4331834003
* Move tests -> testing * Directory restructure * Update Cargo.toml during restructure * Update Makefile during restructure * Fix arbitrary path
299 lines
9.4 KiB
Rust
299 lines
9.4 KiB
Rust
//! Provides utilities for deploying and manipulating the eth2 deposit contract on the eth1 chain.
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//!
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//! Presently used with [`ganache-cli`](https://github.com/trufflesuite/ganache-cli) to simulate
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//! the deposit contract for testing beacon node eth1 integration.
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//!
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//! Not tested to work with actual clients (e.g., geth). It should work fine, however there may be
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//! some initial issues.
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mod ganache;
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use deposit_contract::{
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encode_eth1_tx_data, testnet, ABI, BYTECODE, CONTRACT_DEPLOY_GAS, DEPOSIT_GAS,
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};
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use futures::compat::Future01CompatExt;
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use ganache::GanacheInstance;
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use std::time::Duration;
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use tokio::time::delay_for;
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use types::DepositData;
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use types::{test_utils::generate_deterministic_keypair, EthSpec, Hash256, Keypair, Signature};
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use web3::contract::{Contract, Options};
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use web3::transports::Http;
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use web3::types::{Address, TransactionRequest, U256};
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use web3::Web3;
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pub const DEPLOYER_ACCOUNTS_INDEX: usize = 0;
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pub const DEPOSIT_ACCOUNTS_INDEX: usize = 0;
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/// Provides a dedicated ganache-cli instance with the deposit contract already deployed.
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pub struct GanacheEth1Instance {
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pub ganache: GanacheInstance,
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pub deposit_contract: DepositContract,
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}
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impl GanacheEth1Instance {
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pub async fn new() -> Result<Self, String> {
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let ganache = GanacheInstance::new()?;
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DepositContract::deploy(ganache.web3.clone(), 0, None)
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.await
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.map(|deposit_contract| Self {
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ganache,
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deposit_contract,
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})
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}
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pub fn endpoint(&self) -> String {
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self.ganache.endpoint()
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}
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pub fn web3(&self) -> Web3<Http> {
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self.ganache.web3.clone()
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}
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}
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/// Deploys and provides functions for the eth2 deposit contract, deployed on the eth1 chain.
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#[derive(Clone, Debug)]
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pub struct DepositContract {
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web3: Web3<Http>,
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contract: Contract<Http>,
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}
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impl DepositContract {
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pub async fn deploy(
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web3: Web3<Http>,
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confirmations: usize,
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password: Option<String>,
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) -> Result<Self, String> {
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Self::deploy_bytecode(web3, confirmations, BYTECODE, ABI, password).await
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}
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pub async fn deploy_testnet(
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web3: Web3<Http>,
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confirmations: usize,
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password: Option<String>,
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) -> Result<Self, String> {
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Self::deploy_bytecode(
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web3,
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confirmations,
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testnet::BYTECODE,
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testnet::ABI,
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password,
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)
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.await
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}
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async fn deploy_bytecode(
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web3: Web3<Http>,
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confirmations: usize,
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bytecode: &[u8],
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abi: &[u8],
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password: Option<String>,
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) -> Result<Self, String> {
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let address = deploy_deposit_contract(
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web3.clone(),
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confirmations,
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bytecode.to_vec(),
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abi.to_vec(),
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password,
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)
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.await
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.map_err(|e| {
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format!(
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"Failed to deploy contract: {}. Is scripts/ganache_tests_node.sh running?.",
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e
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)
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})?;
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Contract::from_json(web3.clone().eth(), address, ABI)
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.map_err(|e| format!("Failed to init contract: {:?}", e))
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.map(move |contract| Self { contract, web3 })
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}
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/// The deposit contract's address in `0x00ab...` format.
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pub fn address(&self) -> String {
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format!("0x{:x}", self.contract.address())
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}
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/// A helper to return a fully-formed `DepositData`. Does not submit the deposit data to the
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/// smart contact.
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pub fn deposit_helper<E: EthSpec>(
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&self,
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keypair: Keypair,
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withdrawal_credentials: Hash256,
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amount: u64,
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) -> DepositData {
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let mut deposit = DepositData {
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pubkey: keypair.pk.into(),
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withdrawal_credentials,
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amount,
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signature: Signature::empty_signature().into(),
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};
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deposit.signature = deposit.create_signature(&keypair.sk, &E::default_spec());
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deposit
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}
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/// Creates a random, valid deposit and submits it to the deposit contract.
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///
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/// The keypairs are created randomly and destroyed.
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pub async fn deposit_random<E: EthSpec>(&self) -> Result<(), String> {
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let keypair = Keypair::random();
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let mut deposit = DepositData {
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pubkey: keypair.pk.into(),
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withdrawal_credentials: Hash256::zero(),
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amount: 32_000_000_000,
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signature: Signature::empty_signature().into(),
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};
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deposit.signature = deposit.create_signature(&keypair.sk, &E::default_spec());
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self.deposit(deposit).await
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}
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/// Perfoms a blocking deposit.
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pub async fn deposit(&self, deposit_data: DepositData) -> Result<(), String> {
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self.deposit_async(deposit_data)
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.await
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.map_err(|e| format!("Deposit failed: {:?}", e))
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}
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pub async fn deposit_deterministic_async<E: EthSpec>(
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&self,
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keypair_index: usize,
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amount: u64,
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) -> Result<(), String> {
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let keypair = generate_deterministic_keypair(keypair_index);
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let mut deposit = DepositData {
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pubkey: keypair.pk.into(),
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withdrawal_credentials: Hash256::zero(),
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amount,
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signature: Signature::empty_signature().into(),
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};
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deposit.signature = deposit.create_signature(&keypair.sk, &E::default_spec());
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self.deposit_async(deposit).await
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}
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/// Performs a non-blocking deposit.
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pub async fn deposit_async(&self, deposit_data: DepositData) -> Result<(), String> {
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let from = self
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.web3
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.eth()
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.accounts()
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.compat()
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.await
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.map_err(|e| format!("Failed to get accounts: {:?}", e))
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.and_then(|accounts| {
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accounts
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.get(DEPOSIT_ACCOUNTS_INDEX)
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.cloned()
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.ok_or_else(|| "Insufficient accounts for deposit".to_string())
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})?;
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let tx_request = TransactionRequest {
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from,
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to: Some(self.contract.address()),
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gas: Some(U256::from(DEPOSIT_GAS)),
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gas_price: None,
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value: Some(from_gwei(deposit_data.amount)),
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// Note: the reason we use this `TransactionRequest` instead of just using the
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// function in `self.contract` is so that the `eth1_tx_data` function gets used
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// during testing.
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//
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// It's important that `eth1_tx_data` stays correct and does not suffer from
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// code-rot.
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data: encode_eth1_tx_data(&deposit_data).map(Into::into).ok(),
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nonce: None,
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condition: None,
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};
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self.web3
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.eth()
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.send_transaction(tx_request)
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.compat()
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.await
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.map_err(|e| format!("Failed to call deposit fn: {:?}", e))?;
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Ok(())
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}
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/// Peforms many deposits, each preceded by a delay.
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pub async fn deposit_multiple(&self, deposits: Vec<DelayThenDeposit>) -> Result<(), String> {
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for deposit in deposits.into_iter() {
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delay_for(deposit.delay).await;
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self.deposit_async(deposit.deposit).await?;
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}
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Ok(())
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}
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}
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/// Describes a deposit and a delay that should should precede it's submission to the deposit
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/// contract.
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#[derive(Clone)]
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pub struct DelayThenDeposit {
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/// Wait this duration ...
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pub delay: Duration,
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/// ... then submit this deposit.
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pub deposit: DepositData,
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}
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fn from_gwei(gwei: u64) -> U256 {
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U256::from(gwei) * U256::exp10(9)
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}
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/// Deploys the deposit contract to the given web3 instance using the account with index
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/// `DEPLOYER_ACCOUNTS_INDEX`.
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async fn deploy_deposit_contract(
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web3: Web3<Http>,
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confirmations: usize,
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bytecode: Vec<u8>,
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abi: Vec<u8>,
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password_opt: Option<String>,
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) -> Result<Address, String> {
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let bytecode = String::from_utf8(bytecode).expect("bytecode must be valid utf8");
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let from_address = web3
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.eth()
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.accounts()
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.compat()
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.await
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.map_err(|e| format!("Failed to get accounts: {:?}", e))
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.and_then(|accounts| {
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accounts
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.get(DEPLOYER_ACCOUNTS_INDEX)
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.cloned()
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.ok_or_else(|| "Insufficient accounts for deployer".to_string())
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})?;
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let deploy_address = if let Some(password) = password_opt {
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let result = web3
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.personal()
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.unlock_account(from_address, &password, None)
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.compat()
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.await;
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match result {
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Ok(true) => return Ok(from_address),
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Ok(false) => return Err("Eth1 node refused to unlock account".to_string()),
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Err(e) => return Err(format!("Eth1 unlock request failed: {:?}", e)),
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};
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} else {
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from_address
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};
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let pending_contract = Contract::deploy(web3.eth(), &abi)
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.map_err(|e| format!("Unable to build contract deployer: {:?}", e))?
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.confirmations(confirmations)
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.options(Options {
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gas: Some(U256::from(CONTRACT_DEPLOY_GAS)),
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..Options::default()
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})
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.execute(bytecode, (), deploy_address)
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.map_err(|e| format!("Failed to execute deployment: {:?}", e))?;
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pending_contract
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.compat()
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.await
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.map(|contract| contract.address())
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.map_err(|e| format!("Unable to resolve pending contract: {:?}", e))
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}
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