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[txorphanage] add method to get all orphans spending a tx
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@ -241,3 +241,77 @@ void TxOrphanage::EraseForBlock(const CBlock& block)
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LogPrint(BCLog::TXPACKAGES, "Erased %d orphan tx included or conflicted by block\n", nErased);
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LogPrint(BCLog::TXPACKAGES, "Erased %d orphan tx included or conflicted by block\n", nErased);
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}
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}
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}
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}
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std::vector<CTransactionRef> TxOrphanage::GetChildrenFromSamePeer(const CTransactionRef& parent, NodeId nodeid) const
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{
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LOCK(m_mutex);
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// First construct a vector of iterators to ensure we do not return duplicates of the same tx
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// and so we can sort by nTimeExpire.
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std::vector<OrphanMap::iterator> iters;
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// For each output, get all entries spending this prevout, filtering for ones from the specified peer.
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for (unsigned int i = 0; i < parent->vout.size(); i++) {
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const auto it_by_prev = m_outpoint_to_orphan_it.find(COutPoint(parent->GetHash(), i));
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if (it_by_prev != m_outpoint_to_orphan_it.end()) {
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for (const auto& elem : it_by_prev->second) {
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if (elem->second.fromPeer == nodeid) {
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iters.emplace_back(elem);
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}
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}
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}
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}
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// Sort by address so that duplicates can be deleted. At the same time, sort so that more recent
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// orphans (which expire later) come first. Break ties based on address, as nTimeExpire is
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// quantified in seconds and it is possible for orphans to have the same expiry.
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std::sort(iters.begin(), iters.end(), [](const auto& lhs, const auto& rhs) {
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if (lhs->second.nTimeExpire == rhs->second.nTimeExpire) {
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return &(*lhs) < &(*rhs);
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} else {
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return lhs->second.nTimeExpire > rhs->second.nTimeExpire;
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}
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});
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// Erase duplicates
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iters.erase(std::unique(iters.begin(), iters.end()), iters.end());
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// Convert to a vector of CTransactionRef
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std::vector<CTransactionRef> children_found;
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children_found.reserve(iters.size());
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for (const auto child_iter : iters) {
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children_found.emplace_back(child_iter->second.tx);
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}
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return children_found;
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}
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std::vector<std::pair<CTransactionRef, NodeId>> TxOrphanage::GetChildrenFromDifferentPeer(const CTransactionRef& parent, NodeId nodeid) const
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{
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LOCK(m_mutex);
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// First construct vector of iterators to ensure we do not return duplicates of the same tx.
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std::vector<OrphanMap::iterator> iters;
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// For each output, get all entries spending this prevout, filtering for ones not from the specified peer.
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for (unsigned int i = 0; i < parent->vout.size(); i++) {
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const auto it_by_prev = m_outpoint_to_orphan_it.find(COutPoint(parent->GetHash(), i));
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if (it_by_prev != m_outpoint_to_orphan_it.end()) {
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for (const auto& elem : it_by_prev->second) {
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if (elem->second.fromPeer != nodeid) {
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iters.emplace_back(elem);
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}
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}
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}
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}
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// Erase duplicates
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std::sort(iters.begin(), iters.end(), IteratorComparator());
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iters.erase(std::unique(iters.begin(), iters.end()), iters.end());
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// Convert iterators to pair<CTransactionRef, NodeId>
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std::vector<std::pair<CTransactionRef, NodeId>> children_found;
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children_found.reserve(iters.size());
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for (const auto child_iter : iters) {
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children_found.emplace_back(child_iter->second.tx, child_iter->second.fromPeer);
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}
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return children_found;
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}
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@ -51,6 +51,14 @@ public:
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/** Does this peer have any work to do? */
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/** Does this peer have any work to do? */
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bool HaveTxToReconsider(NodeId peer) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex);;
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bool HaveTxToReconsider(NodeId peer) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex);;
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/** Get all children that spend from this tx and were received from nodeid. Sorted from most
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* recent to least recent. */
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std::vector<CTransactionRef> GetChildrenFromSamePeer(const CTransactionRef& parent, NodeId nodeid) const EXCLUSIVE_LOCKS_REQUIRED(!m_mutex);
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/** Get all children that spend from this tx but were not received from nodeid. Also return
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* which peer provided each tx. */
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std::vector<std::pair<CTransactionRef, NodeId>> GetChildrenFromDifferentPeer(const CTransactionRef& parent, NodeId nodeid) const EXCLUSIVE_LOCKS_REQUIRED(!m_mutex);
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/** Return how many entries exist in the orphange */
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/** Return how many entries exist in the orphange */
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size_t Size() EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
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size_t Size() EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
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{
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{
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