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Merge #12118: Sort mempool by min(feerate, ancestor_feerate)
0a22a52
Use mempool's ancestor sort in transaction selection (Suhas Daftuar)7abfa53
Add test for new ancestor feerate sort behavior (Suhas Daftuar)9a51319
Sort mempool by min(feerate, ancestor_feerate) (Suhas Daftuar)6773f92
Refactor CompareTxMemPoolEntryByDescendantScore (Suhas Daftuar) Pull request description: This more closely approximates the desirability of a given transaction for mining, and should result in less re-sorting when transactions get removed from the mempool after being mined. I measured this as approximately a 5% speedup in removeForBlock. Tree-SHA512: ffa36b567c5dfe3e8908c545a459b6a5ec0de26e7dc81b1050dd235cac9046564b4409a3f8c5ba97bd8b30526e8fec8f78480a912e317979467f32305c3dd37b
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@ -410,7 +410,7 @@ void BlockAssembler::addPackageTxs(int &nPackagesSelected, int &nDescendantsUpda
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// Try to compare the mapTx entry to the mapModifiedTx entry
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iter = mempool.mapTx.project<0>(mi);
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if (modit != mapModifiedTx.get<ancestor_score>().end() &&
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CompareModifiedEntry()(*modit, CTxMemPoolModifiedEntry(iter))) {
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CompareTxMemPoolEntryByAncestorFee()(*modit, CTxMemPoolModifiedEntry(iter))) {
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// The best entry in mapModifiedTx has higher score
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// than the one from mapTx.
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// Switch which transaction (package) to consider
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23
src/miner.h
23
src/miner.h
@ -44,6 +44,12 @@ struct CTxMemPoolModifiedEntry {
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nSigOpCountWithAncestors = entry->GetSigOpCountWithAncestors();
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}
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int64_t GetModifiedFee() const { return iter->GetModifiedFee(); }
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uint64_t GetSizeWithAncestors() const { return nSizeWithAncestors; }
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CAmount GetModFeesWithAncestors() const { return nModFeesWithAncestors; }
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size_t GetTxSize() const { return iter->GetTxSize(); }
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const CTransaction& GetTx() const { return iter->GetTx(); }
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CTxMemPool::txiter iter;
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uint64_t nSizeWithAncestors;
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CAmount nModFeesWithAncestors;
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@ -70,21 +76,6 @@ struct modifiedentry_iter {
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}
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};
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// This matches the calculation in CompareTxMemPoolEntryByAncestorFee,
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// except operating on CTxMemPoolModifiedEntry.
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// TODO: refactor to avoid duplication of this logic.
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struct CompareModifiedEntry {
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bool operator()(const CTxMemPoolModifiedEntry &a, const CTxMemPoolModifiedEntry &b) const
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{
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double f1 = (double)a.nModFeesWithAncestors * b.nSizeWithAncestors;
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double f2 = (double)b.nModFeesWithAncestors * a.nSizeWithAncestors;
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if (f1 == f2) {
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return CTxMemPool::CompareIteratorByHash()(a.iter, b.iter);
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}
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return f1 > f2;
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}
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};
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// A comparator that sorts transactions based on number of ancestors.
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// This is sufficient to sort an ancestor package in an order that is valid
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// to appear in a block.
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@ -109,7 +100,7 @@ typedef boost::multi_index_container<
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// Reuse same tag from CTxMemPool's similar index
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boost::multi_index::tag<ancestor_score>,
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boost::multi_index::identity<CTxMemPoolModifiedEntry>,
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CompareModifiedEntry
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CompareTxMemPoolEntryByAncestorFee
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>
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>
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> indexed_modified_transaction_set;
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@ -397,6 +397,23 @@ BOOST_AUTO_TEST_CASE(MempoolAncestorIndexingTest)
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sortedOrder.erase(sortedOrder.end()-2);
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sortedOrder.insert(sortedOrder.begin(), tx7.GetHash().ToString());
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CheckSort<ancestor_score>(pool, sortedOrder);
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// High-fee parent, low-fee child
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// tx7 -> tx8
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CMutableTransaction tx8 = CMutableTransaction();
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tx8.vin.resize(1);
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tx8.vin[0].prevout = COutPoint(tx7.GetHash(), 0);
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tx8.vin[0].scriptSig = CScript() << OP_11;
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tx8.vout.resize(1);
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tx8.vout[0].scriptPubKey = CScript() << OP_11 << OP_EQUAL;
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tx8.vout[0].nValue = 10*COIN;
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// Check that we sort by min(feerate, ancestor_feerate):
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// set the fee so that the ancestor feerate is above tx1/5,
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// but the transaction's own feerate is lower
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pool.addUnchecked(tx8.GetHash(), entry.Fee(5000LL).FromTx(tx8));
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sortedOrder.insert(sortedOrder.end()-1, tx8.GetHash().ToString());
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CheckSort<ancestor_score>(pool, sortedOrder);
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}
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@ -214,18 +214,14 @@ class CompareTxMemPoolEntryByDescendantScore
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public:
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bool operator()(const CTxMemPoolEntry& a, const CTxMemPoolEntry& b) const
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{
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bool fUseADescendants = UseDescendantScore(a);
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bool fUseBDescendants = UseDescendantScore(b);
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double a_mod_fee, a_size, b_mod_fee, b_size;
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double aModFee = fUseADescendants ? a.GetModFeesWithDescendants() : a.GetModifiedFee();
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double aSize = fUseADescendants ? a.GetSizeWithDescendants() : a.GetTxSize();
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double bModFee = fUseBDescendants ? b.GetModFeesWithDescendants() : b.GetModifiedFee();
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double bSize = fUseBDescendants ? b.GetSizeWithDescendants() : b.GetTxSize();
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GetModFeeAndSize(a, a_mod_fee, a_size);
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GetModFeeAndSize(b, b_mod_fee, b_size);
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// Avoid division by rewriting (a/b > c/d) as (a*d > c*b).
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double f1 = aModFee * bSize;
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double f2 = aSize * bModFee;
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double f1 = a_mod_fee * b_size;
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double f2 = a_size * b_mod_fee;
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if (f1 == f2) {
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return a.GetTime() >= b.GetTime();
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@ -233,12 +229,21 @@ public:
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return f1 < f2;
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}
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// Calculate which score to use for an entry (avoiding division).
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bool UseDescendantScore(const CTxMemPoolEntry &a) const
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// Return the fee/size we're using for sorting this entry.
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void GetModFeeAndSize(const CTxMemPoolEntry &a, double &mod_fee, double &size) const
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{
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// Compare feerate with descendants to feerate of the transaction, and
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// return the fee/size for the max.
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double f1 = (double)a.GetModifiedFee() * a.GetSizeWithDescendants();
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double f2 = (double)a.GetModFeesWithDescendants() * a.GetTxSize();
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return f2 > f1;
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if (f2 > f1) {
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mod_fee = a.GetModFeesWithDescendants();
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size = a.GetSizeWithDescendants();
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} else {
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mod_fee = a.GetModifiedFee();
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size = a.GetTxSize();
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}
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}
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};
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@ -269,27 +274,48 @@ public:
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}
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};
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/** \class CompareTxMemPoolEntryByAncestorScore
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*
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* Sort an entry by min(score/size of entry's tx, score/size with all ancestors).
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*/
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class CompareTxMemPoolEntryByAncestorFee
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{
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public:
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bool operator()(const CTxMemPoolEntry& a, const CTxMemPoolEntry& b) const
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template<typename T>
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bool operator()(const T& a, const T& b) const
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{
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double aFees = a.GetModFeesWithAncestors();
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double aSize = a.GetSizeWithAncestors();
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double a_mod_fee, a_size, b_mod_fee, b_size;
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double bFees = b.GetModFeesWithAncestors();
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double bSize = b.GetSizeWithAncestors();
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GetModFeeAndSize(a, a_mod_fee, a_size);
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GetModFeeAndSize(b, b_mod_fee, b_size);
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// Avoid division by rewriting (a/b > c/d) as (a*d > c*b).
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double f1 = aFees * bSize;
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double f2 = aSize * bFees;
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double f1 = a_mod_fee * b_size;
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double f2 = a_size * b_mod_fee;
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if (f1 == f2) {
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return a.GetTx().GetHash() < b.GetTx().GetHash();
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}
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return f1 > f2;
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}
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// Return the fee/size we're using for sorting this entry.
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template <typename T>
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void GetModFeeAndSize(const T &a, double &mod_fee, double &size) const
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{
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// Compare feerate with ancestors to feerate of the transaction, and
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// return the fee/size for the min.
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double f1 = (double)a.GetModifiedFee() * a.GetSizeWithAncestors();
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double f2 = (double)a.GetModFeesWithAncestors() * a.GetTxSize();
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if (f1 > f2) {
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mod_fee = a.GetModFeesWithAncestors();
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size = a.GetSizeWithAncestors();
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} else {
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mod_fee = a.GetModifiedFee();
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size = a.GetTxSize();
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}
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}
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};
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// Multi_index tag names
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