liquidjs-lib
Version:
Client-side Liquid JavaScript library
237 lines (236 loc) • 7.79 kB
JavaScript
;
var __createBinding =
(this && this.__createBinding) ||
(Object.create
? function (o, m, k, k2) {
if (k2 === undefined) k2 = k;
var desc = Object.getOwnPropertyDescriptor(m, k);
if (
!desc ||
('get' in desc ? !m.__esModule : desc.writable || desc.configurable)
) {
desc = {
enumerable: true,
get: function () {
return m[k];
},
};
}
Object.defineProperty(o, k2, desc);
}
: function (o, m, k, k2) {
if (k2 === undefined) k2 = k;
o[k2] = m[k];
});
var __setModuleDefault =
(this && this.__setModuleDefault) ||
(Object.create
? function (o, v) {
Object.defineProperty(o, 'default', { enumerable: true, value: v });
}
: function (o, v) {
o['default'] = v;
});
var __importStar =
(this && this.__importStar) ||
function (mod) {
if (mod && mod.__esModule) return mod;
var result = {};
if (mod != null)
for (var k in mod)
if (k !== 'default' && Object.prototype.hasOwnProperty.call(mod, k))
__createBinding(result, mod, k);
__setModuleDefault(result, mod);
return result;
};
Object.defineProperty(exports, '__esModule', { value: true });
exports.p2wpkh = void 0;
const baddress = __importStar(require('../address'));
const bcrypto = __importStar(require('../crypto'));
const networks_1 = require('../networks');
const bscript = __importStar(require('../script'));
const types_1 = require('../types');
const lazy = __importStar(require('./lazy'));
const bech32_1 = require('bech32');
const OPS = bscript.OPS;
const EMPTY_BUFFER = Buffer.alloc(0);
// witness: {signature} {pubKey}
// input: <>
// output: OP_0 {pubKeyHash}
function p2wpkh(a, opts) {
if (
!a.address &&
!a.hash &&
!a.output &&
!a.pubkey &&
!a.witness &&
!a.confidentialAddress
)
throw new TypeError('Not enough data');
opts = Object.assign({ validate: true }, opts || {});
(0, types_1.typeforce)(
{
address: types_1.typeforce.maybe(types_1.typeforce.String),
hash: types_1.typeforce.maybe(types_1.typeforce.BufferN(20)),
input: types_1.typeforce.maybe(types_1.typeforce.BufferN(0)),
network: types_1.typeforce.maybe(types_1.typeforce.Object),
output: types_1.typeforce.maybe(types_1.typeforce.BufferN(22)),
pubkey: types_1.typeforce.maybe(types_1.isPoint),
signature: types_1.typeforce.maybe(bscript.isCanonicalScriptSignature),
witness: types_1.typeforce.maybe(
types_1.typeforce.arrayOf(types_1.typeforce.Buffer),
),
},
a,
);
const network = a.network || networks_1.liquid;
const _address = lazy.value(() => {
const result = bech32_1.bech32.decode(a.address);
const version = result.words.shift();
const data = bech32_1.bech32.fromWords(result.words);
return {
version,
prefix: result.prefix,
data: Buffer.from(data),
};
});
const _confidentialAddress = lazy.value(() => {
const result = baddress.fromBlech32(a.confidentialAddress);
return {
blindingKey: result.pubkey,
unconfidentialAddress: baddress.toBech32(
result.data.slice(2),
result.version,
network.bech32,
),
};
});
const o = { name: 'p2wpkh', network };
lazy.prop(o, 'address', () => {
if (!o.hash) return;
const words = bech32_1.bech32.toWords(o.hash);
words.unshift(0x00);
return bech32_1.bech32.encode(network.bech32, words);
});
lazy.prop(o, 'hash', () => {
if (a.output) return a.output.slice(2, 22);
if (a.address) return _address().data;
if (a.pubkey || o.pubkey) return bcrypto.hash160(a.pubkey || o.pubkey);
if (a.confidentialAddress) {
const addr = _confidentialAddress().unconfidentialAddress;
return baddress.fromBech32(addr).data;
}
});
lazy.prop(o, 'output', () => {
if (!o.hash) return;
return bscript.compile([OPS.OP_0, o.hash]);
});
lazy.prop(o, 'pubkey', () => {
if (a.pubkey) return a.pubkey;
if (!a.witness) return;
return a.witness[1];
});
lazy.prop(o, 'signature', () => {
if (!a.witness) return;
return a.witness[0];
});
lazy.prop(o, 'input', () => {
if (!o.witness) return;
return EMPTY_BUFFER;
});
lazy.prop(o, 'witness', () => {
if (!a.pubkey) return;
if (!a.signature) return;
return [a.signature, a.pubkey];
});
lazy.prop(o, 'blindkey', () => {
if (a.confidentialAddress) return _confidentialAddress().blindingKey;
if (a.blindkey) return a.blindkey;
});
lazy.prop(o, 'confidentialAddress', () => {
if (!o.address) return;
if (!o.blindkey) return;
if (!o.network) return;
const res = baddress.fromBech32(o.address);
const data = Buffer.concat([
Buffer.from([res.version, res.data.length]),
res.data,
]);
if (res.version !== 0) return;
return baddress.toBlech32(data, o.blindkey, o.network.blech32, 0);
});
// extended validation
if (opts.validate) {
let hash = Buffer.from([]);
let blindkey = Buffer.from([]);
if (a.address) {
if (network && network.bech32 !== _address().prefix)
throw new TypeError('Invalid prefix or Network mismatch');
if (_address().version !== 0x00)
throw new TypeError('Invalid address version');
if (_address().data.length !== 20)
throw new TypeError('Invalid address data');
hash = _address().data;
}
if (a.hash) {
if (hash.length > 0 && !hash.equals(a.hash))
throw new TypeError('Hash mismatch');
else hash = a.hash;
}
if (a.output) {
if (
a.output.length !== 22 ||
a.output[0] !== OPS.OP_0 ||
a.output[1] !== 0x14
)
throw new TypeError('Output is invalid');
if (hash.length > 0 && !hash.equals(a.output.slice(2)))
throw new TypeError('Hash mismatch');
else hash = a.output.slice(2);
}
if (a.pubkey) {
const pkh = bcrypto.hash160(a.pubkey);
if (hash.length > 0 && !hash.equals(pkh))
throw new TypeError('Hash mismatch');
else hash = pkh;
if (!(0, types_1.isPoint)(a.pubkey) || a.pubkey.length !== 33)
throw new TypeError('Invalid pubkey for p2wpkh');
}
if (a.witness) {
if (a.witness.length !== 2) throw new TypeError('Witness is invalid');
if (!bscript.isCanonicalScriptSignature(a.witness[0]))
throw new TypeError('Witness has invalid signature');
if (!(0, types_1.isPoint)(a.witness[1]) || a.witness[1].length !== 33)
throw new TypeError('Witness has invalid pubkey');
if (a.signature && !a.signature.equals(a.witness[0]))
throw new TypeError('Signature mismatch');
if (a.pubkey && !a.pubkey.equals(a.witness[1]))
throw new TypeError('Pubkey mismatch');
const pkh = bcrypto.hash160(a.witness[1]);
if (hash.length > 0 && !hash.equals(pkh))
throw new TypeError('Hash mismatch');
}
if (a.confidentialAddress) {
if (
a.address &&
a.address !== _confidentialAddress().unconfidentialAddress
)
throw new TypeError('Address mismatch');
if (
blindkey.length > 0 &&
!blindkey.equals(_confidentialAddress().blindingKey)
)
throw new TypeError('Blindkey mismatch');
else blindkey = _confidentialAddress().blindingKey;
}
if (a.blindkey) {
if (!(0, types_1.isPoint)(a.blindkey))
throw new TypeError('Blindkey is invalid');
if (blindkey.length > 0 && !blindkey.equals(a.blindkey))
throw new TypeError('Blindkey mismatch');
else blindkey = a.blindkey;
}
}
return Object.assign(o, a);
}
exports.p2wpkh = p2wpkh;