309 lines
9.7 KiB
TypeScript
309 lines
9.7 KiB
TypeScript
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/*! scure-bip32 - MIT License (c) 2022 Patricio Palladino, Paul Miller (paulmillr.com) */
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import { hmac } from '@noble/hashes/hmac';
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import { ripemd160 } from '@noble/hashes/ripemd160';
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import { sha256 } from '@noble/hashes/sha256';
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import { sha512 } from '@noble/hashes/sha512';
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import { bytes as assertBytes } from '@noble/hashes/_assert';
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import { bytesToHex, concatBytes, createView, hexToBytes, utf8ToBytes } from '@noble/hashes/utils';
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import { secp256k1 as secp } from '@noble/curves/secp256k1';
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import { mod } from '@noble/curves/abstract/modular';
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import { createBase58check } from '@scure/base';
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const Point = secp.ProjectivePoint;
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const base58check = createBase58check(sha256);
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function bytesToNumber(bytes: Uint8Array): bigint {
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return BigInt(`0x${bytesToHex(bytes)}`);
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}
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function numberToBytes(num: bigint): Uint8Array {
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return hexToBytes(num.toString(16).padStart(64, '0'));
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}
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const MASTER_SECRET = utf8ToBytes('Bitcoin seed');
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// Bitcoin hardcoded by default
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const BITCOIN_VERSIONS: Versions = { private: 0x0488ade4, public: 0x0488b21e };
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export const HARDENED_OFFSET: number = 0x80000000;
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export interface Versions {
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private: number;
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public: number;
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}
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const hash160 = (data: Uint8Array) => ripemd160(sha256(data));
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const fromU32 = (data: Uint8Array) => createView(data).getUint32(0, false);
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const toU32 = (n: number) => {
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if (!Number.isSafeInteger(n) || n < 0 || n > 2 ** 32 - 1) {
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throw new Error(`Invalid number=${n}. Should be from 0 to 2 ** 32 - 1`);
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}
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const buf = new Uint8Array(4);
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createView(buf).setUint32(0, n, false);
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return buf;
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};
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interface HDKeyOpt {
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versions?: Versions;
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depth?: number;
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index?: number;
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parentFingerprint?: number;
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chainCode?: Uint8Array;
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publicKey?: Uint8Array;
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privateKey?: Uint8Array | bigint;
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}
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export class HDKey {
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get fingerprint(): number {
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if (!this.pubHash) {
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throw new Error('No publicKey set!');
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}
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return fromU32(this.pubHash);
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}
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get identifier(): Uint8Array | undefined {
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return this.pubHash;
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}
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get pubKeyHash(): Uint8Array | undefined {
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return this.pubHash;
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}
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get privateKey(): Uint8Array | null {
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return this.privKeyBytes || null;
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}
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get publicKey(): Uint8Array | null {
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return this.pubKey || null;
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}
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get privateExtendedKey(): string {
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const priv = this.privateKey;
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if (!priv) {
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throw new Error('No private key');
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}
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return base58check.encode(
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this.serialize(this.versions.private, concatBytes(new Uint8Array([0]), priv))
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);
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}
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get publicExtendedKey(): string {
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if (!this.pubKey) {
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throw new Error('No public key');
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}
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return base58check.encode(this.serialize(this.versions.public, this.pubKey));
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}
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public static fromMasterSeed(seed: Uint8Array, versions: Versions = BITCOIN_VERSIONS): HDKey {
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assertBytes(seed);
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if (8 * seed.length < 128 || 8 * seed.length > 512) {
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throw new Error(
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`HDKey: wrong seed length=${seed.length}. Should be between 128 and 512 bits; 256 bits is advised)`
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);
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}
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const I = hmac(sha512, MASTER_SECRET, seed);
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return new HDKey({
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versions,
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chainCode: I.slice(32),
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privateKey: I.slice(0, 32),
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});
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}
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public static fromExtendedKey(base58key: string, versions: Versions = BITCOIN_VERSIONS): HDKey {
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// => version(4) || depth(1) || fingerprint(4) || index(4) || chain(32) || key(33)
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const keyBuffer: Uint8Array = base58check.decode(base58key);
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const keyView = createView(keyBuffer);
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const version = keyView.getUint32(0, false);
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const opt = {
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versions,
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depth: keyBuffer[4],
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parentFingerprint: keyView.getUint32(5, false),
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index: keyView.getUint32(9, false),
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chainCode: keyBuffer.slice(13, 45),
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};
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const key = keyBuffer.slice(45);
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const isPriv = key[0] === 0;
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if (version !== versions[isPriv ? 'private' : 'public']) {
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throw new Error('Version mismatch');
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}
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if (isPriv) {
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return new HDKey({ ...opt, privateKey: key.slice(1) });
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} else {
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return new HDKey({ ...opt, publicKey: key });
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}
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}
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public static fromJSON(json: { xpriv: string }): HDKey {
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return HDKey.fromExtendedKey(json.xpriv);
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}
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public readonly versions: Versions;
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public readonly depth: number = 0;
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public readonly index: number = 0;
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public readonly chainCode: Uint8Array | null = null;
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public readonly parentFingerprint: number = 0;
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private privKey?: bigint;
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private privKeyBytes?: Uint8Array;
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private pubKey?: Uint8Array;
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private pubHash: Uint8Array | undefined;
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constructor(opt: HDKeyOpt) {
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if (!opt || typeof opt !== 'object') {
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throw new Error('HDKey.constructor must not be called directly');
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}
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this.versions = opt.versions || BITCOIN_VERSIONS;
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this.depth = opt.depth || 0;
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this.chainCode = opt.chainCode || null;
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this.index = opt.index || 0;
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this.parentFingerprint = opt.parentFingerprint || 0;
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if (!this.depth) {
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if (this.parentFingerprint || this.index) {
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throw new Error('HDKey: zero depth with non-zero index/parent fingerprint');
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}
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}
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if (opt.publicKey && opt.privateKey) {
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throw new Error('HDKey: publicKey and privateKey at same time.');
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}
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if (opt.privateKey) {
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if (!secp.utils.isValidPrivateKey(opt.privateKey)) {
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throw new Error('Invalid private key');
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}
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this.privKey =
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typeof opt.privateKey === 'bigint' ? opt.privateKey : bytesToNumber(opt.privateKey);
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this.privKeyBytes = numberToBytes(this.privKey);
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this.pubKey = secp.getPublicKey(opt.privateKey, true);
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} else if (opt.publicKey) {
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this.pubKey = Point.fromHex(opt.publicKey).toRawBytes(true); // force compressed point
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} else {
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throw new Error('HDKey: no public or private key provided');
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}
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this.pubHash = hash160(this.pubKey);
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}
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public derive(path: string): HDKey {
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if (!/^[mM]'?/.test(path)) {
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throw new Error('Path must start with "m" or "M"');
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}
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if (/^[mM]'?$/.test(path)) {
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return this;
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}
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const parts = path.replace(/^[mM]'?\//, '').split('/');
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// tslint:disable-next-line
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let child: HDKey = this;
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for (const c of parts) {
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const m = /^(\d+)('?)$/.exec(c);
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const m1 = m && m[1];
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if (!m || m.length !== 3 || typeof m1 !== 'string') {
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throw new Error(`Invalid child index: ${c}`);
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}
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let idx = +m1;
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if (!Number.isSafeInteger(idx) || idx >= HARDENED_OFFSET) {
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throw new Error('Invalid index');
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}
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// hardened key
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if (m[2] === "'") {
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idx += HARDENED_OFFSET;
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}
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child = child.deriveChild(idx);
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}
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return child;
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}
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public deriveChild(index: number): HDKey {
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if (!this.pubKey || !this.chainCode) {
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throw new Error('No publicKey or chainCode set');
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}
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let data = toU32(index);
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if (index >= HARDENED_OFFSET) {
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// Hardened
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const priv = this.privateKey;
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if (!priv) {
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throw new Error('Could not derive hardened child key');
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}
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// Hardened child: 0x00 || ser256(kpar) || ser32(index)
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data = concatBytes(new Uint8Array([0]), priv, data);
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} else {
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// Normal child: serP(point(kpar)) || ser32(index)
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data = concatBytes(this.pubKey, data);
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}
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const I = hmac(sha512, this.chainCode, data);
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const childTweak = bytesToNumber(I.slice(0, 32));
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const chainCode = I.slice(32);
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if (!secp.utils.isValidPrivateKey(childTweak)) {
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throw new Error('Tweak bigger than curve order');
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}
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const opt: HDKeyOpt = {
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versions: this.versions,
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chainCode,
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depth: this.depth + 1,
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parentFingerprint: this.fingerprint,
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index,
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};
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try {
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// Private parent key -> private child key
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if (this.privateKey) {
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const added = mod(this.privKey! + childTweak, secp.CURVE.n);
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if (!secp.utils.isValidPrivateKey(added)) {
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throw new Error('The tweak was out of range or the resulted private key is invalid');
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}
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opt.privateKey = added;
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} else {
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const added = Point.fromHex(this.pubKey).add(Point.fromPrivateKey(childTweak));
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// Cryptographically impossible: hmac-sha512 preimage would need to be found
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if (added.equals(Point.ZERO)) {
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throw new Error('The tweak was equal to negative P, which made the result key invalid');
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}
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opt.publicKey = added.toRawBytes(true);
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}
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return new HDKey(opt);
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} catch (err) {
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return this.deriveChild(index + 1);
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}
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}
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public sign(hash: Uint8Array): Uint8Array {
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if (!this.privateKey) {
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throw new Error('No privateKey set!');
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}
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assertBytes(hash, 32);
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return secp.sign(hash, this.privKey!).toCompactRawBytes();
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}
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public verify(hash: Uint8Array, signature: Uint8Array): boolean {
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assertBytes(hash, 32);
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assertBytes(signature, 64);
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if (!this.publicKey) {
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throw new Error('No publicKey set!');
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}
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let sig;
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try {
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sig = secp.Signature.fromCompact(signature);
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} catch (error) {
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return false;
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}
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return secp.verify(sig, hash, this.publicKey);
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}
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public wipePrivateData(): this {
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this.privKey = undefined;
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if (this.privKeyBytes) {
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this.privKeyBytes.fill(0);
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this.privKeyBytes = undefined;
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}
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return this;
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}
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public toJSON(): { xpriv: string; xpub: string } {
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return {
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xpriv: this.privateExtendedKey,
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xpub: this.publicExtendedKey,
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};
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}
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private serialize(version: number, key: Uint8Array) {
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if (!this.chainCode) {
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throw new Error('No chainCode set');
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}
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assertBytes(key, 33);
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// version(4) || depth(1) || fingerprint(4) || index(4) || chain(32) || key(33)
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return concatBytes(
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toU32(version),
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new Uint8Array([this.depth]),
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toU32(this.parentFingerprint),
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toU32(this.index),
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this.chainCode,
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key
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);
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}
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}
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