Merge pull request #5382

c12b43cb wallet: add number of blocks required for the balance to fully unlock (moneromooo-monero)
3f1e9e84 wallet2: set confirmations to 0 for pool txes in proofs (moneromooo-monero)
36c037ec wallet_rpc_server: error out on getting the spend key from a hot wallet (moneromooo-monero)
cd1eaff2 wallet_rpc_server: always fill out subaddr_indices in get_transfers (moneromooo-monero)
This commit is contained in:
Riccardo Spagni 2019-04-11 13:03:55 +02:00
commit 5c02316598
No known key found for this signature in database
GPG Key ID: 55432DF31CCD4FCD
5 changed files with 63 additions and 22 deletions

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@ -5108,10 +5108,15 @@ bool simple_wallet::show_balance_unlocked(bool detailed)
success_msg_writer() << tr("Currently selected account: [") << m_current_subaddress_account << tr("] ") << m_wallet->get_subaddress_label({m_current_subaddress_account, 0}); success_msg_writer() << tr("Currently selected account: [") << m_current_subaddress_account << tr("] ") << m_wallet->get_subaddress_label({m_current_subaddress_account, 0});
const std::string tag = m_wallet->get_account_tags().second[m_current_subaddress_account]; const std::string tag = m_wallet->get_account_tags().second[m_current_subaddress_account];
success_msg_writer() << tr("Tag: ") << (tag.empty() ? std::string{tr("(No tag assigned)")} : tag); success_msg_writer() << tr("Tag: ") << (tag.empty() ? std::string{tr("(No tag assigned)")} : tag);
uint64_t blocks_to_unlock;
uint64_t unlocked_balance = m_wallet->unlocked_balance(m_current_subaddress_account, &blocks_to_unlock);
std::string unlock_time_message;
if (blocks_to_unlock > 0)
unlock_time_message = (boost::format(" (%lu block(s) to unlock)") % blocks_to_unlock).str();
success_msg_writer() << tr("Balance: ") << print_money(m_wallet->balance(m_current_subaddress_account)) << ", " success_msg_writer() << tr("Balance: ") << print_money(m_wallet->balance(m_current_subaddress_account)) << ", "
<< tr("unlocked balance: ") << print_money(m_wallet->unlocked_balance(m_current_subaddress_account)) << extra; << tr("unlocked balance: ") << print_money(unlocked_balance) << unlock_time_message << extra;
std::map<uint32_t, uint64_t> balance_per_subaddress = m_wallet->balance_per_subaddress(m_current_subaddress_account); std::map<uint32_t, uint64_t> balance_per_subaddress = m_wallet->balance_per_subaddress(m_current_subaddress_account);
std::map<uint32_t, uint64_t> unlocked_balance_per_subaddress = m_wallet->unlocked_balance_per_subaddress(m_current_subaddress_account); std::map<uint32_t, std::pair<uint64_t, uint64_t>> unlocked_balance_per_subaddress = m_wallet->unlocked_balance_per_subaddress(m_current_subaddress_account);
if (!detailed || balance_per_subaddress.empty()) if (!detailed || balance_per_subaddress.empty())
return true; return true;
success_msg_writer() << tr("Balance per address:"); success_msg_writer() << tr("Balance per address:");
@ -5123,7 +5128,7 @@ bool simple_wallet::show_balance_unlocked(bool detailed)
cryptonote::subaddress_index subaddr_index = {m_current_subaddress_account, i.first}; cryptonote::subaddress_index subaddr_index = {m_current_subaddress_account, i.first};
std::string address_str = m_wallet->get_subaddress_as_str(subaddr_index).substr(0, 6); std::string address_str = m_wallet->get_subaddress_as_str(subaddr_index).substr(0, 6);
uint64_t num_unspent_outputs = std::count_if(transfers.begin(), transfers.end(), [&subaddr_index](const tools::wallet2::transfer_details& td) { return !td.m_spent && td.m_subaddr_index == subaddr_index; }); uint64_t num_unspent_outputs = std::count_if(transfers.begin(), transfers.end(), [&subaddr_index](const tools::wallet2::transfer_details& td) { return !td.m_spent && td.m_subaddr_index == subaddr_index; });
success_msg_writer() << boost::format(tr("%8u %6s %21s %21s %7u %21s")) % i.first % address_str % print_money(i.second) % print_money(unlocked_balance_per_subaddress[i.first]) % num_unspent_outputs % m_wallet->get_subaddress_label(subaddr_index); success_msg_writer() << boost::format(tr("%8u %6s %21s %21s %7u %21s")) % i.first % address_str % print_money(i.second) % print_money(unlocked_balance_per_subaddress[i.first].first) % num_unspent_outputs % m_wallet->get_subaddress_label(subaddr_index);
} }
return true; return true;
} }

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@ -5464,13 +5464,19 @@ uint64_t wallet2::balance(uint32_t index_major) const
return amount; return amount;
} }
//---------------------------------------------------------------------------------------------------- //----------------------------------------------------------------------------------------------------
uint64_t wallet2::unlocked_balance(uint32_t index_major) const uint64_t wallet2::unlocked_balance(uint32_t index_major, uint64_t *blocks_to_unlock) const
{ {
uint64_t amount = 0; uint64_t amount = 0;
if (blocks_to_unlock)
*blocks_to_unlock = 0;
if(m_light_wallet) if(m_light_wallet)
return m_light_wallet_balance; return m_light_wallet_balance;
for (const auto& i : unlocked_balance_per_subaddress(index_major)) for (const auto& i : unlocked_balance_per_subaddress(index_major))
amount += i.second; {
amount += i.second.first;
if (blocks_to_unlock && i.second.second > *blocks_to_unlock)
*blocks_to_unlock = i.second.second;
}
return amount; return amount;
} }
//---------------------------------------------------------------------------------------------------- //----------------------------------------------------------------------------------------------------
@ -5503,18 +5509,36 @@ std::map<uint32_t, uint64_t> wallet2::balance_per_subaddress(uint32_t index_majo
return amount_per_subaddr; return amount_per_subaddr;
} }
//---------------------------------------------------------------------------------------------------- //----------------------------------------------------------------------------------------------------
std::map<uint32_t, uint64_t> wallet2::unlocked_balance_per_subaddress(uint32_t index_major) const std::map<uint32_t, std::pair<uint64_t, uint64_t>> wallet2::unlocked_balance_per_subaddress(uint32_t index_major) const
{ {
std::map<uint32_t, uint64_t> amount_per_subaddr; std::map<uint32_t, std::pair<uint64_t, uint64_t>> amount_per_subaddr;
const uint64_t blockchain_height = get_blockchain_current_height();
for(const transfer_details& td: m_transfers) for(const transfer_details& td: m_transfers)
{ {
if(td.m_subaddr_index.major == index_major && !td.m_spent && !td.m_frozen && is_transfer_unlocked(td)) if(td.m_subaddr_index.major == index_major && !td.m_spent && !td.m_frozen)
{ {
uint64_t amount = 0, blocks_to_unlock = 0;
if (is_transfer_unlocked(td))
{
amount = td.amount();
blocks_to_unlock = 0;
}
else
{
uint64_t unlock_height = td.m_block_height + std::max<uint64_t>(CRYPTONOTE_DEFAULT_TX_SPENDABLE_AGE, CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_BLOCKS);
if (td.m_tx.unlock_time < CRYPTONOTE_MAX_BLOCK_NUMBER && td.m_tx.unlock_time > unlock_height)
unlock_height = td.m_tx.unlock_time;
blocks_to_unlock = unlock_height > blockchain_height ? unlock_height - blockchain_height : 0;
amount = 0;
}
auto found = amount_per_subaddr.find(td.m_subaddr_index.minor); auto found = amount_per_subaddr.find(td.m_subaddr_index.minor);
if (found == amount_per_subaddr.end()) if (found == amount_per_subaddr.end())
amount_per_subaddr[td.m_subaddr_index.minor] = td.amount(); amount_per_subaddr[td.m_subaddr_index.minor] = std::make_pair(amount, blocks_to_unlock);
else else
found->second += td.amount(); {
found->second.first += amount;
found->second.second = std::max(found->second.second, blocks_to_unlock);
}
} }
} }
return amount_per_subaddr; return amount_per_subaddr;
@ -5528,11 +5552,18 @@ uint64_t wallet2::balance_all() const
return r; return r;
} }
//---------------------------------------------------------------------------------------------------- //----------------------------------------------------------------------------------------------------
uint64_t wallet2::unlocked_balance_all() const uint64_t wallet2::unlocked_balance_all(uint64_t *blocks_to_unlock) const
{ {
uint64_t r = 0; uint64_t r = 0;
if (blocks_to_unlock)
*blocks_to_unlock = 0;
for (uint32_t index_major = 0; index_major < get_num_subaddress_accounts(); ++index_major) for (uint32_t index_major = 0; index_major < get_num_subaddress_accounts(); ++index_major)
r += unlocked_balance(index_major); {
uint64_t local_blocks_to_unlock;
r += unlocked_balance(index_major, blocks_to_unlock ? &local_blocks_to_unlock : NULL);
if (blocks_to_unlock)
*blocks_to_unlock = std::max(*blocks_to_unlock, local_blocks_to_unlock);
}
return r; return r;
} }
//---------------------------------------------------------------------------------------------------- //----------------------------------------------------------------------------------------------------
@ -9078,7 +9109,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
// throw if attempting a transaction with no money // throw if attempting a transaction with no money
THROW_WALLET_EXCEPTION_IF(needed_money == 0, error::zero_destination); THROW_WALLET_EXCEPTION_IF(needed_money == 0, error::zero_destination);
std::map<uint32_t, uint64_t> unlocked_balance_per_subaddr = unlocked_balance_per_subaddress(subaddr_account); std::map<uint32_t, std::pair<uint64_t, uint64_t>> unlocked_balance_per_subaddr = unlocked_balance_per_subaddress(subaddr_account);
std::map<uint32_t, uint64_t> balance_per_subaddr = balance_per_subaddress(subaddr_account); std::map<uint32_t, uint64_t> balance_per_subaddr = balance_per_subaddress(subaddr_account);
if (subaddr_indices.empty()) // "index=<N1>[,<N2>,...]" wasn't specified -> use all the indices with non-zero unlocked balance if (subaddr_indices.empty()) // "index=<N1>[,<N2>,...]" wasn't specified -> use all the indices with non-zero unlocked balance
@ -9096,7 +9127,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
for (uint32_t index_minor : subaddr_indices) for (uint32_t index_minor : subaddr_indices)
{ {
balance_subtotal += balance_per_subaddr[index_minor]; balance_subtotal += balance_per_subaddr[index_minor];
unlocked_balance_subtotal += unlocked_balance_per_subaddr[index_minor]; unlocked_balance_subtotal += unlocked_balance_per_subaddr[index_minor].first;
} }
THROW_WALLET_EXCEPTION_IF(needed_money + min_fee > balance_subtotal, error::not_enough_money, THROW_WALLET_EXCEPTION_IF(needed_money + min_fee > balance_subtotal, error::not_enough_money,
balance_subtotal, needed_money, 0); balance_subtotal, needed_money, 0);
@ -9162,7 +9193,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
{ {
auto sort_predicate = [&unlocked_balance_per_subaddr] (const std::pair<uint32_t, std::vector<size_t>>& x, const std::pair<uint32_t, std::vector<size_t>>& y) auto sort_predicate = [&unlocked_balance_per_subaddr] (const std::pair<uint32_t, std::vector<size_t>>& x, const std::pair<uint32_t, std::vector<size_t>>& y)
{ {
return unlocked_balance_per_subaddr[x.first] > unlocked_balance_per_subaddr[y.first]; return unlocked_balance_per_subaddr[x.first].first > unlocked_balance_per_subaddr[y.first].first;
}; };
std::sort(unused_transfers_indices_per_subaddr.begin(), unused_transfers_indices_per_subaddr.end(), sort_predicate); std::sort(unused_transfers_indices_per_subaddr.begin(), unused_transfers_indices_per_subaddr.end(), sort_predicate);
std::sort(unused_dust_indices_per_subaddr.begin(), unused_dust_indices_per_subaddr.end(), sort_predicate); std::sort(unused_dust_indices_per_subaddr.begin(), unused_dust_indices_per_subaddr.end(), sort_predicate);

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@ -773,13 +773,13 @@ namespace tools
// locked & unlocked balance of given or current subaddress account // locked & unlocked balance of given or current subaddress account
uint64_t balance(uint32_t subaddr_index_major) const; uint64_t balance(uint32_t subaddr_index_major) const;
uint64_t unlocked_balance(uint32_t subaddr_index_major) const; uint64_t unlocked_balance(uint32_t subaddr_index_major, uint64_t *blocks_to_unlock = NULL) const;
// locked & unlocked balance per subaddress of given or current subaddress account // locked & unlocked balance per subaddress of given or current subaddress account
std::map<uint32_t, uint64_t> balance_per_subaddress(uint32_t subaddr_index_major) const; std::map<uint32_t, uint64_t> balance_per_subaddress(uint32_t subaddr_index_major) const;
std::map<uint32_t, uint64_t> unlocked_balance_per_subaddress(uint32_t subaddr_index_major) const; std::map<uint32_t, std::pair<uint64_t, uint64_t>> unlocked_balance_per_subaddress(uint32_t subaddr_index_major) const;
// all locked & unlocked balances of all subaddress accounts // all locked & unlocked balances of all subaddress accounts
uint64_t balance_all() const; uint64_t balance_all() const;
uint64_t unlocked_balance_all() const; uint64_t unlocked_balance_all(uint64_t *blocks_to_unlock = NULL) const;
template<typename T> template<typename T>
void transfer_selected(const std::vector<cryptonote::tx_destination_entry>& dsts, const std::vector<size_t>& selected_transfers, size_t fake_outputs_count, void transfer_selected(const std::vector<cryptonote::tx_destination_entry>& dsts, const std::vector<size_t>& selected_transfers, size_t fake_outputs_count,
std::vector<std::vector<tools::wallet2::get_outs_entry>> &outs, std::vector<std::vector<tools::wallet2::get_outs_entry>> &outs,

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@ -447,10 +447,10 @@ namespace tools
try try
{ {
res.balance = req.all_accounts ? m_wallet->balance_all() : m_wallet->balance(req.account_index); res.balance = req.all_accounts ? m_wallet->balance_all() : m_wallet->balance(req.account_index);
res.unlocked_balance = req.all_accounts ? m_wallet->unlocked_balance_all() : m_wallet->unlocked_balance(req.account_index); res.unlocked_balance = req.all_accounts ? m_wallet->unlocked_balance_all(&res.blocks_to_unlock) : m_wallet->unlocked_balance(req.account_index, &res.blocks_to_unlock);
res.multisig_import_needed = m_wallet->multisig() && m_wallet->has_multisig_partial_key_images(); res.multisig_import_needed = m_wallet->multisig() && m_wallet->has_multisig_partial_key_images();
std::map<uint32_t, std::map<uint32_t, uint64_t>> balance_per_subaddress_per_account; std::map<uint32_t, std::map<uint32_t, uint64_t>> balance_per_subaddress_per_account;
std::map<uint32_t, std::map<uint32_t, uint64_t>> unlocked_balance_per_subaddress_per_account; std::map<uint32_t, std::map<uint32_t, std::pair<uint64_t, uint64_t>>> unlocked_balance_per_subaddress_per_account;
if (req.all_accounts) if (req.all_accounts)
{ {
for (uint32_t account_index = 0; account_index < m_wallet->get_num_subaddress_accounts(); ++account_index) for (uint32_t account_index = 0; account_index < m_wallet->get_num_subaddress_accounts(); ++account_index)
@ -470,7 +470,7 @@ namespace tools
{ {
uint32_t account_index = p.first; uint32_t account_index = p.first;
std::map<uint32_t, uint64_t> balance_per_subaddress = p.second; std::map<uint32_t, uint64_t> balance_per_subaddress = p.second;
std::map<uint32_t, uint64_t> unlocked_balance_per_subaddress = unlocked_balance_per_subaddress_per_account[account_index]; std::map<uint32_t, std::pair<uint64_t, uint64_t>> unlocked_balance_per_subaddress = unlocked_balance_per_subaddress_per_account[account_index];
std::set<uint32_t> address_indices; std::set<uint32_t> address_indices;
if (!req.all_accounts && !req.address_indices.empty()) if (!req.all_accounts && !req.address_indices.empty())
{ {
@ -489,7 +489,8 @@ namespace tools
cryptonote::subaddress_index index = {info.account_index, info.address_index}; cryptonote::subaddress_index index = {info.account_index, info.address_index};
info.address = m_wallet->get_subaddress_as_str(index); info.address = m_wallet->get_subaddress_as_str(index);
info.balance = balance_per_subaddress[i]; info.balance = balance_per_subaddress[i];
info.unlocked_balance = unlocked_balance_per_subaddress[i]; info.unlocked_balance = unlocked_balance_per_subaddress[i].first;
info.blocks_to_unlock = unlocked_balance_per_subaddress[i].second;
info.label = m_wallet->get_subaddress_label(index); info.label = m_wallet->get_subaddress_label(index);
info.num_unspent_outputs = std::count_if(transfers.begin(), transfers.end(), [&](const tools::wallet2::transfer_details& td) { return !td.m_spent && td.m_subaddr_index == index; }); info.num_unspent_outputs = std::count_if(transfers.begin(), transfers.end(), [&](const tools::wallet2::transfer_details& td) { return !td.m_spent && td.m_subaddr_index == index; });
res.per_subaddress.emplace_back(std::move(info)); res.per_subaddress.emplace_back(std::move(info));

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@ -81,6 +81,7 @@ namespace wallet_rpc
uint64_t unlocked_balance; uint64_t unlocked_balance;
std::string label; std::string label;
uint64_t num_unspent_outputs; uint64_t num_unspent_outputs;
uint64_t blocks_to_unlock;
BEGIN_KV_SERIALIZE_MAP() BEGIN_KV_SERIALIZE_MAP()
KV_SERIALIZE(account_index) KV_SERIALIZE(account_index)
@ -90,6 +91,7 @@ namespace wallet_rpc
KV_SERIALIZE(unlocked_balance) KV_SERIALIZE(unlocked_balance)
KV_SERIALIZE(label) KV_SERIALIZE(label)
KV_SERIALIZE(num_unspent_outputs) KV_SERIALIZE(num_unspent_outputs)
KV_SERIALIZE(blocks_to_unlock)
END_KV_SERIALIZE_MAP() END_KV_SERIALIZE_MAP()
}; };
@ -99,12 +101,14 @@ namespace wallet_rpc
uint64_t unlocked_balance; uint64_t unlocked_balance;
bool multisig_import_needed; bool multisig_import_needed;
std::vector<per_subaddress_info> per_subaddress; std::vector<per_subaddress_info> per_subaddress;
uint64_t blocks_to_unlock;
BEGIN_KV_SERIALIZE_MAP() BEGIN_KV_SERIALIZE_MAP()
KV_SERIALIZE(balance) KV_SERIALIZE(balance)
KV_SERIALIZE(unlocked_balance) KV_SERIALIZE(unlocked_balance)
KV_SERIALIZE(multisig_import_needed) KV_SERIALIZE(multisig_import_needed)
KV_SERIALIZE(per_subaddress) KV_SERIALIZE(per_subaddress)
KV_SERIALIZE(blocks_to_unlock)
END_KV_SERIALIZE_MAP() END_KV_SERIALIZE_MAP()
}; };
typedef epee::misc_utils::struct_init<response_t> response; typedef epee::misc_utils::struct_init<response_t> response;