fcoin/test/wallet-test.js
2017-01-08 02:44:55 -08:00

1307 lines
32 KiB
JavaScript

'use strict';
var assert = require('assert');
var consensus = require('../lib/protocol/consensus');
var util = require('../lib/utils/util');
var encoding = require('../lib/utils/encoding');
var crypto = require('../lib/crypto/crypto');
var co = require('../lib/utils/co');
var WalletDB = require('../lib/wallet/walletdb');
var Address = require('../lib/primitives/address');
var MTX = require('../lib/primitives/mtx');
var Coin = require('../lib/primitives/coin');
var KeyRing = require('../lib/primitives/keyring');
var Address = require('../lib/primitives/address');
var Input = require('../lib/primitives/input');
var Outpoint = require('../lib/primitives/outpoint');
var Script = require('../lib/script/script');
var HD = require('../lib/hd');
var scriptTypes = Script.types;
var cob = co.cob;
var KEY1 = 'xprv9s21ZrQH143K3Aj6xQBymM31Zb4BVc7wxqfUhMZrzewdDVCt'
+ 'qUP9iWfcHgJofs25xbaUpCps9GDXj83NiWvQCAkWQhVj5J4CorfnpKX94AZ';
var KEY2 = 'xprv9s21ZrQH143K3mqiSThzPtWAabQ22Pjp3uSNnZ53A5bQ4udp'
+ 'faKekc2m4AChLYH1XDzANhrSdxHYWUeTWjYJwFwWFyHkTMnMeAcW4JyRCZa';
var globalHeight = 1;
var globalTime = util.now();
function nextBlock(height) {
var hash, prev;
if (height == null)
height = globalHeight++;
hash = crypto.hash256(encoding.U32(height)).toString('hex');
prev = crypto.hash256(encoding.U32(height - 1)).toString('hex');
return {
hash: hash,
height: height,
prevBlock: prev,
ts: globalTime + height,
merkleRoot: encoding.NULL_HASH,
nonce: 0,
bits: 0
};
}
function dummy(hash) {
if (!hash)
hash = crypto.randomBytes(32).toString('hex');
return Input.fromOutpoint(new Outpoint(hash, 0));
}
describe('Wallet', function() {
var walletdb, wallet, ewallet, ekey;
var doubleSpendWallet, doubleSpend;
var testP2PKH, testMultisig;
walletdb = new WalletDB({
name: 'wallet-test',
db: 'memory',
verify: true
});
this.timeout(5000);
it('should open walletdb', cob(function* () {
consensus.COINBASE_MATURITY = 0;
yield walletdb.open();
}));
it('should generate new key and address', cob(function* () {
var w = yield walletdb.create();
var addr = w.getAddress('base58');
assert(addr);
assert(Address.validate(addr));
}));
it('should validate existing address', function() {
assert(Address.validate('1KQ1wMNwXHUYj1nV2xzsRcKUH8gVFpTFUc'));
});
it('should fail to validate invalid address', function() {
assert(!Address.validate('1KQ1wMNwXHUYj1nv2xzsRcKUH8gVFpTFUc'));
});
it('should create and get wallet', cob(function* () {
var w1, w2;
w1 = yield walletdb.create();
yield w1.destroy();
w2 = yield walletdb.get(w1.id);
assert(w1 !== w2);
assert(w1.master !== w2.master);
assert.equal(w1.master.key.toBase58(), w2.master.key.toBase58());
assert.equal(
w1.account.accountKey.toBase58(),
w2.account.accountKey.toBase58());
}));
testP2PKH = co(function* testP2PKH(witness, bullshitNesting) {
var flags = Script.flags.STANDARD_VERIFY_FLAGS;
var w, addr, src, tx;
w = yield walletdb.create({ witness: witness });
addr = Address.fromBase58(w.getAddress('base58'));
if (witness)
assert.equal(addr.type, scriptTypes.WITNESSPUBKEYHASH);
else
assert.equal(addr.type, scriptTypes.PUBKEYHASH);
src = new MTX();
src.addInput(dummy());
src.addOutput(bullshitNesting ? w.getNested() : w.getAddress(), 5460 * 2);
src.addOutput(new Address(), 2 * 5460);
src = src.toTX();
tx = new MTX();
tx.addTX(src, 0);
tx.addOutput(w.getAddress(), 5460);
yield w.sign(tx);
assert(tx.verify(flags));
});
it('should sign/verify pubkeyhash tx', cob(function* () {
yield testP2PKH(false, false);
}));
it('should sign/verify witnesspubkeyhash tx', cob(function* () {
yield testP2PKH(true, false);
}));
it('should sign/verify witnesspubkeyhash tx with bullshit nesting', cob(function* () {
yield testP2PKH(true, true);
}));
it('should multisign/verify TX', cob(function* () {
var w, k, script, src, tx, maxSize;
w = yield walletdb.create({
type: 'multisig',
m: 1,
n: 2
});
k = HD.fromMnemonic().deriveAccount44(0).toPublic();
yield w.addSharedKey(k);
script = Script.fromMultisig(1, 2, [
w.account.receive.getPublicKey(),
k.derive('m/0/0').publicKey
]);
// Input transaction (bare 1-of-2 multisig)
src = new MTX();
src.addInput(dummy());
src.addOutput(script, 5460 * 2);
src.addOutput(new Address(), 5460 * 2);
src = src.toTX();
tx = new MTX();
tx.addTX(src, 0)
tx.addOutput(w.getAddress(), 5460);
maxSize = yield tx.estimateSize();
yield w.sign(tx);
assert(tx.toRaw().length <= maxSize);
assert(tx.verify());
}));
it('should handle missed and invalid txs', cob(function* () {
var w = yield walletdb.create();
var f = yield walletdb.create();
var t1, t2, t3, t4, f1, fake, balance, txs;
// Coinbase
// balance: 51000
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(w.getAddress(), 50000);
t1.addOutput(w.getAddress(), 1000);
t1 = t1.toTX();
t2 = new MTX();
t2.addTX(t1, 0); // 50000
t2.addOutput(w.getAddress(), 24000);
t2.addOutput(w.getAddress(), 24000);
// Save for later.
doubleSpendWallet = w;
doubleSpend = Coin.fromTX(t1, 0, -1);
// balance: 49000
yield w.sign(t2);
t2 = t2.toTX();
t3 = new MTX();
t3.addTX(t1, 1); // 1000
t3.addTX(t2, 0); // 24000
t3.addOutput(w.getAddress(), 23000);
// balance: 47000
yield w.sign(t3);
t3 = t3.toTX();
t4 = new MTX();
t4.addTX(t2, 1); // 24000
t4.addTX(t3, 0); // 23000
t4.addOutput(w.getAddress(), 11000);
t4.addOutput(w.getAddress(), 11000);
// balance: 22000
yield w.sign(t4);
t4 = t4.toTX();
f1 = new MTX();
f1.addTX(t4, 1); // 11000
f1.addOutput(f.getAddress(), 10000);
// balance: 11000
yield w.sign(f1);
f1 = f1.toTX();
fake = new MTX();
fake.addTX(t1, 1); // 1000 (already redeemed)
fake.addOutput(w.getAddress(), 500);
// Script inputs but do not sign
yield w.template(fake);
// Fake signature
fake.inputs[0].script.set(0, encoding.ZERO_SIG);
fake.inputs[0].script.compile();
// balance: 11000
fake = fake.toTX();
// Fake TX should temporarily change output.
yield walletdb.addTX(fake);
yield walletdb.addTX(t4);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 22500);
yield walletdb.addTX(t1);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 72500);
yield walletdb.addTX(t2);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 46500);
yield walletdb.addTX(t3);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 22000);
yield walletdb.addTX(f1);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 11000);
txs = yield w.getHistory();
assert(txs.some(function(wtx) {
return wtx.hash === f1.hash('hex');
}));
balance = yield f.getBalance();
assert.equal(balance.unconfirmed, 10000);
txs = yield f.getHistory();
assert(txs.some(function(wtx) {
return wtx.tx.hash('hex') === f1.hash('hex');
}));
}));
it('should cleanup spenders after double-spend', cob(function* () {
var w = doubleSpendWallet;
var tx, txs, total, balance;
tx = new MTX();
tx.addCoin(doubleSpend);
tx.addOutput(w.getAddress(), 5000);
txs = yield w.getHistory();
assert.equal(txs.length, 5);
total = txs.reduce(function(t, wtx) {
return t + wtx.tx.getOutputValue();
}, 0);
assert.equal(total, 154000);
yield w.sign(tx);
tx = tx.toTX();
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 11000);
yield walletdb.addTX(tx);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 6000);
txs = yield w.getHistory();
assert.equal(txs.length, 2);
total = txs.reduce(function(t, wtx) {
return t + wtx.tx.getOutputValue();
}, 0);
assert.equal(total, 56000);
}));
it('should handle missed txs without resolution', cob(function* () {
var walletdb, w, f, t1, t2, t3, t4, f1, balance, txs;
walletdb = new WalletDB({
name: 'wallet-test',
db: 'memory',
verify: false
});
yield walletdb.open();
w = yield walletdb.create();
f = yield walletdb.create();
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(w.getAddress(), 50000);
t1.addOutput(w.getAddress(), 1000);
// balance: 51000
// yield w.sign(t1);
t1 = t1.toTX();
t2 = new MTX();
t2.addTX(t1, 0); // 50000
t2.addOutput(w.getAddress(), 24000);
t2.addOutput(w.getAddress(), 24000);
// balance: 49000
yield w.sign(t2);
t2 = t2.toTX();
t3 = new MTX();
t3.addTX(t1, 1); // 1000
t3.addTX(t2, 0); // 24000
t3.addOutput(w.getAddress(), 23000);
// balance: 47000
yield w.sign(t3);
t3 = t3.toTX();
t4 = new MTX();
t4.addTX(t2, 1); // 24000
t4.addTX(t3, 0); // 23000
t4.addOutput(w.getAddress(), 11000);
t4.addOutput(w.getAddress(), 11000);
// balance: 22000
yield w.sign(t4);
t4 = t4.toTX();
f1 = new MTX();
f1.addTX(t4, 1); // 11000
f1.addOutput(f.getAddress(), 10000);
// balance: 11000
yield w.sign(f1);
f1 = f1.toTX();
// fake = new MTX();
// fake.addTX(t1, 1); // 1000 (already redeemed)
// fake.addOutput(w.getAddress(), 500);
// Script inputs but do not sign
// yield w.template(fake);
// Fake signature
// fake.inputs[0].script.set(0, encoding.ZERO_SIG);
// fake.inputs[0].script.compile();
// balance: 11000
// fake = fake.toTX();
// Fake TX should temporarly change output
// yield walletdb.addTX(fake);
yield walletdb.addTX(t4);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 22000);
yield walletdb.addTX(t1);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 73000);
yield walletdb.addTX(t2);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 47000);
yield walletdb.addTX(t3);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 22000);
yield walletdb.addTX(f1);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 11000);
txs = yield w.getHistory();
assert(txs.some(function(wtx) {
return wtx.tx.hash('hex') === f1.hash('hex');
}));
balance = yield f.getBalance();
assert.equal(balance.unconfirmed, 10000);
txs = yield f.getHistory();
assert(txs.some(function(wtx) {
return wtx.tx.hash('hex') === f1.hash('hex');
}));
yield walletdb.addTX(t2);
yield walletdb.addTX(t3);
yield walletdb.addTX(t4);
yield walletdb.addTX(f1);
balance = yield w.getBalance();
assert.equal(balance.unconfirmed, 11000);
balance = yield f.getBalance();
assert.equal(balance.unconfirmed, 10000);
}));
it('should fill tx with inputs', cob(function* () {
var w1 = yield walletdb.create();
var w2 = yield walletdb.create();
var view, t1, t2, t3, err;
// Coinbase
t1 = new MTX()
t1.addInput(dummy());
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1 = t1.toTX();
yield walletdb.addTX(t1);
// Create new transaction
t2 = new MTX();
t2.addOutput(w2.getAddress(), 5460);
yield w1.fund(t2, { rate: 10000, round: true });
yield w1.sign(t2);
view = t2.view;
t2 = t2.toTX();
assert(t2.verify(view));
assert.equal(t2.getInputValue(view), 16380);
assert.equal(t2.getOutputValue(), 6380);
assert.equal(t2.getFee(view), 10000);
// Create new transaction
t3 = new MTX();
t3.addOutput(w2.getAddress(), 15000);
try {
yield w1.fund(t3, { rate: 10000, round: true });
} catch (e) {
err = e;
}
assert(err);
assert.equal(err.requiredFunds, 25000);
}));
it('should fill tx with inputs with accurate fee', cob(function* () {
var w1 = yield walletdb.create({ master: KEY1 });
var w2 = yield walletdb.create({ master: KEY2 });
var view, t1, t2, t3, balance, err;
// Coinbase
t1 = new MTX()
t1.addInput(dummy(encoding.NULL_HASH));
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1 = t1.toTX();
yield walletdb.addTX(t1);
// Create new transaction
t2 = new MTX().addOutput(w2.getAddress(), 5460);
yield w1.fund(t2, { rate: 10000 });
yield w1.sign(t2);
view = t2.view;
t2 = t2.toTX();
assert(t2.verify(view));
assert.equal(t2.getInputValue(view), 16380);
// Should now have a change output:
assert.equal(t2.getOutputValue(), 11130);
assert.equal(t2.getFee(view), 5250);
assert.equal(t2.getWeight(), 2084);
assert.equal(t2.getBaseSize(), 521);
assert.equal(t2.getSize(), 521);
assert.equal(t2.getVirtualSize(), 521);
w2.once('balance', function(b) {
balance = b;
});
yield walletdb.addTX(t2);
// Create new transaction
t3 = new MTX();
t3.addOutput(w2.getAddress(), 15000);
try {
yield w1.fund(t3, { rate: 10000 });
} catch (e) {
err = e;
}
assert(err);
assert(balance);
assert(balance.unconfirmed === 5460);
}));
it('should sign multiple inputs using different keys', cob(function* () {
var w1 = yield walletdb.create();
var w2 = yield walletdb.create();
var to = yield walletdb.create();
var t1, t2, tx, cost, total, coins1, coins2, left;
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1 = t1.toTX();
// Coinbase
t2 = new MTX();
t2.addInput(dummy());
t2.addOutput(w2.getAddress(), 5460);
t2.addOutput(w2.getAddress(), 5460);
t2.addOutput(w2.getAddress(), 5460);
t2.addOutput(w2.getAddress(), 5460);
t2 = t2.toTX();
yield walletdb.addTX(t1);
yield walletdb.addTX(t2);
// Create our tx with an output
tx = new MTX();
tx.addOutput(to.getAddress(), 5460);
cost = tx.getOutputValue();
total = cost * 10000;
coins1 = yield w1.getCoins();
coins2 = yield w2.getCoins();
// Add dummy output (for `left`) to calculate maximum TX size
tx.addOutput(w1.getAddress(), 0);
// Add our unspent inputs to sign
tx.addCoin(coins1[0]);
tx.addCoin(coins1[1]);
tx.addCoin(coins2[0]);
left = tx.getInputValue() - total;
if (left === 0)
tx.outputs.pop();
else
tx.outputs[tx.outputs.length - 1].value = left;
// Sign transaction
total = yield w1.sign(tx);
assert.equal(total, 2);
total = yield w2.sign(tx);
assert.equal(total, 1);
// Verify
assert.equal(tx.verify(), true);
tx.inputs.length = 0;
tx.addCoin(coins1[1]);
tx.addCoin(coins1[2]);
tx.addCoin(coins2[1]);
total = yield w1.sign(tx);
assert.equal(total, 2);
total = yield w2.sign(tx);
assert.equal(total, 1);
// Verify
assert.equal(tx.verify(), true);
}));
testMultisig = co(function* testMultisig(witness, bullshitNesting, cb) {
var flags = Script.flags.STANDARD_VERIFY_FLAGS;
var rec = bullshitNesting ? 'nested' : 'receive';
var depth = bullshitNesting ? 'nestedDepth' : 'receiveDepth';
var options, w1, w2, w3, receive, b58;
var addr, paddr, utx, send, change;
var view, block;
// Create 3 2-of-3 wallets with our pubkeys as "shared keys"
options = {
witness: witness,
type: 'multisig',
m: 2,
n: 3
};
w1 = yield walletdb.create(options);
w2 = yield walletdb.create(options);
w3 = yield walletdb.create(options);
receive = yield walletdb.create();
yield w1.addSharedKey(w2.account.accountKey);
yield w1.addSharedKey(w3.account.accountKey);
yield w2.addSharedKey(w1.account.accountKey);
yield w2.addSharedKey(w3.account.accountKey);
yield w3.addSharedKey(w1.account.accountKey);
yield w3.addSharedKey(w2.account.accountKey);
// Our p2sh address
b58 = w1.account[rec].getAddress('base58');
addr = Address.fromBase58(b58);
if (witness) {
if (bullshitNesting)
assert.equal(addr.type, scriptTypes.SCRIPTHASH);
else
assert.equal(addr.type, scriptTypes.WITNESSSCRIPTHASH);
} else {
assert.equal(addr.type, scriptTypes.SCRIPTHASH);
}
assert.equal(w1.account[rec].getAddress('base58'), b58);
assert.equal(w2.account[rec].getAddress('base58'), b58);
assert.equal(w3.account[rec].getAddress('base58'), b58);
paddr = w1.getNested('base58');
assert.equal(w1.getNested('base58'), paddr);
assert.equal(w2.getNested('base58'), paddr);
assert.equal(w3.getNested('base58'), paddr);
// Add a shared unspent transaction to our wallets
utx = new MTX();
if (bullshitNesting)
utx.addOutput({ address: paddr, value: 5460 * 10 });
else
utx.addOutput({ address: addr, value: 5460 * 10 });
utx.addInput(dummy());
utx = utx.toTX();
// Simulate a confirmation
block = nextBlock();
assert.equal(w1.account[depth], 1);
yield walletdb.addBlock(block, [utx]);
assert.equal(w1.account[depth], 2);
assert.equal(w1.account.changeDepth, 1);
assert(w1.account[rec].getAddress('base58') !== b58);
b58 = w1.account[rec].getAddress('base58');
assert.equal(w1.account[rec].getAddress('base58'), b58);
assert.equal(w2.account[rec].getAddress('base58'), b58);
assert.equal(w3.account[rec].getAddress('base58'), b58);
// Create a tx requiring 2 signatures
send = new MTX();
send.addOutput({ address: receive.getAddress(), value: 5460 });
assert(!send.verify(flags));
yield w1.fund(send, { rate: 10000, round: true });
yield w1.sign(send);
assert(!send.verify(flags));
yield w2.sign(send);
view = send.view;
send = send.toTX();
assert(send.verify(view, flags));
assert.equal(w1.account.changeDepth, 1);
change = w1.account.change.getAddress('base58');
assert.equal(w1.account.change.getAddress('base58'), change);
assert.equal(w2.account.change.getAddress('base58'), change);
assert.equal(w3.account.change.getAddress('base58'), change);
// Simulate a confirmation
block = nextBlock();
yield walletdb.addBlock(block, [send]);
assert.equal(w1.account[depth], 2);
assert.equal(w1.account.changeDepth, 2);
assert(w1.account[rec].getAddress('base58') === b58);
assert(w1.account.change.getAddress('base58') !== change);
change = w1.account.change.getAddress('base58');
assert.equal(w1.account.change.getAddress('base58'), change);
assert.equal(w2.account.change.getAddress('base58'), change);
assert.equal(w3.account.change.getAddress('base58'), change);
if (witness) {
send.inputs[0].witness.set(2, 0);
} else {
send.inputs[0].script.set(2, 0);
send.inputs[0].script.compile();
}
assert(!send.verify(view, flags));
assert.equal(send.getFee(view), 10000);
});
it('should verify 2-of-3 scripthash tx', cob(function* () {
yield testMultisig(false, false);
}));
it('should verify 2-of-3 witnessscripthash tx', cob(function* () {
yield testMultisig(true, false);
}));
it('should verify 2-of-3 witnessscripthash tx with bullshit nesting', cob(function* () {
yield testMultisig(true, true);
}));
it('should fill tx with account 1', cob(function* () {
var w1 = yield walletdb.create();
var w2 = yield walletdb.create();
var account, accounts, rec, t1, t2, t3, err;
account = yield w1.createAccount({ name: 'foo' });
assert.equal(account.name, 'foo');
assert.equal(account.accountIndex, 1);
account = yield w1.getAccount('foo');
assert.equal(account.name, 'foo');
assert.equal(account.accountIndex, 1);
rec = account.receive;
// Coinbase
t1 = new MTX();
t1.addOutput(rec.getAddress(), 5460);
t1.addOutput(rec.getAddress(), 5460);
t1.addOutput(rec.getAddress(), 5460);
t1.addOutput(rec.getAddress(), 5460);
t1.addInput(dummy());
t1 = t1.toTX();
yield walletdb.addTX(t1);
// Create new transaction
t2 = new MTX();
t2.addOutput(w2.getAddress(), 5460);
yield w1.fund(t2, { rate: 10000, round: true });
yield w1.sign(t2);
assert(t2.verify());
assert.equal(t2.getInputValue(), 16380);
assert.equal(t2.getOutputValue(), 6380);
assert.equal(t2.getFee(), 10000);
// Create new transaction
t3 = new MTX();
t3.addOutput(w2.getAddress(), 15000);
try {
yield w1.fund(t3, { rate: 10000, round: true });
} catch (e) {
err = e;
}
assert(err);
assert.equal(err.requiredFunds, 25000);
accounts = yield w1.getAccounts();
assert.deepEqual(accounts, ['default', 'foo']);
}));
it('should fail to fill tx with account 1', cob(function* () {
var w = yield walletdb.create();
var acc, account, t1, t2, err;
wallet = w;
acc = yield w.createAccount({ name: 'foo' });
assert.equal(acc.name, 'foo');
assert.equal(acc.accountIndex, 1);
account = yield w.getAccount('foo');
assert.equal(account.name, 'foo');
assert.equal(account.accountIndex, 1);
assert(account.accountKey.toBase58() === acc.accountKey.toBase58());
assert(w.account.accountIndex === 0);
assert.notEqual(
account.receive.getAddress('base58'),
w.account.receive.getAddress('base58'));
assert.equal(w.getAddress('base58'),
w.account.receive.getAddress('base58'));
// Coinbase
t1 = new MTX();
t1.addOutput(w.getAddress(), 5460);
t1.addOutput(w.getAddress(), 5460);
t1.addOutput(w.getAddress(), 5460);
t1.addOutput(account.receive.getAddress(), 5460);
t1.addInput(dummy());
t1 = t1.toTX();
yield walletdb.addTX(t1);
// Should fill from `foo` and fail
t2 = new MTX();
t2.addOutput(w.getAddress(), 5460);
try {
yield w.fund(t2, { rate: 10000, round: true, account: 'foo' });
} catch (e) {
err = e;
}
assert(err);
// Should fill from whole wallet and succeed
t2 = new MTX();
t2.addOutput(w.getAddress(), 5460);
yield w.fund(t2, { rate: 10000, round: true });
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(account.receive.getAddress(), 5460);
t1.addOutput(account.receive.getAddress(), 5460);
t1.addOutput(account.receive.getAddress(), 5460);
t1 = t1.toTX();
yield walletdb.addTX(t1);
// Should fill from `foo` and succeed
t2 = new MTX();
t2.addOutput(w.getAddress(), 5460);
yield w.fund(t2, { rate: 10000, round: true, account: 'foo' });
}));
it('should create two accounts (multiple encryption)', cob(function* () {
var w = yield walletdb.create({ id: 'foobar', passphrase: 'foo' });
var account;
yield w.destroy();
w = yield walletdb.get('foobar');
account = yield w.createAccount({ name: 'foo1' }, 'foo');
assert(account);
yield w.lock();
}));
it('should fill tx with inputs when encrypted', cob(function* () {
var w = yield walletdb.create({ passphrase: 'foo' });
var t1, t2, err;
w.master.stop();
w.master.key = null;
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(w.getAddress(), 5460);
t1.addOutput(w.getAddress(), 5460);
t1.addOutput(w.getAddress(), 5460);
t1.addOutput(w.getAddress(), 5460);
t1 = t1.toTX();
yield walletdb.addTX(t1);
// Create new transaction
t2 = new MTX();
t2.addOutput(w.getAddress(), 5460);
yield w.fund(t2, { rate: 10000, round: true });
// Should fail
try {
yield w.sign(t2, 'bar');
} catch (e) {
err = e;
}
assert(err);
assert(!t2.verify());
// Should succeed
yield w.sign(t2, 'foo');
assert(t2.verify());
}));
it('should fill tx with inputs with subtract fee', cob(function* () {
var w1 = yield walletdb.create();
var w2 = yield walletdb.create();
var t1, t2;
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1 = t1.toTX();
yield walletdb.addTX(t1);
// Create new transaction
t2 = new MTX();
t2.addOutput(w2.getAddress(), 21840);
yield w1.fund(t2, { rate: 10000, round: true, subtractFee: true });
yield w1.sign(t2);
assert(t2.verify());
assert.equal(t2.getInputValue(), 5460 * 4);
assert.equal(t2.getOutputValue(), 21840 - 10000);
assert.equal(t2.getFee(), 10000);
}));
it('should fill tx with inputs with subtract fee', cob(function* () {
var w1 = yield walletdb.create();
var w2 = yield walletdb.create();
var options, t1, t2;
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1.addOutput(w1.getAddress(), 5460);
t1 = t1.toTX();
yield walletdb.addTX(t1);
options = {
subtractFee: true,
rate: 10000,
round: true,
outputs: [{ address: w2.getAddress(), value: 21840 }]
};
// Create new transaction
t2 = yield w1.createTX(options);
yield w1.sign(t2);
assert(t2.verify());
assert.equal(t2.getInputValue(), 5460 * 4);
assert.equal(t2.getOutputValue(), 21840 - 10000);
assert.equal(t2.getFee(), 10000);
}));
it('should get range of txs', cob(function* () {
var w = wallet;
var txs = yield w.getRange({ start: util.now() - 1000 });
assert.equal(txs.length, 2);
}));
it('should get range of txs from account', cob(function* () {
var w = wallet;
var txs = yield w.getRange('foo', { start: util.now() - 1000 });
assert.equal(txs.length, 2);
}));
it('should not get range of txs from non-existent account', cob(function* () {
var w = wallet;
var txs, err;
try {
txs = yield w.getRange('bad', { start: 0xdeadbeef - 1000 });
} catch (e) {
err = e;
}
assert(err);
assert.equal(err.message, 'Account not found.');
}));
it('should get account balance', cob(function* () {
var w = wallet;
var balance = yield w.getBalance('foo');
assert.equal(balance.unconfirmed, 21840);
}));
it('should import privkey', cob(function* () {
var key = KeyRing.generate();
var w = yield walletdb.create({ passphrase: 'test' });
var options, k, t1, t2, wtx;
yield w.importKey('default', key, 'test');
k = yield w.getKey(key.getHash('hex'));
assert.equal(k.getHash('hex'), key.getHash('hex'));
// Coinbase
t1 = new MTX();
t1.addOutput(key.getAddress(), 5460);
t1.addOutput(key.getAddress(), 5460);
t1.addOutput(key.getAddress(), 5460);
t1.addOutput(key.getAddress(), 5460);
t1.addInput(dummy());
t1 = t1.toTX();
yield walletdb.addTX(t1);
wtx = yield w.getTX(t1.hash('hex'));
assert(wtx);
assert.equal(t1.hash('hex'), wtx.hash);
options = {
rate: 10000,
round: true,
outputs: [{ address: w.getAddress(), value: 7000 }]
};
// Create new transaction
t2 = yield w.createTX(options);
yield w.sign(t2);
assert(t2.verify());
assert(t2.inputs[0].prevout.hash === wtx.hash);
ewallet = w;
ekey = key;
}));
it('should import pubkey', cob(function* () {
var priv = KeyRing.generate();
var key = new KeyRing(priv.publicKey);
var w = yield walletdb.create({ watchOnly: true });
var k;
yield w.importKey('default', key);
k = yield w.getPath(key.getHash('hex'));
assert.equal(k.hash, key.getHash('hex'));
k = yield w.getKey(key.getHash('hex'));
assert(k);
}));
it('should import address', cob(function* () {
var key = KeyRing.generate();
var w = yield walletdb.create({ watchOnly: true });
var k;
yield w.importAddress('default', key.getAddress());
k = yield w.getPath(key.getHash('hex'));
assert.equal(k.hash, key.getHash('hex'));
k = yield w.getKey(key.getHash('hex'));
assert(!k);
}));
it('should get details', cob(function* () {
var w = wallet;
var txs = yield w.getRange('foo', { start: util.now() - 1000 });
var details = yield w.toDetails(txs);
assert(details.some(function(tx) {
return tx.toJSON().outputs[0].path.name === 'foo';
}));
}));
it('should rename wallet', cob(function* () {
var w = wallet;
yield wallet.rename('test');
var txs = yield w.getRange('foo', { start: util.now() - 1000 });
var details = yield w.toDetails(txs);
assert.equal(details[0].toJSON().id, 'test');
}));
it('should change passphrase with encrypted imports', cob(function* () {
var w = ewallet;
var addr = ekey.getAddress();
var path, d1, d2, k;
assert(w.master.encrypted);
path = yield w.getPath(addr);
assert(path);
assert(path.data && path.encrypted);
d1 = path.data;
yield w.decrypt('test');
path = yield w.getPath(addr);
assert(path);
assert(path.data && !path.encrypted);
k = yield w.getKey(addr);
assert(k);
yield w.encrypt('foo');
path = yield w.getPath(addr);
assert(path);
assert(path.data && path.encrypted);
d2 = path.data;
assert(!util.equal(d1, d2));
k = yield w.getKey(addr);
assert(!k);
yield w.unlock('foo');
k = yield w.getKey(addr);
assert(k);
assert.equal(k.getHash('hex'), addr.getHash('hex'));
}));
it('should recover from a missed tx', cob(function* () {
var walletdb, alice, addr, bob, t1, t2, t3;
walletdb = new WalletDB({
name: 'wallet-test',
db: 'memory',
verify: false
});
yield walletdb.open();
alice = yield walletdb.create({ master: KEY1 });
bob = yield walletdb.create({ master: KEY1 });
addr = alice.getAddress();
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(addr, 50000);
t1 = t1.toTX();
yield alice.add(t1);
yield bob.add(t1);
// Bob misses this tx!
t2 = new MTX();
t2.addTX(t1, 0);
t2.addOutput(addr, 24000);
t2.addOutput(addr, 24000);
yield alice.sign(t2);
t2 = t2.toTX();
yield alice.add(t2);
assert.notEqual(
(yield alice.getBalance()).unconfirmed,
(yield bob.getBalance()).unconfirmed);
// Bob sees this one.
t3 = new MTX();
t3.addTX(t2, 0);
t3.addTX(t2, 1);
t3.addOutput(addr, 30000);
yield alice.sign(t3);
t3 = t3.toTX();
assert.equal((yield bob.getBalance()).unconfirmed, 50000);
yield alice.add(t3);
yield bob.add(t3);
assert.equal((yield alice.getBalance()).unconfirmed, 30000);
// Bob sees t2 on the chain.
yield bob.add(t2);
// Bob sees t3 on the chain.
yield bob.add(t3);
assert.equal((yield bob.getBalance()).unconfirmed, 30000);
}));
it('should recover from a missed tx and double spend', cob(function* () {
var walletdb, alice, addr, bob, t1, t2, t3, t2a;
walletdb = new WalletDB({
name: 'wallet-test',
db: 'memory',
verify: false
});
yield walletdb.open();
alice = yield walletdb.create({ master: KEY1 });
bob = yield walletdb.create({ master: KEY1 });
addr = alice.getAddress();
// Coinbase
t1 = new MTX();
t1.addInput(dummy());
t1.addOutput(addr, 50000);
t1 = t1.toTX();
yield alice.add(t1);
yield bob.add(t1);
// Bob misses this tx!
t2 = new MTX();
t2.addTX(t1, 0);
t2.addOutput(addr, 24000);
t2.addOutput(addr, 24000);
yield alice.sign(t2);
t2 = t2.toTX();
yield alice.add(t2);
assert.notEqual(
(yield alice.getBalance()).unconfirmed,
(yield bob.getBalance()).unconfirmed);
// Bob doublespends.
t2a = new MTX();
t2a.addTX(t1, 0);
t2a.addOutput(addr, 10000);
t2a.addOutput(addr, 10000);
yield bob.sign(t2a);
t2a = t2a.toTX();
yield bob.add(t2a);
// Bob sees this one.
t3 = new MTX();
t3.addTX(t2, 0);
t3.addTX(t2, 1);
t3.addOutput(addr, 30000);
yield alice.sign(t3);
t3 = t3.toTX();
assert.equal((yield bob.getBalance()).unconfirmed, 20000);
yield alice.add(t3);
yield bob.add(t3);
assert.equal((yield alice.getBalance()).unconfirmed, 30000);
// Bob sees t2 on the chain.
yield bob.add(t2);
// Bob sees t3 on the chain.
yield bob.add(t3);
assert.equal((yield bob.getBalance()).unconfirmed, 30000);
}));
it('should cleanup', function() {
consensus.COINBASE_MATURITY = 100;
});
});