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189 lines
3.3 KiB
189 lines
3.3 KiB
'use strict';
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/**
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* A JavaScript implementation of the Secure Hash Algorithm, SHA-256, as defined
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* in FIPS 180-2
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* Version 2.2-beta Copyright Angel Marin, Paul Johnston 2000 - 2009.
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* Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet
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*
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*/
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var inherits = require('inherits');
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var Hash = require('./hash');
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var Buffer = require('safe-buffer').Buffer;
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var K = [
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0x428A2F98,
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0x71374491,
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0xB5C0FBCF,
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0xE9B5DBA5,
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0x3956C25B,
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0x59F111F1,
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0x923F82A4,
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0xAB1C5ED5,
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0xD807AA98,
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0x12835B01,
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0x243185BE,
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0x550C7DC3,
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0x72BE5D74,
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0x80DEB1FE,
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0x9BDC06A7,
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0xC19BF174,
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0xE49B69C1,
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0xEFBE4786,
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0x0FC19DC6,
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0x240CA1CC,
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0x2DE92C6F,
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0x4A7484AA,
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0x5CB0A9DC,
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0x76F988DA,
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0x983E5152,
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0xA831C66D,
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0xB00327C8,
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0xBF597FC7,
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0xC6E00BF3,
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0xD5A79147,
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0x06CA6351,
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0x14292967,
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0x27B70A85,
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0x2E1B2138,
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0x4D2C6DFC,
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0x53380D13,
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0x650A7354,
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0x766A0ABB,
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0x81C2C92E,
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0x92722C85,
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0xA2BFE8A1,
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0xA81A664B,
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0xC24B8B70,
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0xC76C51A3,
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0xD192E819,
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0xD6990624,
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0xF40E3585,
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0x106AA070,
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0x19A4C116,
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0x1E376C08,
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0x2748774C,
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0x34B0BCB5,
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0x391C0CB3,
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0x4ED8AA4A,
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0x5B9CCA4F,
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0x682E6FF3,
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0x748F82EE,
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0x78A5636F,
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0x84C87814,
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0x8CC70208,
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0x90BEFFFA,
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0xA4506CEB,
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0xBEF9A3F7,
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0xC67178F2
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];
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var W = new Array(64);
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function Sha256() {
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this.init();
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this._w = W; // new Array(64)
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Hash.call(this, 64, 56);
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}
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inherits(Sha256, Hash);
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Sha256.prototype.init = function () {
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this._a = 0x6a09e667;
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this._b = 0xbb67ae85;
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this._c = 0x3c6ef372;
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this._d = 0xa54ff53a;
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this._e = 0x510e527f;
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this._f = 0x9b05688c;
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this._g = 0x1f83d9ab;
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this._h = 0x5be0cd19;
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return this;
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};
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function ch(x, y, z) {
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return z ^ (x & (y ^ z));
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}
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function maj(x, y, z) {
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return (x & y) | (z & (x | y));
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}
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function sigma0(x) {
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return ((x >>> 2) | (x << 30)) ^ ((x >>> 13) | (x << 19)) ^ ((x >>> 22) | (x << 10));
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}
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function sigma1(x) {
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return ((x >>> 6) | (x << 26)) ^ ((x >>> 11) | (x << 21)) ^ ((x >>> 25) | (x << 7));
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}
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function gamma0(x) {
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return ((x >>> 7) | (x << 25)) ^ ((x >>> 18) | (x << 14)) ^ (x >>> 3);
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}
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function gamma1(x) {
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return ((x >>> 17) | (x << 15)) ^ ((x >>> 19) | (x << 13)) ^ (x >>> 10);
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}
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Sha256.prototype._update = function (M) {
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var w = this._w;
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var a = this._a | 0;
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var b = this._b | 0;
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var c = this._c | 0;
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var d = this._d | 0;
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var e = this._e | 0;
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var f = this._f | 0;
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var g = this._g | 0;
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var h = this._h | 0;
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for (var i = 0; i < 16; ++i) {
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w[i] = M.readInt32BE(i * 4);
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}
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for (; i < 64; ++i) {
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w[i] = (gamma1(w[i - 2]) + w[i - 7] + gamma0(w[i - 15]) + w[i - 16]) | 0;
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}
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for (var j = 0; j < 64; ++j) {
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var T1 = (h + sigma1(e) + ch(e, f, g) + K[j] + w[j]) | 0;
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var T2 = (sigma0(a) + maj(a, b, c)) | 0;
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h = g;
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g = f;
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f = e;
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e = (d + T1) | 0;
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d = c;
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c = b;
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b = a;
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a = (T1 + T2) | 0;
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}
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this._a = (a + this._a) | 0;
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this._b = (b + this._b) | 0;
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this._c = (c + this._c) | 0;
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this._d = (d + this._d) | 0;
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this._e = (e + this._e) | 0;
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this._f = (f + this._f) | 0;
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this._g = (g + this._g) | 0;
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this._h = (h + this._h) | 0;
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};
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Sha256.prototype._hash = function () {
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var H = Buffer.allocUnsafe(32);
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H.writeInt32BE(this._a, 0);
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H.writeInt32BE(this._b, 4);
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H.writeInt32BE(this._c, 8);
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H.writeInt32BE(this._d, 12);
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H.writeInt32BE(this._e, 16);
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H.writeInt32BE(this._f, 20);
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H.writeInt32BE(this._g, 24);
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H.writeInt32BE(this._h, 28);
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return H;
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};
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module.exports = Sha256;
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