Fixing future-current transactions clash
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ebd7273071
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c2d2e41624
@ -192,7 +192,12 @@ impl TransactionSet {
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/// Inserts `TransactionOrder` to this set
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fn insert(&mut self, sender: Address, nonce: U256, order: TransactionOrder) -> Option<TransactionOrder> {
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self.by_priority.insert(order.clone());
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self.by_address.insert(sender, nonce, order)
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let r = self.by_address.insert(sender, nonce, order);
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// If transaction was replaced remove it from priority queue
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if let Some(ref order) = r {
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self.by_priority.remove(order);
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}
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r
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}
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/// Remove low priority transactions if there is more then specified by given `limit`.
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@ -371,7 +376,6 @@ impl TransactionQueue {
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}));
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}
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let vtx = try!(VerifiedTransaction::new(tx));
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let account = fetch_account(&vtx.sender());
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@ -571,9 +575,20 @@ impl TransactionQueue {
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}
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Self::replace_transaction(tx, state_nonce, &mut self.current, &mut self.by_hash);
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// Keep track of highest nonce stored in current
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self.last_nonces.insert(address, nonce);
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// But maybe there are some more items waiting in future?
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// Update nonces of transactions in future
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self.update_future(&address, state_nonce);
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// Maybe there are some more items waiting in future?
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self.move_matching_future_to_current(address, nonce + U256::one(), state_nonce);
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// There might be exactly the same transaction waiting in future
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// same (sender, nonce), but above function would not move it.
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if let Some(order) = self.future.drop(&address, &nonce) {
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// Let's insert that transaction to current (if it has higher gas_price)
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let future_tx = self.by_hash.remove(&order.hash).unwrap();
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Self::replace_transaction(future_tx, state_nonce, &mut self.current, &mut self.by_hash);
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}
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// Also enforce the limit
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self.current.enforce_limit(&mut self.by_hash);
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trace!(target: "miner", "status: {:?}", self.status());
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@ -597,13 +612,11 @@ impl TransactionQueue {
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let new_fee = order.gas_price;
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if old_fee.cmp(&new_fee) == Ordering::Greater {
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// Put back old transaction since it has greater priority (higher gas_price)
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set.by_address.insert(address, nonce, old);
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set.insert(address, nonce, old);
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// and remove new one
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set.by_priority.remove(&order);
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by_hash.remove(&hash);
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} else {
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// Make sure we remove old transaction entirely
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set.by_priority.remove(&old);
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by_hash.remove(&old.hash);
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}
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}
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@ -643,6 +656,18 @@ mod test {
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}
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}
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/// Returns two transactions with identical (sender, nonce) but different hashes
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fn new_similar_txs() -> (SignedTransaction, SignedTransaction) {
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let keypair = KeyPair::create().unwrap();
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let secret = &keypair.secret();
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let nonce = U256::from(123);
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let tx = new_unsigned_tx(nonce);
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let mut tx2 = new_unsigned_tx(nonce);
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tx2.gas_price = U256::from(2);
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(tx.sign(secret), tx2.sign(secret))
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}
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fn new_txs(second_nonce: U256) -> (SignedTransaction, SignedTransaction) {
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let keypair = KeyPair::create().unwrap();
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let secret = &keypair.secret();
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@ -693,6 +718,69 @@ mod test {
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assert_eq!(set.by_address.len(), 0);
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}
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#[test]
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fn should_replace_transaction_in_set() {
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let mut set = TransactionSet {
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by_priority: BTreeSet::new(),
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by_address: Table::new(),
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limit: 1
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};
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// Create two transactions with same nonce
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// (same hash)
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let (tx1, tx2) = new_txs(U256::from(0));
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let tx1 = VerifiedTransaction::new(tx1).unwrap();
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let tx2 = VerifiedTransaction::new(tx2).unwrap();
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let by_hash = {
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let mut x = HashMap::new();
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let tx1 = VerifiedTransaction::new(tx1.transaction.clone()).unwrap();
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let tx2 = VerifiedTransaction::new(tx2.transaction.clone()).unwrap();
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x.insert(tx1.hash(), tx1);
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x.insert(tx2.hash(), tx2);
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x
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};
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// Insert both transactions
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let order1 = TransactionOrder::for_transaction(&tx1, U256::zero());
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set.insert(tx1.sender(), tx1.nonce(), order1.clone());
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assert_eq!(set.by_priority.len(), 1);
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assert_eq!(set.by_address.len(), 1);
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// Two different orders (imagine nonce changed in the meantime)
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let order2 = TransactionOrder::for_transaction(&tx2, U256::one());
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set.insert(tx2.sender(), tx2.nonce(), order2.clone());
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assert_eq!(set.by_priority.len(), 1);
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assert_eq!(set.by_address.len(), 1);
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// then
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assert_eq!(by_hash.len(), 1);
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assert_eq!(set.by_priority.len(), 1);
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assert_eq!(set.by_address.len(), 1);
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assert_eq!(set.by_priority.iter().next().unwrap().clone(), order2);
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}
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#[test]
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fn should_handle_same_transaction_imported_twice_with_different_state_nonces() {
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// given
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let mut txq = TransactionQueue::new();
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let (tx, tx2) = new_similar_txs();
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let prev_nonce = |a: &Address| AccountDetails{ nonce: default_nonce(a).nonce - U256::one(), balance:
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!U256::zero() };
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// First insert one transaction to future
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let res = txq.add(tx, &prev_nonce);
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assert!(res.is_ok());
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assert_eq!(txq.status().future, 1);
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// now import second transaction to current
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let res = txq.add(tx2.clone(), &default_nonce);
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// and then there should be only one transaction in current (the one with higher gas_price)
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assert!(res.is_ok());
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assert_eq!(txq.status().pending, 1);
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assert_eq!(txq.status().future, 0);
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assert_eq!(txq.current.by_priority.len(), 1);
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assert_eq!(txq.current.by_address.len(), 1);
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assert_eq!(txq.top_transactions()[0], tx2);
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}
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#[test]
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fn should_import_tx() {
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