fix: 兼容非HTTPS环境,crypto.subtle不可用时降级为XOR加密
This commit is contained in:
+158
-39
@@ -3,79 +3,198 @@
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*
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*
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* 文件格式: [8B magic "METONA1\0"][16B salt][12B IV][AES-256-GCM ciphertext]
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* 文件格式: [8B magic "METONA1\0"][16B salt][12B IV][AES-256-GCM ciphertext]
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* 后缀: .metona
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* 后缀: .metona
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* 安全上下文(HTTPS)下使用 AES-256-GCM,否则降级为 XOR 混淆
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*/
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*/
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const MAGIC = new TextEncoder().encode('METONA1\0');
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const MAGIC = new TextEncoder().encode('METONA1\0');
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const PASSPHRASE = 'metona-ollama-v2';
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const PASSPHRASE = 'metona-ollama-v2';
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const PBKDF2_ITERATIONS = 100000;
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const PBKDF2_ITERATIONS = 100000;
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const SECURE = !!(globalThis.crypto && globalThis.crypto.subtle);
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/**
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/**
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* 导入派生密钥
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* SHA-256 哈希 (降级模式用)
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*/
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*/
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async function deriveKey(salt) {
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async function sha256(data) {
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const keyMaterial = await crypto.subtle.importKey(
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if (SECURE) {
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'raw',
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const buf = await crypto.subtle.digest('SHA-256', data);
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new TextEncoder().encode(PASSPHRASE),
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return new Uint8Array(buf);
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'PBKDF2',
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}
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false,
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// 纯 JS SHA-256
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['deriveKey']
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return sha256js(data);
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);
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}
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return crypto.subtle.deriveKey(
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{ name: 'PBKDF2', salt, iterations: PBKDF2_ITERATIONS, hash: 'SHA-256' },
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/**
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keyMaterial,
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* 纯 JS SHA-256 实现 (兼容非安全上下文)
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{ name: 'AES-GCM', length: 256 },
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*/
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false,
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function sha256js(message) {
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['encrypt', 'decrypt']
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const K = new Uint32Array([
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);
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0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5, 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5,
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0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3, 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174,
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0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc, 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da,
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0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7, 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967,
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0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13, 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85,
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0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3, 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070,
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0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5, 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3,
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0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208, 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2
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]);
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const bytes = message instanceof Uint8Array ? message : new Uint8Array(message);
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const bitLen = bytes.length * 8;
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// 预处理: padding
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const paddedLen = Math.ceil((bytes.length + 9) / 64) * 64;
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const padded = new Uint8Array(paddedLen);
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padded.set(bytes);
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padded[bytes.length] = 0x80;
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const view = new DataView(padded.buffer);
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view.setUint32(paddedLen - 4, bitLen, false);
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let h0 = 0x6a09e667, h1 = 0xbb67ae85, h2 = 0x3c6ef372, h3 = 0xa54ff53a;
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let h4 = 0x510e527f, h5 = 0x9b05688c, h6 = 0x1f83d9ab, h7 = 0x5be0cd19;
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const w = new Uint32Array(64);
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for (let offset = 0; offset < paddedLen; offset += 64) {
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for (let i = 0; i < 16; i++) {
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w[i] = view.getUint32(offset + i * 4, false);
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}
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for (let i = 16; i < 64; i++) {
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const s0 = (w[i - 15] >>> 7 | w[i - 15] << 25) ^ (w[i - 15] >>> 18 | w[i - 15] << 14) ^ (w[i - 15] >>> 3);
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const s1 = (w[i - 2] >>> 17 | w[i - 2] << 15) ^ (w[i - 2] >>> 19 | w[i - 2] << 13) ^ (w[i - 2] >>> 10);
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w[i] = (w[i - 16] + s0 + w[i - 7] + s1) >>> 0;
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}
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let a = h0, b = h1, c = h2, d = h3, e = h4, f = h5, g = h6, h = h7;
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for (let i = 0; i < 64; i++) {
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const S1 = (e >>> 6 | e << 26) ^ (e >>> 11 | e << 21) ^ (e >>> 25 | e << 7);
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const ch = (e & f) ^ (~e & g);
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const temp1 = (h + S1 + ch + K[i] + w[i]) >>> 0;
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const S0 = (a >>> 2 | a << 30) ^ (a >>> 13 | a << 19) ^ (a >>> 22 | a << 10);
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const maj = (a & b) ^ (a & c) ^ (b & c);
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const temp2 = (S0 + maj) >>> 0;
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h = g; g = f; f = e;
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e = (d + temp1) >>> 0;
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d = c; c = b; b = a;
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a = (temp1 + temp2) >>> 0;
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}
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h0 = (h0 + a) >>> 0; h1 = (h1 + b) >>> 0; h2 = (h2 + c) >>> 0; h3 = (h3 + d) >>> 0;
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h4 = (h4 + e) >>> 0; h5 = (h5 + f) >>> 0; h6 = (h6 + g) >>> 0; h7 = (h7 + h) >>> 0;
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}
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const result = new Uint8Array(32);
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const rv = new DataView(result.buffer);
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rv.setUint32(0, h0, false); rv.setUint32(4, h1, false);
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rv.setUint32(8, h2, false); rv.setUint32(12, h3, false);
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rv.setUint32(16, h4, false); rv.setUint32(20, h5, false);
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rv.setUint32(24, h6, false); rv.setUint32(28, h7, false);
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return result;
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}
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/**
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* 从 passhprase + salt 派生密钥 (PBKDF2 或降级多次哈希)
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*/
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async function deriveKeyBytes(salt) {
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const passBytes = new TextEncoder().encode(PASSPHRASE);
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const input = new Uint8Array(passBytes.length + salt.length);
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input.set(passBytes);
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input.set(salt, passBytes.length);
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if (SECURE) {
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const keyMaterial = await crypto.subtle.importKey('raw', passBytes, 'PBKDF2', false, ['deriveKey']);
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const key = await crypto.subtle.deriveKey(
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{ name: 'PBKDF2', salt, iterations: PBKDF2_ITERATIONS, hash: 'SHA-256' },
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keyMaterial,
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{ name: 'AES-GCM', length: 256 },
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true,
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['encrypt', 'decrypt']
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);
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const raw = await crypto.subtle.exportKey('raw', key);
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return new Uint8Array(raw);
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}
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// 降级: 多次哈希模拟密钥派生
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let key = input;
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for (let i = 0; i < 10000; i++) {
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key = await sha256(key);
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}
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return key;
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}
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/**
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* XOR 加密/解密 (降级模式)
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*/
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function xorBytes(data, keyBytes) {
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const out = new Uint8Array(data.length);
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for (let i = 0; i < data.length; i++) {
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out[i] = data[i] ^ keyBytes[i % keyBytes.length];
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}
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return out;
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}
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}
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/**
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/**
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* 加密 JSON 数据 → .metona 二进制格式
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* 加密 JSON 数据 → .metona 二进制格式
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* @param {object} data - 要加密的对象
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* @returns {Blob} .metona 文件内容
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*/
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*/
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export async function encryptData(data) {
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export async function encryptData(data) {
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const json = new TextEncoder().encode(JSON.stringify(data));
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const json = new TextEncoder().encode(JSON.stringify(data));
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const salt = crypto.getRandomValues(new Uint8Array(16));
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const salt = crypto.getRandomValues(new Uint8Array(16));
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const iv = crypto.getRandomValues(new Uint8Array(12));
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const iv = crypto.getRandomValues(new Uint8Array(12));
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const key = await deriveKey(salt);
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const keyBytes = await deriveKeyBytes(salt);
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const ciphertext = await crypto.subtle.encrypt({ name: 'AES-GCM', iv }, key, json);
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// 拼接: magic + salt + iv + ciphertext
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let payload;
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const blob = new Blob([MAGIC, salt, iv, ciphertext]);
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if (SECURE) {
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return blob;
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const key = await crypto.subtle.importKey('raw', keyBytes, 'AES-GCM', false, ['encrypt']);
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const ciphertext = await crypto.subtle.encrypt({ name: 'AES-GCM', iv }, key, json);
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payload = new Uint8Array(ciphertext);
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} else {
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// 降级: XOR 混淆,前 4 字节存原始长度
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const lenBytes = new Uint32Array([json.length]);
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const withLen = new Uint8Array(4 + json.length);
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withLen.set(new Uint8Array(lenBytes.buffer));
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withLen.set(json, 4);
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payload = xorBytes(withLen, keyBytes);
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}
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// 标记加密模式: SECURE=0x01, FALLBACK=0x00
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const flag = new Uint8Array([SECURE ? 1 : 0]);
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return new Blob([MAGIC, salt, iv, flag, payload]);
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}
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}
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/**
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/**
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* 解密 .metona 文件 → JSON 对象
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* 解密 .metona 文件 → JSON 对象
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* @param {ArrayBuffer} buffer - .metona 文件内容
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* @returns {object} 解密后的对象
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*/
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*/
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export async function decryptData(buffer) {
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export async function decryptData(buffer) {
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const data = new Uint8Array(buffer);
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const data = new Uint8Array(buffer);
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// 校验 magic
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// 校验 magic
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const magic = data.slice(0, 8);
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for (let i = 0; i < 8; i++) {
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for (let i = 0; i < MAGIC.length; i++) {
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if (data[i] !== MAGIC[i]) throw new Error('不是有效的 .metona 文件');
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if (magic[i] !== MAGIC[i]) {
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throw new Error('不是有效的 .metona 文件');
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}
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}
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}
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const salt = data.slice(8, 24);
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const salt = data.slice(8, 24);
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const iv = data.slice(24, 36);
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const iv = data.slice(24, 36);
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const ciphertext = data.slice(36);
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const mode = data[36];
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const payload = data.slice(37);
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const keyBytes = await deriveKeyBytes(salt);
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const key = await deriveKey(salt);
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let jsonBytes;
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let decrypted;
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if (mode === 1) {
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try {
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// AES-GCM
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decrypted = await crypto.subtle.decrypt({ name: 'AES-GCM', iv }, key, ciphertext);
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const key = await crypto.subtle.importKey('raw', keyBytes, 'AES-GCM', false, ['decrypt']);
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} catch {
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const decrypted = await crypto.subtle.decrypt({ name: 'AES-GCM', iv }, key, payload);
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throw new Error('文件已损坏或格式不正确');
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jsonBytes = new Uint8Array(decrypted);
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} else {
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// XOR 降级
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const withLen = xorBytes(payload, keyBytes);
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const len = new DataView(withLen.buffer).getUint32(0, true);
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jsonBytes = withLen.slice(4, 4 + len);
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}
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}
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const json = new TextDecoder().decode(decrypted);
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return JSON.parse(new TextDecoder().decode(jsonBytes));
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return JSON.parse(json);
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}
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}
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/**
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/**
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