mirror of
https://github.com/tornadocash/tornado-nova
synced 2024-02-02 14:53:56 +01:00
161 lines
6.0 KiB
JavaScript
161 lines
6.0 KiB
JavaScript
/* global ethers */
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const { expect, should } = require('chai')
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should()
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const { poseidonHash2, toFixedHex, takeSnapshot, revertSnapshot } = require('../src/utils')
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const Utxo = require('../src/utxo')
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const MERKLE_TREE_HEIGHT = 5
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const MerkleTree = require('fixed-merkle-tree')
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const { transaction, registerAndTransact } = require('../src/index')
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const { Keypair } = require('../src/keypair')
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describe('TornadoPool', () => {
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let snapshotId, tornadoPool, sender
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/* prettier-ignore */
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before(async function () {
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;[sender] = await ethers.getSigners()
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const Verifier2 = await ethers.getContractFactory('Verifier2')
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const verifier2 = await Verifier2.deploy()
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await verifier2.deployed()
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const Verifier16 = await ethers.getContractFactory('Verifier16')
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const verifier16 = await Verifier16.deploy()
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await verifier16.deployed()
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const tree = new MerkleTree(MERKLE_TREE_HEIGHT, [], { hashFunction: poseidonHash2 })
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const root = await tree.root()
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const Pool = await ethers.getContractFactory('TornadoPool')
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tornadoPool = await Pool.deploy(verifier2.address, verifier16.address, toFixedHex(root))
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snapshotId = await takeSnapshot()
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})
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it('encrypt -> decrypt should work', () => {
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const data = Buffer.from([0xff, 0xaa, 0x00, 0x01])
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const keypair = new Keypair()
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const ciphertext = keypair.encrypt(data)
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const result = keypair.decrypt(ciphertext)
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expect(result).to.be.deep.equal(data)
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})
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it('should register and deposit', async function () {
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// Alice deposits into tornado pool
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const aliceDepositAmount = 1e7
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const aliceDepositUtxo = new Utxo({ amount: aliceDepositAmount })
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const backupAccount = new Keypair()
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const bufferPrivateKey = Buffer.from(aliceDepositUtxo.keypair.privkey)
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const packedPrivateKeyData = backupAccount.encrypt(bufferPrivateKey)
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tornadoPool = tornadoPool.connect(sender)
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await registerAndTransact({
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tornadoPool,
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packedPrivateKeyData,
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outputs: [aliceDepositUtxo],
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poolAddress: aliceDepositUtxo.keypair.address(),
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})
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const filter = tornadoPool.filters.NewCommitment()
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const fromBlock = await ethers.provider.getBlock()
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const events = await tornadoPool.queryFilter(filter, fromBlock.number)
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let aliceReceiveUtxo
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try {
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aliceReceiveUtxo = Utxo.decrypt(
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aliceDepositUtxo.keypair,
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events[0].args.encryptedOutput,
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events[0].args.index,
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)
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} catch (e) {
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// we try to decrypt another output here because it shuffles outputs before sending to blockchain
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aliceReceiveUtxo = Utxo.decrypt(
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aliceDepositUtxo.keypair,
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events[1].args.encryptedOutput,
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events[1].args.index,
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)
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}
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expect(aliceReceiveUtxo.amount).to.be.equal(aliceDepositAmount)
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const filterRegister = tornadoPool.filters.PublicKey(sender.address)
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const filterFromBlock = await ethers.provider.getBlock()
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const registerEvents = await tornadoPool.queryFilter(filterRegister, filterFromBlock.number)
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const [registerEvent] = registerEvents.sort((a, b) => a.blockNumber - b.blockNumber).slice(-1)
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expect(registerEvent.args.key).to.be.equal(aliceDepositUtxo.keypair.address())
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const accountFilter = tornadoPool.filters.EncryptedAccount(sender.address)
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const accountFromBlock = await ethers.provider.getBlock()
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const accountEvents = await tornadoPool.queryFilter(accountFilter, accountFromBlock.number)
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const [accountEvent] = accountEvents.sort((a, b) => a.blockNumber - b.blockNumber).slice(-1)
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const privateKey = backupAccount.decrypt(accountEvent.args.account)
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expect(bufferPrivateKey.toString('hex')).to.be.equal(privateKey.toString('hex'))
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})
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it('should deposit, transact and withdraw', async function () {
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// Alice deposits into tornado pool
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const aliceDepositAmount = 1e7
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const aliceDepositUtxo = new Utxo({ amount: aliceDepositAmount })
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await transaction({ tornadoPool, outputs: [aliceDepositUtxo] })
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// Bob gives Alice address to send some eth inside the shielded pool
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const bobKeypair = new Keypair() // contains private and public keys
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const bobAddress = bobKeypair.address() // contains only public key
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// Alice sends some funds to Bob
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const bobSendAmount = 3e6
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const bobSendUtxo = new Utxo({ amount: bobSendAmount, keypair: Keypair.fromString(bobAddress) })
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const aliceChangeUtxo = new Utxo({
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amount: aliceDepositAmount - bobSendAmount,
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keypair: aliceDepositUtxo.keypair,
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})
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await transaction({ tornadoPool, inputs: [aliceDepositUtxo], outputs: [bobSendUtxo, aliceChangeUtxo] })
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// Bob parses chain to detect incoming funds
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const filter = tornadoPool.filters.NewCommitment()
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const fromBlock = await ethers.provider.getBlock()
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const events = await tornadoPool.queryFilter(filter, fromBlock.number)
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let bobReceiveUtxo
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try {
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bobReceiveUtxo = Utxo.decrypt(bobKeypair, events[0].args.encryptedOutput, events[0].args.index)
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} catch (e) {
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// we try to decrypt another output here because it shuffles outputs before sending to blockchain
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bobReceiveUtxo = Utxo.decrypt(bobKeypair, events[1].args.encryptedOutput, events[1].args.index)
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}
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expect(bobReceiveUtxo.amount).to.be.equal(bobSendAmount)
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// Bob withdraws a part of his funds from the shielded pool
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const bobWithdrawAmount = 2e6
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const bobEthAddress = '0xDeaD00000000000000000000000000000000BEEf'
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const bobChangeUtxo = new Utxo({ amount: bobSendAmount - bobWithdrawAmount, keypair: bobKeypair })
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await transaction({
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tornadoPool,
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inputs: [bobReceiveUtxo],
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outputs: [bobChangeUtxo],
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recipient: bobEthAddress,
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})
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const bobBalance = await ethers.provider.getBalance(bobEthAddress)
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expect(bobBalance).to.be.equal(bobWithdrawAmount)
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})
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it('should work with 16 inputs', async function () {
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await transaction({ tornadoPool, inputs: [new Utxo(), new Utxo(), new Utxo()] })
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})
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afterEach(async () => {
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await revertSnapshot(snapshotId)
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snapshotId = await takeSnapshot()
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})
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})
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