refactor: restore support for QMCv1.
(cherry picked from commit 19239f182d71e2e4362309f08706a91c00bb6bd1)
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@ -1,4 +1,4 @@
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import {QmcMask, QmcMaskDetectMflac, QmcMaskDetectMgg, QmcMaskGetDefault} from "./qmcMask";
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import {QmcMask, QmcMaskGetDefault} from "./qmcMask";
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import {toByteArray as Base64Decode} from 'base64-js'
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import {
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AudioMimeType,
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@ -9,7 +9,7 @@ import {
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SniffAudioExt, WriteMetaToFlac, WriteMetaToMp3
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} from "@/decrypt/utils";
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import {parseBlob as metaParseBlob} from "music-metadata-browser";
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import {decryptMGG} from "./qmcv2";
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import {DecryptQMCv2} from "./qmcv2";
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import iconv from "iconv-lite";
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@ -18,60 +18,49 @@ import {queryAlbumCover, queryKeyInfo, reportKeyUsage} from "@/utils/api";
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interface Handler {
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ext: string
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detect: boolean
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handler(data?: Uint8Array): QmcMask | undefined
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version: number
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}
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export const HandlerMap: { [key: string]: Handler } = {
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"mgg": {handler: QmcMaskDetectMgg, ext: "ogg", detect: true},
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"mflac": {handler: QmcMaskDetectMflac, ext: "flac", detect: true},
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"mgg.cache": {handler: QmcMaskDetectMgg, ext: "ogg", detect: false},
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"mflac.cache": {handler: QmcMaskDetectMflac, ext: "flac", detect: false},
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"qmc0": {handler: QmcMaskGetDefault, ext: "mp3", detect: false},
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"qmc2": {handler: QmcMaskGetDefault, ext: "ogg", detect: false},
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"qmc3": {handler: QmcMaskGetDefault, ext: "mp3", detect: false},
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"qmcogg": {handler: QmcMaskGetDefault, ext: "ogg", detect: false},
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"qmcflac": {handler: QmcMaskGetDefault, ext: "flac", detect: false},
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"bkcmp3": {handler: QmcMaskGetDefault, ext: "mp3", detect: false},
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"bkcflac": {handler: QmcMaskGetDefault, ext: "flac", detect: false},
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"tkm": {handler: QmcMaskGetDefault, ext: "m4a", detect: false},
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"666c6163": {handler: QmcMaskGetDefault, ext: "flac", detect: false},
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"6d7033": {handler: QmcMaskGetDefault, ext: "mp3", detect: false},
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"6f6767": {handler: QmcMaskGetDefault, ext: "ogg", detect: false},
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"6d3461": {handler: QmcMaskGetDefault, ext: "m4a", detect: false},
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"776176": {handler: QmcMaskGetDefault, ext: "wav", detect: false}
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"mgg": {ext: "ogg", version: 2},
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"mgg1": {ext: "ogg", version: 2},
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"mflac": {ext: "flac", version: 2},
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"mflac0": {ext: "flac", version: 2},
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"qmc0": {ext: "mp3", version: 1},
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"qmc2": {ext: "ogg", version: 1},
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"qmc3": {ext: "mp3", version: 1},
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"qmcogg": {ext: "ogg", version: 1},
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"qmcflac": {ext: "flac", version: 1},
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"bkcmp3": {ext: "mp3", version: 1},
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"bkcflac": {ext: "flac", version: 1},
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"tkm": {ext: "m4a", version: 1},
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"666c6163": {ext: "flac", version: 1},
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"6d7033": {ext: "mp3", version: 1},
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"6f6767": {ext: "ogg", version: 1},
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"6d3461": {ext: "m4a", version: 1},
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"776176": {ext: "wav", version: 1}
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};
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function mergeUint8(array: Uint8Array[]): Uint8Array {
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// Get the total length of all arrays.
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let length = 0;
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array.forEach(item => {
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length += item.length;
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});
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// Create a new array with total length and merge all source arrays.
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let mergedArray = new Uint8Array(length);
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let offset = 0;
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array.forEach(item => {
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mergedArray.set(item, offset);
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offset += item.length;
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});
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return mergedArray;
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}
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export async function Decrypt(file: Blob, raw_filename: string, raw_ext: string): Promise<DecryptResult> {
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if (!(raw_ext in HandlerMap)) throw `Qmc cannot handle type: ${raw_ext}`;
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const handler = HandlerMap[raw_ext];
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const decodedParts = await decryptMGG(await file.arrayBuffer());
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let musicDecoded = mergeUint8(decodedParts);
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const fileBuffer = await GetArrayBuffer(file);
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let musicDecoded: Uint8Array;
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if (handler.version === 1) {
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const seed = QmcMaskGetDefault();
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musicDecoded = seed.Decrypt(new Uint8Array(fileBuffer));
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} else if (handler.version === 2) {
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musicDecoded = await DecryptQMCv2(fileBuffer);
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} else {
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throw new Error(`不支持的加密版本: ${handler.version} (${raw_ext})`);
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}
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const ext = SniffAudioExt(musicDecoded, handler.ext);
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const mime = AudioMimeType[ext];
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let musicBlob = new Blob(decodedParts, {type: mime});
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let musicBlob = new Blob([musicDecoded], {type: mime});
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const musicMeta = await metaParseBlob(musicBlob);
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for (let metaIdx in musicMeta.native) {
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@ -1,21 +1,36 @@
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import QMCCryptoModule from '@jixun/qmc2-crypto/QMC2-wasm-bundle';
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// EOF Magic detection.
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// 检测文件末端使用的缓冲区大小
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const DETECTION_SIZE = 40;
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// Process in 2m buffer size
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// 每次处理 2M 的数据
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const DECRYPTION_BUF_SIZE = 2 * 1024 * 1024;
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function MergeUint8Array(array: Uint8Array[]): Uint8Array {
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let length = 0;
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array.forEach(item => {
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length += item.length;
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});
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let mergedArray = new Uint8Array(length);
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let offset = 0;
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array.forEach(item => {
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mergedArray.set(item, offset);
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offset += item.length;
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});
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return mergedArray;
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}
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/**
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* 解密一个 QMC2 加密的文件。
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*
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* 如果检测并解密成功,返回解密后的 Uint8Array 数组,按顺序拼接即可得到完整文件。
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* 若失败,返回 `null`。
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* 如果检测并解密成功,返回解密后的 Uint8Array 数据。
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* @param {ArrayBuffer} mggBlob 读入的文件 Blob
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* @param {string} name 文件名
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* @return {Promise<Uint8Array[]|null>}
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* @return {Promise<Uint8Array|null>}
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*/
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export async function decryptMGG(mggBlob: ArrayBuffer) {
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export async function DecryptQMCv2(mggBlob: ArrayBuffer) {
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// 初始化模组
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const QMCCrypto = await QMCCryptoModule();
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@ -44,52 +59,46 @@ export async function decryptMGG(mggBlob: ArrayBuffer) {
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QMCCrypto._free(pDetectionBuf);
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QMCCrypto._free(pDetectionResult);
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if (detectOK) {
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// 计算解密后文件的大小。
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// 之前得到的 position 为相对当前检测数据起点的偏移。
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const decryptedSize = mggBlob.byteLength - DETECTION_SIZE + position;
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// $prog.max = decryptedSize;
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// 提取嵌入到文件的 EKey
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const ekey = new Uint8Array(
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mggBlob.slice(decryptedSize, decryptedSize + len)
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);
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// 解码 UTF-8 数据到 string
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const decoder = new TextDecoder();
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const ekey_b64 = decoder.decode(ekey);
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// 初始化加密与缓冲区
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const hCrypto = QMCCrypto.createInstWidthEKey(ekey_b64);
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const buf = QMCCrypto._malloc(DECRYPTION_BUF_SIZE);
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const decryptedParts = [];
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let offset = 0;
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let bytesToDecrypt = decryptedSize;
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while (bytesToDecrypt > 0) {
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const blockSize = Math.min(bytesToDecrypt, DECRYPTION_BUF_SIZE);
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// 解密一些片段
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const blockData = new Uint8Array(
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mggBlob.slice(offset, offset + blockSize)
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);
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QMCCrypto.writeArrayToMemory(blockData, buf);
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QMCCrypto.decryptStream(hCrypto, buf, offset, blockSize);
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decryptedParts.push(QMCCrypto.HEAPU8.slice(buf, buf + blockSize));
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offset += blockSize;
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bytesToDecrypt -= blockSize;
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// $prog.value = offset;
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// 避免网页卡死,让 event loop 处理一下其它事件。
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// Worker 应该不需要等待也可以?
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// await new Promise((resolve) => setTimeout(resolve));
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}
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QMCCrypto._free(buf);
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hCrypto.delete();
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return decryptedParts;
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} else {
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throw new Error("ERROR: could not decrypt\n " + detectionError);
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if (!detectOK) {
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throw new Error("解密失败: \n " + detectionError);
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}
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// 计算解密后文件的大小。
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// 之前得到的 position 为相对当前检测数据起点的偏移。
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const decryptedSize = mggBlob.byteLength - DETECTION_SIZE + position;
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// 提取嵌入到文件的 EKey
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const ekey = new Uint8Array(
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mggBlob.slice(decryptedSize, decryptedSize + len)
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);
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// 解码 UTF-8 数据到 string
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const decoder = new TextDecoder();
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const ekey_b64 = decoder.decode(ekey);
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// 初始化加密与缓冲区
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const hCrypto = QMCCrypto.createInstWidthEKey(ekey_b64);
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const buf = QMCCrypto._malloc(DECRYPTION_BUF_SIZE);
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const decryptedParts = [];
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let offset = 0;
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let bytesToDecrypt = decryptedSize;
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while (bytesToDecrypt > 0) {
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const blockSize = Math.min(bytesToDecrypt, DECRYPTION_BUF_SIZE);
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// 解密一些片段
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const blockData = new Uint8Array(
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mggBlob.slice(offset, offset + blockSize)
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);
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QMCCrypto.writeArrayToMemory(blockData, buf);
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QMCCrypto.decryptStream(hCrypto, buf, offset, blockSize);
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decryptedParts.push(QMCCrypto.HEAPU8.slice(buf, buf + blockSize));
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offset += blockSize;
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bytesToDecrypt -= blockSize;
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}
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QMCCrypto._free(buf);
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hCrypto.delete();
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return MergeUint8Array(decryptedParts);
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}
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