import {AxdrType} from "../asn1.axdr/AxdrType"; import {ReverseByteArrayOutputStream} from "../ReverseByteArrayOutputStream"; import {Buffer} from "buffer"; import {AxdrEnum} from "../asn1.axdr/AxdrEnum"; import {Unsigned16} from "./Unsigned16"; import {ReverseByteArrayInputStream} from "../ReverseByteArrayInputStream"; export class TI implements AxdrType { dataCode: Buffer | null = null; unit: AxdrEnum | null = null; inter: Unsigned16 | null = null; constructor() { } set_dataCode(dataCode: Buffer) { this.dataCode = dataCode; } set_unit_inter(unit: AxdrEnum, inter: Unsigned16) { this.unit = unit; this.inter = inter; } decode(input: ReverseByteArrayInputStream): number { let codeLength = 0; this.unit = new AxdrEnum(); this.unit.set_const(); codeLength += this.unit.decode(input); this.inter = new Unsigned16(); this.inter.set_const(); codeLength += this.inter.decode(input); return codeLength; } encode(output: ReverseByteArrayOutputStream): number { let codeLength; if (this.dataCode != null) { codeLength = this.dataCode.length; for (let i = this.dataCode.length - 1; i >= 0; i--) { output.write(this.dataCode[i]); } } else { if (this.unit != null && this.inter != null) { codeLength = 0; codeLength += this.inter.encode(output); codeLength += this.unit.encode(output); } else { throw new Error("encode error,unit or inter is null"); } } return codeLength; } encodeAndSave(encodingSizeGuess: number) { let revOStream = new ReverseByteArrayOutputStream(); revOStream.setBufSize(encodingSizeGuess) this.encode(revOStream); this.dataCode = revOStream.getArray(); } toString(): string { if (this.unit != null && this.inter != null) { return "sequence: {" + "unit: " + this.unit + ", inter: " + this.inter + "}"; } else { return "unit or inter is null"; } } }