mirror of
https://github.com/tornadocash/tornado-core.git
synced 2024-10-01 01:06:17 -04:00
466 lines
16 KiB
JavaScript
Executable File
466 lines
16 KiB
JavaScript
Executable File
#!/usr/bin/env node
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// Temporary demo client
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// Works both in browser and node.js
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const fs = require('fs')
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const axios = require('axios')
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const assert = require('assert')
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const snarkjs = require('snarkjs')
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const crypto = require('crypto')
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const circomlib = require('circomlib')
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const bigInt = snarkjs.bigInt
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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, fromWei } = require('web3-utils')
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let web3, tornado, erc20tornado, circuit, proving_key, groth16, erc20, senderAccount
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let MERKLE_TREE_HEIGHT, ETH_AMOUNT, TOKEN_AMOUNT, ERC20_TOKEN
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/** Whether we are in a browser or node.js */
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const inBrowser = (typeof window !== 'undefined')
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/** Generate random number of specified byte length */
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const rbigint = nbytes => snarkjs.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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function toHex(number, length = 32) {
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let str = number instanceof Buffer ? number.toString('hex') : bigInt(number).toString(16)
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return '0x' + str.padStart(length * 2, '0')
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}
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/** Display account balance */
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async function printBalance(account, name) {
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console.log(`${name} ETH balance is`, web3.utils.fromWei(await web3.eth.getBalance(account)))
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console.log(`${name} Token Balance is`, web3.utils.fromWei(await erc20.methods.balanceOf(account).call()))
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}
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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('Submitting deposit transaction')
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await tornado.methods.deposit(toHex(deposit.commitment)).send({ value: ETH_AMOUNT, from: senderAccount, gas:2e6 })
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const note = toHex(deposit.preimage, 62)
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console.log('Your note:', note)
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return note
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}
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/**
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* Make an ERC20 deposit
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*/
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async function depositErc20() {
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const deposit = createDeposit(rbigint(31), rbigint(31))
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if(ERC20_TOKEN === '') {
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console.log('Minting some test tokens to deposit')
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await erc20.methods.mint(senderAccount, TOKEN_AMOUNT).send({ from: senderAccount, gas: 2e6 })
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}
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console.log('Approving tokens for deposit')
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await erc20.methods.approve(erc20tornado._address, TOKEN_AMOUNT).send({ from: senderAccount, gas:1e6 })
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console.log('Submitting deposit transaction')
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await erc20tornado.methods.deposit(toHex(deposit.commitment)).send({ from: senderAccount, gas:2e6 })
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const note = toHex(deposit.preimage, 62)
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console.log('Your note:', note)
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return note
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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 contract Tornado contract address
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* @param deposit Deposit object
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*/
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async function generateMerkleProof(contract, deposit) {
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// Get all deposit events from smart contract and assemble merkle tree from them
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console.log('Getting current state from tornado contract')
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const events = await contract.getPastEvents('Deposit', { fromBlock: contract.deployedBlock, 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
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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 contract Tornado contract address
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* @param note Note string
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* @param recipient Funds recipient
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* @param relayer Relayer address
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* @param fee Relayer fee
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* @param refund Receive ether for exchanged tokens
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*/
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async function generateProof(contract, note, recipient, relayer = 0, fee = 0, refund = 0) {
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// Decode hex string and restore the deposit object
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let buf = Buffer.from(note.slice(2), 'hex')
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let deposit = createDeposit(bigInt.leBuff2int(buf.slice(0, 31)), bigInt.leBuff2int(buf.slice(31, 62)))
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// Compute merkle proof of our commitment
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const { root, path_elements, path_index } = await generateMerkleProof(contract, 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: bigInt(relayer),
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fee: bigInt(fee),
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refund: bigInt(refund),
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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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console.time('Proof time')
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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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console.timeEnd('Proof time')
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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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/**
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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 { proof, args } = await generateProof(tornado, note, recipient)
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console.log('Submitting withdraw transaction')
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await tornado.methods.withdraw(proof, ...args).send({ from: senderAccount, gas: 1e6 })
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console.log('Done')
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}
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/**
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* Do a ERC20 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 withdrawErc20(note, recipient) {
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const { proof, args } = await generateProof(erc20tornado, note, recipient)
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console.log('Submitting withdraw transaction')
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await erc20tornado.methods.withdraw(proof, ...args).send({ from: senderAccount, gas: 1e6 })
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console.log('Done')
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}
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/**
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* Do an ETH withdrawal through relay
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* @param note Note to withdraw
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* @param recipient Recipient address
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* @param relayUrl Relay url address
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*/
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async function withdrawRelay(note, recipient, relayUrl) {
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const resp = await axios.get(relayUrl + '/status')
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const { relayerAddress, netId, gasPrices } = resp.data
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assert(netId === await web3.eth.net.getId() || netId === '*', 'This relay is for different network')
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console.log('Relay address: ', relayerAddress)
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const fee = bigInt(toWei(gasPrices.fast.toString(), 'gwei')).mul(bigInt(1e6))
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const { proof, args } = await generateProof(tornado, note, recipient, relayerAddress, fee)
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console.log('Sending withdraw transaction through relay')
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const resp2 = await axios.post(relayUrl + '/relay', { contract: tornado._address, proof: { proof, publicSignals: args } })
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console.log(`Transaction submitted through relay, tx hash: ${resp2.data.txHash}`)
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let receipt = await waitForTxReceipt(resp2.data.txHash)
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console.log('Transaction mined in block', receipt.blockNumber)
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console.log('Done')
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}
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/**
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* Do a ERC20 withdrawal through relay
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* @param note Note to withdraw
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* @param recipient Recipient address
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* @param relayUrl Relay url address
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*/
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async function withdrawRelayErc20(note, recipient, relayUrl) {
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const resp = await axios.get(relayUrl + '/status')
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const { relayerAddress, netId, gasPrices, ethPriceInDai } = resp.data
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assert(netId === await web3.eth.net.getId() || netId === '*', 'This relay is for different network')
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console.log('Relay address: ', relayerAddress)
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const refund = bigInt(toWei('0.001'))
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const fee = bigInt(toWei(gasPrices.fast.toString(), 'gwei')).mul(bigInt(1e6)).add(refund).mul(bigInt(fromWei(ethPriceInDai.toString())))
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const { proof, args } = await generateProof(erc20tornado, note, recipient, relayerAddress, fee, refund)
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console.log('Sending withdraw transaction through relay')
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const resp2 = await axios.post(relayUrl + '/relay', { contract: erc20tornado._address, proof: { proof, publicSignals: args } })
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console.log(`Transaction submitted through relay, tx hash: ${resp2.data.txHash}`)
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let receipt = await waitForTxReceipt(resp2.data.txHash)
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console.log('Transaction mined in block', receipt.blockNumber)
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console.log('Done')
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}
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/**
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* Waits for transaction to be mined
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* @param txHash Hash of transaction
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* @param attempts
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* @param delay
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*/
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function waitForTxReceipt(txHash, attempts = 60, delay = 1000) {
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return new Promise((resolve, reject) => {
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const checkForTx = async (txHash, retryAttempt = 0) => {
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const result = await web3.eth.getTransactionReceipt(txHash)
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if (!result || !result.blockNumber) {
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if (retryAttempt <= attempts) {
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setTimeout(() => checkForTx(txHash, retryAttempt + 1), delay)
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} else {
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reject(new Error('tx was not mined'))
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}
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} else {
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resolve(result)
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}
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}
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checkForTx(txHash)
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})
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}
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/**
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* Init web3, contracts, and snark
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*/
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async function init() {
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let contractJson, erc20ContractJson, erc20tornadoJson
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if (inBrowser) {
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// Initialize using injected web3 (Metamask)
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// To assemble web version run `npm run browserify`
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web3 = new Web3(window.web3.currentProvider, null, { transactionConfirmationBlocks: 1 })
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contractJson = await (await fetch('build/contracts/ETHTornado.json')).json()
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circuit = await (await fetch('build/circuits/withdraw.json')).json()
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proving_key = await (await fetch('build/circuits/withdraw_proving_key.bin')).arrayBuffer()
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MERKLE_TREE_HEIGHT = 16
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ETH_AMOUNT = 1e18
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TOKEN_AMOUNT = 1e19
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} else {
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// Initialize from local node
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web3 = new Web3('http://localhost:8545', null, { transactionConfirmationBlocks: 1 })
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contractJson = require('./build/contracts/ETHTornado.json')
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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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require('dotenv').config()
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MERKLE_TREE_HEIGHT = process.env.MERKLE_TREE_HEIGHT
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ETH_AMOUNT = process.env.ETH_AMOUNT
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TOKEN_AMOUNT = process.env.TOKEN_AMOUNT
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ERC20_TOKEN = process.env.ERC20_TOKEN
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erc20ContractJson = require('./build/contracts/ERC20Mock.json')
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erc20tornadoJson = require('./build/contracts/ERC20Tornado.json')
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}
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groth16 = await buildGroth16()
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let netId = await web3.eth.net.getId()
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if (contractJson.networks[netId]) {
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const tx = await web3.eth.getTransaction(contractJson.networks[netId].transactionHash)
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tornado = new web3.eth.Contract(contractJson.abi, contractJson.networks[netId].address)
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tornado.deployedBlock = tx.blockNumber
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}
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const tx3 = await web3.eth.getTransaction(erc20tornadoJson.networks[netId].transactionHash)
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erc20tornado = new web3.eth.Contract(erc20tornadoJson.abi, erc20tornadoJson.networks[netId].address)
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erc20tornado.deployedBlock = tx3.blockNumber
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if(ERC20_TOKEN === '') {
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erc20 = new web3.eth.Contract(erc20ContractJson.abi, erc20ContractJson.networks[netId].address)
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const tx2 = await web3.eth.getTransaction(erc20ContractJson.networks[netId].transactionHash)
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erc20.deployedBlock = tx2.blockNumber
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}
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senderAccount = (await web3.eth.getAccounts())[0]
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console.log('Loaded')
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}
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// ========== CLI related stuff below ==============
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/** Print command line help */
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function printHelp(code = 0) {
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console.log(`Usage:
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Submit a deposit from default eth account and return the resulting note
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$ ./cli.js deposit
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$ ./cli.js depositErc20
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Withdraw a note to 'recipient' account
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$ ./cli.js withdraw <note> <recipient> [relayUrl]
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$ ./cli.js withdrawErc20 <note> <recipient> [relayUrl]
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Check address balance
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$ ./cli.js balance <address>
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Perform an automated test
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$ ./cli.js test
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$ ./cli.js testRelay
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Example:
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$ ./cli.js deposit
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...
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Your note: 0x1941fa999e2b4bfeec3ce53c2440c3bc991b1b84c9bb650ea19f8331baf621001e696487e2a2ee54541fa12f49498d71e24d00b1731a8ccd4f5f5126f3d9f400
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$ ./cli.js withdraw 0x1941fa999e2b4bfeec3ce53c2440c3bc991b1b84c9bb650ea19f8331baf621001e696487e2a2ee54541fa12f49498d71e24d00b1731a8ccd4f5f5126f3d9f400 0xee6249BA80596A4890D1BD84dbf5E4322eA4E7f0
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`)
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process.exit(code)
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}
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/** Process command line args and run */
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async function runConsole(args) {
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if (args.length === 0) {
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printHelp()
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} else {
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switch (args[0]) {
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case 'deposit':
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if (args.length === 1) {
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await init()
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await printBalance(tornado._address, 'Tornado')
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await printBalance(senderAccount, 'Sender account')
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await deposit()
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await printBalance(tornado._address, 'Tornado')
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await printBalance(senderAccount, 'Sender account')
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} else {
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printHelp(1)
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}
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break
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case 'depositErc20':
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if (args.length === 1) {
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await init()
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await printBalance(erc20tornado._address, 'Tornado')
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await printBalance(senderAccount, 'Sender account')
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await depositErc20()
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await printBalance(erc20tornado._address, 'Tornado')
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await printBalance(senderAccount, 'Sender account')
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} else {
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printHelp(1)
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}
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break
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case 'balance':
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if (args.length === 2 && /^0x[0-9a-fA-F]{40}$/.test(args[1])) {
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await init()
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await printBalance(args[1])
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} else {
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printHelp(1)
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}
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break
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case 'withdraw':
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if (args.length >= 3 && args.length <= 4 && /^0x[0-9a-fA-F]{124}$/.test(args[1]) && /^0x[0-9a-fA-F]{40}$/.test(args[2])) {
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await init()
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await printBalance(tornado._address, 'Tornado')
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await printBalance(args[2], 'Recipient account')
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if (args[3]) {
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await withdrawRelay(args[1], args[2], args[3])
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} else {
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await withdraw(args[1], args[2])
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}
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await printBalance(tornado._address, 'Tornado')
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await printBalance(args[2], 'Recipient account')
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} else {
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printHelp(1)
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}
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break
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case 'withdrawErc20':
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if (args.length >= 3 && args.length <= 4 && /^0x[0-9a-fA-F]{124}$/.test(args[1]) && /^0x[0-9a-fA-F]{40}$/.test(args[2])) {
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await init()
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await printBalance(erc20tornado._address, 'Tornado')
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await printBalance(args[2], 'Recipient account')
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if (args[3]) {
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await withdrawRelayErc20(args[1], args[2], args[3])
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} else {
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await withdrawErc20(args[1], args[2])
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}
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await printBalance(erc20tornado._address, 'Tornado')
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await printBalance(args[2], 'Recipient account')
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} else {
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printHelp(1)
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}
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break
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case 'test':
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if (args.length === 1) {
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await init()
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const note1 = await deposit()
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await withdraw(note1, senderAccount)
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const note2 = await depositErc20()
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await withdrawErc20(note2, senderAccount)
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} else {
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printHelp(1)
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}
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break
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case 'testRelay':
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if (args.length === 1) {
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await init()
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const note1 = await deposit()
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await withdrawRelay(note1, senderAccount, 'http://localhost:8000')
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const note2 = await depositErc20()
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await withdrawRelayErc20(note2, senderAccount, 'http://localhost:8000')
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} else {
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printHelp(1)
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}
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break
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default:
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printHelp(1)
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}
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}
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}
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if (inBrowser) {
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window.deposit = deposit
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window.depositErc20 = depositErc20
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window.withdraw = async () => {
|
|
const note = prompt('Enter the note to withdraw')
|
|
const recipient = (await web3.eth.getAccounts())[0]
|
|
await withdraw(note, recipient)
|
|
}
|
|
init()
|
|
} else {
|
|
runConsole(process.argv.slice(2))
|
|
.then(() => process.exit(0))
|
|
.catch(err => { console.log(err); process.exit(1) })
|
|
}
|