mirror of
https://github.com/NapNeko/NapCatQQ.git
synced 2026-01-16 05:10:34 +00:00
413 lines
12 KiB
TypeScript
413 lines
12 KiB
TypeScript
// Copyright (c) 2009 Kazuhiko Arase
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import QR8bitByte from './QR8bitByte';
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import { getLengthInBits, getLostPoint, getPatternPosition, getBCHTypeNumber, getBCHTypeInfo, getMask, getErrorCorrectPolynomial } from './QRUtil';
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import QRPolynomial from './QRPolynomial';
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import { getRSBlocks, QRRSBlock as RSBlock } from './QRRSBlock';
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import QRBitBuffer from './QRBitBuffer';
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class QRCode {
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typeNumber: number;
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errorCorrectLevel: number;
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modules: (boolean | null)[][] | null;
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moduleCount: number;
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dataCache: number[] | null;
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dataList: QR8bitByte[];
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static PAD0 = 0xEC;
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static PAD1 = 0x11;
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constructor (typeNumber: number, errorCorrectLevel: number) {
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this.typeNumber = typeNumber;
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this.errorCorrectLevel = errorCorrectLevel;
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this.modules = null;
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this.moduleCount = 0;
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this.dataCache = null;
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this.dataList = [];
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}
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addData (data: string): void {
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const newData = new QR8bitByte(data);
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this.dataList.push(newData);
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this.dataCache = null;
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}
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isDark (row: number, col: number): boolean {
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if (row < 0 || this.moduleCount <= row || col < 0 || this.moduleCount <= col) {
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throw new Error(`${row},${col}`);
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}
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if (this.modules === null || this.modules[row] === null || this.modules[row]![col] === null) {
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throw new Error(`Module at (${row},${col}) is null`);
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}
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return this.modules[row]![col]!;
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}
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getModuleCount (): number {
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return this.moduleCount;
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}
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make (): void {
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if (this.typeNumber < 1) {
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let typeNumber = 1;
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for (typeNumber = 1; typeNumber < 40; typeNumber++) {
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const rsBlocks = getRSBlocks(typeNumber, this.errorCorrectLevel);
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const buffer = new QRBitBuffer();
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let totalDataCount = 0;
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for (let i = 0; i < rsBlocks.length; i++) {
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totalDataCount += rsBlocks[i]!.dataCount;
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}
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for (let x = 0; x < this.dataList.length; x++) {
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const data = this.dataList[x];
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buffer.put(data!.mode, 4);
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buffer.put(data!.getLength(), getLengthInBits(data!.mode, typeNumber));
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data!.write(buffer);
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}
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if (buffer.getLengthInBits() <= totalDataCount * 8) { break; }
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}
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this.typeNumber = typeNumber;
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}
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this.makeImpl(false, this.getBestMaskPattern());
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}
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makeImpl (test: boolean, maskPattern: number): void {
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this.moduleCount = this.typeNumber * 4 + 17;
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this.modules = new Array(this.moduleCount);
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for (let row = 0; row < this.moduleCount; row++) {
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this.modules[row] = new Array(this.moduleCount);
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for (let col = 0; col < this.moduleCount; col++) {
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this.modules[row]![col] = null;
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}
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}
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this.setupPositionProbePattern(0, 0);
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this.setupPositionProbePattern(this.moduleCount - 7, 0);
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this.setupPositionProbePattern(0, this.moduleCount - 7);
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this.setupPositionAdjustPattern();
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this.setupTimingPattern();
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this.setupTypeInfo(test, maskPattern);
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if (this.typeNumber >= 7) {
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this.setupTypeNumber(test);
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}
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if (this.dataCache === null) {
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this.dataCache = QRCode.createData(this.typeNumber, this.errorCorrectLevel, this.dataList);
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}
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this.mapData(this.dataCache, maskPattern);
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}
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setupPositionProbePattern (row: number, col: number): void {
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for (let r = -1; r <= 7; r++) {
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if (row + r <= -1 || this.moduleCount <= row + r) continue;
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for (let c = -1; c <= 7; c++) {
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if (col + c <= -1 || this.moduleCount <= col + c) continue;
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if ((r >= 0 && r <= 6 && (c === 0 || c === 6)) ||
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(c >= 0 && c <= 6 && (r === 0 || r === 6)) ||
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(r >= 2 && r <= 4 && c >= 2 && c <= 4)) {
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this.modules![row + r]![col + c] = true;
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} else {
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this.modules![row + r]![col + c] = false;
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}
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}
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}
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}
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getBestMaskPattern (): number {
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let minLostPoint = 0;
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let pattern = 0;
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for (let i = 0; i < 8; i++) {
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this.makeImpl(true, i);
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const lostPoint = getLostPoint(this);
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if (i === 0 || minLostPoint > lostPoint) {
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minLostPoint = lostPoint;
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pattern = i;
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}
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}
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return pattern;
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}
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createMovieClip (target_mc: { createEmptyMovieClip: (name: string, depth: number) => { beginFill: (color: number, alpha: number) => void; moveTo: (x: number, y: number) => void; lineTo: (x: number, y: number) => void; endFill: () => void; }; }, instance_name: string, depth: number): { beginFill: (color: number, alpha: number) => void; moveTo: (x: number, y: number) => void; lineTo: (x: number, y: number) => void; endFill: () => void; } {
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const qr_mc = target_mc.createEmptyMovieClip(instance_name, depth);
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const cs = 1;
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this.make();
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for (let row = 0; row < this.modules!.length; row++) {
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const y = row * cs;
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for (let col = 0; col < this.modules![row]!.length; col++) {
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const x = col * cs;
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const dark = this.modules![row]![col];
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if (dark) {
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qr_mc.beginFill(0, 100);
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qr_mc.moveTo(x, y);
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qr_mc.lineTo(x + cs, y);
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qr_mc.lineTo(x + cs, y + cs);
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qr_mc.lineTo(x, y + cs);
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qr_mc.endFill();
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}
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}
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}
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return qr_mc;
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}
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setupTimingPattern (): void {
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for (let r = 8; r < this.moduleCount - 8; r++) {
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if (this.modules![r]![6] !== null) {
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continue;
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}
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this.modules![r]![6] = (r % 2 === 0);
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}
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for (let c = 8; c < this.moduleCount - 8; c++) {
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if (this.modules![6]![c] !== null) {
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continue;
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}
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this.modules![6]![c] = (c % 2 === 0);
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}
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}
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setupPositionAdjustPattern (): void {
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const pos = getPatternPosition(this.typeNumber);
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for (let i = 0; i < pos.length; i++) {
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for (let j = 0; j < pos.length; j++) {
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const row = pos[i];
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const col = pos[j];
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if (this.modules![row!]![col!] !== null) {
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continue;
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}
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for (let r = -2; r <= 2; r++) {
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for (let c = -2; c <= 2; c++) {
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if (Math.abs(r) === 2 ||
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Math.abs(c) === 2 ||
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(r === 0 && c === 0)) {
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this.modules![row! + r]![col! + c] = true;
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} else {
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this.modules![row! + r]![col! + c] = false;
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}
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}
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}
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}
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}
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}
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setupTypeNumber (test: boolean): void {
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const bits = getBCHTypeNumber(this.typeNumber);
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let mod: boolean;
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for (let i = 0; i < 18; i++) {
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mod = (!test && ((bits >> i) & 1) === 1);
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this.modules![Math.floor(i / 3)]![i % 3 + this.moduleCount - 8 - 3] = mod;
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}
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for (let x = 0; x < 18; x++) {
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mod = (!test && ((bits >> x) & 1) === 1);
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this.modules![x % 3 + this.moduleCount - 8 - 3]![Math.floor(x / 3)] = mod;
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}
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}
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setupTypeInfo (test: boolean, maskPattern: number): void {
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const data = (this.errorCorrectLevel << 3) | maskPattern;
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const bits = getBCHTypeInfo(data);
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let mod: boolean;
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// vertical
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for (let v = 0; v < 15; v++) {
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mod = (!test && ((bits >> v) & 1) === 1);
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if (v < 6) {
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this.modules![v]![8] = mod;
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} else if (v < 8) {
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this.modules![v + 1]![8] = mod;
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} else {
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this.modules![this.moduleCount - 15 + v]![8] = mod;
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}
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}
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// horizontal
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for (let h = 0; h < 15; h++) {
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mod = (!test && ((bits >> h) & 1) === 1);
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if (h < 8) {
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this.modules![8]![this.moduleCount - h - 1] = mod;
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} else if (h < 9) {
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this.modules![8]![15 - h - 1 + 1] = mod;
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} else {
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this.modules![8]![15 - h - 1] = mod;
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}
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}
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// fixed module
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this.modules![this.moduleCount - 8]![8] = (!test);
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}
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mapData (data: number[], maskPattern: number): void {
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let inc = -1;
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let row = this.moduleCount - 1;
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let bitIndex = 7;
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let byteIndex = 0;
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for (let col = this.moduleCount - 1; col > 0; col -= 2) {
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if (col === 6) col--;
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while (true) {
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for (let c = 0; c < 2; c++) {
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if (this.modules![row]![col - c] === null) {
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let dark = false;
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if (byteIndex < data.length) {
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dark = (((data[byteIndex] ?? 0) >>> bitIndex) & 1) === 1;
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}
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const mask = getMask(maskPattern, row, col - c);
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if (mask) {
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dark = !dark;
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}
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this.modules![row]![col - c] = dark;
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bitIndex--;
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if (bitIndex === -1) {
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byteIndex++;
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bitIndex = 7;
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}
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}
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}
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row += inc;
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if (row < 0 || this.moduleCount <= row) {
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row -= inc;
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inc = -inc;
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break;
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}
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}
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}
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}
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static createData (typeNumber: number, errorCorrectLevel: number, dataList: QR8bitByte[]): number[] {
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const rsBlocks = getRSBlocks(typeNumber, errorCorrectLevel);
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const buffer = new QRBitBuffer();
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for (let i = 0; i < dataList.length; i++) {
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const data = dataList[i];
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buffer.put(data!.mode, 4);
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buffer.put(data!.getLength(), getLengthInBits(data!.mode, typeNumber));
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data!.write(buffer);
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}
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// calc num max data.
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let totalDataCount = 0;
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for (let x = 0; x < rsBlocks.length; x++) {
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totalDataCount += rsBlocks[x]!.dataCount;
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}
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if (buffer.getLengthInBits() > totalDataCount * 8) {
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throw new Error(`code length overflow. (${buffer.getLengthInBits()} > ${totalDataCount * 8})`);
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}
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// end code
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if (buffer.getLengthInBits() + 4 <= totalDataCount * 8) {
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buffer.put(0, 4);
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}
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// padding
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while (buffer.getLengthInBits() % 8 !== 0) {
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buffer.putBit(false);
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}
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// padding
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while (true) {
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if (buffer.getLengthInBits() >= totalDataCount * 8) {
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break;
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}
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buffer.put(QRCode.PAD0, 8);
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if (buffer.getLengthInBits() >= totalDataCount * 8) {
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break;
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}
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buffer.put(QRCode.PAD1, 8);
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}
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return QRCode.createBytes(buffer, rsBlocks);
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}
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static createBytes (buffer: QRBitBuffer, rsBlocks: RSBlock[]): number[] {
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let offset = 0;
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let maxDcCount = 0;
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let maxEcCount = 0;
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const dcdata: number[][] = new Array(rsBlocks.length);
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const ecdata: number[][] = new Array(rsBlocks.length);
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for (let r = 0; r < rsBlocks.length; r++) {
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const dcCount = rsBlocks[r]!.dataCount;
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const ecCount = rsBlocks[r]!.totalCount - dcCount;
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maxDcCount = Math.max(maxDcCount, dcCount);
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maxEcCount = Math.max(maxEcCount, ecCount);
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dcdata[r] = new Array(dcCount);
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for (let i = 0; i < dcdata[r]!.length; i++) {
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dcdata[r]![i] = 0xff & buffer.buffer[i + offset]!;
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}
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offset += dcCount;
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const rsPoly = getErrorCorrectPolynomial(ecCount);
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const rawPoly = new QRPolynomial(dcdata[r]!, rsPoly.getLength() - 1);
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const modPoly = rawPoly.mod(rsPoly);
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ecdata[r] = new Array(rsPoly.getLength() - 1);
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for (let x = 0; x < ecdata[r]!.length; x++) {
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const modIndex = x + modPoly.getLength() - ecdata[r]!.length;
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ecdata[r]![x] = (modIndex >= 0) ? modPoly.get(modIndex) : 0;
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}
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}
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let totalCodeCount = 0;
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for (let y = 0; y < rsBlocks.length; y++) {
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totalCodeCount += rsBlocks[y]!.totalCount;
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}
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const data: number[] = new Array(totalCodeCount);
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let index = 0;
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for (let z = 0; z < maxDcCount; z++) {
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for (let s = 0; s < rsBlocks.length; s++) {
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if (z < dcdata[s]!.length) {
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data[index++] = dcdata[s]![z]!;
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}
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}
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}
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for (let xx = 0; xx < maxEcCount; xx++) {
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for (let t = 0; t < rsBlocks.length; t++) {
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if (xx < ecdata[t]!.length) {
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data[index++] = ecdata[t]![xx]!;
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}
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}
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}
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return data;
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}
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}
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export default QRCode;
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