mirror of
https://github.com/node-ebics/node-ebics-client.git
synced 2024-11-25 23:52:05 +00:00
220 lines
5.1 KiB
JavaScript
220 lines
5.1 KiB
JavaScript
'use strict';
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/* eslint-disable camelcase */
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function rsaPublicKeyPem(modulus_b64, exponent_b64) {
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function prepadSigned(hexStr) {
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const msb = hexStr[0];
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if (
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(msb >= '8' && msb <= '9') ||
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(msb >= 'a' && msb <= 'f') ||
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(msb >= 'A' && msb <= 'F'))
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return `00${hexStr}`;
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return hexStr;
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}
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function toHex(number) {
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const nstr = number.toString(16);
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if (nstr.length % 2 === 0) return nstr;
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return `0${nstr}`;
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}
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// encode ASN.1 DER length field
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// if <=127, short from
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// if >=128, long from
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function encodeLengthHex(n) {
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if (n <= 127) return toHex(n);
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const n_hex = toHex(n);
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const length_of_length_byte = 128 + (n_hex.length / 2); // 0x80+numbytes
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return toHex(length_of_length_byte) + n_hex;
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}
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const modulus = Buffer.from(modulus_b64, 'base64');
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const exponent = Buffer.from(exponent_b64, 'base64');
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let modulus_hex = modulus.toString('hex');
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let exponent_hex = exponent.toString('hex');
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modulus_hex = prepadSigned(modulus_hex);
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exponent_hex = prepadSigned(exponent_hex);
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const modlen = modulus_hex.length / 2;
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const explen = exponent_hex.length / 2;
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const encoded_modlen = encodeLengthHex(modlen);
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const encoded_explen = encodeLengthHex(explen);
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const encoded_pubkey = `30${
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encodeLengthHex(modlen + explen + (encoded_modlen.length / 2) + (encoded_explen.length / 2) + 2)
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}02${encoded_modlen}${modulus_hex
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}02${encoded_explen}${exponent_hex}`;
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let seq2 =
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`${'30 0d ' +
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'06 09 2a 86 48 86 f7 0d 01 01 01' +
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'05 00 ' +
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'03'}${encodeLengthHex((encoded_pubkey.length / 2) + 1)
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}00${encoded_pubkey}`;
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seq2 = seq2.replace(/ /g, '');
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let der_hex = `30${encodeLengthHex(seq2.length / 2)}${seq2}`;
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der_hex = der_hex.replace(/ /g, '');
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const der = Buffer.from(der_hex, 'hex');
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const der_b64 = der.toString('base64');
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const pem = `-----BEGIN PUBLIC KEY-----\n${
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der_b64.match(/.{1,64}/g).join('\n')
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}\n-----END PUBLIC KEY-----\n`;
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return pem.trim();
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}
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const BN = require('bn.js');
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const NodeRSA = require('node-rsa');
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const { pki: {
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rsa, publicKeyToPem, privateKeyToPem, publicKeyFromPem, privateKeyFromPem
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}, jsbn: { BigInteger } } = require('node-forge');
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const isKeyInstance = (obj) => {
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if (typeof obj !== 'object')
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return false;
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return ('publicKey' in obj && 'privateKey' in obj);
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};
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const getKeyType = (str) => {
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const matches = str.match(/(PRIVATE|PUBLIC) KEY/);
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if (!matches)
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return null;
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return matches[1].toLowerCase();
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};
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/*
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class RsaKeyPair {
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constructor() {
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this._isPublic = null;
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this._publicKey = null;
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this._privateKey = null;
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}
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fromString(str) {
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}
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}
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*/
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const keyOrNull = (encodedKey) => {
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if (encodedKey === null) return {};
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if (typeof encodedKey === 'string') {
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const type = getKeyType(encodedKey);
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const isPublic = type === 'public';
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const key = isPublic ? publicKeyFromPem(encodedKey) : privateKeyFromPem(encodedKey);
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key.isPublic = isPublic;
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return key;
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}
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return encodedKey;
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// return (isKeyInstance(encodedKey)) ? encodedKey;
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/* const k = (encodedKey instanceof NodeRSA) ? encodedKey : new NodeRSA(encodedKey);
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if (k.keyPair.e === 16777216)
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k.keyPair.e = 4294967311;
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return k; */
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};
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module.exports = (encodedKey) => {
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if (encodedKey && encodedKey.__RsaKey)
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return encodedKey;
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return {
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__RsaKey: true,
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key: keyOrNull(encodedKey),
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generate(keySize = 2048) {
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const keyPair = rsa.generateKeyPair(keySize);
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this.key = keyPair.privateKey;
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this.key.isPublic = false;
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this.publicKey = keyPair.publicKey;
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return this;
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// return rsa.generateKeyPair(keySize);
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// return new NodeRSA({ b: keySize });
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},
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importKey({
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mod,
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exp,
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modulus,
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exponent,
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}) {
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this.key = rsa.setPublicKey(new BigInteger(mod.toString('hex'), 16), new BigInteger(exp.toString('hex'), 16));
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this.key.isPublic = true;
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// const k = rsa.generateKeyPair();
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// k.publicKey = rsa.setPublicKey(mod, exp);
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// this.key = k;
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// this.key.publicKey.
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// .this.key.importKey({ n: mod, e: exp }, 'components-public');
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/*
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this.pempem = modulus && exponent ? {
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modulus,
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exponent,
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} : null;
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*/
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return this;
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},
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n(to = 'buff') {
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const key = this.publicKey || this.key;
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const keyN = Buffer.from(key.n.toByteArray());
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return to === 'hex'
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? keyN.toString('hex', 1)
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: keyN;
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},
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e(to = 'buff') {
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const key = this.publicKey || this.key;
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const eKey = Buffer.from(key.e.toByteArray()); // new BN(this.key.exportKey('components-public').e).toBuffer();
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return to === 'hex'
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? eKey.toString('hex')
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: eKey;
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},
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d() {
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return Buffer.from(this.key.d.toByteArray());
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// return this.key.keyPair.d.toBuffer();
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},
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isPrivate() {
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return !this.key.isPublic;
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},
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isPublic() {
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return this.key.isPublic;
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// return this.key.isPublic();
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},
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size() {
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return 2048;
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// return this.key.getKeySize();
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},
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toPem() {
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if (this.isPublic())
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return publicKeyToPem(this.key);
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return privateKeyToPem(this.key);
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/*
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if (this.pempem)
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return rsaPublicKeyPem(this.pempem.modulus, this.pempem.exponent);
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const isPrivate = this.key.isPrivate();
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const pem = isPrivate ? this.key.exportKey('pkcs1-private-pem') : this.key.exportKey('pkcs8-public-pem');
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return pem;
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*/
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},
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};
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};
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