solana/web3.js/test/transaction.test.js

550 lines
7.2 KiB
JavaScript

// @flow
import nacl from 'tweetnacl';
import {Account} from '../src/account';
import {PublicKey} from '../src/publickey';
import {Transaction} from '../src/transaction';
import {SystemProgram} from '../src/system-program';
test('signPartial', () => {
const account1 = new Account();
const account2 = new Account();
const recentBlockhash = account1.publicKey.toBase58(); // Fake recentBlockhash
const transfer = SystemProgram.transfer(
account1.publicKey,
account2.publicKey,
123,
);
const transaction = new Transaction({recentBlockhash}).add(transfer);
transaction.sign(account1, account2);
const partialTransaction = new Transaction({recentBlockhash}).add(transfer);
partialTransaction.signPartial(account1, account2.publicKey);
expect(partialTransaction.signatures[1].signature).toBeNull();
partialTransaction.addSigner(account2);
expect(partialTransaction).toEqual(transaction);
});
test('transfer signatures', () => {
const account1 = new Account();
const account2 = new Account();
const recentBlockhash = account1.publicKey.toBase58(); // Fake recentBlockhash
const transfer1 = SystemProgram.transfer(
account1.publicKey,
account2.publicKey,
123,
);
const transfer2 = SystemProgram.transfer(
account2.publicKey,
account1.publicKey,
123,
);
const orgTransaction = new Transaction({recentBlockhash}).add(
transfer1,
transfer2,
);
orgTransaction.sign(account1, account2);
const newTransaction = new Transaction({
recentBlockhash: orgTransaction.recentBlockhash,
signatures: orgTransaction.signatures,
}).add(transfer1, transfer2);
expect(newTransaction).toEqual(orgTransaction);
});
test('dedup signatures', () => {
const account1 = new Account();
const account2 = new Account();
const recentBlockhash = account1.publicKey.toBase58(); // Fake recentBlockhash
const transfer1 = SystemProgram.transfer(
account1.publicKey,
account2.publicKey,
123,
);
const transfer2 = SystemProgram.transfer(
account1.publicKey,
account2.publicKey,
123,
);
const orgTransaction = new Transaction({recentBlockhash}).add(
transfer1,
transfer2,
);
orgTransaction.sign(account1);
});
test('parse wire format and serialize', () => {
const keypair = nacl.sign.keyPair.fromSeed(
Uint8Array.from(Array(32).fill(8)),
);
const sender = new Account(Buffer.from(keypair.secretKey)); // Arbitrary known account
const recentBlockhash = 'EETubP5AKHgjPAhzPAFcb8BAY1hMH639CWCFTqi3hq1k'; // Arbitrary known recentBlockhash
const recipient = new PublicKey(
'J3dxNj7nDRRqRRXuEMynDG57DkZK4jYRuv3Garmb1i99',
); // Arbitrary known public key
const transfer = SystemProgram.transfer(sender.publicKey, recipient, 49);
const expectedTransaction = new Transaction({recentBlockhash}).add(transfer);
expectedTransaction.sign(sender);
const wireTransaction = Buffer.from([
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]);
const tx = Transaction.from(wireTransaction);
expect(tx).toEqual(expectedTransaction);
expect(wireTransaction).toEqual(expectedTransaction.serialize());
});
test('serialize unsigned transaction', () => {
const keypair = nacl.sign.keyPair.fromSeed(
Uint8Array.from(Array(32).fill(8)),
);
const sender = new Account(Buffer.from(keypair.secretKey)); // Arbitrary known account
const recentBlockhash = 'EETubP5AKHgjPAhzPAFcb8BAY1hMH639CWCFTqi3hq1k'; // Arbitrary known recentBlockhash
const recipient = new PublicKey(
'J3dxNj7nDRRqRRXuEMynDG57DkZK4jYRuv3Garmb1i99',
); // Arbitrary known public key
const transfer = SystemProgram.transfer(sender.publicKey, recipient, 49);
const expectedTransaction = new Transaction({recentBlockhash}).add(transfer);
const wireTransaction = Buffer.from([
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]);
expect(wireTransaction).toEqual(expectedTransaction.serialize());
const tx = Transaction.from(wireTransaction);
expect(tx).toEqual(expectedTransaction);
});