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This is a whitespace-only clang-format change. To verify it, one can run: ```sh (git show | git apply --reverse ) && ( git diff -U0 | ./contrib/devtools/clang-format-diff.py -p1 -i -v ) && git diff HEAD ``` A few minor, non-macro formatting adjustments were made in touched files: * `src/wallet/test/fuzz/crypter.cpp`: Removed a redundant double semicolon * `src/test/fuzz/txorphan.cpp`: Corrected indentation on an `else if` block. * `src/test/fuzz/mini_miner.cpp`: Removed an unnecessary empty line.
209 lines
8.4 KiB
C++
209 lines
8.4 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 <consensus/tx_check.h>
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#include <consensus/validation.h>
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#include <net.h>
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#include <primitives/transaction.h>
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#include <private_broadcast.h>
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#include <test/fuzz/FuzzedDataProvider.h>
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#include <test/fuzz/fuzz.h>
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#include <test/fuzz/util.h>
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#include <test/fuzz/util/net.h>
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#include <test/util/setup_common.h>
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#include <test/util/time.h>
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#include <util/overflow.h>
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#include <util/time.h>
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#include <unordered_set>
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struct CTransactionRefHash {
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size_t operator()(const CTransactionRef& tx) const
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{
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return static_cast<size_t>(tx->GetWitnessHash().ToUint256().GetUint64(0));
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}
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};
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struct CTransactionRefComp {
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bool operator()(const CTransactionRef& a, const CTransactionRef& b) const
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{
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return a->GetWitnessHash() == b->GetWitnessHash();
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}
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};
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FUZZ_TARGET(private_broadcast)
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{
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SeedRandomStateForTest(SeedRand::ZEROS);
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FuzzedDataProvider fdp(buffer.data(), buffer.size());
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FakeNodeClock clock_ctx{ConsumeTime(fdp)};
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const size_t cap{fdp.ConsumeIntegralInRange<size_t>(1, 12)};
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PrivateBroadcast pb{cap};
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// Random transaction that the test generated and passed to Add(). Trimmed when Remove() is called.
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// The values are the number of times a transaction was picked for sending.
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std::unordered_map<CTransactionRef, size_t, CTransactionRefHash, CTransactionRefComp> transactions;
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// Ids of nodes that were passed to PickTxForSend(). Trimmed when Remove() is called.
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std::unordered_set<NodeId> nodes_sent_to;
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// A subset of `nodes_sent_to`, node ids passed to NodeConfirmedReception(). Trimmed when Remove() is called.
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std::unordered_set<NodeId> nodes_that_confirmed_reception;
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NodeId next_nodeid{0}; // Generate unique node ids.
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const auto ExistentOrNewNodeId = [&next_nodeid, &fdp](){
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if (next_nodeid == 0 || fdp.ConsumeBool()) {
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return next_nodeid++;
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}
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return fdp.ConsumeIntegralInRange<NodeId>(0, next_nodeid - 1);
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};
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LIMITED_WHILE (fdp.ConsumeBool(), 10000) {
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CallOneOf(
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fdp,
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[&] { // Add()
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CTransactionRef tx;
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if (transactions.empty() || fdp.ConsumeBool()) {
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tx = MakeTransactionRef(ConsumeTransaction(fdp, std::nullopt));
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} else {
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tx = PickIterator(fdp, transactions)->first;
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}
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const bool present_before{transactions.contains(tx)};
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const auto res{pb.Add(tx)};
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if (present_before) {
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Assert(res == PrivateBroadcast::AddResult::AlreadyPresent);
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} else if (transactions.size() >= cap) {
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Assert(res == PrivateBroadcast::AddResult::QueueFull);
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} else {
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Assert(res == PrivateBroadcast::AddResult::Added);
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transactions.emplace(tx, 0);
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}
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},
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[&] { // Remove()
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if (transactions.empty()) {
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return;
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}
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const auto transactions_it{PickIterator(fdp, transactions)};
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const CTransactionRef& tx{transactions_it->first};
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size_t num_nodes_that_confirmed_tx{0};
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// Remove relevant entries from nodes_sent_to[] and nodes_that_confirmed_reception[] if any.
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for (auto it = nodes_sent_to.begin(); it != nodes_sent_to.end();) {
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const NodeId nodeid{*it};
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const auto opt_tx_for_node{pb.GetTxForNode(nodeid)};
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if (opt_tx_for_node.has_value() && opt_tx_for_node.value() == tx) {
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it = nodes_sent_to.erase(it);
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if (nodes_that_confirmed_reception.erase(nodeid) > 0) {
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++num_nodes_that_confirmed_tx;
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}
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} else {
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++it;
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}
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}
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const auto opt_num_confirmed{pb.Remove(tx)};
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Assert(opt_num_confirmed.has_value());
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Assert(opt_num_confirmed.value() == num_nodes_that_confirmed_tx);
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Assert(!pb.Remove(tx).has_value());
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transactions.erase(transactions_it);
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},
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[&] { // PickTxForSend()
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// Only give pristine node ids to PickTxForSend() as required.
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const NodeId will_send_to_nodeid{next_nodeid++};
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const CService will_send_to_address{ConsumeService(fdp)};
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const auto opt_tx{pb.PickTxForSend(will_send_to_nodeid, will_send_to_address)};
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if (opt_tx.has_value()) {
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Assert(transactions.contains(opt_tx.value()));
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// "Number of times picked for sending" is the primary key in Priority's comparison
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// (fewest sends = highest priority), so PickTxForSend() must return a transaction
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// with the minimum send count of any in the queue. Ties are broken by state we
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// don't model, so only check this key.
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const size_t min_picked{std::ranges::min_element(
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transactions, {}, [](const auto& el) { return el.second; })->second};
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const auto picked_it{transactions.find(opt_tx.value())};
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Assert(picked_it != transactions.end());
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Assert(picked_it->second == min_picked); // picked the least-sent transaction
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++picked_it->second; // PickTxForSend() recorded exactly one send
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const auto& [_, inserted]{nodes_sent_to.emplace(will_send_to_nodeid)};
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Assert(inserted);
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} else {
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Assert(transactions.empty());
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}
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},
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[&] { // GetTxForNode()
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const NodeId nodeid{ExistentOrNewNodeId()};
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const auto opt_tx{pb.GetTxForNode(nodeid)};
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if (nodes_sent_to.contains(nodeid)) {
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Assert(opt_tx.has_value());
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Assert(transactions.contains(opt_tx.value()));
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} else {
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Assert(!opt_tx.has_value());
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}
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},
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[&] { // NodeConfirmedReception()
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const NodeId nodeid{ExistentOrNewNodeId()};
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pb.NodeConfirmedReception(nodeid);
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if (nodes_sent_to.contains(nodeid)) {
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// nodeid was previously passed to PickTxForSend(), so NodeConfirmedReception()
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// must have changed the internal state. Remember this to later check that
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// DidNodeConfirmReception() works correctly.
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nodes_that_confirmed_reception.emplace(nodeid);
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}
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},
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[&] { // DidNodeConfirmReception()
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const NodeId nodeid{ExistentOrNewNodeId()};
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const bool confirmed{pb.DidNodeConfirmReception(nodeid)};
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if (nodes_that_confirmed_reception.contains(nodeid)) {
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Assert(confirmed);
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} else {
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Assert(!confirmed);
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}
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},
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[&] { // HavePendingTransactions()
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if (pb.HavePendingTransactions()) {
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Assert(!transactions.empty());
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} else {
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Assert(transactions.empty());
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}
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},
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[&] { // GetStale()
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const auto stale{pb.GetStale()};
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Assert(stale.size() <= transactions.size());
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for (const auto& stale_tx : stale) {
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Assert(transactions.contains(stale_tx));
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}
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},
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[&] { // GetBroadcastInfo()
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const auto all_broadcast_info{pb.GetBroadcastInfo()};
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Assert(all_broadcast_info.size() == transactions.size());
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for (const auto& info : all_broadcast_info) {
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const auto it{transactions.find(info.tx)};
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Assert(it != transactions.end());
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Assert(info.peers.size() == it->second); // exactly the sends we recorded
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}
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},
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[&] {
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clock_ctx.set(ConsumeTime(fdp));
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});
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}
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}
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