core_tests: fix for subaddress patch
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e373a2037b
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@ -158,7 +158,7 @@ namespace cryptonote
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return destinations[0].addr.m_view_public_key;
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}
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//---------------------------------------------------------------
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, const std::unordered_map<crypto::public_key, subaddress_index>& subaddresses, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, const cryptonote::account_public_address& change_addr, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, std::vector<crypto::secret_key> &additional_tx_keys, bool rct)
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, const std::unordered_map<crypto::public_key, subaddress_index>& subaddresses, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, const boost::optional<cryptonote::account_public_address>& change_addr, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, std::vector<crypto::secret_key> &additional_tx_keys, bool rct)
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{
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if (destinations.empty())
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{
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@ -301,7 +301,7 @@ namespace cryptonote
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account_public_address single_dest_subaddress;
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for(const tx_destination_entry& dst_entr: destinations)
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{
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if (dst_entr.addr == change_addr)
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if (change_addr && dst_entr.addr == *change_addr)
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continue;
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if (unique_dst_addresses.count(dst_entr.addr) == 0)
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{
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@ -354,7 +354,7 @@ namespace cryptonote
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}
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bool r;
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if (dst_entr.addr == change_addr)
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if (change_addr && dst_entr.addr == *change_addr)
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{
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// sending change to yourself; derivation = a*R
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r = crypto::generate_key_derivation(txkey.pub, sender_account_keys.m_view_secret_key, derivation);
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@ -565,13 +565,13 @@ namespace cryptonote
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return true;
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}
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//---------------------------------------------------------------
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bool construct_tx(const account_keys& sender_account_keys, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time)
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bool construct_tx(const account_keys& sender_account_keys, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, const boost::optional<cryptonote::account_public_address>& change_addr, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time)
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{
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std::unordered_map<crypto::public_key, cryptonote::subaddress_index> subaddresses;
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subaddresses[sender_account_keys.m_account_address.m_spend_public_key] = {0,0};
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crypto::secret_key tx_key;
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std::vector<crypto::secret_key> additional_tx_keys;
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return construct_tx_and_get_tx_key(sender_account_keys, subaddresses, sources, destinations, destinations.back().addr, extra, tx, unlock_time, tx_key, additional_tx_keys);
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return construct_tx_and_get_tx_key(sender_account_keys, subaddresses, sources, destinations, change_addr, extra, tx, unlock_time, tx_key, additional_tx_keys);
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}
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//---------------------------------------------------------------
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bool generate_genesis_block(
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@ -73,8 +73,8 @@ namespace cryptonote
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//---------------------------------------------------------------
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crypto::public_key get_destination_view_key_pub(const std::vector<tx_destination_entry> &destinations, const account_keys &sender_keys);
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bool construct_tx(const account_keys& sender_account_keys, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time);
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, const std::unordered_map<crypto::public_key, subaddress_index>& subaddresses, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, const cryptonote::account_public_address& change_addr, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, std::vector<crypto::secret_key> &additional_tx_keys, bool rct = false);
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bool construct_tx(const account_keys& sender_account_keys, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, const boost::optional<cryptonote::account_public_address>& change_addr, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time);
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, const std::unordered_map<crypto::public_key, subaddress_index>& subaddresses, std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, const boost::optional<cryptonote::account_public_address>& change_addr, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, std::vector<crypto::secret_key> &additional_tx_keys, bool rct = false);
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bool generate_genesis_block(
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block& bl
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@ -350,7 +350,7 @@ bool gen_block_miner_tx_has_2_in::generate(std::vector<test_event_entry>& events
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destinations.push_back(de);
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transaction tmp_tx;
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if (!construct_tx(miner_account.get_keys(), sources, destinations, std::vector<uint8_t>(), tmp_tx, 0))
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if (!construct_tx(miner_account.get_keys(), sources, destinations, boost::none, std::vector<uint8_t>(), tmp_tx, 0))
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return false;
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MAKE_MINER_TX_MANUALLY(miner_tx, blk_0);
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@ -393,7 +393,7 @@ bool gen_block_miner_tx_with_txin_to_key::generate(std::vector<test_event_entry>
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destinations.push_back(de);
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transaction tmp_tx;
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if (!construct_tx(miner_account.get_keys(), sources, destinations, std::vector<uint8_t>(), tmp_tx, 0))
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if (!construct_tx(miner_account.get_keys(), sources, destinations, boost::none, std::vector<uint8_t>(), tmp_tx, 0))
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return false;
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MAKE_MINER_TX_MANUALLY(miner_tx, blk_1);
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@ -563,7 +563,7 @@ bool construct_tx_to_key(const std::vector<test_event_entry>& events, cryptonote
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vector<tx_destination_entry> destinations;
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fill_tx_sources_and_destinations(events, blk_head, from, to, amount, fee, nmix, sources, destinations);
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return construct_tx(from.get_keys(), sources, destinations, std::vector<uint8_t>(), tx, 0);
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return construct_tx(from.get_keys(), sources, destinations, from.get_keys().m_account_address, std::vector<uint8_t>(), tx, 0);
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}
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transaction construct_tx_with_fee(std::vector<test_event_entry>& events, const block& blk_head,
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@ -144,7 +144,7 @@ bool gen_double_spend_in_tx<txs_keeped_by_block>::generate(std::vector<test_even
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destinations.push_back(de);
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cryptonote::transaction tx_1;
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if (!construct_tx(bob_account.get_keys(), sources, destinations, std::vector<uint8_t>(), tx_1, 0))
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if (!construct_tx(bob_account.get_keys(), sources, destinations, boost::none, std::vector<uint8_t>(), tx_1, 0))
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return false;
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SET_EVENT_VISITOR_SETT(events, event_visitor_settings::set_txs_keeped_by_block, txs_keeped_by_block);
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@ -65,6 +65,7 @@ namespace
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se.real_output = 0;
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se.rct = false;
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se.real_out_tx_key = get_tx_pub_key_from_extra(tx);
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se.real_out_additional_tx_keys = get_additional_tx_pub_keys_from_extra(tx);
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se.real_output_in_tx_index = out_idx;
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sources.push_back(se);
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@ -175,7 +176,7 @@ bool gen_uint_overflow_2::generate(std::vector<test_event_entry>& events) const
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destinations.push_back(tx_destination_entry(sources.front().amount - MONEY_SUPPLY - MONEY_SUPPLY + 1 - TESTS_DEFAULT_FEE, bob_addr, false));
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cryptonote::transaction tx_1;
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if (!construct_tx(miner_account.get_keys(), sources, destinations, std::vector<uint8_t>(), tx_1, 0))
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if (!construct_tx(miner_account.get_keys(), sources, destinations, boost::none, std::vector<uint8_t>(), tx_1, 0))
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return false;
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events.push_back(tx_1);
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@ -201,7 +202,7 @@ bool gen_uint_overflow_2::generate(std::vector<test_event_entry>& events) const
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destinations.push_back(de);
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cryptonote::transaction tx_2;
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if (!construct_tx(bob_account.get_keys(), sources, destinations, std::vector<uint8_t>(), tx_2, 0))
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if (!construct_tx(bob_account.get_keys(), sources, destinations, boost::none, std::vector<uint8_t>(), tx_2, 0))
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return false;
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events.push_back(tx_2);
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@ -108,7 +108,7 @@ bool test_transaction_generation_and_ring_signature()
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destinations.push_back(td);
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transaction tx_rc1;
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bool r = construct_tx(miner_acc2.get_keys(), sources, destinations, std::vector<uint8_t>(), tx_rc1, 0);
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bool r = construct_tx(miner_acc2.get_keys(), sources, destinations, boost::none, std::vector<uint8_t>(), tx_rc1, 0);
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CHECK_AND_ASSERT_MES(r, false, "failed to construct transaction");
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crypto::hash pref_hash = get_transaction_prefix_hash(tx_rc1);
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@ -108,7 +108,7 @@ bool gen_v2_tx_validation_base::generate_with(std::vector<test_event_entry>& eve
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destinations.push_back(td);
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transaction tx;
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bool r = construct_tx(miner_accounts[0].get_keys(), sources, destinations, std::vector<uint8_t>(), tx, 0);
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bool r = construct_tx(miner_accounts[0].get_keys(), sources, destinations, boost::none, std::vector<uint8_t>(), tx, 0);
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CHECK_AND_ASSERT_MES(r, false, "failed to construct transaction");
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if (!valid)
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DO_CALLBACK(events, "mark_invalid_tx");
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@ -54,7 +54,7 @@ public:
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std::vector<tx_destination_entry> destinations;
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destinations.push_back(tx_destination_entry(1, m_alice.get_keys().m_account_address, false));
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return construct_tx(this->m_miners[this->real_source_idx].get_keys(), this->m_sources, destinations, std::vector<uint8_t>(), m_tx, 0);
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return construct_tx(this->m_miners[this->real_source_idx].get_keys(), this->m_sources, destinations, boost::none, std::vector<uint8_t>(), m_tx, 0);
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}
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bool test()
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