chore(QMCv2): fix code style
(cherry picked from commit 87138718549bdec014752ba43dcd5997aaf29137)
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@ -1,4 +1,4 @@
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import {QmcMapCipher, QmcRC4Cipher, QmcStaticCipher, StreamCipher} from "./qmc_cipher";
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import {QmcMapCipher, QmcRC4Cipher, QmcStaticCipher, QmcStreamCipher} from "./qmc_cipher";
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import {
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AudioMimeType,
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GetArrayBuffer,
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@ -16,7 +16,7 @@ import {DecryptQMCWasm} from "./qmc_wasm";
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import iconv from "iconv-lite";
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import {DecryptResult} from "@/decrypt/entity";
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import {queryAlbumCover} from "@/utils/api";
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import {QmcDecryptKey} from "@/decrypt/qmc_key";
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import {QmcDeriveKey} from "@/decrypt/qmc_key";
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interface Handler {
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ext: string
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@ -141,7 +141,8 @@ export class QmcDecoder {
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size: number
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decoded: boolean = false
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audioSize?: number
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cipher?: StreamCipher
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private static readonly BYTE_COMMA = ','.charCodeAt(0)
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cipher?: QmcStreamCipher
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constructor(file: Uint8Array) {
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this.file = file
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@ -167,16 +168,16 @@ export class QmcDecoder {
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}
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private searchKey() {
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const last4Byte = this.file.slice(this.size - 4);
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const last4Byte = this.file.slice(-4);
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const textEnc = new TextDecoder()
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if (textEnc.decode(last4Byte) === 'QTag') {
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const sizeBuf = this.file.slice(this.size - 8, this.size - 4)
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const sizeBuf = this.file.slice(-8, -4)
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const sizeView = new DataView(sizeBuf.buffer, sizeBuf.byteOffset)
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const keySize = sizeView.getUint32(0, false)
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this.audioSize = this.size - keySize - 8
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const rawKey = this.file.subarray(this.audioSize, this.size - 8)
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const keyEnd = rawKey.findIndex(v => v == ','.charCodeAt(0))
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const keyDec = QmcDecryptKey(rawKey.subarray(0, keyEnd))
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const keyEnd = rawKey.findIndex(v => v == QmcDecoder.BYTE_COMMA)
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const keyDec = QmcDeriveKey(rawKey.subarray(0, keyEnd))
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this.cipher = new QmcRC4Cipher(keyDec)
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} else {
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const sizeView = new DataView(last4Byte.buffer, last4Byte.byteOffset);
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@ -184,7 +185,7 @@ export class QmcDecoder {
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if (keySize < 0x300) {
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this.audioSize = this.size - keySize - 4
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const rawKey = this.file.subarray(this.audioSize, this.size - 4)
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const keyDec = QmcDecryptKey(rawKey)
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const keyDec = QmcDeriveKey(rawKey)
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this.cipher = new QmcMapCipher(keyDec)
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} else {
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this.audioSize = this.size
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@ -1,4 +1,10 @@
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const staticCipherBox = new Uint8Array([
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export interface QmcStreamCipher {
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decrypt(buf: Uint8Array, offset: number): void
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}
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export class QmcStaticCipher implements QmcStreamCipher {
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private static readonly staticCipherBox: Uint8Array = new Uint8Array([
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0x77, 0x48, 0x32, 0x73, 0xDE, 0xF2, 0xC0, 0xC8, //0x00
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0x95, 0xEC, 0x30, 0xB2, 0x51, 0xC3, 0xE1, 0xA0, //0x08
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0x9E, 0xE6, 0x9D, 0xCF, 0xFA, 0x7F, 0x14, 0xD1, //0x10
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@ -33,15 +39,9 @@ const staticCipherBox = new Uint8Array([
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0xA5, 0x47, 0xF7, 0xF6, 0x00, 0x79, 0x4A, 0x11, //0xF8
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])
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export interface StreamCipher {
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decrypt(buf: Uint8Array, offset: number): void
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}
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export class QmcStaticCipher implements StreamCipher {
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public getMask(offset: number) {
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if (offset > 0x7FFF) offset %= 0x7FFF
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return staticCipherBox[(offset * offset + 27) & 0xff]
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return QmcStaticCipher.staticCipherBox[(offset * offset + 27) & 0xff]
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}
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public decrypt(buf: Uint8Array, offset: number) {
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@ -51,7 +51,7 @@ export class QmcStaticCipher implements StreamCipher {
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}
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}
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export class QmcMapCipher implements StreamCipher {
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export class QmcMapCipher implements QmcStreamCipher {
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key: Uint8Array
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n: number
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@ -84,10 +84,10 @@ export class QmcMapCipher implements StreamCipher {
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}
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const FIRST_SEGMENT_SIZE = 0x80;
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const SEGMENT_SIZE = 5120
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export class QmcRC4Cipher implements QmcStreamCipher {
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private static readonly FIRST_SEGMENT_SIZE = 0x80;
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private static readonly SEGMENT_SIZE = 5120
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export class QmcRC4Cipher implements StreamCipher {
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S: Uint8Array
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N: number
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key: Uint8Array
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@ -139,23 +139,23 @@ export class QmcRC4Cipher implements StreamCipher {
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}
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// Initial segment
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if (offset < FIRST_SEGMENT_SIZE) {
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const len_segment = Math.min(buf.length, FIRST_SEGMENT_SIZE - offset);
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if (offset < QmcRC4Cipher.FIRST_SEGMENT_SIZE) {
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const len_segment = Math.min(buf.length, QmcRC4Cipher.FIRST_SEGMENT_SIZE - offset);
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this.encFirstSegment(buf.subarray(0, len_segment), offset);
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if (postProcess(len_segment)) return
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}
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// align segment
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if (offset % SEGMENT_SIZE != 0) {
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const len_segment = Math.min(SEGMENT_SIZE - (offset % SEGMENT_SIZE), toProcess);
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if (offset % QmcRC4Cipher.SEGMENT_SIZE != 0) {
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const len_segment = Math.min(QmcRC4Cipher.SEGMENT_SIZE - (offset % QmcRC4Cipher.SEGMENT_SIZE), toProcess);
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this.encASegment(buf.subarray(processed, processed + len_segment), offset);
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if (postProcess(len_segment)) return
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}
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// Batch process segments
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while (toProcess > SEGMENT_SIZE) {
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this.encASegment(buf.subarray(processed, processed + SEGMENT_SIZE), offset);
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postProcess(SEGMENT_SIZE)
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while (toProcess > QmcRC4Cipher.SEGMENT_SIZE) {
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this.encASegment(buf.subarray(processed, processed + QmcRC4Cipher.SEGMENT_SIZE), offset);
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postProcess(QmcRC4Cipher.SEGMENT_SIZE)
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}
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// Last segment (incomplete segment)
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@ -168,7 +168,7 @@ export class QmcRC4Cipher implements StreamCipher {
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private encFirstSegment(buf: Uint8Array, offset: number) {
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for (let i = 0; i < buf.length; i++) {
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buf[i] ^= this.key[this.getSegmentSkip(offset + i)];
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buf[i] ^= this.key[this.getSegmentKey(offset + i)];
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}
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}
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@ -178,7 +178,7 @@ export class QmcRC4Cipher implements StreamCipher {
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// Calculate the number of bytes to skip.
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// The initial "key" derived from segment id, plus the current offset.
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const skipLen = (offset % SEGMENT_SIZE) + this.getSegmentSkip(offset / SEGMENT_SIZE)
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const skipLen = (offset % QmcRC4Cipher.SEGMENT_SIZE) + this.getSegmentKey(offset / QmcRC4Cipher.SEGMENT_SIZE)
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// decrypt the block
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let j = 0;
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@ -194,7 +194,7 @@ export class QmcRC4Cipher implements StreamCipher {
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}
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}
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private getSegmentSkip(id: number): number {
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private getSegmentKey(id: number): number {
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const seed = this.key[id % this.N]
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const idx = (this.hash / ((id + 1) * seed) * 100.0) | 0;
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return idx % this.N
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@ -1,4 +1,4 @@
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import {QmcDecryptKey, simpleMakeKey,} from "@/decrypt/qmc_key";
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import {QmcDeriveKey, simpleMakeKey} from "@/decrypt/qmc_key";
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import fs from "fs";
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test("key dec: make simple key", () => {
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@ -23,7 +23,7 @@ test("key dec: real file", async () => {
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const cases = ["mflac_map", "mgg_map", "mflac0_rc4"]
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for (const name of cases) {
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const {clearText, cipherText} = loadTestDataKeyDecrypt(name)
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const buf = QmcDecryptKey(cipherText)
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const buf = QmcDeriveKey(cipherText)
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expect(buf).toStrictEqual(clearText)
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}
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@ -1,5 +1,29 @@
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import {TeaCipher} from "@/utils/tea";
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const SALT_LEN = 2
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const ZERO_LEN = 7
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export function QmcDeriveKey(raw: Uint8Array): Uint8Array {
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const textDec = new TextDecoder()
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const rawDec = Buffer.from(textDec.decode(raw), 'base64')
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let n = rawDec.length;
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if (n < 16) {
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throw Error("key length is too short")
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}
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const simpleKey = simpleMakeKey(106, 8)
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let teaKey = new Uint8Array(16);
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for (let i = 0; i < 8; i++) {
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teaKey[i << 1] = simpleKey[i];
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teaKey[(i << 1) + 1] = rawDec[i];
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}
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const sub = decryptTencentTea(rawDec.subarray(8), teaKey)
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rawDec.set(sub, 8)
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return rawDec.subarray(0, 8 + sub.length)
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}
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// simpleMakeKey exported only for unit test
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export function simpleMakeKey(salt: number, length: number): number[] {
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const keyBuf: number[] = []
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for (let i = 0; i < length; i++) {
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@ -9,8 +33,6 @@ export function simpleMakeKey(salt: number, length: number): number[] {
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return keyBuf
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}
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const SALT_LEN = 2
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const ZERO_LEN = 7
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function decryptTencentTea(inBuf: Uint8Array, key: Uint8Array): Uint8Array {
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if (inBuf.length % 8 != 0) {
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@ -83,22 +105,3 @@ function decryptTencentTea(inBuf: Uint8Array, key: Uint8Array): Uint8Array {
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return outBuf
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}
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export function QmcDecryptKey(raw: Uint8Array): Uint8Array {
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const textDec = new TextDecoder()
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const rawDec = Buffer.from(textDec.decode(raw), 'base64')
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let n = rawDec.length;
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if (n < 16) {
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throw Error("key length is too short")
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}
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const simpleKey = simpleMakeKey(106, 8)
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let teaKey = new Uint8Array(16);
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for (let i = 0; i < 8; i++) {
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teaKey[i << 1] = simpleKey[i];
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teaKey[(i << 1) + 1] = rawDec[i];
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}
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const sub = decryptTencentTea(rawDec.subarray(8), teaKey)
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rawDec.set(sub, 8)
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return rawDec.subarray(0, 8 + sub.length)
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}
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@ -33,7 +33,7 @@ export function BytesHasPrefix(data: Uint8Array, prefix: number[]): boolean {
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}
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export function BytesEqual(a: Uint8Array, b: Uint8Array,): boolean {
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if (a.length != b.length) return false
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if (a.length !== b.length) return false
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return a.every((val, idx) => {
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return val === b[idx];
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})
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