mirror of
https://github.com/darkrenaissance/darkfi.git
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510 lines
18 KiB
Rust
510 lines
18 KiB
Rust
/* This file is part of DarkFi (https://dark.fi)
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*
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* Copyright (C) 2020-2023 Dyne.org foundation
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Affero General Public License as
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* published by the Free Software Foundation, either version 3 of the
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* License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Affero General Public License for more details.
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*
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* You should have received a copy of the GNU Affero General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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use std::sync::Arc;
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use darkfi_sdk::{
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blockchain::{expected_reward, Slot},
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crypto::PublicKey,
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};
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use darkfi_serial::serialize;
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use log::{debug, error, info, warn};
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use smol::lock::RwLock;
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use crate::{
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blockchain::{BlockInfo, Blockchain, BlockchainOverlay},
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error::TxVerifyFailed,
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tx::Transaction,
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util::time::TimeKeeper,
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Error, Result,
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};
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/// DarkFi consensus module
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pub mod consensus;
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use consensus::Consensus;
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/// DarkFi consensus PID controller
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pub mod pid;
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/// Verification functions
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pub mod verification;
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use verification::{
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verify_block, verify_genesis_block, verify_producer_transaction, verify_transactions,
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};
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/// Validation functions
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pub mod validation;
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/// Helper utilities
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pub mod utils;
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use utils::deploy_native_contracts;
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/// Base 10 big float implementation for high precision arithmetics
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pub mod float_10;
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/// Configuration for initializing [`Validator`]
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#[derive(Clone)]
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pub struct ValidatorConfig {
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/// Helper structure to calculate time related operations
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pub time_keeper: TimeKeeper,
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/// Genesis block
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pub genesis_block: BlockInfo,
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/// Total amount of minted tokens in genesis block
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pub genesis_txs_total: u64,
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/// Whitelisted faucet pubkeys (testnet stuff)
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pub faucet_pubkeys: Vec<PublicKey>,
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/// Flag to enable testing mode
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pub testing_mode: bool,
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}
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impl ValidatorConfig {
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pub fn new(
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time_keeper: TimeKeeper,
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genesis_block: BlockInfo,
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genesis_txs_total: u64,
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faucet_pubkeys: Vec<PublicKey>,
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testing_mode: bool,
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) -> Self {
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Self { time_keeper, genesis_block, genesis_txs_total, faucet_pubkeys, testing_mode }
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}
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}
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/// Atomic pointer to validator.
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pub type ValidatorPtr = Arc<RwLock<Validator>>;
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/// This struct represents a DarkFi validator node.
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pub struct Validator {
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/// Canonical (finalized) blockchain
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pub blockchain: Blockchain,
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/// Hot/Live data used by the consensus algorithm
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pub consensus: Consensus,
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/// Flag signalling node has finished initial sync
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pub synced: bool,
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/// Flag to enable testing mode
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pub testing_mode: bool,
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}
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impl Validator {
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pub async fn new(db: &sled::Db, config: ValidatorConfig) -> Result<ValidatorPtr> {
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info!(target: "validator::new", "Initializing Validator");
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let testing_mode = config.testing_mode;
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info!(target: "validator::new", "Initializing Blockchain");
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let blockchain = Blockchain::new(db)?;
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// Create an overlay over whole blockchain so we can write stuff
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let overlay = BlockchainOverlay::new(&blockchain)?;
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// Deploy native wasm contracts
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deploy_native_contracts(&overlay, &config.time_keeper, &config.faucet_pubkeys)?;
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// Add genesis block if blockchain is empty
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if blockchain.genesis().is_err() {
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info!(target: "validator::new", "Appending genesis block");
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verify_genesis_block(
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&overlay,
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&config.time_keeper,
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&config.genesis_block,
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config.genesis_txs_total,
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)
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.await?;
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};
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// Write the changes to the actual chain db
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overlay.lock().unwrap().overlay.lock().unwrap().apply()?;
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info!(target: "validator::new", "Initializing Consensus");
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let consensus = Consensus::new(blockchain.clone(), config.time_keeper, testing_mode);
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// Create the actual state
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let state =
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Arc::new(RwLock::new(Self { blockchain, consensus, synced: false, testing_mode }));
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info!(target: "validator::new", "Finished initializing validator");
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Ok(state)
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}
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/// The node retrieves a transaction, validates its state transition,
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/// and appends it to the pending txs store.
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pub async fn append_tx(&mut self, tx: &Transaction) -> Result<()> {
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let tx_hash = blake3::hash(&serialize(tx));
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// Check if we have already seen this tx
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let tx_in_txstore = self.blockchain.transactions.contains(&tx_hash)?;
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let tx_in_pending_txs_store = self.blockchain.pending_txs.contains(&tx_hash)?;
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if tx_in_txstore || tx_in_pending_txs_store {
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info!(target: "validator::append_tx", "We have already seen this tx");
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return Err(TxVerifyFailed::AlreadySeenTx(tx_hash.to_string()).into())
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}
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// Verify state transition
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info!(target: "validator::append_tx", "Starting state transition validation");
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let tx_vec = [tx.clone()];
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let mut valid = false;
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// Generate a time keeper for current slot
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let time_keeper = self.consensus.time_keeper.current();
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// If node participates in consensus and holds any forks, iterate over them
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// to verify transaction validity in their overlays
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for fork in self.consensus.forks.iter_mut() {
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// Clone forks' overlay
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let overlay = fork.overlay.lock().unwrap().full_clone()?;
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// Verify transaction
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let erroneous_txs = verify_transactions(&overlay, &time_keeper, &tx_vec).await?;
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if !erroneous_txs.is_empty() {
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continue
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}
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valid = true;
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// Store transaction hash in forks' mempool
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fork.mempool.push(tx_hash);
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}
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// Verify transaction against canonical state
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let overlay = BlockchainOverlay::new(&self.blockchain)?;
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let erroneous_txs = verify_transactions(&overlay, &time_keeper, &tx_vec).await?;
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if erroneous_txs.is_empty() {
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valid = true
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}
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// Return error if transaction is not valid for canonical or any fork
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if !valid {
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return Err(TxVerifyFailed::ErroneousTxs(erroneous_txs).into())
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}
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// Add transaction to pending txs store
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self.blockchain.add_pending_txs(&tx_vec)?;
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info!(target: "validator::append_tx", "Appended tx to pending txs store");
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Ok(())
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}
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/// The node removes invalid transactions from the pending txs store.
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pub async fn purge_pending_txs(&mut self) -> Result<()> {
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info!(target: "validator::purge_pending_txs", "Removing invalid transactions from pending transactions store...");
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// Check if any pending transactions exist
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let pending_txs = self.blockchain.get_pending_txs()?;
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if pending_txs.is_empty() {
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info!(target: "validator::purge_pending_txs", "No pending transactions found");
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return Ok(())
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}
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// Generate a time keeper for current slot
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let time_keeper = self.consensus.time_keeper.current();
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let mut removed_txs = vec![];
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for tx in pending_txs {
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let tx_hash = &blake3::hash(&serialize(&tx));
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let tx_vec = [tx.clone()];
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let mut valid = false;
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// If node participates in consensus and holds any forks, iterate over them
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// to verify transaction validity in their overlays
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for fork in self.consensus.forks.iter_mut() {
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// Clone forks' overlay
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let overlay = fork.overlay.lock().unwrap().full_clone()?;
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// Verify transaction
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let erroneous_txs = verify_transactions(&overlay, &time_keeper, &tx_vec).await?;
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if erroneous_txs.is_empty() {
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valid = true;
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continue
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}
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// Remove erroneous transaction from forks' mempool
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fork.mempool.retain(|x| x != tx_hash);
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}
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// Verify transaction against canonical state
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let overlay = BlockchainOverlay::new(&self.blockchain)?;
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let erroneous_txs = verify_transactions(&overlay, &time_keeper, &tx_vec).await?;
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if erroneous_txs.is_empty() {
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valid = true
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}
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// Remove pending transaction if it's not valid for canonical or any fork
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if !valid {
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removed_txs.push(tx)
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}
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}
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if removed_txs.is_empty() {
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info!(target: "validator::purge_pending_txs", "No erroneous transactions found");
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return Ok(())
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}
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info!(target: "validator::purge_pending_txs", "Removing {} erroneous transactions...", removed_txs.len());
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self.blockchain.remove_pending_txs(&removed_txs)?;
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Ok(())
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}
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/// The node retrieves a block and tries to add it if it doesn't
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/// already exists.
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pub async fn append_block(&mut self, block: &BlockInfo) -> Result<()> {
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let block_hash = block.blockhash().to_string();
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// Check if block already exists
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if self.blockchain.has_block(block)? {
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debug!(target: "validator::append_block", "We have already seen this block");
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return Err(Error::BlockAlreadyExists(block_hash))
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}
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self.add_blocks(&[block.clone()]).await?;
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info!(target: "validator::append_block", "Block added: {}", block_hash);
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Ok(())
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}
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// ==========================
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// State transition functions
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// ==========================
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// TODO TESTNET: Write down all cases below
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// State transition checks should be happening in the following cases for a sync node:
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// 1) When a finalized block is received
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// 2) When a transaction is being broadcasted to us
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// State transition checks should be happening in the following cases for a consensus participating node:
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// 1) When a finalized block is received
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// 2) When a transaction is being broadcasted to us
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// ==========================
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/// Validate a set of [`BlockInfo`] in sequence and apply them if all are valid.
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pub async fn add_blocks(&mut self, blocks: &[BlockInfo]) -> Result<()> {
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debug!(target: "validator::add_blocks", "Instantiating BlockchainOverlay");
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let overlay = BlockchainOverlay::new(&self.blockchain)?;
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// Retrieve last block
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let mut previous = &overlay.lock().unwrap().last_block()?;
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// Create a time keeper to validate each block
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let mut time_keeper = self.consensus.time_keeper.clone();
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// Keep track of all blocks transactions to remove them from pending txs store
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let mut removed_txs = vec![];
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// Validate and insert each block
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for block in blocks {
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// Use block slot in time keeper
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time_keeper.verifying_slot = block.header.slot;
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// Retrieve expected reward
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let expected_reward = expected_reward(time_keeper.verifying_slot);
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// Verify block
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if verify_block(
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&overlay,
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&time_keeper,
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block,
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previous,
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expected_reward,
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self.testing_mode,
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)
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.await
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.is_err()
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{
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error!(target: "validator::add_blocks", "Erroneous block found in set");
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overlay.lock().unwrap().overlay.lock().unwrap().purge_new_trees()?;
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return Err(Error::BlockIsInvalid(block.blockhash().to_string()))
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};
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// Store block transactions
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for tx in &block.txs {
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removed_txs.push(tx.clone());
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}
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// Use last inserted block as next iteration previous
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previous = block;
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}
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debug!(target: "validator::add_blocks", "Applying overlay changes");
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overlay.lock().unwrap().overlay.lock().unwrap().apply()?;
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// Purge pending erroneous txs since canonical state has been changed
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self.blockchain.remove_pending_txs(&removed_txs)?;
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self.purge_pending_txs().await?;
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Ok(())
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}
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/// Validate a set of [`Transaction`] in sequence and apply them if all are valid.
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/// In case any of the transactions fail, they will be returned to the caller.
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/// The function takes a boolean called `write` which tells it to actually write
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/// the state transitions to the database.
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pub async fn add_transactions(
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&self,
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txs: &[Transaction],
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verifying_slot: u64,
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write: bool,
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) -> Result<()> {
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debug!(target: "validator::add_transactions", "Instantiating BlockchainOverlay");
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let overlay = BlockchainOverlay::new(&self.blockchain)?;
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// Generate a time keeper using transaction verifying slot
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let time_keeper = TimeKeeper::new(
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self.consensus.time_keeper.genesis_ts,
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self.consensus.time_keeper.epoch_length,
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self.consensus.time_keeper.slot_time,
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verifying_slot,
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);
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// Verify all transactions and get erroneous ones
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let erroneous_txs = verify_transactions(&overlay, &time_keeper, txs).await?;
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let lock = overlay.lock().unwrap();
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let mut overlay = lock.overlay.lock().unwrap();
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if !erroneous_txs.is_empty() {
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warn!(target: "validator::add_transactions", "Erroneous transactions found in set");
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overlay.purge_new_trees()?;
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return Err(TxVerifyFailed::ErroneousTxs(erroneous_txs).into())
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}
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if !write {
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debug!(target: "validator::add_transactions", "Skipping apply of state updates because write=false");
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overlay.purge_new_trees()?;
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return Ok(())
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}
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debug!(target: "validator::add_transactions", "Applying overlay changes");
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overlay.apply()?;
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Ok(())
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}
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/// Append to canonical state received slot.
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/// This should be only used for test purposes.
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pub async fn receive_test_slot(&mut self, slot: &Slot) -> Result<()> {
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debug!(target: "validator::receive_test_slot", "Appending slot to ledger");
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self.blockchain.slots.insert(&[slot.clone()])?;
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Ok(())
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}
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/// Validate a producer `Transaction` and apply it if valid.
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/// In case the transactions fail, ir will be returned to the caller.
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/// The function takes a boolean called `write` which tells it to actually write
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/// the state transitions to the database.
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/// This should be only used for test purposes.
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pub async fn add_test_producer_transaction(
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&self,
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tx: &Transaction,
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verifying_slot: u64,
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write: bool,
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) -> Result<()> {
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debug!(target: "validator::add_test_producer_transaction", "Instantiating BlockchainOverlay");
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let overlay = BlockchainOverlay::new(&self.blockchain)?;
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// Generate a time keeper using transaction verifying slot
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let time_keeper = TimeKeeper::new(
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self.consensus.time_keeper.genesis_ts,
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self.consensus.time_keeper.epoch_length,
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self.consensus.time_keeper.slot_time,
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verifying_slot,
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);
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// Verify transaction
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let mut erroneous_txs = vec![];
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if let Err(e) = verify_producer_transaction(&overlay, &time_keeper, tx).await {
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warn!(target: "validator::add_test_producer_transaction", "Transaction verification failed: {}", e);
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erroneous_txs.push(tx.clone());
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}
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let lock = overlay.lock().unwrap();
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let mut overlay = lock.overlay.lock().unwrap();
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if !erroneous_txs.is_empty() {
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warn!(target: "validator::add_test_producer_transaction", "Erroneous transactions found in set");
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overlay.purge_new_trees()?;
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return Err(TxVerifyFailed::ErroneousTxs(erroneous_txs).into())
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}
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if !write {
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debug!(target: "validator::add_test_producer_transaction", "Skipping apply of state updates because write=false");
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overlay.purge_new_trees()?;
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return Ok(())
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}
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debug!(target: "validator::add_test_producer_transaction", "Applying overlay changes");
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overlay.apply()?;
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Ok(())
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}
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/// Retrieve all existing blocks and try to apply them
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/// to an in memory overlay to verify their correctness.
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/// Be careful as this will try to load everything in memory.
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pub async fn validate_blockchain(
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&self,
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genesis_txs_total: u64,
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faucet_pubkeys: Vec<PublicKey>,
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) -> Result<()> {
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let blocks = self.blockchain.get_all()?;
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// An empty blockchain is considered valid
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if blocks.is_empty() {
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return Ok(())
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}
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// Create an in memory blockchain overlay
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let sled_db = sled::Config::new().temporary(true).open()?;
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let blockchain = Blockchain::new(&sled_db)?;
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let overlay = BlockchainOverlay::new(&blockchain)?;
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// Set previous
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let mut previous = &blocks[0];
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// Create a time keeper to validate each block
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let mut time_keeper = self.consensus.time_keeper.clone();
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// Deploy native wasm contracts
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deploy_native_contracts(&overlay, &time_keeper, &faucet_pubkeys)?;
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// Validate genesis block
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verify_genesis_block(&overlay, &time_keeper, previous, genesis_txs_total).await?;
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// Validate and insert each block
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for block in &blocks[1..] {
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// Use block slot in time keeper
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time_keeper.verifying_slot = block.header.slot;
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// Retrieve expected reward
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let expected_reward = expected_reward(time_keeper.verifying_slot);
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// Verify block
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if verify_block(
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&overlay,
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&time_keeper,
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block,
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previous,
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expected_reward,
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self.testing_mode,
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)
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.await
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.is_err()
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{
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error!(target: "validator::validate_blockchain", "Erroneous block found in set");
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overlay.lock().unwrap().overlay.lock().unwrap().purge_new_trees()?;
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return Err(Error::BlockIsInvalid(block.blockhash().to_string()))
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};
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// Use last inserted block as next iteration previous
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previous = block;
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}
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Ok(())
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}
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}
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