fuzz coverage

Coverage Report

Created: 2025-09-17 22:41

/Users/eugenesiegel/btc/bitcoin/src/node/mini_miner.cpp
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// Copyright (c) 2023 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 <node/mini_miner.h>
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#include <boost/multi_index/detail/hash_index_iterator.hpp>
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#include <boost/operators.hpp>
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#include <consensus/amount.h>
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#include <policy/feerate.h>
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#include <primitives/transaction.h>
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#include <sync.h>
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#include <txmempool.h>
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#include <uint256.h>
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#include <util/check.h>
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#include <algorithm>
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#include <numeric>
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#include <ranges>
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#include <utility>
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namespace node {
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MiniMiner::MiniMiner(const CTxMemPool& mempool, const std::vector<COutPoint>& outpoints)
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{
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    LOCK(mempool.cs);
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#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
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#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
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#define PASTE2(x, y) PASTE(x, y)
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#define PASTE(x, y) x ## y
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    // Find which outpoints to calculate bump fees for.
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    // Anything that's spent by the mempool is to-be-replaced
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    // Anything otherwise unavailable just has a bump fee of 0
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    for (const auto& outpoint : outpoints) {
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        if (!mempool.exists(outpoint.hash)) {
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            // This UTXO is either confirmed or not yet submitted to mempool.
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            // If it's confirmed, no bump fee is required.
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            // If it's not yet submitted, we have no information, so return 0.
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            m_bump_fees.emplace(outpoint, 0);
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            continue;
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        }
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        // UXTO is created by transaction in mempool, add to map.
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        // Note: This will either create a missing entry or add the outpoint to an existing entry
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        m_requested_outpoints_by_txid[outpoint.hash].push_back(outpoint);
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        if (const auto ptx{mempool.GetConflictTx(outpoint)}) {
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            // This outpoint is already being spent by another transaction in the mempool. We
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            // assume that the caller wants to replace this transaction and its descendants. It
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            // would be unusual for the transaction to have descendants as the wallet won’t normally
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            // attempt to replace transactions with descendants. If the outpoint is from a mempool
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            // transaction, we still need to calculate its ancestors bump fees (added to
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            // m_requested_outpoints_by_txid below), but after removing the to-be-replaced entries.
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            //
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            // Note that the descendants of a transaction include the transaction itself. Also note,
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            // that this is only calculating bump fees. RBF fee rules should be handled separately.
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            CTxMemPool::setEntries descendants;
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            mempool.CalculateDescendants(mempool.GetIter(ptx->GetHash()).value(), descendants);
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            for (const auto& desc_txiter : descendants) {
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                m_to_be_replaced.insert(desc_txiter->GetTx().GetHash());
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            }
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        }
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    }
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    // No unconfirmed UTXOs, so nothing mempool-related needs to be calculated.
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    if (m_requested_outpoints_by_txid.empty()) return;
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    // Calculate the cluster and construct the entry map.
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    auto txids_needed{m_requested_outpoints_by_txid | std::views::keys};
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    const auto cluster = mempool.GatherClusters({txids_needed.begin(), txids_needed.end()});
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    if (cluster.empty()) {
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        // An empty cluster means that at least one of the transactions is missing from the mempool
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        // (should not be possible given processing above) or DoS limit was hit.
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        m_ready_to_calculate = false;
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        return;
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    }
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    // Add every entry to m_entries_by_txid and m_entries, except the ones that will be replaced.
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    for (const auto& txiter : cluster) {
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        if (!m_to_be_replaced.count(txiter->GetTx().GetHash())) {
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            auto [mapiter, success] = m_entries_by_txid.emplace(txiter->GetTx().GetHash(),
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                MiniMinerMempoolEntry{/*tx_in=*/txiter->GetSharedTx(),
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                                      /*vsize_self=*/txiter->GetTxSize(),
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                                      /*vsize_ancestor=*/txiter->GetSizeWithAncestors(),
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                                      /*fee_self=*/txiter->GetModifiedFee(),
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                                      /*fee_ancestor=*/txiter->GetModFeesWithAncestors()});
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            m_entries.push_back(mapiter);
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        } else {
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            auto outpoints_it = m_requested_outpoints_by_txid.find(txiter->GetTx().GetHash());
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            if (outpoints_it != m_requested_outpoints_by_txid.end()) {
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                // This UTXO is the output of a to-be-replaced transaction. Bump fee is 0; spending
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                // this UTXO is impossible as it will no longer exist after the replacement.
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                for (const auto& outpoint : outpoints_it->second) {
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                    m_bump_fees.emplace(outpoint, 0);
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                }
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                m_requested_outpoints_by_txid.erase(outpoints_it);
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            }
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        }
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    }
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    // Build the m_descendant_set_by_txid cache.
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    for (const auto& txiter : cluster) {
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        const auto& txid = txiter->GetTx().GetHash();
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        // Cache descendants for future use. Unlike the real mempool, a descendant MiniMinerMempoolEntry
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        // will not exist without its ancestor MiniMinerMempoolEntry, so these sets won't be invalidated.
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        std::vector<MockEntryMap::iterator> cached_descendants;
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        const bool remove{m_to_be_replaced.count(txid) > 0};
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        CTxMemPool::setEntries descendants;
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        mempool.CalculateDescendants(txiter, descendants);
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        Assume(descendants.count(txiter) > 0);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        for (const auto& desc_txiter : descendants) {
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            const auto txid_desc = desc_txiter->GetTx().GetHash();
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            const bool remove_desc{m_to_be_replaced.count(txid_desc) > 0};
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            auto desc_it{m_entries_by_txid.find(txid_desc)};
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            Assume((desc_it == m_entries_by_txid.end()) == remove_desc);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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            if (remove) Assume(remove_desc);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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            // It's possible that remove=false but remove_desc=true.
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            if (!remove && !remove_desc) {
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                cached_descendants.push_back(desc_it);
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            }
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        }
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        if (remove) {
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            Assume(cached_descendants.empty());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        } else {
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            m_descendant_set_by_txid.emplace(txid, cached_descendants);
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        }
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    }
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    // Release the mempool lock; we now have all the information we need for a subset of the entries
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    // we care about. We will solely operate on the MiniMinerMempoolEntry map from now on.
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    Assume(m_in_block.empty());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    Assume(m_requested_outpoints_by_txid.size() <= outpoints.size());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    SanityCheck();
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}
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MiniMiner::MiniMiner(const std::vector<MiniMinerMempoolEntry>& manual_entries,
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                     const std::map<Txid, std::set<Txid>>& descendant_caches)
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{
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    for (const auto& entry : manual_entries) {
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        const auto& txid = entry.GetTx().GetHash();
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        // We need to know the descendant set of every transaction.
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        if (!Assume(descendant_caches.count(txid) > 0)) {
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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            m_ready_to_calculate = false;
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            return;
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        }
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        // Just forward these args onto MiniMinerMempoolEntry
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        auto [mapiter, success] = m_entries_by_txid.emplace(txid, entry);
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        // Txids must be unique; this txid shouldn't already be an entry in m_entries_by_txid
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        if (Assume(success)) m_entries.push_back(mapiter);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    }
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    // Descendant cache is already built, but we need to translate them to m_entries_by_txid iters.
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    for (const auto& [txid, desc_txids] : descendant_caches) {
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        // Descendant cache should include at least the tx itself.
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        if (!Assume(!desc_txids.empty())) {
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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            m_ready_to_calculate = false;
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            return;
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        }
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        std::vector<MockEntryMap::iterator> descendants;
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        for (const auto& desc_txid : desc_txids) {
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            auto desc_it{m_entries_by_txid.find(desc_txid)};
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            // Descendants should only include transactions with corresponding entries.
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            if (!Assume(desc_it != m_entries_by_txid.end())) {
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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                m_ready_to_calculate = false;
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                return;
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            } else {
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                descendants.emplace_back(desc_it);
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            }
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        }
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        m_descendant_set_by_txid.emplace(txid, descendants);
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    }
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    Assume(m_to_be_replaced.empty());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    Assume(m_requested_outpoints_by_txid.empty());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    Assume(m_bump_fees.empty());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    Assume(m_inclusion_order.empty());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    SanityCheck();
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}
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// Compare by min(ancestor feerate, individual feerate), then txid
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//
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// Under the ancestor-based mining approach, high-feerate children can pay for parents, but high-feerate
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// parents do not incentive inclusion of their children. Therefore the mining algorithm only considers
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// transactions for inclusion on basis of the minimum of their own feerate or their ancestor feerate.
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struct AncestorFeerateComparator
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{
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    template<typename I>
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    bool operator()(const I& a, const I& b) const {
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        auto min_feerate = [](const MiniMinerMempoolEntry& e) -> FeeFrac {
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            FeeFrac self_feerate(e.GetModifiedFee(), e.GetTxSize());
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            FeeFrac ancestor_feerate(e.GetModFeesWithAncestors(), e.GetSizeWithAncestors());
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            return std::min(ancestor_feerate, self_feerate);
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        };
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        FeeFrac a_feerate{min_feerate(a->second)};
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        FeeFrac b_feerate{min_feerate(b->second)};
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        if (a_feerate != b_feerate) {
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            return a_feerate > b_feerate;
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        }
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        // Use txid as tiebreaker for stable sorting
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        return a->first < b->first;
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    }
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};
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void MiniMiner::DeleteAncestorPackage(const std::set<MockEntryMap::iterator, IteratorComparator>& ancestors)
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{
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    Assume(ancestors.size() >= 1);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    // "Mine" all transactions in this ancestor set.
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    for (auto& anc : ancestors) {
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        Assume(m_in_block.count(anc->first) == 0);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        m_in_block.insert(anc->first);
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        m_total_fees += anc->second.GetModifiedFee();
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        m_total_vsize += anc->second.GetTxSize();
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        auto it = m_descendant_set_by_txid.find(anc->first);
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        // Each entry’s descendant set includes itself
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        Assume(it != m_descendant_set_by_txid.end());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        for (auto& descendant : it->second) {
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            // If these fail, we must be double-deducting.
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            Assume(descendant->second.GetModFeesWithAncestors() >= anc->second.GetModifiedFee());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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            Assume(descendant->second.GetSizeWithAncestors() >= anc->second.GetTxSize());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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            descendant->second.UpdateAncestorState(-anc->second.GetTxSize(), -anc->second.GetModifiedFee());
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        }
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    }
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    // Delete these entries.
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    for (const auto& anc : ancestors) {
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        m_descendant_set_by_txid.erase(anc->first);
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        // The above loop should have deducted each ancestor's size and fees from each of their
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        // respective descendants exactly once.
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        Assume(anc->second.GetModFeesWithAncestors() == 0);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        Assume(anc->second.GetSizeWithAncestors() == 0);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        auto vec_it = std::find(m_entries.begin(), m_entries.end(), anc);
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        Assume(vec_it != m_entries.end());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        m_entries.erase(vec_it);
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        m_entries_by_txid.erase(anc);
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    }
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}
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void MiniMiner::SanityCheck() const
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{
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    // m_entries, m_entries_by_txid, and m_descendant_set_by_txid all same size
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    Assume(m_entries.size() == m_entries_by_txid.size());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    Assume(m_entries.size() == m_descendant_set_by_txid.size());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    // Cached ancestor values should be at least as large as the transaction's own fee and size
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    Assume(std::all_of(m_entries.begin(), m_entries.end(), [](const auto& entry) {
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        return entry->second.GetSizeWithAncestors() >= entry->second.GetTxSize() &&
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               entry->second.GetModFeesWithAncestors() >= entry->second.GetModifiedFee();}));
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    // None of the entries should be to-be-replaced transactions
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    Assume(std::all_of(m_to_be_replaced.begin(), m_to_be_replaced.end(),
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        [&](const auto& txid){return m_entries_by_txid.find(txid) == m_entries_by_txid.end();}));
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}
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void MiniMiner::BuildMockTemplate(std::optional<CFeeRate> target_feerate)
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{
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    const auto num_txns{m_entries_by_txid.size()};
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    uint32_t sequence_num{0};
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    while (!m_entries_by_txid.empty()) {
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        // Sort again, since transaction removal may change some m_entries' ancestor feerates.
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        std::sort(m_entries.begin(), m_entries.end(), AncestorFeerateComparator());
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        // Pick highest ancestor feerate entry.
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        auto best_iter = m_entries.begin();
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        Assume(best_iter != m_entries.end());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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        const auto ancestor_package_size = (*best_iter)->second.GetSizeWithAncestors();
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        const auto ancestor_package_fee = (*best_iter)->second.GetModFeesWithAncestors();
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        // Stop here. Everything that didn't "make it into the block" has bumpfee.
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        if (target_feerate.has_value() &&
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            ancestor_package_fee < target_feerate->GetFee(ancestor_package_size)) {
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            break;
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0
        }
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        // Calculate ancestors on the fly. This lookup should be fairly cheap, and ancestor sets
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        // change at every iteration, so this is more efficient than maintaining a cache.
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        std::set<MockEntryMap::iterator, IteratorComparator> ancestors;
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        {
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            std::set<MockEntryMap::iterator, IteratorComparator> to_process;
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            to_process.insert(*best_iter);
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            while (!to_process.empty()) {
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                auto iter = to_process.begin();
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                Assume(iter != to_process.end());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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                ancestors.insert(*iter);
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                for (const auto& input : (*iter)->second.GetTx().vin) {
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                    if (auto parent_it{m_entries_by_txid.find(input.prevout.hash)}; parent_it != m_entries_by_txid.end()) {
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                        if (ancestors.count(parent_it) == 0) {
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                            to_process.insert(parent_it);
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                        }
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                    }
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                }
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                to_process.erase(iter);
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            }
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        }
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        // Track the order in which transactions were selected.
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        for (const auto& ancestor : ancestors) {
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            m_inclusion_order.emplace(ancestor->first, sequence_num);
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        }
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        DeleteAncestorPackage(ancestors);
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        SanityCheck();
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        ++sequence_num;
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    }
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    if (!target_feerate.has_value()) {
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        Assume(m_in_block.size() == num_txns);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    } else {
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        Assume(m_in_block.empty() || m_total_fees >= target_feerate->GetFee(m_total_vsize));
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    }
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    Assume(m_in_block.empty() || sequence_num > 0);
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    Assume(m_in_block.size() == m_inclusion_order.size());
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#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
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    // Do not try to continue building the block template with a different feerate.
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    m_ready_to_calculate = false;
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}
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std::map<Txid, uint32_t> MiniMiner::Linearize()
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{
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    BuildMockTemplate(std::nullopt);
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    return m_inclusion_order;
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0
}
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std::map<COutPoint, CAmount> MiniMiner::CalculateBumpFees(const CFeeRate& target_feerate)
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{
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    if (!m_ready_to_calculate) return {};
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    // Build a block template until the target feerate is hit.
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    BuildMockTemplate(target_feerate);
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    // Each transaction that "made it into the block" has a bumpfee of 0, i.e. they are part of an
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    // ancestor package with at least the target feerate and don't need to be bumped.
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    for (const auto& txid : m_in_block) {
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        // Not all of the block transactions were necessarily requested.
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        auto it = m_requested_outpoints_by_txid.find(txid);
321
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        if (it != m_requested_outpoints_by_txid.end()) {
322
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            for (const auto& outpoint : it->second) {
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                m_bump_fees.emplace(outpoint, 0);
324
0
            }
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0
            m_requested_outpoints_by_txid.erase(it);
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0
        }
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    }
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    // A transactions and its ancestors will only be picked into a block when
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    // both the ancestor set feerate and the individual feerate meet the target
331
    // feerate.
332
    //
333
    // We had to convince ourselves that after running the mini miner and
334
    // picking all eligible transactions into our MockBlockTemplate, there
335
    // could still be transactions remaining that have a lower individual
336
    // feerate than their ancestor feerate. So here is an example:
337
    //
338
    //               ┌─────────────────┐
339
    //               │                 │
340
    //               │   Grandparent   │
341
    //               │    1700 vB      │
342
    //               │    1700 sats    │                    Target feerate: 10    s/vB
343
    //               │       1 s/vB    │    GP Ancestor Set Feerate (ASFR):  1    s/vB
344
    //               │                 │                           P1_ASFR:  9.84 s/vB
345
    //               └──────▲───▲──────┘                           P2_ASFR:  2.47 s/vB
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    //                      │   │                                   C_ASFR: 10.27 s/vB
347
    // ┌───────────────┐    │   │    ┌──────────────┐
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    // │               ├────┘   └────┤              │             ⇒ C_FR < TFR < C_ASFR
349
    // │   Parent 1    │             │   Parent 2   │
350
    // │    200 vB     │             │    200 vB    │
351
    // │  17000 sats   │             │   3000 sats  │
352
    // │     85 s/vB   │             │     15 s/vB  │
353
    // │               │             │              │
354
    // └───────────▲───┘             └───▲──────────┘
355
    //             │                     │
356
    //             │    ┌───────────┐    │
357
    //             └────┤           ├────┘
358
    //                  │   Child   │
359
    //                  │  100 vB   │
360
    //                  │  900 sats │
361
    //                  │    9 s/vB │
362
    //                  │           │
363
    //                  └───────────┘
364
    //
365
    // We therefore calculate both the bump fee that is necessary to elevate
366
    // the individual transaction to the target feerate:
367
    //         target_feerate × tx_size - tx_fees
368
    // and the bump fee that is necessary to bump the entire ancestor set to
369
    // the target feerate:
370
    //         target_feerate × ancestor_set_size - ancestor_set_fees
371
    // By picking the maximum from the two, we ensure that a transaction meets
372
    // both criteria.
373
0
    for (const auto& [txid, outpoints] : m_requested_outpoints_by_txid) {
374
0
        auto it = m_entries_by_txid.find(txid);
375
0
        Assume(it != m_entries_by_txid.end());
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0
#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
376
0
        if (it != m_entries_by_txid.end()) {
377
0
            Assume(target_feerate.GetFee(it->second.GetSizeWithAncestors()) > std::min(it->second.GetModifiedFee(), it->second.GetModFeesWithAncestors()));
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118
0
#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
378
0
            CAmount bump_fee_with_ancestors = target_feerate.GetFee(it->second.GetSizeWithAncestors()) - it->second.GetModFeesWithAncestors();
379
0
            CAmount bump_fee_individual = target_feerate.GetFee(it->second.GetTxSize()) - it->second.GetModifiedFee();
380
0
            const CAmount bump_fee{std::max(bump_fee_with_ancestors, bump_fee_individual)};
381
0
            Assume(bump_fee >= 0);
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0
#define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val)
382
0
            for (const auto& outpoint : outpoints) {
383
0
                m_bump_fees.emplace(outpoint, bump_fee);
384
0
            }
385
0
        }
386
0
    }
387
0
    return m_bump_fees;
388
0
}
389
390
std::optional<CAmount> MiniMiner::CalculateTotalBumpFees(const CFeeRate& target_feerate)
391
0
{
392
0
    if (!m_ready_to_calculate) return std::nullopt;
393
    // Build a block template until the target feerate is hit.
394
0
    BuildMockTemplate(target_feerate);
395
396
    // All remaining ancestors that are not part of m_in_block must be bumped, but no other relatives
397
0
    std::set<MockEntryMap::iterator, IteratorComparator> ancestors;
398
0
    std::set<MockEntryMap::iterator, IteratorComparator> to_process;
399
0
    for (const auto& [txid, outpoints] : m_requested_outpoints_by_txid) {
400
        // Skip any ancestors that already have a miner score higher than the target feerate
401
        // (already "made it" into the block)
402
0
        if (m_in_block.count(txid)) continue;
403
0
        auto iter = m_entries_by_txid.find(txid);
404
0
        if (iter == m_entries_by_txid.end()) continue;
405
0
        to_process.insert(iter);
406
0
        ancestors.insert(iter);
407
0
    }
408
409
0
    std::set<Txid> has_been_processed;
410
0
    while (!to_process.empty()) {
411
0
        auto iter = to_process.begin();
412
0
        const CTransaction& tx = (*iter)->second.GetTx();
413
0
        for (const auto& input : tx.vin) {
414
0
            if (auto parent_it{m_entries_by_txid.find(input.prevout.hash)}; parent_it != m_entries_by_txid.end()) {
415
0
                if (!has_been_processed.count(input.prevout.hash)) {
416
0
                    to_process.insert(parent_it);
417
0
                }
418
0
                ancestors.insert(parent_it);
419
0
            }
420
0
        }
421
0
        has_been_processed.insert(tx.GetHash());
422
0
        to_process.erase(iter);
423
0
    }
424
0
    const auto ancestor_package_size = std::accumulate(ancestors.cbegin(), ancestors.cend(), int64_t{0},
425
0
        [](int64_t sum, const auto it) {return sum + it->second.GetTxSize();});
426
0
    const auto ancestor_package_fee = std::accumulate(ancestors.cbegin(), ancestors.cend(), CAmount{0},
427
0
        [](CAmount sum, const auto it) {return sum + it->second.GetModifiedFee();});
428
0
    return target_feerate.GetFee(ancestor_package_size) - ancestor_package_fee;
429
0
}
430
} // namespace node