714 lines
22 KiB
Rust
714 lines
22 KiB
Rust
#![cfg(test)]
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use environment::{Environment, EnvironmentBuilder};
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use eth1::http::{get_deposit_count, get_deposit_logs_in_range, get_deposit_root, Block, Log};
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use eth1::{Config, Service};
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use eth1::{DepositCache, DepositLog};
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use eth1_test_rig::GanacheEth1Instance;
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use exit_future;
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use futures::Future;
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use merkle_proof::verify_merkle_proof;
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use std::ops::Range;
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use std::time::Duration;
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use tokio::runtime::Runtime;
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use tree_hash::TreeHash;
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use types::{DepositData, EthSpec, Hash256, Keypair, MainnetEthSpec, MinimalEthSpec, Signature};
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use web3::{transports::Http, Web3};
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const DEPOSIT_CONTRACT_TREE_DEPTH: usize = 32;
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pub fn new_env() -> Environment<MinimalEthSpec> {
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EnvironmentBuilder::minimal()
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// Use a single thread, so that when all tests are run in parallel they don't have so many
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// threads.
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.single_thread_tokio_runtime()
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.expect("should start tokio runtime")
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.null_logger()
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.expect("should start null logger")
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.build()
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.expect("should build env")
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}
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fn timeout() -> Duration {
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Duration::from_secs(2)
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}
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fn random_deposit_data() -> DepositData {
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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, &MainnetEthSpec::default_spec());
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deposit
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}
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/// Blocking operation to get the deposit logs from the `deposit_contract`.
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fn blocking_deposit_logs(
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runtime: &mut Runtime,
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eth1: &GanacheEth1Instance,
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range: Range<u64>,
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) -> Vec<Log> {
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runtime
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.block_on(get_deposit_logs_in_range(
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ð1.endpoint(),
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ð1.deposit_contract.address(),
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range,
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timeout(),
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))
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.expect("should get logs")
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}
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/// Blocking operation to get the deposit root from the `deposit_contract`.
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fn blocking_deposit_root(
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runtime: &mut Runtime,
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eth1: &GanacheEth1Instance,
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block_number: u64,
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) -> Option<Hash256> {
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runtime
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.block_on(get_deposit_root(
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ð1.endpoint(),
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ð1.deposit_contract.address(),
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block_number,
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timeout(),
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))
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.expect("should get deposit root")
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}
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/// Blocking operation to get the deposit count from the `deposit_contract`.
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fn blocking_deposit_count(
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runtime: &mut Runtime,
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eth1: &GanacheEth1Instance,
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block_number: u64,
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) -> Option<u64> {
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runtime
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.block_on(get_deposit_count(
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ð1.endpoint(),
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ð1.deposit_contract.address(),
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block_number,
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timeout(),
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))
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.expect("should get deposit count")
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}
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fn get_block_number(runtime: &mut Runtime, web3: &Web3<Http>) -> u64 {
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runtime
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.block_on(web3.eth().block_number().map(|v| v.as_u64()))
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.expect("should get block number")
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}
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mod auto_update {
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use super::*;
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#[test]
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fn can_auto_update() {
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let mut env = new_env();
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let log = env.core_context().log;
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let runtime = env.runtime();
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let now = get_block_number(runtime, &web3);
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let service = Service::new(
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Config {
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endpoint: eth1.endpoint(),
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deposit_contract_address: deposit_contract.address(),
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deposit_contract_deploy_block: now,
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lowest_cached_block_number: now,
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follow_distance: 0,
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block_cache_truncation: None,
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..Config::default()
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},
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log,
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);
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// NOTE: this test is sensitive to the response speed of the external web3 server. If
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// you're experiencing failures, try increasing the update_interval.
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let update_interval = Duration::from_millis(2_000);
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assert_eq!(
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service.block_cache_len(),
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0,
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"should have imported no blocks"
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);
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assert_eq!(
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service.deposit_cache_len(),
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0,
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"should have imported no deposits"
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);
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let (_exit, signal) = exit_future::signal();
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runtime.executor().spawn(service.auto_update(signal));
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let n = 4;
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for _ in 0..n {
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deposit_contract
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.deposit(runtime, random_deposit_data())
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.expect("should do first deposits");
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}
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std::thread::sleep(update_interval * 5);
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assert!(
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service.deposit_cache_len() >= n,
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"should have imported n deposits"
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);
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for _ in 0..n {
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deposit_contract
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.deposit(runtime, random_deposit_data())
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.expect("should do second deposits");
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}
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std::thread::sleep(update_interval * 4);
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assert!(
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service.block_cache_len() >= n * 2,
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"should have imported all blocks"
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);
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assert!(
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service.deposit_cache_len() >= n * 2,
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"should have imported all deposits, not {}",
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service.deposit_cache_len()
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);
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}
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}
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mod eth1_cache {
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use super::*;
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#[test]
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fn simple_scenario() {
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let mut env = new_env();
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let log = env.core_context().log;
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let runtime = env.runtime();
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for follow_distance in 0..2 {
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let initial_block_number = get_block_number(runtime, &web3);
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let service = Service::new(
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Config {
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endpoint: eth1.endpoint(),
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deposit_contract_address: deposit_contract.address(),
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lowest_cached_block_number: initial_block_number,
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follow_distance,
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..Config::default()
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},
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log.clone(),
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);
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// Create some blocks and then consume them, performing the test `rounds` times.
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for round in 0..2 {
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let blocks = 4;
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let initial = if round == 0 {
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initial_block_number
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} else {
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service
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.blocks()
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.read()
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.highest_block_number()
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.map(|n| n + follow_distance)
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.expect("should have a latest block after the first round")
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};
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for _ in 0..blocks {
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runtime
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.block_on(eth1.ganache.evm_mine())
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.expect("should mine block");
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}
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runtime
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.block_on(service.update_block_cache())
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.expect("should update cache");
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runtime
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.block_on(service.update_block_cache())
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.expect("should update cache when nothing has changed");
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assert_eq!(
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service
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.blocks()
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.read()
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.highest_block_number()
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.map(|n| n + follow_distance),
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Some(initial + blocks),
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"should update {} blocks in round {} (follow {})",
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blocks,
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round,
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follow_distance,
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);
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}
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}
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}
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/// Tests the case where we attempt to download more blocks than will fit in the cache.
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#[test]
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fn big_skip() {
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let mut env = new_env();
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let log = env.core_context().log;
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let runtime = env.runtime();
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let cache_len = 4;
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let service = Service::new(
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Config {
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endpoint: eth1.endpoint(),
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deposit_contract_address: deposit_contract.address(),
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lowest_cached_block_number: get_block_number(runtime, &web3),
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follow_distance: 0,
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block_cache_truncation: Some(cache_len),
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..Config::default()
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},
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log,
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);
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let blocks = cache_len * 2;
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for _ in 0..blocks {
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runtime
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.block_on(eth1.ganache.evm_mine())
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.expect("should mine block")
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}
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runtime
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.block_on(service.update_block_cache())
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.expect("should update cache");
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assert_eq!(
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service.block_cache_len(),
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cache_len,
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"should not grow cache beyond target"
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);
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}
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/// Tests to ensure that the cache gets pruned when doing multiple downloads smaller than the
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/// cache size.
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#[test]
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fn pruning() {
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let mut env = new_env();
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let log = env.core_context().log;
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let runtime = env.runtime();
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let cache_len = 4;
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let service = Service::new(
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Config {
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endpoint: eth1.endpoint(),
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deposit_contract_address: deposit_contract.address(),
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lowest_cached_block_number: get_block_number(runtime, &web3),
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follow_distance: 0,
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block_cache_truncation: Some(cache_len),
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..Config::default()
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},
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log,
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);
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for _ in 0..4 {
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for _ in 0..cache_len / 2 {
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runtime
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.block_on(eth1.ganache.evm_mine())
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.expect("should mine block")
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}
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runtime
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.block_on(service.update_block_cache())
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.expect("should update cache");
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}
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assert_eq!(
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service.block_cache_len(),
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cache_len,
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"should not grow cache beyond target"
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);
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}
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#[test]
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fn double_update() {
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let mut env = new_env();
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let log = env.core_context().log;
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let runtime = env.runtime();
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let n = 16;
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let service = Service::new(
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Config {
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endpoint: eth1.endpoint(),
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deposit_contract_address: deposit_contract.address(),
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lowest_cached_block_number: get_block_number(runtime, &web3),
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follow_distance: 0,
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..Config::default()
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},
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log,
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);
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for _ in 0..n {
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runtime
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.block_on(eth1.ganache.evm_mine())
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.expect("should mine block")
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}
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runtime
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.block_on(
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service
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.update_block_cache()
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.join(service.update_block_cache()),
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)
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.expect("should perform two simultaneous updates");
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assert!(service.block_cache_len() >= n, "should grow the cache");
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}
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}
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mod deposit_tree {
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use super::*;
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#[test]
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fn updating() {
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let mut env = new_env();
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let log = env.core_context().log;
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let runtime = env.runtime();
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let n = 4;
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let start_block = get_block_number(runtime, &web3);
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let service = Service::new(
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Config {
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endpoint: eth1.endpoint(),
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deposit_contract_address: deposit_contract.address(),
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deposit_contract_deploy_block: start_block,
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follow_distance: 0,
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..Config::default()
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},
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log,
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);
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for round in 0..3 {
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let deposits: Vec<_> = (0..n).into_iter().map(|_| random_deposit_data()).collect();
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for deposit in &deposits {
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deposit_contract
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.deposit(runtime, deposit.clone())
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.expect("should perform a deposit");
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}
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runtime
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.block_on(service.update_deposit_cache())
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.expect("should perform update");
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runtime
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.block_on(service.update_deposit_cache())
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.expect("should perform update when nothing has changed");
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let first = n * round;
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let last = n * (round + 1);
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let (_root, local_deposits) = service
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.deposits()
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.read()
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.cache
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.get_deposits(first..last, last, 32)
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.expect(&format!("should get deposits in round {}", round));
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assert_eq!(
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local_deposits.len(),
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n as usize,
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"should get the right number of deposits in round {}",
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round
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);
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assert_eq!(
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local_deposits
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.iter()
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.map(|d| d.data.clone())
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.collect::<Vec<_>>(),
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deposits.to_vec(),
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"obtained deposits should match those submitted in round {}",
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round
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);
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}
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}
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#[test]
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fn double_update() {
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let mut env = new_env();
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let log = env.core_context().log;
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let runtime = env.runtime();
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let n = 8;
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let start_block = get_block_number(runtime, &web3);
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let service = Service::new(
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Config {
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endpoint: eth1.endpoint(),
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deposit_contract_address: deposit_contract.address(),
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deposit_contract_deploy_block: start_block,
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lowest_cached_block_number: start_block,
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follow_distance: 0,
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..Config::default()
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},
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log,
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);
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let deposits: Vec<_> = (0..n).into_iter().map(|_| random_deposit_data()).collect();
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for deposit in &deposits {
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deposit_contract
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.deposit(runtime, deposit.clone())
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.expect("should perform a deposit");
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}
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runtime
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.block_on(
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service
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.update_deposit_cache()
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.join(service.update_deposit_cache()),
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)
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.expect("should perform two updates concurrently");
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assert_eq!(service.deposit_cache_len(), n);
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}
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#[test]
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fn cache_consistency() {
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let mut env = new_env();
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let runtime = env.runtime();
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let n = 8;
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let deposits: Vec<_> = (0..n).into_iter().map(|_| random_deposit_data()).collect();
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let eth1 = runtime
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.block_on(GanacheEth1Instance::new())
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.expect("should start eth1 environment");
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let deposit_contract = ð1.deposit_contract;
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let web3 = eth1.web3();
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let mut deposit_roots = vec![];
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let mut deposit_counts = vec![];
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// Perform deposits to the smart contract, recording it's state along the way.
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for deposit in &deposits {
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deposit_contract
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.deposit(runtime, deposit.clone())
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.expect("should perform a deposit");
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let block_number = get_block_number(runtime, &web3);
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deposit_roots.push(
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blocking_deposit_root(runtime, ð1, block_number)
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.expect("should get root if contract exists"),
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);
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deposit_counts.push(
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blocking_deposit_count(runtime, ð1, block_number)
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.expect("should get count if contract exists"),
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);
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}
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let mut tree = DepositCache::default();
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// Pull all the deposit logs from the contract.
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let block_number = get_block_number(runtime, &web3);
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let logs: Vec<_> = blocking_deposit_logs(runtime, ð1, 0..block_number)
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.iter()
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.map(|raw| DepositLog::from_log(raw).expect("should parse deposit log"))
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.inspect(|log| {
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tree.insert_log(log.clone())
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.expect("should add consecutive logs")
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})
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.collect();
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// Check the logs for invariants.
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for i in 0..logs.len() {
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let log = &logs[i];
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assert_eq!(
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log.deposit_data, deposits[i],
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"log {} should have correct deposit data",
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i
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);
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assert_eq!(log.index, i as u64, "log {} should have correct index", i);
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}
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// For each deposit test some more invariants
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for i in 0..n {
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// Ensure the deposit count from the smart contract was as expected.
|
|
assert_eq!(
|
|
deposit_counts[i],
|
|
i as u64 + 1,
|
|
"deposit count should be accurate"
|
|
);
|
|
|
|
// Ensure that the root from the deposit tree matches what the contract reported.
|
|
let (root, deposits) = tree
|
|
.get_deposits(0..i as u64, deposit_counts[i], DEPOSIT_CONTRACT_TREE_DEPTH)
|
|
.expect("should get deposits");
|
|
assert_eq!(
|
|
root, deposit_roots[i],
|
|
"tree deposit root {} should match the contract",
|
|
i
|
|
);
|
|
|
|
// Ensure that the deposits all prove into the root from the smart contract.
|
|
let deposit_root = deposit_roots[i];
|
|
for (j, deposit) in deposits.iter().enumerate() {
|
|
assert!(
|
|
verify_merkle_proof(
|
|
Hash256::from_slice(&deposit.data.tree_hash_root()),
|
|
&deposit.proof,
|
|
DEPOSIT_CONTRACT_TREE_DEPTH + 1,
|
|
j,
|
|
deposit_root
|
|
),
|
|
"deposit merkle proof should prove into deposit contract root"
|
|
)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Tests for the base HTTP requests and response handlers.
|
|
mod http {
|
|
use super::*;
|
|
|
|
fn get_block(runtime: &mut Runtime, eth1: &GanacheEth1Instance, block_number: u64) -> Block {
|
|
runtime
|
|
.block_on(eth1::http::get_block(
|
|
ð1.endpoint(),
|
|
block_number,
|
|
timeout(),
|
|
))
|
|
.expect("should get block number")
|
|
}
|
|
|
|
#[test]
|
|
fn incrementing_deposits() {
|
|
let mut env = new_env();
|
|
let runtime = env.runtime();
|
|
|
|
let eth1 = runtime
|
|
.block_on(GanacheEth1Instance::new())
|
|
.expect("should start eth1 environment");
|
|
let deposit_contract = ð1.deposit_contract;
|
|
let web3 = eth1.web3();
|
|
|
|
let block_number = get_block_number(runtime, &web3);
|
|
let logs = blocking_deposit_logs(runtime, ð1, 0..block_number);
|
|
assert_eq!(logs.len(), 0);
|
|
|
|
let mut old_root = blocking_deposit_root(runtime, ð1, block_number);
|
|
let mut old_block = get_block(runtime, ð1, block_number);
|
|
let mut old_block_number = block_number;
|
|
|
|
assert_eq!(
|
|
blocking_deposit_count(runtime, ð1, block_number),
|
|
Some(0),
|
|
"should have deposit count zero"
|
|
);
|
|
|
|
for i in 1..=8 {
|
|
runtime
|
|
.block_on(eth1.ganache.increase_time(1))
|
|
.expect("should be able to increase time on ganache");
|
|
|
|
deposit_contract
|
|
.deposit(runtime, random_deposit_data())
|
|
.expect("should perform a deposit");
|
|
|
|
// Check the logs.
|
|
let block_number = get_block_number(runtime, &web3);
|
|
let logs = blocking_deposit_logs(runtime, ð1, 0..block_number);
|
|
assert_eq!(logs.len(), i, "the number of logs should be as expected");
|
|
|
|
// Check the deposit count.
|
|
assert_eq!(
|
|
blocking_deposit_count(runtime, ð1, block_number),
|
|
Some(i as u64),
|
|
"should have a correct deposit count"
|
|
);
|
|
|
|
// Check the deposit root.
|
|
let new_root = blocking_deposit_root(runtime, ð1, block_number);
|
|
assert_ne!(
|
|
new_root, old_root,
|
|
"deposit root should change with each deposit"
|
|
);
|
|
old_root = new_root;
|
|
|
|
// Check the block hash.
|
|
let new_block = get_block(runtime, ð1, block_number);
|
|
assert_ne!(
|
|
new_block.hash, old_block.hash,
|
|
"block hash should change with each deposit"
|
|
);
|
|
|
|
// Check to ensure the timestamp is increasing
|
|
assert!(
|
|
old_block.timestamp <= new_block.timestamp,
|
|
"block timestamp should increase"
|
|
);
|
|
|
|
old_block = new_block.clone();
|
|
|
|
// Check the block number.
|
|
assert!(
|
|
block_number > old_block_number,
|
|
"block number should increase"
|
|
);
|
|
old_block_number = block_number;
|
|
|
|
// Check to ensure the block root is changing
|
|
assert_ne!(
|
|
new_root,
|
|
Some(new_block.hash),
|
|
"the deposit root should be different to the block hash"
|
|
);
|
|
}
|
|
}
|
|
}
|