append padding */</span> x[len <span class="symbol">></span><span class="symbol">></span> <span class="numeric">5</span>] <span class="symbol">|</span><span class="symbol">=</span> <span class="numeric">0x80</span> <span class="symbol"><span class="symbol"> <span class="braces">(</span>len % <span class="numeric">32</span><span class="braces">)</span><span class="symbol">;</span> x[<span class="braces">(</span><span class="braces">(</span><span class="braces">(</span>len + <span class="numeric">64</span><span class="braces">)</span> <span class="symbol">></span><span class="symbol">></span><span class="symbol">></span> <span class="numeric">9</span><span class="braces">)</span> <span class="symbol"><span class="symbol"> <span class="numeric">4</span><span class="braces">)</span> + <span class="numeric">14</span>] <span class="symbol">=</span> len<span class="symbol">;</span> <span class="reserved_word">var</span> a <span class="symbol">=</span> <span class="numeric">1732584193</span><span class="symbol">;</span> <span class="reserved_word">var</span> b <span class="symbol">=</span> -<span class="numeric">271733879</span><span class="symbol">;</span> <span class="reserved_word">var</span> c <span class="symbol">=</span> -<span class="numeric">1732584194</span><span class="symbol">;</span> <span class="reserved_word">var</span> d <span class="symbol">=</span> <span class="numeric">271733878</span><span class="symbol">;</span> <span class="reserved_word">for</span><span class="braces">(</span><span class="reserved_word">var</span> i <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> i <span class="symbol"> x.<span class="predefined_identifier">length</span><span class="symbol">;</span> i +<span class="symbol">=</span> <span class="numeric">16</span><span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> olda <span class="symbol">=</span> a<span class="symbol">;</span> <span class="reserved_word">var</span> oldb <span class="symbol">=</span> b<span class="symbol">;</span> <span class="reserved_word">var</span> oldc <span class="symbol">=</span> c<span class="symbol">;</span> <span class="reserved_word">var</span> oldd <span class="symbol">=</span> d<span class="symbol">;</span> a <span class="symbol">=</span> md4_ff<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">0</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_ff<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">1</span>], <span class="numeric">7</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_ff<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">2</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_ff<span class="braces">(</span>b, c, d, a, x[i+ <span class="numeric">3</span>], <span class="numeric">19</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_ff<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">4</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_ff<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">5</span>], <span class="numeric">7</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_ff<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">6</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_ff<span class="braces">(</span>b, c, d, a, x[i+ <span class="numeric">7</span>], <span class="numeric">19</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_ff<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">8</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_ff<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">9</span>], <span class="numeric">7</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_ff<span class="braces">(</span>c, d, a, b, x[i+<span class="numeric">10</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_ff<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">11</span>], <span class="numeric">19</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_ff<span class="braces">(</span>a, b, c, d, x[i+<span class="numeric">12</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_ff<span class="braces">(</span>d, a, b, c, x[i+<span class="numeric">13</span>], <span class="numeric">7</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_ff<span class="braces">(</span>c, d, a, b, x[i+<span class="numeric">14</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_ff<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">15</span>], <span class="numeric">19</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_gg<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">0</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_gg<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">4</span>], <span class="numeric">5</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_gg<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">8</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_gg<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">12</span>], <span class="numeric">13</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_gg<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">1</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_gg<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">5</span>], <span class="numeric">5</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_gg<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">9</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_gg<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">13</span>], <span class="numeric">13</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_gg<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">2</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_gg<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">6</span>], <span class="numeric">5</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_gg<span class="braces">(</span>c, d, a, b, x[i+<span class="numeric">10</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_gg<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">14</span>], <span class="numeric">13</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_gg<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">3</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_gg<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">7</span>], <span class="numeric">5</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_gg<span class="braces">(</span>c, d, a, b, x[i+<span class="numeric">11</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_gg<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">15</span>], <span class="numeric">13</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_hh<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">0</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_hh<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">8</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_hh<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">4</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_hh<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">12</span>], <span class="numeric">15</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_hh<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">2</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_hh<span class="braces">(</span>d, a, b, c, x[i+<span class="numeric">10</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_hh<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">6</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_hh<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">14</span>], <span class="numeric">15</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_hh<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">1</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_hh<span class="braces">(</span>d, a, b, c, x[i+ <span class="numeric">9</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_hh<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">5</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_hh<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">13</span>], <span class="numeric">15</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> md4_hh<span class="braces">(</span>a, b, c, d, x[i+ <span class="numeric">3</span>], <span class="numeric">3</span> <span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> md4_hh<span class="braces">(</span>d, a, b, c, x[i+<span class="numeric">11</span>], <span class="numeric">9</span> <span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> md4_hh<span class="braces">(</span>c, d, a, b, x[i+ <span class="numeric">7</span>], <span class="numeric">11</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> md4_hh<span class="braces">(</span>b, c, d, a, x[i+<span class="numeric">15</span>], <span class="numeric">15</span><span class="braces">)</span><span class="symbol">;</span> a <span class="symbol">=</span> safe_add<span class="braces">(</span>a, olda<span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> safe_add<span class="braces">(</span>b, oldb<span class="braces">)</span><span class="symbol">;</span> c <span class="symbol">=</span> safe_add<span class="braces">(</span>c, oldc<span class="braces">)</span><span class="symbol">;</span> d <span class="symbol">=</span> safe_add<span class="braces">(</span>d, oldd<span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">return</span> <span class="predefined_type">Array</span><span class="braces">(</span>a, b, c, d<span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * These functions implement the basic operation for each round of the * algorithm. */</span> <span class="reserved_word">function</span> md4_cmn<span class="braces">(</span>q, a, b, x, s, t<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> safe_add<span class="braces">(</span>rol<span class="braces">(</span>safe_add<span class="braces">(</span>safe_add<span class="braces">(</span>a, q<span class="braces">)</span>, safe_add<span class="braces">(</span>x, t<span class="braces">)</span><span class="braces">)</span>, s<span class="braces">)</span>, b<span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">function</span> md4_ff<span class="braces">(</span>a, b, c, d, x, s<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> md4_cmn<span class="braces">(</span><span class="braces">(</span>b <span class="symbol">&</span> c<span class="braces">)</span> <span class="symbol">|</span> <span class="braces">(</span><span class="braces">(</span>~b<span class="braces">)</span> <span class="symbol">&</span> d<span class="braces">)</span>, a, <span class="numeric">0</span>, x, s, <span class="numeric">0</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">function</span> md4_gg<span class="braces">(</span>a, b, c, d, x, s<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> md4_cmn<span class="braces">(</span><span class="braces">(</span>b <span class="symbol">&</span> c<span class="braces">)</span> <span class="symbol">|</span> <span class="braces">(</span>b <span class="symbol">&</span> d<span class="braces">)</span> <span class="symbol">|</span> <span class="braces">(</span>c <span class="symbol">&</span> d<span class="braces">)</span>, a, <span class="numeric">0</span>, x, s, <span class="numeric">1518500249</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">function</span> md4_hh<span class="braces">(</span>a, b, c, d, x, s<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> md4_cmn<span class="braces">(</span>b ^ c ^ d, a, <span class="numeric">0</span>, x, s, <span class="numeric">1859775393</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Calculate the HMAC-MD4, of a key and some data */</span> <span class="reserved_word">function</span> core_hmac_md4<span class="braces">(</span>key, data<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> bkey <span class="symbol">=</span> str2binl<span class="braces">(</span>key<span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">if</span><span class="braces">(</span>bkey.<span class="predefined_identifier">length</span> <span class="symbol">></span> <span class="numeric">16</span><span class="braces">)</span> bkey <span class="symbol">=</span> core_md4<span class="braces">(</span>bkey, key.<span class="predefined_identifier">length</span> * chrsz<span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">var</span> ipad <span class="symbol">=</span> <span class="predefined_type">Array</span><span class="braces">(</span><span class="numeric">16</span><span class="braces">)</span>, opad <span class="symbol">=</span> <span class="predefined_type">Array</span><span class="braces">(</span><span class="numeric">16</span><span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">for</span><span class="braces">(</span><span class="reserved_word">var</span> i <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> i <span class="symbol"> <span class="numeric">16</span><span class="symbol">;</span> i++<span class="braces">)</span> <span class="braces">{</span> ipad[i] <span class="symbol">=</span> bkey[i] ^ <span class="numeric">0x36363636</span><span class="symbol">;</span> opad[i] <span class="symbol">=</span> bkey[i] ^ <span class="numeric">0x5C5C5C5C</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">var</span> <span class="predefined_identifier">hash</span> <span class="symbol">=</span> core_md4<span class="braces">(</span>ipad.concat<span class="braces">(</span>str2binl<span class="braces">(</span>data<span class="braces">)</span><span class="braces">)</span>, <span class="numeric">512</span> + data.<span class="predefined_identifier">length</span> * chrsz<span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">return</span> core_md4<span class="braces">(</span>opad.concat<span class="braces">(</span><span class="predefined_identifier">hash</span><span class="braces">)</span>, <span class="numeric">512</span> + <span class="numeric">128</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Add integers, wrapping at 2^32. This uses 16-bit operations internally * to work around bugs in some JS interpreters. */</span> <span class="reserved_word">function</span> safe_add<span class="braces">(</span>x, y<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> lsw <span class="symbol">=</span> <span class="braces">(</span>x <span class="symbol">&</span> <span class="numeric">0xFFFF</span><span class="braces">)</span> + <span class="braces">(</span>y <span class="symbol">&</span> <span class="numeric">0xFFFF</span><span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">var</span> msw <span class="symbol">=</span> <span class="braces">(</span>x <span class="symbol">></span><span class="symbol">></span> <span class="numeric">16</span><span class="braces">)</span> + <span class="braces">(</span>y <span class="symbol">></span><span class="symbol">></span> <span class="numeric">16</span><span class="braces">)</span> + <span class="braces">(</span>lsw <span class="symbol">></span><span class="symbol">></span> <span class="numeric">16</span><span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">return</span> <span class="braces">(</span>msw <span class="symbol"><span class="symbol"> <span class="numeric">16</span><span class="braces">)</span> <span class="symbol">|</span> <span class="braces">(</span>lsw <span class="symbol">&</span> <span class="numeric">0xFFFF</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Bitwise rotate a 32-bit number to the left. */</span> <span class="reserved_word">function</span> rol<span class="braces">(</span>num, cnt<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> <span class="braces">(</span>num <span class="symbol"><span class="symbol"> cnt<span class="braces">)</span> <span class="symbol">|</span> <span class="braces">(</span>num <span class="symbol">></span><span class="symbol">></span><span class="symbol">></span> <span class="braces">(</span><span class="numeric">32</span> - cnt<span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Convert a string to an array of little-endian words * If chrsz is ASCII, characters >255 have their hi-byte silently ignored. */</span> <span class="reserved_word">function</span> str2binl<span class="braces">(</span>str<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> bin <span class="symbol">=</span> <span class="predefined_type">Array</span><span class="braces">(</span><span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">var</span> mask <span class="symbol">=</span> <span class="braces">(</span><span class="numeric">1</span> <span class="symbol"><span class="symbol"> chrsz<span class="braces">)</span> - <span class="numeric">1</span><span class="symbol">;</span> <span class="reserved_word">for</span><span class="braces">(</span><span class="reserved_word">var</span> i <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> i <span class="symbol"> str.<span class="predefined_identifier">length</span> * chrsz<span class="symbol">;</span> i +<span class="symbol">=</span> chrsz<span class="braces">)</span> bin[i<span class="symbol">></span><span class="symbol">></span><span class="numeric">5</span>] <span class="symbol">|</span><span class="symbol">=</span> <span class="braces">(</span>str.charCodeAt<span class="braces">(</span>i <span class="symbol">/</span> chrsz<span class="braces">)</span> <span class="symbol">&</span> mask<span class="braces">)</span> <span class="symbol"><span class="symbol"> <span class="braces">(</span>i%<span class="numeric">32</span><span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">return</span> bin<span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Convert an array of little-endian words to a string */</span> <span class="reserved_word">function</span> binl2str<span class="braces">(</span>bin<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> str <span class="symbol">=</span> <span class="string">""</span><span class="symbol">;</span> <span class="reserved_word">var</span> mask <span class="symbol">=</span> <span class="braces">(</span><span class="numeric">1</span> <span class="symbol"><span class="symbol"> chrsz<span class="braces">)</span> - <span class="numeric">1</span><span class="symbol">;</span> <span class="reserved_word">for</span><span class="braces">(</span><span class="reserved_word">var</span> i <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> i <span class="symbol"> bin.<span class="predefined_identifier">length</span> * <span class="numeric">32</span><span class="symbol">;</span> i +<span class="symbol">=</span> chrsz<span class="braces">)</span> str +<span class="symbol">=</span> String.fromCharCode<span class="braces">(</span><span class="braces">(</span>bin[i<span class="symbol">></span><span class="symbol">></span><span class="numeric">5</span>] <span class="symbol">></span><span class="symbol">></span><span class="symbol">></span> <span class="braces">(</span>i % <span class="numeric">32</span><span class="braces">)</span><span class="braces">)</span> <span class="symbol">&</span> mask<span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">return</span> str<span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Convert an array of little-endian words to a hex string. */</span> <span class="reserved_word">function</span> binl2hex<span class="braces">(</span>binarray<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> hex_tab <span class="symbol">=</span> hexcase ? <span class="string">"0123456789ABCDEF"</span> : <span class="string">"0123456789abcdef"</span><span class="symbol">;</span> <span class="reserved_word">var</span> str <span class="symbol">=</span> <span class="string">""</span><span class="symbol">;</span> <span class="reserved_word">for</span><span class="braces">(</span><span class="reserved_word">var</span> i <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> i <span class="symbol"> binarray.<span class="predefined_identifier">length</span> * <span class="numeric">4</span><span class="symbol">;</span> i++<span class="braces">)</span> <span class="braces">{</span> str +<span class="symbol">=</span> hex_tab.<span class="library_function">charAt</span><span class="braces">(</span><span class="braces">(</span>binarray[i<span class="symbol">></span><span class="symbol">></span><span class="numeric">2</span>] <span class="symbol">></span><span class="symbol">></span> <span class="braces">(</span><span class="braces">(</span>i%<span class="numeric">4</span><span class="braces">)</span>*<span class="numeric">8</span>+<span class="numeric">4</span><span class="braces">)</span><span class="braces">)</span> <span class="symbol">&</span> <span class="numeric">0xF</span><span class="braces">)</span> + hex_tab.<span class="library_function">charAt</span><span class="braces">(</span><span class="braces">(</span>binarray[i<span class="symbol">></span><span class="symbol">></span><span class="numeric">2</span>] <span class="symbol">></span><span class="symbol">></span> <span class="braces">(</span><span class="braces">(</span>i%<span class="numeric">4</span><span class="braces">)</span>*<span class="numeric">8</span> <span class="braces">)</span><span class="braces">)</span> <span class="symbol">&</span> <span class="numeric">0xF</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="reserved_word">return</span> str<span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Convert an array of little-endian words to a base-64 string */</span> <span class="reserved_word">function</span> binl2b64<span class="braces">(</span>binarray<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> tab <span class="symbol">=</span> <span class="string">"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"</span><span class="symbol">;</span> <span class="reserved_word">var</span> str <span class="symbol">=</span> <span class="string">""</span><span class="symbol">;</span> <span class="reserved_word">for</span><span class="braces">(</span><span class="reserved_word">var</span> i <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> i <span class="symbol"> binarray.<span class="predefined_identifier">length</span> * <span class="numeric">4</span><span class="symbol">;</span> i +<span class="symbol">=</span> <span class="numeric">3</span><span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">var</span> triplet <span class="symbol">=</span> <span class="braces">(</span><span class="braces">(</span><span class="braces">(</span>binarray[i <span class="symbol">></span><span class="symbol">></span> <span class="numeric">2</span>] <span class="symbol">></span><span class="symbol">></span> <span class="numeric">8</span> * <span class="braces">(</span> i %<span class="numeric">4</span><span class="braces">)</span><span class="braces">)</span> <span class="symbol">&</span> <span class="numeric">0xFF</span><span class="braces">)</span> <span class="symbol"><span class="symbol"> <span class="numeric">16</span><span class="braces">)</span> <span class="symbol">|</span> <span class="braces">(</span><span class="braces">(</span><span class="braces">(</span>binarray[i+<span class="numeric">1</span> <span class="symbol">></span><span class="symbol">></span> <span class="numeric">2</span>] <span class="symbol">></span><span class="symbol">></span> <span class="numeric">8</span> * <span class="braces">(</span><span class="braces">(</span>i+<span class="numeric">1</span><span class="braces">)</span>%<span class="numeric">4</span><span class="braces">)</span><span class="braces">)</span> <span class="symbol">&</span> <span class="numeric">0xFF</span><span class="braces">)</span> <span class="symbol"><span class="symbol"> <span class="numeric">8</span> <span class="braces">)</span> <span class="symbol">|</span> <span class="braces">(</span><span class="braces">(</span>binarray[i+<span class="numeric">2</span> <span class="symbol">></span><span class="symbol">></span> <span class="numeric">2</span>] <span class="symbol">></span><span class="symbol">></span> <span class="numeric">8</span> * <span class="braces">(</span><span class="braces">(</span>i+<span class="numeric">2</span><span class="braces">)</span>%<span class="numeric">4</span><span class="braces">)</span><span class="braces">)</span> <span class="symbol">&</span> <span class="numeric">0xFF</span><span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">for</span><span class="braces">(</span><span class="reserved_word">var</span> j <span class="symbol">=</span> <span class="numeric">0</span><span class="symbol">;</span> j <span class="symbol"> <span class="numeric">4</span><span class="symbol">;</span> j++<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">if</span><span class="braces">(</span>i * <span class="numeric">8</span> + j * <span class="numeric">6</span> <span class="symbol">></span> binarray.<span class="predefined_identifier">length</span> * <span class="numeric">32</span><span class="braces">)</span> str +<span class="symbol">=</span> b64pad<span class="symbol">;</span> <span class="reserved_word">else</span> str +<span class="symbol">=</span> tab.<span class="library_function">charAt</span><span class="braces">(</span><span class="braces">(</span>triplet <span class="symbol">></span><span class="symbol">></span> <span class="numeric">6</span>*<span class="braces">(</span><span class="numeric">3</span>-j<span class="braces">)</span><span class="braces">)</span> <span class="symbol">&</span> <span class="numeric">0x3F</span><span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="braces">}</span> <span class="reserved_word">return</span> str<span class="symbol">;</span> <span class="braces">}</span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span></span>

Die Verschiebung von C/C zu JavaScript erfordert die Anpassung an dynamische Typisierung, Müllsammlung und asynchrone Programmierung. 1) C/C ist eine statisch typisierte Sprache, die eine manuelle Speicherverwaltung erfordert, während JavaScript dynamisch eingegeben und die Müllsammlung automatisch verarbeitet wird. 2) C/C muss in den Maschinencode kompiliert werden, während JavaScript eine interpretierte Sprache ist. 3) JavaScript führt Konzepte wie Verschlüsse, Prototypketten und Versprechen ein, die die Flexibilität und asynchrone Programmierfunktionen verbessern.

Unterschiedliche JavaScript -Motoren haben unterschiedliche Auswirkungen beim Analysieren und Ausführen von JavaScript -Code, da sich die Implementierungsprinzipien und Optimierungsstrategien jeder Engine unterscheiden. 1. Lexikalanalyse: Quellcode in die lexikalische Einheit umwandeln. 2. Grammatikanalyse: Erzeugen Sie einen abstrakten Syntaxbaum. 3. Optimierung und Kompilierung: Generieren Sie den Maschinencode über den JIT -Compiler. 4. Führen Sie aus: Führen Sie den Maschinencode aus. V8 Engine optimiert durch sofortige Kompilierung und versteckte Klasse.

Zu den Anwendungen von JavaScript in der realen Welt gehören die serverseitige Programmierung, die Entwicklung mobiler Anwendungen und das Internet der Dinge. Die serverseitige Programmierung wird über node.js realisiert, die für die hohe gleichzeitige Anfrageverarbeitung geeignet sind. 2. Die Entwicklung der mobilen Anwendungen erfolgt durch reaktnative und unterstützt die plattformübergreifende Bereitstellung. 3.. Wird für die Steuerung von IoT-Geräten über die Johnny-Five-Bibliothek verwendet, geeignet für Hardware-Interaktion.

Ich habe eine funktionale SaaS-Anwendung mit mehreren Mandanten (eine EdTech-App) mit Ihrem täglichen Tech-Tool erstellt und Sie können dasselbe tun. Was ist eine SaaS-Anwendung mit mehreren Mietern? Mit Multi-Tenant-SaaS-Anwendungen können Sie mehrere Kunden aus einem Sing bedienen

Dieser Artikel zeigt die Frontend -Integration mit einem Backend, das durch die Genehmigung gesichert ist und eine funktionale edtech SaaS -Anwendung unter Verwendung von Next.js. erstellt. Die Frontend erfasst Benutzerberechtigungen zur Steuerung der UI-Sichtbarkeit und stellt sicher, dass API-Anfragen die Rollenbasis einhalten

JavaScript ist die Kernsprache der modernen Webentwicklung und wird für seine Vielfalt und Flexibilität häufig verwendet. 1) Front-End-Entwicklung: Erstellen Sie dynamische Webseiten und einseitige Anwendungen durch DOM-Operationen und moderne Rahmenbedingungen (wie React, Vue.js, Angular). 2) Serverseitige Entwicklung: Node.js verwendet ein nicht blockierendes E/A-Modell, um hohe Parallelitäts- und Echtzeitanwendungen zu verarbeiten. 3) Entwicklung von Mobil- und Desktop-Anwendungen: Die plattformübergreifende Entwicklung wird durch reaktnative und elektronen zur Verbesserung der Entwicklungseffizienz realisiert.

Zu den neuesten Trends im JavaScript gehören der Aufstieg von Typenkripten, die Popularität moderner Frameworks und Bibliotheken und die Anwendung der WebAssembly. Zukunftsaussichten umfassen leistungsfähigere Typsysteme, die Entwicklung des serverseitigen JavaScript, die Erweiterung der künstlichen Intelligenz und des maschinellen Lernens sowie das Potenzial von IoT und Edge Computing.

JavaScript ist der Eckpfeiler der modernen Webentwicklung. Zu den Hauptfunktionen gehören eine ereignisorientierte Programmierung, die Erzeugung der dynamischen Inhalte und die asynchrone Programmierung. 1) Ereignisgesteuerte Programmierung ermöglicht es Webseiten, sich dynamisch entsprechend den Benutzeroperationen zu ändern. 2) Die dynamische Inhaltsgenerierung ermöglicht die Anpassung der Seiteninhalte gemäß den Bedingungen. 3) Asynchrone Programmierung stellt sicher, dass die Benutzeroberfläche nicht blockiert ist. JavaScript wird häufig in der Webinteraktion, der einseitigen Anwendung und der serverseitigen Entwicklung verwendet, wodurch die Flexibilität der Benutzererfahrung und die plattformübergreifende Entwicklung erheblich verbessert wird.


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