sha1.js 2.4 KB

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  1. "use strict";
  2. Object.defineProperty(exports, "__esModule", { value: true });
  3. function f(s, x, y, z) {
  4. switch (s) {
  5. case 0:
  6. return (x & y) ^ (~x & z);
  7. case 1:
  8. return x ^ y ^ z;
  9. case 2:
  10. return (x & y) ^ (x & z) ^ (y & z);
  11. case 3:
  12. return x ^ y ^ z;
  13. }
  14. }
  15. function ROTL(x, n) {
  16. return (x << n) | (x >>> (32 - n));
  17. }
  18. function sha1(bytes) {
  19. const K = [0x5a827999, 0x6ed9eba1, 0x8f1bbcdc, 0xca62c1d6];
  20. const H = [0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0];
  21. const newBytes = new Uint8Array(bytes.length + 1);
  22. newBytes.set(bytes);
  23. newBytes[bytes.length] = 0x80;
  24. bytes = newBytes;
  25. const l = bytes.length / 4 + 2;
  26. const N = Math.ceil(l / 16);
  27. const M = new Array(N);
  28. for (let i = 0; i < N; ++i) {
  29. const arr = new Uint32Array(16);
  30. for (let j = 0; j < 16; ++j) {
  31. arr[j] =
  32. (bytes[i * 64 + j * 4] << 24) |
  33. (bytes[i * 64 + j * 4 + 1] << 16) |
  34. (bytes[i * 64 + j * 4 + 2] << 8) |
  35. bytes[i * 64 + j * 4 + 3];
  36. }
  37. M[i] = arr;
  38. }
  39. M[N - 1][14] = ((bytes.length - 1) * 8) / Math.pow(2, 32);
  40. M[N - 1][14] = Math.floor(M[N - 1][14]);
  41. M[N - 1][15] = ((bytes.length - 1) * 8) & 0xffffffff;
  42. for (let i = 0; i < N; ++i) {
  43. const W = new Uint32Array(80);
  44. for (let t = 0; t < 16; ++t) {
  45. W[t] = M[i][t];
  46. }
  47. for (let t = 16; t < 80; ++t) {
  48. W[t] = ROTL(W[t - 3] ^ W[t - 8] ^ W[t - 14] ^ W[t - 16], 1);
  49. }
  50. let a = H[0];
  51. let b = H[1];
  52. let c = H[2];
  53. let d = H[3];
  54. let e = H[4];
  55. for (let t = 0; t < 80; ++t) {
  56. const s = Math.floor(t / 20);
  57. const T = (ROTL(a, 5) + f(s, b, c, d) + e + K[s] + W[t]) >>> 0;
  58. e = d;
  59. d = c;
  60. c = ROTL(b, 30) >>> 0;
  61. b = a;
  62. a = T;
  63. }
  64. H[0] = (H[0] + a) >>> 0;
  65. H[1] = (H[1] + b) >>> 0;
  66. H[2] = (H[2] + c) >>> 0;
  67. H[3] = (H[3] + d) >>> 0;
  68. H[4] = (H[4] + e) >>> 0;
  69. }
  70. return Uint8Array.of(H[0] >> 24, H[0] >> 16, H[0] >> 8, H[0], H[1] >> 24, H[1] >> 16, H[1] >> 8, H[1], H[2] >> 24, H[2] >> 16, H[2] >> 8, H[2], H[3] >> 24, H[3] >> 16, H[3] >> 8, H[3], H[4] >> 24, H[4] >> 16, H[4] >> 8, H[4]);
  71. }
  72. exports.default = sha1;