WalletApi: getMultisigInfo entry for gui wallets
WalletApi: makeMultisig call introduced WalletApi: finalizeMultisig call introduced WalletApi: new calls exportMultisigImages and importMultisigImages WalletApi: method to return multisig wallet creation state WalletApi: create multisig transaction, sign multisig transaction, commit transaction and get multisig data are added WalletApi: identation and style fixes
This commit is contained in:
parent
47fdb74273
commit
5a96056600
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@ -34,6 +34,7 @@
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#include "cryptonote_basic/cryptonote_format_utils.h"
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#include "cryptonote_basic/cryptonote_format_utils.h"
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#include "cryptonote_basic/cryptonote_basic_impl.h"
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#include "cryptonote_basic/cryptonote_basic_impl.h"
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#include "common/base58.h"
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#include <memory>
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#include <memory>
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#include <vector>
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#include <vector>
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@ -102,6 +103,11 @@ bool PendingTransactionImpl::commit(const std::string &filename, bool overwrite)
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}
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}
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// Commit tx
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// Commit tx
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else {
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else {
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auto multisigState = m_wallet.multisig();
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if (multisigState.isMultisig && m_signers.size() < multisigState.threshold) {
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throw runtime_error("Not enough signers to send multisig transaction");
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}
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m_wallet.pauseRefresh();
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m_wallet.pauseRefresh();
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while (!m_pending_tx.empty()) {
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while (!m_pending_tx.empty()) {
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auto & ptx = m_pending_tx.back();
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auto & ptx = m_pending_tx.back();
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@ -188,6 +194,53 @@ std::vector<std::set<uint32_t>> PendingTransactionImpl::subaddrIndices() const
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return result;
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return result;
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}
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}
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std::string PendingTransactionImpl::multisigSignData() {
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try {
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if (!m_wallet.multisig().isMultisig) {
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throw std::runtime_error("wallet is not multisig");
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}
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auto cipher = m_wallet.m_wallet->save_multisig_tx(m_pending_tx);
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return epee::string_tools::buff_to_hex_nodelimer(cipher);
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} catch (const std::exception& e) {
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m_status = Status_Error;
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m_errorString = std::string(tr("Couldn't multisig sign data: ")) + e.what();
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}
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return std::string();
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}
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void PendingTransactionImpl::signMultisigTx() {
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try {
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std::vector<crypto::hash> ignore;
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tools::wallet2::multisig_tx_set txSet;
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txSet.m_ptx = m_pending_tx;
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txSet.m_signers = m_signers;
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if (!m_wallet.m_wallet->sign_multisig_tx(txSet, ignore)) {
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throw std::runtime_error("couldn't sign multisig transaction");
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}
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std::swap(m_pending_tx, txSet.m_ptx);
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std::swap(m_signers, txSet.m_signers);
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} catch (const std::exception& e) {
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m_status = Status_Error;
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m_errorString = std::string(tr("Couldn't sign multisig transaction: ")) + e.what();
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}
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}
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std::vector<std::string> PendingTransactionImpl::signersKeys() const {
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std::vector<std::string> keys;
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keys.reserve(m_signers.size());
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for (const auto& signer: m_signers) {
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keys.emplace_back(tools::base58::encode(cryptonote::t_serializable_object_to_blob(signer)));
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}
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return keys;
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}
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}
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}
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namespace Bitmonero = Monero;
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namespace Bitmonero = Monero;
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@ -55,6 +55,10 @@ public:
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std::vector<std::set<uint32_t>> subaddrIndices() const;
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std::vector<std::set<uint32_t>> subaddrIndices() const;
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// TODO: continue with interface;
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// TODO: continue with interface;
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std::string multisigSignData();
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void signMultisigTx();
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std::vector<std::string> signersKeys() const;
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private:
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private:
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friend class WalletImpl;
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friend class WalletImpl;
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WalletImpl &m_wallet;
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WalletImpl &m_wallet;
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@ -62,6 +66,7 @@ private:
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int m_status;
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int m_status;
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std::string m_errorString;
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std::string m_errorString;
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std::vector<tools::wallet2::pending_tx> m_pending_tx;
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std::vector<tools::wallet2::pending_tx> m_pending_tx;
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std::unordered_set<crypto::public_key> m_signers;
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};
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};
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@ -77,6 +77,36 @@ namespace {
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dir /= ".shared-ringdb";
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dir /= ".shared-ringdb";
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return dir.string();
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return dir.string();
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}
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}
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void checkMultisigWalletReady(const tools::wallet2* wallet) {
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if (!wallet) {
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throw runtime_error("Wallet is not initialized yet");
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}
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bool ready;
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if (!wallet->multisig(&ready)) {
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throw runtime_error("Wallet is not multisig");
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}
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if (!ready) {
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throw runtime_error("Multisig wallet is not finalized yet");
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}
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}
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void checkMultisigWalletNotReady(const tools::wallet2* wallet) {
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if (!wallet) {
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throw runtime_error("Wallet is not initialized yet");
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}
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bool ready;
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if (!wallet->multisig(&ready)) {
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throw runtime_error("Wallet is not multisig");
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}
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if (ready) {
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throw runtime_error("Multisig wallet is already finalized");
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}
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}
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}
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}
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struct Wallet2CallbackImpl : public tools::i_wallet2_callback
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struct Wallet2CallbackImpl : public tools::i_wallet2_callback
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@ -1058,6 +1088,132 @@ void WalletImpl::setSubaddressLabel(uint32_t accountIndex, uint32_t addressIndex
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}
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}
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}
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}
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MultisigState WalletImpl::multisig() const {
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MultisigState state;
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state.isMultisig = m_wallet->multisig(&state.isReady, &state.threshold, &state.total);
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return state;
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}
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string WalletImpl::getMultisigInfo() const {
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try {
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clearStatus();
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return m_wallet->get_multisig_info();
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} catch (const exception& e) {
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LOG_ERROR("Error on generating multisig info: ") << e.what();
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setStatusError(string(tr("Failed to get multisig info: ")) + e.what());
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}
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return string();
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}
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string WalletImpl::makeMultisig(const vector<string>& info, uint32_t threshold) {
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try {
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clearStatus();
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if (m_wallet->multisig()) {
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throw runtime_error("Wallet is already multisig");
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}
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return m_wallet->make_multisig(epee::wipeable_string(m_password), info, threshold);
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} catch (const exception& e) {
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LOG_ERROR("Error on making multisig wallet: ") << e.what();
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setStatusError(string(tr("Failed to make multisig: ")) + e.what());
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}
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return string();
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}
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bool WalletImpl::finalizeMultisig(const vector<string>& extraMultisigInfo) {
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try {
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clearStatus();
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checkMultisigWalletNotReady(m_wallet);
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if (m_wallet->finalize_multisig(epee::wipeable_string(m_password), extraMultisigInfo)) {
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return true;
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}
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setStatusError(tr("Failed to finalize multisig wallet creation"));
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} catch (const exception& e) {
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LOG_ERROR("Error on finalizing multisig wallet creation: ") << e.what();
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setStatusError(string(tr("Failed to finalize multisig wallet creation: ")) + e.what());
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}
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return false;
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}
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bool WalletImpl::exportMultisigImages(string& images) {
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try {
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clearStatus();
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checkMultisigWalletReady(m_wallet);
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auto blob = m_wallet->export_multisig();
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images = epee::string_tools::buff_to_hex_nodelimer(blob);
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return true;
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} catch (const exception& e) {
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LOG_ERROR("Error on exporting multisig images: ") << e.what();
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setStatusError(string(tr("Failed to export multisig images: ")) + e.what());
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}
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return false;
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}
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size_t WalletImpl::importMultisigImages(const vector<string>& images) {
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try {
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clearStatus();
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checkMultisigWalletReady(m_wallet);
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std::vector<std::string> blobs;
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blobs.reserve(images.size());
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for (const auto& image: images) {
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std::string blob;
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if (!epee::string_tools::parse_hexstr_to_binbuff(image, blob)) {
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LOG_ERROR("Failed to parse imported multisig images");
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setStatusError(tr("Failed to parse imported multisig images"));
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return 0;
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}
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blobs.emplace_back(std::move(blob));
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}
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return m_wallet->import_multisig(blobs);
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} catch (const exception& e) {
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LOG_ERROR("Error on importing multisig images: ") << e.what();
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setStatusError(string(tr("Failed to import multisig images: ")) + e.what());
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}
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return 0;
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}
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PendingTransaction* WalletImpl::restoreMultisigTransaction(const string& signData) {
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try {
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clearStatus();
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checkMultisigWalletReady(m_wallet);
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string binary;
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if (!epee::string_tools::parse_hexstr_to_binbuff(signData, binary)) {
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throw runtime_error("Failed to deserialize multisig transaction");
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}
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tools::wallet2::multisig_tx_set txSet;
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if (!m_wallet->load_multisig_tx(binary, txSet, {})) {
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throw runtime_error("couldn't parse multisig transaction data");
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}
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auto ptx = new PendingTransactionImpl(*this);
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ptx->m_pending_tx = txSet.m_ptx;
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ptx->m_signers = txSet.m_signers;
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return ptx;
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} catch (exception& e) {
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LOG_ERROR("Error on restoring multisig transaction: ") << e.what();
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setStatusError(string(tr("Failed to restore multisig transaction: ")) + e.what());
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}
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return nullptr;
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}
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// TODO:
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// TODO:
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// 1 - properly handle payment id (add another menthod with explicit 'payment_id' param)
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// 1 - properly handle payment id (add another menthod with explicit 'payment_id' param)
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// 2 - check / design how "Transaction" can be single interface
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// 2 - check / design how "Transaction" can be single interface
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@ -1095,6 +1251,7 @@ PendingTransaction *WalletImpl::createTransaction(const string &dst_addr, const
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break;
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break;
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}
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}
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std::vector<uint8_t> extra;
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std::vector<uint8_t> extra;
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// if dst_addr is not an integrated address, parse payment_id
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// if dst_addr is not an integrated address, parse payment_id
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if (!info.has_payment_id && !payment_id.empty()) {
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if (!info.has_payment_id && !payment_id.empty()) {
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@ -1155,6 +1312,9 @@ PendingTransaction *WalletImpl::createTransaction(const string &dst_addr, const
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extra, subaddr_account, subaddr_indices, m_trustedDaemon);
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extra, subaddr_account, subaddr_indices, m_trustedDaemon);
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}
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}
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if (multisig().isMultisig) {
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transaction->m_signers = m_wallet->make_multisig_tx_set(transaction->m_pending_tx).m_signers;
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}
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} catch (const tools::error::daemon_busy&) {
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} catch (const tools::error::daemon_busy&) {
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// TODO: make it translatable with "tr"?
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// TODO: make it translatable with "tr"?
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setStatusError(tr("daemon is busy. Please try again later."));
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setStatusError(tr("daemon is busy. Please try again later."));
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std::string getSubaddressLabel(uint32_t accountIndex, uint32_t addressIndex) const;
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std::string getSubaddressLabel(uint32_t accountIndex, uint32_t addressIndex) const;
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void setSubaddressLabel(uint32_t accountIndex, uint32_t addressIndex, const std::string &label);
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void setSubaddressLabel(uint32_t accountIndex, uint32_t addressIndex, const std::string &label);
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MultisigState multisig() const override;
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std::string getMultisigInfo() const override;
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std::string makeMultisig(const std::vector<std::string>& info, uint32_t threshold) override;
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bool finalizeMultisig(const std::vector<std::string>& extraMultisigInfo) override;
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bool exportMultisigImages(std::string& images) override;
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size_t importMultisigImages(const std::vector<std::string>& images) override;
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PendingTransaction* restoreMultisigTransaction(const std::string& signData) override;
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PendingTransaction * createTransaction(const std::string &dst_addr, const std::string &payment_id,
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PendingTransaction * createTransaction(const std::string &dst_addr, const std::string &payment_id,
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optional<uint64_t> amount, uint32_t mixin_count,
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optional<uint64_t> amount, uint32_t mixin_count,
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PendingTransaction::Priority priority = PendingTransaction::Priority_Low,
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PendingTransaction::Priority priority = PendingTransaction::Priority_Low,
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@ -100,6 +100,30 @@ struct PendingTransaction
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virtual uint64_t txCount() const = 0;
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virtual uint64_t txCount() const = 0;
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virtual std::vector<uint32_t> subaddrAccount() const = 0;
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virtual std::vector<uint32_t> subaddrAccount() const = 0;
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virtual std::vector<std::set<uint32_t>> subaddrIndices() const = 0;
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virtual std::vector<std::set<uint32_t>> subaddrIndices() const = 0;
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/**
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* @brief multisigSignData
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* @return encoded multisig transaction with signers' keys.
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* Transfer this data to another wallet participant to sign it.
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* Assumed use case is:
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* 1. Initiator:
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* auto data = pendingTransaction->multisigSignData();
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* 2. Signer1:
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* pendingTransaction = wallet->restoreMultisigTransaction(data);
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* pendingTransaction->signMultisigTx();
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* auto signed = pendingTransaction->multisigSignData();
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* 3. Signer2:
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* pendingTransaction = wallet->restoreMultisigTransaction(signed);
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* pendingTransaction->signMultisigTx();
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* pendingTransaction->commit();
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*/
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virtual std::string multisigSignData() = 0;
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virtual void signMultisigTx() = 0;
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/**
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* @brief signersKeys
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* @return vector of base58-encoded signers' public keys
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*/
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virtual std::vector<std::string> signersKeys() const = 0;
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};
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};
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/**
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/**
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@ -291,6 +315,15 @@ struct SubaddressAccount
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virtual void refresh() = 0;
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virtual void refresh() = 0;
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};
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};
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struct MultisigState {
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MultisigState() : isMultisig(false), isReady(false), threshold(0), total(0) {}
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bool isMultisig;
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bool isReady;
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uint32_t threshold;
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uint32_t total;
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};
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struct WalletListener
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struct WalletListener
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{
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{
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virtual ~WalletListener() = 0;
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virtual ~WalletListener() = 0;
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@ -630,6 +663,48 @@ struct Wallet
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*/
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*/
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virtual void setSubaddressLabel(uint32_t accountIndex, uint32_t addressIndex, const std::string &label) = 0;
|
virtual void setSubaddressLabel(uint32_t accountIndex, uint32_t addressIndex, const std::string &label) = 0;
|
||||||
|
|
||||||
|
/**
|
||||||
|
* @brief multisig - returns current state of multisig wallet creation process
|
||||||
|
* @return MultisigState struct
|
||||||
|
*/
|
||||||
|
virtual MultisigState multisig() const = 0;
|
||||||
|
/**
|
||||||
|
* @brief getMultisigInfo
|
||||||
|
* @return serialized and signed multisig info string
|
||||||
|
*/
|
||||||
|
virtual std::string getMultisigInfo() const = 0;
|
||||||
|
/**
|
||||||
|
* @brief makeMultisig - switches wallet in multisig state. The one and only creation phase for N / N wallets
|
||||||
|
* @param info - vector of multisig infos from other participants obtained with getMulitisInfo call
|
||||||
|
* @param threshold - number of required signers to make valid transaction. Must be equal to number of participants (N) or N - 1
|
||||||
|
* @return in case of N / N wallets returns empty string since no more key exchanges needed. For N - 1 / N wallets returns base58 encoded extra multisig info
|
||||||
|
*/
|
||||||
|
virtual std::string makeMultisig(const std::vector<std::string>& info, uint32_t threshold) = 0;
|
||||||
|
/**
|
||||||
|
* @brief finalizeMultisig - finalizes N - 1 / N multisig wallets creation
|
||||||
|
* @param extraMultisigInfo - wallet participants' extra multisig info obtained with makeMultisig call
|
||||||
|
* @return true if success
|
||||||
|
*/
|
||||||
|
virtual bool finalizeMultisig(const std::vector<std::string>& extraMultisigInfo) = 0;
|
||||||
|
/**
|
||||||
|
* @brief exportMultisigImages - exports transfers' key images
|
||||||
|
* @param images - output paramter for hex encoded array of images
|
||||||
|
* @return true if success
|
||||||
|
*/
|
||||||
|
virtual bool exportMultisigImages(std::string& images) = 0;
|
||||||
|
/**
|
||||||
|
* @brief importMultisigImages - imports other participants' multisig images
|
||||||
|
* @param images - array of hex encoded arrays of images obtained with exportMultisigImages
|
||||||
|
* @return number of imported images
|
||||||
|
*/
|
||||||
|
virtual size_t importMultisigImages(const std::vector<std::string>& images) = 0;
|
||||||
|
|
||||||
|
/**
|
||||||
|
* @brief restoreMultisigTransaction creates PendingTransaction from signData
|
||||||
|
* @param signData encrypted unsigned transaction. Obtained with PendingTransaction::multisigSignData
|
||||||
|
* @return PendingTransaction
|
||||||
|
*/
|
||||||
|
virtual PendingTransaction* restoreMultisigTransaction(const std::string& signData) = 0;
|
||||||
/*!
|
/*!
|
||||||
* \brief createTransaction creates transaction. if dst_addr is an integrated address, payment_id is ignored
|
* \brief createTransaction creates transaction. if dst_addr is an integrated address, payment_id is ignored
|
||||||
* \param dst_addr destination address as string
|
* \param dst_addr destination address as string
|
||||||
|
|
|
@ -4955,7 +4955,7 @@ bool wallet2::save_multisig_tx(const multisig_tx_set &txs, const std::string &fi
|
||||||
return epee::file_io_utils::save_string_to_file(filename, ciphertext);
|
return epee::file_io_utils::save_string_to_file(filename, ciphertext);
|
||||||
}
|
}
|
||||||
//----------------------------------------------------------------------------------------------------
|
//----------------------------------------------------------------------------------------------------
|
||||||
std::string wallet2::save_multisig_tx(const std::vector<pending_tx>& ptx_vector)
|
wallet2::multisig_tx_set wallet2::make_multisig_tx_set(const std::vector<pending_tx>& ptx_vector) const
|
||||||
{
|
{
|
||||||
multisig_tx_set txs;
|
multisig_tx_set txs;
|
||||||
txs.m_ptx = ptx_vector;
|
txs.m_ptx = ptx_vector;
|
||||||
|
@ -4967,8 +4967,12 @@ std::string wallet2::save_multisig_tx(const std::vector<pending_tx>& ptx_vector)
|
||||||
}
|
}
|
||||||
|
|
||||||
txs.m_signers.insert(get_multisig_signer_public_key());
|
txs.m_signers.insert(get_multisig_signer_public_key());
|
||||||
|
return txs;
|
||||||
|
}
|
||||||
|
|
||||||
return save_multisig_tx(txs);
|
std::string wallet2::save_multisig_tx(const std::vector<pending_tx>& ptx_vector)
|
||||||
|
{
|
||||||
|
return save_multisig_tx(make_multisig_tx_set(ptx_vector));
|
||||||
}
|
}
|
||||||
//----------------------------------------------------------------------------------------------------
|
//----------------------------------------------------------------------------------------------------
|
||||||
bool wallet2::save_multisig_tx(const std::vector<pending_tx>& ptx_vector, const std::string &filename)
|
bool wallet2::save_multisig_tx(const std::vector<pending_tx>& ptx_vector, const std::string &filename)
|
||||||
|
|
|
@ -686,6 +686,7 @@ namespace tools
|
||||||
bool save_multisig_tx(const multisig_tx_set &txs, const std::string &filename);
|
bool save_multisig_tx(const multisig_tx_set &txs, const std::string &filename);
|
||||||
std::string save_multisig_tx(const std::vector<pending_tx>& ptx_vector);
|
std::string save_multisig_tx(const std::vector<pending_tx>& ptx_vector);
|
||||||
bool save_multisig_tx(const std::vector<pending_tx>& ptx_vector, const std::string &filename);
|
bool save_multisig_tx(const std::vector<pending_tx>& ptx_vector, const std::string &filename);
|
||||||
|
multisig_tx_set make_multisig_tx_set(const std::vector<pending_tx>& ptx_vector) const;
|
||||||
// load unsigned tx from file and sign it. Takes confirmation callback as argument. Used by the cli wallet
|
// load unsigned tx from file and sign it. Takes confirmation callback as argument. Used by the cli wallet
|
||||||
bool sign_tx(const std::string &unsigned_filename, const std::string &signed_filename, std::vector<wallet2::pending_tx> &ptx, std::function<bool(const unsigned_tx_set&)> accept_func = NULL, bool export_raw = false);
|
bool sign_tx(const std::string &unsigned_filename, const std::string &signed_filename, std::vector<wallet2::pending_tx> &ptx, std::function<bool(const unsigned_tx_set&)> accept_func = NULL, bool export_raw = false);
|
||||||
// sign unsigned tx. Takes unsigned_tx_set as argument. Used by GUI
|
// sign unsigned tx. Takes unsigned_tx_set as argument. Used by GUI
|
||||||
|
|
Loading…
Reference in New Issue