2018-05-30 23:57:13 +03:00
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// Copyright 2018 The Grin Developers
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//! Transaction pool implementation leveraging txhashset for chain state
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//! validation. It is a valid operation to add a tx to the tx pool if the
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//! resulting tx pool can be added to the current chain state to produce a
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//! valid chain state.
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2018-08-30 17:44:34 +03:00
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use std::sync::{Arc, RwLock};
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2018-08-16 00:14:48 +03:00
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use chrono::prelude::Utc;
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2018-05-30 23:57:13 +03:00
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2018-08-20 16:48:05 +03:00
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use core::core::hash::Hash;
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2018-08-30 17:44:34 +03:00
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use core::core::verifier_cache::VerifierCache;
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2018-06-14 15:16:14 +03:00
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use core::core::{transaction, Block, CompactBlock, Transaction};
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2018-05-30 23:57:13 +03:00
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use pool::Pool;
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2018-06-14 15:16:14 +03:00
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use types::{BlockChain, PoolAdapter, PoolConfig, PoolEntry, PoolEntryState, PoolError, TxSource};
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2018-05-30 23:57:13 +03:00
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/// Transaction pool implementation.
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2018-08-28 00:22:48 +03:00
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pub struct TransactionPool {
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2018-05-30 23:57:13 +03:00
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/// Pool Config
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pub config: PoolConfig,
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/// Our transaction pool.
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2018-08-28 00:22:48 +03:00
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pub txpool: Pool,
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2018-05-30 23:57:13 +03:00
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/// Our Dandelion "stempool".
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pub stempool: Pool,
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/// The blockchain
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pub blockchain: Arc<BlockChain>,
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pub verifier_cache: Arc<RwLock<VerifierCache>>,
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/// The pool adapter
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pub adapter: Arc<PoolAdapter>,
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}
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2018-08-28 00:22:48 +03:00
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impl TransactionPool {
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/// Create a new transaction pool
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pub fn new(
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config: PoolConfig,
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chain: Arc<BlockChain>,
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verifier_cache: Arc<RwLock<VerifierCache>>,
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adapter: Arc<PoolAdapter>,
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) -> TransactionPool {
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TransactionPool {
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config,
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txpool: Pool::new(chain.clone(), verifier_cache.clone(), format!("txpool")),
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stempool: Pool::new(chain.clone(), verifier_cache.clone(), format!("stempool")),
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blockchain: chain,
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verifier_cache,
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adapter,
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}
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}
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2018-08-20 16:48:05 +03:00
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fn add_to_stempool(&mut self, entry: PoolEntry, block_hash: &Hash) -> Result<(), PoolError> {
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// Add tx to stempool (passing in all txs from txpool to validate against).
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self.stempool
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.add_to_pool(entry.clone(), self.txpool.all_transactions(), block_hash)?;
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// Note: we do not notify the adapter here,
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// we let the dandelion monitor handle this.
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Ok(())
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}
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fn add_to_txpool(&mut self, mut entry: PoolEntry, block_hash: &Hash) -> Result<(), PoolError> {
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// First deaggregate the tx based on current txpool txs.
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if entry.tx.kernels().len() > 1 {
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let txs = self
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.txpool
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.find_matching_transactions(entry.tx.kernels().clone());
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if !txs.is_empty() {
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entry.tx = transaction::deaggregate(entry.tx, txs, self.verifier_cache.clone())?;
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entry.src.debug_name = "deagg".to_string();
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}
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}
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self.txpool.add_to_pool(entry.clone(), vec![], block_hash)?;
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// We now need to reconcile the stempool based on the new state of the txpool.
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// Some stempool txs may no longer be valid and we need to evict them.
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let txpool_tx = self.txpool.aggregate_transaction()?;
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self.stempool.reconcile(txpool_tx, block_hash)?;
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self.adapter.tx_accepted(&entry.tx);
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Ok(())
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}
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/// Add the given tx to the pool, directing it to either the stempool or
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/// txpool based on stem flag provided.
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pub fn add_to_pool(
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&mut self,
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src: TxSource,
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tx: Transaction,
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stem: bool,
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block_hash: &Hash,
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) -> Result<(), PoolError> {
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// Quick check to deal with common case of seeing the *same* tx
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// broadcast from multiple peers simultaneously.
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if !stem && self.txpool.contains_tx(&tx) {
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return Err(PoolError::DuplicateTx);
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}
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2018-05-30 23:57:13 +03:00
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// Do we have the capacity to accept this transaction?
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self.is_acceptable(&tx)?;
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// Make sure the transaction is valid before anything else.
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tx.validate(self.verifier_cache.clone())
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.map_err(|e| PoolError::InvalidTx(e))?;
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// Check the tx lock_time is valid based on current chain state.
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self.blockchain.verify_tx_lock_height(&tx)?;
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// Check coinbase maturity before we go any further.
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self.blockchain.verify_coinbase_maturity(&tx)?;
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let entry = PoolEntry {
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state: PoolEntryState::Fresh,
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src,
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tx_at: Utc::now(),
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tx: tx.clone(),
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};
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if stem {
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self.add_to_stempool(entry, block_hash)?;
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} else {
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self.add_to_txpool(entry, block_hash)?;
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}
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Ok(())
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}
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/// Reconcile the transaction pool (both txpool and stempool) against the
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/// provided block.
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pub fn reconcile_block(&mut self, block: &Block) -> Result<(), PoolError> {
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// First reconcile the txpool.
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self.txpool.reconcile_block(block)?;
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self.txpool.reconcile(None, &block.hash())?;
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// Then reconcile the stempool, accounting for the txpool txs.
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let txpool_tx = self.txpool.aggregate_transaction()?;
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self.stempool.reconcile_block(block)?;
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self.stempool.reconcile(txpool_tx, &block.hash())?;
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Ok(())
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}
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/// Retrieve all transactions matching the provided "compact block"
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/// based on the kernel set.
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/// Note: we only look in the txpool for this (stempool is under embargo).
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pub fn retrieve_transactions(&self, cb: &CompactBlock) -> Vec<Transaction> {
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self.txpool.retrieve_transactions(cb)
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}
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/// Whether the transaction is acceptable to the pool, given both how
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/// full the pool is and the transaction weight.
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fn is_acceptable(&self, tx: &Transaction) -> Result<(), PoolError> {
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if self.total_size() > self.config.max_pool_size {
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// TODO evict old/large transactions instead
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return Err(PoolError::OverCapacity);
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}
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// for a basic transaction (1 input, 2 outputs) -
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// (-1 * 1) + (4 * 2) + 1 = 8
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// 8 * 10 = 80
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if self.config.accept_fee_base > 0 {
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let threshold = (tx.tx_weight() as u64) * self.config.accept_fee_base;
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if tx.fee() < threshold {
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return Err(PoolError::LowFeeTransaction(threshold));
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}
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}
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Ok(())
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}
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/// Get the total size of the pool.
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/// Note: we only consider the txpool here as stempool is under embargo.
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pub fn total_size(&self) -> usize {
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self.txpool.size()
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}
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/// Returns a vector of transactions from the txpool so we can build a
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/// block from them.
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2018-08-20 01:50:43 +03:00
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pub fn prepare_mineable_transactions(&self) -> Vec<Transaction> {
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self.txpool.prepare_mineable_transactions()
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}
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}
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