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https://github.com/monero-project/monero.git
synced 2024-12-14 20:36:31 +02:00
blockchain_ancestry: faster and uses less memory
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parent
2382484dcd
commit
628428a0df
@ -73,31 +73,101 @@ namespace std
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{
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{
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size_t operator()(const ancestor &a) const
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size_t operator()(const ancestor &a) const
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{
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{
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crypto::hash h;
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return a.amount ^ a.offset; // not that bad, since amount almost always have a high bit set, and offset doesn't
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crypto::cn_fast_hash(&a, sizeof(a), h);
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return reinterpret_cast<const std::size_t &>(h);
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}
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}
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};
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};
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}
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}
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struct tx_data_t
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{
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std::vector<std::pair<uint64_t, std::vector<uint64_t>>> vin;
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std::vector<crypto::public_key> vout;
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bool coinbase;
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tx_data_t(): coinbase(false) {}
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tx_data_t(const cryptonote::transaction &tx)
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{
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coinbase = tx.vin.size() == 1 && tx.vin[0].type() == typeid(cryptonote::txin_gen);
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if (!coinbase)
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{
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vin.reserve(tx.vin.size());
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for (size_t ring = 0; ring < tx.vin.size(); ++ring)
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{
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if (tx.vin[ring].type() == typeid(cryptonote::txin_to_key))
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{
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const cryptonote::txin_to_key &txin = boost::get<cryptonote::txin_to_key>(tx.vin[ring]);
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vin.push_back(std::make_pair(txin.amount, cryptonote::relative_output_offsets_to_absolute(txin.key_offsets)));
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}
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else
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{
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LOG_PRINT_L0("Bad vin type in txid " << get_transaction_hash(tx));
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throw std::runtime_error("Bad vin type");
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}
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}
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}
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vout.reserve(tx.vout.size());
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for (size_t out = 0; out < tx.vout.size(); ++out)
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{
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if (tx.vout[out].target.type() == typeid(cryptonote::txout_to_key))
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{
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const auto &txout = boost::get<cryptonote::txout_to_key>(tx.vout[out].target);
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vout.push_back(txout.key);
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}
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else
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{
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LOG_PRINT_L0("Bad vout type in txid " << get_transaction_hash(tx));
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throw std::runtime_error("Bad vout type");
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}
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}
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}
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template <typename t_archive> void serialize(t_archive &a, const unsigned int ver)
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{
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a & coinbase;
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a & vin;
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a & vout;
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}
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};
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struct ancestry_state_t
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struct ancestry_state_t
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{
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{
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uint64_t height;
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uint64_t height;
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std::unordered_map<crypto::hash, std::unordered_set<ancestor>> ancestry;
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std::unordered_map<crypto::hash, std::unordered_set<ancestor>> ancestry;
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std::unordered_map<ancestor, crypto::hash> output_cache;
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std::unordered_map<ancestor, crypto::hash> output_cache;
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std::unordered_map<crypto::hash, cryptonote::transaction> tx_cache;
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std::unordered_map<crypto::hash, ::tx_data_t> tx_cache;
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std::unordered_map<uint64_t, cryptonote::block> block_cache;
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std::vector<cryptonote::block> block_cache;
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template <typename t_archive> void serialize(t_archive &a, const unsigned int ver)
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template <typename t_archive> void serialize(t_archive &a, const unsigned int ver)
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{
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{
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a & height;
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a & height;
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a & ancestry;
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a & ancestry;
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a & output_cache;
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a & output_cache;
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a & tx_cache;
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if (ver < 1)
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a & block_cache;
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{
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std::unordered_map<crypto::hash, cryptonote::transaction> old_tx_cache;
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a & old_tx_cache;
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for (const auto i: old_tx_cache)
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tx_cache.insert(std::make_pair(i.first, ::tx_data_t(i.second)));
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}
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else
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{
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a & tx_cache;
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}
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if (ver < 2)
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{
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std::unordered_map<uint64_t, cryptonote::block> old_block_cache;
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a & old_block_cache;
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block_cache.resize(old_block_cache.size());
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for (const auto i: old_block_cache)
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block_cache[i.first] = i.second;
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}
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else
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{
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a & block_cache;
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}
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}
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}
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};
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};
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BOOST_CLASS_VERSION(ancestry_state_t, 0)
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BOOST_CLASS_VERSION(ancestry_state_t, 2)
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static void add_ancestor(std::unordered_map<ancestor, unsigned int> &ancestry, uint64_t amount, uint64_t offset)
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static void add_ancestor(std::unordered_map<ancestor, unsigned int> &ancestry, uint64_t amount, uint64_t offset)
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{
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{
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@ -333,6 +403,7 @@ int main(int argc, char* argv[])
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MINFO("Starting from height " << state.height);
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MINFO("Starting from height " << state.height);
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const uint64_t db_height = db->height();
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const uint64_t db_height = db->height();
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state.block_cache.reserve(db_height);
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for (uint64_t h = state.height; h < db_height; ++h)
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for (uint64_t h = state.height; h < db_height; ++h)
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{
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{
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size_t block_ancestry_size = 0;
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size_t block_ancestry_size = 0;
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@ -346,7 +417,10 @@ int main(int argc, char* argv[])
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return 1;
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return 1;
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}
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}
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if (opt_cache_blocks)
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if (opt_cache_blocks)
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state.block_cache.insert(std::make_pair(h, b));
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{
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state.block_cache.resize(h + 1);
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state.block_cache[h] = b;
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}
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std::vector<crypto::hash> txids;
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std::vector<crypto::hash> txids;
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txids.reserve(1 + b.tx_hashes.size());
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txids.reserve(1 + b.tx_hashes.size());
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if (opt_include_coinbase)
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if (opt_include_coinbase)
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@ -357,13 +431,13 @@ int main(int argc, char* argv[])
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{
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{
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printf("%lu/%lu \r", (unsigned long)h, (unsigned long)db_height);
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printf("%lu/%lu \r", (unsigned long)h, (unsigned long)db_height);
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fflush(stdout);
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fflush(stdout);
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cryptonote::transaction tx;
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::tx_data_t tx_data;
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std::unordered_map<crypto::hash, cryptonote::transaction>::const_iterator i = state.tx_cache.find(txid);
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std::unordered_map<crypto::hash, ::tx_data_t>::const_iterator i = state.tx_cache.find(txid);
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++total_txes;
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++total_txes;
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if (i != state.tx_cache.end())
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if (i != state.tx_cache.end())
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{
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{
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++cached_txes;
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++cached_txes;
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tx = i->second;
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tx_data = i->second;
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}
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}
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else
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else
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{
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{
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@ -373,39 +447,38 @@ int main(int argc, char* argv[])
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LOG_PRINT_L0("Failed to get txid " << txid << " from db");
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LOG_PRINT_L0("Failed to get txid " << txid << " from db");
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return 1;
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return 1;
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}
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}
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cryptonote::transaction tx;
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if (!cryptonote::parse_and_validate_tx_base_from_blob(bd, tx))
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if (!cryptonote::parse_and_validate_tx_base_from_blob(bd, tx))
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{
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{
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LOG_PRINT_L0("Bad tx: " << txid);
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LOG_PRINT_L0("Bad tx: " << txid);
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return 1;
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return 1;
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}
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}
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tx_data = ::tx_data_t(tx);
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if (opt_cache_txes)
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if (opt_cache_txes)
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state.tx_cache.insert(std::make_pair(txid, tx));
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state.tx_cache.insert(std::make_pair(txid, tx_data));
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}
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}
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const bool coinbase = tx.vin.size() == 1 && tx.vin[0].type() == typeid(cryptonote::txin_gen);
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if (tx_data.coinbase)
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if (coinbase)
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{
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{
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add_ancestry(state.ancestry, txid, std::unordered_set<ancestor>());
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add_ancestry(state.ancestry, txid, std::unordered_set<ancestor>());
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}
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}
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else
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else
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{
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{
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for (size_t ring = 0; ring < tx.vin.size(); ++ring)
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for (size_t ring = 0; ring < tx_data.vin.size(); ++ring)
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{
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{
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if (tx.vin[ring].type() == typeid(cryptonote::txin_to_key))
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if (1)
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{
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{
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const cryptonote::txin_to_key &txin = boost::get<cryptonote::txin_to_key>(tx.vin[ring]);
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const uint64_t amount = tx_data.vin[ring].first;
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const uint64_t amount = txin.amount;
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const std::vector<uint64_t> &absolute_offsets = tx_data.vin[ring].second;
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auto absolute_offsets = cryptonote::relative_output_offsets_to_absolute(txin.key_offsets);
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for (uint64_t offset: absolute_offsets)
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for (uint64_t offset: absolute_offsets)
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{
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{
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const output_data_t od = db->get_output_key(amount, offset);
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const output_data_t od = db->get_output_key(amount, offset);
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add_ancestry(state.ancestry, txid, ancestor{amount, offset});
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add_ancestry(state.ancestry, txid, ancestor{amount, offset});
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cryptonote::block b;
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cryptonote::block b;
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auto iblock = state.block_cache.find(od.height);
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++total_blocks;
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++total_blocks;
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if (iblock != state.block_cache.end())
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if (state.block_cache.size() > od.height && !state.block_cache[od.height].miner_tx.vin.empty())
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{
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{
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++cached_blocks;
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++cached_blocks;
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b = iblock->second;
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b = state.block_cache[od.height];
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}
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}
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else
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else
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{
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{
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@ -417,7 +490,10 @@ int main(int argc, char* argv[])
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return 1;
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return 1;
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}
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}
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if (opt_cache_blocks)
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if (opt_cache_blocks)
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state.block_cache.insert(std::make_pair(od.height, b));
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{
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state.block_cache.resize(od.height + 1);
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state.block_cache[od.height] = b;
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}
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}
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}
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// find the tx which created this output
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// find the tx which created this output
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bool found = false;
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bool found = false;
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{
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{
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if (found)
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if (found)
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break;
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break;
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cryptonote::transaction tx2;
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::tx_data_t tx_data2;
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std::unordered_map<crypto::hash, cryptonote::transaction>::const_iterator i = state.tx_cache.find(block_txid);
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std::unordered_map<crypto::hash, ::tx_data_t>::const_iterator i = state.tx_cache.find(block_txid);
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++total_txes;
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++total_txes;
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if (i != state.tx_cache.end())
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if (i != state.tx_cache.end())
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{
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{
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++cached_txes;
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++cached_txes;
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tx2 = i->second;
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tx_data2 = i->second;
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}
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}
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else
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else
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{
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{
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@ -469,32 +545,25 @@ int main(int argc, char* argv[])
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LOG_PRINT_L0("Failed to get txid " << block_txid << " from db");
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LOG_PRINT_L0("Failed to get txid " << block_txid << " from db");
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return 1;
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return 1;
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}
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}
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if (!cryptonote::parse_and_validate_tx_base_from_blob(bd, tx2))
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cryptonote::transaction tx;
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if (!cryptonote::parse_and_validate_tx_base_from_blob(bd, tx))
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{
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{
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LOG_PRINT_L0("Bad tx: " << block_txid);
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LOG_PRINT_L0("Bad tx: " << block_txid);
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return 1;
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return 1;
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}
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}
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tx_data2 = ::tx_data_t(tx);
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if (opt_cache_txes)
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if (opt_cache_txes)
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state.tx_cache.insert(std::make_pair(block_txid, tx2));
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state.tx_cache.insert(std::make_pair(block_txid, tx_data2));
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}
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}
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for (size_t out = 0; out < tx2.vout.size(); ++out)
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for (size_t out = 0; out < tx_data2.vout.size(); ++out)
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{
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{
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if (tx2.vout[out].target.type() == typeid(cryptonote::txout_to_key))
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if (tx_data2.vout[out] == od.pubkey)
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{
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{
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const auto &txout = boost::get<cryptonote::txout_to_key>(tx2.vout[out].target);
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found = true;
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if (txout.key == od.pubkey)
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add_ancestry(state.ancestry, txid, get_ancestry(state.ancestry, block_txid));
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{
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if (opt_cache_outputs)
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found = true;
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state.output_cache.insert(std::make_pair(ancestor{amount, offset}, block_txid));
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add_ancestry(state.ancestry, txid, get_ancestry(state.ancestry, block_txid));
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break;
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if (opt_cache_outputs)
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state.output_cache.insert(std::make_pair(ancestor{amount, offset}, block_txid));
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break;
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}
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}
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else
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{
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LOG_PRINT_L0("Bad vout type in txid " << block_txid);
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return 1;
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}
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}
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}
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}
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}
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}
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@ -505,11 +574,6 @@ int main(int argc, char* argv[])
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}
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}
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}
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}
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}
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}
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else
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{
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LOG_PRINT_L0("Bad vin type in txid " << txid);
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return 1;
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}
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}
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}
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}
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}
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const size_t ancestry_size = get_ancestry(state.ancestry, txid).size();
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const size_t ancestry_size = get_ancestry(state.ancestry, txid).size();
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