// 验证将嵌入 index.html 的纯 JS AES-128-ECB 实现与 Node crypto 的一致性 const crypto = require("crypto"); const KEY = "Gi4swf3llyafmsuK"; /* ===== 以下实现与嵌入页面的代码完全一致 ===== */ var AESTool = (function(){ "use strict"; var sbox = new Uint8Array([ 0x63,0x7c,0x77,0x7b,0xf2,0x6b,0x6f,0xc5,0x30,0x01,0x67,0x2b,0xfe,0xd7,0xab,0x76, 0xca,0x82,0xc9,0x7d,0xfa,0x59,0x47,0xf0,0xad,0xd4,0xa2,0xaf,0x9c,0xa4,0x72,0xc0, 0xb7,0xfd,0x93,0x26,0x36,0x3f,0xf7,0xcc,0x34,0xa5,0xe5,0xf1,0x71,0xd8,0x31,0x15, 0x04,0xc7,0x23,0xc3,0x18,0x96,0x05,0x9a,0x07,0x12,0x80,0xe2,0xeb,0x27,0xb2,0x75, 0x09,0x83,0x2c,0x1a,0x1b,0x6e,0x5a,0xa0,0x52,0x3b,0xd6,0xb3,0x29,0xe3,0x2f,0x84, 0x53,0xd1,0x00,0xed,0x20,0xfc,0xb1,0x5b,0x6a,0xcb,0xbe,0x39,0x4a,0x4c,0x58,0xcf, 0xd0,0xef,0xaa,0xfb,0x43,0x4d,0x33,0x85,0x45,0xf9,0x02,0x7f,0x50,0x3c,0x9f,0xa8, 0x51,0xa3,0x40,0x8f,0x92,0x9d,0x38,0xf5,0xbc,0xb6,0xda,0x21,0x10,0xff,0xf3,0xd2, 0xcd,0x0c,0x13,0xec,0x5f,0x97,0x44,0x17,0xc4,0xa7,0x7e,0x3d,0x64,0x5d,0x19,0x73, 0x60,0x81,0x4f,0xdc,0x22,0x2a,0x90,0x88,0x46,0xee,0xb8,0x14,0xde,0x5e,0x0b,0xdb, 0xe0,0x32,0x3a,0x0a,0x49,0x06,0x24,0x5c,0xc2,0xd3,0xac,0x62,0x91,0x95,0xe4,0x79, 0xe7,0xc8,0x37,0x6d,0x8d,0xd5,0x4e,0xa9,0x6c,0x56,0xf4,0xea,0x65,0x7a,0xae,0x08, 0xba,0x78,0x25,0x2e,0x1c,0xa6,0xb4,0xc6,0xe8,0xdd,0x74,0x1f,0x4b,0xbd,0x8b,0x8a, 0x70,0x3e,0xb5,0x66,0x48,0x03,0xf6,0x0e,0x61,0x35,0x57,0xb9,0x86,0xc1,0x1d,0x9e, 0xe1,0xf8,0x98,0x11,0x69,0xd9,0x8e,0x94,0x9b,0x1e,0x87,0xe9,0xce,0x55,0x28,0xdf, 0x8c,0xa1,0x89,0x0d,0xbf,0xe6,0x42,0x68,0x41,0x99,0x2d,0x0f,0xb0,0x54,0xbb,0x16 ]); var invSbox = new Uint8Array(256); (function(){ for (var i = 0; i < 256; i++) invSbox[sbox[i]] = i; })(); var RCON = [1,2,4,8,16,32,64,128,27,54]; function expandKey(keyBytes){ var rk = new Uint8Array(176), i = 16, rconIdx = 0, j, t; rk.set(keyBytes); while (i < 176) { t = [rk[i-4], rk[i-3], rk[i-2], rk[i-1]]; if (i % 16 === 0) t = [sbox[t[1]] ^ RCON[rconIdx++], sbox[t[2]], sbox[t[3]], sbox[t[0]]]; for (j = 0; j < 4; j++) { rk[i] = rk[i-16] ^ t[j]; i++; } } return rk; } function xtime(a){ return ((a << 1) ^ (a & 128 ? 27 : 0)) & 255; } function mul(a, b){ var r = 0; while (b) { if (b & 1) r ^= a; a = xtime(a); b >>= 1; } return r & 255; } function encryptBlock(b, rk){ var i, c, r, t; for (i = 0; i < 16; i++) b[i] ^= rk[i]; for (var round = 1; round <= 10; round++) { for (i = 0; i < 16; i++) b[i] = sbox[b[i]]; // ShiftRows(按行循环左移 r) for (r = 1; r < 4; r++) { var row = [b[r], b[r+4], b[r+8], b[r+12]]; for (c = 0; c < 4; c++) b[r + 4*c] = row[(c + r) % 4]; } if (round < 10) { for (c = 0; c < 4; c++) { var o = 4*c, a0 = b[o], a1 = b[o+1], a2 = b[o+2], a3 = b[o+3]; b[o] = mul(a0,2) ^ mul(a1,3) ^ a2 ^ a3; b[o+1] = a0 ^ mul(a1,2) ^ mul(a2,3) ^ a3; b[o+2] = a0 ^ a1 ^ mul(a2,2) ^ mul(a3,3); b[o+3] = mul(a0,3) ^ a1 ^ a2 ^ mul(a3,2); } } for (i = 0; i < 16; i++) b[i] ^= rk[16*round + i]; } return b; } function decryptBlock(b, rk){ var i, c, r, round; for (i = 0; i < 16; i++) b[i] ^= rk[160 + i]; for (round = 9; round >= 0; round--) { if (round < 9) { for (c = 0; c < 4; c++) { var o = 4*c, a0 = b[o], a1 = b[o+1], a2 = b[o+2], a3 = b[o+3]; b[o] = mul(a0,14) ^ mul(a1,11) ^ mul(a2,13) ^ mul(a3,9); b[o+1] = mul(a0,9) ^ mul(a1,14) ^ mul(a2,11) ^ mul(a3,13); b[o+2] = mul(a0,13) ^ mul(a1,9) ^ mul(a2,14) ^ mul(a3,11); b[o+3] = mul(a0,11) ^ mul(a1,13) ^ mul(a2,9) ^ mul(a3,14); } } for (r = 1; r < 4; r++) { var row = [b[r], b[r+4], b[r+8], b[r+12]]; for (c = 0; c < 4; c++) b[r + 4*c] = row[(c - r + 4) % 4]; } for (i = 0; i < 16; i++) b[i] = invSbox[b[i]]; for (i = 0; i < 16; i++) b[i] ^= rk[16*round + i]; } return b; } function b2a(bytes){ var s = ""; for (var i = 0; i < bytes.length; i++) s += String.fromCharCode(bytes[i]); return s; } function a2b(str){ var u = new Uint8Array(str.length); for (var i = 0; i < str.length; i++) u[i] = str.charCodeAt(i) & 255; return u; } function pkcs7(bytes){ var pad = 16 - (bytes.length % 16), out = new Uint8Array(bytes.length + pad); out.set(bytes); out.fill(pad, bytes.length); return out; } function encrypt(plainText, keyStr){ if (keyStr.length !== 16) throw new Error("密钥长度必须为 16 位"); var data = pkcs7(new TextEncoder().encode(plainText)); var rk = expandKey(new TextEncoder().encode(keyStr)); var out = ""; for (var off = 0; off < data.length; off += 16) { var b = data.slice(off, off + 16); encryptBlock(b, rk); out += b2a(b); } return btoa(out); } function decrypt(b64Text, keyStr){ if (keyStr.length !== 16) throw new Error("密钥长度必须为 16 位"); var bin = atob(b64Text.trim()); if (bin.length === 0 || bin.length % 16 !== 0) throw new Error("密文长度不合法(须为 16 字节的整数倍)"); var rk = expandKey(new TextEncoder().encode(keyStr)); var bytes = a2b(bin), out = []; for (var off = 0; off < bytes.length; off += 16) { var b = bytes.slice(off, off + 16); decryptBlock(b, rk); out.push(b2a(b)); } var all = out.join(""); var u8 = a2b(all); var pad = u8[u8.length - 1]; if (pad < 1 || pad > 16) throw new Error("解密失败:填充不合法(密钥错误或密文损坏)"); for (var i = u8.length - pad; i < u8.length; i++) if (u8[i] !== pad) throw new Error("解密失败:填充不合法(密钥错误或密文损坏)"); return new TextDecoder().decode(u8.slice(0, u8.length - pad)); } return { encrypt: encrypt, decrypt: decrypt }; })(); /* ===== 实现结束 ===== */ // 与 Node crypto 对比验证 function nodeEnc(p){ const e = crypto.createCipheriv("aes-128-ecb", KEY, null); return e.update(p,"utf8","base64") + e.final("base64"); } function nodeDec(c){ const d = crypto.createDecipheriv("aes-128-ecb", KEY, null); return d.update(c,"base64","utf8") + d.final("utf8"); } const cases = [ "330725198202084328", "1", "330725199001011234", "a", "abc123你好身份证测试测试", // 多字节 UTF-8 + 非 16 倍数 "十六个字节正好16byte", // 恰好 32 字节 UTF-8? "x".repeat(16), // 恰好 16 字节(触发整块填充) "y".repeat(48) // 多块 ]; let fail = 0; for (const p of cases) { const mine = AESTool.encrypt(p, KEY); const ref = nodeEnc(p); if (mine !== ref) { console.log("ENCRYPT MISMATCH:", JSON.stringify(p), mine, ref); fail++; } const back = AESTool.decrypt(mine, KEY); if (back !== p) { console.log("ROUNDTRIP FAIL:", JSON.stringify(p), back); fail++; } } const sample = "MoV2Ra2USY/6tc6b9xQXZkuEA+I6X3u90CSNgvFqzlE="; if (AESTool.decrypt(sample, KEY) !== "330725198202084328") { console.log("SAMPLE DECRYPT FAIL"); fail++; } if (AESTool.encrypt("330725198202084328", KEY) !== sample) { console.log("SAMPLE ENCRYPT FAIL"); fail++; } if (nodeDec(AESTool.encrypt("交叉验证文本123", KEY)) !== "交叉验证文本123") { console.log("CROSS DECRYPT FAIL"); fail++; } console.log(fail === 0 ? "AES IMPLEMENTATION VERIFIED" : "FAILED: " + fail); process.exit(fail === 0 ? 0 : 1);