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rpc: rework to avoid repeated calculations in get_blocks.bin
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@ -2242,7 +2242,7 @@ bool Blockchain::find_blockchain_supplement(const std::list<crypto::hash>& qbloc
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// find split point between ours and foreign blockchain (or start at
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// blockchain height <req_start_block>), and return up to max_count FULL
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// blocks by reference.
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bool Blockchain::find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<cryptonote::blobdata, std::vector<cryptonote::blobdata> > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, size_t max_count) const
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bool Blockchain::find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<std::pair<cryptonote::blobdata, crypto::hash>, std::vector<std::pair<crypto::hash, cryptonote::blobdata> > > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, bool get_miner_tx_hash, size_t max_count) const
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{
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LOG_PRINT_L3("Blockchain::" << __func__);
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CRITICAL_REGION_LOCAL(m_blockchain_lock);
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@ -2272,15 +2272,24 @@ bool Blockchain::find_blockchain_supplement(const uint64_t req_start_block, cons
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for(size_t i = start_height; i < total_height && count < max_count && (size < FIND_BLOCKCHAIN_SUPPLEMENT_MAX_SIZE || count < 3); i++, count++)
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{
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blocks.resize(blocks.size()+1);
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blocks.back().first = m_db->get_block_blob_from_height(i);
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blocks.back().first.first = m_db->get_block_blob_from_height(i);
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block b;
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CHECK_AND_ASSERT_MES(parse_and_validate_block_from_blob(blocks.back().first, b), false, "internal error, invalid block");
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CHECK_AND_ASSERT_MES(parse_and_validate_block_from_blob(blocks.back().first.first, b), false, "internal error, invalid block");
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blocks.back().first.second = get_miner_tx_hash ? cryptonote::get_transaction_hash(b.miner_tx) : crypto::null_hash;
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std::vector<crypto::hash> mis;
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get_transactions_blobs(b.tx_hashes, blocks.back().second, mis, pruned);
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std::vector<cryptonote::blobdata> txs;
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get_transactions_blobs(b.tx_hashes, txs, mis, pruned);
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CHECK_AND_ASSERT_MES(!mis.size(), false, "internal error, transaction from block not found");
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size += blocks.back().first.size();
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for (const auto &t: blocks.back().second)
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size += blocks.back().first.first.size();
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for (const auto &t: txs)
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size += t.size();
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CHECK_AND_ASSERT_MES(txs.size() == b.tx_hashes.size(), false, "mismatched sizes of b.tx_hashes and txs");
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blocks.back().second.reserve(txs.size());
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for (size_t i = 0; i < txs.size(); ++i)
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{
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blocks.back().second.push_back(std::make_pair(b.tx_hashes[i], std::move(txs[i])));
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}
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}
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m_db->block_txn_stop();
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return true;
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@ -420,7 +420,7 @@ namespace cryptonote
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*
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* @return true if a block found in common or req_start_block specified, else false
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*/
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bool find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<cryptonote::blobdata, std::vector<cryptonote::blobdata> > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, size_t max_count) const;
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bool find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<std::pair<cryptonote::blobdata, crypto::hash>, std::vector<std::pair<crypto::hash, cryptonote::blobdata> > > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, bool get_miner_tx_hash, size_t max_count) const;
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/**
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* @brief retrieves a set of blocks and their transactions, and possibly other transactions
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@ -1055,9 +1055,9 @@ namespace cryptonote
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return m_blockchain_storage.find_blockchain_supplement(qblock_ids, resp);
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}
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//-----------------------------------------------------------------------------------------------
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bool core::find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<cryptonote::blobdata, std::vector<cryptonote::blobdata> > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, size_t max_count) const
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bool core::find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<std::pair<cryptonote::blobdata, crypto::hash>, std::vector<std::pair<crypto::hash, cryptonote::blobdata> > > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, bool get_miner_tx_hash, size_t max_count) const
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{
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return m_blockchain_storage.find_blockchain_supplement(req_start_block, qblock_ids, blocks, total_height, start_height, pruned, max_count);
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return m_blockchain_storage.find_blockchain_supplement(req_start_block, qblock_ids, blocks, total_height, start_height, pruned, get_miner_tx_hash, max_count);
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}
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//-----------------------------------------------------------------------------------------------
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bool core::get_random_outs_for_amounts(const COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS::request& req, COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS::response& res) const
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@ -516,7 +516,7 @@ namespace cryptonote
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*
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* @note see Blockchain::find_blockchain_supplement(const uint64_t, const std::list<crypto::hash>&, std::vector<std::pair<cryptonote::blobdata, std::vector<transaction> > >&, uint64_t&, uint64_t&, size_t) const
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*/
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bool find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<cryptonote::blobdata, std::vector<cryptonote::blobdata> > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, size_t max_count) const;
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bool find_blockchain_supplement(const uint64_t req_start_block, const std::list<crypto::hash>& qblock_ids, std::vector<std::pair<std::pair<cryptonote::blobdata, crypto::hash>, std::vector<std::pair<crypto::hash, cryptonote::blobdata> > > >& blocks, uint64_t& total_height, uint64_t& start_height, bool pruned, bool get_miner_tx_hash, size_t max_count) const;
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/**
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* @brief gets some stats about the daemon
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@ -226,9 +226,9 @@ namespace cryptonote
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if (use_bootstrap_daemon_if_necessary<COMMAND_RPC_GET_BLOCKS_FAST>(invoke_http_mode::BIN, "/getblocks.bin", req, res, r))
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return r;
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std::vector<std::pair<cryptonote::blobdata, std::vector<cryptonote::blobdata> > > bs;
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std::vector<std::pair<std::pair<cryptonote::blobdata, crypto::hash>, std::vector<std::pair<crypto::hash, cryptonote::blobdata> > > > bs;
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if(!m_core.find_blockchain_supplement(req.start_height, req.block_ids, bs, res.current_height, res.start_height, req.prune, COMMAND_RPC_GET_BLOCKS_FAST_MAX_COUNT))
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if(!m_core.find_blockchain_supplement(req.start_height, req.block_ids, bs, res.current_height, res.start_height, req.prune, !req.no_miner_tx, COMMAND_RPC_GET_BLOCKS_FAST_MAX_COUNT))
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{
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res.status = "Failed";
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return false;
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@ -240,46 +240,33 @@ namespace cryptonote
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for(auto& bd: bs)
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{
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res.blocks.resize(res.blocks.size()+1);
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res.blocks.back().block = bd.first;
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pruned_size += bd.first.size();
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unpruned_size += bd.first.size();
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res.blocks.back().block = bd.first.first;
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pruned_size += bd.first.first.size();
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unpruned_size += bd.first.first.size();
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res.output_indices.push_back(COMMAND_RPC_GET_BLOCKS_FAST::block_output_indices());
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res.output_indices.back().indices.push_back(COMMAND_RPC_GET_BLOCKS_FAST::tx_output_indices());
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block b;
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if (!parse_and_validate_block_from_blob(bd.first, b))
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{
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res.status = "Invalid block";
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return false;
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}
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if (!req.no_miner_tx)
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{
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bool r = m_core.get_tx_outputs_gindexs(get_transaction_hash(b.miner_tx), res.output_indices.back().indices.back().indices);
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bool r = m_core.get_tx_outputs_gindexs(bd.first.second, res.output_indices.back().indices.back().indices);
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if (!r)
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{
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res.status = "Failed";
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return false;
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}
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}
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if(b.tx_hashes.size() != bd.second.size())
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{
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MERROR("block " << get_block_hash(b) << ": tx_hashes.size() " << b.tx_hashes.size() << ", bd.second.size() " << bd.second.size());
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res.status = "Failed";
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return false;
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}
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size_t txidx = 0;
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ntxes += bd.second.size();
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res.blocks.back().txs.reserve(bd.second.size());
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res.output_indices.back().indices.reserve(bd.second.size());
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for (std::vector<cryptonote::blobdata>::iterator i = bd.second.begin(); i != bd.second.end(); ++i)
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for (std::vector<std::pair<crypto::hash, cryptonote::blobdata>>::iterator i = bd.second.begin(); i != bd.second.end(); ++i)
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{
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unpruned_size += i->size();
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res.blocks.back().txs.push_back(std::move(*i));
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i->clear();
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i->shrink_to_fit();
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unpruned_size += i->second.size();
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res.blocks.back().txs.push_back(std::move(i->second));
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i->second.clear();
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i->second.shrink_to_fit();
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pruned_size += res.blocks.back().txs.back().size();
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res.output_indices.back().indices.push_back(COMMAND_RPC_GET_BLOCKS_FAST::tx_output_indices());
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bool r = m_core.get_tx_outputs_gindexs(b.tx_hashes[txidx++], res.output_indices.back().indices.back().indices);
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bool r = m_core.get_tx_outputs_gindexs(i->first, res.output_indices.back().indices.back().indices);
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if (!r)
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{
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res.status = "Failed";
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@ -50,9 +50,9 @@ namespace rpc
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void DaemonHandler::handle(const GetBlocksFast::Request& req, GetBlocksFast::Response& res)
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{
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std::vector<std::pair<blobdata, std::vector<blobdata> > > blocks;
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std::vector<std::pair<std::pair<blobdata, crypto::hash>, std::vector<std::pair<crypto::hash, blobdata> > > > blocks;
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if(!m_core.find_blockchain_supplement(req.start_height, req.block_ids, blocks, res.current_height, res.start_height, req.prune, COMMAND_RPC_GET_BLOCKS_FAST_MAX_COUNT))
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if(!m_core.find_blockchain_supplement(req.start_height, req.block_ids, blocks, res.current_height, res.start_height, req.prune, true, COMMAND_RPC_GET_BLOCKS_FAST_MAX_COUNT))
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{
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res.status = Message::STATUS_FAILED;
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res.error_details = "core::find_blockchain_supplement() returned false";
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@ -69,7 +69,7 @@ namespace rpc
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{
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cryptonote::rpc::block_with_transactions& bwt = res.blocks[block_count];
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if (!parse_and_validate_block_from_blob(it->first, bwt.block))
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if (!parse_and_validate_block_from_blob(it->first.first, bwt.block))
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{
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res.blocks.clear();
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res.output_indices.clear();
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@ -87,10 +87,10 @@ namespace rpc
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return;
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}
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std::vector<transaction> txs;
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for (const auto& blob : it->second)
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for (const auto& p : it->second)
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{
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txs.resize(txs.size() + 1);
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if (!parse_and_validate_tx_from_blob(blob, txs.back()))
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if (!parse_and_validate_tx_from_blob(p.second, txs.back()))
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{
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res.blocks.clear();
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res.output_indices.clear();
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