import * as asn1js from "asn1js"; import * as pvutils from "pvutils"; import { AlgorithmIdentifier, AlgorithmIdentifierJson, AlgorithmIdentifierSchema } from "./AlgorithmIdentifier"; import { EMPTY_STRING } from "./constants"; import { AsnError } from "./errors"; import { PkiObject, PkiObjectParameters } from "./PkiObject"; import * as Schema from "./Schema";
if (ENCRYPTED_CONTENT in parameters && parameters.encryptedContent) { // encryptedContent (!!!) could be constructive or primitive value (!!!) this.encryptedContent = parameters.encryptedContent;
if ((this.encryptedContent.idBlock.tagClass === 1) &&
(this.encryptedContent.idBlock.tagNumber === 4)) { //#region Divide OCTET STRING value down to small pieces // NOTE: Acrobat cannot decrypt the content, if constructed OctetString is used if (this.encryptedContent.idBlock.isConstructed === false && !parameters.disableSplit) { const constrString = new asn1js.OctetString({
idBlock: { isConstructed: true },
isConstructed: true
});
let offset = 0; const valueHex = this.encryptedContent.valueBlock.valueHexView.slice().buffer;
let length = valueHex.byteLength;
while (length > 0) { const pieceView = new Uint8Array(valueHex, offset, ((offset + PIECE_SIZE) > valueHex.byteLength) ? (valueHex.byteLength - offset) : PIECE_SIZE); const _array = new ArrayBuffer(pieceView.length); const _view = new Uint8Array(_array);
for (let i = 0; i < _view.length; i++)
_view[i] = pieceView[i];
return (new asn1js.Sequence({
name: (names.blockName || EMPTY_STRING),
value: [ new asn1js.ObjectIdentifier({ name: (names.contentType || EMPTY_STRING) }),
AlgorithmIdentifier.schema(names.contentEncryptionAlgorithm || {}), // The CHOICE we need because ENCRYPTED_CONTENT could have either "constructive" // or "primitive" form of encoding and we need to handle both variants new asn1js.Choice({
value: [ new asn1js.Constructed({
name: (names.encryptedContent || EMPTY_STRING),
idBlock: {
tagClass: 3, // CONTEXT-SPECIFIC
tagNumber: 0// [0]
},
value: [ new asn1js.Repeated({
value: new asn1js.OctetString()
})
]
}), new asn1js.Primitive({
name: (names.encryptedContent || EMPTY_STRING),
idBlock: {
tagClass: 3, // CONTEXT-SPECIFIC
tagNumber: 0// [0]
}
})
]
})
]
}));
}
public fromSchema(schema: Schema.SchemaType): void { // Clear input data first
pvutils.clearProps(schema, CLEAR_PROPS);
// Get internal properties from parsed schema this.contentType = asn1.result.contentType.valueBlock.toString(); this.contentEncryptionAlgorithm = new AlgorithmIdentifier({ schema: asn1.result.contentEncryptionAlgorithm }); if (ENCRYPTED_CONTENT in asn1.result) { this.encryptedContent = asn1.result.encryptedContent as asn1js.OctetString;
this.encryptedContent.idBlock.tagClass = 1; // UNIVERSAL this.encryptedContent.idBlock.tagNumber = 4; // OCTET STRING (!!!) The value still has instance of "in_window.org.pkijs.asn1.ASN1_CONSTRUCTED / ASN1_PRIMITIVE"
}
}
public toSchema(): asn1js.Sequence { //#region Create array for output sequence const sequenceLengthBlock = {
isIndefiniteForm: false
};
//#region Construct and return new ASN.1 schema for this object
return (new asn1js.Sequence({
lenBlock: sequenceLengthBlock,
value: outputArray
})); //#endregion
}
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