minor bugfixes and refactoring
- Blockchain should store if it's running on testnet or not - moved loading compiled-in block hashes to its own function for clarity - on handle_get_objects, should now correctly return false if a block's transactions are missing - replace instances of BOOST_FOREACH with C++11 for loops in Blockchain.
This commit is contained in:
parent
098dcf2885
commit
1642be242d
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@ -270,7 +270,8 @@ bool Blockchain::init(BlockchainDB* db, const bool testnet, const bool fakechain
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m_db = db;
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m_db = db;
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if (testnet) {
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m_testnet = testnet;
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if (m_testnet) {
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m_hardfork = new HardFork(*db, 1, testnet_hard_fork_version_1_till);
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m_hardfork = new HardFork(*db, 1, testnet_hard_fork_version_1_till);
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for (size_t n = 0; n < sizeof(testnet_hard_forks) / sizeof(testnet_hard_forks[0]); ++n)
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for (size_t n = 0; n < sizeof(testnet_hard_forks) / sizeof(testnet_hard_forks[0]); ++n)
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m_hardfork->add_fork(testnet_hard_forks[n].version, testnet_hard_forks[n].height, testnet_hard_forks[n].threshold, testnet_hard_forks[n].time);
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m_hardfork->add_fork(testnet_hard_forks[n].version, testnet_hard_forks[n].height, testnet_hard_forks[n].threshold, testnet_hard_forks[n].time);
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@ -292,7 +293,7 @@ bool Blockchain::init(BlockchainDB* db, const bool testnet, const bool fakechain
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LOG_PRINT_L0("Blockchain not loaded, generating genesis block.");
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LOG_PRINT_L0("Blockchain not loaded, generating genesis block.");
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block bl = boost::value_initialized<block>();
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block bl = boost::value_initialized<block>();
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block_verification_context bvc = boost::value_initialized<block_verification_context>();
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block_verification_context bvc = boost::value_initialized<block_verification_context>();
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if (testnet)
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if (m_testnet)
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{
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{
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generate_genesis_block(bl, config::testnet::GENESIS_TX, config::testnet::GENESIS_NONCE);
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generate_genesis_block(bl, config::testnet::GENESIS_TX, config::testnet::GENESIS_NONCE);
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}
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}
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@ -330,45 +331,8 @@ bool Blockchain::init(BlockchainDB* db, const bool testnet, const bool fakechain
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m_async_pool.create_thread(boost::bind(&boost::asio::io_service::run, &m_async_service));
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m_async_pool.create_thread(boost::bind(&boost::asio::io_service::run, &m_async_service));
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#if defined(PER_BLOCK_CHECKPOINT)
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#if defined(PER_BLOCK_CHECKPOINT)
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if (!fakechain && m_fast_sync && get_blocks_dat_start(testnet) != nullptr)
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if (!fakechain)
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{
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load_compiled_in_block_hashes();
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if (get_blocks_dat_size(testnet) > 4)
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{
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const unsigned char *p = get_blocks_dat_start(testnet);
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const uint32_t nblocks = *p | ((*(p+1))<<8) | ((*(p+2))<<16) | ((*(p+3))<<24);
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const size_t size_needed = 4 + nblocks * sizeof(crypto::hash);
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if(nblocks > 0 && nblocks > m_db->height() && get_blocks_dat_size(testnet) >= size_needed)
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{
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LOG_PRINT_L0("Loading precomputed blocks: " << nblocks);
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p += sizeof(uint32_t);
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for (uint32_t i = 0; i < nblocks; i++)
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{
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crypto::hash hash;
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memcpy(hash.data, p, sizeof(hash.data));
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p += sizeof(hash.data);
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m_blocks_hash_check.push_back(hash);
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}
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// FIXME: clear tx_pool because the process might have been
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// terminated and caused it to store txs kept by blocks.
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// The core will not call check_tx_inputs(..) for these
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// transactions in this case. Consequently, the sanity check
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// for tx hashes will fail in handle_block_to_main_chain(..)
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std::list<transaction> txs;
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m_tx_pool.get_transactions(txs);
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size_t blob_size;
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uint64_t fee;
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bool relayed;
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transaction pool_tx;
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for(const transaction &tx : txs)
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{
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crypto::hash tx_hash = get_transaction_hash(tx);
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m_tx_pool.take_tx(tx_hash, pool_tx, blob_size, fee, relayed);
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}
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}
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}
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}
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#endif
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#endif
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LOG_PRINT_GREEN("Blockchain initialized. last block: " << m_db->height() - 1 << ", " << epee::misc_utils::get_time_interval_string(timestamp_diff) << " time ago, current difficulty: " << get_difficulty_for_next_block(), LOG_LEVEL_0);
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LOG_PRINT_GREEN("Blockchain initialized. last block: " << m_db->height() - 1 << ", " << epee::misc_utils::get_time_interval_string(timestamp_diff) << " time ago, current difficulty: " << get_difficulty_for_next_block(), LOG_LEVEL_0);
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@ -652,10 +616,10 @@ void Blockchain::get_all_known_block_ids(std::list<crypto::hash> &main, std::lis
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main.push_back(a);
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main.push_back(a);
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}
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}
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BOOST_FOREACH(const blocks_ext_by_hash::value_type &v, m_alternative_chains)
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for (const blocks_ext_by_hash::value_type &v: m_alternative_chains)
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alt.push_back(v.first);
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alt.push_back(v.first);
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BOOST_FOREACH(const blocks_ext_by_hash::value_type &v, m_invalid_blocks)
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for (const blocks_ext_by_hash::value_type &v: m_invalid_blocks)
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invalid.push_back(v.first);
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invalid.push_back(v.first);
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}
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}
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//------------------------------------------------------------------
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//------------------------------------------------------------------
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@ -836,7 +800,7 @@ bool Blockchain::switch_to_alternative_blockchain(std::list<blocks_ext_by_hash::
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}
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}
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//removing alt_chain entries from alternative chain
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//removing alt_chain entries from alternative chain
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BOOST_FOREACH(auto ch_ent, alt_chain)
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for (auto ch_ent: alt_chain)
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{
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{
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m_alternative_chains.erase(ch_ent);
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m_alternative_chains.erase(ch_ent);
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}
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}
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@ -948,7 +912,7 @@ bool Blockchain::validate_miner_transaction(const block& b, size_t cumulative_bl
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LOG_PRINT_L3("Blockchain::" << __func__);
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LOG_PRINT_L3("Blockchain::" << __func__);
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//validate reward
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//validate reward
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uint64_t money_in_use = 0;
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uint64_t money_in_use = 0;
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BOOST_FOREACH(auto& o, b.miner_tx.vout)
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for (auto& o: b.miner_tx.vout)
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money_in_use += o.amount;
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money_in_use += o.amount;
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partial_block_reward = false;
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partial_block_reward = false;
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@ -1055,7 +1019,7 @@ bool Blockchain::create_block_template(block& b, const account_public_address& m
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size_t real_txs_size = 0;
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size_t real_txs_size = 0;
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uint64_t real_fee = 0;
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uint64_t real_fee = 0;
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CRITICAL_REGION_BEGIN(m_tx_pool.m_transactions_lock);
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CRITICAL_REGION_BEGIN(m_tx_pool.m_transactions_lock);
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BOOST_FOREACH(crypto::hash &cur_hash, b.tx_hashes)
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for(crypto::hash &cur_hash: b.tx_hashes)
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{
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{
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auto cur_res = m_tx_pool.m_transactions.find(cur_hash);
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auto cur_res = m_tx_pool.m_transactions.find(cur_hash);
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if (cur_res == m_tx_pool.m_transactions.end())
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if (cur_res == m_tx_pool.m_transactions.end())
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@ -1409,26 +1373,40 @@ bool Blockchain::handle_get_objects(NOTIFY_REQUEST_GET_OBJECTS::request& arg, NO
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std::list<block> blocks;
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std::list<block> blocks;
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get_blocks(arg.blocks, blocks, rsp.missed_ids);
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get_blocks(arg.blocks, blocks, rsp.missed_ids);
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BOOST_FOREACH(const auto& bl, blocks)
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for (const auto& bl: blocks)
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{
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{
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std::list<crypto::hash> missed_tx_id;
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std::list<crypto::hash> missed_tx_ids;
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std::list<transaction> txs;
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std::list<transaction> txs;
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get_transactions(bl.tx_hashes, txs, rsp.missed_ids);
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get_transactions(bl.tx_hashes, txs, missed_tx_ids);
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CHECK_AND_ASSERT_MES(!missed_tx_id.size(), false, "Internal error: has missed missed_tx_id.size()=" << missed_tx_id.size()
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<< std::endl << "for block id = " << get_block_hash(bl));
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if (missed_tx_ids.size() != 0)
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{
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LOG_ERROR("Error retrieving blocks, missed " << missed_tx_ids.size()
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<< " transactions for block with hash: " << get_block_hash(bl)
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<< std::endl
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);
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rsp.missed_ids.push_back(get_block_hash(bl));
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// append missed transaction hashes to response missed_ids field,
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// as done below if any standalone transactions were requested
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// and missed.
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rsp.missed_ids.splice(rsp.missed_ids.end(), missed_tx_ids);
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return false;
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}
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rsp.blocks.push_back(block_complete_entry());
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rsp.blocks.push_back(block_complete_entry());
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block_complete_entry& e = rsp.blocks.back();
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block_complete_entry& e = rsp.blocks.back();
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//pack block
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//pack block
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e.block = t_serializable_object_to_blob(bl);
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e.block = t_serializable_object_to_blob(bl);
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//pack transactions
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//pack transactions
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BOOST_FOREACH(transaction& tx, txs)
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for (transaction& tx: txs)
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e.txs.push_back(t_serializable_object_to_blob(tx));
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e.txs.push_back(t_serializable_object_to_blob(tx));
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}
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}
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//get another transactions, if need
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//get another transactions, if need
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std::list<transaction> txs;
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std::list<transaction> txs;
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get_transactions(arg.txs, txs, rsp.missed_ids);
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get_transactions(arg.txs, txs, rsp.missed_ids);
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//pack aside transactions
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//pack aside transactions
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BOOST_FOREACH(const auto& tx, txs)
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for (const auto& tx: txs)
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rsp.txs.push_back(t_serializable_object_to_blob(tx));
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rsp.txs.push_back(t_serializable_object_to_blob(tx));
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return true;
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return true;
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@ -1439,7 +1417,7 @@ bool Blockchain::get_alternative_blocks(std::list<block>& blocks) const
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LOG_PRINT_L3("Blockchain::" << __func__);
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LOG_PRINT_L3("Blockchain::" << __func__);
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CRITICAL_REGION_LOCAL(m_blockchain_lock);
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CRITICAL_REGION_LOCAL(m_blockchain_lock);
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BOOST_FOREACH(const auto& alt_bl, m_alternative_chains)
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for (const auto& alt_bl: m_alternative_chains)
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{
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{
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blocks.push_back(alt_bl.second.bl);
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blocks.push_back(alt_bl.second.bl);
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}
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}
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@ -1988,7 +1966,7 @@ bool Blockchain::check_tx_outputs(const transaction& tx)
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// from hard fork 2, we forbid dust and compound outputs
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// from hard fork 2, we forbid dust and compound outputs
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if (m_hardfork->get_current_version() >= 2) {
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if (m_hardfork->get_current_version() >= 2) {
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BOOST_FOREACH(auto &o, tx.vout) {
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for (auto &o: tx.vout) {
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if (!is_valid_decomposed_amount(o.amount)) {
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if (!is_valid_decomposed_amount(o.amount)) {
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return false;
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return false;
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}
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}
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@ -2001,7 +1979,7 @@ bool Blockchain::check_tx_outputs(const transaction& tx)
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bool Blockchain::have_tx_keyimges_as_spent(const transaction &tx) const
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bool Blockchain::have_tx_keyimges_as_spent(const transaction &tx) const
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{
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{
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LOG_PRINT_L3("Blockchain::" << __func__);
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LOG_PRINT_L3("Blockchain::" << __func__);
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BOOST_FOREACH(const txin_v& in, tx.vin)
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for (const txin_v& in: tx.vin)
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{
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{
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CHECKED_GET_SPECIFIC_VARIANT(in, const txin_to_key, in_to_key, true);
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CHECKED_GET_SPECIFIC_VARIANT(in, const txin_to_key, in_to_key, true);
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if(have_tx_keyimg_as_spent(in_to_key.k_image))
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if(have_tx_keyimg_as_spent(in_to_key.k_image))
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@ -3249,6 +3227,49 @@ bool Blockchain::get_hard_fork_voting_info(uint8_t version, uint32_t &window, ui
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return m_hardfork->get_voting_info(version, window, votes, threshold, earliest_height, voting);
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return m_hardfork->get_voting_info(version, window, votes, threshold, earliest_height, voting);
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}
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}
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void Blockchain::load_compiled_in_block_hashes()
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{
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if (m_fast_sync && get_blocks_dat_start(m_testnet) != nullptr)
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{
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if (get_blocks_dat_size(m_testnet) > 4)
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{
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const unsigned char *p = get_blocks_dat_start(m_testnet);
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const uint32_t nblocks = *p | ((*(p+1))<<8) | ((*(p+2))<<16) | ((*(p+3))<<24);
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const size_t size_needed = 4 + nblocks * sizeof(crypto::hash);
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if(nblocks > 0 && nblocks > m_db->height() && get_blocks_dat_size(m_testnet) >= size_needed)
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{
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LOG_PRINT_L0("Loading precomputed blocks: " << nblocks);
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p += sizeof(uint32_t);
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for (uint32_t i = 0; i < nblocks; i++)
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{
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crypto::hash hash;
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memcpy(hash.data, p, sizeof(hash.data));
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p += sizeof(hash.data);
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m_blocks_hash_check.push_back(hash);
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}
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// FIXME: clear tx_pool because the process might have been
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// terminated and caused it to store txs kept by blocks.
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// The core will not call check_tx_inputs(..) for these
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// transactions in this case. Consequently, the sanity check
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// for tx hashes will fail in handle_block_to_main_chain(..)
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std::list<transaction> txs;
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m_tx_pool.get_transactions(txs);
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size_t blob_size;
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uint64_t fee;
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bool relayed;
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transaction pool_tx;
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for(const transaction &tx : txs)
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{
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crypto::hash tx_hash = get_transaction_hash(tx);
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m_tx_pool.take_tx(tx_hash, pool_tx, blob_size, fee, relayed);
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}
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}
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}
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}
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}
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bool Blockchain::for_all_key_images(std::function<bool(const crypto::key_image&)> f) const
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bool Blockchain::for_all_key_images(std::function<bool(const crypto::key_image&)> f) const
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{
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{
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return m_db->for_all_key_images(f);
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return m_db->for_all_key_images(f);
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@ -239,6 +239,8 @@ namespace cryptonote
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HardFork *m_hardfork;
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HardFork *m_hardfork;
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bool m_testnet;
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template<class visitor_t>
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template<class visitor_t>
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inline bool scan_outputkeys_for_indexes(const txin_to_key& tx_in_to_key, visitor_t &vis, const crypto::hash &tx_prefix_hash, uint64_t* pmax_related_block_height = NULL) const;
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inline bool scan_outputkeys_for_indexes(const txin_to_key& tx_in_to_key, visitor_t &vis, const crypto::hash &tx_prefix_hash, uint64_t* pmax_related_block_height = NULL) const;
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bool check_tx_input(const txin_to_key& txin, const crypto::hash& tx_prefix_hash, const std::vector<crypto::signature>& sig, std::vector<crypto::public_key> &output_keys, uint64_t* pmax_related_block_height);
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bool check_tx_input(const txin_to_key& txin, const crypto::hash& tx_prefix_hash, const std::vector<crypto::signature>& sig, std::vector<crypto::public_key> &output_keys, uint64_t* pmax_related_block_height);
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@ -274,5 +276,14 @@ namespace cryptonote
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void get_timestamp_and_difficulty(uint64_t ×tamp, difficulty_type &difficulty, const int offset) const;
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void get_timestamp_and_difficulty(uint64_t ×tamp, difficulty_type &difficulty, const int offset) const;
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void check_ring_signature(const crypto::hash &tx_prefix_hash, const crypto::key_image &key_image,
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void check_ring_signature(const crypto::hash &tx_prefix_hash, const crypto::key_image &key_image,
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const std::vector<crypto::public_key> &pubkeys, const std::vector<crypto::signature> &sig, uint64_t &result);
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const std::vector<crypto::public_key> &pubkeys, const std::vector<crypto::signature> &sig, uint64_t &result);
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/**
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* @brief loads block hashes from compiled-in data set
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*
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* A (possibly empty) set of block hashes can be compiled into the
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* monero daemon binary. This function loads those hashes into
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* a useful state.
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*/
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void load_compiled_in_block_hashes();
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};
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};
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} // namespace cryptonote
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} // namespace cryptonote
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