forked from mirrors/gecko-dev
284 lines
9.8 KiB
TypeScript
284 lines
9.8 KiB
TypeScript
import * as asn1js from "asn1js";
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import * as pvtsutils from "pvtsutils";
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import * as pvutils from "pvutils";
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import * as common from "./common";
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import { AlgorithmIdentifier, AlgorithmIdentifierJson, AlgorithmIdentifierSchema } from "./AlgorithmIdentifier";
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import { Certificate } from "./Certificate";
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import * as Schema from "./Schema";
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import { AsnError, ParameterError } from "./errors";
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import { PkiObject, PkiObjectParameters } from "./PkiObject";
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import { EMPTY_STRING } from "./constants";
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const HASH_ALGORITHM = "hashAlgorithm";
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const ISSUER_NAME_HASH = "issuerNameHash";
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const ISSUER_KEY_HASH = "issuerKeyHash";
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const SERIAL_NUMBER = "serialNumber";
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const CLEAR_PROPS = [
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HASH_ALGORITHM,
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ISSUER_NAME_HASH,
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ISSUER_KEY_HASH,
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SERIAL_NUMBER,
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];
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export interface ICertID {
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/**
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* Hash algorithm used to generate the `issuerNameHash` and `issuerKeyHash` values
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*/
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hashAlgorithm: AlgorithmIdentifier;
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/**
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* Hash of the issuer's distinguished name (DN). The hash shall be calculated over the DER encoding
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* of the issuer's name field in the certificate being checked.
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*/
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issuerNameHash: asn1js.OctetString;
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/**
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* Hash of the issuer's public key. The hash shall be calculated over the value (excluding tag and length)
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* of the subject public key field in the issuer's certificate.
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*/
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issuerKeyHash: asn1js.OctetString;
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/**
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* Serial number of the certificate for which status is being requested
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*/
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serialNumber: asn1js.Integer;
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}
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export type CertIDParameters = PkiObjectParameters & Partial<ICertID>;
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export type CertIDSchema = Schema.SchemaParameters<{
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hashAlgorithm?: string;
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hashAlgorithmObject?: AlgorithmIdentifierSchema;
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issuerNameHash?: string;
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issuerKeyHash?: string;
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serialNumber?: string;
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}>;
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export interface CertIDJson {
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hashAlgorithm: AlgorithmIdentifierJson;
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issuerNameHash: asn1js.OctetStringJson;
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issuerKeyHash: asn1js.OctetStringJson;
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serialNumber: asn1js.IntegerJson;
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}
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export interface CertIDCreateParams {
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issuerCertificate: Certificate;
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hashAlgorithm: string;
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}
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/**
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* Represents an CertID described in [RFC6960](https://datatracker.ietf.org/doc/html/rfc6960)
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*/
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export class CertID extends PkiObject implements ICertID {
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public static override CLASS_NAME = "CertID";
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/**
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* Making OCSP certificate identifier for specific certificate
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* @param certificate Certificate making OCSP Request for
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* @param parameters Additional parameters
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* @param crypto Crypto engine
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* @returns Returns created CertID object
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*/
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public static async create(certificate: Certificate, parameters: CertIDCreateParams, crypto = common.getCrypto(true)): Promise<CertID> {
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const certID = new CertID();
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await certID.createForCertificate(certificate, parameters, crypto);
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return certID;
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}
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public hashAlgorithm!: AlgorithmIdentifier;
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public issuerNameHash!: asn1js.OctetString;
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public issuerKeyHash!: asn1js.OctetString;
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public serialNumber!: asn1js.Integer;
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/**
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* Initializes a new instance of the {@link CertID} class
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* @param parameters Initialization parameters
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*/
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constructor(parameters: CertIDParameters = {}) {
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super();
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this.hashAlgorithm = pvutils.getParametersValue(parameters, HASH_ALGORITHM, CertID.defaultValues(HASH_ALGORITHM));
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this.issuerNameHash = pvutils.getParametersValue(parameters, ISSUER_NAME_HASH, CertID.defaultValues(ISSUER_NAME_HASH));
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this.issuerKeyHash = pvutils.getParametersValue(parameters, ISSUER_KEY_HASH, CertID.defaultValues(ISSUER_KEY_HASH));
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this.serialNumber = pvutils.getParametersValue(parameters, SERIAL_NUMBER, CertID.defaultValues(SERIAL_NUMBER));
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if (parameters.schema) {
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this.fromSchema(parameters.schema);
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}
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}
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/**
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* Returns default values for all class members
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* @param memberName String name for a class member
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* @returns Default value
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*/
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public static override defaultValues(memberName: typeof HASH_ALGORITHM): AlgorithmIdentifier;
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public static override defaultValues(memberName: typeof ISSUER_NAME_HASH): asn1js.OctetString;
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public static override defaultValues(memberName: typeof ISSUER_KEY_HASH): asn1js.OctetString;
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public static override defaultValues(memberName: typeof SERIAL_NUMBER): asn1js.Integer;
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public static override defaultValues(memberName: string): any {
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switch (memberName) {
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case HASH_ALGORITHM:
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return new AlgorithmIdentifier();
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case ISSUER_NAME_HASH:
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case ISSUER_KEY_HASH:
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return new asn1js.OctetString();
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case SERIAL_NUMBER:
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return new asn1js.Integer();
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default:
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return super.defaultValues(memberName);
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}
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}
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/**
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* Compare values with default values for all class members
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* @param memberName String name for a class member
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* @param memberValue Value to compare with default value
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*/
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public static compareWithDefault(memberName: string, memberValue: any): boolean {
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switch (memberName) {
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case HASH_ALGORITHM:
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return ((memberValue.algorithmId === EMPTY_STRING) && (("algorithmParams" in memberValue) === false));
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case ISSUER_NAME_HASH:
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case ISSUER_KEY_HASH:
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case SERIAL_NUMBER:
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return (memberValue.isEqual(CertID.defaultValues(SERIAL_NUMBER)));
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default:
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return super.defaultValues(memberName);
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}
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}
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/**
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* @inheritdoc
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* @asn ASN.1 schema
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* ```asn
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* CertID ::= SEQUENCE {
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* hashAlgorithm AlgorithmIdentifier,
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* issuerNameHash OCTET STRING, -- Hash of issuer's DN
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* issuerKeyHash OCTET STRING, -- Hash of issuer's public key
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* serialNumber CertificateSerialNumber }
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*```
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*/
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public static override schema(parameters: CertIDSchema = {}): Schema.SchemaType {
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const names = pvutils.getParametersValue<NonNullable<typeof parameters.names>>(parameters, "names", {});
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return (new asn1js.Sequence({
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name: (names.blockName || EMPTY_STRING),
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value: [
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AlgorithmIdentifier.schema(names.hashAlgorithmObject || {
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names: {
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blockName: (names.hashAlgorithm || EMPTY_STRING)
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}
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}),
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new asn1js.OctetString({ name: (names.issuerNameHash || EMPTY_STRING) }),
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new asn1js.OctetString({ name: (names.issuerKeyHash || EMPTY_STRING) }),
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new asn1js.Integer({ name: (names.serialNumber || EMPTY_STRING) })
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]
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}));
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}
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public fromSchema(schema: Schema.SchemaType): void {
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// Clear input data first
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pvutils.clearProps(schema, CLEAR_PROPS);
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// Check the schema is valid
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const asn1 = asn1js.compareSchema(schema,
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schema,
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CertID.schema({
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names: {
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hashAlgorithm: HASH_ALGORITHM,
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issuerNameHash: ISSUER_NAME_HASH,
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issuerKeyHash: ISSUER_KEY_HASH,
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serialNumber: SERIAL_NUMBER
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}
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})
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);
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AsnError.assertSchema(asn1, this.className);
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// Get internal properties from parsed schema
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this.hashAlgorithm = new AlgorithmIdentifier({ schema: asn1.result.hashAlgorithm });
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this.issuerNameHash = asn1.result.issuerNameHash;
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this.issuerKeyHash = asn1.result.issuerKeyHash;
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this.serialNumber = asn1.result.serialNumber;
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}
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public toSchema(): asn1js.Sequence {
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return (new asn1js.Sequence({
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value: [
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this.hashAlgorithm.toSchema(),
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this.issuerNameHash,
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this.issuerKeyHash,
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this.serialNumber
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]
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}));
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}
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public toJSON(): CertIDJson {
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return {
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hashAlgorithm: this.hashAlgorithm.toJSON(),
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issuerNameHash: this.issuerNameHash.toJSON(),
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issuerKeyHash: this.issuerKeyHash.toJSON(),
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serialNumber: this.serialNumber.toJSON(),
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};
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}
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/**
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* Checks that two "CertIDs" are equal
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* @param certificateID Identifier of the certificate to be checked
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*/
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public isEqual(certificateID: CertID): boolean {
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// Check HASH_ALGORITHM
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if (this.hashAlgorithm.algorithmId !== certificateID.hashAlgorithm.algorithmId) {
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return false;
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}
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// Check ISSUER_NAME_HASH
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if (!pvtsutils.BufferSourceConverter.isEqual(this.issuerNameHash.valueBlock.valueHexView, certificateID.issuerNameHash.valueBlock.valueHexView)) {
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return false;
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}
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// Check ISSUER_KEY_HASH
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if (!pvtsutils.BufferSourceConverter.isEqual(this.issuerKeyHash.valueBlock.valueHexView, certificateID.issuerKeyHash.valueBlock.valueHexView)) {
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return false;
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}
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// Check SERIAL_NUMBER
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if (!this.serialNumber.isEqual(certificateID.serialNumber)) {
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return false;
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}
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return true;
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}
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/**
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* Making OCSP certificate identifier for specific certificate
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* @param certificate Certificate making OCSP Request for
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* @param parameters Additional parameters
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* @param crypto Crypto engine
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*/
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public async createForCertificate(certificate: Certificate, parameters: CertIDCreateParams, crypto = common.getCrypto(true)): Promise<void> {
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//#region Check input parameters
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ParameterError.assert(parameters, HASH_ALGORITHM, "issuerCertificate");
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const hashOID = crypto.getOIDByAlgorithm({ name: parameters.hashAlgorithm }, true, "hashAlgorithm");
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this.hashAlgorithm = new AlgorithmIdentifier({
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algorithmId: hashOID,
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algorithmParams: new asn1js.Null()
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});
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const issuerCertificate = parameters.issuerCertificate;
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//#endregion
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// Initialize SERIAL_NUMBER field
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this.serialNumber = certificate.serialNumber;
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// Create ISSUER_NAME_HASH
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const hashIssuerName = await crypto.digest({ name: parameters.hashAlgorithm }, issuerCertificate.subject.toSchema().toBER(false));
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this.issuerNameHash = new asn1js.OctetString({ valueHex: hashIssuerName });
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// Create ISSUER_KEY_HASH
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const issuerKeyBuffer = issuerCertificate.subjectPublicKeyInfo.subjectPublicKey.valueBlock.valueHexView;
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const hashIssuerKey = await crypto.digest({ name: parameters.hashAlgorithm }, issuerKeyBuffer);
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this.issuerKeyHash = new asn1js.OctetString({ valueHex: hashIssuerKey });
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}
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}
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