Merge pull request #64 from mikezackles/bytecoin_tx_pool_tmp
tx pool fixes, courtesy of Bytecoin
This commit is contained in:
commit
d1b0ee7ecd
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@ -477,7 +477,8 @@ namespace cryptonote
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//-----------------------------------------------------------------------------------------------
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bool core::get_pool_transactions(std::list<transaction>& txs)
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{
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return m_mempool.get_transactions(txs);
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m_mempool.get_transactions(txs);
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return true;
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}
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//-----------------------------------------------------------------------------------------------
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bool core::get_short_chain_history(std::list<crypto::hash>& ids)
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@ -48,6 +48,11 @@ DISABLE_VS_WARNINGS(4244 4345 4503) //'boost::foreach_detail_::or_' : decorated
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namespace cryptonote
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{
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namespace
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{
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size_t const TRANSACTION_SIZE_LIMIT = (((CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE * 125) / 100) - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE);
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}
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//---------------------------------------------------------------------------------
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tx_memory_pool::tx_memory_pool(blockchain_storage& bchs): m_blockchain(bchs)
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{
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@ -75,7 +80,22 @@ namespace cryptonote
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if(outputs_amount >= inputs_amount)
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{
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LOG_PRINT_L0("transaction use more money then it has: use " << outputs_amount << ", have " << inputs_amount);
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LOG_PRINT_L0("transaction use more money then it has: use " << print_money(outputs_amount) << ", have " << print_money(inputs_amount));
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tvc.m_verifivation_failed = true;
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return false;
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}
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uint64_t fee = inputs_amount - outputs_amount;
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if (!kept_by_block && fee < DEFAULT_FEE)
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{
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LOG_ERROR("transaction fee is not enough: " << print_money(fee) << ", minumim fee: " << print_money(DEFAULT_FEE));
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tvc.m_verifivation_failed = true;
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return false;
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}
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if (!kept_by_block && blob_size >= TRANSACTION_SIZE_LIMIT)
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{
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LOG_ERROR("transaction is too big: " << blob_size << " bytes, maximum size: " << TRANSACTION_SIZE_LIMIT);
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tvc.m_verifivation_failed = true;
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return false;
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}
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@ -230,22 +250,20 @@ namespace cryptonote
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return true;
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}
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//---------------------------------------------------------------------------------
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size_t tx_memory_pool::get_transactions_count()
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size_t tx_memory_pool::get_transactions_count() const
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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return m_transactions.size();
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}
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//---------------------------------------------------------------------------------
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bool tx_memory_pool::get_transactions(std::list<transaction>& txs)
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void tx_memory_pool::get_transactions(std::list<transaction>& txs) const
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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BOOST_FOREACH(const auto& tx_vt, m_transactions)
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txs.push_back(tx_vt.second.tx);
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return true;
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}
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//---------------------------------------------------------------------------------
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bool tx_memory_pool::get_transaction(const crypto::hash& id, transaction& tx)
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bool tx_memory_pool::get_transaction(const crypto::hash& id, transaction& tx) const
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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auto it = m_transactions.find(id);
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@ -265,7 +283,7 @@ namespace cryptonote
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return true;
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}
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//---------------------------------------------------------------------------------
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bool tx_memory_pool::have_tx(const crypto::hash &id)
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bool tx_memory_pool::have_tx(const crypto::hash &id) const
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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if(m_transactions.count(id))
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@ -273,7 +291,7 @@ namespace cryptonote
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return false;
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}
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//---------------------------------------------------------------------------------
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bool tx_memory_pool::have_tx_keyimges_as_spent(const transaction& tx)
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bool tx_memory_pool::have_tx_keyimges_as_spent(const transaction& tx) const
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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BOOST_FOREACH(const auto& in, tx.vin)
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@ -285,23 +303,23 @@ namespace cryptonote
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return false;
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}
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//---------------------------------------------------------------------------------
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bool tx_memory_pool::have_tx_keyimg_as_spent(const crypto::key_image& key_im)
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bool tx_memory_pool::have_tx_keyimg_as_spent(const crypto::key_image& key_im) const
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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return m_spent_key_images.end() != m_spent_key_images.find(key_im);
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}
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//---------------------------------------------------------------------------------
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void tx_memory_pool::lock()
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void tx_memory_pool::lock() const
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{
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m_transactions_lock.lock();
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}
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//---------------------------------------------------------------------------------
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void tx_memory_pool::unlock()
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void tx_memory_pool::unlock() const
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{
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m_transactions_lock.unlock();
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}
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//---------------------------------------------------------------------------------
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bool tx_memory_pool::is_transaction_ready_to_go(tx_details& txd)
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bool tx_memory_pool::is_transaction_ready_to_go(tx_details& txd) const
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{
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//not the best implementation at this time, sorry :(
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//check is ring_signature already checked ?
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@ -365,38 +383,25 @@ namespace cryptonote
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return true;
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}
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//---------------------------------------------------------------------------------
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std::string tx_memory_pool::print_pool(bool short_format)
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std::string tx_memory_pool::print_pool(bool short_format) const
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{
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std::stringstream ss;
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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BOOST_FOREACH(transactions_container::value_type& txe, m_transactions)
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{
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if(short_format)
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{
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tx_details& txd = txe.second;
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ss << "id: " << txe.first << ENDL
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<< "blob_size: " << txd.blob_size << ENDL
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<< "fee: " << txd.fee << ENDL
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<< "kept_by_block: " << (txd.kept_by_block ? "true":"false") << ENDL
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<< "max_used_block_height: " << txd.max_used_block_height << ENDL
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<< "max_used_block_id: " << txd.max_used_block_id << ENDL
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<< "last_failed_height: " << txd.last_failed_height << ENDL
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<< "last_failed_id: " << txd.last_failed_id << ENDL;
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}else
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{
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tx_details& txd = txe.second;
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ss << "id: " << txe.first << ENDL
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<< obj_to_json_str(txd.tx) << ENDL
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<< "blob_size: " << txd.blob_size << ENDL
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<< "fee: " << txd.fee << ENDL
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<< "kept_by_block: " << (txd.kept_by_block ? "true":"false") << ENDL
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<< "max_used_block_height: " << txd.max_used_block_height << ENDL
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<< "max_used_block_id: " << txd.max_used_block_id << ENDL
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<< "last_failed_height: " << txd.last_failed_height << ENDL
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<< "last_failed_id: " << txd.last_failed_id << ENDL;
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for (const transactions_container::value_type& txe : m_transactions) {
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const tx_details& txd = txe.second;
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ss << "id: " << txe.first << std::endl;
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if (!short_format) {
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ss << obj_to_json_str(*const_cast<transaction*>(&txd.tx)) << std::endl;
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}
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ss << "blob_size: " << txd.blob_size << std::endl
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<< "fee: " << print_money(txd.fee) << std::endl
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<< "kept_by_block: " << (txd.kept_by_block ? 'T' : 'F') << std::endl
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<< "max_used_block_height: " << txd.max_used_block_height << std::endl
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<< "max_used_block_id: " << txd.max_used_block_id << std::endl
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<< "last_failed_height: " << txd.last_failed_height << std::endl
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<< "last_failed_id: " << txd.last_failed_id << std::endl;
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}
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}
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return ss.str();
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}
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//---------------------------------------------------------------------------------
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@ -411,45 +416,17 @@ namespace cryptonote
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total_size = 0;
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fee = 0;
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size_t max_total_size = 2 * median_size - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE; // Max block size
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// Maximum block size is 130% of the median block size. This gives a
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// little extra headroom for the max size transaction.
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size_t max_total_size = (130 * median_size) / 100 - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE;
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std::unordered_set<crypto::key_image> k_images;
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// Tx size limit as in wallet2.h
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// tx_pool.cpp uses size_t for tx sizes, whereas
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// wallet2.h uses uint64_t; just use size_t here
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// for now
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size_t upper_transaction_size_limit = ((CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE * 125) / 100) - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE;
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// Calculate size limit based on median too; useful
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// for when we actually fix wallet2.h's maximum
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// allowable tx size
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//
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// Can be removed when wallet2.h calculates max
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// tx size based on the median too; just use
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// upper_transaction_size_limit_median in all cases
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size_t upper_transaction_size_limit_median = ((median_size * 125) / 100) - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE;
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if (upper_transaction_size_limit_median > upper_transaction_size_limit)
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upper_transaction_size_limit = upper_transaction_size_limit_median;
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BOOST_FOREACH(transactions_container::value_type& tx, m_transactions)
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{
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// Can not exceed maximum block size
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if (max_total_size < total_size + tx.second.blob_size)
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continue;
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// Check to see if the minimum fee is included;
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// exclude tx missing minimum fee
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if (tx.second.fee < DEFAULT_FEE)
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continue;
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// Skip transactions that are too large
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// TODO: Correct upper_transactions_size_limit
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// such that it is based on median block size;
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// We need to make a similar patch for
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// wallet2.h
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if (tx.second.blob_size > upper_transaction_size_limit)
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continue;
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// If adding this tx will make the block size
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// greater than CRYPTONOTE_GETBLOCKTEMPLATE_MAX
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// _BLOCK_SIZE bytes, reject the tx; this will
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@ -458,13 +435,6 @@ namespace cryptonote
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if ( (total_size + tx.second.blob_size) > CRYPTONOTE_GETBLOCKTEMPLATE_MAX_BLOCK_SIZE )
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continue;
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// If adding this tx will make the block size
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// greater than 130% of the median, reject the
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// tx; this will keep down largely punitive tx
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// from being included
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if ( (total_size + tx.second.blob_size) > ((130 * median_size) / 100) )
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continue;
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// If we've exceeded the penalty free size,
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// stop including more tx
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if (total_size > median_size)
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@ -487,6 +457,8 @@ namespace cryptonote
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//---------------------------------------------------------------------------------
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bool tx_memory_pool::init(const std::string& config_folder)
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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m_config_folder = config_folder;
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std::string state_file_path = config_folder + "/" + CRYPTONOTE_POOLDATA_FILENAME;
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boost::system::error_code ec;
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@ -495,9 +467,23 @@ namespace cryptonote
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bool res = tools::unserialize_obj_from_file(*this, state_file_path);
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if(!res)
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{
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LOG_PRINT_L0("Failed to load memory pool from file " << state_file_path);
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LOG_ERROR("Failed to load memory pool from file " << state_file_path);
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m_transactions.clear();
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m_spent_key_images.clear();
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}
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return res;
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for (auto it = m_transactions.begin(); it != m_transactions.end(); ) {
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auto it2 = it++;
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if (it2->second.blob_size >= TRANSACTION_SIZE_LIMIT) {
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LOG_PRINT_L0("Transaction " << get_transaction_hash(it2->second.tx) << " is too big (" << it2->second.blob_size << " bytes), removing it from pool");
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remove_transaction_keyimages(it2->second.tx);
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m_transactions.erase(it2);
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}
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}
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// Ignore deserialization error
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return true;
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}
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//---------------------------------------------------------------------------------
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@ -61,28 +61,22 @@ namespace cryptonote
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//gets tx and remove it from pool
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bool take_tx(const crypto::hash &id, transaction &tx, size_t& blob_size, uint64_t& fee);
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bool have_tx(const crypto::hash &id);
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bool have_tx_keyimg_as_spent(const crypto::key_image& key_im);
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bool have_tx_keyimges_as_spent(const transaction& tx);
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bool have_tx(const crypto::hash &id) const;
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bool on_blockchain_inc(uint64_t new_block_height, const crypto::hash& top_block_id);
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bool on_blockchain_dec(uint64_t new_block_height, const crypto::hash& top_block_id);
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void on_idle();
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void lock();
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void unlock();
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void lock() const;
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void unlock() const;
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// load/store operations
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bool init(const std::string& config_folder);
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bool deinit();
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bool fill_block_template(block &bl, size_t median_size, uint64_t already_generated_coins, size_t &total_size, uint64_t &fee);
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bool get_transactions(std::list<transaction>& txs);
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bool get_transaction(const crypto::hash& h, transaction& tx);
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size_t get_transactions_count();
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bool remove_transaction_keyimages(const transaction& tx);
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bool have_key_images(const std::unordered_set<crypto::key_image>& kic, const transaction& tx);
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bool append_key_images(std::unordered_set<crypto::key_image>& kic, const transaction& tx);
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std::string print_pool(bool short_format);
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void get_transactions(std::list<transaction>& txs) const;
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bool get_transaction(const crypto::hash& h, transaction& tx) const;
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size_t get_transactions_count() const;
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std::string print_pool(bool short_format) const;
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/*bool flush_pool(const std::strig& folder);
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bool inflate_pool(const std::strig& folder);*/
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@ -115,11 +109,17 @@ namespace cryptonote
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private:
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bool remove_stuck_transactions();
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bool is_transaction_ready_to_go(tx_details& txd);
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bool have_tx_keyimg_as_spent(const crypto::key_image& key_im) const;
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bool have_tx_keyimges_as_spent(const transaction& tx) const;
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bool remove_transaction_keyimages(const transaction& tx);
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static bool have_key_images(const std::unordered_set<crypto::key_image>& kic, const transaction& tx);
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static bool append_key_images(std::unordered_set<crypto::key_image>& kic, const transaction& tx);
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bool is_transaction_ready_to_go(tx_details& txd) const;
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typedef std::unordered_map<crypto::hash, tx_details > transactions_container;
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typedef std::unordered_map<crypto::key_image, std::unordered_set<crypto::hash> > key_images_container;
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epee::critical_section m_transactions_lock;
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mutable epee::critical_section m_transactions_lock;
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transactions_container m_transactions;
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key_images_container m_spent_key_images;
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epee::math_helper::once_a_time_seconds<30> m_remove_stuck_tx_interval;
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