wallet2: decide at runtime which upper tx size to use
The value will be different depending on whether we've reached the first hard fork, which allows a larger size, or not. This fixes transactions being rejected by the daemon on mainnet where the first hard fork is not yet active.
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@ -1880,6 +1880,7 @@ void wallet2::transfer_selected(const std::vector<cryptonote::tx_destination_ent
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// throw if attempting a transaction with no destinations
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// throw if attempting a transaction with no destinations
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THROW_WALLET_EXCEPTION_IF(dsts.empty(), error::zero_destination);
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THROW_WALLET_EXCEPTION_IF(dsts.empty(), error::zero_destination);
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uint64_t upper_transaction_size_limit = get_upper_tranaction_size_limit();
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uint64_t needed_money = fee;
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uint64_t needed_money = fee;
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LOG_PRINT_L2("transfer: starting with fee " << print_money (needed_money));
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LOG_PRINT_L2("transfer: starting with fee " << print_money (needed_money));
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@ -2005,7 +2006,7 @@ void wallet2::transfer_selected(const std::vector<cryptonote::tx_destination_ent
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crypto::secret_key tx_key;
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crypto::secret_key tx_key;
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bool r = cryptonote::construct_tx_and_get_tx_key(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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bool r = cryptonote::construct_tx_and_get_tx_key(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(m_upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, m_upper_transaction_size_limit);
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THROW_WALLET_EXCEPTION_IF(upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, upper_transaction_size_limit);
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std::string key_images;
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std::string key_images;
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bool all_are_txin_to_key = std::all_of(tx.vin.begin(), tx.vin.end(), [&](const txin_v& s_e) -> bool
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bool all_are_txin_to_key = std::all_of(tx.vin.begin(), tx.vin.end(), [&](const txin_v& s_e) -> bool
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@ -2066,6 +2067,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
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std::vector<TX> txes;
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std::vector<TX> txes;
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bool adding_fee; // true if new outputs go towards fee, rather than destinations
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bool adding_fee; // true if new outputs go towards fee, rather than destinations
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uint64_t needed_fee, available_for_fee = 0;
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uint64_t needed_fee, available_for_fee = 0;
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uint64_t upper_transaction_size_limit = get_upper_tranaction_size_limit();
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// throw if attempting a transaction with no destinations
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// throw if attempting a transaction with no destinations
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THROW_WALLET_EXCEPTION_IF(dsts.empty(), error::zero_destination);
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THROW_WALLET_EXCEPTION_IF(dsts.empty(), error::zero_destination);
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@ -2158,7 +2160,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
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// here, check if we need to sent tx and start a new one
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// here, check if we need to sent tx and start a new one
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LOG_PRINT_L2("Considering whether to create a tx now, " << tx.selected_transfers.size() << " inputs, tx limit "
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LOG_PRINT_L2("Considering whether to create a tx now, " << tx.selected_transfers.size() << " inputs, tx limit "
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<< m_upper_transaction_size_limit);
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<< upper_transaction_size_limit);
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bool try_tx;
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bool try_tx;
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if (adding_fee)
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if (adding_fee)
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{
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{
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@ -2167,7 +2169,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
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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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try_tx = dsts.empty() || (tx.selected_transfers.size() * (fake_outs_count+1) * APPROXIMATE_INPUT_BYTES >= TX_SIZE_TARGET(m_upper_transaction_size_limit));
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try_tx = dsts.empty() || (tx.selected_transfers.size() * (fake_outs_count+1) * APPROXIMATE_INPUT_BYTES >= TX_SIZE_TARGET(upper_transaction_size_limit));
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}
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}
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if (try_tx) {
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if (try_tx) {
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@ -2290,6 +2292,8 @@ void wallet2::transfer_dust(size_t num_outputs, uint64_t unlock_time, uint64_t n
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{
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{
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using namespace cryptonote;
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using namespace cryptonote;
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uint64_t upper_transaction_size_limit = get_upper_tranaction_size_limit();
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// select all dust inputs for transaction
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// select all dust inputs for transaction
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// throw if there are none
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// throw if there are none
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uint64_t money = 0;
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uint64_t money = 0;
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@ -2354,7 +2358,7 @@ void wallet2::transfer_dust(size_t num_outputs, uint64_t unlock_time, uint64_t n
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crypto::secret_key tx_key;
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crypto::secret_key tx_key;
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bool r = cryptonote::construct_tx_and_get_tx_key(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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bool r = cryptonote::construct_tx_and_get_tx_key(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(m_upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, m_upper_transaction_size_limit);
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THROW_WALLET_EXCEPTION_IF(upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, upper_transaction_size_limit);
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std::string key_images;
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std::string key_images;
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bool all_are_txin_to_key = std::all_of(tx.vin.begin(), tx.vin.end(), [&](const txin_v& s_e) -> bool
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bool all_are_txin_to_key = std::all_of(tx.vin.begin(), tx.vin.end(), [&](const txin_v& s_e) -> bool
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@ -2409,6 +2413,14 @@ bool wallet2::use_fork_rules(uint8_t version)
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return close_enough;
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return close_enough;
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}
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}
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//----------------------------------------------------------------------------------------------------
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//----------------------------------------------------------------------------------------------------
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uint64_t wallet2::get_upper_tranaction_size_limit()
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{
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if (m_upper_transaction_size_limit > 0)
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return m_upper_transaction_size_limit;
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uint64_t full_reward_zone = use_fork_rules(2) ? CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE : CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V1;
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return ((full_reward_zone * 125) / 100) - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE;
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}
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//----------------------------------------------------------------------------------------------------
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std::vector<wallet2::pending_tx> wallet2::create_dust_sweep_transactions()
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std::vector<wallet2::pending_tx> wallet2::create_dust_sweep_transactions()
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{
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{
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// From hard fork 1, we don't consider small amounts to be dust anymore
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// From hard fork 1, we don't consider small amounts to be dust anymore
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@ -214,7 +214,7 @@ namespace tools
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// free block size. TODO: fix this so that it actually takes
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// free block size. TODO: fix this so that it actually takes
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// into account the current median block size rather than
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// into account the current median block size rather than
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// the minimum block size.
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// the minimum block size.
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void init(const std::string& daemon_address = "http://localhost:8080", uint64_t upper_transaction_size_limit = ((CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE * 125) / 100) - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE);
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void init(const std::string& daemon_address = "http://localhost:8080", uint64_t upper_transaction_size_limit = 0);
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bool deinit();
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bool deinit();
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void stop() { m_run.store(false, std::memory_order_relaxed); }
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void stop() { m_run.store(false, std::memory_order_relaxed); }
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@ -374,6 +374,7 @@ namespace tools
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void check_acc_out(const cryptonote::account_keys &acc, const cryptonote::tx_out &o, const crypto::public_key &tx_pub_key, size_t i, uint64_t &money_transfered, bool &error) const;
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void check_acc_out(const cryptonote::account_keys &acc, const cryptonote::tx_out &o, const crypto::public_key &tx_pub_key, size_t i, uint64_t &money_transfered, bool &error) const;
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void parse_block_round(const cryptonote::blobdata &blob, cryptonote::block &bl, crypto::hash &bl_id, bool &error) const;
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void parse_block_round(const cryptonote::blobdata &blob, cryptonote::block &bl, crypto::hash &bl_id, bool &error) const;
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bool use_fork_rules(uint8_t version);
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bool use_fork_rules(uint8_t version);
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uint64_t get_upper_tranaction_size_limit();
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cryptonote::account_base m_account;
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cryptonote::account_base m_account;
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std::string m_daemon_address;
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std::string m_daemon_address;
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@ -543,6 +544,7 @@ namespace tools
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// throw if attempting a transaction with no destinations
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// throw if attempting a transaction with no destinations
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THROW_WALLET_EXCEPTION_IF(dsts.empty(), error::zero_destination);
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THROW_WALLET_EXCEPTION_IF(dsts.empty(), error::zero_destination);
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uint64_t upper_transaction_size_limit = get_upper_tranaction_size_limit();
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uint64_t needed_money = fee;
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uint64_t needed_money = fee;
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// calculate total amount being sent to all destinations
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// calculate total amount being sent to all destinations
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@ -664,7 +666,7 @@ namespace tools
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crypto::secret_key tx_key;
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crypto::secret_key tx_key;
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bool r = cryptonote::construct_tx_and_get_tx_key(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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bool r = cryptonote::construct_tx_and_get_tx_key(m_account.get_keys(), sources, splitted_dsts, extra, tx, unlock_time, tx_key);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(!r, error::tx_not_constructed, sources, splitted_dsts, unlock_time, m_testnet);
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THROW_WALLET_EXCEPTION_IF(m_upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, m_upper_transaction_size_limit);
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THROW_WALLET_EXCEPTION_IF(upper_transaction_size_limit <= get_object_blobsize(tx), error::tx_too_big, tx, upper_transaction_size_limit);
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std::string key_images;
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std::string key_images;
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bool all_are_txin_to_key = std::all_of(tx.vin.begin(), tx.vin.end(), [&](const txin_v& s_e) -> bool
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bool all_are_txin_to_key = std::all_of(tx.vin.begin(), tx.vin.end(), [&](const txin_v& s_e) -> bool
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