595 lines
24 KiB
Rust
595 lines
24 KiB
Rust
// Long-running bank_forks tests
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#![allow(clippy::integer_arithmetic)]
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macro_rules! DEFINE_SNAPSHOT_VERSION_PARAMETERIZED_TEST_FUNCTIONS {
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($x:ident, $y:ident, $z:ident) => {
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#[allow(non_snake_case)]
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mod $z {
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use super::*;
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const SNAPSHOT_VERSION: SnapshotVersion = SnapshotVersion::$x;
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const CLUSTER_TYPE: ClusterType = ClusterType::$y;
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#[test]
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fn test_bank_forks_status_cache_snapshot_n() {
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run_test_bank_forks_status_cache_snapshot_n(SNAPSHOT_VERSION, CLUSTER_TYPE)
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}
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#[test]
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fn test_bank_forks_snapshot_n() {
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run_test_bank_forks_snapshot_n(SNAPSHOT_VERSION, CLUSTER_TYPE)
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}
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#[test]
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fn test_concurrent_snapshot_packaging() {
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run_test_concurrent_snapshot_packaging(SNAPSHOT_VERSION, CLUSTER_TYPE)
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}
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#[test]
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fn test_slots_to_snapshot() {
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run_test_slots_to_snapshot(SNAPSHOT_VERSION, CLUSTER_TYPE)
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}
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}
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};
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}
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#[cfg(test)]
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mod tests {
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use bincode::serialize_into;
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use crossbeam_channel::unbounded;
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use fs_extra::dir::CopyOptions;
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use itertools::Itertools;
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use solana_core::{
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cluster_info::ClusterInfo,
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contact_info::ContactInfo,
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snapshot_packager_service::{PendingSnapshotPackage, SnapshotPackagerService},
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};
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use solana_runtime::{
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accounts_background_service::{AbsRequestSender, SnapshotRequestHandler},
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accounts_db,
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accounts_index::AccountSecondaryIndexes,
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bank::{Bank, BankSlotDelta},
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bank_forks::{ArchiveFormat, BankForks, SnapshotConfig},
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genesis_utils::{create_genesis_config, GenesisConfigInfo},
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snapshot_utils,
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snapshot_utils::{SnapshotVersion, DEFAULT_MAX_SNAPSHOTS_TO_RETAIN},
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status_cache::MAX_CACHE_ENTRIES,
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};
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use solana_sdk::{
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clock::Slot,
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genesis_config::{ClusterType, GenesisConfig},
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hash::hashv,
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pubkey::Pubkey,
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signature::{Keypair, Signer},
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system_transaction,
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};
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use std::{
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collections::HashSet,
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fs,
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path::PathBuf,
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sync::{
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atomic::{AtomicBool, Ordering},
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mpsc::channel,
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Arc,
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},
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time::Duration,
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};
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use tempfile::TempDir;
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DEFINE_SNAPSHOT_VERSION_PARAMETERIZED_TEST_FUNCTIONS!(V1_2_0, Development, V1_2_0_Development);
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DEFINE_SNAPSHOT_VERSION_PARAMETERIZED_TEST_FUNCTIONS!(V1_2_0, Devnet, V1_2_0_Devnet);
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DEFINE_SNAPSHOT_VERSION_PARAMETERIZED_TEST_FUNCTIONS!(V1_2_0, Testnet, V1_2_0_Testnet);
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DEFINE_SNAPSHOT_VERSION_PARAMETERIZED_TEST_FUNCTIONS!(V1_2_0, MainnetBeta, V1_2_0_MainnetBeta);
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struct SnapshotTestConfig {
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accounts_dir: TempDir,
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snapshot_dir: TempDir,
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_snapshot_output_path: TempDir,
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snapshot_config: SnapshotConfig,
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bank_forks: BankForks,
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genesis_config_info: GenesisConfigInfo,
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}
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impl SnapshotTestConfig {
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fn new(
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snapshot_version: SnapshotVersion,
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cluster_type: ClusterType,
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snapshot_interval_slots: u64,
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) -> SnapshotTestConfig {
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let accounts_dir = TempDir::new().unwrap();
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let snapshot_dir = TempDir::new().unwrap();
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let snapshot_output_path = TempDir::new().unwrap();
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let mut genesis_config_info = create_genesis_config(10_000);
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genesis_config_info.genesis_config.cluster_type = cluster_type;
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let bank0 = Bank::new_with_paths(
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&genesis_config_info.genesis_config,
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vec![accounts_dir.path().to_path_buf()],
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&[],
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None,
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None,
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AccountSecondaryIndexes::default(),
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false,
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);
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bank0.freeze();
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let mut bank_forks = BankForks::new(bank0);
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bank_forks.accounts_hash_interval_slots = snapshot_interval_slots;
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let snapshot_config = SnapshotConfig {
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snapshot_interval_slots,
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snapshot_package_output_path: PathBuf::from(snapshot_output_path.path()),
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snapshot_path: PathBuf::from(snapshot_dir.path()),
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archive_format: ArchiveFormat::TarBzip2,
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snapshot_version,
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maximum_snapshots_to_retain: DEFAULT_MAX_SNAPSHOTS_TO_RETAIN,
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};
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bank_forks.set_snapshot_config(Some(snapshot_config.clone()));
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SnapshotTestConfig {
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accounts_dir,
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snapshot_dir,
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_snapshot_output_path: snapshot_output_path,
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snapshot_config,
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bank_forks,
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genesis_config_info,
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}
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}
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}
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fn restore_from_snapshot(
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old_bank_forks: &BankForks,
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old_last_slot: Slot,
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old_genesis_config: &GenesisConfig,
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account_paths: &[PathBuf],
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) {
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let (snapshot_path, snapshot_package_output_path) = old_bank_forks
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.snapshot_config
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.as_ref()
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.map(|c| (&c.snapshot_path, &c.snapshot_package_output_path))
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.unwrap();
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let old_last_bank = old_bank_forks.get(old_last_slot).unwrap();
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let deserialized_bank = snapshot_utils::bank_from_archive(
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&account_paths,
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&[],
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&old_bank_forks
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.snapshot_config
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.as_ref()
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.unwrap()
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.snapshot_path,
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snapshot_utils::get_snapshot_archive_path(
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snapshot_package_output_path.to_path_buf(),
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&(old_last_bank.slot(), old_last_bank.get_accounts_hash()),
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ArchiveFormat::TarBzip2,
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),
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ArchiveFormat::TarBzip2,
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old_genesis_config,
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None,
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None,
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AccountSecondaryIndexes::default(),
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false,
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)
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.unwrap();
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let bank = old_bank_forks
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.get(deserialized_bank.slot())
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.unwrap()
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.clone();
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assert_eq!(*bank, deserialized_bank);
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let slot_snapshot_paths = snapshot_utils::get_snapshot_paths(&snapshot_path);
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for p in slot_snapshot_paths {
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snapshot_utils::remove_snapshot(p.slot, &snapshot_path).unwrap();
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}
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}
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// creates banks up to "last_slot" and runs the input function `f` on each bank created
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// also marks each bank as root and generates snapshots
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// finally tries to restore from the last bank's snapshot and compares the restored bank to the
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// `last_slot` bank
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fn run_bank_forks_snapshot_n<F>(
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snapshot_version: SnapshotVersion,
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cluster_type: ClusterType,
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last_slot: Slot,
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f: F,
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set_root_interval: u64,
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) where
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F: Fn(&mut Bank, &Keypair),
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{
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solana_logger::setup();
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// Set up snapshotting config
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let mut snapshot_test_config = SnapshotTestConfig::new(snapshot_version, cluster_type, 1);
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let bank_forks = &mut snapshot_test_config.bank_forks;
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let mint_keypair = &snapshot_test_config.genesis_config_info.mint_keypair;
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let (s, snapshot_request_receiver) = unbounded();
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let (accounts_package_sender, _r) = channel();
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let request_sender = AbsRequestSender::new(Some(s));
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let snapshot_request_handler = SnapshotRequestHandler {
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snapshot_config: snapshot_test_config.snapshot_config.clone(),
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snapshot_request_receiver,
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accounts_package_sender,
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};
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for slot in 0..last_slot {
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let mut bank = Bank::new_from_parent(&bank_forks[slot], &Pubkey::default(), slot + 1);
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f(&mut bank, &mint_keypair);
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let bank = bank_forks.insert(bank);
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// Set root to make sure we don't end up with too many account storage entries
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// and to allow snapshotting of bank and the purging logic on status_cache to
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// kick in
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if slot % set_root_interval == 0 || slot == last_slot - 1 {
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// set_root should send a snapshot request
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bank_forks.set_root(bank.slot(), &request_sender, None);
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bank.update_accounts_hash();
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snapshot_request_handler.handle_snapshot_requests(false, false, false);
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}
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}
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// Generate a snapshot package for last bank
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let last_bank = bank_forks.get(last_slot).unwrap();
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let snapshot_config = &snapshot_test_config.snapshot_config;
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let snapshot_path = &snapshot_config.snapshot_path;
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let last_slot_snapshot_path = snapshot_utils::get_snapshot_paths(snapshot_path)
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.pop()
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.expect("no snapshots found in path");
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let snapshot_package = snapshot_utils::package_snapshot(
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last_bank,
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&last_slot_snapshot_path,
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snapshot_path,
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last_bank.src.slot_deltas(&last_bank.src.roots()),
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&snapshot_config.snapshot_package_output_path,
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last_bank.get_snapshot_storages(),
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ArchiveFormat::TarBzip2,
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snapshot_version,
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None,
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)
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.unwrap();
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let snapshot_package = snapshot_utils::process_accounts_package_pre(
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snapshot_package,
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Some(&last_bank.get_thread_pool()),
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);
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snapshot_utils::archive_snapshot_package(
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&snapshot_package,
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DEFAULT_MAX_SNAPSHOTS_TO_RETAIN,
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)
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.unwrap();
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// Restore bank from snapshot
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let account_paths = &[snapshot_test_config.accounts_dir.path().to_path_buf()];
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let genesis_config = &snapshot_test_config.genesis_config_info.genesis_config;
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restore_from_snapshot(bank_forks, last_slot, genesis_config, account_paths);
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}
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fn run_test_bank_forks_snapshot_n(
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snapshot_version: SnapshotVersion,
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cluster_type: ClusterType,
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) {
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// create banks up to slot 4 and create 1 new account in each bank. test that bank 4 snapshots
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// and restores correctly
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run_bank_forks_snapshot_n(
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snapshot_version,
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cluster_type,
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4,
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|bank, mint_keypair| {
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let key1 = Keypair::new().pubkey();
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let tx =
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system_transaction::transfer(&mint_keypair, &key1, 1, bank.last_blockhash());
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assert_eq!(bank.process_transaction(&tx), Ok(()));
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let key2 = Keypair::new().pubkey();
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let tx =
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system_transaction::transfer(&mint_keypair, &key2, 0, bank.last_blockhash());
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assert_eq!(bank.process_transaction(&tx), Ok(()));
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bank.freeze();
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},
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1,
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);
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}
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fn goto_end_of_slot(bank: &mut Bank) {
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let mut tick_hash = bank.last_blockhash();
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loop {
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tick_hash = hashv(&[&tick_hash.as_ref(), &[42]]);
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bank.register_tick(&tick_hash);
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if tick_hash == bank.last_blockhash() {
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bank.freeze();
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return;
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}
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}
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}
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fn run_test_concurrent_snapshot_packaging(
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snapshot_version: SnapshotVersion,
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cluster_type: ClusterType,
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) {
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solana_logger::setup();
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// Set up snapshotting config
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let mut snapshot_test_config = SnapshotTestConfig::new(snapshot_version, cluster_type, 1);
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let bank_forks = &mut snapshot_test_config.bank_forks;
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let snapshots_dir = &snapshot_test_config.snapshot_dir;
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let snapshot_config = &snapshot_test_config.snapshot_config;
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let snapshot_path = &snapshot_config.snapshot_path;
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let snapshot_package_output_path = &snapshot_config.snapshot_package_output_path;
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let mint_keypair = &snapshot_test_config.genesis_config_info.mint_keypair;
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let genesis_config = &snapshot_test_config.genesis_config_info.genesis_config;
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// Take snapshot of zeroth bank
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let bank0 = bank_forks.get(0).unwrap();
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let storages = bank0.get_snapshot_storages();
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snapshot_utils::add_snapshot(snapshot_path, bank0, &storages, snapshot_version).unwrap();
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// Set up snapshotting channels
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let (sender, receiver) = channel();
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let (fake_sender, _fake_receiver) = channel();
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// Create next MAX_CACHE_ENTRIES + 2 banks and snapshots. Every bank will get snapshotted
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// and the snapshot purging logic will run on every snapshot taken. This means the three
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// (including snapshot for bank0 created above) earliest snapshots will get purged by the
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// time this loop is done.
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// Also, make a saved copy of the state of the snapshot for a bank with
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// bank.slot == saved_slot, so we can use it for a correctness check later.
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let saved_snapshots_dir = TempDir::new().unwrap();
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let saved_accounts_dir = TempDir::new().unwrap();
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let saved_slot = 4;
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let mut saved_archive_path = None;
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for forks in 0..snapshot_utils::MAX_SNAPSHOTS + 2 {
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let bank = Bank::new_from_parent(
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&bank_forks[forks as u64],
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&Pubkey::default(),
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(forks + 1) as u64,
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);
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let slot = bank.slot();
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let key1 = Keypair::new().pubkey();
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let tx = system_transaction::transfer(&mint_keypair, &key1, 1, genesis_config.hash());
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assert_eq!(bank.process_transaction(&tx), Ok(()));
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bank.squash();
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let accounts_hash = bank.update_accounts_hash();
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let package_sender = {
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if slot == saved_slot as u64 {
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// Only send one package on the real sender so that the packaging service
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// doesn't take forever to run the packaging logic on all MAX_CACHE_ENTRIES
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// later
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&sender
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} else {
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&fake_sender
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}
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};
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snapshot_utils::snapshot_bank(
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&bank,
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vec![],
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&package_sender,
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&snapshot_path,
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&snapshot_package_output_path,
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snapshot_config.snapshot_version,
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&snapshot_config.archive_format,
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None,
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)
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.unwrap();
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bank_forks.insert(bank);
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if slot == saved_slot as u64 {
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// Find the relevant snapshot storages
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let snapshot_storage_files: HashSet<_> = bank_forks[slot]
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.get_snapshot_storages()
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.into_iter()
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.flatten()
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.map(|s| s.get_path())
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.collect();
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// Only save off the files returned by `get_snapshot_storages`. This is because
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// some of the storage entries in the accounts directory may be filtered out by
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// `get_snapshot_storages()` and will not be included in the snapshot. Ultimately,
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// this means copying naitvely everything in `accounts_dir` to the `saved_accounts_dir`
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// will lead to test failure by mismatch when `saved_accounts_dir` is compared to
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// the unpacked snapshot later in this test's call to `verify_snapshot_archive()`.
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for file in snapshot_storage_files {
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fs::copy(
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&file,
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&saved_accounts_dir.path().join(file.file_name().unwrap()),
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)
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.unwrap();
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}
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let last_snapshot_path = fs::read_dir(snapshot_path)
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.unwrap()
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.filter_map(|entry| {
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let e = entry.unwrap();
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let file_path = e.path();
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let file_name = file_path.file_name().unwrap();
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file_name
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.to_str()
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.map(|s| s.parse::<u64>().ok().map(|_| file_path.clone()))
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.unwrap_or(None)
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})
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.sorted()
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.last()
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.unwrap();
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// only save off the snapshot of this slot, we don't need the others.
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let options = CopyOptions::new();
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fs_extra::dir::copy(&last_snapshot_path, &saved_snapshots_dir, &options).unwrap();
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saved_archive_path = Some(snapshot_utils::get_snapshot_archive_path(
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snapshot_package_output_path.to_path_buf(),
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&(slot, accounts_hash),
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ArchiveFormat::TarBzip2,
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));
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}
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}
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// Purge all the outdated snapshots, including the ones needed to generate the package
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// currently sitting in the channel
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snapshot_utils::purge_old_snapshots(&snapshot_path);
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assert!(snapshot_utils::get_snapshot_paths(&snapshots_dir)
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.into_iter()
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.map(|path| path.slot)
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.eq(3..=snapshot_utils::MAX_SNAPSHOTS as u64 + 2));
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// Create a SnapshotPackagerService to create tarballs from all the pending
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// SnapshotPackage's on the channel. By the time this service starts, we have already
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// purged the first two snapshots, which are needed by every snapshot other than
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// the last two snapshots. However, the packaging service should still be able to
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// correctly construct the earlier snapshots because the SnapshotPackage's on the
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// channel hold hard links to these deleted snapshots. We verify this is the case below.
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let exit = Arc::new(AtomicBool::new(false));
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let cluster_info = Arc::new(ClusterInfo::new_with_invalid_keypair(ContactInfo::default()));
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let pending_snapshot_package = PendingSnapshotPackage::default();
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let snapshot_packager_service = SnapshotPackagerService::new(
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pending_snapshot_package.clone(),
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None,
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&exit,
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&cluster_info,
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DEFAULT_MAX_SNAPSHOTS_TO_RETAIN,
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);
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let thread_pool = accounts_db::make_min_priority_thread_pool();
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let _package_receiver = std::thread::Builder::new()
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.name("package-receiver".to_string())
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.spawn(move || {
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while let Ok(mut snapshot_package) = receiver.recv() {
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// Only package the latest
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while let Ok(new_snapshot_package) = receiver.try_recv() {
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snapshot_package = new_snapshot_package;
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}
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let snapshot_package =
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solana_runtime::snapshot_utils::process_accounts_package_pre(
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snapshot_package,
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Some(&thread_pool),
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);
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*pending_snapshot_package.lock().unwrap() = Some(snapshot_package);
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}
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// Wait until the package is consumed by SnapshotPackagerService
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while pending_snapshot_package.lock().unwrap().is_some() {
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std::thread::sleep(Duration::from_millis(100));
|
|
}
|
|
|
|
// Shutdown SnapshotPackagerService
|
|
exit.store(true, Ordering::Relaxed);
|
|
})
|
|
.unwrap();
|
|
|
|
// Close the channel so that the package receiver will exit after reading all the
|
|
// packages off the channel
|
|
drop(sender);
|
|
|
|
// Wait for service to finish
|
|
snapshot_packager_service
|
|
.join()
|
|
.expect("SnapshotPackagerService exited with error");
|
|
|
|
// Check the archive we cached the state for earlier was generated correctly
|
|
|
|
// before we compare, stick an empty status_cache in this dir so that the package comparison works
|
|
// This is needed since the status_cache is added by the packager and is not collected from
|
|
// the source dir for snapshots
|
|
snapshot_utils::serialize_snapshot_data_file(
|
|
&saved_snapshots_dir
|
|
.path()
|
|
.join(snapshot_utils::SNAPSHOT_STATUS_CACHE_FILE_NAME),
|
|
|stream| {
|
|
serialize_into(stream, &[] as &[BankSlotDelta])?;
|
|
Ok(())
|
|
},
|
|
)
|
|
.unwrap();
|
|
|
|
snapshot_utils::verify_snapshot_archive(
|
|
saved_archive_path.unwrap(),
|
|
saved_snapshots_dir.path(),
|
|
saved_accounts_dir.path(),
|
|
ArchiveFormat::TarBzip2,
|
|
);
|
|
}
|
|
|
|
fn run_test_slots_to_snapshot(snapshot_version: SnapshotVersion, cluster_type: ClusterType) {
|
|
solana_logger::setup();
|
|
let num_set_roots = MAX_CACHE_ENTRIES * 2;
|
|
|
|
for add_root_interval in &[1, 3, 9] {
|
|
let (snapshot_sender, _snapshot_receiver) = unbounded();
|
|
// Make sure this test never clears bank.slots_since_snapshot
|
|
let mut snapshot_test_config = SnapshotTestConfig::new(
|
|
snapshot_version,
|
|
cluster_type,
|
|
(*add_root_interval * num_set_roots * 2) as u64,
|
|
);
|
|
let mut current_bank = snapshot_test_config.bank_forks[0].clone();
|
|
let request_sender = AbsRequestSender::new(Some(snapshot_sender));
|
|
for _ in 0..num_set_roots {
|
|
for _ in 0..*add_root_interval {
|
|
let new_slot = current_bank.slot() + 1;
|
|
let new_bank =
|
|
Bank::new_from_parent(¤t_bank, &Pubkey::default(), new_slot);
|
|
snapshot_test_config.bank_forks.insert(new_bank);
|
|
current_bank = snapshot_test_config.bank_forks[new_slot].clone();
|
|
}
|
|
snapshot_test_config.bank_forks.set_root(
|
|
current_bank.slot(),
|
|
&request_sender,
|
|
None,
|
|
);
|
|
}
|
|
|
|
let num_old_slots = num_set_roots * *add_root_interval - MAX_CACHE_ENTRIES + 1;
|
|
let expected_slots_to_snapshot =
|
|
num_old_slots as u64..=num_set_roots as u64 * *add_root_interval as u64;
|
|
|
|
let slots_to_snapshot = snapshot_test_config
|
|
.bank_forks
|
|
.get(snapshot_test_config.bank_forks.root())
|
|
.unwrap()
|
|
.src
|
|
.roots();
|
|
assert!(slots_to_snapshot.into_iter().eq(expected_slots_to_snapshot));
|
|
}
|
|
}
|
|
|
|
fn run_test_bank_forks_status_cache_snapshot_n(
|
|
snapshot_version: SnapshotVersion,
|
|
cluster_type: ClusterType,
|
|
) {
|
|
// create banks up to slot (MAX_CACHE_ENTRIES * 2) + 1 while transferring 1 lamport into 2 different accounts each time
|
|
// this is done to ensure the AccountStorageEntries keep getting cleaned up as the root moves
|
|
// ahead. Also tests the status_cache purge and status cache snapshotting.
|
|
// Makes sure that the last bank is restored correctly
|
|
let key1 = Keypair::new().pubkey();
|
|
let key2 = Keypair::new().pubkey();
|
|
for set_root_interval in &[1, 4] {
|
|
run_bank_forks_snapshot_n(
|
|
snapshot_version,
|
|
cluster_type,
|
|
(MAX_CACHE_ENTRIES * 2 + 1) as u64,
|
|
|bank, mint_keypair| {
|
|
let tx = system_transaction::transfer(
|
|
&mint_keypair,
|
|
&key1,
|
|
1,
|
|
bank.parent().unwrap().last_blockhash(),
|
|
);
|
|
assert_eq!(bank.process_transaction(&tx), Ok(()));
|
|
let tx = system_transaction::transfer(
|
|
&mint_keypair,
|
|
&key2,
|
|
1,
|
|
bank.parent().unwrap().last_blockhash(),
|
|
);
|
|
assert_eq!(bank.process_transaction(&tx), Ok(()));
|
|
goto_end_of_slot(bank);
|
|
},
|
|
*set_root_interval,
|
|
);
|
|
}
|
|
}
|
|
}
|