crypto-js_aes.js 7.2 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180
  1. import {
  2. require_enc_base64
  3. } from "./chunk-4X6QPTPV.js";
  4. import {
  5. require_md5
  6. } from "./chunk-EBL76JWI.js";
  7. import {
  8. require_cipher_core,
  9. require_evpkdf
  10. } from "./chunk-3SG7NCIC.js";
  11. import {
  12. require_core
  13. } from "./chunk-6Y2MJOYY.js";
  14. import {
  15. __commonJS,
  16. init_define_APP_INFO
  17. } from "./chunk-XY75H3MP.js";
  18. // node_modules/crypto-js/aes.js
  19. var require_aes = __commonJS({
  20. "node_modules/crypto-js/aes.js"(exports, module) {
  21. init_define_APP_INFO();
  22. (function(root, factory, undef) {
  23. if (typeof exports === "object") {
  24. module.exports = exports = factory(require_core(), require_enc_base64(), require_md5(), require_evpkdf(), require_cipher_core());
  25. } else if (typeof define === "function" && define.amd) {
  26. define(["./core", "./enc-base64", "./md5", "./evpkdf", "./cipher-core"], factory);
  27. } else {
  28. factory(root.CryptoJS);
  29. }
  30. })(exports, function(CryptoJS) {
  31. (function() {
  32. var C = CryptoJS;
  33. var C_lib = C.lib;
  34. var BlockCipher = C_lib.BlockCipher;
  35. var C_algo = C.algo;
  36. var SBOX = [];
  37. var INV_SBOX = [];
  38. var SUB_MIX_0 = [];
  39. var SUB_MIX_1 = [];
  40. var SUB_MIX_2 = [];
  41. var SUB_MIX_3 = [];
  42. var INV_SUB_MIX_0 = [];
  43. var INV_SUB_MIX_1 = [];
  44. var INV_SUB_MIX_2 = [];
  45. var INV_SUB_MIX_3 = [];
  46. (function() {
  47. var d = [];
  48. for (var i = 0; i < 256; i++) {
  49. if (i < 128) {
  50. d[i] = i << 1;
  51. } else {
  52. d[i] = i << 1 ^ 283;
  53. }
  54. }
  55. var x = 0;
  56. var xi = 0;
  57. for (var i = 0; i < 256; i++) {
  58. var sx = xi ^ xi << 1 ^ xi << 2 ^ xi << 3 ^ xi << 4;
  59. sx = sx >>> 8 ^ sx & 255 ^ 99;
  60. SBOX[x] = sx;
  61. INV_SBOX[sx] = x;
  62. var x2 = d[x];
  63. var x4 = d[x2];
  64. var x8 = d[x4];
  65. var t = d[sx] * 257 ^ sx * 16843008;
  66. SUB_MIX_0[x] = t << 24 | t >>> 8;
  67. SUB_MIX_1[x] = t << 16 | t >>> 16;
  68. SUB_MIX_2[x] = t << 8 | t >>> 24;
  69. SUB_MIX_3[x] = t;
  70. var t = x8 * 16843009 ^ x4 * 65537 ^ x2 * 257 ^ x * 16843008;
  71. INV_SUB_MIX_0[sx] = t << 24 | t >>> 8;
  72. INV_SUB_MIX_1[sx] = t << 16 | t >>> 16;
  73. INV_SUB_MIX_2[sx] = t << 8 | t >>> 24;
  74. INV_SUB_MIX_3[sx] = t;
  75. if (!x) {
  76. x = xi = 1;
  77. } else {
  78. x = x2 ^ d[d[d[x8 ^ x2]]];
  79. xi ^= d[d[xi]];
  80. }
  81. }
  82. })();
  83. var RCON = [0, 1, 2, 4, 8, 16, 32, 64, 128, 27, 54];
  84. var AES = C_algo.AES = BlockCipher.extend({
  85. _doReset: function() {
  86. var t;
  87. if (this._nRounds && this._keyPriorReset === this._key) {
  88. return;
  89. }
  90. var key = this._keyPriorReset = this._key;
  91. var keyWords = key.words;
  92. var keySize = key.sigBytes / 4;
  93. var nRounds = this._nRounds = keySize + 6;
  94. var ksRows = (nRounds + 1) * 4;
  95. var keySchedule = this._keySchedule = [];
  96. for (var ksRow = 0; ksRow < ksRows; ksRow++) {
  97. if (ksRow < keySize) {
  98. keySchedule[ksRow] = keyWords[ksRow];
  99. } else {
  100. t = keySchedule[ksRow - 1];
  101. if (!(ksRow % keySize)) {
  102. t = t << 8 | t >>> 24;
  103. t = SBOX[t >>> 24] << 24 | SBOX[t >>> 16 & 255] << 16 | SBOX[t >>> 8 & 255] << 8 | SBOX[t & 255];
  104. t ^= RCON[ksRow / keySize | 0] << 24;
  105. } else if (keySize > 6 && ksRow % keySize == 4) {
  106. t = SBOX[t >>> 24] << 24 | SBOX[t >>> 16 & 255] << 16 | SBOX[t >>> 8 & 255] << 8 | SBOX[t & 255];
  107. }
  108. keySchedule[ksRow] = keySchedule[ksRow - keySize] ^ t;
  109. }
  110. }
  111. var invKeySchedule = this._invKeySchedule = [];
  112. for (var invKsRow = 0; invKsRow < ksRows; invKsRow++) {
  113. var ksRow = ksRows - invKsRow;
  114. if (invKsRow % 4) {
  115. var t = keySchedule[ksRow];
  116. } else {
  117. var t = keySchedule[ksRow - 4];
  118. }
  119. if (invKsRow < 4 || ksRow <= 4) {
  120. invKeySchedule[invKsRow] = t;
  121. } else {
  122. invKeySchedule[invKsRow] = INV_SUB_MIX_0[SBOX[t >>> 24]] ^ INV_SUB_MIX_1[SBOX[t >>> 16 & 255]] ^ INV_SUB_MIX_2[SBOX[t >>> 8 & 255]] ^ INV_SUB_MIX_3[SBOX[t & 255]];
  123. }
  124. }
  125. },
  126. encryptBlock: function(M, offset) {
  127. this._doCryptBlock(M, offset, this._keySchedule, SUB_MIX_0, SUB_MIX_1, SUB_MIX_2, SUB_MIX_3, SBOX);
  128. },
  129. decryptBlock: function(M, offset) {
  130. var t = M[offset + 1];
  131. M[offset + 1] = M[offset + 3];
  132. M[offset + 3] = t;
  133. this._doCryptBlock(M, offset, this._invKeySchedule, INV_SUB_MIX_0, INV_SUB_MIX_1, INV_SUB_MIX_2, INV_SUB_MIX_3, INV_SBOX);
  134. var t = M[offset + 1];
  135. M[offset + 1] = M[offset + 3];
  136. M[offset + 3] = t;
  137. },
  138. _doCryptBlock: function(M, offset, keySchedule, SUB_MIX_02, SUB_MIX_12, SUB_MIX_22, SUB_MIX_32, SBOX2) {
  139. var nRounds = this._nRounds;
  140. var s0 = M[offset] ^ keySchedule[0];
  141. var s1 = M[offset + 1] ^ keySchedule[1];
  142. var s2 = M[offset + 2] ^ keySchedule[2];
  143. var s3 = M[offset + 3] ^ keySchedule[3];
  144. var ksRow = 4;
  145. for (var round = 1; round < nRounds; round++) {
  146. var t0 = SUB_MIX_02[s0 >>> 24] ^ SUB_MIX_12[s1 >>> 16 & 255] ^ SUB_MIX_22[s2 >>> 8 & 255] ^ SUB_MIX_32[s3 & 255] ^ keySchedule[ksRow++];
  147. var t1 = SUB_MIX_02[s1 >>> 24] ^ SUB_MIX_12[s2 >>> 16 & 255] ^ SUB_MIX_22[s3 >>> 8 & 255] ^ SUB_MIX_32[s0 & 255] ^ keySchedule[ksRow++];
  148. var t2 = SUB_MIX_02[s2 >>> 24] ^ SUB_MIX_12[s3 >>> 16 & 255] ^ SUB_MIX_22[s0 >>> 8 & 255] ^ SUB_MIX_32[s1 & 255] ^ keySchedule[ksRow++];
  149. var t3 = SUB_MIX_02[s3 >>> 24] ^ SUB_MIX_12[s0 >>> 16 & 255] ^ SUB_MIX_22[s1 >>> 8 & 255] ^ SUB_MIX_32[s2 & 255] ^ keySchedule[ksRow++];
  150. s0 = t0;
  151. s1 = t1;
  152. s2 = t2;
  153. s3 = t3;
  154. }
  155. var t0 = (SBOX2[s0 >>> 24] << 24 | SBOX2[s1 >>> 16 & 255] << 16 | SBOX2[s2 >>> 8 & 255] << 8 | SBOX2[s3 & 255]) ^ keySchedule[ksRow++];
  156. var t1 = (SBOX2[s1 >>> 24] << 24 | SBOX2[s2 >>> 16 & 255] << 16 | SBOX2[s3 >>> 8 & 255] << 8 | SBOX2[s0 & 255]) ^ keySchedule[ksRow++];
  157. var t2 = (SBOX2[s2 >>> 24] << 24 | SBOX2[s3 >>> 16 & 255] << 16 | SBOX2[s0 >>> 8 & 255] << 8 | SBOX2[s1 & 255]) ^ keySchedule[ksRow++];
  158. var t3 = (SBOX2[s3 >>> 24] << 24 | SBOX2[s0 >>> 16 & 255] << 16 | SBOX2[s1 >>> 8 & 255] << 8 | SBOX2[s2 & 255]) ^ keySchedule[ksRow++];
  159. M[offset] = t0;
  160. M[offset + 1] = t1;
  161. M[offset + 2] = t2;
  162. M[offset + 3] = t3;
  163. },
  164. keySize: 256 / 32
  165. });
  166. C.AES = BlockCipher._createHelper(AES);
  167. })();
  168. return CryptoJS.AES;
  169. });
  170. }
  171. });
  172. // dep:crypto-js_aes
  173. init_define_APP_INFO();
  174. var crypto_js_aes_default = require_aes();
  175. export {
  176. crypto_js_aes_default as default
  177. };
  178. //# sourceMappingURL=crypto-js_aes.js.map