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https://www.cadillacjacksgaming.com/wp-content/plugins/pixelyoursite/dist/scripts/sha256.js?ver=0.11.0

js cadillacjacksgaming.com collected 2026-09-25 04:40:52 UTC 21,450 bytes, 526 lines download raw bytes

1/**
2 * [js-sha256]{@link https://github.com/emn178/js-sha256}
3 *
4 * @version 0.11.0
5 * @author Chen, Yi-Cyuan [[email protected]]
6 * @copyright Chen, Yi-Cyuan 2014-2024
7 * @license MIT
8 */
9/*jslint bitwise: true */
10(function () {
11    'use strict';
12
13    var ERROR = 'input is invalid type';
14    var WINDOW = typeof window === 'object';
15    var root = WINDOW ? window : {};
16    if (root.JS_SHA256_NO_WINDOW) {
17        WINDOW = false;
18    }
19    var WEB_WORKER = !WINDOW && typeof self === 'object';
20    var NODE_JS = !root.JS_SHA256_NO_NODE_JS && typeof process === 'object' && process.versions && process.versions.node;
21    if (NODE_JS) {
22        root = global;
23    } else if (WEB_WORKER) {
24        root = self;
25    }
26    var COMMON_JS = !root.JS_SHA256_NO_COMMON_JS && typeof module === 'object' && module.exports;
27    var AMD = typeof define === 'function' && define.amd;
28    var ARRAY_BUFFER = !root.JS_SHA256_NO_ARRAY_BUFFER && typeof ArrayBuffer !== 'undefined';
29    var HEX_CHARS = '0123456789abcdef'.split('');
30    var EXTRA = [-2147483648, 8388608, 32768, 128];
31    var SHIFT = [24, 16, 8, 0];
32    var K = [
33        0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5, 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5,
34        0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3, 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174,
35        0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc, 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da,
36        0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7, 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967,
37        0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13, 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85,
38        0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3, 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070,
39        0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5, 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3,
40        0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208, 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2
41    ];
42    var OUTPUT_TYPES = ['hex', 'array', 'digest', 'arrayBuffer'];
43
44    var blocks = [];
45
46    if (root.JS_SHA256_NO_NODE_JS || !Array.isArray) {
47        Array.isArray = function (obj) {
48            return Object.prototype.toString.call(obj) === '[object Array]';
49        };
50    }
51
52    if (ARRAY_BUFFER && (root.JS_SHA256_NO_ARRAY_BUFFER_IS_VIEW || !ArrayBuffer.isView)) {
53        ArrayBuffer.isView = function (obj) {
54            return typeof obj === 'object' && obj.buffer && obj.buffer.constructor === ArrayBuffer;
55        };
56    }
57
58    var createOutputMethod = function (outputType, is224) {
59        return function (message) {
60            return new Sha256(is224, true).update(message)[outputType]();
61        };
62    };
63
64    var createMethod = function (is224) {
65        var method = createOutputMethod('hex', is224);
66        if (NODE_JS) {
67            method = nodeWrap(method, is224);
68        }
69        method.create = function () {
70            return new Sha256(is224);
71        };
72        method.update = function (message) {
73            return method.create().update(message);
74        };
75        for (var i = 0; i < OUTPUT_TYPES.length; ++i) {
76            var type = OUTPUT_TYPES[i];
77            method[type] = createOutputMethod(type, is224);
78        }
79        return method;
80    };
81
82    var nodeWrap = function (method, is224) {
83        var crypto = require('crypto')
84        var Buffer = require('buffer').Buffer;
85        var algorithm = is224 ? 'sha224' : 'sha256';
86        var bufferFrom;
87        if (Buffer.from && !root.JS_SHA256_NO_BUFFER_FROM) {
88            bufferFrom = Buffer.from;
89        } else {
90            bufferFrom = function (message) {
91                return new Buffer(message);
92            };
93        }
94        var nodeMethod = function (message) {
95            if (typeof message === 'string') {
96                return crypto.createHash(algorithm).update(message, 'utf8').digest('hex');
97            } else {
98                if (message === null || message === undefined) {
99                    throw new Error(ERROR);
100                } else if (message.constructor === ArrayBuffer) {
101                    message = new Uint8Array(message);
102                }
103            }
104            if (Array.isArray(message) || ArrayBuffer.isView(message) ||
105                message.constructor === Buffer) {
106                return crypto.createHash(algorithm).update(bufferFrom(message)).digest('hex');
107            } else {
108                return method(message);
109            }
110        };
111        return nodeMethod;
112    };
113
114    var createHmacOutputMethod = function (outputType, is224) {
115        return function (key, message) {
116            return new HmacSha256(key, is224, true).update(message)[outputType]();
117        };
118    };
119
120    var createHmacMethod = function (is224) {
121        var method = createHmacOutputMethod('hex', is224);
122        method.create = function (key) {
123            return new HmacSha256(key, is224);
124        };
125        method.update = function (key, message) {
126            return method.create(key).update(message);
127        };
128        for (var i = 0; i < OUTPUT_TYPES.length; ++i) {
129            var type = OUTPUT_TYPES[i];
130            method[type] = createHmacOutputMethod(type, is224);
131        }
132        return method;
133    };
134
135    function Sha256(is224, sharedMemory) {
136        if (sharedMemory) {
137            blocks[0] = blocks[16] = blocks[1] = blocks[2] = blocks[3] 
vendor: 13,172 bytes, lines 137-441
137=
138                blocks[4] = blocks[5] = blocks[6] = blocks[7] =
139                    blocks[8] = blocks[9] = blocks[10] = blocks[11] =
140                        blocks[12] = blocks[13] = blocks[14] = blocks[15] = 0;
141            this.blocks = blocks;
142        } else {
143            this.blocks = [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0];
144        }
145
146        if (is224) {
147            this.h0 = 0xc1059ed8;
148            this.h1 = 0x367cd507;
149            this.h2 = 0x3070dd17;
150            this.h3 = 0xf70e5939;
151            this.h4 = 0xffc00b31;
152            this.h5 = 0x68581511;
153            this.h6 = 0x64f98fa7;
154            this.h7 = 0xbefa4fa4;
155        } else { // 256
156            this.h0 = 0x6a09e667;
157            this.h1 = 0xbb67ae85;
158            this.h2 = 0x3c6ef372;
159            this.h3 = 0xa54ff53a;
160            this.h4 = 0x510e527f;
161            this.h5 = 0x9b05688c;
162            this.h6 = 0x1f83d9ab;
163            this.h7 = 0x5be0cd19;
164        }
165
166        this.block = this.start = this.bytes = this.hBytes = 0;
167        this.finalized = this.hashed = false;
168        this.first = true;
169        this.is224 = is224;
170    }
171
172    Sha256.prototype.update = function (message) {
173        if (this.finalized) {
174            return;
175        }
176        var notString, type = typeof message;
177        if (type !== 'string') {
178            if (type === 'object') {
179                if (message === null) {
180                    throw new Error(ERROR);
181                } else if (ARRAY_BUFFER && message.constructor === ArrayBuffer) {
182                    message = new Uint8Array(message);
183                } else if (!Array.isArray(message)) {
184                    if (!ARRAY_BUFFER || !ArrayBuffer.isView(message)) {
185                        throw new Error(ERROR);
186                    }
187                }
188            } else {
189                throw new Error(ERROR);
190            }
191            notString = true;
192        }
193        var code, index = 0, i, length = message.length, blocks = this.blocks;
194        while (index < length) {
195            if (this.hashed) {
196                this.hashed = false;
197                blocks[0] = this.block;
198                this.block = blocks[16] = blocks[1] = blocks[2] = blocks[3] =
199                    blocks[4] = blocks[5] = blocks[6] = blocks[7] =
200                        blocks[8] = blocks[9] = blocks[10] = blocks[11] =
201                            blocks[12] = blocks[13] = blocks[14] = blocks[15] = 0;
202            }
203
204            if (notString) {
205                for (i = this.start; index < length && i < 64; ++index) {
206                    blocks[i >>> 2] |= message[index] << SHIFT[i++ & 3];
207                }
208            } else {
209                for (i = this.start; index < length && i < 64; ++index) {
210                    code = message.charCodeAt(index);
211                    if (code < 0x80) {
212                        blocks[i >>> 2] |= code << SHIFT[i++ & 3];
213                    } else if (code < 0x800) {
214                        blocks[i >>> 2] |= (0xc0 | (code >>> 6)) << SHIFT[i++ & 3];
215                        blocks[i >>> 2] |= (0x80 | (code & 0x3f)) << SHIFT[i++ & 3];
216                    } else if (code < 0xd800 || code >= 0xe000) {
217                        blocks[i >>> 2] |= (0xe0 | (code >>> 12)) << SHIFT[i++ & 3];
218                        blocks[i >>> 2] |= (0x80 | ((code >>> 6) & 0x3f)) << SHIFT[i++ & 3];
219                        blocks[i >>> 2] |= (0x80 | (code & 0x3f)) << SHIFT[i++ & 3];
220                    } else {
221                        code = 0x10000 + (((code & 0x3ff) << 10) | (message.charCodeAt(++index) & 0x3ff));
222                        blocks[i >>> 2] |= (0xf0 | (code >>> 18)) << SHIFT[i++ & 3];
223                        blocks[i >>> 2] |= (0x80 | ((code >>> 12) & 0x3f)) << SHIFT[i++ & 3];
224                        blocks[i >>> 2] |= (0x80 | ((code >>> 6) & 0x3f)) << SHIFT[i++ & 3];
225                        blocks[i >>> 2] |= (0x80 | (code & 0x3f)) << SHIFT[i++ & 3];
226                    }
227                }
228            }
229
230            this.lastByteIndex = i;
231            this.bytes += i - this.start;
232            if (i >= 64) {
233                this.block = blocks[16];
234                this.start = i - 64;
235                this.hash();
236                this.hashed = true;
237            } else {
238                this.start = i;
239            }
240        }
241        if (this.bytes > 4294967295) {
242            this.hBytes += this.bytes / 4294967296 << 0;
243            this.bytes = this.bytes % 4294967296;
244        }
245        return this;
246    };
247
248    Sha256.prototype.finalize = function () {
249        if (this.finalized) {
250            return;
251        }
252        this.finalized = true;
253        var blocks = this.blocks, i = this.lastByteIndex;
254        blocks[16] = this.block;
255        blocks[i >>> 2] |= EXTRA[i & 3];
256        this.block = blocks[16];
257        if (i >= 56) {
258            if (!this.hashed) {
259                this.hash();
260            }
261            blocks[0] = this.block;
262            blocks[16] = blocks[1] = blocks[2] = blocks[3] =
263                blocks[4] = blocks[5] = blocks[6] = blocks[7] =
264                    blocks[8] = blocks[9] = blocks[10] = blocks[11] =
265                        blocks[12] = blocks[13] = blocks[14] = blocks[15] = 0;
266        }
267        blocks[14] = this.hBytes << 3 | this.bytes >>> 29;
268        blocks[15] = this.bytes << 3;
269        this.hash();
270    };
271
272    Sha256.prototype.hash = function () {
273        var a = this.h0, b = this.h1, c = this.h2, d = this.h3, e = this.h4, f = this.h5, g = this.h6,
274            h = this.h7, blocks = this.blocks, j, s0, s1, maj, t1, t2, ch, ab, da, cd, bc;
275
276        for (j = 16; j < 64; ++j) {
277            // rightrotate
278            t1 = blocks[j - 15];
279            s0 = ((t1 >>> 7) | (t1 << 25)) ^ ((t1 >>> 18) | (t1 << 14)) ^ (t1 >>> 3);
280            t1 = blocks[j - 2];
281            s1 = ((t1 >>> 17) | (t1 << 15)) ^ ((t1 >>> 19) | (t1 << 13)) ^ (t1 >>> 10);
282            blocks[j] = blocks[j - 16] + s0 + blocks[j - 7] + s1 << 0;
283        }
284
285        bc = b & c;
286        for (j = 0; j < 64; j += 4) {
287            if (this.first) {
288                if (this.is224) {
289                    ab = 300032;
290                    t1 = blocks[0] - 1413257819;
291                    h = t1 - 150054599 << 0;
292                    d = t1 + 24177077 << 0;
293                } else {
294                    ab = 704751109;
295                    t1 = blocks[0] - 210244248;
296                    h = t1 - 1521486534 << 0;
297                    d = t1 + 143694565 << 0;
298                }
299                this.first = false;
300            } else {
301                s0 = ((a >>> 2) | (a << 30)) ^ ((a >>> 13) | (a << 19)) ^ ((a >>> 22) | (a << 10));
302                s1 = ((e >>> 6) | (e << 26)) ^ ((e >>> 11) | (e << 21)) ^ ((e >>> 25) | (e << 7));
303                ab = a & b;
304                maj = ab ^ (a & c) ^ bc;
305                ch = (e & f) ^ (~e & g);
306                t1 = h + s1 + ch + K[j] + blocks[j];
307                t2 = s0 + maj;
308                h = d + t1 << 0;
309                d = t1 + t2 << 0;
310            }
311            s0 = ((d >>> 2) | (d << 30)) ^ ((d >>> 13) | (d << 19)) ^ ((d >>> 22) | (d << 10));
312            s1 = ((h >>> 6) | (h << 26)) ^ ((h >>> 11) | (h << 21)) ^ ((h >>> 25) | (h << 7));
313            da = d & a;
314            maj = da ^ (d & b) ^ ab;
315            ch = (h & e) ^ (~h & f);
316            t1 = g + s1 + ch + K[j + 1] + blocks[j + 1];
317            t2 = s0 + maj;
318            g = c + t1 << 0;
319            c = t1 + t2 << 0;
320            s0 = ((c >>> 2) | (c << 30)) ^ ((c >>> 13) | (c << 19)) ^ ((c >>> 22) | (c << 10));
321            s1 = ((g >>> 6) | (g << 26)) ^ ((g >>> 11) | (g << 21)) ^ ((g >>> 25) | (g << 7));
322            cd = c & d;
323            maj = cd ^ (c & a) ^ da;
324            ch = (g & h) ^ (~g & e);
325            t1 = f + s1 + ch + K[j + 2] + blocks[j + 2];
326            t2 = s0 + maj;
327            f = b + t1 << 0;
328            b = t1 + t2 << 0;
329            s0 = ((b >>> 2) | (b << 30)) ^ ((b >>> 13) | (b << 19)) ^ ((b >>> 22) | (b << 10));
330            s1 = ((f >>> 6) | (f << 26)) ^ ((f >>> 11) | (f << 21)) ^ ((f >>> 25) | (f << 7));
331            bc = b & c;
332            maj = bc ^ (b & d) ^ cd;
333            ch = (f & g) ^ (~f & h);
334            t1 = e + s1 + ch + K[j + 3] + blocks[j + 3];
335            t2 = s0 + maj;
336            e = a + t1 << 0;
337            a = t1 + t2 << 0;
338            this.chromeBugWorkAround = true;
339        }
340
341        this.h0 = this.h0 + a << 0;
342        this.h1 = this.h1 + b << 0;
343        this.h2 = this.h2 + c << 0;
344        this.h3 = this.h3 + d << 0;
345        this.h4 = this.h4 + e << 0;
346        this.h5 = this.h5 + f << 0;
347        this.h6 = this.h6 + g << 0;
348        this.h7 = this.h7 + h << 0;
349    };
350
351    Sha256.prototype.hex = function () {
352        this.finalize();
353
354        var h0 = this.h0, h1 = this.h1, h2 = this.h2, h3 = this.h3, h4 = this.h4, h5 = this.h5,
355            h6 = this.h6, h7 = this.h7;
356
357        var hex = HEX_CHARS[(h0 >>> 28) & 0x0F] + HEX_CHARS[(h0 >>> 24) & 0x0F] +
358            HEX_CHARS[(h0 >>> 20) & 0x0F] + HEX_CHARS[(h0 >>> 16) & 0x0F] +
359            HEX_CHARS[(h0 >>> 12) & 0x0F] + HEX_CHARS[(h0 >>> 8) & 0x0F] +
360            HEX_CHARS[(h0 >>> 4) & 0x0F] + HEX_CHARS[h0 & 0x0F] +
361            HEX_CHARS[(h1 >>> 28) & 0x0F] + HEX_CHARS[(h1 >>> 24) & 0x0F] +
362            HEX_CHARS[(h1 >>> 20) & 0x0F] + HEX_CHARS[(h1 >>> 16) & 0x0F] +
363            HEX_CHARS[(h1 >>> 12) & 0x0F] + HEX_CHARS[(h1 >>> 8) & 0x0F] +
364            HEX_CHARS[(h1 >>> 4) & 0x0F] + HEX_CHARS[h1 & 0x0F] +
365            HEX_CHARS[(h2 >>> 28) & 0x0F] + HEX_CHARS[(h2 >>> 24) & 0x0F] +
366            HEX_CHARS[(h2 >>> 20) & 0x0F] + HEX_CHARS[(h2 >>> 16) & 0x0F] +
367            HEX_CHARS[(h2 >>> 12) & 0x0F] + HEX_CHARS[(h2 >>> 8) & 0x0F] +
368            HEX_CHARS[(h2 >>> 4) & 0x0F] + HEX_CHARS[h2 & 0x0F] +
369            HEX_CHARS[(h3 >>> 28) & 0x0F] + HEX_CHARS[(h3 >>> 24) & 0x0F] +
370            HEX_CHARS[(h3 >>> 20) & 0x0F] + HEX_CHARS[(h3 >>> 16) & 0x0F] +
371            HEX_CHARS[(h3 >>> 12) & 0x0F] + HEX_CHARS[(h3 >>> 8) & 0x0F] +
372            HEX_CHARS[(h3 >>> 4) & 0x0F] + HEX_CHARS[h3 & 0x0F] +
373            HEX_CHARS[(h4 >>> 28) & 0x0F] + HEX_CHARS[(h4 >>> 24) & 0x0F] +
374            HEX_CHARS[(h4 >>> 20) & 0x0F] + HEX_CHARS[(h4 >>> 16) & 0x0F] +
375            HEX_CHARS[(h4 >>> 12) & 0x0F] + HEX_CHARS[(h4 >>> 8) & 0x0F] +
376            HEX_CHARS[(h4 >>> 4) & 0x0F] + HEX_CHARS[h4 & 0x0F] +
377            HEX_CHARS[(h5 >>> 28) & 0x0F] + HEX_CHARS[(h5 >>> 24) & 0x0F] +
378            HEX_CHARS[(h5 >>> 20) & 0x0F] + HEX_CHARS[(h5 >>> 16) & 0x0F] +
379            HEX_CHARS[(h5 >>> 12) & 0x0F] + HEX_CHARS[(h5 >>> 8) & 0x0F] +
380            HEX_CHARS[(h5 >>> 4) & 0x0F] + HEX_CHARS[h5 & 0x0F] +
381            HEX_CHARS[(h6 >>> 28) & 0x0F] + HEX_CHARS[(h6 >>> 24) & 0x0F] +
382            HEX_CHARS[(h6 >>> 20) & 0x0F] + HEX_CHARS[(h6 >>> 16) & 0x0F] +
383            HEX_CHARS[(h6 >>> 12) & 0x0F] + HEX_CHARS[(h6 >>> 8) & 0x0F] +
384            HEX_CHARS[(h6 >>> 4) & 0x0F] + HEX_CHARS[h6 & 0x0F];
385        if (!this.is224) {
386            hex += HEX_CHARS[(h7 >>> 28) & 0x0F] + HEX_CHARS[(h7 >>> 24) & 0x0F] +
387                HEX_CHARS[(h7 >>> 20) & 0x0F] + HEX_CHARS[(h7 >>> 16) & 0x0F] +
388                HEX_CHARS[(h7 >>> 12) & 0x0F] + HEX_CHARS[(h7 >>> 8) & 0x0F] +
389                HEX_CHARS[(h7 >>> 4) & 0x0F] + HEX_CHARS[h7 & 0x0F];
390        }
391        return hex;
392    };
393
394    Sha256.prototype.toString = Sha256.prototype.hex;
395
396    Sha256.prototype.digest = function () {
397        this.finalize();
398
399        var h0 = this.h0, h1 = this.h1, h2 = this.h2, h3 = this.h3, h4 = this.h4, h5 = this.h5,
400            h6 = this.h6, h7 = this.h7;
401
402        var arr = [
403            (h0 >>> 24) & 0xFF, (h0 >>> 16) & 0xFF, (h0 >>> 8) & 0xFF, h0 & 0xFF,
404            (h1 >>> 24) & 0xFF, (h1 >>> 16) & 0xFF, (h1 >>> 8) & 0xFF, h1 & 0xFF,
405            (h2 >>> 24) & 0xFF, (h2 >>> 16) & 0xFF, (h2 >>> 8) & 0xFF, h2 & 0xFF,
406            (h3 >>> 24) & 0xFF, (h3 >>> 16) & 0xFF, (h3 >>> 8) & 0xFF, h3 & 0xFF,
407            (h4 >>> 24) & 0xFF, (h4 >>> 16) & 0xFF, (h4 >>> 8) & 0xFF, h4 & 0xFF,
408            (h5 >>> 24) & 0xFF, (h5 >>> 16) & 0xFF, (h5 >>> 8) & 0xFF, h5 & 0xFF,
409            (h6 >>> 24) & 0xFF, (h6 >>> 16) & 0xFF, (h6 >>> 8) & 0xFF, h6 & 0xFF
410        ];
411        if (!this.is224) {
412            arr.push((h7 >>> 24) & 0xFF, (h7 >>> 16) & 0xFF, (h7 >>> 8) & 0xFF, h7 & 0xFF);
413        }
414        return arr;
415    };
416
417    Sha256.prototype.array = Sha256.prototype.digest;
418
419    Sha256.prototype.arrayBuffer = function () {
420        this.finalize();
421
422        var buffer = new ArrayBuffer(this.is224 ? 28 : 32);
423        var dataView = new DataView(buffer);
424        dataView.setUint32(0, this.h0);
425        dataView.setUint32(4, this.h1);
426        dataView.setUint32(8, this.h2);
427        dataView.setUint32(12, this.h3);
428        dataView.setUint32(16, this.h4);
429        dataView.setUint32(20, this.h5);
430        dataView.setUint32(24, this.h6);
431        if (!this.is224) {
432            dataView.setUint32(28, this.h7);
433        }
434        return buffer;
435    };
436
437    function HmacSha256(key, is224, sharedMemory) {
438        var i, type = typeof key;
439        if (type === 'string') {
440            var bytes = [], length = key.length, index = 0, code;
441            for (i = 0; i < length; ++i) {
442                code = key.charCodeAt(i);
443                if (code < 0x80) {
444                    bytes[index++] = code;
445                } else if (code < 0x800) {
446                    bytes[index++] = (0xc0 | (code >>> 6));
447                    bytes[index++] = (0x80 | (code & 0x3f));
448                } else if (code < 0xd800 || code >= 0xe000) {
449                    bytes[index++] = (0xe0 | (code >>> 12));
450                    bytes[index++] = (0x80 | ((code >>> 6) & 0x3f));
451                    bytes[index++] = (0x80 | (code & 0x3f));
452                } else {
453                    code = 0x10000 + (((code & 0x3ff) << 10) | (key.charCodeAt(++i) & 0x3ff));
454                    bytes[index++] = (0xf0 | (code >>> 18));
455                    bytes[index++] = (0x80 | ((code >>> 12) & 0x3f));
456                    bytes[index++] = (0x80 | ((code >>> 6) & 0x3f));
457                    bytes[index++] = (0x80 | (code & 0x3f));
458                }
459            }
460            key = bytes;
461        } else {
462            if (type === 'object') {
463                if (key === null) {
464                    throw new Error(ERROR);
465                } else if (ARRAY_BUFFER && key.constructor === ArrayBuffer) {
466                    key = new Uint8Array(key);
467                } else if (!Array.isArray(key)) {
468                    if (!ARRAY_BUFFER || !ArrayBuffer.isView(key)) {
469                        throw new Error(ERROR);
470                    }
471                }
472            } else {
473                throw new Error(ERROR);
474            }
475        }
476
477        if (key.length > 64) {
478            key = (new Sha256(is224, true)).update(key).array();
479        }
480
481        var oKeyPad = [], iKeyPad = [];
482        for (i = 0; i < 64; ++i) {
483            var b = key[i] || 0;
484            oKeyPad[i] = 0x5c ^ b;
485            iKeyPad[i] = 0x36 ^ b;
486        }
487
488        Sha256.call(this, is224, sharedMemory);
489
490        this.update(iKeyPad);
491        this.oKeyPad = oKeyPad;
492        this.inner = true;
493        this.sharedMemory = sharedMemory;
494    }
495    HmacSha256.prototype = new Sha256();
496
497    HmacSha256.prototype.finalize = function () {
498        Sha256.prototype.finalize.call(this);
499        if (this.inner) {
500            this.inner = false;
501            var innerHash = this.array();
502            Sha256.call(this, this.is224, this.sharedMemory);
503            this.update(this.oKeyPad);
504            this.update(innerHash);
505            Sha256.prototype.finalize.call(this);
506        }
507    };
508
509    var exports = createMethod();
510    exports.sha256 = exports;
511    exports.sha224 = createMethod(true);
512    exports.sha256.hmac = createHmacMethod();
513    exports.sha224.hmac = createHmacMethod(true);
514
515    if (COMMON_JS) {
516        module.exports = exports;
517    } else {
518        root.sha256 = exports.sha256;
519        root.sha224 = exports.sha224;
520        if (AMD) {
521            define(function () {
522                return exports;
523            });
524        }
525    }
526})();

Line numbers count LF bytes from the start of the resource, as the search results do. Vendor segments are library code the classifier recognised; they are stored but not indexed. Bytes are shown as Latin1 characters, one per byte.