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https://codeberg.org/anoncontributorxmr/monero.git
synced 2024-11-23 19:33:28 +01:00
Merge pull request #3616
94b899db
Use 'boost' mutex instead of 'std' mutex (cslashm)2c274e05
Fix sub-address tx scan. (cslashm)
This commit is contained in:
commit
079dd5dfef
@ -145,6 +145,7 @@ namespace hw {
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virtual bool sc_secret_add( crypto::secret_key &r, const crypto::secret_key &a, const crypto::secret_key &b) = 0;
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virtual bool sc_secret_add( crypto::secret_key &r, const crypto::secret_key &a, const crypto::secret_key &b) = 0;
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virtual crypto::secret_key generate_keys(crypto::public_key &pub, crypto::secret_key &sec, const crypto::secret_key& recovery_key = crypto::secret_key(), bool recover = false) = 0;
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virtual crypto::secret_key generate_keys(crypto::public_key &pub, crypto::secret_key &sec, const crypto::secret_key& recovery_key = crypto::secret_key(), bool recover = false) = 0;
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virtual bool generate_key_derivation(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_derivation &derivation) = 0;
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virtual bool generate_key_derivation(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_derivation &derivation) = 0;
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virtual bool conceal_derivation(crypto::key_derivation &derivation, const crypto::public_key &tx_pub_key, const std::vector<crypto::public_key> &additional_tx_pub_keys, const crypto::key_derivation &main_derivation, const std::vector<crypto::key_derivation> &additional_derivations) = 0;
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virtual bool derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) = 0;
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virtual bool derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) = 0;
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virtual bool derive_secret_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::secret_key &sec, crypto::secret_key &derived_sec) = 0;
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virtual bool derive_secret_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::secret_key &sec, crypto::secret_key &derived_sec) = 0;
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virtual bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) = 0;
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virtual bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) = 0;
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@ -264,6 +264,10 @@ namespace hw {
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return true;
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return true;
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}
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}
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bool device_default::conceal_derivation(crypto::key_derivation &derivation, const crypto::public_key &tx_pub_key, const std::vector<crypto::public_key> &additional_tx_pub_keys, const crypto::key_derivation &main_derivation, const std::vector<crypto::key_derivation> &additional_derivations){
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return true;
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}
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/* ======================================================================= */
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/* ======================================================================= */
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/* TRANSACTION */
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/* TRANSACTION */
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/* ======================================================================= */
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/* ======================================================================= */
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@ -93,6 +93,7 @@ namespace hw {
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bool sc_secret_add(crypto::secret_key &r, const crypto::secret_key &a, const crypto::secret_key &b) override;
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bool sc_secret_add(crypto::secret_key &r, const crypto::secret_key &a, const crypto::secret_key &b) override;
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crypto::secret_key generate_keys(crypto::public_key &pub, crypto::secret_key &sec, const crypto::secret_key& recovery_key = crypto::secret_key(), bool recover = false) override;
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crypto::secret_key generate_keys(crypto::public_key &pub, crypto::secret_key &sec, const crypto::secret_key& recovery_key = crypto::secret_key(), bool recover = false) override;
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bool generate_key_derivation(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_derivation &derivation) override;
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bool generate_key_derivation(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_derivation &derivation) override;
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bool conceal_derivation(crypto::key_derivation &derivation, const crypto::public_key &tx_pub_key, const std::vector<crypto::public_key> &additional_tx_pub_keys, const crypto::key_derivation &main_derivation, const std::vector<crypto::key_derivation> &additional_derivations);
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bool derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) override;
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bool derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) override;
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bool derive_secret_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::secret_key &sec, crypto::secret_key &derived_sec) override;
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bool derive_secret_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::secret_key &sec, crypto::secret_key &derived_sec) override;
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bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) override;
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bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) override;
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@ -56,6 +56,7 @@ namespace hw {
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#define ASSERT_RV(rv) CHECK_AND_ASSERT_THROW_MES((rv)==SCARD_S_SUCCESS, "Fail SCard API : (" << (rv) << ") "<< pcsc_stringify_error(rv)<<" Device="<<this->id<<", hCard="<<hCard<<", hContext="<<hContext);
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#define ASSERT_RV(rv) CHECK_AND_ASSERT_THROW_MES((rv)==SCARD_S_SUCCESS, "Fail SCard API : (" << (rv) << ") "<< pcsc_stringify_error(rv)<<" Device="<<this->id<<", hCard="<<hCard<<", hContext="<<hContext);
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#define ASSERT_SW(sw,ok,msk) CHECK_AND_ASSERT_THROW_MES(((sw)&(mask))==(ok), "Wrong Device Status : SW=" << std::hex << (sw) << " (EXPECT=" << std::hex << (ok) << ", MASK=" << std::hex << (mask) << ")") ;
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#define ASSERT_SW(sw,ok,msk) CHECK_AND_ASSERT_THROW_MES(((sw)&(mask))==(ok), "Wrong Device Status : SW=" << std::hex << (sw) << " (EXPECT=" << std::hex << (ok) << ", MASK=" << std::hex << (mask) << ")") ;
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#define ASSERT_T0(exp) CHECK_AND_ASSERT_THROW_MES(exp, "Protocol assert failure: "#exp ) ;
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#define ASSERT_T0(exp) CHECK_AND_ASSERT_THROW_MES(exp, "Protocol assert failure: "#exp ) ;
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#define ASSERT_X(exp,msg) CHECK_AND_ASSERT_THROW_MES(exp, msg);
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#ifdef DEBUG_HWDEVICE
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#ifdef DEBUG_HWDEVICE
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crypto::secret_key dbg_viewkey;
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crypto::secret_key dbg_viewkey;
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@ -125,6 +126,10 @@ namespace hw {
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return sec == crypto::null_skey;
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return sec == crypto::null_skey;
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}
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}
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bool operator==(const crypto::key_derivation &d0, const crypto::key_derivation &d1) {
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return !memcmp(&d0, &d1, sizeof(d0));
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}
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/* ===================================================================== */
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/* ===================================================================== */
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/* === Device ==== */
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/* === Device ==== */
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/* ===================================================================== */
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/* ===================================================================== */
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@ -1094,6 +1099,24 @@ namespace hw {
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return r;
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return r;
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}
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}
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bool device_ledger::conceal_derivation(crypto::key_derivation &derivation, const crypto::public_key &tx_pub_key, const std::vector<crypto::public_key> &additional_tx_pub_keys, const crypto::key_derivation &main_derivation, const std::vector<crypto::key_derivation> &additional_derivations) {
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const crypto::public_key *pkey=NULL;
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if (derivation == main_derivation) {
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pkey = &tx_pub_key;
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MDEBUG("conceal derivation with main tx pub key");
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} else {
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for(size_t n=0; n < additional_derivations.size();++n) {
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if(derivation == additional_derivations[n]) {
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pkey = &additional_tx_pub_keys[n];
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MDEBUG("conceal derivation with additionnal tx pub key");
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break;
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}
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}
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}
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ASSERT_X(pkey, "Mismatched derivation on scan info");
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return this->generate_key_derivation(*pkey, crypto::null_skey, derivation);
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}
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bool device_ledger::derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) {
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bool device_ledger::derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) {
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AUTO_LOCK_CMD();
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AUTO_LOCK_CMD();
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int offset;
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int offset;
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@ -169,6 +169,7 @@ namespace hw {
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bool sc_secret_add(crypto::secret_key &r, const crypto::secret_key &a, const crypto::secret_key &b) override;
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bool sc_secret_add(crypto::secret_key &r, const crypto::secret_key &a, const crypto::secret_key &b) override;
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crypto::secret_key generate_keys(crypto::public_key &pub, crypto::secret_key &sec, const crypto::secret_key& recovery_key = crypto::secret_key(), bool recover = false) override;
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crypto::secret_key generate_keys(crypto::public_key &pub, crypto::secret_key &sec, const crypto::secret_key& recovery_key = crypto::secret_key(), bool recover = false) override;
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bool generate_key_derivation(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_derivation &derivation) override;
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bool generate_key_derivation(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_derivation &derivation) override;
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bool conceal_derivation(crypto::key_derivation &derivation, const crypto::public_key &tx_pub_key, const std::vector<crypto::public_key> &additional_tx_pub_keys, const crypto::key_derivation &main_derivation, const std::vector<crypto::key_derivation> &additional_derivations);
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bool derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) override;
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bool derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) override;
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bool derive_secret_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::secret_key &sec, crypto::secret_key &derived_sec) override;
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bool derive_secret_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::secret_key &sec, crypto::secret_key &derived_sec) override;
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bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) override;
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bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) override;
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@ -1009,7 +1009,7 @@ void wallet2::set_unspent(size_t idx)
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void wallet2::check_acc_out_precomp(const tx_out &o, const crypto::key_derivation &derivation, const std::vector<crypto::key_derivation> &additional_derivations, size_t i, tx_scan_info_t &tx_scan_info) const
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void wallet2::check_acc_out_precomp(const tx_out &o, const crypto::key_derivation &derivation, const std::vector<crypto::key_derivation> &additional_derivations, size_t i, tx_scan_info_t &tx_scan_info) const
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{
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{
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hw::device &hwdev = m_account.get_device();
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hw::device &hwdev = m_account.get_device();
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std::unique_lock<hw::device> hwdev_lock (hwdev);
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boost::unique_lock<hw::device> hwdev_lock (hwdev);
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hwdev.set_mode(hw::device::TRANSACTION_PARSE);
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hwdev.set_mode(hw::device::TRANSACTION_PARSE);
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if (o.target.type() != typeid(txout_to_key))
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if (o.target.type() != typeid(txout_to_key))
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{
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{
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@ -1087,7 +1087,7 @@ void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote
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//ensure device is let in NONE mode in any case
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//ensure device is let in NONE mode in any case
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hw::device &hwdev = m_account.get_device();
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hw::device &hwdev = m_account.get_device();
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std::unique_lock<hw::device> hwdev_lock (hwdev);
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boost::unique_lock<hw::device> hwdev_lock (hwdev);
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hw::reset_mode rst(hwdev);
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hw::reset_mode rst(hwdev);
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hwdev_lock.unlock();
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hwdev_lock.unlock();
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@ -1182,7 +1182,7 @@ void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote
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THROW_WALLET_EXCEPTION_IF(tx_scan_info[i].error, error::acc_outs_lookup_error, tx, tx_pub_key, m_account.get_keys());
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THROW_WALLET_EXCEPTION_IF(tx_scan_info[i].error, error::acc_outs_lookup_error, tx, tx_pub_key, m_account.get_keys());
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if (tx_scan_info[i].received)
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if (tx_scan_info[i].received)
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{
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{
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hwdev.generate_key_derivation(tx_pub_key, keys.m_view_secret_key, tx_scan_info[i].received->derivation);
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hwdev.conceal_derivation(tx_scan_info[i].received->derivation, tx_pub_key, additional_tx_pub_keys, derivation, additional_derivations);
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scan_output(tx, tx_pub_key, i, tx_scan_info[i], num_vouts_received, tx_money_got_in_outs, outs);
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scan_output(tx, tx_pub_key, i, tx_scan_info[i], num_vouts_received, tx_money_got_in_outs, outs);
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}
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}
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}
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}
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@ -1205,7 +1205,7 @@ void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote
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THROW_WALLET_EXCEPTION_IF(tx_scan_info[i].error, error::acc_outs_lookup_error, tx, tx_pub_key, m_account.get_keys());
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THROW_WALLET_EXCEPTION_IF(tx_scan_info[i].error, error::acc_outs_lookup_error, tx, tx_pub_key, m_account.get_keys());
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if (tx_scan_info[i].received)
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if (tx_scan_info[i].received)
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{
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{
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hwdev.generate_key_derivation(tx_pub_key, keys.m_view_secret_key, tx_scan_info[i].received->derivation);
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hwdev.conceal_derivation(tx_scan_info[i].received->derivation, tx_pub_key, additional_tx_pub_keys, derivation, additional_derivations);
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scan_output(tx, tx_pub_key, i, tx_scan_info[i], num_vouts_received, tx_money_got_in_outs, outs);
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scan_output(tx, tx_pub_key, i, tx_scan_info[i], num_vouts_received, tx_money_got_in_outs, outs);
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}
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}
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}
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}
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@ -1221,7 +1221,7 @@ void wallet2::process_new_transaction(const crypto::hash &txid, const cryptonote
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{
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{
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hwdev_lock.lock();
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hwdev_lock.lock();
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hwdev.set_mode(hw::device::NONE);
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hwdev.set_mode(hw::device::NONE);
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hwdev.generate_key_derivation(tx_pub_key, keys.m_view_secret_key, tx_scan_info[i].received->derivation);
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hwdev.conceal_derivation(tx_scan_info[i].received->derivation, tx_pub_key, additional_tx_pub_keys, derivation, additional_derivations);
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scan_output(tx, tx_pub_key, i, tx_scan_info[i], num_vouts_received, tx_money_got_in_outs, outs);
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scan_output(tx, tx_pub_key, i, tx_scan_info[i], num_vouts_received, tx_money_got_in_outs, outs);
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hwdev_lock.unlock();
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hwdev_lock.unlock();
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}
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}
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@ -7304,7 +7304,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
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{
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{
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//ensure device is let in NONE mode in any case
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//ensure device is let in NONE mode in any case
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hw::device &hwdev = m_account.get_device();
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hw::device &hwdev = m_account.get_device();
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std::unique_lock<hw::device> hwdev_lock (hwdev);
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boost::unique_lock<hw::device> hwdev_lock (hwdev);
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hw::reset_mode rst(hwdev);
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hw::reset_mode rst(hwdev);
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if(m_light_wallet) {
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if(m_light_wallet) {
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@ -7887,7 +7887,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_from(const crypton
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{
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{
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//ensure device is let in NONE mode in any case
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//ensure device is let in NONE mode in any case
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hw::device &hwdev = m_account.get_device();
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hw::device &hwdev = m_account.get_device();
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std::unique_lock<hw::device> hwdev_lock (hwdev);
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boost::unique_lock<hw::device> hwdev_lock (hwdev);
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hw::reset_mode rst(hwdev);
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hw::reset_mode rst(hwdev);
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uint64_t accumulated_fee, accumulated_outputs, accumulated_change;
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uint64_t accumulated_fee, accumulated_outputs, accumulated_change;
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