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Co-authored-by: Daniela Brozzoni <danielabrozzoni@protonmail.com> Co-authored-by: l0rinc <pap.lorinc@gmail.com>
135 lines
5.3 KiB
C++
135 lines
5.3 KiB
C++
// Copyright (c) 2025-present The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <primitives/transaction.h>
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#include <private_broadcast.h>
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#include <test/util/setup_common.h>
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#include <util/time.h>
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#include <algorithm>
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#include <boost/test/unit_test.hpp>
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BOOST_FIXTURE_TEST_SUITE(private_broadcast_tests, BasicTestingSetup)
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static CTransactionRef MakeDummyTx(uint32_t id, size_t num_witness)
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{
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CMutableTransaction mtx;
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mtx.vin.resize(1);
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mtx.vin[0].nSequence = id;
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if (num_witness > 0) {
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mtx.vin[0].scriptWitness = CScriptWitness{};
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mtx.vin[0].scriptWitness.stack.resize(num_witness);
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}
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return MakeTransactionRef(mtx);
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}
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BOOST_AUTO_TEST_CASE(basic)
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{
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SetMockTime(Now<NodeSeconds>());
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PrivateBroadcast pb;
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const NodeId recipient1{1};
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in_addr ipv4Addr;
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ipv4Addr.s_addr = 0xa0b0c001;
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const CService addr1{ipv4Addr, 1111};
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// No transactions initially.
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BOOST_CHECK(!pb.PickTxForSend(/*will_send_to_nodeid=*/recipient1, /*will_send_to_address=*/addr1).has_value());
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BOOST_CHECK_EQUAL(pb.GetStale().size(), 0);
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BOOST_CHECK(!pb.HavePendingTransactions());
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BOOST_CHECK_EQUAL(pb.GetBroadcastInfo().size(), 0);
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// Make a transaction and add it.
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const auto tx1{MakeDummyTx(/*id=*/1, /*num_witness=*/0)};
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BOOST_CHECK(pb.Add(tx1));
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BOOST_CHECK(!pb.Add(tx1));
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// Make another transaction with same txid, different wtxid and add it.
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const auto tx2{MakeDummyTx(/*id=*/1, /*num_witness=*/1)};
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BOOST_REQUIRE(tx1->GetHash() == tx2->GetHash());
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BOOST_REQUIRE(tx1->GetWitnessHash() != tx2->GetWitnessHash());
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BOOST_CHECK(pb.Add(tx2));
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const auto find_tx_info{[](auto& infos, const CTransactionRef& tx) -> const PrivateBroadcast::TxBroadcastInfo& {
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const auto it{std::ranges::find(infos, tx->GetWitnessHash(), [](const auto& info) { return info.tx->GetWitnessHash(); })};
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BOOST_REQUIRE(it != infos.end());
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return *it;
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}};
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const auto check_peer_counts{[&](size_t tx1_peer_count, size_t tx2_peer_count) {
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const auto infos{pb.GetBroadcastInfo()};
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BOOST_CHECK_EQUAL(infos.size(), 2);
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BOOST_CHECK_EQUAL(find_tx_info(infos, tx1).peers.size(), tx1_peer_count);
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BOOST_CHECK_EQUAL(find_tx_info(infos, tx2).peers.size(), tx2_peer_count);
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}};
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check_peer_counts(/*tx1_peer_count=*/0, /*tx2_peer_count=*/0);
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const auto tx_for_recipient1{pb.PickTxForSend(/*will_send_to_nodeid=*/recipient1, /*will_send_to_address=*/addr1).value()};
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BOOST_CHECK(tx_for_recipient1 == tx1 || tx_for_recipient1 == tx2);
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// A second pick must return the other transaction.
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const NodeId recipient2{2};
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const CService addr2{ipv4Addr, 2222};
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const auto tx_for_recipient2{pb.PickTxForSend(/*will_send_to_nodeid=*/recipient2, /*will_send_to_address=*/addr2).value()};
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BOOST_CHECK(tx_for_recipient2 == tx1 || tx_for_recipient2 == tx2);
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BOOST_CHECK_NE(tx_for_recipient1, tx_for_recipient2);
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check_peer_counts(/*tx1_peer_count=*/1, /*tx2_peer_count=*/1);
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const NodeId nonexistent_recipient{0};
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// Confirm transactions <-> recipients mapping is correct.
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BOOST_CHECK(!pb.GetTxForNode(nonexistent_recipient).has_value());
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BOOST_CHECK_EQUAL(pb.GetTxForNode(recipient1).value(), tx_for_recipient1);
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BOOST_CHECK_EQUAL(pb.GetTxForNode(recipient2).value(), tx_for_recipient2);
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// Confirm none of the transactions' reception have been confirmed.
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BOOST_CHECK(!pb.DidNodeConfirmReception(recipient1));
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BOOST_CHECK(!pb.DidNodeConfirmReception(recipient2));
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BOOST_CHECK(!pb.DidNodeConfirmReception(nonexistent_recipient));
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BOOST_CHECK_EQUAL(pb.GetStale().size(), 2);
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// Confirm reception by recipient1.
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pb.NodeConfirmedReception(nonexistent_recipient); // Dummy call.
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pb.NodeConfirmedReception(recipient1);
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BOOST_CHECK(pb.DidNodeConfirmReception(recipient1));
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BOOST_CHECK(!pb.DidNodeConfirmReception(recipient2));
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const auto infos{pb.GetBroadcastInfo()};
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BOOST_CHECK_EQUAL(infos.size(), 2);
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{
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const auto& [tx, peers]{find_tx_info(infos, tx_for_recipient1)};
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BOOST_CHECK_EQUAL(peers.size(), 1);
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BOOST_CHECK_EQUAL(peers[0].address.ToStringAddrPort(), addr1.ToStringAddrPort());
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BOOST_CHECK(peers[0].received.has_value());
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}
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{
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const auto& [tx, peers]{find_tx_info(infos, tx_for_recipient2)};
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BOOST_CHECK_EQUAL(peers.size(), 1);
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BOOST_CHECK_EQUAL(peers[0].address.ToStringAddrPort(), addr2.ToStringAddrPort());
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BOOST_CHECK(!peers[0].received.has_value());
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}
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BOOST_CHECK_EQUAL(pb.GetStale().size(), 1);
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BOOST_CHECK_EQUAL(pb.GetStale()[0], tx_for_recipient2);
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SetMockTime(Now<NodeSeconds>() + 10h);
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BOOST_CHECK_EQUAL(pb.GetStale().size(), 2);
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BOOST_CHECK_EQUAL(pb.Remove(tx_for_recipient1).value(), 1);
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BOOST_CHECK(!pb.Remove(tx_for_recipient1).has_value());
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BOOST_CHECK_EQUAL(pb.Remove(tx_for_recipient2).value(), 0);
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BOOST_CHECK(!pb.Remove(tx_for_recipient2).has_value());
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BOOST_CHECK_EQUAL(pb.GetBroadcastInfo().size(), 0);
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const CService addr_nonexistent{ipv4Addr, 3333};
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BOOST_CHECK(!pb.PickTxForSend(/*will_send_to_nodeid=*/nonexistent_recipient, /*will_send_to_address=*/addr_nonexistent).has_value());
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}
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BOOST_AUTO_TEST_SUITE_END()
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