performance_tests: add aggregated bulletproof tx verification
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@ -101,3 +101,74 @@ private:
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cryptonote::transaction m_tx;
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crypto::hash m_tx_prefix_hash;
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};
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template<size_t a_ring_size, size_t a_outputs, size_t a_num_txes, size_t extra_outs = 0>
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class test_check_tx_signature_aggregated_bulletproofs : private multi_tx_test_base<a_ring_size>
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{
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static_assert(0 < a_ring_size, "ring_size must be greater than 0");
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public:
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static const size_t loop_count = a_ring_size <= 2 ? 50 : 10;
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static const size_t ring_size = a_ring_size;
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static const size_t outputs = a_outputs;
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typedef multi_tx_test_base<a_ring_size> base_class;
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bool init()
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{
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using namespace cryptonote;
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if (!base_class::init())
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return false;
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m_alice.generate();
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std::vector<tx_destination_entry> destinations;
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destinations.push_back(tx_destination_entry(this->m_source_amount - outputs + 1, m_alice.get_keys().m_account_address, false));
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for (size_t n = 1; n < outputs; ++n)
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destinations.push_back(tx_destination_entry(1, m_alice.get_keys().m_account_address, false));
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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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std::unordered_map<crypto::public_key, cryptonote::subaddress_index> subaddresses;
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subaddresses[this->m_miners[this->real_source_idx].get_keys().m_account_address.m_spend_public_key] = {0,0};
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m_txes.resize(a_num_txes + (extra_outs > 0 ? 1 : 0));
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for (size_t n = 0; n < a_num_txes; ++n)
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{
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if (!construct_tx_and_get_tx_key(this->m_miners[this->real_source_idx].get_keys(), subaddresses, this->m_sources, destinations, cryptonote::account_public_address{}, std::vector<uint8_t>(), m_txes[n], 0, tx_key, additional_tx_keys, true, rct::RangeProofMultiOutputBulletproof))
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return false;
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}
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if (extra_outs)
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{
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destinations.clear();
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destinations.push_back(tx_destination_entry(this->m_source_amount - extra_outs + 1, m_alice.get_keys().m_account_address, false));
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for (size_t n = 1; n < extra_outs; ++n)
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destinations.push_back(tx_destination_entry(1, m_alice.get_keys().m_account_address, false));
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if (!construct_tx_and_get_tx_key(this->m_miners[this->real_source_idx].get_keys(), subaddresses, this->m_sources, destinations, cryptonote::account_public_address{}, std::vector<uint8_t>(), m_txes.back(), 0, tx_key, additional_tx_keys, true, rct::RangeProofMultiOutputBulletproof))
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return false;
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}
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return true;
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}
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bool test()
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{
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std::vector<const rct::rctSig*> rvv;
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rvv.reserve(m_txes.size());
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for (size_t n = 0; n < m_txes.size(); ++n)
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{
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const rct::rctSig &rv = m_txes[n].rct_signatures;
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if (!rct::verRctNonSemanticsSimple(rv))
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return false;
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rvv.push_back(&rv);
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}
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return rct::verRctSemanticsSimple(rvv);
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}
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private:
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cryptonote::account_base m_alice;
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std::vector<cryptonote::transaction> m_txes;
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};
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@ -141,6 +141,16 @@ int main(int argc, char** argv)
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TEST_PERFORMANCE4(filter, verbose, test_check_tx_signature, 100, 2, true, true);
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TEST_PERFORMANCE4(filter, verbose, test_check_tx_signature, 2, 10, true, true);
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TEST_PERFORMANCE3(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 2, 2, 64);
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TEST_PERFORMANCE3(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 10, 2, 64);
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TEST_PERFORMANCE3(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 100, 2, 64);
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TEST_PERFORMANCE3(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 2, 10, 64);
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TEST_PERFORMANCE4(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 2, 2, 62, 4);
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TEST_PERFORMANCE4(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 10, 2, 62, 4);
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TEST_PERFORMANCE4(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 2, 2, 56, 16);
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TEST_PERFORMANCE4(filter, verbose, test_check_tx_signature_aggregated_bulletproofs, 10, 2, 56, 16);
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TEST_PERFORMANCE0(filter, verbose, test_is_out_to_acc);
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TEST_PERFORMANCE0(filter, verbose, test_is_out_to_acc_precomp);
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TEST_PERFORMANCE0(filter, verbose, test_generate_key_image_helper);
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