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https://codeberg.org/anoncontributorxmr/monero.git
synced 2024-11-23 03:13:28 +01:00
tx_pool: full tx revalidation on fork boundaries
avoids mining txes after a fork that are invalid by this fork's rules, but were valid by the previous fork rules at the time they were verified and added to the txpool.
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c458d5fe40
commit
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@ -588,6 +588,7 @@ block Blockchain::pop_block_from_blockchain()
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CHECK_AND_ASSERT_THROW_MES(m_db->height() > 1, "Cannot pop the genesis block");
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CHECK_AND_ASSERT_THROW_MES(m_db->height() > 1, "Cannot pop the genesis block");
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const uint8_t previous_hf_version = get_current_hard_fork_version();
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try
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try
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{
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{
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m_db->pop_block(popped_block, popped_txs);
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m_db->pop_block(popped_block, popped_txs);
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@ -650,6 +651,13 @@ block Blockchain::pop_block_from_blockchain()
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m_tx_pool.on_blockchain_dec(top_block_height, top_block_hash);
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m_tx_pool.on_blockchain_dec(top_block_height, top_block_hash);
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invalidate_block_template_cache();
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invalidate_block_template_cache();
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const uint8_t new_hf_version = get_current_hard_fork_version();
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if (new_hf_version != previous_hf_version)
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{
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MINFO("Validating txpool for v" << (unsigned)new_hf_version);
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m_tx_pool.validate(new_hf_version);
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}
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return popped_block;
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return popped_block;
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}
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}
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//------------------------------------------------------------------
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//------------------------------------------------------------------
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@ -4392,6 +4400,19 @@ leave:
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get_difficulty_for_next_block(); // just to cache it
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get_difficulty_for_next_block(); // just to cache it
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invalidate_block_template_cache();
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invalidate_block_template_cache();
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const uint8_t new_hf_version = get_current_hard_fork_version();
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if (new_hf_version != hf_version)
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{
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// the genesis block is added before everything's setup, and the txpool is empty
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// when we start from scratch, so we skip this
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const bool is_genesis_block = new_height == 1;
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if (!is_genesis_block)
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{
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MGINFO("Validating txpool for v" << (unsigned)new_hf_version);
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m_tx_pool.validate(new_hf_version);
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}
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}
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send_miner_notifications(id, already_generated_coins);
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send_miner_notifications(id, already_generated_coins);
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for (const auto& notifier: m_block_notifiers)
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for (const auto& notifier: m_block_notifiers)
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@ -1568,61 +1568,59 @@ namespace cryptonote
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{
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{
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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CRITICAL_REGION_LOCAL(m_transactions_lock);
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CRITICAL_REGION_LOCAL1(m_blockchain);
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CRITICAL_REGION_LOCAL1(m_blockchain);
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size_t tx_weight_limit = get_transaction_weight_limit(version);
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std::unordered_set<crypto::hash> remove;
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m_txpool_weight = 0;
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MINFO("Validating txpool contents for v" << (unsigned)version);
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m_blockchain.for_all_txpool_txes([this, &remove, tx_weight_limit](const crypto::hash &txid, const txpool_tx_meta_t &meta, const cryptonote::blobdata_ref*) {
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m_txpool_weight += meta.weight;
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LockedTXN lock(m_blockchain.get_db());
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if (meta.weight > tx_weight_limit) {
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LOG_PRINT_L1("Transaction " << txid << " is too big (" << meta.weight << " bytes), removing it from pool");
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struct tx_entry_t
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remove.insert(txid);
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{
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}
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crypto::hash txid;
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else if (m_blockchain.have_tx(txid)) {
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txpool_tx_meta_t meta;
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LOG_PRINT_L1("Transaction " << txid << " is in the blockchain, removing it from pool");
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};
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remove.insert(txid);
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}
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// get all txids
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std::vector<tx_entry_t> txes;
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m_blockchain.for_all_txpool_txes([this, &txes](const crypto::hash &txid, const txpool_tx_meta_t &meta, const cryptonote::blobdata_ref*) {
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if (!meta.pruned) // skip pruned txes
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txes.push_back({txid, meta});
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return true;
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return true;
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}, false, relay_category::all);
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}, false, relay_category::all);
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size_t n_removed = 0;
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// take them all out and add them back in, some might fail
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if (!remove.empty())
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size_t added = 0;
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{
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for (auto &e: txes)
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LockedTXN lock(m_blockchain.get_db());
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for (const crypto::hash &txid: remove)
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{
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{
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try
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try
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{
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{
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cryptonote::blobdata txblob = m_blockchain.get_txpool_tx_blob(txid, relay_category::all);
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size_t weight;
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uint64_t fee;
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cryptonote::transaction tx;
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cryptonote::transaction tx;
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if (!parse_and_validate_tx_from_blob(txblob, tx)) // remove pruned ones on startup, they're meant to be temporary
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cryptonote::blobdata blob;
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bool relayed, do_not_relay, double_spend_seen, pruned;
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if (!take_tx(e.txid, tx, blob, weight, fee, relayed, do_not_relay, double_spend_seen, pruned))
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MERROR("Failed to get tx " << e.txid << " from txpool for re-validation");
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cryptonote::tx_verification_context tvc{};
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relay_method tx_relay = e.meta.get_relay_method();
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if (!add_tx(tx, e.txid, blob, e.meta.weight, tvc, tx_relay, relayed, version))
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{
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{
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MERROR("Failed to parse tx from txpool");
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MINFO("Failed to re-validate tx " << e.txid << " for v" << (unsigned)version << ", dropped");
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continue;
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continue;
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}
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}
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// remove tx from db first
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m_blockchain.update_txpool_tx(e.txid, e.meta);
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m_blockchain.remove_txpool_tx(txid);
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++added;
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m_txpool_weight -= get_transaction_weight(tx, txblob.size());
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remove_transaction_keyimages(tx, txid);
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auto sorted_it = find_tx_in_sorted_container(txid);
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if (sorted_it == m_txs_by_fee_and_receive_time.end())
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{
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LOG_PRINT_L1("Removing tx " << txid << " from tx pool, but it was not found in the sorted txs container!");
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}
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else
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{
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m_txs_by_fee_and_receive_time.erase(sorted_it);
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}
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++n_removed;
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}
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}
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catch (const std::exception &e)
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catch (const std::exception &e)
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{
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{
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MERROR("Failed to remove invalid tx from pool");
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MERROR("Failed to re-validate tx from pool");
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// continue
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continue;
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}
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}
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}
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}
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lock.commit();
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lock.commit();
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}
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const size_t n_removed = txes.size() - added;
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if (n_removed > 0)
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if (n_removed > 0)
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++m_cookie;
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++m_cookie;
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return n_removed;
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return n_removed;
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@ -106,10 +106,16 @@ static uint32_t lcg()
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}
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}
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struct BlockchainAndPool
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{
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cryptonote::tx_memory_pool txpool;
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cryptonote::Blockchain bc;
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BlockchainAndPool(): txpool(bc), bc(txpool) {}
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};
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#define PREFIX_WINDOW(hf_version,window) \
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#define PREFIX_WINDOW(hf_version,window) \
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std::unique_ptr<cryptonote::Blockchain> bc; \
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BlockchainAndPool bap; \
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cryptonote::tx_memory_pool txpool(*bc); \
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cryptonote::Blockchain *bc = &bap.bc; \
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bc.reset(new cryptonote::Blockchain(txpool)); \
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struct get_test_options { \
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struct get_test_options { \
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const std::pair<uint8_t, uint64_t> hard_forks[3]; \
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const std::pair<uint8_t, uint64_t> hard_forks[3]; \
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const cryptonote::test_options test_options = { \
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const cryptonote::test_options test_options = { \
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@ -118,8 +124,7 @@ static uint32_t lcg()
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}; \
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}; \
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get_test_options(): hard_forks{std::make_pair(1, (uint64_t)0), std::make_pair((uint8_t)hf_version, (uint64_t)1), std::make_pair((uint8_t)0, (uint64_t)0)} {} \
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get_test_options(): hard_forks{std::make_pair(1, (uint64_t)0), std::make_pair((uint8_t)hf_version, (uint64_t)1), std::make_pair((uint8_t)0, (uint64_t)0)} {} \
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} opts; \
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} opts; \
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cryptonote::Blockchain *blockchain = bc.get(); \
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bool r = bc->init(new TestDB(), cryptonote::FAKECHAIN, true, &opts.test_options, 0, NULL); \
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bool r = blockchain->init(new TestDB(), cryptonote::FAKECHAIN, true, &opts.test_options, 0, NULL); \
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ASSERT_TRUE(r)
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ASSERT_TRUE(r)
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#define PREFIX(hf_version) PREFIX_WINDOW(hf_version, TEST_LONG_TERM_BLOCK_WEIGHT_WINDOW)
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#define PREFIX(hf_version) PREFIX_WINDOW(hf_version, TEST_LONG_TERM_BLOCK_WEIGHT_WINDOW)
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