Новая сериализация, оптимизации приема и парсинга пакетов
This commit is contained in:
@@ -14,6 +14,12 @@ export interface Attachment {
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blob: string;
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type: AttachmentType;
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preview: string;
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transport_tag: string;
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transport_server: string;
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/**
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* Обозначает, для кого закодировано это вложение, нужно для того, чтобы не кодировать и не загружать заново пересланные сообщения, если они уже были закодированы для этого диалога
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*/
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encoded_for: string;
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}
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export class PacketMessage extends Packet {
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@@ -42,7 +48,7 @@ export class PacketMessage extends Packet {
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this.toPublicKey = stream.readString();
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this.content = stream.readString();
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this.chachaKey = stream.readString();
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this.timestamp = stream.readInt64();
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this.timestamp = Number(stream.readInt64());
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this.privateKey = stream.readString();
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this.messageId = stream.readString();
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let attachmentsCount = stream.readInt8();
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@@ -51,7 +57,10 @@ export class PacketMessage extends Packet {
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let preview = stream.readString();
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let blob = stream.readString();
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let type = stream.readInt8() as AttachmentType;
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this.attachments.push({id, preview, type, blob});
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let transport_tag = stream.readString();
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let transport_server = stream.readString();
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let encoded_for = stream.readString();
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this.attachments.push({id, preview, type, blob, transport_tag, transport_server, encoded_for});
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}
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this.aesChachaKey = stream.readString();
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}
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@@ -63,7 +72,7 @@ export class PacketMessage extends Packet {
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stream.writeString(this.toPublicKey);
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stream.writeString(this.content);
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stream.writeString(this.chachaKey);
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stream.writeInt64(this.timestamp);
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stream.writeInt64(BigInt(this.timestamp));
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stream.writeString(this.privateKey);
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stream.writeString(this.messageId);
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stream.writeInt8(this.attachments.length);
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@@ -72,6 +81,9 @@ export class PacketMessage extends Packet {
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stream.writeString(this.attachments[i].preview);
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stream.writeString(this.attachments[i].blob);
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stream.writeInt8(this.attachments[i].type);
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stream.writeString(this.attachments[i].transport_tag);
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stream.writeString(this.attachments[i].transport_server);
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stream.writeString(this.attachments[i].encoded_for);
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}
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stream.writeString(this.aesChachaKey);
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return stream;
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@@ -18,14 +18,14 @@ export class PacketSync extends Packet {
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public _receive(stream: Stream): void {
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this.status = stream.readInt8() as SyncStatus;
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this.timestamp = stream.readInt64();
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this.timestamp = Number(stream.readInt64());
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}
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public _send(): Promise<Stream> | Stream {
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let stream = new Stream();
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stream.writeInt16(this.getPacketId());
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stream.writeInt8(this.status);
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stream.writeInt64(this.timestamp);
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stream.writeInt64(BigInt(this.timestamp));
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return stream;
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}
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@@ -1,151 +1,372 @@
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export default class Stream {
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private _stream: number[];
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private _readPoiner: number = 0;
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private _writePointer: number = 0;
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private stream: Uint8Array;
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private readPointer = 0; // bits
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private writePointer = 0; // bits
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constructor(stream : number[] = []) {
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this._stream = stream;
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constructor(stream?: Uint8Array | number[]) {
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if (!stream) {
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this.stream = new Uint8Array(0);
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} else {
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const src = stream instanceof Uint8Array ? stream : Uint8Array.from(stream);
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this.stream = src;
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this.writePointer = this.stream.length << 3;
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}
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}
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getStream(): Uint8Array {
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return this.stream.slice(0, this.length());
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}
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setStream(stream?: Uint8Array | number[]) {
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if (!stream) {
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this.stream = new Uint8Array(0);
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this.readPointer = 0;
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this.writePointer = 0;
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return;
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}
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const src = stream instanceof Uint8Array ? stream : Uint8Array.from(stream);
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this.stream = src;
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this.readPointer = 0;
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this.writePointer = this.stream.length << 3;
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}
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getBuffer(): Uint8Array {
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return this.getStream();
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}
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isEmpty(): boolean {
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return this.writePointer === 0;
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}
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length(): number {
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return (this.writePointer + 7) >> 3;
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}
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// ---------- bit / boolean ----------
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writeBit(value: number) {
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this.writeBits(BigInt(value & 1), 1);
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}
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readBit(): number {
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return Number(this.readBits(1));
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}
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writeBoolean(value: boolean) {
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this.writeBit(value ? 1 : 0);
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}
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readBoolean(): boolean {
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return this.readBit() === 1;
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}
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// ---------- byte ----------
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writeByte(b: number) {
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this.writeUInt8(b & 0xff);
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}
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readByte(): number {
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const v = this.readUInt8();
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return (v << 24) >> 24; // signed byte
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}
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// ---------- UInt / Int 8 ----------
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writeUInt8(value: number) {
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const v = value & 0xff;
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if ((this.writePointer & 7) === 0) {
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this.reserveBits(8);
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this.stream[this.writePointer >> 3] = v;
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this.writePointer += 8;
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return;
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}
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public getStream(): number[] {
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return this._stream;
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this.writeBits(BigInt(v), 8);
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}
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readUInt8(): number {
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if (this.remainingBits() < 8n) {
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throw new Error("Not enough bits to read UInt8");
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}
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public setStream(stream: number[]) {
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this._stream = stream;
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if ((this.readPointer & 7) === 0) {
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const v = this.stream[this.readPointer >> 3] & 0xff;
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this.readPointer += 8;
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return v;
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}
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public writeInt8(value: number) {
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const negationBit = value < 0 ? 1 : 0;
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const int8Value = Math.abs(value) & 0xFF;
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this._stream[this._writePointer >> 3] |= negationBit << (7 - (this._writePointer & 7));
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this._writePointer++;
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for (let i = 0; i < 8; i++) {
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const bit = (int8Value >> (7 - i)) & 1;
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this._stream[this._writePointer >> 3] |= bit << (7 - (this._writePointer & 7));
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this._writePointer++;
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}
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return Number(this.readBits(8));
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}
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writeInt8(value: number) {
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this.writeUInt8(value);
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}
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readInt8(): number {
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const u = this.readUInt8();
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return (u << 24) >> 24;
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}
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// ---------- UInt / Int 16 ----------
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writeUInt16(value: number) {
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const v = value & 0xffff;
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this.writeUInt8((v >>> 8) & 0xff);
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this.writeUInt8(v & 0xff);
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}
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readUInt16(): number {
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const hi = this.readUInt8();
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const lo = this.readUInt8();
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return (hi << 8) | lo;
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}
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writeInt16(value: number) {
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this.writeUInt16(value);
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}
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readInt16(): number {
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const u = this.readUInt16();
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return (u << 16) >> 16;
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}
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// ---------- UInt / Int 32 ----------
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writeUInt32(value: number) {
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if (!Number.isFinite(value) || value < 0 || value > 0xffffffff) {
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throw new Error(`UInt32 out of range: ${value}`);
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}
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public readInt8(): number {
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let value = 0;
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const negationBit = (this._stream[this._readPoiner >> 3] >> (7 - (this._readPoiner & 7))) & 1;
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this._readPoiner++;
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for (let i = 0; i < 8; i++) {
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const bit = (this._stream[this._readPoiner >> 3] >> (7 - (this._readPoiner & 7))) & 1;
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value |= bit << (7 - i);
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this._readPoiner++;
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}
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return negationBit ? -value : value;
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const v = Math.floor(value);
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this.writeUInt8((v >>> 24) & 0xff);
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this.writeUInt8((v >>> 16) & 0xff);
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this.writeUInt8((v >>> 8) & 0xff);
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this.writeUInt8(v & 0xff);
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}
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readUInt32(): number {
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const b1 = this.readUInt8();
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const b2 = this.readUInt8();
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const b3 = this.readUInt8();
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const b4 = this.readUInt8();
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return (((b1 * 0x1000000) + (b2 << 16) + (b3 << 8) + b4) >>> 0);
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}
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writeInt32(value: number) {
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this.writeUInt32(value >>> 0);
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}
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readInt32(): number {
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return this.readUInt32() | 0;
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}
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// ---------- UInt / Int 64 ----------
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writeUInt64(value: bigint) {
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if (value < 0n || value > 0xffff_ffff_ffff_ffffn) {
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throw new Error(`UInt64 out of range: ${value.toString()}`);
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}
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public writeBit(value: number) {
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const bit = value & 1;
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this._stream[this._writePointer >> 3] |= bit << (7 - (this._writePointer & 7));
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this._writePointer++;
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this.writeUInt8(Number((value >> 56n) & 0xffn));
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this.writeUInt8(Number((value >> 48n) & 0xffn));
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this.writeUInt8(Number((value >> 40n) & 0xffn));
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this.writeUInt8(Number((value >> 32n) & 0xffn));
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this.writeUInt8(Number((value >> 24n) & 0xffn));
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this.writeUInt8(Number((value >> 16n) & 0xffn));
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this.writeUInt8(Number((value >> 8n) & 0xffn));
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this.writeUInt8(Number(value & 0xffn));
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}
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readUInt64(): bigint {
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const high = BigInt(this.readUInt32() >>> 0);
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const low = BigInt(this.readUInt32() >>> 0);
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return (high << 32n) | low;
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}
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writeInt64(value: bigint) {
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const u = BigInt.asUintN(64, value);
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this.writeUInt64(u);
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}
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readInt64(): bigint {
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return BigInt.asIntN(64, this.readUInt64());
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}
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// ---------- float ----------
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writeFloat32(value: number) {
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const ab = new ArrayBuffer(4);
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const dv = new DataView(ab);
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dv.setFloat32(0, value, false); // big-endian
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this.writeUInt8(dv.getUint8(0));
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this.writeUInt8(dv.getUint8(1));
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this.writeUInt8(dv.getUint8(2));
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this.writeUInt8(dv.getUint8(3));
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}
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readFloat32(): number {
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const ab = new ArrayBuffer(4);
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const dv = new DataView(ab);
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dv.setUint8(0, this.readUInt8());
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dv.setUint8(1, this.readUInt8());
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dv.setUint8(2, this.readUInt8());
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dv.setUint8(3, this.readUInt8());
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return dv.getFloat32(0, false); // big-endian
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}
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// ---------- string / bytes ----------
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// String: length(UInt32) + chars(UInt16), как в Java charAt()
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writeString(value: string | null | undefined) {
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const s = value ?? "";
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this.writeUInt32(s.length);
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if (s.length === 0) return;
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this.reserveBits(BigInt(s.length) * 16n);
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for (let i = 0; i < s.length; i++) {
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this.writeUInt16(s.charCodeAt(i) & 0xffff);
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}
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}
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readString(): string {
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const len = this.readUInt32();
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if (len > 0x7fffffff) {
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throw new Error(`String length too large: ${len}`);
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}
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public readBit(): number {
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const bit = (this._stream[this._readPoiner >> 3] >> (7 - (this._readPoiner & 7))) & 1;
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this._readPoiner++;
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return bit;
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const requiredBits = BigInt(len) * 16n;
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if (requiredBits > this.remainingBits()) {
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throw new Error("Not enough bits to read string");
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}
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public writeBoolean(value: boolean) {
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this.writeBit(value ? 1 : 0);
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const chars = new Array<number>(len);
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for (let i = 0; i < len; i++) {
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chars[i] = this.readUInt16();
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}
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return String.fromCharCode(...chars);
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}
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// byte[]: length(UInt32) + payload
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writeBytes(value: Uint8Array | number[] | null | undefined) {
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const arr = value == null
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? new Uint8Array(0)
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: (value instanceof Uint8Array ? value : Uint8Array.from(value));
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this.writeUInt32(arr.length);
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if (arr.length === 0) return;
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this.reserveBits(BigInt(arr.length) * 8n);
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if ((this.writePointer & 7) === 0) {
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const byteIndex = this.writePointer >> 3;
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this.ensureCapacity(byteIndex + arr.length - 1);
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this.stream.set(arr, byteIndex);
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this.writePointer += arr.length << 3;
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return;
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}
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public readBoolean(): boolean {
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return this.readBit() === 1;
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for (let i = 0; i < arr.length; i++) {
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this.writeUInt8(arr[i]);
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}
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public writeInt16(value: number) {
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this.writeInt8(value >> 8);
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this.writeInt8(value & 0xFF);
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}
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readBytes(): Uint8Array {
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const len = this.readUInt32();
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if (len === 0) return new Uint8Array(0);
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const requiredBits = BigInt(len) * 8n;
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if (requiredBits > this.remainingBits()) {
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return new Uint8Array(0);
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}
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public readInt16(): number {
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const value = this.readInt8() << 8;
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return value | this.readInt8();
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const out = new Uint8Array(len);
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if ((this.readPointer & 7) === 0) {
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const byteIndex = this.readPointer >> 3;
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out.set(this.stream.slice(byteIndex, byteIndex + len));
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this.readPointer += len << 3;
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return out;
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}
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public writeInt32(value: number) {
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this.writeInt16(value >> 16);
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this.writeInt16(value & 0xFFFF);
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for (let i = 0; i < len; i++) {
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out[i] = this.readUInt8();
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}
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return out;
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}
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|
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// ---------- internals ----------
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private remainingBits(): bigint {
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return BigInt(this.writePointer - this.readPointer);
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}
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private writeBits(value: bigint, bits: number) {
|
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if (bits <= 0) return;
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this.reserveBits(bits);
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for (let i = bits - 1; i >= 0; i--) {
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const bit = Number((value >> BigInt(i)) & 1n);
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const byteIndex = this.writePointer >> 3;
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const shift = 7 - (this.writePointer & 7);
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|
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if (bit === 1) {
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this.stream[byteIndex] = this.stream[byteIndex] | (1 << shift);
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} else {
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this.stream[byteIndex] = this.stream[byteIndex] & ~(1 << shift);
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}
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this.writePointer++;
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}
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}
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private readBits(bits: number): bigint {
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if (bits <= 0) return 0n;
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if (this.remainingBits() < BigInt(bits)) {
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throw new Error("Not enough bits to read");
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}
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public readInt32(): number {
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const value = this.readInt16() << 16;
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return value | this.readInt16();
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let value = 0n;
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for (let i = 0; i < bits; i++) {
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const bit = (this.stream[this.readPointer >> 3] >> (7 - (this.readPointer & 7))) & 1;
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value = (value << 1n) | BigInt(bit);
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this.readPointer++;
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}
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return value;
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}
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private reserveBits(bitsToWrite: number | bigint) {
|
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const bits = typeof bitsToWrite === "number" ? BigInt(bitsToWrite) : bitsToWrite;
|
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if (bits <= 0n) return;
|
||||
|
||||
const lastBitIndex = BigInt(this.writePointer) + bits - 1n;
|
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if (lastBitIndex < 0n) throw new Error("Bit index overflow");
|
||||
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||||
const byteIndex = lastBitIndex >> 3n;
|
||||
if (byteIndex > BigInt(Number.MAX_SAFE_INTEGER)) {
|
||||
throw new Error("Stream too large");
|
||||
}
|
||||
|
||||
public writeInt64(value: number) {
|
||||
const high = Math.floor(value / 0x100000000);
|
||||
const low = value >>> 0;
|
||||
this.writeInt32(high);
|
||||
this.writeInt32(low);
|
||||
}
|
||||
|
||||
public readInt64(): number {
|
||||
const high = this.readInt32();
|
||||
const low = this.readInt32() >>> 0;
|
||||
return high * 0x100000000 + low;
|
||||
}
|
||||
|
||||
public writeFloat32(value: number) {
|
||||
const buffer = new ArrayBuffer(4);
|
||||
new DataView(buffer).setFloat32(0, value, true);
|
||||
const float32Value = new Uint32Array(buffer)[0];
|
||||
this.writeInt32(float32Value);
|
||||
}
|
||||
|
||||
public readFloat32(): number {
|
||||
const float32Value = this.readInt32();
|
||||
const buffer = new ArrayBuffer(4);
|
||||
new Uint32Array(buffer)[0] = float32Value;
|
||||
return new DataView(buffer).getFloat32(0, true);
|
||||
}
|
||||
|
||||
public writeString(value: string) {
|
||||
let length = value.length;
|
||||
this.writeInt32(length);
|
||||
for (let i = 0; i < value.length; i++) {
|
||||
this.writeInt16(value.charCodeAt(i));
|
||||
}
|
||||
}
|
||||
|
||||
public readString(): string {
|
||||
let length = this.readInt32();
|
||||
/**
|
||||
* Фикс уязвимости с длинной строки, превышающей
|
||||
* возможность для чтения _stream
|
||||
*/
|
||||
if (length < 0 || length > (this._stream.length - (this._readPoiner >> 3))) {
|
||||
console.info("Stream readString length invalid", length, this._stream.length, this._readPoiner);
|
||||
return "";
|
||||
}
|
||||
let value = "";
|
||||
for (let i = 0; i < length; i++) {
|
||||
value += String.fromCharCode(this.readInt16());
|
||||
}
|
||||
return value;
|
||||
}
|
||||
|
||||
public writeBytes(value: number[]) {
|
||||
this.writeInt32(value.length);
|
||||
for (let i = 0; i < value.length; i++) {
|
||||
this.writeInt8(value[i]);
|
||||
}
|
||||
}
|
||||
|
||||
public readBytes(): number[] {
|
||||
let length = this.readInt32();
|
||||
let value : any = [];
|
||||
for (let i = 0; i < length; i++) {
|
||||
value.push(this.readInt8());
|
||||
}
|
||||
return value;
|
||||
this.ensureCapacity(Number(byteIndex));
|
||||
}
|
||||
|
||||
private ensureCapacity(byteIndex: number) {
|
||||
const requiredSize = byteIndex + 1;
|
||||
if (requiredSize <= this.stream.length) return;
|
||||
|
||||
let newSize = this.stream.length === 0 ? 32 : this.stream.length;
|
||||
while (newSize < requiredSize) {
|
||||
if (newSize > (0x7fffffff >> 1)) {
|
||||
newSize = requiredSize;
|
||||
break;
|
||||
}
|
||||
newSize <<= 1;
|
||||
}
|
||||
|
||||
const next = new Uint8Array(newSize);
|
||||
next.set(this.stream);
|
||||
this.stream = next;
|
||||
}
|
||||
}
|
||||
Reference in New Issue
Block a user