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@ -1447,7 +1447,7 @@ void wallet2::cache_tx_data(const cryptonote::transaction& tx, const crypto::has
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}
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote::transaction& tx, const std::vector<uint64_t> &o_indices, uint64_t height, uint64_t ts, bool miner_tx, bool pool, bool double_spend_seen, const tx_cache_data &tx_cache_data)
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void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote::transaction& tx, const std::vector<uint64_t> &o_indices, uint64_t height, uint64_t ts, bool miner_tx, bool pool, bool double_spend_seen, const tx_cache_data &tx_cache_data, std::map<std::pair<uint64_t, uint64_t>, size_t> *output_tracker_cache)
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{
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PERF_TIMER(process_new_transaction);
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// In this function, tx (probably) only contains the base information
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@ -1686,6 +1686,8 @@ void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote
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if (!m_multisig && !m_watch_only)
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m_key_images[td.m_key_image] = m_transfers.size()-1;
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m_pub_keys[tx_scan_info[o].in_ephemeral.pub] = m_transfers.size()-1;
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if (output_tracker_cache)
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(*output_tracker_cache)[std::make_pair(tx.vout[o].amount, td.m_global_output_index)] = m_transfers.size() - 1;
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if (m_multisig)
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{
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THROW_WALLET_EXCEPTION_IF(!m_multisig_rescan_k && m_multisig_rescan_info,
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@ -1751,6 +1753,8 @@ void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote
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td.m_mask = rct::identity();
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td.m_rct = false;
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}
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if (output_tracker_cache)
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(*output_tracker_cache)[std::make_pair(tx.vout[o].amount, td.m_global_output_index)] = kit->second;
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if (m_multisig)
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{
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THROW_WALLET_EXCEPTION_IF(!m_multisig_rescan_k && m_multisig_rescan_info,
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@ -1822,10 +1826,24 @@ void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote
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if (!pool && m_track_uses)
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{
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PERF_TIMER(track_uses);
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const uint64_t amount = in_to_key.amount;
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std::vector<uint64_t> offsets = cryptonote::relative_output_offsets_to_absolute(in_to_key.key_offsets);
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for (transfer_details &td: m_transfers)
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if (output_tracker_cache)
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{
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if ((td.is_rct() ? 0 : td.amount()) != in_to_key.amount)
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for (uint64_t offset: offsets)
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{
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const std::map<std::pair<uint64_t, uint64_t>, size_t>::const_iterator i = output_tracker_cache->find(std::make_pair(amount, offset));
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if (i != output_tracker_cache->end())
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{
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size_t idx = i->second;
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THROW_WALLET_EXCEPTION_IF(idx >= m_transfers.size(), error::wallet_internal_error, "Output tracker cache index out of range");
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m_transfers[idx].m_uses.push_back(std::make_pair(height, txid));
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}
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}
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}
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else for (transfer_details &td: m_transfers)
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{
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if (amount != in_to_key.amount)
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continue;
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for (uint64_t offset: offsets)
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if (offset == td.m_global_output_index)
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@ -2014,7 +2032,7 @@ void wallet2::process_outgoing(const crypto::hash &txid, const cryptonote::trans
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add_rings(tx);
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::process_new_blockchain_entry(const cryptonote::block& b, const cryptonote::block_complete_entry& bche, const parsed_block &parsed_block, const crypto::hash& bl_id, uint64_t height, const std::vector<tx_cache_data> &tx_cache_data, size_t tx_cache_data_offset)
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void wallet2::process_new_blockchain_entry(const cryptonote::block& b, const cryptonote::block_complete_entry& bche, const parsed_block &parsed_block, const crypto::hash& bl_id, uint64_t height, const std::vector<tx_cache_data> &tx_cache_data, size_t tx_cache_data_offset, std::map<std::pair<uint64_t, uint64_t>, size_t> *output_tracker_cache)
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{
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THROW_WALLET_EXCEPTION_IF(bche.txs.size() + 1 != parsed_block.o_indices.indices.size(), error::wallet_internal_error,
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"block transactions=" + std::to_string(bche.txs.size()) +
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@ -2027,7 +2045,7 @@ void wallet2::process_new_blockchain_entry(const cryptonote::block& b, const cry
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{
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TIME_MEASURE_START(miner_tx_handle_time);
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if (m_refresh_type != RefreshNoCoinbase)
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process_new_transaction(get_transaction_hash(b.miner_tx), b.miner_tx, parsed_block.o_indices.indices[0].indices, height, b.timestamp, true, false, false, tx_cache_data[tx_cache_data_offset]);
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process_new_transaction(get_transaction_hash(b.miner_tx), b.miner_tx, parsed_block.o_indices.indices[0].indices, height, b.timestamp, true, false, false, tx_cache_data[tx_cache_data_offset], output_tracker_cache);
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++tx_cache_data_offset;
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TIME_MEASURE_FINISH(miner_tx_handle_time);
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@ -2036,7 +2054,7 @@ void wallet2::process_new_blockchain_entry(const cryptonote::block& b, const cry
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THROW_WALLET_EXCEPTION_IF(bche.txs.size() != parsed_block.txes.size(), error::wallet_internal_error, "Wrong amount of transactions for block");
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for (size_t idx = 0; idx < b.tx_hashes.size(); ++idx)
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{
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process_new_transaction(b.tx_hashes[idx], parsed_block.txes[idx], parsed_block.o_indices.indices[idx+1].indices, height, b.timestamp, false, false, false, tx_cache_data[tx_cache_data_offset++]);
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process_new_transaction(b.tx_hashes[idx], parsed_block.txes[idx], parsed_block.o_indices.indices[idx+1].indices, height, b.timestamp, false, false, false, tx_cache_data[tx_cache_data_offset++], output_tracker_cache);
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}
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TIME_MEASURE_FINISH(txs_handle_time);
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m_last_block_reward = cryptonote::get_outs_money_amount(b.miner_tx);
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@ -2134,7 +2152,7 @@ void wallet2::pull_hashes(uint64_t start_height, uint64_t &blocks_start_height,
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hashes = std::move(res.m_block_ids);
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::process_parsed_blocks(uint64_t start_height, const std::vector<cryptonote::block_complete_entry> &blocks, const std::vector<parsed_block> &parsed_blocks, uint64_t& blocks_added)
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void wallet2::process_parsed_blocks(uint64_t start_height, const std::vector<cryptonote::block_complete_entry> &blocks, const std::vector<parsed_block> &parsed_blocks, uint64_t& blocks_added, std::map<std::pair<uint64_t, uint64_t>, size_t> *output_tracker_cache)
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{
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size_t current_index = start_height;
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blocks_added = 0;
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@ -2241,7 +2259,7 @@ void wallet2::process_parsed_blocks(uint64_t start_height, const std::vector<cry
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if(current_index >= m_blockchain.size())
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{
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process_new_blockchain_entry(bl, blocks[i], parsed_blocks[i], bl_id, current_index, tx_cache_data, tx_cache_data_offset);
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process_new_blockchain_entry(bl, blocks[i], parsed_blocks[i], bl_id, current_index, tx_cache_data, tx_cache_data_offset, output_tracker_cache);
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++blocks_added;
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}
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else if(bl_id != m_blockchain[current_index])
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@ -2253,7 +2271,7 @@ void wallet2::process_parsed_blocks(uint64_t start_height, const std::vector<cry
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string_tools::pod_to_hex(m_blockchain[current_index]));
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detach_blockchain(current_index);
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process_new_blockchain_entry(bl, blocks[i], parsed_blocks[i], bl_id, current_index, tx_cache_data, tx_cache_data_offset);
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process_new_blockchain_entry(bl, blocks[i], parsed_blocks[i], bl_id, current_index, tx_cache_data, tx_cache_data_offset, output_tracker_cache);
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}
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else
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{
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@ -2685,6 +2703,17 @@ bool wallet2::delete_address_book_row(std::size_t row_id) {
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return true;
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}
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//----------------------------------------------------------------------------------------------------
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std::shared_ptr<std::map<std::pair<uint64_t, uint64_t>, size_t>> wallet2::create_output_tracker_cache() const
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{
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std::shared_ptr<std::map<std::pair<uint64_t, uint64_t>, size_t>> cache{new std::map<std::pair<uint64_t, uint64_t>, size_t>()};
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for (size_t i = 0; i < m_transfers.size(); ++i)
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{
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const transfer_details &td = m_transfers[i];
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(*cache)[std::make_pair(td.is_rct() ? 0 : td.amount(), td.m_global_output_index)] = i;
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}
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return cache;
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::refresh(bool trusted_daemon, uint64_t start_height, uint64_t & blocks_fetched, bool& received_money)
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{
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@ -2732,6 +2761,7 @@ void wallet2::refresh(bool trusted_daemon, uint64_t start_height, uint64_t & blo
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std::vector<cryptonote::block_complete_entry> blocks;
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std::vector<parsed_block> parsed_blocks;
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bool refreshed = false;
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std::shared_ptr<std::map<std::pair<uint64_t, uint64_t>, size_t>> output_tracker_cache;
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// pull the first set of blocks
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get_short_chain_history(short_chain_history, (m_first_refresh_done || trusted_daemon) ? 1 : FIRST_REFRESH_GRANULARITY);
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@ -2785,7 +2815,7 @@ void wallet2::refresh(bool trusted_daemon, uint64_t start_height, uint64_t & blo
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{
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try
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{
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process_parsed_blocks(blocks_start_height, blocks, parsed_blocks, added_blocks);
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process_parsed_blocks(blocks_start_height, blocks, parsed_blocks, added_blocks, output_tracker_cache.get());
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}
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catch (const tools::error::out_of_hashchain_bounds_error&)
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{
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@ -2828,6 +2858,11 @@ void wallet2::refresh(bool trusted_daemon, uint64_t start_height, uint64_t & blo
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throw std::runtime_error("proxy exception in refresh thread");
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}
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// if we've got at least 10 blocks to refresh, assume we're starting
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// a long refresh, and setup a tracking output cache if we need to
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if (m_track_uses && !output_tracker_cache && next_blocks.size() >= 10)
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output_tracker_cache = create_output_tracker_cache();
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// switch to the new blocks from the daemon
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blocks_start_height = next_blocks_start_height;
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blocks = std::move(next_blocks);
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