238 lines
8.1 KiB
Rust
238 lines
8.1 KiB
Rust
//! The `compute_leader_confirmation_service` module implements the tools necessary
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//! to generate a thread which regularly calculates the last confirmation times
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//! observed by the leader
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use crate::bank::Bank;
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use crate::service::Service;
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use solana_metrics::{influxdb, submit};
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use solana_sdk::pubkey::Pubkey;
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use solana_sdk::timing;
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use solana_sdk::vote_program::{self, VoteProgram};
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use std::result;
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use std::sync::atomic::{AtomicBool, Ordering};
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use std::sync::Arc;
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use std::thread::sleep;
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use std::thread::{self, Builder, JoinHandle};
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use std::time::Duration;
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#[derive(Debug, PartialEq, Eq)]
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pub enum ConfirmationError {
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NoValidSupermajority,
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}
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pub const COMPUTE_CONFIRMATION_MS: u64 = 100;
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pub struct ComputeLeaderConfirmationService {
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compute_confirmation_thread: JoinHandle<()>,
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}
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impl ComputeLeaderConfirmationService {
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fn get_last_supermajority_timestamp(
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bank: &Arc<Bank>,
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leader_id: Pubkey,
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now: u64,
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last_valid_validator_timestamp: u64,
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) -> result::Result<u64, ConfirmationError> {
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let mut total_stake = 0;
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// Hold an accounts_db read lock as briefly as possible, just long enough to collect all
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// the vote states
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let vote_states: Vec<VoteProgram> = bank
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.accounts
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.accounts_db
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.read()
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.unwrap()
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.accounts
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.values()
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.filter_map(|account| {
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if vote_program::check_id(&account.owner) {
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if let Ok(vote_state) = VoteProgram::deserialize(&account.userdata) {
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if leader_id != vote_state.node_id {
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return Some(vote_state);
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}
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}
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}
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None
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})
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.collect();
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let mut ticks_and_stakes: Vec<(u64, u64)> = vote_states
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.iter()
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.filter_map(|vote_state| {
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let validator_stake = bank.get_balance(&vote_state.node_id);
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total_stake += validator_stake;
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// Filter out any validators that don't have at least one vote
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// by returning None
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vote_state
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.votes
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.back()
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.map(|vote| (vote.tick_height, validator_stake))
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})
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.collect();
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let super_majority_stake = (2 * total_stake) / 3;
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if let Some(last_valid_validator_timestamp) =
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bank.get_confirmation_timestamp(&mut ticks_and_stakes, super_majority_stake)
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{
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return Ok(last_valid_validator_timestamp);
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}
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if last_valid_validator_timestamp != 0 {
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submit(
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influxdb::Point::new(&"leader-confirmation")
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.add_field(
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"duration_ms",
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influxdb::Value::Integer((now - last_valid_validator_timestamp) as i64),
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)
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.to_owned(),
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);
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}
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Err(ConfirmationError::NoValidSupermajority)
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}
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pub fn compute_confirmation(
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bank: &Arc<Bank>,
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leader_id: Pubkey,
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last_valid_validator_timestamp: &mut u64,
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) {
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let now = timing::timestamp();
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if let Ok(super_majority_timestamp) = Self::get_last_supermajority_timestamp(
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bank,
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leader_id,
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now,
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*last_valid_validator_timestamp,
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) {
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let confirmation_ms = now - super_majority_timestamp;
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*last_valid_validator_timestamp = super_majority_timestamp;
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bank.set_confirmation_time((now - *last_valid_validator_timestamp) as usize);
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submit(
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influxdb::Point::new(&"leader-confirmation")
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.add_field(
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"duration_ms",
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influxdb::Value::Integer(confirmation_ms as i64),
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)
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.to_owned(),
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);
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}
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}
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/// Create a new ComputeLeaderConfirmationService for computing confirmation.
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pub fn new(bank: Arc<Bank>, leader_id: Pubkey, exit: Arc<AtomicBool>) -> Self {
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let compute_confirmation_thread = Builder::new()
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.name("solana-leader-confirmation-stage".to_string())
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.spawn(move || {
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let mut last_valid_validator_timestamp = 0;
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loop {
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if exit.load(Ordering::Relaxed) {
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break;
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}
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Self::compute_confirmation(
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&bank,
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leader_id,
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&mut last_valid_validator_timestamp,
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);
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sleep(Duration::from_millis(COMPUTE_CONFIRMATION_MS));
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}
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})
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.unwrap();
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(ComputeLeaderConfirmationService {
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compute_confirmation_thread,
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})
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}
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}
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impl Service for ComputeLeaderConfirmationService {
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type JoinReturnType = ();
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fn join(self) -> thread::Result<()> {
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self.compute_confirmation_thread.join()
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}
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}
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#[cfg(test)]
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pub mod tests {
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use crate::bank::Bank;
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use crate::compute_leader_confirmation_service::ComputeLeaderConfirmationService;
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use crate::voting_keypair::VotingKeypair;
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use crate::genesis_block::GenesisBlock;
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use crate::leader_scheduler::tests::new_vote_account;
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use bincode::serialize;
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use solana_sdk::hash::hash;
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use solana_sdk::signature::{Keypair, KeypairUtil};
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use solana_sdk::vote_transaction::VoteTransaction;
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use std::sync::Arc;
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use std::thread::sleep;
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use std::time::Duration;
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#[test]
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fn test_compute_confirmation() {
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solana_logger::setup();
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let (genesis_block, mint_keypair) = GenesisBlock::new(1234);
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let dummy_leader_id = Keypair::new().pubkey();
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let bank = Arc::new(Bank::new(&genesis_block));
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// generate 10 validators, but only vote for the first 6 validators
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let ids: Vec<_> = (0..10)
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.map(|i| {
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let last_id = hash(&serialize(&i).unwrap()); // Unique hash
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bank.register_tick(&last_id);
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// sleep to get a different timestamp in the bank
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sleep(Duration::from_millis(1));
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last_id
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})
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.collect();
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// Create a total of 10 vote accounts, each will have a balance of 1 (after giving 1 to
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// their vote account), for a total staking pool of 10 tokens.
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let vote_accounts: Vec<_> = (0..10)
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.map(|i| {
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// Create new validator to vote
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let validator_keypair = Arc::new(Keypair::new());
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let last_id = ids[i];
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let voting_keypair = VotingKeypair::new_local(&validator_keypair);
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// Give the validator some tokens
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bank.transfer(2, &mint_keypair, validator_keypair.pubkey(), last_id)
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.unwrap();
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new_vote_account(&validator_keypair, &voting_keypair, &bank, 1, last_id);
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if i < 6 {
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let vote_tx =
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VoteTransaction::new_vote(&voting_keypair, (i + 1) as u64, last_id, 0);
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bank.process_transaction(&vote_tx).unwrap();
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}
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(voting_keypair, validator_keypair)
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})
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.collect();
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// There isn't 2/3 consensus, so the bank's confirmation value should be the default
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let mut last_confirmation_time = 0;
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ComputeLeaderConfirmationService::compute_confirmation(
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&bank,
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dummy_leader_id,
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&mut last_confirmation_time,
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);
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assert_eq!(bank.confirmation_time(), std::usize::MAX);
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// Get another validator to vote, so we now have 2/3 consensus
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let voting_keypair = &vote_accounts[7].0;
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let vote_tx = VoteTransaction::new_vote(voting_keypair, 7, ids[6], 0);
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bank.process_transaction(&vote_tx).unwrap();
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ComputeLeaderConfirmationService::compute_confirmation(
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&bank,
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dummy_leader_id,
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&mut last_confirmation_time,
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);
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assert!(bank.confirmation_time() != std::usize::MAX);
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assert!(last_confirmation_time > 0);
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}
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}
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