/Users/eugenesiegel/btc/bitcoin/src/cluster_linearize.h
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| 1 |  | // Copyright (c) The Bitcoin Core developers | 
| 2 |  | // Distributed under the MIT software license, see the accompanying | 
| 3 |  | // file COPYING or http://www.opensource.org/licenses/mit-license.php. | 
| 4 |  |  | 
| 5 |  | #ifndef BITCOIN_CLUSTER_LINEARIZE_H | 
| 6 |  | #define BITCOIN_CLUSTER_LINEARIZE_H | 
| 7 |  |  | 
| 8 |  | #include <algorithm> | 
| 9 |  | #include <cstdint> | 
| 10 |  | #include <numeric> | 
| 11 |  | #include <optional> | 
| 12 |  | #include <utility> | 
| 13 |  | #include <vector> | 
| 14 |  |  | 
| 15 |  | #include <random.h> | 
| 16 |  | #include <span.h> | 
| 17 |  | #include <util/feefrac.h> | 
| 18 |  | #include <util/vecdeque.h> | 
| 19 |  |  | 
| 20 |  | namespace cluster_linearize { | 
| 21 |  |  | 
| 22 |  | /** Data type to represent transaction indices in DepGraphs and the clusters they represent. */ | 
| 23 |  | using DepGraphIndex = uint32_t; | 
| 24 |  |  | 
| 25 |  | /** Data structure that holds a transaction graph's preprocessed data (fee, size, ancestors, | 
| 26 |  |  *  descendants). */ | 
| 27 |  | template<typename SetType> | 
| 28 |  | class DepGraph | 
| 29 |  | { | 
| 30 |  |     /** Information about a single transaction. */ | 
| 31 |  |     struct Entry | 
| 32 |  |     { | 
| 33 |  |         /** Fee and size of transaction itself. */ | 
| 34 |  |         FeeFrac feerate; | 
| 35 |  |         /** All ancestors of the transaction (including itself). */ | 
| 36 |  |         SetType ancestors; | 
| 37 |  |         /** All descendants of the transaction (including itself). */ | 
| 38 |  |         SetType descendants; | 
| 39 |  |  | 
| 40 |  |         /** Equality operator (primarily for for testing purposes). */ | 
| 41 | 0 |         friend bool operator==(const Entry&, const Entry&) noexcept = default; | 
| 42 |  |  | 
| 43 |  |         /** Construct an empty entry. */ | 
| 44 | 0 |         Entry() noexcept = default; Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE5EntryC2EvUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE5EntryC2EvUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE5EntryC2Ev | 
| 45 |  |         /** Construct an entry with a given feerate, ancestor set, descendant set. */ | 
| 46 | 0 |         Entry(const FeeFrac& f, const SetType& a, const SetType& d) noexcept : feerate(f), ancestors(a), descendants(d) {}Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE5EntryC2ERK7FeeFracRKS3_SA_Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE5EntryC2ERK7FeeFracRKS3_SA_Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE5EntryC2ERK7FeeFracRKS3_SA_ | 
| 47 |  |     }; | 
| 48 |  |  | 
| 49 |  |     /** Data for each transaction. */ | 
| 50 |  |     std::vector<Entry> entries; | 
| 51 |  |  | 
| 52 |  |     /** Which positions are used. */ | 
| 53 |  |     SetType m_used; | 
| 54 |  |  | 
| 55 |  | public: | 
| 56 |  |     /** Equality operator (primarily for testing purposes). */ | 
| 57 |  |     friend bool operator==(const DepGraph& a, const DepGraph& b) noexcept | 
| 58 | 0 |     { | 
| 59 | 0 |         if (a.m_used != b.m_used) return false; | 
| 60 |  |         // Only compare the used positions within the entries vector. | 
| 61 | 0 |         for (auto idx : a.m_used) { | 
| 62 | 0 |             if (a.entries[idx] != b.entries[idx]) return false; | 
| 63 | 0 |         } | 
| 64 | 0 |         return true; | 
| 65 | 0 |     } | 
| 66 |  |  | 
| 67 |  |     // Default constructors. | 
| 68 | 0 |     DepGraph() noexcept = default; Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEEC2EvUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEEC2EvUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEEC2Ev | 
| 69 | 0 |     DepGraph(const DepGraph&) noexcept = default; | 
| 70 | 0 |     DepGraph(DepGraph&&) noexcept = default; | 
| 71 | 0 |     DepGraph& operator=(const DepGraph&) noexcept = default; | 
| 72 | 0 |     DepGraph& operator=(DepGraph&&) noexcept = default; Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEEaSEOS4_Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEEaSEOS4_Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEEaSEOS4_ | 
| 73 |  |  | 
| 74 |  |     /** Construct a DepGraph object given another DepGraph and a mapping from old to new. | 
| 75 |  |      * | 
| 76 |  |      * @param depgraph   The original DepGraph that is being remapped. | 
| 77 |  |      * | 
| 78 |  |      * @param mapping    A span such that mapping[i] gives the position in the new DepGraph | 
| 79 |  |      *                   for position i in the old depgraph. Its size must be equal to | 
| 80 |  |      *                   depgraph.PositionRange(). The value of mapping[i] is ignored if | 
| 81 |  |      *                   position i is a hole in depgraph (i.e., if !depgraph.Positions()[i]). | 
| 82 |  |      * | 
| 83 |  |      * @param pos_range  The PositionRange() for the new DepGraph. It must equal the largest | 
| 84 |  |      *                   value in mapping for any used position in depgraph plus 1, or 0 if | 
| 85 |  |      *                   depgraph.TxCount() == 0. | 
| 86 |  |      * | 
| 87 |  |      * Complexity: O(N^2) where N=depgraph.TxCount(). | 
| 88 |  |      */ | 
| 89 | 0 |     DepGraph(const DepGraph<SetType>& depgraph, std::span<const DepGraphIndex> mapping, DepGraphIndex pos_range) noexcept : entries(pos_range) | 
| 90 | 0 |     { | 
| 91 | 0 |         Assume(mapping.size() == depgraph.PositionRange()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(mapping.size() == depgraph.PositionRange()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(mapping.size() == depgraph.PositionRange()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 92 | 0 |         Assume((pos_range == 0) == (depgraph.TxCount() == 0)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume((pos_range == 0) == (depgraph.TxCount() == 0)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume((pos_range == 0) == (depgraph.TxCount() == 0)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 93 | 0 |         for (DepGraphIndex i : depgraph.Positions()) { | 
| 94 | 0 |             auto new_idx = mapping[i]; | 
| 95 | 0 |             Assume(new_idx < pos_range); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(new_idx < pos_range); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(new_idx < pos_range); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 96 |  |             // Add transaction. | 
| 97 | 0 |             entries[new_idx].ancestors = SetType::Singleton(new_idx); | 
| 98 | 0 |             entries[new_idx].descendants = SetType::Singleton(new_idx); | 
| 99 | 0 |             m_used.Set(new_idx); | 
| 100 |  |             // Fill in fee and size. | 
| 101 | 0 |             entries[new_idx].feerate = depgraph.entries[i].feerate; | 
| 102 | 0 |         } | 
| 103 | 0 |         for (DepGraphIndex i : depgraph.Positions()) { | 
| 104 |  |             // Fill in dependencies by mapping direct parents. | 
| 105 | 0 |             SetType parents; | 
| 106 | 0 |             for (auto j : depgraph.GetReducedParents(i)) parents.Set(mapping[j]); | 
| 107 | 0 |             AddDependencies(parents, mapping[i]); | 
| 108 | 0 |         } | 
| 109 |  |         // Verify that the provided pos_range was correct (no unused positions at the end). | 
| 110 | 0 |         Assume(m_used.None() ? (pos_range == 0) : (pos_range == m_used.Last() + 1)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(m_used.None() ? (pos_range == 0) : (pos_range == m_used.Last() + 1)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(m_used.None() ? (pos_range == 0) : (pos_range == m_used.Last() + 1)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 111 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEEC2ERKS4_NSt3__14spanIKjLm18446744073709551615EEEjUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEEC2ERKS4_NSt3__14spanIKjLm18446744073709551615EEEjUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEEC2ERKS4_NSt3__14spanIKjLm18446744073709551615EEEj | 
| 112 |  |  | 
| 113 |  |     /** Get the set of transactions positions in use. Complexity: O(1). */ | 
| 114 | 0 |     const SetType& Positions() const noexcept { return m_used; }Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE9PositionsEvUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE9PositionsEvUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE9PositionsEv | 
| 115 |  |     /** Get the range of positions in this DepGraph. All entries in Positions() are in [0, PositionRange() - 1]. */ | 
| 116 | 0 |     DepGraphIndex PositionRange() const noexcept { return entries.size(); }Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE13PositionRangeEvUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE13PositionRangeEvUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE13PositionRangeEv | 
| 117 |  |     /** Get the number of transactions in the graph. Complexity: O(1). */ | 
| 118 | 0 |     auto TxCount() const noexcept { return m_used.Count(); }Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE7TxCountEvUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE7TxCountEvUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE7TxCountEv | 
| 119 |  |     /** Get the feerate of a given transaction i. Complexity: O(1). */ | 
| 120 | 0 |     const FeeFrac& FeeRate(DepGraphIndex i) const noexcept { return entries[i].feerate; }Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE7FeeRateEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE7FeeRateEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE7FeeRateEj | 
| 121 |  |     /** Get the mutable feerate of a given transaction i. Complexity: O(1). */ | 
| 122 | 0 |     FeeFrac& FeeRate(DepGraphIndex i) noexcept { return entries[i].feerate; }Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE7FeeRateEjUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE7FeeRateEjUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE7FeeRateEj | 
| 123 |  |     /** Get the ancestors of a given transaction i. Complexity: O(1). */ | 
| 124 | 0 |     const SetType& Ancestors(DepGraphIndex i) const noexcept { return entries[i].ancestors; }Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE9AncestorsEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE9AncestorsEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE9AncestorsEj | 
| 125 |  |     /** Get the descendants of a given transaction i. Complexity: O(1). */ | 
| 126 | 0 |     const SetType& Descendants(DepGraphIndex i) const noexcept { return entries[i].descendants; }Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE11DescendantsEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE11DescendantsEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE11DescendantsEj | 
| 127 |  |  | 
| 128 |  |     /** Add a new unconnected transaction to this transaction graph (in the first available | 
| 129 |  |      *  position), and return its DepGraphIndex. | 
| 130 |  |      * | 
| 131 |  |      * Complexity: O(1) (amortized, due to resizing of backing vector). | 
| 132 |  |      */ | 
| 133 |  |     DepGraphIndex AddTransaction(const FeeFrac& feefrac) noexcept | 
| 134 | 0 |     { | 
| 135 | 0 |         static constexpr auto ALL_POSITIONS = SetType::Fill(SetType::Size()); | 
| 136 | 0 |         auto available = ALL_POSITIONS - m_used; | 
| 137 | 0 |         Assume(available.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(available.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(available.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 138 | 0 |         DepGraphIndex new_idx = available.First(); | 
| 139 | 0 |         if (new_idx == entries.size()) { | 
| 140 | 0 |             entries.emplace_back(feefrac, SetType::Singleton(new_idx), SetType::Singleton(new_idx)); | 
| 141 | 0 |         } else { | 
| 142 | 0 |             entries[new_idx] = Entry(feefrac, SetType::Singleton(new_idx), SetType::Singleton(new_idx)); | 
| 143 | 0 |         } | 
| 144 | 0 |         m_used.Set(new_idx); | 
| 145 | 0 |         return new_idx; | 
| 146 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE14AddTransactionERK7FeeFracUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE14AddTransactionERK7FeeFracUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE14AddTransactionERK7FeeFrac | 
| 147 |  |  | 
| 148 |  |     /** Remove the specified positions from this DepGraph. | 
| 149 |  |      * | 
| 150 |  |      * The specified positions will no longer be part of Positions(), and dependencies with them are | 
| 151 |  |      * removed. Note that due to DepGraph only tracking ancestors/descendants (and not direct | 
| 152 |  |      * dependencies), if a parent is removed while a grandparent remains, the grandparent will | 
| 153 |  |      * remain an ancestor. | 
| 154 |  |      * | 
| 155 |  |      * Complexity: O(N) where N=TxCount(). | 
| 156 |  |      */ | 
| 157 |  |     void RemoveTransactions(const SetType& del) noexcept | 
| 158 | 0 |     { | 
| 159 | 0 |         m_used -= del; | 
| 160 |  |         // Remove now-unused trailing entries. | 
| 161 | 0 |         while (!entries.empty() && !m_used[entries.size() - 1]) { | 
| 162 | 0 |             entries.pop_back(); | 
| 163 | 0 |         } | 
| 164 |  |         // Remove the deleted transactions from ancestors/descendants of other transactions. Note | 
| 165 |  |         // that the deleted positions will retain old feerate and dependency information. This does | 
| 166 |  |         // not matter as they will be overwritten by AddTransaction if they get used again. | 
| 167 | 0 |         for (auto& entry : entries) { | 
| 168 | 0 |             entry.ancestors &= m_used; | 
| 169 | 0 |             entry.descendants &= m_used; | 
| 170 | 0 |         } | 
| 171 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE18RemoveTransactionsERKS3_Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE18RemoveTransactionsERKS3_Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE18RemoveTransactionsERKS3_ | 
| 172 |  |  | 
| 173 |  |     /** Modify this transaction graph, adding multiple parents to a specified child. | 
| 174 |  |      * | 
| 175 |  |      * Complexity: O(N) where N=TxCount(). | 
| 176 |  |      */ | 
| 177 |  |     void AddDependencies(const SetType& parents, DepGraphIndex child) noexcept | 
| 178 | 0 |     { | 
| 179 | 0 |         Assume(m_used[child]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(m_used[child]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(m_used[child]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 180 | 0 |         Assume(parents.IsSubsetOf(m_used)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(parents.IsSubsetOf(m_used)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(parents.IsSubsetOf(m_used)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 181 |  |         // Compute the ancestors of parents that are not already ancestors of child. | 
| 182 | 0 |         SetType par_anc; | 
| 183 | 0 |         for (auto par : parents - Ancestors(child)) { | 
| 184 | 0 |             par_anc |= Ancestors(par); | 
| 185 | 0 |         } | 
| 186 | 0 |         par_anc -= Ancestors(child); | 
| 187 |  |         // Bail out if there are no such ancestors. | 
| 188 | 0 |         if (par_anc.None()) return; | 
| 189 |  |         // To each such ancestor, add as descendants the descendants of the child. | 
| 190 | 0 |         const auto& chl_des = entries[child].descendants; | 
| 191 | 0 |         for (auto anc_of_par : par_anc) { | 
| 192 | 0 |             entries[anc_of_par].descendants |= chl_des; | 
| 193 | 0 |         } | 
| 194 |  |         // To each descendant of the child, add those ancestors. | 
| 195 | 0 |         for (auto dec_of_chl : Descendants(child)) { | 
| 196 | 0 |             entries[dec_of_chl].ancestors |= par_anc; | 
| 197 | 0 |         } | 
| 198 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE15AddDependenciesERKS3_jUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE15AddDependenciesERKS3_jUnexecuted instantiation: _ZN17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE15AddDependenciesERKS3_j | 
| 199 |  |  | 
| 200 |  |     /** Compute the (reduced) set of parents of node i in this graph. | 
| 201 |  |      * | 
| 202 |  |      * This returns the minimal subset of the parents of i whose ancestors together equal all of | 
| 203 |  |      * i's ancestors (unless i is part of a cycle of dependencies). Note that DepGraph does not | 
| 204 |  |      * store the set of parents; this information is inferred from the ancestor sets. | 
| 205 |  |      * | 
| 206 |  |      * Complexity: O(N) where N=Ancestors(i).Count() (which is bounded by TxCount()). | 
| 207 |  |      */ | 
| 208 |  |     SetType GetReducedParents(DepGraphIndex i) const noexcept | 
| 209 | 0 |     { | 
| 210 | 0 |         SetType parents = Ancestors(i); | 
| 211 | 0 |         parents.Reset(i); | 
| 212 | 0 |         for (auto parent : parents) { | 
| 213 | 0 |             if (parents[parent]) { | 
| 214 | 0 |                 parents -= Ancestors(parent); | 
| 215 | 0 |                 parents.Set(parent); | 
| 216 | 0 |             } | 
| 217 | 0 |         } | 
| 218 | 0 |         return parents; | 
| 219 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE17GetReducedParentsEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE17GetReducedParentsEjUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE17GetReducedParentsEj | 
| 220 |  |  | 
| 221 |  |     /** Compute the (reduced) set of children of node i in this graph. | 
| 222 |  |      * | 
| 223 |  |      * This returns the minimal subset of the children of i whose descendants together equal all of | 
| 224 |  |      * i's descendants (unless i is part of a cycle of dependencies). Note that DepGraph does not | 
| 225 |  |      * store the set of children; this information is inferred from the descendant sets. | 
| 226 |  |      * | 
| 227 |  |      * Complexity: O(N) where N=Descendants(i).Count() (which is bounded by TxCount()). | 
| 228 |  |      */ | 
| 229 |  |     SetType GetReducedChildren(DepGraphIndex i) const noexcept | 
| 230 | 0 |     { | 
| 231 | 0 |         SetType children = Descendants(i); | 
| 232 | 0 |         children.Reset(i); | 
| 233 | 0 |         for (auto child : children) { | 
| 234 | 0 |             if (children[child]) { | 
| 235 | 0 |                 children -= Descendants(child); | 
| 236 | 0 |                 children.Set(child); | 
| 237 | 0 |             } | 
| 238 | 0 |         } | 
| 239 | 0 |         return children; | 
| 240 | 0 |     } | 
| 241 |  |  | 
| 242 |  |     /** Compute the aggregate feerate of a set of nodes in this graph. | 
| 243 |  |      * | 
| 244 |  |      * Complexity: O(N) where N=elems.Count(). | 
| 245 |  |      **/ | 
| 246 |  |     FeeFrac FeeRate(const SetType& elems) const noexcept | 
| 247 | 0 |     { | 
| 248 | 0 |         FeeFrac ret; | 
| 249 | 0 |         for (auto pos : elems) ret += entries[pos].feerate; | 
| 250 | 0 |         return ret; | 
| 251 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE7FeeRateERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE7FeeRateERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE7FeeRateERKS3_ | 
| 252 |  |  | 
| 253 |  |     /** Get the connected component within the subset "todo" that contains tx (which must be in | 
| 254 |  |      *  todo). | 
| 255 |  |      * | 
| 256 |  |      * Two transactions are considered connected if they are both in `todo`, and one is an ancestor | 
| 257 |  |      * of the other in the entire graph (so not just within `todo`), or transitively there is a | 
| 258 |  |      * path of transactions connecting them. This does mean that if `todo` contains a transaction | 
| 259 |  |      * and a grandparent, but misses the parent, they will still be part of the same component. | 
| 260 |  |      * | 
| 261 |  |      * Complexity: O(ret.Count()). | 
| 262 |  |      */ | 
| 263 |  |     SetType GetConnectedComponent(const SetType& todo, DepGraphIndex tx) const noexcept | 
| 264 | 0 |     { | 
| 265 | 0 |         Assume(todo[tx]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(todo[tx]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(todo[tx]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 266 | 0 |         Assume(todo.IsSubsetOf(m_used)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(todo.IsSubsetOf(m_used)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(todo.IsSubsetOf(m_used)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 267 | 0 |         auto to_add = SetType::Singleton(tx); | 
| 268 | 0 |         SetType ret; | 
| 269 | 0 |         do { | 
| 270 | 0 |             SetType old = ret; | 
| 271 | 0 |             for (auto add : to_add) { | 
| 272 | 0 |                 ret |= Descendants(add); | 
| 273 | 0 |                 ret |= Ancestors(add); | 
| 274 | 0 |             } | 
| 275 | 0 |             ret &= todo; | 
| 276 | 0 |             to_add = ret - old; | 
| 277 | 0 |         } while (to_add.Any()); | 
| 278 | 0 |         return ret; | 
| 279 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE21GetConnectedComponentERKS3_jUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE21GetConnectedComponentERKS3_jUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE21GetConnectedComponentERKS3_j | 
| 280 |  |  | 
| 281 |  |     /** Find some connected component within the subset "todo" of this graph. | 
| 282 |  |      * | 
| 283 |  |      * Specifically, this finds the connected component which contains the first transaction of | 
| 284 |  |      * todo (if any). | 
| 285 |  |      * | 
| 286 |  |      * Complexity: O(ret.Count()). | 
| 287 |  |      */ | 
| 288 |  |     SetType FindConnectedComponent(const SetType& todo) const noexcept | 
| 289 | 0 |     { | 
| 290 | 0 |         if (todo.None()) return todo; | 
| 291 | 0 |         return GetConnectedComponent(todo, todo.First()); | 
| 292 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE22FindConnectedComponentERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE22FindConnectedComponentERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE22FindConnectedComponentERKS3_ | 
| 293 |  |  | 
| 294 |  |     /** Determine if a subset is connected. | 
| 295 |  |      * | 
| 296 |  |      * Complexity: O(subset.Count()). | 
| 297 |  |      */ | 
| 298 |  |     bool IsConnected(const SetType& subset) const noexcept | 
| 299 | 0 |     { | 
| 300 | 0 |         return FindConnectedComponent(subset) == subset; | 
| 301 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE11IsConnectedERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE11IsConnectedERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE11IsConnectedERKS3_ | 
| 302 |  |  | 
| 303 |  |     /** Determine if this entire graph is connected. | 
| 304 |  |      * | 
| 305 |  |      * Complexity: O(TxCount()). | 
| 306 |  |      */ | 
| 307 | 0 |     bool IsConnected() const noexcept { return IsConnected(m_used); } | 
| 308 |  |  | 
| 309 |  |     /** Append the entries of select to list in a topologically valid order. | 
| 310 |  |      * | 
| 311 |  |      * Complexity: O(select.Count() * log(select.Count())). | 
| 312 |  |      */ | 
| 313 |  |     void AppendTopo(std::vector<DepGraphIndex>& list, const SetType& select) const noexcept | 
| 314 | 0 |     { | 
| 315 | 0 |         DepGraphIndex old_len = list.size(); | 
| 316 | 0 |         for (auto i : select) list.push_back(i); | 
| 317 | 0 |         std::sort(list.begin() + old_len, list.end(), [&](DepGraphIndex a, DepGraphIndex b) noexcept { | 
| 318 | 0 |             const auto a_anc_count = entries[a].ancestors.Count(); | 
| 319 | 0 |             const auto b_anc_count = entries[b].ancestors.Count(); | 
| 320 | 0 |             if (a_anc_count != b_anc_count) return a_anc_count < b_anc_count; | 
| 321 | 0 |             return a < b; | 
| 322 | 0 |         }); Unexecuted instantiation: _ZZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE10AppendTopoERNSt3__16vectorIjNS5_9allocatorIjEEEERKS3_ENKUljjE_clEjjUnexecuted instantiation: _ZZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE10AppendTopoERNSt3__16vectorIjNS5_9allocatorIjEEEERKS3_ENKUljjE_clEjjUnexecuted instantiation: _ZZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE10AppendTopoERNSt3__16vectorIjNS5_9allocatorIjEEEERKS3_ENKUljjE_clEjj | 
| 323 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE10AppendTopoERNSt3__16vectorIjNS5_9allocatorIjEEEERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail14MultiIntBitSetImLj2EEEE10AppendTopoERNSt3__16vectorIjNS5_9allocatorIjEEEERKS3_Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE10AppendTopoERNSt3__16vectorIjNS5_9allocatorIjEEEERKS3_ | 
| 324 |  |  | 
| 325 |  |     /** Check if this graph is acyclic. */ | 
| 326 |  |     bool IsAcyclic() const noexcept | 
| 327 | 0 |     { | 
| 328 | 0 |         for (auto i : Positions()) { | 
| 329 | 0 |             if ((Ancestors(i) & Descendants(i)) != SetType::Singleton(i)) { | 
| 330 | 0 |                 return false; | 
| 331 | 0 |             } | 
| 332 | 0 |         } | 
| 333 | 0 |         return true; | 
| 334 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetIjEEE9IsAcyclicEvUnexecuted instantiation: _ZNK17cluster_linearize8DepGraphIN13bitset_detail9IntBitSetImEEE9IsAcyclicEv | 
| 335 |  | }; | 
| 336 |  |  | 
| 337 |  | /** A set of transactions together with their aggregate feerate. */ | 
| 338 |  | template<typename SetType> | 
| 339 |  | struct SetInfo | 
| 340 |  | { | 
| 341 |  |     /** The transactions in the set. */ | 
| 342 |  |     SetType transactions; | 
| 343 |  |     /** Their combined fee and size. */ | 
| 344 |  |     FeeFrac feerate; | 
| 345 |  |  | 
| 346 |  |     /** Construct a SetInfo for the empty set. */ | 
| 347 | 0 |     SetInfo() noexcept = default; Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetIjEEEC2EvUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEEC2EvUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetImEEEC2Ev | 
| 348 |  |  | 
| 349 |  |     /** Construct a SetInfo for a specified set and feerate. */ | 
| 350 | 0 |     SetInfo(const SetType& txn, const FeeFrac& fr) noexcept : transactions(txn), feerate(fr) {}Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetIjEEEC2ERKS3_RK7FeeFracUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEEC2ERKS3_RK7FeeFracUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetImEEEC2ERKS3_RK7FeeFrac | 
| 351 |  |  | 
| 352 |  |     /** Construct a SetInfo for a given transaction in a depgraph. */ | 
| 353 |  |     explicit SetInfo(const DepGraph<SetType>& depgraph, DepGraphIndex pos) noexcept : | 
| 354 | 0 |         transactions(SetType::Singleton(pos)), feerate(depgraph.FeeRate(pos)) {}Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetIjEEEC2ERKNS_8DepGraphIS3_EEjUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEEC2ERKNS_8DepGraphIS3_EEjUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetImEEEC2ERKNS_8DepGraphIS3_EEj | 
| 355 |  |  | 
| 356 |  |     /** Construct a SetInfo for a set of transactions in a depgraph. */ | 
| 357 |  |     explicit SetInfo(const DepGraph<SetType>& depgraph, const SetType& txn) noexcept : | 
| 358 | 0 |         transactions(txn), feerate(depgraph.FeeRate(txn)) {}Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetIjEEEC2ERKNS_8DepGraphIS3_EERKS3_Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEEC2ERKNS_8DepGraphIS3_EERKS3_Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetImEEEC2ERKNS_8DepGraphIS3_EERKS3_ | 
| 359 |  |  | 
| 360 |  |     /** Add a transaction to this SetInfo (which must not yet be in it). */ | 
| 361 |  |     void Set(const DepGraph<SetType>& depgraph, DepGraphIndex pos) noexcept | 
| 362 | 0 |     { | 
| 363 | 0 |         Assume(!transactions[pos]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!transactions[pos]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!transactions[pos]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 364 | 0 |         transactions.Set(pos); | 
| 365 | 0 |         feerate += depgraph.FeeRate(pos); | 
| 366 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetIjEEE3SetERKNS_8DepGraphIS3_EEjUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEE3SetERKNS_8DepGraphIS3_EEjUnexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetImEEE3SetERKNS_8DepGraphIS3_EEj | 
| 367 |  |  | 
| 368 |  |     /** Add the transactions of other to this SetInfo (no overlap allowed). */ | 
| 369 |  |     SetInfo& operator|=(const SetInfo& other) noexcept | 
| 370 | 0 |     { | 
| 371 | 0 |         Assume(!transactions.Overlaps(other.transactions)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!transactions.Overlaps(other.transactions)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!transactions.Overlaps(other.transactions)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 372 | 0 |         transactions |= other.transactions; | 
| 373 | 0 |         feerate += other.feerate; | 
| 374 | 0 |         return *this; | 
| 375 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetIjEEEoRERKS4_Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEEoRERKS4_Unexecuted instantiation: _ZN17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetImEEEoRERKS4_ | 
| 376 |  |  | 
| 377 |  |     /** Construct a new SetInfo equal to this, with more transactions added (which may overlap | 
| 378 |  |      *  with the existing transactions in the SetInfo). */ | 
| 379 |  |     [[nodiscard]] SetInfo Add(const DepGraph<SetType>& depgraph, const SetType& txn) const noexcept | 
| 380 | 0 |     { | 
| 381 | 0 |         return {transactions | txn, feerate + depgraph.FeeRate(txn - transactions)}; | 
| 382 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetIjEEE3AddERKNS_8DepGraphIS3_EERKS3_Unexecuted instantiation: _ZNK17cluster_linearize7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEE3AddERKNS_8DepGraphIS3_EERKS3_Unexecuted instantiation: _ZNK17cluster_linearize7SetInfoIN13bitset_detail9IntBitSetImEEE3AddERKNS_8DepGraphIS3_EERKS3_ | 
| 383 |  |  | 
| 384 |  |     /** Swap two SetInfo objects. */ | 
| 385 |  |     friend void swap(SetInfo& a, SetInfo& b) noexcept | 
| 386 | 0 |     { | 
| 387 | 0 |         swap(a.transactions, b.transactions); | 
| 388 | 0 |         swap(a.feerate, b.feerate); | 
| 389 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize4swapERNS_7SetInfoIN13bitset_detail9IntBitSetIjEEEES5_Unexecuted instantiation: _ZN17cluster_linearize4swapERNS_7SetInfoIN13bitset_detail14MultiIntBitSetImLj2EEEEES5_Unexecuted instantiation: _ZN17cluster_linearize4swapERNS_7SetInfoIN13bitset_detail9IntBitSetImEEEES5_ | 
| 390 |  |  | 
| 391 |  |     /** Permit equality testing. */ | 
| 392 | 0 |     friend bool operator==(const SetInfo&, const SetInfo&) noexcept = default; | 
| 393 |  | }; | 
| 394 |  |  | 
| 395 |  | /** Compute the feerates of the chunks of linearization. */ | 
| 396 |  | template<typename SetType> | 
| 397 |  | std::vector<FeeFrac> ChunkLinearization(const DepGraph<SetType>& depgraph, std::span<const DepGraphIndex> linearization) noexcept | 
| 398 | 0 | { | 
| 399 | 0 |     std::vector<FeeFrac> ret; | 
| 400 | 0 |     for (DepGraphIndex i : linearization) { | 
| 401 |  |         /** The new chunk to be added, initially a singleton. */ | 
| 402 | 0 |         auto new_chunk = depgraph.FeeRate(i); | 
| 403 |  |         // As long as the new chunk has a higher feerate than the last chunk so far, absorb it. | 
| 404 | 0 |         while (!ret.empty() && new_chunk >> ret.back()) { | 
| 405 | 0 |             new_chunk += ret.back(); | 
| 406 | 0 |             ret.pop_back(); | 
| 407 | 0 |         } | 
| 408 |  |         // Actually move that new chunk into the chunking. | 
| 409 | 0 |         ret.push_back(std::move(new_chunk)); | 
| 410 | 0 |     } | 
| 411 | 0 |     return ret; | 
| 412 | 0 | } Unexecuted instantiation: _ZN17cluster_linearize18ChunkLinearizationIN13bitset_detail9IntBitSetIjEEEENSt3__16vectorI7FeeFracNS4_9allocatorIS6_EEEERKNS_8DepGraphIT_EENS4_4spanIKjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize18ChunkLinearizationIN13bitset_detail14MultiIntBitSetImLj2EEEEENSt3__16vectorI7FeeFracNS4_9allocatorIS6_EEEERKNS_8DepGraphIT_EENS4_4spanIKjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize18ChunkLinearizationIN13bitset_detail9IntBitSetImEEEENSt3__16vectorI7FeeFracNS4_9allocatorIS6_EEEERKNS_8DepGraphIT_EENS4_4spanIKjLm18446744073709551615EEE | 
| 413 |  |  | 
| 414 |  | /** Data structure encapsulating the chunking of a linearization, permitting removal of subsets. */ | 
| 415 |  | template<typename SetType> | 
| 416 |  | class LinearizationChunking | 
| 417 |  | { | 
| 418 |  |     /** The depgraph this linearization is for. */ | 
| 419 |  |     const DepGraph<SetType>& m_depgraph; | 
| 420 |  |  | 
| 421 |  |     /** The linearization we started from, possibly with removed prefix stripped. */ | 
| 422 |  |     std::span<const DepGraphIndex> m_linearization; | 
| 423 |  |  | 
| 424 |  |     /** Chunk sets and their feerates, of what remains of the linearization. */ | 
| 425 |  |     std::vector<SetInfo<SetType>> m_chunks; | 
| 426 |  |  | 
| 427 |  |     /** How large a prefix of m_chunks corresponds to removed transactions. */ | 
| 428 |  |     DepGraphIndex m_chunks_skip{0}; | 
| 429 |  |  | 
| 430 |  |     /** Which transactions remain in the linearization. */ | 
| 431 |  |     SetType m_todo; | 
| 432 |  |  | 
| 433 |  |     /** Fill the m_chunks variable, and remove the done prefix of m_linearization. */ | 
| 434 |  |     void BuildChunks() noexcept | 
| 435 | 0 |     { | 
| 436 |  |         // Caller must clear m_chunks. | 
| 437 | 0 |         Assume(m_chunks.empty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(m_chunks.empty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(m_chunks.empty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 438 |  |  | 
| 439 |  |         // Chop off the initial part of m_linearization that is already done. | 
| 440 | 0 |         while (!m_linearization.empty() && !m_todo[m_linearization.front()]) { | 
| 441 | 0 |             m_linearization = m_linearization.subspan(1); | 
| 442 | 0 |         } | 
| 443 |  |  | 
| 444 |  |         // Iterate over the remaining entries in m_linearization. This is effectively the same | 
| 445 |  |         // algorithm as ChunkLinearization, but supports skipping parts of the linearization and | 
| 446 |  |         // keeps track of the sets themselves instead of just their feerates. | 
| 447 | 0 |         for (auto idx : m_linearization) { | 
| 448 | 0 |             if (!m_todo[idx]) continue; | 
| 449 |  |             // Start with an initial chunk containing just element idx. | 
| 450 | 0 |             SetInfo add(m_depgraph, idx); | 
| 451 |  |             // Absorb existing final chunks into add while they have lower feerate. | 
| 452 | 0 |             while (!m_chunks.empty() && add.feerate >> m_chunks.back().feerate) { | 
| 453 | 0 |                 add |= m_chunks.back(); | 
| 454 | 0 |                 m_chunks.pop_back(); | 
| 455 | 0 |             } | 
| 456 |  |             // Remember new chunk. | 
| 457 | 0 |             m_chunks.push_back(std::move(add)); | 
| 458 | 0 |         } | 
| 459 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetIjEEE11BuildChunksEvUnexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail14MultiIntBitSetImLj2EEEE11BuildChunksEvUnexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetImEEE11BuildChunksEv | 
| 460 |  |  | 
| 461 |  | public: | 
| 462 |  |     /** Initialize a LinearizationSubset object for a given length of linearization. */ | 
| 463 |  |     explicit LinearizationChunking(const DepGraph<SetType>& depgraph LIFETIMEBOUND, std::span<const DepGraphIndex> lin LIFETIMEBOUND) noexcept : | 
| 464 | 0 |         m_depgraph(depgraph), m_linearization(lin) | 
| 465 | 0 |     { | 
| 466 |  |         // Mark everything in lin as todo still. | 
| 467 | 0 |         for (auto i : m_linearization) m_todo.Set(i); | 
| 468 |  |         // Compute the initial chunking. | 
| 469 | 0 |         m_chunks.reserve(depgraph.TxCount()); | 
| 470 | 0 |         BuildChunks(); | 
| 471 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetIjEEEC2ERKNS_8DepGraphIS3_EENSt3__14spanIKjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail14MultiIntBitSetImLj2EEEEC2ERKNS_8DepGraphIS3_EENSt3__14spanIKjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetImEEEC2ERKNS_8DepGraphIS3_EENSt3__14spanIKjLm18446744073709551615EEE | 
| 472 |  |  | 
| 473 |  |     /** Determine how many chunks remain in the linearization. */ | 
| 474 | 0 |     DepGraphIndex NumChunksLeft() const noexcept { return m_chunks.size() - m_chunks_skip; }Unexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetIjEEE13NumChunksLeftEvUnexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail14MultiIntBitSetImLj2EEEE13NumChunksLeftEvUnexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetImEEE13NumChunksLeftEv | 
| 475 |  |  | 
| 476 |  |     /** Access a chunk. Chunk 0 is the highest-feerate prefix of what remains. */ | 
| 477 |  |     const SetInfo<SetType>& GetChunk(DepGraphIndex n) const noexcept | 
| 478 | 0 |     { | 
| 479 | 0 |         Assume(n + m_chunks_skip < m_chunks.size()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(n + m_chunks_skip < m_chunks.size()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(n + m_chunks_skip < m_chunks.size()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 480 | 0 |         return m_chunks[n + m_chunks_skip]; | 
| 481 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetIjEEE8GetChunkEjUnexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail14MultiIntBitSetImLj2EEEE8GetChunkEjUnexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetImEEE8GetChunkEj | 
| 482 |  |  | 
| 483 |  |     /** Remove some subset of transactions from the linearization. */ | 
| 484 |  |     void MarkDone(SetType subset) noexcept | 
| 485 | 0 |     { | 
| 486 | 0 |         Assume(subset.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(subset.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(subset.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 487 | 0 |         Assume(subset.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(subset.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(subset.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 488 | 0 |         m_todo -= subset; | 
| 489 | 0 |         if (GetChunk(0).transactions == subset) { | 
| 490 |  |             // If the newly done transactions exactly match the first chunk of the remainder of | 
| 491 |  |             // the linearization, we do not need to rechunk; just remember to skip one | 
| 492 |  |             // additional chunk. | 
| 493 | 0 |             ++m_chunks_skip; | 
| 494 |  |             // With subset marked done, some prefix of m_linearization will be done now. How long | 
| 495 |  |             // that prefix is depends on how many done elements were interspersed with subset, | 
| 496 |  |             // but at least as many transactions as there are in subset. | 
| 497 | 0 |             m_linearization = m_linearization.subspan(subset.Count()); | 
| 498 | 0 |         } else { | 
| 499 |  |             // Otherwise rechunk what remains of m_linearization. | 
| 500 | 0 |             m_chunks.clear(); | 
| 501 | 0 |             m_chunks_skip = 0; | 
| 502 | 0 |             BuildChunks(); | 
| 503 | 0 |         } | 
| 504 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetIjEEE8MarkDoneES3_Unexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail14MultiIntBitSetImLj2EEEE8MarkDoneES3_Unexecuted instantiation: _ZN17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetImEEE8MarkDoneES3_ | 
| 505 |  |  | 
| 506 |  |     /** Find the shortest intersection between subset and the prefixes of remaining chunks | 
| 507 |  |      *  of the linearization that has a feerate not below subset's. | 
| 508 |  |      * | 
| 509 |  |      * This is a crucial operation in guaranteeing improvements to linearizations. If subset has | 
| 510 |  |      * a feerate not below GetChunk(0)'s, then moving IntersectPrefixes(subset) to the front of | 
| 511 |  |      * (what remains of) the linearization is guaranteed not to make it worse at any point. | 
| 512 |  |      * | 
| 513 |  |      * See https://delvingbitcoin.org/t/introduction-to-cluster-linearization/1032 for background. | 
| 514 |  |      */ | 
| 515 |  |     SetInfo<SetType> IntersectPrefixes(const SetInfo<SetType>& subset) const noexcept | 
| 516 | 0 |     { | 
| 517 | 0 |         Assume(subset.transactions.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(subset.transactions.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(subset.transactions.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 518 | 0 |         SetInfo<SetType> accumulator; | 
| 519 |  |         // Iterate over all chunks of the remaining linearization. | 
| 520 | 0 |         for (DepGraphIndex i = 0; i < NumChunksLeft(); ++i) { | 
| 521 |  |             // Find what (if any) intersection the chunk has with subset. | 
| 522 | 0 |             const SetType to_add = GetChunk(i).transactions & subset.transactions; | 
| 523 | 0 |             if (to_add.Any()) { | 
| 524 |  |                 // If adding that to accumulator makes us hit all of subset, we are done as no | 
| 525 |  |                 // shorter intersection with higher/equal feerate exists. | 
| 526 | 0 |                 accumulator.transactions |= to_add; | 
| 527 | 0 |                 if (accumulator.transactions == subset.transactions) break; | 
| 528 |  |                 // Otherwise update the accumulator feerate. | 
| 529 | 0 |                 accumulator.feerate += m_depgraph.FeeRate(to_add); | 
| 530 |  |                 // If that does result in something better, or something with the same feerate but | 
| 531 |  |                 // smaller, return that. Even if a longer, higher-feerate intersection exists, it | 
| 532 |  |                 // does not hurt to return the shorter one (the remainder of the longer intersection | 
| 533 |  |                 // will generally be found in the next call to Intersect, but even if not, it is not | 
| 534 |  |                 // required for the improvement guarantee this function makes). | 
| 535 | 0 |                 if (!(accumulator.feerate << subset.feerate)) return accumulator; | 
| 536 | 0 |             } | 
| 537 | 0 |         } | 
| 538 | 0 |         return subset; | 
| 539 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetIjEEE17IntersectPrefixesERKNS_7SetInfoIS3_EEUnexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail14MultiIntBitSetImLj2EEEE17IntersectPrefixesERKNS_7SetInfoIS3_EEUnexecuted instantiation: _ZNK17cluster_linearize21LinearizationChunkingIN13bitset_detail9IntBitSetImEEE17IntersectPrefixesERKNS_7SetInfoIS3_EE | 
| 540 |  | }; | 
| 541 |  |  | 
| 542 |  | /** Class encapsulating the state needed to find the best remaining ancestor set. | 
| 543 |  |  * | 
| 544 |  |  * It is initialized for an entire DepGraph, and parts of the graph can be dropped by calling | 
| 545 |  |  * MarkDone. | 
| 546 |  |  * | 
| 547 |  |  * As long as any part of the graph remains, FindCandidateSet() can be called which will return a | 
| 548 |  |  * SetInfo with the highest-feerate ancestor set that remains (an ancestor set is a single | 
| 549 |  |  * transaction together with all its remaining ancestors). | 
| 550 |  |  */ | 
| 551 |  | template<typename SetType> | 
| 552 |  | class AncestorCandidateFinder | 
| 553 |  | { | 
| 554 |  |     /** Internal dependency graph. */ | 
| 555 |  |     const DepGraph<SetType>& m_depgraph; | 
| 556 |  |     /** Which transaction are left to include. */ | 
| 557 |  |     SetType m_todo; | 
| 558 |  |     /** Precomputed ancestor-set feerates (only kept up-to-date for indices in m_todo). */ | 
| 559 |  |     std::vector<FeeFrac> m_ancestor_set_feerates; | 
| 560 |  |  | 
| 561 |  | public: | 
| 562 |  |     /** Construct an AncestorCandidateFinder for a given cluster. | 
| 563 |  |      * | 
| 564 |  |      * Complexity: O(N^2) where N=depgraph.TxCount(). | 
| 565 |  |      */ | 
| 566 |  |     AncestorCandidateFinder(const DepGraph<SetType>& depgraph LIFETIMEBOUND) noexcept : | 
| 567 | 0 |         m_depgraph(depgraph), | 
| 568 | 0 |         m_todo{depgraph.Positions()}, | 
| 569 | 0 |         m_ancestor_set_feerates(depgraph.PositionRange()) | 
| 570 | 0 |     { | 
| 571 |  |         // Precompute ancestor-set feerates. | 
| 572 | 0 |         for (DepGraphIndex i : m_depgraph.Positions()) { | 
| 573 |  |             /** The remaining ancestors for transaction i. */ | 
| 574 | 0 |             SetType anc_to_add = m_depgraph.Ancestors(i); | 
| 575 | 0 |             FeeFrac anc_feerate; | 
| 576 |  |             // Reuse accumulated feerate from first ancestor, if usable. | 
| 577 | 0 |             Assume(anc_to_add.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(anc_to_add.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(anc_to_add.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 578 | 0 |             DepGraphIndex first = anc_to_add.First(); | 
| 579 | 0 |             if (first < i) { | 
| 580 | 0 |                 anc_feerate = m_ancestor_set_feerates[first]; | 
| 581 | 0 |                 Assume(!anc_feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(!anc_feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(!anc_feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 582 | 0 |                 anc_to_add -= m_depgraph.Ancestors(first); | 
| 583 | 0 |             } | 
| 584 |  |             // Add in other ancestors (which necessarily include i itself). | 
| 585 | 0 |             Assume(anc_to_add[i]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(anc_to_add[i]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(anc_to_add[i]); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 586 | 0 |             anc_feerate += m_depgraph.FeeRate(anc_to_add); | 
| 587 |  |             // Store the result. | 
| 588 | 0 |             m_ancestor_set_feerates[i] = anc_feerate; | 
| 589 | 0 |         } | 
| 590 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetIjEEEC2ERKNS_8DepGraphIS3_EEUnexecuted instantiation: _ZN17cluster_linearize23AncestorCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEEC2ERKNS_8DepGraphIS3_EEUnexecuted instantiation: _ZN17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetImEEEC2ERKNS_8DepGraphIS3_EE | 
| 591 |  |  | 
| 592 |  |     /** Remove a set of transactions from the set of to-be-linearized ones. | 
| 593 |  |      * | 
| 594 |  |      * The same transaction may not be MarkDone()'d twice. | 
| 595 |  |      * | 
| 596 |  |      * Complexity: O(N*M) where N=depgraph.TxCount(), M=select.Count(). | 
| 597 |  |      */ | 
| 598 |  |     void MarkDone(SetType select) noexcept | 
| 599 | 0 |     { | 
| 600 | 0 |         Assume(select.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(select.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(select.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 601 | 0 |         Assume(select.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(select.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(select.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 602 | 0 |         m_todo -= select; | 
| 603 | 0 |         for (auto i : select) { | 
| 604 | 0 |             auto feerate = m_depgraph.FeeRate(i); | 
| 605 | 0 |             for (auto j : m_depgraph.Descendants(i) & m_todo) { | 
| 606 | 0 |                 m_ancestor_set_feerates[j] -= feerate; | 
| 607 | 0 |             } | 
| 608 | 0 |         } | 
| 609 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetIjEEE8MarkDoneES3_Unexecuted instantiation: _ZN17cluster_linearize23AncestorCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE8MarkDoneES3_Unexecuted instantiation: _ZN17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetImEEE8MarkDoneES3_ | 
| 610 |  |  | 
| 611 |  |     /** Check whether any unlinearized transactions remain. */ | 
| 612 |  |     bool AllDone() const noexcept | 
| 613 | 0 |     { | 
| 614 | 0 |         return m_todo.None(); | 
| 615 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetIjEEE7AllDoneEvUnexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE7AllDoneEvUnexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetImEEE7AllDoneEv | 
| 616 |  |  | 
| 617 |  |     /** Count the number of remaining unlinearized transactions. */ | 
| 618 |  |     DepGraphIndex NumRemaining() const noexcept | 
| 619 | 0 |     { | 
| 620 | 0 |         return m_todo.Count(); | 
| 621 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetIjEEE12NumRemainingEvUnexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE12NumRemainingEvUnexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetImEEE12NumRemainingEv | 
| 622 |  |  | 
| 623 |  |     /** Find the best (highest-feerate, smallest among those in case of a tie) ancestor set | 
| 624 |  |      *  among the remaining transactions. Requires !AllDone(). | 
| 625 |  |      * | 
| 626 |  |      * Complexity: O(N) where N=depgraph.TxCount(); | 
| 627 |  |      */ | 
| 628 |  |     SetInfo<SetType> FindCandidateSet() const noexcept | 
| 629 | 0 |     { | 
| 630 | 0 |         Assume(!AllDone()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!AllDone()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!AllDone()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 631 | 0 |         std::optional<DepGraphIndex> best; | 
| 632 | 0 |         for (auto i : m_todo) { | 
| 633 | 0 |             if (best.has_value()) { | 
| 634 | 0 |                 Assume(!m_ancestor_set_feerates[i].IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(!m_ancestor_set_feerates[i].IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(!m_ancestor_set_feerates[i].IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 635 | 0 |                 if (!(m_ancestor_set_feerates[i] > m_ancestor_set_feerates[*best])) continue; | 
| 636 | 0 |             } | 
| 637 | 0 |             best = i; | 
| 638 | 0 |         } | 
| 639 | 0 |         Assume(best.has_value()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(best.has_value()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(best.has_value()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 640 | 0 |         return {m_depgraph.Ancestors(*best) & m_todo, m_ancestor_set_feerates[*best]}; | 
| 641 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetIjEEE16FindCandidateSetEvUnexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16FindCandidateSetEvUnexecuted instantiation: _ZNK17cluster_linearize23AncestorCandidateFinderIN13bitset_detail9IntBitSetImEEE16FindCandidateSetEv | 
| 642 |  | }; | 
| 643 |  |  | 
| 644 |  | /** Class encapsulating the state needed to perform search for good candidate sets. | 
| 645 |  |  * | 
| 646 |  |  * It is initialized for an entire DepGraph, and parts of the graph can be dropped by calling | 
| 647 |  |  * MarkDone(). | 
| 648 |  |  * | 
| 649 |  |  * As long as any part of the graph remains, FindCandidateSet() can be called to perform a search | 
| 650 |  |  * over the set of topologically-valid subsets of that remainder, with a limit on how many | 
| 651 |  |  * combinations are tried. | 
| 652 |  |  */ | 
| 653 |  | template<typename SetType> | 
| 654 |  | class SearchCandidateFinder | 
| 655 |  | { | 
| 656 |  |     /** Internal RNG. */ | 
| 657 |  |     InsecureRandomContext m_rng; | 
| 658 |  |     /** m_sorted_to_original[i] is the original position that sorted transaction position i had. */ | 
| 659 |  |     std::vector<DepGraphIndex> m_sorted_to_original; | 
| 660 |  |     /** m_original_to_sorted[i] is the sorted position original transaction position i has. */ | 
| 661 |  |     std::vector<DepGraphIndex> m_original_to_sorted; | 
| 662 |  |     /** Internal dependency graph for the cluster (with transactions in decreasing individual | 
| 663 |  |      *  feerate order). */ | 
| 664 |  |     DepGraph<SetType> m_sorted_depgraph; | 
| 665 |  |     /** Which transactions are left to do (indices in m_sorted_depgraph's order). */ | 
| 666 |  |     SetType m_todo; | 
| 667 |  |  | 
| 668 |  |     /** Given a set of transactions with sorted indices, get their original indices. */ | 
| 669 |  |     SetType SortedToOriginal(const SetType& arg) const noexcept | 
| 670 | 0 |     { | 
| 671 | 0 |         SetType ret; | 
| 672 | 0 |         for (auto pos : arg) ret.Set(m_sorted_to_original[pos]); | 
| 673 | 0 |         return ret; | 
| 674 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE16SortedToOriginalERKS3_Unexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16SortedToOriginalERKS3_Unexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE16SortedToOriginalERKS3_ | 
| 675 |  |  | 
| 676 |  |     /** Given a set of transactions with original indices, get their sorted indices. */ | 
| 677 |  |     SetType OriginalToSorted(const SetType& arg) const noexcept | 
| 678 | 0 |     { | 
| 679 | 0 |         SetType ret; | 
| 680 | 0 |         for (auto pos : arg) ret.Set(m_original_to_sorted[pos]); | 
| 681 | 0 |         return ret; | 
| 682 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE16OriginalToSortedERKS3_Unexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16OriginalToSortedERKS3_Unexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE16OriginalToSortedERKS3_ | 
| 683 |  |  | 
| 684 |  | public: | 
| 685 |  |     /** Construct a candidate finder for a graph. | 
| 686 |  |      * | 
| 687 |  |      * @param[in] depgraph   Dependency graph for the to-be-linearized cluster. | 
| 688 |  |      * @param[in] rng_seed   A random seed to control the search order. | 
| 689 |  |      * | 
| 690 |  |      * Complexity: O(N^2) where N=depgraph.Count(). | 
| 691 |  |      */ | 
| 692 |  |     SearchCandidateFinder(const DepGraph<SetType>& depgraph, uint64_t rng_seed) noexcept : | 
| 693 | 0 |         m_rng(rng_seed), | 
| 694 | 0 |         m_sorted_to_original(depgraph.TxCount()), | 
| 695 | 0 |         m_original_to_sorted(depgraph.PositionRange()) | 
| 696 | 0 |     { | 
| 697 |  |         // Determine reordering mapping, by sorting by decreasing feerate. Unused positions are | 
| 698 |  |         // not included, as they will never be looked up anyway. | 
| 699 | 0 |         DepGraphIndex sorted_pos{0}; | 
| 700 | 0 |         for (auto i : depgraph.Positions()) { | 
| 701 | 0 |             m_sorted_to_original[sorted_pos++] = i; | 
| 702 | 0 |         } | 
| 703 | 0 |         std::sort(m_sorted_to_original.begin(), m_sorted_to_original.end(), [&](auto a, auto b) { | 
| 704 | 0 |             auto feerate_cmp = depgraph.FeeRate(a) <=> depgraph.FeeRate(b); | 
| 705 | 0 |             if (feerate_cmp == 0) return a < b; | 
| 706 | 0 |             return feerate_cmp > 0; | 
| 707 | 0 |         }); Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEEC1ERKNS_8DepGraphIS3_EEyENKUlT_T0_E_clIjjEEDaS9_SA_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEEC1ERKNS_8DepGraphIS3_EEyENKUlT_T0_E_clIjjEEDaS9_SA_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEEC1ERKNS_8DepGraphIS3_EEyENKUlT_T0_E_clIjjEEDaS9_SA_ | 
| 708 |  |         // Compute reverse mapping. | 
| 709 | 0 |         for (DepGraphIndex i = 0; i < m_sorted_to_original.size(); ++i) { | 
| 710 | 0 |             m_original_to_sorted[m_sorted_to_original[i]] = i; | 
| 711 | 0 |         } | 
| 712 |  |         // Compute reordered dependency graph. | 
| 713 | 0 |         m_sorted_depgraph = DepGraph(depgraph, m_original_to_sorted, m_sorted_to_original.size()); | 
| 714 | 0 |         m_todo = m_sorted_depgraph.Positions(); | 
| 715 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEEC2ERKNS_8DepGraphIS3_EEyUnexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEEC2ERKNS_8DepGraphIS3_EEyUnexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEEC2ERKNS_8DepGraphIS3_EEy | 
| 716 |  |  | 
| 717 |  |     /** Check whether any unlinearized transactions remain. */ | 
| 718 |  |     bool AllDone() const noexcept | 
| 719 | 0 |     { | 
| 720 | 0 |         return m_todo.None(); | 
| 721 | 0 |     } Unexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE7AllDoneEvUnexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE7AllDoneEvUnexecuted instantiation: _ZNK17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE7AllDoneEv | 
| 722 |  |  | 
| 723 |  |     /** Find a high-feerate topologically-valid subset of what remains of the cluster. | 
| 724 |  |      *  Requires !AllDone(). | 
| 725 |  |      * | 
| 726 |  |      * @param[in] max_iterations  The maximum number of optimization steps that will be performed. | 
| 727 |  |      * @param[in] best            A set/feerate pair with an already-known good candidate. This may | 
| 728 |  |      *                            be empty. | 
| 729 |  |      * @return                    A pair of: | 
| 730 |  |      *                            - The best (highest feerate, smallest size as tiebreaker) | 
| 731 |  |      *                              topologically valid subset (and its feerate) that was | 
| 732 |  |      *                              encountered during search. It will be at least as good as the | 
| 733 |  |      *                              best passed in (if not empty). | 
| 734 |  |      *                            - The number of optimization steps that were performed. This will | 
| 735 |  |      *                              be <= max_iterations. If strictly < max_iterations, the | 
| 736 |  |      *                              returned subset is optimal. | 
| 737 |  |      * | 
| 738 |  |      * Complexity: possibly O(N * min(max_iterations, sqrt(2^N))) where N=depgraph.TxCount(). | 
| 739 |  |      */ | 
| 740 |  |     std::pair<SetInfo<SetType>, uint64_t> FindCandidateSet(uint64_t max_iterations, SetInfo<SetType> best) noexcept | 
| 741 | 0 |     { | 
| 742 | 0 |         Assume(!AllDone()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!AllDone()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(!AllDone()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 743 |  |  | 
| 744 |  |         // Convert the provided best to internal sorted indices. | 
| 745 | 0 |         best.transactions = OriginalToSorted(best.transactions); | 
| 746 |  |  | 
| 747 |  |         /** Type for work queue items. */ | 
| 748 | 0 |         struct WorkItem | 
| 749 | 0 |         { | 
| 750 |  |             /** Set of transactions definitely included (and its feerate). This must be a subset | 
| 751 |  |              *  of m_todo, and be topologically valid (includes all in-m_todo ancestors of | 
| 752 |  |              *  itself). */ | 
| 753 | 0 |             SetInfo<SetType> inc; | 
| 754 |  |             /** Set of undecided transactions. This must be a subset of m_todo, and have no overlap | 
| 755 |  |              *  with inc. The set (inc | und) must be topologically valid. */ | 
| 756 | 0 |             SetType und; | 
| 757 |  |             /** (Only when inc is not empty) The best feerate of any superset of inc that is also a | 
| 758 |  |              *  subset of (inc | und), without requiring it to be topologically valid. It forms a | 
| 759 |  |              *  conservative upper bound on how good a set this work item can give rise to. | 
| 760 |  |              *  Transactions whose feerate is below best's are ignored when determining this value, | 
| 761 |  |              *  which means it may technically be an underestimate, but if so, this work item | 
| 762 |  |              *  cannot result in something that beats best anyway. */ | 
| 763 | 0 |             FeeFrac pot_feerate; | 
| 764 |  |  | 
| 765 |  |             /** Construct a new work item. */ | 
| 766 | 0 |             WorkItem(SetInfo<SetType>&& i, SetType&& u, FeeFrac&& p_f) noexcept : | 
| 767 | 0 |                 inc(std::move(i)), und(std::move(u)), pot_feerate(std::move(p_f)) | 
| 768 | 0 |             { | 
| 769 | 0 |                 Assume(pot_feerate.IsEmpty() == inc.feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(pot_feerate.IsEmpty() == inc.feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(pot_feerate.IsEmpty() == inc.feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 770 | 0 |             } Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE16FindCandidateSetEyNS_7SetInfoIS3_EEEN8WorkItemC2EOS6_OS3_O7FeeFracUnexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16FindCandidateSetEyNS_7SetInfoIS3_EEEN8WorkItemC2EOS6_OS3_O7FeeFracUnexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE16FindCandidateSetEyNS_7SetInfoIS3_EEEN8WorkItemC2EOS6_OS3_O7FeeFrac | 
| 771 |  |  | 
| 772 |  |             /** Swap two WorkItems. */ | 
| 773 | 0 |             void Swap(WorkItem& other) noexcept | 
| 774 | 0 |             { | 
| 775 | 0 |                 swap(inc, other.inc); | 
| 776 | 0 |                 swap(und, other.und); | 
| 777 | 0 |                 swap(pot_feerate, other.pot_feerate); | 
| 778 | 0 |             } Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE16FindCandidateSetEyNS_7SetInfoIS3_EEEN8WorkItem4SwapERS7_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16FindCandidateSetEyNS_7SetInfoIS3_EEEN8WorkItem4SwapERS7_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE16FindCandidateSetEyNS_7SetInfoIS3_EEEN8WorkItem4SwapERS7_ | 
| 779 | 0 |         }; | 
| 780 |  |  | 
| 781 |  |         /** The queue of work items. */ | 
| 782 | 0 |         VecDeque<WorkItem> queue; | 
| 783 | 0 |         queue.reserve(std::max<size_t>(256, 2 * m_todo.Count())); | 
| 784 |  |  | 
| 785 |  |         // Create initial entries per connected component of m_todo. While clusters themselves are | 
| 786 |  |         // generally connected, this is not necessarily true after some parts have already been | 
| 787 |  |         // removed from m_todo. Without this, effort can be wasted on searching "inc" sets that | 
| 788 |  |         // span multiple components. | 
| 789 | 0 |         auto to_cover = m_todo; | 
| 790 | 0 |         do { | 
| 791 | 0 |             auto component = m_sorted_depgraph.FindConnectedComponent(to_cover); | 
| 792 | 0 |             to_cover -= component; | 
| 793 |  |             // If best is not provided, set it to the first component, so that during the work | 
| 794 |  |             // processing loop below, and during the add_fn/split_fn calls, we do not need to deal | 
| 795 |  |             // with the best=empty case. | 
| 796 | 0 |             if (best.feerate.IsEmpty()) best = SetInfo(m_sorted_depgraph, component); | 
| 797 | 0 |             queue.emplace_back(/*inc=*/SetInfo<SetType>{}, | 
| 798 | 0 |                                /*und=*/std::move(component), | 
| 799 | 0 |                                /*pot_feerate=*/FeeFrac{}); | 
| 800 | 0 |         } while (to_cover.Any()); | 
| 801 |  |  | 
| 802 |  |         /** Local copy of the iteration limit. */ | 
| 803 | 0 |         uint64_t iterations_left = max_iterations; | 
| 804 |  |  | 
| 805 |  |         /** The set of transactions in m_todo which have feerate > best's. */ | 
| 806 | 0 |         SetType imp = m_todo; | 
| 807 | 0 |         while (imp.Any()) { | 
| 808 | 0 |             DepGraphIndex check = imp.Last(); | 
| 809 | 0 |             if (m_sorted_depgraph.FeeRate(check) >> best.feerate) break; | 
| 810 | 0 |             imp.Reset(check); | 
| 811 | 0 |         } | 
| 812 |  |  | 
| 813 |  |         /** Internal function to add an item to the queue of elements to explore if there are any | 
| 814 |  |          *  transactions left to split on, possibly improving it before doing so, and to update | 
| 815 |  |          *  best/imp. | 
| 816 |  |          * | 
| 817 |  |          * - inc: the "inc" value for the new work item (must be topological). | 
| 818 |  |          * - und: the "und" value for the new work item ((inc | und) must be topological). | 
| 819 |  |          */ | 
| 820 | 0 |         auto add_fn = [&](SetInfo<SetType> inc, SetType und) noexcept { | 
| 821 |  |             /** SetInfo object with the set whose feerate will become the new work item's | 
| 822 |  |              *  pot_feerate. It starts off equal to inc. */ | 
| 823 | 0 |             auto pot = inc; | 
| 824 | 0 |             if (!inc.feerate.IsEmpty()) { | 
| 825 |  |                 // Add entries to pot. We iterate over all undecided transactions whose feerate is | 
| 826 |  |                 // higher than best. While undecided transactions of lower feerate may improve pot, | 
| 827 |  |                 // the resulting pot feerate cannot possibly exceed best's (and this item will be | 
| 828 |  |                 // skipped in split_fn anyway). | 
| 829 | 0 |                 for (auto pos : imp & und) { | 
| 830 |  |                     // Determine if adding transaction pos to pot (ignoring topology) would improve | 
| 831 |  |                     // it. If not, we're done updating pot. This relies on the fact that | 
| 832 |  |                     // m_sorted_depgraph, and thus the transactions iterated over, are in decreasing | 
| 833 |  |                     // individual feerate order. | 
| 834 | 0 |                     if (!(m_sorted_depgraph.FeeRate(pos) >> pot.feerate)) break; | 
| 835 | 0 |                     pot.Set(m_sorted_depgraph, pos); | 
| 836 | 0 |                 } | 
| 837 |  |  | 
| 838 |  |                 // The "jump ahead" optimization: whenever pot has a topologically-valid subset, | 
| 839 |  |                 // that subset can be added to inc. Any subset of (pot - inc) has the property that | 
| 840 |  |                 // its feerate exceeds that of any set compatible with this work item (superset of | 
| 841 |  |                 // inc, subset of (inc | und)). Thus, if T is a topological subset of pot, and B is | 
| 842 |  |                 // the best topologically-valid set compatible with this work item, and (T - B) is | 
| 843 |  |                 // non-empty, then (T | B) is better than B and also topological. This is in | 
| 844 |  |                 // contradiction with the assumption that B is best. Thus, (T - B) must be empty, | 
| 845 |  |                 // or T must be a subset of B. | 
| 846 |  |                 // | 
| 847 |  |                 // See https://delvingbitcoin.org/t/how-to-linearize-your-cluster/303 section 2.4. | 
| 848 | 0 |                 const auto init_inc = inc.transactions; | 
| 849 | 0 |                 for (auto pos : pot.transactions - inc.transactions) { | 
| 850 |  |                     // If the transaction's ancestors are a subset of pot, we can add it together | 
| 851 |  |                     // with its ancestors to inc. Just update the transactions here; the feerate | 
| 852 |  |                     // update happens below. | 
| 853 | 0 |                     auto anc_todo = m_sorted_depgraph.Ancestors(pos) & m_todo; | 
| 854 | 0 |                     if (anc_todo.IsSubsetOf(pot.transactions)) inc.transactions |= anc_todo; | 
| 855 | 0 |                 } | 
| 856 |  |                 // Finally update und and inc's feerate to account for the added transactions. | 
| 857 | 0 |                 und -= inc.transactions; | 
| 858 | 0 |                 inc.feerate += m_sorted_depgraph.FeeRate(inc.transactions - init_inc); | 
| 859 |  |  | 
| 860 |  |                 // If inc's feerate is better than best's, remember it as our new best. | 
| 861 | 0 |                 if (inc.feerate > best.feerate) { | 
| 862 | 0 |                     best = inc; | 
| 863 |  |                     // See if we can remove any entries from imp now. | 
| 864 | 0 |                     while (imp.Any()) { | 
| 865 | 0 |                         DepGraphIndex check = imp.Last(); | 
| 866 | 0 |                         if (m_sorted_depgraph.FeeRate(check) >> best.feerate) break; | 
| 867 | 0 |                         imp.Reset(check); | 
| 868 | 0 |                     } | 
| 869 | 0 |                 } | 
| 870 |  |  | 
| 871 |  |                 // If no potential transactions exist beyond the already included ones, no | 
| 872 |  |                 // improvement is possible anymore. | 
| 873 | 0 |                 if (pot.feerate.size == inc.feerate.size) return; | 
| 874 |  |                 // At this point und must be non-empty. If it were empty then pot would equal inc. | 
| 875 | 0 |                 Assume(und.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(und.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(und.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 876 | 0 |             } else { | 
| 877 | 0 |                 Assume(inc.transactions.None()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(inc.transactions.None()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(inc.transactions.None()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 878 |  |                 // If inc is empty, we just make sure there are undecided transactions left to | 
| 879 |  |                 // split on. | 
| 880 | 0 |                 if (und.None()) return; | 
| 881 | 0 |             } | 
| 882 |  |  | 
| 883 |  |             // Actually construct a new work item on the queue. Due to the switch to DFS when queue | 
| 884 |  |             // space runs out (see below), we know that no reallocation of the queue should ever | 
| 885 |  |             // occur. | 
| 886 | 0 |             Assume(queue.size() < queue.capacity()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(queue.size() < queue.capacity()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(queue.size() < queue.capacity()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 887 | 0 |             queue.emplace_back(/*inc=*/std::move(inc), | 
| 888 | 0 |                                /*und=*/std::move(und), | 
| 889 | 0 |                                /*pot_feerate=*/std::move(pot.feerate)); | 
| 890 | 0 |         }; Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE16FindCandidateSetEyNS_7SetInfoIS3_EEENKUlS6_S3_E_clES6_S3_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16FindCandidateSetEyNS_7SetInfoIS3_EEENKUlS6_S3_E_clES6_S3_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE16FindCandidateSetEyNS_7SetInfoIS3_EEENKUlS6_S3_E_clES6_S3_ | 
| 891 |  |  | 
| 892 |  |         /** Internal process function. It takes an existing work item, and splits it in two: one | 
| 893 |  |          *  with a particular transaction (and its ancestors) included, and one with that | 
| 894 |  |          *  transaction (and its descendants) excluded. */ | 
| 895 | 0 |         auto split_fn = [&](WorkItem&& elem) noexcept { | 
| 896 |  |             // Any queue element must have undecided transactions left, otherwise there is nothing | 
| 897 |  |             // to explore anymore. | 
| 898 | 0 |             Assume(elem.und.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(elem.und.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(elem.und.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 899 |  |             // The included and undecided set are all subsets of m_todo. | 
| 900 | 0 |             Assume(elem.inc.transactions.IsSubsetOf(m_todo) && elem.und.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(elem.inc.transactions.IsSubsetOf(m_todo) && elem.und.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(elem.inc.transactions.IsSubsetOf(m_todo) && elem.und.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 901 |  |             // Included transactions cannot be undecided. | 
| 902 | 0 |             Assume(!elem.inc.transactions.Overlaps(elem.und)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(!elem.inc.transactions.Overlaps(elem.und)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(!elem.inc.transactions.Overlaps(elem.und)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 903 |  |             // If pot is empty, then so is inc. | 
| 904 | 0 |             Assume(elem.inc.feerate.IsEmpty() == elem.pot_feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(elem.inc.feerate.IsEmpty() == elem.pot_feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(elem.inc.feerate.IsEmpty() == elem.pot_feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 905 |  | 
 | 
| 906 | 0 |             const DepGraphIndex first = elem.und.First(); | 
| 907 | 0 |             if (!elem.inc.feerate.IsEmpty()) { | 
| 908 |  |                 // If no undecided transactions remain with feerate higher than best, this entry | 
| 909 |  |                 // cannot be improved beyond best. | 
| 910 | 0 |                 if (!elem.und.Overlaps(imp)) return; | 
| 911 |  |                 // We can ignore any queue item whose potential feerate isn't better than the best | 
| 912 |  |                 // seen so far. | 
| 913 | 0 |                 if (elem.pot_feerate <= best.feerate) return; | 
| 914 | 0 |             } else { | 
| 915 |  |                 // In case inc is empty use a simpler alternative check. | 
| 916 | 0 |                 if (m_sorted_depgraph.FeeRate(first) <= best.feerate) return; | 
| 917 | 0 |             } | 
| 918 |  |  | 
| 919 |  |             // Decide which transaction to split on. Splitting is how new work items are added, and | 
| 920 |  |             // how progress is made. One split transaction is chosen among the queue item's | 
| 921 |  |             // undecided ones, and: | 
| 922 |  |             // - A work item is (potentially) added with that transaction plus its remaining | 
| 923 |  |             //   descendants excluded (removed from the und set). | 
| 924 |  |             // - A work item is (potentially) added with that transaction plus its remaining | 
| 925 |  |             //   ancestors included (added to the inc set). | 
| 926 |  |             // | 
| 927 |  |             // To decide what to split on, consider the undecided ancestors of the highest | 
| 928 |  |             // individual feerate undecided transaction. Pick the one which reduces the search space | 
| 929 |  |             // most. Let I(t) be the size of the undecided set after including t, and E(t) the size | 
| 930 |  |             // of the undecided set after excluding t. Then choose the split transaction t such | 
| 931 |  |             // that 2^I(t) + 2^E(t) is minimal, tie-breaking by highest individual feerate for t. | 
| 932 | 0 |             DepGraphIndex split = 0; | 
| 933 | 0 |             const auto select = elem.und & m_sorted_depgraph.Ancestors(first); | 
| 934 | 0 |             Assume(select.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(select.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(select.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 935 | 0 |             std::optional<std::pair<DepGraphIndex, DepGraphIndex>> split_counts; | 
| 936 | 0 |             for (auto t : select) { | 
| 937 |  |                 // Call max = max(I(t), E(t)) and min = min(I(t), E(t)). Let counts = {max,min}. | 
| 938 |  |                 // Sorting by the tuple counts is equivalent to sorting by 2^I(t) + 2^E(t). This | 
| 939 |  |                 // expression is equal to 2^max + 2^min = 2^max * (1 + 1/2^(max - min)). The second | 
| 940 |  |                 // factor (1 + 1/2^(max - min)) there is in (1,2]. Thus increasing max will always | 
| 941 |  |                 // increase it, even when min decreases. Because of this, we can first sort by max. | 
| 942 | 0 |                 std::pair<DepGraphIndex, DepGraphIndex> counts{ | 
| 943 | 0 |                     (elem.und - m_sorted_depgraph.Ancestors(t)).Count(), | 
| 944 | 0 |                     (elem.und - m_sorted_depgraph.Descendants(t)).Count()}; | 
| 945 | 0 |                 if (counts.first < counts.second) std::swap(counts.first, counts.second); | 
| 946 |  |                 // Remember the t with the lowest counts. | 
| 947 | 0 |                 if (!split_counts.has_value() || counts < *split_counts) { | 
| 948 | 0 |                     split = t; | 
| 949 | 0 |                     split_counts = counts; | 
| 950 | 0 |                 } | 
| 951 | 0 |             } | 
| 952 |  |             // Since there was at least one transaction in select, we must always find one. | 
| 953 | 0 |             Assume(split_counts.has_value()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(split_counts.has_value()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(split_counts.has_value()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 954 |  |  | 
| 955 |  |             // Add a work item corresponding to exclusion of the split transaction. | 
| 956 | 0 |             const auto& desc = m_sorted_depgraph.Descendants(split); | 
| 957 | 0 |             add_fn(/*inc=*/elem.inc, | 
| 958 | 0 |                    /*und=*/elem.und - desc); | 
| 959 |  |  | 
| 960 |  |             // Add a work item corresponding to inclusion of the split transaction. | 
| 961 | 0 |             const auto anc = m_sorted_depgraph.Ancestors(split) & m_todo; | 
| 962 | 0 |             add_fn(/*inc=*/elem.inc.Add(m_sorted_depgraph, anc), | 
| 963 | 0 |                    /*und=*/elem.und - anc); | 
| 964 |  |  | 
| 965 |  |             // Account for the performed split. | 
| 966 | 0 |             --iterations_left; | 
| 967 | 0 |         }; Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE16FindCandidateSetEyNS_7SetInfoIS3_EEENKUlOZNS4_16FindCandidateSetEyS6_E8WorkItemE_clES8_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16FindCandidateSetEyNS_7SetInfoIS3_EEENKUlOZNS4_16FindCandidateSetEyS6_E8WorkItemE_clES8_Unexecuted instantiation: _ZZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE16FindCandidateSetEyNS_7SetInfoIS3_EEENKUlOZNS4_16FindCandidateSetEyS6_E8WorkItemE_clES8_ | 
| 968 |  |  | 
| 969 |  |         // Work processing loop. | 
| 970 |  |         // | 
| 971 |  |         // New work items are always added at the back of the queue, but items to process use a | 
| 972 |  |         // hybrid approach where they can be taken from the front or the back. | 
| 973 |  |         // | 
| 974 |  |         // Depth-first search (DFS) corresponds to always taking from the back of the queue. This | 
| 975 |  |         // is very memory-efficient (linear in the number of transactions). Breadth-first search | 
| 976 |  |         // (BFS) corresponds to always taking from the front, which potentially uses more memory | 
| 977 |  |         // (up to exponential in the transaction count), but seems to work better in practice. | 
| 978 |  |         // | 
| 979 |  |         // The approach here combines the two: use BFS (plus random swapping) until the queue grows | 
| 980 |  |         // too large, at which point we temporarily switch to DFS until the size shrinks again. | 
| 981 | 0 |         while (!queue.empty()) { | 
| 982 |  |             // Randomly swap the first two items to randomize the search order. | 
| 983 | 0 |             if (queue.size() > 1 && m_rng.randbool()) { | 
| 984 | 0 |                 queue[0].Swap(queue[1]); | 
| 985 | 0 |             } | 
| 986 |  |  | 
| 987 |  |             // Processing the first queue item, and then using DFS for everything it gives rise to, | 
| 988 |  |             // may increase the queue size by the number of undecided elements in there, minus 1 | 
| 989 |  |             // for the first queue item being removed. Thus, only when that pushes the queue over | 
| 990 |  |             // its capacity can we not process from the front (BFS), and should we use DFS. | 
| 991 | 0 |             while (queue.size() - 1 + queue.front().und.Count() > queue.capacity()) { | 
| 992 | 0 |                 if (!iterations_left) break; | 
| 993 | 0 |                 auto elem = queue.back(); | 
| 994 | 0 |                 queue.pop_back(); | 
| 995 | 0 |                 split_fn(std::move(elem)); | 
| 996 | 0 |             } | 
| 997 |  |  | 
| 998 |  |             // Process one entry from the front of the queue (BFS exploration) | 
| 999 | 0 |             if (!iterations_left) break; | 
| 1000 | 0 |             auto elem = queue.front(); | 
| 1001 | 0 |             queue.pop_front(); | 
| 1002 | 0 |             split_fn(std::move(elem)); | 
| 1003 | 0 |         } | 
| 1004 |  |  | 
| 1005 |  |         // Return the found best set (converted to the original transaction indices), and the | 
| 1006 |  |         // number of iterations performed. | 
| 1007 | 0 |         best.transactions = SortedToOriginal(best.transactions); | 
| 1008 | 0 |         return {std::move(best), max_iterations - iterations_left}; | 
| 1009 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE16FindCandidateSetEyNS_7SetInfoIS3_EEUnexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE16FindCandidateSetEyNS_7SetInfoIS3_EEUnexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE16FindCandidateSetEyNS_7SetInfoIS3_EE | 
| 1010 |  |  | 
| 1011 |  |     /** Remove a subset of transactions from the cluster being linearized. | 
| 1012 |  |      * | 
| 1013 |  |      * Complexity: O(N) where N=done.Count(). | 
| 1014 |  |      */ | 
| 1015 |  |     void MarkDone(const SetType& done) noexcept | 
| 1016 | 0 |     { | 
| 1017 | 0 |         const auto done_sorted = OriginalToSorted(done); | 
| 1018 | 0 |         Assume(done_sorted.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(done_sorted.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(done_sorted.Any()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1019 | 0 |         Assume(done_sorted.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(done_sorted.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(done_sorted.IsSubsetOf(m_todo)); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1020 | 0 |         m_todo -= done_sorted; | 
| 1021 | 0 |     } Unexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetIjEEE8MarkDoneERKS3_Unexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail14MultiIntBitSetImLj2EEEE8MarkDoneERKS3_Unexecuted instantiation: _ZN17cluster_linearize21SearchCandidateFinderIN13bitset_detail9IntBitSetImEEE8MarkDoneERKS3_ | 
| 1022 |  | }; | 
| 1023 |  |  | 
| 1024 |  | /** Find or improve a linearization for a cluster. | 
| 1025 |  |  * | 
| 1026 |  |  * @param[in] depgraph            Dependency graph of the cluster to be linearized. | 
| 1027 |  |  * @param[in] max_iterations      Upper bound on the number of optimization steps that will be done. | 
| 1028 |  |  * @param[in] rng_seed            A random number seed to control search order. This prevents peers | 
| 1029 |  |  *                                from predicting exactly which clusters would be hard for us to | 
| 1030 |  |  *                                linearize. | 
| 1031 |  |  * @param[in] old_linearization   An existing linearization for the cluster (which must be | 
| 1032 |  |  *                                topologically valid), or empty. | 
| 1033 |  |  * @return                        A tuple of: | 
| 1034 |  |  *                                - The resulting linearization. It is guaranteed to be at least as | 
| 1035 |  |  *                                  good (in the feerate diagram sense) as old_linearization. | 
| 1036 |  |  *                                - A boolean indicating whether the result is guaranteed to be | 
| 1037 |  |  *                                  optimal. | 
| 1038 |  |  *                                - How many optimization steps were actually performed. | 
| 1039 |  |  * | 
| 1040 |  |  * Complexity: possibly O(N * min(max_iterations + N, sqrt(2^N))) where N=depgraph.TxCount(). | 
| 1041 |  |  */ | 
| 1042 |  | template<typename SetType> | 
| 1043 |  | std::tuple<std::vector<DepGraphIndex>, bool, uint64_t> Linearize(const DepGraph<SetType>& depgraph, uint64_t max_iterations, uint64_t rng_seed, std::span<const DepGraphIndex> old_linearization = {}) noexcept | 
| 1044 | 0 | { | 
| 1045 | 0 |     Assume(old_linearization.empty() || old_linearization.size() == depgraph.TxCount()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |     Assume(old_linearization.empty() || old_linearization.size() == depgraph.TxCount()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |     Assume(old_linearization.empty() || old_linearization.size() == depgraph.TxCount()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1046 | 0 |     if (depgraph.TxCount() == 0) return {{}, true, 0}; | 
| 1047 |  |  | 
| 1048 | 0 |     uint64_t iterations_left = max_iterations; | 
| 1049 | 0 |     std::vector<DepGraphIndex> linearization; | 
| 1050 |  | 
 | 
| 1051 | 0 |     AncestorCandidateFinder anc_finder(depgraph); | 
| 1052 | 0 |     std::optional<SearchCandidateFinder<SetType>> src_finder; | 
| 1053 | 0 |     linearization.reserve(depgraph.TxCount()); | 
| 1054 | 0 |     bool optimal = true; | 
| 1055 |  |  | 
| 1056 |  |     // Treat the initialization of SearchCandidateFinder as taking N^2/64 (rounded up) iterations | 
| 1057 |  |     // (largely due to the cost of constructing the internal sorted-by-feerate DepGraph inside | 
| 1058 |  |     // SearchCandidateFinder), a rough approximation based on benchmark. If we don't have that | 
| 1059 |  |     // many, don't start it. | 
| 1060 | 0 |     uint64_t start_iterations = (uint64_t{depgraph.TxCount()} * depgraph.TxCount() + 63) / 64; | 
| 1061 | 0 |     if (iterations_left > start_iterations) { | 
| 1062 | 0 |         iterations_left -= start_iterations; | 
| 1063 | 0 |         src_finder.emplace(depgraph, rng_seed); | 
| 1064 | 0 |     } | 
| 1065 |  |  | 
| 1066 |  |     /** Chunking of what remains of the old linearization. */ | 
| 1067 | 0 |     LinearizationChunking old_chunking(depgraph, old_linearization); | 
| 1068 |  | 
 | 
| 1069 | 0 |     while (true) { | 
| 1070 |  |         // Find the highest-feerate prefix of the remainder of old_linearization. | 
| 1071 | 0 |         SetInfo<SetType> best_prefix; | 
| 1072 | 0 |         if (old_chunking.NumChunksLeft()) best_prefix = old_chunking.GetChunk(0); | 
| 1073 |  |  | 
| 1074 |  |         // Then initialize best to be either the best remaining ancestor set, or the first chunk. | 
| 1075 | 0 |         auto best = anc_finder.FindCandidateSet(); | 
| 1076 | 0 |         if (!best_prefix.feerate.IsEmpty() && best_prefix.feerate >= best.feerate) best = best_prefix; | 
| 1077 |  | 
 | 
| 1078 | 0 |         uint64_t iterations_done_now = 0; | 
| 1079 | 0 |         uint64_t max_iterations_now = 0; | 
| 1080 | 0 |         if (src_finder) { | 
| 1081 |  |             // Treat the invocation of SearchCandidateFinder::FindCandidateSet() as costing N/4 | 
| 1082 |  |             // up-front (rounded up) iterations (largely due to the cost of connected-component | 
| 1083 |  |             // splitting), a rough approximation based on benchmarks. | 
| 1084 | 0 |             uint64_t base_iterations = (anc_finder.NumRemaining() + 3) / 4; | 
| 1085 | 0 |             if (iterations_left > base_iterations) { | 
| 1086 |  |                 // Invoke bounded search to update best, with up to half of our remaining | 
| 1087 |  |                 // iterations as limit. | 
| 1088 | 0 |                 iterations_left -= base_iterations; | 
| 1089 | 0 |                 max_iterations_now = (iterations_left + 1) / 2; | 
| 1090 | 0 |                 std::tie(best, iterations_done_now) = src_finder->FindCandidateSet(max_iterations_now, best); | 
| 1091 | 0 |                 iterations_left -= iterations_done_now; | 
| 1092 | 0 |             } | 
| 1093 | 0 |         } | 
| 1094 |  | 
 | 
| 1095 | 0 |         if (iterations_done_now == max_iterations_now) { | 
| 1096 | 0 |             optimal = false; | 
| 1097 |  |             // If the search result is not (guaranteed to be) optimal, run intersections to make | 
| 1098 |  |             // sure we don't pick something that makes us unable to reach further diagram points | 
| 1099 |  |             // of the old linearization. | 
| 1100 | 0 |             if (old_chunking.NumChunksLeft() > 0) { | 
| 1101 | 0 |                 best = old_chunking.IntersectPrefixes(best); | 
| 1102 | 0 |             } | 
| 1103 | 0 |         } | 
| 1104 |  |  | 
| 1105 |  |         // Add to output in topological order. | 
| 1106 | 0 |         depgraph.AppendTopo(linearization, best.transactions); | 
| 1107 |  |  | 
| 1108 |  |         // Update state to reflect best is no longer to be linearized. | 
| 1109 | 0 |         anc_finder.MarkDone(best.transactions); | 
| 1110 | 0 |         if (anc_finder.AllDone()) break; | 
| 1111 | 0 |         if (src_finder) src_finder->MarkDone(best.transactions); | 
| 1112 | 0 |         if (old_chunking.NumChunksLeft() > 0) { | 
| 1113 | 0 |             old_chunking.MarkDone(best.transactions); | 
| 1114 | 0 |         } | 
| 1115 | 0 |     } | 
| 1116 |  | 
 | 
| 1117 | 0 |     return {std::move(linearization), optimal, max_iterations - iterations_left}; | 
| 1118 | 0 | } Unexecuted instantiation: _ZN17cluster_linearize9LinearizeIN13bitset_detail9IntBitSetIjEEEENSt3__15tupleIJNS4_6vectorIjNS4_9allocatorIjEEEEbyEEERKNS_8DepGraphIT_EEyyNS4_4spanIKjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize9LinearizeIN13bitset_detail14MultiIntBitSetImLj2EEEEENSt3__15tupleIJNS4_6vectorIjNS4_9allocatorIjEEEEbyEEERKNS_8DepGraphIT_EEyyNS4_4spanIKjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize9LinearizeIN13bitset_detail9IntBitSetImEEEENSt3__15tupleIJNS4_6vectorIjNS4_9allocatorIjEEEEbyEEERKNS_8DepGraphIT_EEyyNS4_4spanIKjLm18446744073709551615EEE | 
| 1119 |  |  | 
| 1120 |  | /** Improve a given linearization. | 
| 1121 |  |  * | 
| 1122 |  |  * @param[in]     depgraph       Dependency graph of the cluster being linearized. | 
| 1123 |  |  * @param[in,out] linearization  On input, an existing linearization for depgraph. On output, a | 
| 1124 |  |  *                               potentially better linearization for the same graph. | 
| 1125 |  |  * | 
| 1126 |  |  * Postlinearization guarantees: | 
| 1127 |  |  * - The resulting chunks are connected. | 
| 1128 |  |  * - If the input has a tree shape (either all transactions have at most one child, or all | 
| 1129 |  |  *   transactions have at most one parent), the result is optimal. | 
| 1130 |  |  * - Given a linearization L1 and a leaf transaction T in it. Let L2 be L1 with T moved to the end, | 
| 1131 |  |  *   optionally with its fee increased. Let L3 be the postlinearization of L2. L3 will be at least | 
| 1132 |  |  *   as good as L1. This means that replacing transactions with same-size higher-fee transactions | 
| 1133 |  |  *   will not worsen linearizations through a "drop conflicts, append new transactions, | 
| 1134 |  |  *   postlinearize" process. | 
| 1135 |  |  */ | 
| 1136 |  | template<typename SetType> | 
| 1137 |  | void PostLinearize(const DepGraph<SetType>& depgraph, std::span<DepGraphIndex> linearization) | 
| 1138 | 0 | { | 
| 1139 |  |     // This algorithm performs a number of passes (currently 2); the even ones operate from back to | 
| 1140 |  |     // front, the odd ones from front to back. Each results in an equal-or-better linearization | 
| 1141 |  |     // than the one started from. | 
| 1142 |  |     // - One pass in either direction guarantees that the resulting chunks are connected. | 
| 1143 |  |     // - Each direction corresponds to one shape of tree being linearized optimally (forward passes | 
| 1144 |  |     //   guarantee this for graphs where each transaction has at most one child; backward passes | 
| 1145 |  |     //   guarantee this for graphs where each transaction has at most one parent). | 
| 1146 |  |     // - Starting with a backward pass guarantees the moved-tree property. | 
| 1147 |  |     // | 
| 1148 |  |     // During an odd (forward) pass, the high-level operation is: | 
| 1149 |  |     // - Start with an empty list of groups L=[]. | 
| 1150 |  |     // - For every transaction i in the old linearization, from front to back: | 
| 1151 |  |     //   - Append a new group C=[i], containing just i, to the back of L. | 
| 1152 |  |     //   - While L has at least one group before C, and the group immediately before C has feerate | 
| 1153 |  |     //     lower than C: | 
| 1154 |  |     //     - If C depends on P: | 
| 1155 |  |     //       - Merge P into C, making C the concatenation of P+C, continuing with the combined C. | 
| 1156 |  |     //     - Otherwise: | 
| 1157 |  |     //       - Swap P with C, continuing with the now-moved C. | 
| 1158 |  |     // - The output linearization is the concatenation of the groups in L. | 
| 1159 |  |     // | 
| 1160 |  |     // During even (backward) passes, i iterates from the back to the front of the existing | 
| 1161 |  |     // linearization, and new groups are prepended instead of appended to the list L. To enable | 
| 1162 |  |     // more code reuse, both passes append groups, but during even passes the meanings of | 
| 1163 |  |     // parent/child, and of high/low feerate are reversed, and the final concatenation is reversed | 
| 1164 |  |     // on output. | 
| 1165 |  |     // | 
| 1166 |  |     // In the implementation below, the groups are represented by singly-linked lists (pointing | 
| 1167 |  |     // from the back to the front), which are themselves organized in a singly-linked circular | 
| 1168 |  |     // list (each group pointing to its predecessor, with a special sentinel group at the front | 
| 1169 |  |     // that points back to the last group). | 
| 1170 |  |     // | 
| 1171 |  |     // Information about transaction t is stored in entries[t + 1], while the sentinel is in | 
| 1172 |  |     // entries[0]. | 
| 1173 |  |  | 
| 1174 |  |     /** Index of the sentinel in the entries array below. */ | 
| 1175 | 0 |     static constexpr DepGraphIndex SENTINEL{0}; | 
| 1176 |  |     /** Indicator that a group has no previous transaction. */ | 
| 1177 | 0 |     static constexpr DepGraphIndex NO_PREV_TX{0}; | 
| 1178 |  |  | 
| 1179 |  |  | 
| 1180 |  |     /** Data structure per transaction entry. */ | 
| 1181 | 0 |     struct TxEntry | 
| 1182 | 0 |     { | 
| 1183 |  |         /** The index of the previous transaction in this group; NO_PREV_TX if this is the first | 
| 1184 |  |          *  entry of a group. */ | 
| 1185 | 0 |         DepGraphIndex prev_tx; | 
| 1186 |  |  | 
| 1187 |  |         // The fields below are only used for transactions that are the last one in a group | 
| 1188 |  |         // (referred to as tail transactions below). | 
| 1189 |  |  | 
| 1190 |  |         /** Index of the first transaction in this group, possibly itself. */ | 
| 1191 | 0 |         DepGraphIndex first_tx; | 
| 1192 |  |         /** Index of the last transaction in the previous group. The first group (the sentinel) | 
| 1193 |  |          *  points back to the last group here, making it a singly-linked circular list. */ | 
| 1194 | 0 |         DepGraphIndex prev_group; | 
| 1195 |  |         /** All transactions in the group. Empty for the sentinel. */ | 
| 1196 | 0 |         SetType group; | 
| 1197 |  |         /** All dependencies of the group (descendants in even passes; ancestors in odd ones). */ | 
| 1198 | 0 |         SetType deps; | 
| 1199 |  |         /** The combined fee/size of transactions in the group. Fee is negated in even passes. */ | 
| 1200 | 0 |         FeeFrac feerate; | 
| 1201 | 0 |     }; | 
| 1202 |  |  | 
| 1203 |  |     // As an example, consider the state corresponding to the linearization [1,0,3,2], with | 
| 1204 |  |     // groups [1,0,3] and [2], in an odd pass. The linked lists would be: | 
| 1205 |  |     // | 
| 1206 |  |     //                                        +-----+ | 
| 1207 |  |     //                                 0<-P-- | 0 S | ---\     Legend: | 
| 1208 |  |     //                                        +-----+    | | 
| 1209 |  |     //                                           ^       |     - digit in box: entries index | 
| 1210 |  |     //             /--------------F---------+    G       |       (note: one more than tx value) | 
| 1211 |  |     //             v                         \   |       |     - S: sentinel group | 
| 1212 |  |     //          +-----+        +-----+        +-----+    |          (empty feerate) | 
| 1213 |  |     //   0<-P-- | 2   | <--P-- | 1   | <--P-- | 4 T |    |     - T: tail transaction, contains | 
| 1214 |  |     //          +-----+        +-----+        +-----+    |          fields beyond prev_tv. | 
| 1215 |  |     //                                           ^       |     - P: prev_tx reference | 
| 1216 |  |     //                                           G       G     - F: first_tx reference | 
| 1217 |  |     //                                           |       |     - G: prev_group reference | 
| 1218 |  |     //                                        +-----+    | | 
| 1219 |  |     //                                 0<-P-- | 3 T | <--/ | 
| 1220 |  |     //                                        +-----+ | 
| 1221 |  |     //                                         ^   | | 
| 1222 |  |     //                                         \-F-/ | 
| 1223 |  |     // | 
| 1224 |  |     // During an even pass, the diagram above would correspond to linearization [2,3,0,1], with | 
| 1225 |  |     // groups [2] and [3,0,1]. | 
| 1226 |  | 
 | 
| 1227 | 0 |     std::vector<TxEntry> entries(depgraph.PositionRange() + 1); | 
| 1228 |  |  | 
| 1229 |  |     // Perform two passes over the linearization. | 
| 1230 | 0 |     for (int pass = 0; pass < 2; ++pass) { | 
| 1231 | 0 |         int rev = !(pass & 1); | 
| 1232 |  |         // Construct a sentinel group, identifying the start of the list. | 
| 1233 | 0 |         entries[SENTINEL].prev_group = SENTINEL; | 
| 1234 | 0 |         Assume(entries[SENTINEL].feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(entries[SENTINEL].feerate.IsEmpty()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1235 |  |  | 
| 1236 |  |         // Iterate over all elements in the existing linearization. | 
| 1237 | 0 |         for (DepGraphIndex i = 0; i < linearization.size(); ++i) { | 
| 1238 |  |             // Even passes are from back to front; odd passes from front to back. | 
| 1239 | 0 |             DepGraphIndex idx = linearization[rev ? linearization.size() - 1 - i : i]; | 
| 1240 |  |             // Construct a new group containing just idx. In even passes, the meaning of | 
| 1241 |  |             // parent/child and high/low feerate are swapped. | 
| 1242 | 0 |             DepGraphIndex cur_group = idx + 1; | 
| 1243 | 0 |             entries[cur_group].group = SetType::Singleton(idx); | 
| 1244 | 0 |             entries[cur_group].deps = rev ? depgraph.Descendants(idx): depgraph.Ancestors(idx); | 
| 1245 | 0 |             entries[cur_group].feerate = depgraph.FeeRate(idx); | 
| 1246 | 0 |             if (rev) entries[cur_group].feerate.fee = -entries[cur_group].feerate.fee; | 
| 1247 | 0 |             entries[cur_group].prev_tx = NO_PREV_TX; // No previous transaction in group. | 
| 1248 | 0 |             entries[cur_group].first_tx = cur_group; // Transaction itself is first of group. | 
| 1249 |  |             // Insert the new group at the back of the groups linked list. | 
| 1250 | 0 |             entries[cur_group].prev_group = entries[SENTINEL].prev_group; | 
| 1251 | 0 |             entries[SENTINEL].prev_group = cur_group; | 
| 1252 |  |  | 
| 1253 |  |             // Start merge/swap cycle. | 
| 1254 | 0 |             DepGraphIndex next_group = SENTINEL; // We inserted at the end, so next group is sentinel. | 
| 1255 | 0 |             DepGraphIndex prev_group = entries[cur_group].prev_group; | 
| 1256 |  |             // Continue as long as the current group has higher feerate than the previous one. | 
| 1257 | 0 |             while (entries[cur_group].feerate >> entries[prev_group].feerate) { | 
| 1258 |  |                 // prev_group/cur_group/next_group refer to (the last transactions of) 3 | 
| 1259 |  |                 // consecutive entries in groups list. | 
| 1260 | 0 |                 Assume(cur_group == entries[next_group].prev_group); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(cur_group == entries[next_group].prev_group); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1261 | 0 |                 Assume(prev_group == entries[cur_group].prev_group); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(prev_group == entries[cur_group].prev_group); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1262 |  |                 // The sentinel has empty feerate, which is neither higher or lower than other | 
| 1263 |  |                 // feerates. Thus, the while loop we are in here guarantees that cur_group and | 
| 1264 |  |                 // prev_group are not the sentinel. | 
| 1265 | 0 |                 Assume(cur_group != SENTINEL); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(cur_group != SENTINEL); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1266 | 0 |                 Assume(prev_group != SENTINEL); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |                 Assume(prev_group != SENTINEL); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1267 | 0 |                 if (entries[cur_group].deps.Overlaps(entries[prev_group].group)) { | 
| 1268 |  |                     // There is a dependency between cur_group and prev_group; merge prev_group | 
| 1269 |  |                     // into cur_group. The group/deps/feerate fields of prev_group remain unchanged | 
| 1270 |  |                     // but become unused. | 
| 1271 | 0 |                     entries[cur_group].group |= entries[prev_group].group; | 
| 1272 | 0 |                     entries[cur_group].deps |= entries[prev_group].deps; | 
| 1273 | 0 |                     entries[cur_group].feerate += entries[prev_group].feerate; | 
| 1274 |  |                     // Make the first of the current group point to the tail of the previous group. | 
| 1275 | 0 |                     entries[entries[cur_group].first_tx].prev_tx = prev_group; | 
| 1276 |  |                     // The first of the previous group becomes the first of the newly-merged group. | 
| 1277 | 0 |                     entries[cur_group].first_tx = entries[prev_group].first_tx; | 
| 1278 |  |                     // The previous group becomes whatever group was before the former one. | 
| 1279 | 0 |                     prev_group = entries[prev_group].prev_group; | 
| 1280 | 0 |                     entries[cur_group].prev_group = prev_group; | 
| 1281 | 0 |                 } else { | 
| 1282 |  |                     // There is no dependency between cur_group and prev_group; swap them. | 
| 1283 | 0 |                     DepGraphIndex preprev_group = entries[prev_group].prev_group; | 
| 1284 |  |                     // If PP, P, C, N were the old preprev, prev, cur, next groups, then the new | 
| 1285 |  |                     // layout becomes [PP, C, P, N]. Update prev_groups to reflect that order. | 
| 1286 | 0 |                     entries[next_group].prev_group = prev_group; | 
| 1287 | 0 |                     entries[prev_group].prev_group = cur_group; | 
| 1288 | 0 |                     entries[cur_group].prev_group = preprev_group; | 
| 1289 |  |                     // The current group remains the same, but the groups before/after it have | 
| 1290 |  |                     // changed. | 
| 1291 | 0 |                     next_group = prev_group; | 
| 1292 | 0 |                     prev_group = preprev_group; | 
| 1293 | 0 |                 } | 
| 1294 | 0 |             } | 
| 1295 | 0 |         } | 
| 1296 |  |  | 
| 1297 |  |         // Convert the entries back to linearization (overwriting the existing one). | 
| 1298 | 0 |         DepGraphIndex cur_group = entries[0].prev_group; | 
| 1299 | 0 |         DepGraphIndex done = 0; | 
| 1300 | 0 |         while (cur_group != SENTINEL) { | 
| 1301 | 0 |             DepGraphIndex cur_tx = cur_group; | 
| 1302 |  |             // Traverse the transactions of cur_group (from back to front), and write them in the | 
| 1303 |  |             // same order during odd passes, and reversed (front to back) in even passes. | 
| 1304 | 0 |             if (rev) { | 
| 1305 | 0 |                 do { | 
| 1306 | 0 |                     *(linearization.begin() + (done++)) = cur_tx - 1; | 
| 1307 | 0 |                     cur_tx = entries[cur_tx].prev_tx; | 
| 1308 | 0 |                 } while (cur_tx != NO_PREV_TX); | 
| 1309 | 0 |             } else { | 
| 1310 | 0 |                 do { | 
| 1311 | 0 |                     *(linearization.end() - (++done)) = cur_tx - 1; | 
| 1312 | 0 |                     cur_tx = entries[cur_tx].prev_tx; | 
| 1313 | 0 |                 } while (cur_tx != NO_PREV_TX); | 
| 1314 | 0 |             } | 
| 1315 | 0 |             cur_group = entries[cur_group].prev_group; | 
| 1316 | 0 |         } | 
| 1317 | 0 |         Assume(done == linearization.size()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |         Assume(done == linearization.size()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1318 | 0 |     } | 
| 1319 | 0 | } Unexecuted instantiation: _ZN17cluster_linearize13PostLinearizeIN13bitset_detail9IntBitSetIjEEEEvRKNS_8DepGraphIT_EENSt3__14spanIjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize13PostLinearizeIN13bitset_detail9IntBitSetImEEEEvRKNS_8DepGraphIT_EENSt3__14spanIjLm18446744073709551615EEE | 
| 1320 |  |  | 
| 1321 |  | /** Merge two linearizations for the same cluster into one that is as good as both. | 
| 1322 |  |  * | 
| 1323 |  |  * Complexity: O(N^2) where N=depgraph.TxCount(); O(N) if both inputs are identical. | 
| 1324 |  |  */ | 
| 1325 |  | template<typename SetType> | 
| 1326 |  | std::vector<DepGraphIndex> MergeLinearizations(const DepGraph<SetType>& depgraph, std::span<const DepGraphIndex> lin1, std::span<const DepGraphIndex> lin2) | 
| 1327 | 0 | { | 
| 1328 | 0 |     Assume(lin1.size() == depgraph.TxCount()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1329 | 0 |     Assume(lin2.size() == depgraph.TxCount()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1330 |  |  | 
| 1331 |  |     /** Chunkings of what remains of both input linearizations. */ | 
| 1332 | 0 |     LinearizationChunking chunking1(depgraph, lin1), chunking2(depgraph, lin2); | 
| 1333 |  |     /** Output linearization. */ | 
| 1334 | 0 |     std::vector<DepGraphIndex> ret; | 
| 1335 | 0 |     if (depgraph.TxCount() == 0) return ret; | 
| 1336 | 0 |     ret.reserve(depgraph.TxCount()); | 
| 1337 |  | 
 | 
| 1338 | 0 |     while (true) { | 
| 1339 |  |         // As long as we are not done, both linearizations must have chunks left. | 
| 1340 | 0 |         Assume(chunking1.NumChunksLeft() > 0); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1341 | 0 |         Assume(chunking2.NumChunksLeft() > 0); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1342 |  |         // Find the set to output by taking the best remaining chunk, and then intersecting it with | 
| 1343 |  |         // prefixes of remaining chunks of the other linearization. | 
| 1344 | 0 |         SetInfo<SetType> best; | 
| 1345 | 0 |         const auto& lin1_firstchunk = chunking1.GetChunk(0); | 
| 1346 | 0 |         const auto& lin2_firstchunk = chunking2.GetChunk(0); | 
| 1347 | 0 |         if (lin2_firstchunk.feerate >> lin1_firstchunk.feerate) { | 
| 1348 | 0 |             best = chunking1.IntersectPrefixes(lin2_firstchunk); | 
| 1349 | 0 |         } else { | 
| 1350 | 0 |             best = chunking2.IntersectPrefixes(lin1_firstchunk); | 
| 1351 | 0 |         } | 
| 1352 |  |         // Append the result to the output and mark it as done. | 
| 1353 | 0 |         depgraph.AppendTopo(ret, best.transactions); | 
| 1354 | 0 |         chunking1.MarkDone(best.transactions); | 
| 1355 | 0 |         if (chunking1.NumChunksLeft() == 0) break; | 
| 1356 | 0 |         chunking2.MarkDone(best.transactions); | 
| 1357 | 0 |     } | 
| 1358 |  | 
 | 
| 1359 | 0 |     Assume(ret.size() == depgraph.TxCount()); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1360 | 0 |     return ret; | 
| 1361 | 0 | } | 
| 1362 |  |  | 
| 1363 |  | /** Make linearization topological, retaining its ordering where possible. */ | 
| 1364 |  | template<typename SetType> | 
| 1365 |  | void FixLinearization(const DepGraph<SetType>& depgraph, std::span<DepGraphIndex> linearization) noexcept | 
| 1366 | 0 | { | 
| 1367 |  |     // This algorithm can be summarized as moving every element in the linearization backwards | 
| 1368 |  |     // until it is placed after all its ancestors. | 
| 1369 | 0 |     SetType done; | 
| 1370 | 0 |     const auto len = linearization.size(); | 
| 1371 |  |     // Iterate over the elements of linearization from back to front (i is distance from back). | 
| 1372 | 0 |     for (DepGraphIndex i = 0; i < len; ++i) { | 
| 1373 |  |         /** The element at that position. */ | 
| 1374 | 0 |         DepGraphIndex elem = linearization[len - 1 - i]; | 
| 1375 |  |         /** j represents how far from the back of the linearization elem should be placed. */ | 
| 1376 | 0 |         DepGraphIndex j = i; | 
| 1377 |  |         // Figure out which elements need to be moved before elem. | 
| 1378 | 0 |         SetType place_before = done & depgraph.Ancestors(elem); | 
| 1379 |  |         // Find which position to place elem in (updating j), continuously moving the elements | 
| 1380 |  |         // in between forward. | 
| 1381 | 0 |         while (place_before.Any()) { | 
| 1382 |  |             // j cannot be 0 here; if it was, then there was necessarily nothing earlier which | 
| 1383 |  |             // elem needs to be placed before anymore, and place_before would be empty. | 
| 1384 | 0 |             Assume(j > 0); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 |             Assume(j > 0); | Line | Count | Source |  | 118 | 0 | #define Assume(val) inline_assertion_check<false>(val, __FILE__, __LINE__, __func__, #val) | 
 | 
| 1385 | 0 |             auto to_swap = linearization[len - 1 - (j - 1)]; | 
| 1386 | 0 |             place_before.Reset(to_swap); | 
| 1387 | 0 |             linearization[len - 1 - (j--)] = to_swap; | 
| 1388 | 0 |         } | 
| 1389 |  |         // Put elem in its final position and mark it as done. | 
| 1390 | 0 |         linearization[len - 1 - j] = elem; | 
| 1391 | 0 |         done.Set(elem); | 
| 1392 | 0 |     } | 
| 1393 | 0 | } Unexecuted instantiation: _ZN17cluster_linearize16FixLinearizationIN13bitset_detail9IntBitSetIjEEEEvRKNS_8DepGraphIT_EENSt3__14spanIjLm18446744073709551615EEEUnexecuted instantiation: _ZN17cluster_linearize16FixLinearizationIN13bitset_detail9IntBitSetImEEEEvRKNS_8DepGraphIT_EENSt3__14spanIjLm18446744073709551615EEE | 
| 1394 |  |  | 
| 1395 |  | } // namespace cluster_linearize | 
| 1396 |  |  | 
| 1397 |  | #endif // BITCOIN_CLUSTER_LINEARIZE_H |