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minimal demo wip
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minimal-demo.js
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162
minimal-demo.js
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const fs = require('fs')
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const assert = require('assert')
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const { bigInt } = require('snarkjs')
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const crypto = require('crypto')
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const circomlib = require('circomlib')
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const merkleTree = require('./lib/MerkleTree')
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const Web3 = require('web3')
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const buildGroth16 = require('websnark/src/groth16')
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const websnarkUtils = require('websnark/src/utils')
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const { toWei } = require('web3-utils')
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let web3, contract, netId, circuit, proving_key, groth16
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const RPC_URL = 'http://localhost:8545'
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const CONTRACT_ADDRESS = '0x47CE0C6eD5B0Ce3d3A51fdb1C52DC66a7c3c2936'
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const MERKLE_TREE_HEIGHT = 20
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const AMOUNT = '1'
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const DEPLOYED_BLOCK = 9117609
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/** Generate random number of specified byte length */
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const rbigint = nbytes => bigInt.leBuff2int(crypto.randomBytes(nbytes))
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/** Compute pedersen hash */
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const pedersenHash = data => circomlib.babyJub.unpackPoint(circomlib.pedersenHash.hash(data))[0]
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/** BigNumber to hex string of specified length */
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const toHex = (number, length = 32) => '0x' + (number instanceof Buffer ? number.toString('hex') : bigInt(number).toString(16)).padStart(length * 2, '0')
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/**
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* Create deposit object from secret and nullifier
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*/
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function createDeposit(nullifier, secret) {
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let deposit = { nullifier, secret }
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deposit.preimage = Buffer.concat([deposit.nullifier.leInt2Buff(31), deposit.secret.leInt2Buff(31)])
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deposit.commitment = pedersenHash(deposit.preimage)
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deposit.nullifierHash = pedersenHash(deposit.nullifier.leInt2Buff(31))
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return deposit
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}
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/**
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* Make an ETH deposit
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*/
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async function deposit() {
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const deposit = createDeposit(rbigint(31), rbigint(31))
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console.log('Sending deposit transaction...')
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await contract.methods.deposit(toHex(deposit.commitment)).send({ value: toWei(AMOUNT), from: web3.eth.defaultAccount, gas:2e6 })
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return `tornado-eth-${AMOUNT}-${netId}-${toHex(deposit.preimage, 62)}`
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}
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/**
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* Do an ETH withdrawal
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* @param note Note to withdraw
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* @param recipient Recipient address
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*/
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async function withdraw(note, recipient) {
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const deposit = parseNote(note)
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const { proof, args } = await generateSnarkProof(deposit, recipient)
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console.log('Sending withdrawal transaction...')
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await contract.methods.withdraw(proof, ...args).send({ from: web3.eth.defaultAccount, gas: 1e6 })
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}
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/**
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* Parses Tornado.cash note
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* @param noteString the note
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*/
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function parseNote(noteString) {
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const noteRegex = /tornado-(?<currency>\w+)-(?<amount>[\d.]+)-(?<netId>\d+)-0x(?<note>[0-9a-fA-F]{124})/g
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const match = noteRegex.exec(noteString)
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// we are ignoring `currency`, `amount`, and `netId` for this minimal example
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const buf = Buffer.from(match.groups.note, 'hex')
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const nullifier = bigInt.leBuff2int(buf.slice(0, 31))
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const secret = bigInt.leBuff2int(buf.slice(31, 62))
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return createDeposit(nullifier, secret)
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}
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/**
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* Generate merkle tree for a deposit.
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* Download deposit events from the contract, reconstructs merkle tree, finds our deposit leaf
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* in it and generates merkle proof
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* @param deposit Deposit object
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*/
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async function generateMerkleProof(deposit) {
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console.log('Getting contract state...')
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const events = await contract.getPastEvents('Deposit', { fromBlock: DEPLOYED_BLOCK, toBlock: 'latest' })
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const leaves = events
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.sort((a, b) => a.returnValues.leafIndex - b.returnValues.leafIndex) // Sort events in chronological order
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.map(e => e.returnValues.commitment)
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const tree = new merkleTree(MERKLE_TREE_HEIGHT, leaves)
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// Find current commitment in the tree
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let depositEvent = events.find(e => e.returnValues.commitment === toHex(deposit.commitment))
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let leafIndex = depositEvent ? depositEvent.returnValues.leafIndex : -1
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// Validate that our data is correct (optional)
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const isValidRoot = await contract.methods.isKnownRoot(toHex(await tree.root())).call()
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const isSpent = await contract.methods.isSpent(toHex(deposit.nullifierHash)).call()
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assert(isValidRoot === true, 'Merkle tree is corrupted')
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assert(isSpent === false, 'The note is already spent')
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assert(leafIndex >= 0, 'The deposit is not found in the tree')
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// Compute merkle proof of our commitment
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return await tree.path(leafIndex)
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}
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/**
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* Generate SNARK proof for withdrawal
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* @param deposit Deposit object
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* @param recipient Funds recipient
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*/
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async function generateSnarkProof(deposit, recipient) {
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// Compute merkle proof of our commitment
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const { root, path_elements, path_index } = await generateMerkleProof(deposit)
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// Prepare circuit input
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const input = {
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// Public snark inputs
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root: root,
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nullifierHash: deposit.nullifierHash,
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recipient: bigInt(recipient),
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relayer: 0,
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fee: 0,
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refund: 0,
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// Private snark inputs
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nullifier: deposit.nullifier,
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secret: deposit.secret,
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pathElements: path_elements,
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pathIndices: path_index,
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}
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console.log('Generating SNARK proof...')
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const proofData = await websnarkUtils.genWitnessAndProve(groth16, input, circuit, proving_key)
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const { proof } = websnarkUtils.toSolidityInput(proofData)
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const args = [
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toHex(input.root),
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toHex(input.nullifierHash),
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toHex(input.recipient, 20),
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toHex(input.relayer, 20),
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toHex(input.fee),
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toHex(input.refund)
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]
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return { proof, args }
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}
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async function main() {
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web3 = new Web3(new Web3.providers.HttpProvider(RPC_URL, { timeout: 5 * 60 * 1000 }), null, { transactionConfirmationBlocks: 1 })
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circuit = require('./build/circuits/withdraw.json')
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proving_key = fs.readFileSync('build/circuits/withdraw_proving_key.bin').buffer
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groth16 = await buildGroth16()
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netId = await web3.eth.net.getId()
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contract = new web3.eth.Contract(require('./build/contracts/ETHTornado.json').abi, CONTRACT_ADDRESS)
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web3.eth.defaultAccount = (await web3.eth.getAccounts())[0]
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const note = await deposit()
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console.log('Deposited note:', note)
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await withdraw(note, web3.eth.defaultAccount)
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console.log('Done')
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}
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main()
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