<span class="comment">/* * A JavaScript implementation of the Secure Hash Algorithm, SHA-1, as defined * in FIPS PUB 180-1 * Version 2.1a Copyright Paul Johnston 2000 - 2002. * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet * Distributed under the BSD License * See http://pajhome.org.uk/crypt/md5 for details. */</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 * They take string arguments and return either hex or base-64 encoded strings */</span> <span class="reserved_word">function</span> hex_sha1<span class="braces">(</span>s<span class="braces">)</span><span class="braces">{</span><span class="reserved_word">return</span> binb2hex<span class="braces">(</span>core_sha1<span class="braces">(</span>str2binb<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_sha1<span class="braces">(</span>s<span class="braces">)</span><span class="braces">{</span><span class="reserved_word">return</span> binb2b64<span class="braces">(</span>core_sha1<span class="braces">(</span>str2binb<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_sha1<span class="braces">(</span>s<span class="braces">)</span><span class="braces">{</span><span class="reserved_word">return</span> binb2str<span class="braces">(</span>core_sha1<span class="braces">(</span>str2binb<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_sha1<span class="braces">(</span>key, data<span class="braces">)</span><span class="braces">{</span> <span class="reserved_word">return</span> binb2hex<span class="braces">(</span>core_hmac_sha1<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_sha1<span class="braces">(</span>key, data<span class="braces">)</span><span class="braces">{</span> <span class="reserved_word">return</span> binb2b64<span class="braces">(</span>core_hmac_sha1<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_sha1<span class="braces">(</span>key, data<span class="braces">)</span><span class="braces">{</span> <span class="reserved_word">return</span> binb2str<span class="braces">(</span>core_hmac_sha1<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> sha1_vm_test<span class="braces">(</span><span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> hex_sha1<span class="braces">(</span><span class="string">"abc"</span><span class="braces">)</span> <span class="symbol">=</span><span class="symbol">=</span> <span class="string">"a9993e364706816aba3e25717850c26c9cd0d89d"</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Calculate the SHA-1 of an array of big-endian words, and a bit length */</span> <span class="reserved_word">function</span> core_sha1<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><span class="numeric">24</span> - len % <span class="numeric">32</span><span class="braces">)</span><span class="symbol">;</span> x[<span class="braces">(</span><span class="braces">(</span>len + <span class="numeric">64</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">15</span>] <span class="symbol">=</span> len<span class="symbol">;</span> <span class="reserved_word">var</span> w <span class="symbol">=</span> <span class="predefined_type">Array</span><span class="braces">(</span><span class="numeric">80</span><span class="braces">)</span><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">var</span> e <span class="symbol">=</span> -<span class="numeric">1009589776</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> <span class="reserved_word">var</span> olde <span class="symbol">=</span> e<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">80</span><span class="symbol">;</span> j++<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">if</span><span class="braces">(</span>j <span class="symbol"> <span class="numeric">16</span><span class="braces">)</span> w[j] <span class="symbol">=</span> x[i + j]<span class="symbol">;</span> <span class="reserved_word">else</span> w[j] <span class="symbol">=</span> rol<span class="braces">(</span>w[j-<span class="numeric">3</span>] ^ w[j-<span class="numeric">8</span>] ^ w[j-<span class="numeric">14</span>] ^ w[j-<span class="numeric">16</span>], <span class="numeric">1</span><span class="braces">)</span><span class="symbol">;</span> <span class="reserved_word">var</span> t <span class="symbol">=</span> safe_add<span class="braces">(</span>safe_add<span class="braces">(</span>rol<span class="braces">(</span>a, <span class="numeric">5</span><span class="braces">)</span>, sha1_ft<span class="braces">(</span>j, b, c, d<span class="braces">)</span><span class="braces">)</span>, safe_add<span class="braces">(</span>safe_add<span class="braces">(</span>e, w[j]<span class="braces">)</span>, sha1_kt<span class="braces">(</span>j<span class="braces">)</span><span class="braces">)</span><span class="braces">)</span><span class="symbol">;</span> e <span class="symbol">=</span> d<span class="symbol">;</span> d <span class="symbol">=</span> c<span class="symbol">;</span> c <span class="symbol">=</span> rol<span class="braces">(</span>b, <span class="numeric">30</span><span class="braces">)</span><span class="symbol">;</span> b <span class="symbol">=</span> a<span class="symbol">;</span> a <span class="symbol">=</span> t<span class="symbol">;</span> <span class="braces">}</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> e <span class="symbol">=</span> safe_add<span class="braces">(</span>e, olde<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, e<span class="braces">)</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Perform the appropriate triplet combination function for the current * iteration */</span> <span class="reserved_word">function</span> sha1_ft<span class="braces">(</span>t, b, c, d<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">if</span><span class="braces">(</span>t <span class="symbol"> <span class="numeric">20</span><span class="braces">)</span> <span class="reserved_word">return</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><span class="symbol">;</span> <span class="reserved_word">if</span><span class="braces">(</span>t <span class="symbol"> <span class="numeric">40</span><span class="braces">)</span> <span class="reserved_word">return</span> b ^ c ^ d<span class="symbol">;</span> <span class="reserved_word">if</span><span class="braces">(</span>t <span class="symbol"> <span class="numeric">60</span><span class="braces">)</span> <span class="reserved_word">return</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><span class="symbol">;</span> <span class="reserved_word">return</span> b ^ c ^ d<span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Determine the appropriate additive constant for the current iteration */</span> <span class="reserved_word">function</span> sha1_kt<span class="braces">(</span>t<span class="braces">)</span> <span class="braces">{</span> <span class="reserved_word">return</span> <span class="braces">(</span>t <span class="symbol"> <span class="numeric">20</span><span class="braces">)</span> ? <span class="numeric">1518500249</span> : <span class="braces">(</span>t <span class="symbol"> <span class="numeric">40</span><span class="braces">)</span> ? <span class="numeric">1859775393</span> : <span class="braces">(</span>t <span class="symbol"> <span class="numeric">60</span><span class="braces">)</span> ? -<span class="numeric">1894007588</span> : -<span class="numeric">899497514</span><span class="symbol">;</span> <span class="braces">}</span> <span class="comment">/* * Calculate the HMAC-SHA1 of a key and some data */</span> <span class="reserved_word">function</span> core_hmac_sha1<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> str2binb<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_sha1<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_sha1<span class="braces">(</span>ipad.concat<span class="braces">(</span>str2binb<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_sha1<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">160</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 an 8-bit or 16-bit string to an array of big-endian words * In 8-bit function, characters >255 have their hi-byte silently ignored. */</span> <span class="reserved_word">function</span> str2binb<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><span class="numeric">32</span> - chrsz - 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 big-endian words to a string */</span> <span class="reserved_word">function</span> binb2str<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><span class="numeric">32</span> - chrsz - 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 big-endian words to a hex string. */</span> <span class="reserved_word">function</span> binb2hex<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><span class="numeric">3</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><span class="numeric">3</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 big-endian words to a base-64 string */</span> <span class="reserved_word">function</span> binb2b64<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><span class="numeric">3</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="numeric">3</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="numeric">3</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></span></span></span></span></span></span></span></span>

引言我知道你可能会觉得奇怪,JavaScript、C 和浏览器之间到底有什么关系?它们之间看似毫无关联,但实际上,它们在现代网络开发中扮演着非常重要的角色。今天我们就来深入探讨一下这三者之间的紧密联系。通过这篇文章,你将了解到JavaScript如何在浏览器中运行,C 在浏览器引擎中的作用,以及它们如何共同推动网页的渲染和交互。JavaScript与浏览器的关系我们都知道,JavaScript是前端开发的核心语言,它直接在浏览器中运行,让网页变得生动有趣。你是否曾经想过,为什么JavaScr

Node.js擅长于高效I/O,这在很大程度上要归功于流。 流媒体汇总处理数据,避免内存过载 - 大型文件,网络任务和实时应用程序的理想。将流与打字稿的类型安全结合起来创建POWE

Python和JavaScript在性能和效率方面的差异主要体现在:1)Python作为解释型语言,运行速度较慢,但开发效率高,适合快速原型开发;2)JavaScript在浏览器中受限于单线程,但在Node.js中可利用多线程和异步I/O提升性能,两者在实际项目中各有优势。

JavaScript起源于1995年,由布兰登·艾克创造,实现语言为C语言。1.C语言为JavaScript提供了高性能和系统级编程能力。2.JavaScript的内存管理和性能优化依赖于C语言。3.C语言的跨平台特性帮助JavaScript在不同操作系统上高效运行。

JavaScript在浏览器和Node.js环境中运行,依赖JavaScript引擎解析和执行代码。1)解析阶段生成抽象语法树(AST);2)编译阶段将AST转换为字节码或机器码;3)执行阶段执行编译后的代码。

Python和JavaScript的未来趋势包括:1.Python将巩固在科学计算和AI领域的地位,2.JavaScript将推动Web技术发展,3.跨平台开发将成为热门,4.性能优化将是重点。两者都将继续在各自领域扩展应用场景,并在性能上有更多突破。

Python和JavaScript在开发环境上的选择都很重要。1)Python的开发环境包括PyCharm、JupyterNotebook和Anaconda,适合数据科学和快速原型开发。2)JavaScript的开发环境包括Node.js、VSCode和Webpack,适用于前端和后端开发。根据项目需求选择合适的工具可以提高开发效率和项目成功率。

是的,JavaScript的引擎核心是用C语言编写的。1)C语言提供了高效性能和底层控制,适合JavaScript引擎的开发。2)以V8引擎为例,其核心用C 编写,结合了C的效率和面向对象特性。3)JavaScript引擎的工作原理包括解析、编译和执行,C语言在这些过程中发挥关键作用。


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