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wallet: adds rescan_bc option with preserving key images
- enables to perform rescan_spent / ki sync with untrusted daemon. Spent check status involves RPC calls which require trusted daemon status as it leaks information. The new call performs soft reset while preserving key images thus a sequence: refresh, ki sync / import, rescan_bc keep_ki will correctly perform spent checking without need for trusted daemon. - useful to detect spent outputs with untrusted daemon on watch_only / multisig / hw-cold wallets after expensive key image sync. - cli: rescan_bc keep_ki
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c88e992104
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f42263ebb6
4 changed files with 160 additions and 26 deletions
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@ -190,7 +190,7 @@ namespace
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const char* USAGE_CHECK_RESERVE_PROOF("check_reserve_proof <address> <signature_file> [<message>]");
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const char* USAGE_SHOW_TRANSFERS("show_transfers [in|out|pending|failed|pool|coinbase] [index=<N1>[,<N2>,...]] [<min_height> [<max_height>]]");
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const char* USAGE_UNSPENT_OUTPUTS("unspent_outputs [index=<N1>[,<N2>,...]] [<min_amount> [<max_amount>]]");
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const char* USAGE_RESCAN_BC("rescan_bc [hard]");
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const char* USAGE_RESCAN_BC("rescan_bc [hard|soft|keep_ki] [start_height=0]");
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const char* USAGE_SET_TX_NOTE("set_tx_note <txid> [free text note]");
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const char* USAGE_GET_TX_NOTE("get_tx_note <txid>");
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const char* USAGE_GET_DESCRIPTION("get_description");
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@ -4748,8 +4748,16 @@ bool simple_wallet::refresh_main(uint64_t start_height, enum ResetType reset, bo
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LOCK_IDLE_SCOPE();
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crypto::hash transfer_hash_pre{};
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uint64_t height_pre, height_post;
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if (reset != ResetNone)
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m_wallet->rescan_blockchain(reset == ResetHard, false);
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{
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if (reset == ResetSoftKeepKI)
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height_pre = m_wallet->hash_m_transfers(-1, transfer_hash_pre);
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m_wallet->rescan_blockchain(reset == ResetHard, false, reset == ResetSoftKeepKI);
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}
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#ifdef HAVE_READLINE
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rdln::suspend_readline pause_readline;
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@ -4766,6 +4774,18 @@ bool simple_wallet::refresh_main(uint64_t start_height, enum ResetType reset, bo
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m_in_manual_refresh.store(true, std::memory_order_relaxed);
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epee::misc_utils::auto_scope_leave_caller scope_exit_handler = epee::misc_utils::create_scope_leave_handler([&](){m_in_manual_refresh.store(false, std::memory_order_relaxed);});
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m_wallet->refresh(m_wallet->is_trusted_daemon(), start_height, fetched_blocks, received_money);
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if (reset == ResetSoftKeepKI)
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{
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m_wallet->finish_rescan_bc_keep_key_images(height_pre, transfer_hash_pre);
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height_post = m_wallet->get_num_transfer_details();
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if (height_pre != height_post)
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{
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message_writer() << tr("New transfer received since rescan was started. Key images are incomplete.");
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}
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}
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ok = true;
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// Clear line "Height xxx of xxx"
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std::cout << "\r \r";
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@ -7773,18 +7793,43 @@ bool simple_wallet::unspent_outputs(const std::vector<std::string> &args_)
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//----------------------------------------------------------------------------------------------------
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bool simple_wallet::rescan_blockchain(const std::vector<std::string> &args_)
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{
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bool hard = false;
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uint64_t start_height = 0;
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ResetType reset_type = ResetSoft;
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if (!args_.empty())
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{
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if (args_[0] != "hard")
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if (args_[0] == "hard")
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{
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reset_type = ResetHard;
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}
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else if (args_[0] == "soft")
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{
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reset_type = ResetSoft;
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}
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else if (args_[0] == "keep_ki")
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{
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reset_type = ResetSoftKeepKI;
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}
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else
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{
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PRINT_USAGE(USAGE_RESCAN_BC);
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return true;
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}
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hard = true;
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if (args_.size() > 1)
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{
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try
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{
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start_height = boost::lexical_cast<uint64_t>( args_[1] );
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}
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catch(const boost::bad_lexical_cast &)
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{
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start_height = 0;
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}
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}
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}
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if (hard)
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if (reset_type == ResetHard)
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{
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message_writer() << tr("Warning: this will lose any information which can not be recovered from the blockchain.");
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message_writer() << tr("This includes destination addresses, tx secret keys, tx notes, etc");
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@ -7795,7 +7840,20 @@ bool simple_wallet::rescan_blockchain(const std::vector<std::string> &args_)
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return true;
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}
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}
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return refresh_main(0, hard ? ResetHard : ResetSoft, true);
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const uint64_t wallet_from_height = m_wallet->get_refresh_from_block_height();
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if (start_height > wallet_from_height)
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{
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message_writer() << tr("Warning: your restore height is higher than wallet restore height: ") << wallet_from_height;
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std::string confirm = input_line(tr("Rescan anyway ? (Y/Yes/N/No): "));
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if(!std::cin.eof())
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{
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if (!command_line::is_yes(confirm))
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return true;
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}
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}
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return refresh_main(start_height, reset_type, true);
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}
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//----------------------------------------------------------------------------------------------------
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void simple_wallet::check_for_messages()
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@ -84,7 +84,7 @@ namespace cryptonote
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std::string get_command_usage(const std::vector<std::string> &args);
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private:
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enum ResetType { ResetNone, ResetSoft, ResetHard };
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enum ResetType { ResetNone, ResetSoft, ResetHard, ResetSoftKeepKI };
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bool handle_command_line(const boost::program_options::variables_map& vm);
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@ -3223,6 +3223,26 @@ bool wallet2::clear()
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m_device_last_key_image_sync = 0;
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return true;
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::clear_soft(bool keep_key_images)
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{
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m_blockchain.clear();
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m_transfers.clear();
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if (!keep_key_images)
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m_key_images.clear();
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m_pub_keys.clear();
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m_unconfirmed_txs.clear();
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m_payments.clear();
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m_confirmed_txs.clear();
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m_unconfirmed_payments.clear();
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m_scanned_pool_txs[0].clear();
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m_scanned_pool_txs[1].clear();
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cryptonote::block b;
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generate_genesis(b);
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m_blockchain.push_back(get_block_hash(b));
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m_last_block_reward = cryptonote::get_outs_money_amount(b.miner_tx);
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}
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/*!
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* \brief Stores wallet information to wallet file.
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@ -5469,8 +5489,12 @@ void wallet2::rescan_spent()
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}
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::rescan_blockchain(bool hard, bool refresh)
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void wallet2::rescan_blockchain(bool hard, bool refresh, bool keep_key_images)
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{
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CHECK_AND_ASSERT_THROW_MES(!hard || !keep_key_images, "Cannot preserve key images on hard rescan");
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const size_t transfers_cnt = m_transfers.size();
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crypto::hash transfers_hash{};
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if(hard)
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{
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clear();
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@ -5478,25 +5502,16 @@ void wallet2::rescan_blockchain(bool hard, bool refresh)
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}
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else
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{
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m_blockchain.clear();
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m_transfers.clear();
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m_key_images.clear();
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m_pub_keys.clear();
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m_unconfirmed_txs.clear();
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m_payments.clear();
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m_confirmed_txs.clear();
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m_unconfirmed_payments.clear();
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m_scanned_pool_txs[0].clear();
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m_scanned_pool_txs[1].clear();
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cryptonote::block b;
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generate_genesis(b);
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m_blockchain.push_back(get_block_hash(b));
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m_last_block_reward = cryptonote::get_outs_money_amount(b.miner_tx);
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if (keep_key_images && refresh)
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hash_m_transfers((int64_t) transfers_cnt, transfers_hash);
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clear_soft(keep_key_images);
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}
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if (refresh)
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this->refresh(false);
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if (refresh && keep_key_images)
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finish_rescan_bc_keep_key_images(transfers_cnt, transfers_hash);
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}
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//----------------------------------------------------------------------------------------------------
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bool wallet2::is_transfer_unlocked(const transfer_details& td) const
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@ -11392,6 +11407,7 @@ uint64_t wallet2::import_key_images(const std::vector<std::pair<crypto::key_imag
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auto it = m_key_images.find(boost::get<cryptonote::txin_to_key>(in).k_image);
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if (it != m_key_images.end())
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{
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THROW_WALLET_EXCEPTION_IF(it->second >= m_transfers.size(), error::wallet_internal_error, std::string("Key images cache contains illegal transfer offset: ") + std::to_string(it->second) + std::string(" m_transfers.size() = ") + std::to_string(m_transfers.size()));
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const transfer_details& td = m_transfers[it->second];
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uint64_t amount = boost::get<cryptonote::txin_to_key>(in).amount;
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if (amount > 0)
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@ -12490,5 +12506,61 @@ void wallet2::throw_on_rpc_response_error(const boost::optional<std::string> &st
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THROW_WALLET_EXCEPTION_IF(*status == CORE_RPC_STATUS_BUSY, tools::error::daemon_busy, method);
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THROW_WALLET_EXCEPTION_IF(*status != CORE_RPC_STATUS_OK, tools::error::wallet_generic_rpc_error, method, m_trusted_daemon ? *status : "daemon error");
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::hash_m_transfer(const transfer_details & transfer, crypto::hash &hash) const
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{
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KECCAK_CTX state;
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keccak_init(&state);
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keccak_update(&state, (const uint8_t *) transfer.m_txid.data, sizeof(transfer.m_txid.data));
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keccak_update(&state, (const uint8_t *) transfer.m_internal_output_index, sizeof(transfer.m_internal_output_index));
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keccak_update(&state, (const uint8_t *) transfer.m_global_output_index, sizeof(transfer.m_global_output_index));
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keccak_update(&state, (const uint8_t *) transfer.m_amount, sizeof(transfer.m_amount));
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keccak_finish(&state, (uint8_t *) hash.data);
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}
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//----------------------------------------------------------------------------------------------------
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uint64_t wallet2::hash_m_transfers(int64_t transfer_height, crypto::hash &hash) const
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{
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CHECK_AND_ASSERT_THROW_MES(transfer_height > (int64_t)m_transfers.size(), "Hash height is greater than number of transfers");
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KECCAK_CTX state;
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crypto::hash tmp_hash{};
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uint64_t current_height = 0;
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keccak_init(&state);
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for(const transfer_details & transfer : m_transfers){
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if (transfer_height >= 0 && current_height >= (uint64_t)transfer_height){
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break;
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}
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hash_m_transfer(transfer, tmp_hash);
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keccak_update(&state, (const uint8_t *) transfer.m_block_height, sizeof(transfer.m_block_height));
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keccak_update(&state, (const uint8_t *) tmp_hash.data, sizeof(tmp_hash.data));
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current_height += 1;
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}
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keccak_finish(&state, (uint8_t *) hash.data);
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return current_height;
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}
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//----------------------------------------------------------------------------------------------------
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void wallet2::finish_rescan_bc_keep_key_images(uint64_t transfer_height, const crypto::hash &hash)
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{
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// Compute hash of m_transfers, if differs there had to be BC reorg.
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crypto::hash new_transfers_hash{};
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hash_m_transfers((int64_t) transfer_height, new_transfers_hash);
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if (new_transfers_hash != hash)
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{
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// Soft-Reset to avoid inconsistency in case of BC reorg.
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clear_soft(false); // keep_key_images works only with soft reset.
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THROW_WALLET_EXCEPTION_IF(true, error::wallet_internal_error, "Transfers changed during rescan, soft or hard rescan is needed");
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}
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// Restore key images in m_transfers from m_key_images
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for(auto it = m_key_images.begin(); it != m_key_images.end(); it++)
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{
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THROW_WALLET_EXCEPTION_IF(it->second >= m_transfers.size(), error::wallet_internal_error, "Key images cache contains illegal transfer offset");
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m_transfers[it->second].m_key_image = it->first;
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m_transfers[it->second].m_key_image_known = true;
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}
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}
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}
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@ -818,7 +818,7 @@ namespace tools
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uint64_t get_blockchain_current_height() const { return m_light_wallet_blockchain_height ? m_light_wallet_blockchain_height : m_blockchain.size(); }
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void rescan_spent();
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void rescan_blockchain(bool hard, bool refresh = true);
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void rescan_blockchain(bool hard, bool refresh = true, bool keep_key_images = false);
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bool is_transfer_unlocked(const transfer_details& td) const;
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bool is_transfer_unlocked(uint64_t unlock_time, uint64_t block_height) const;
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@ -1248,6 +1248,9 @@ namespace tools
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void set_tx_notify(const std::shared_ptr<tools::Notify> ¬ify) { m_tx_notify = notify; }
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bool is_tx_spendtime_unlocked(uint64_t unlock_time, uint64_t block_height) const;
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void hash_m_transfer(const transfer_details & transfer, crypto::hash &hash) const;
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uint64_t hash_m_transfers(int64_t transfer_height, crypto::hash &hash) const;
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void finish_rescan_bc_keep_key_images(uint64_t transfer_height, const crypto::hash &hash);
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private:
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/*!
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@ -1269,6 +1272,7 @@ namespace tools
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void detach_blockchain(uint64_t height);
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void get_short_chain_history(std::list<crypto::hash>& ids, uint64_t granularity = 1) const;
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bool clear();
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void clear_soft(bool keep_key_images=false);
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void pull_blocks(uint64_t start_height, uint64_t& blocks_start_height, const std::list<crypto::hash> &short_chain_history, std::vector<cryptonote::block_complete_entry> &blocks, std::vector<cryptonote::COMMAND_RPC_GET_BLOCKS_FAST::block_output_indices> &o_indices);
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void pull_hashes(uint64_t start_height, uint64_t& blocks_start_height, const std::list<crypto::hash> &short_chain_history, std::vector<crypto::hash> &hashes);
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void fast_refresh(uint64_t stop_height, uint64_t &blocks_start_height, std::list<crypto::hash> &short_chain_history, bool force = false);
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