Bitcoin Core 28.0.0
P2P Digital Currency
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miner.cpp
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1// Copyright (c) 2009-2010 Satoshi Nakamoto
2// Copyright (c) 2009-2022 The Bitcoin Core developers
3// Distributed under the MIT software license, see the accompanying
4// file COPYING or http://www.opensource.org/licenses/mit-license.php.
5
6#include <node/miner.h>
7
8#include <chain.h>
9#include <chainparams.h>
10#include <coins.h>
11#include <common/args.h>
12#include <consensus/amount.h>
13#include <consensus/consensus.h>
14#include <consensus/merkle.h>
15#include <consensus/tx_verify.h>
17#include <deploymentstatus.h>
18#include <logging.h>
19#include <policy/feerate.h>
20#include <policy/policy.h>
21#include <pow.h>
23#include <util/moneystr.h>
24#include <util/time.h>
25#include <validation.h>
26
27#include <algorithm>
28#include <utility>
29
30namespace node {
31int64_t UpdateTime(CBlockHeader* pblock, const Consensus::Params& consensusParams, const CBlockIndex* pindexPrev)
32{
33 int64_t nOldTime = pblock->nTime;
34 int64_t nNewTime{std::max<int64_t>(pindexPrev->GetMedianTimePast() + 1, TicksSinceEpoch<std::chrono::seconds>(NodeClock::now()))};
35
36 if (consensusParams.enforce_BIP94) {
37 // Height of block to be mined.
38 const int height{pindexPrev->nHeight + 1};
39 if (height % consensusParams.DifficultyAdjustmentInterval() == 0) {
40 nNewTime = std::max<int64_t>(nNewTime, pindexPrev->GetBlockTime() - MAX_TIMEWARP);
41 }
42 }
43
44 if (nOldTime < nNewTime) {
45 pblock->nTime = nNewTime;
46 }
47
48 // Updating time can change work required on testnet:
49 if (consensusParams.fPowAllowMinDifficultyBlocks) {
50 pblock->nBits = GetNextWorkRequired(pindexPrev, pblock, consensusParams);
51 }
52
53 return nNewTime - nOldTime;
54}
55
57{
58 CMutableTransaction tx{*block.vtx.at(0)};
59 tx.vout.erase(tx.vout.begin() + GetWitnessCommitmentIndex(block));
60 block.vtx.at(0) = MakeTransactionRef(tx);
61
62 const CBlockIndex* prev_block = WITH_LOCK(::cs_main, return chainman.m_blockman.LookupBlockIndex(block.hashPrevBlock));
63 chainman.GenerateCoinbaseCommitment(block, prev_block);
64
65 block.hashMerkleRoot = BlockMerkleRoot(block);
66}
67
69{
72 // Limit weight to between coinbase_max_additional_weight and DEFAULT_BLOCK_MAX_WEIGHT for sanity:
73 // Coinbase (reserved) outputs can safely exceed -blockmaxweight, but the rest of the block template will be empty.
74 options.nBlockMaxWeight = std::clamp<size_t>(options.nBlockMaxWeight, options.coinbase_max_additional_weight, DEFAULT_BLOCK_MAX_WEIGHT);
75 return options;
76}
77
78BlockAssembler::BlockAssembler(Chainstate& chainstate, const CTxMemPool* mempool, const Options& options)
79 : chainparams{chainstate.m_chainman.GetParams()},
80 m_mempool{options.use_mempool ? mempool : nullptr},
81 m_chainstate{chainstate},
82 m_options{ClampOptions(options)}
83{
84}
85
87{
88 // Block resource limits
89 options.nBlockMaxWeight = args.GetIntArg("-blockmaxweight", options.nBlockMaxWeight);
90 if (const auto blockmintxfee{args.GetArg("-blockmintxfee")}) {
91 if (const auto parsed{ParseMoney(*blockmintxfee)}) options.blockMinFeeRate = CFeeRate{*parsed};
92 }
93 options.print_modified_fee = args.GetBoolArg("-printpriority", options.print_modified_fee);
94}
95
96void BlockAssembler::resetBlock()
97{
98 inBlock.clear();
99
100 // Reserve space for coinbase tx
101 nBlockWeight = m_options.coinbase_max_additional_weight;
102 nBlockSigOpsCost = m_options.coinbase_output_max_additional_sigops;
103
104 // These counters do not include coinbase tx
105 nBlockTx = 0;
106 nFees = 0;
107}
108
109std::unique_ptr<CBlockTemplate> BlockAssembler::CreateNewBlock(const CScript& scriptPubKeyIn)
110{
111 const auto time_start{SteadyClock::now()};
112
113 resetBlock();
114
115 pblocktemplate.reset(new CBlockTemplate());
116
117 if (!pblocktemplate.get()) {
118 return nullptr;
119 }
120 CBlock* const pblock = &pblocktemplate->block; // pointer for convenience
121
122 // Add dummy coinbase tx as first transaction
123 pblock->vtx.emplace_back();
124 pblocktemplate->vTxFees.push_back(-1); // updated at end
125 pblocktemplate->vTxSigOpsCost.push_back(-1); // updated at end
126
128 CBlockIndex* pindexPrev = m_chainstate.m_chain.Tip();
129 assert(pindexPrev != nullptr);
130 nHeight = pindexPrev->nHeight + 1;
131
132 pblock->nVersion = m_chainstate.m_chainman.m_versionbitscache.ComputeBlockVersion(pindexPrev, chainparams.GetConsensus());
133 // -regtest only: allow overriding block.nVersion with
134 // -blockversion=N to test forking scenarios
135 if (chainparams.MineBlocksOnDemand()) {
136 pblock->nVersion = gArgs.GetIntArg("-blockversion", pblock->nVersion);
137 }
138
140 m_lock_time_cutoff = pindexPrev->GetMedianTimePast();
141
142 int nPackagesSelected = 0;
143 int nDescendantsUpdated = 0;
144 if (m_mempool) {
145 LOCK(m_mempool->cs);
146 addPackageTxs(*m_mempool, nPackagesSelected, nDescendantsUpdated);
147 }
148
149 const auto time_1{SteadyClock::now()};
150
151 m_last_block_num_txs = nBlockTx;
152 m_last_block_weight = nBlockWeight;
153
154 // Create coinbase transaction.
155 CMutableTransaction coinbaseTx;
156 coinbaseTx.vin.resize(1);
157 coinbaseTx.vin[0].prevout.SetNull();
158 coinbaseTx.vout.resize(1);
159 coinbaseTx.vout[0].scriptPubKey = scriptPubKeyIn;
160 coinbaseTx.vout[0].nValue = nFees + GetBlockSubsidy(nHeight, chainparams.GetConsensus());
161 coinbaseTx.vin[0].scriptSig = CScript() << nHeight << OP_0;
162 pblock->vtx[0] = MakeTransactionRef(std::move(coinbaseTx));
163 pblocktemplate->vchCoinbaseCommitment = m_chainstate.m_chainman.GenerateCoinbaseCommitment(*pblock, pindexPrev);
164 pblocktemplate->vTxFees[0] = -nFees;
165
166 LogPrintf("CreateNewBlock(): block weight: %u txs: %u fees: %ld sigops %d\n", GetBlockWeight(*pblock), nBlockTx, nFees, nBlockSigOpsCost);
167
168 // Fill in header
169 pblock->hashPrevBlock = pindexPrev->GetBlockHash();
170 UpdateTime(pblock, chainparams.GetConsensus(), pindexPrev);
171 pblock->nBits = GetNextWorkRequired(pindexPrev, pblock, chainparams.GetConsensus());
172 pblock->nNonce = 0;
173 pblocktemplate->vTxSigOpsCost[0] = WITNESS_SCALE_FACTOR * GetLegacySigOpCount(*pblock->vtx[0]);
174
176 if (m_options.test_block_validity && !TestBlockValidity(state, chainparams, m_chainstate, *pblock, pindexPrev,
177 /*fCheckPOW=*/false, /*fCheckMerkleRoot=*/false)) {
178 throw std::runtime_error(strprintf("%s: TestBlockValidity failed: %s", __func__, state.ToString()));
179 }
180 const auto time_2{SteadyClock::now()};
181
182 LogPrint(BCLog::BENCH, "CreateNewBlock() packages: %.2fms (%d packages, %d updated descendants), validity: %.2fms (total %.2fms)\n",
183 Ticks<MillisecondsDouble>(time_1 - time_start), nPackagesSelected, nDescendantsUpdated,
184 Ticks<MillisecondsDouble>(time_2 - time_1),
185 Ticks<MillisecondsDouble>(time_2 - time_start));
186
187 return std::move(pblocktemplate);
188}
189
190void BlockAssembler::onlyUnconfirmed(CTxMemPool::setEntries& testSet)
191{
192 for (CTxMemPool::setEntries::iterator iit = testSet.begin(); iit != testSet.end(); ) {
193 // Only test txs not already in the block
194 if (inBlock.count((*iit)->GetSharedTx()->GetHash())) {
195 testSet.erase(iit++);
196 } else {
197 iit++;
198 }
199 }
200}
201
202bool BlockAssembler::TestPackage(uint64_t packageSize, int64_t packageSigOpsCost) const
203{
204 // TODO: switch to weight-based accounting for packages instead of vsize-based accounting.
205 if (nBlockWeight + WITNESS_SCALE_FACTOR * packageSize >= m_options.nBlockMaxWeight) {
206 return false;
207 }
208 if (nBlockSigOpsCost + packageSigOpsCost >= MAX_BLOCK_SIGOPS_COST) {
209 return false;
210 }
211 return true;
212}
213
214// Perform transaction-level checks before adding to block:
215// - transaction finality (locktime)
216bool BlockAssembler::TestPackageTransactions(const CTxMemPool::setEntries& package) const
217{
218 for (CTxMemPool::txiter it : package) {
219 if (!IsFinalTx(it->GetTx(), nHeight, m_lock_time_cutoff)) {
220 return false;
221 }
222 }
223 return true;
224}
225
226void BlockAssembler::AddToBlock(CTxMemPool::txiter iter)
227{
228 pblocktemplate->block.vtx.emplace_back(iter->GetSharedTx());
229 pblocktemplate->vTxFees.push_back(iter->GetFee());
230 pblocktemplate->vTxSigOpsCost.push_back(iter->GetSigOpCost());
231 nBlockWeight += iter->GetTxWeight();
232 ++nBlockTx;
233 nBlockSigOpsCost += iter->GetSigOpCost();
234 nFees += iter->GetFee();
235 inBlock.insert(iter->GetSharedTx()->GetHash());
236
237 if (m_options.print_modified_fee) {
238 LogPrintf("fee rate %s txid %s\n",
239 CFeeRate(iter->GetModifiedFee(), iter->GetTxSize()).ToString(),
240 iter->GetTx().GetHash().ToString());
241 }
242}
243
247static int UpdatePackagesForAdded(const CTxMemPool& mempool,
248 const CTxMemPool::setEntries& alreadyAdded,
250{
251 AssertLockHeld(mempool.cs);
252
253 int nDescendantsUpdated = 0;
254 for (CTxMemPool::txiter it : alreadyAdded) {
255 CTxMemPool::setEntries descendants;
256 mempool.CalculateDescendants(it, descendants);
257 // Insert all descendants (not yet in block) into the modified set
258 for (CTxMemPool::txiter desc : descendants) {
259 if (alreadyAdded.count(desc)) {
260 continue;
261 }
262 ++nDescendantsUpdated;
263 modtxiter mit = mapModifiedTx.find(desc);
264 if (mit == mapModifiedTx.end()) {
265 CTxMemPoolModifiedEntry modEntry(desc);
266 mit = mapModifiedTx.insert(modEntry).first;
267 }
268 mapModifiedTx.modify(mit, update_for_parent_inclusion(it));
269 }
270 }
271 return nDescendantsUpdated;
272}
273
274void BlockAssembler::SortForBlock(const CTxMemPool::setEntries& package, std::vector<CTxMemPool::txiter>& sortedEntries)
275{
276 // Sort package by ancestor count
277 // If a transaction A depends on transaction B, then A's ancestor count
278 // must be greater than B's. So this is sufficient to validly order the
279 // transactions for block inclusion.
280 sortedEntries.clear();
281 sortedEntries.insert(sortedEntries.begin(), package.begin(), package.end());
282 std::sort(sortedEntries.begin(), sortedEntries.end(), CompareTxIterByAncestorCount());
283}
284
285// This transaction selection algorithm orders the mempool based
286// on feerate of a transaction including all unconfirmed ancestors.
287// Since we don't remove transactions from the mempool as we select them
288// for block inclusion, we need an alternate method of updating the feerate
289// of a transaction with its not-yet-selected ancestors as we go.
290// This is accomplished by walking the in-mempool descendants of selected
291// transactions and storing a temporary modified state in mapModifiedTxs.
292// Each time through the loop, we compare the best transaction in
293// mapModifiedTxs with the next transaction in the mempool to decide what
294// transaction package to work on next.
295void BlockAssembler::addPackageTxs(const CTxMemPool& mempool, int& nPackagesSelected, int& nDescendantsUpdated)
296{
297 AssertLockHeld(mempool.cs);
298
299 // mapModifiedTx will store sorted packages after they are modified
300 // because some of their txs are already in the block
302 // Keep track of entries that failed inclusion, to avoid duplicate work
303 std::set<Txid> failedTx;
304
305 CTxMemPool::indexed_transaction_set::index<ancestor_score>::type::iterator mi = mempool.mapTx.get<ancestor_score>().begin();
307
308 // Limit the number of attempts to add transactions to the block when it is
309 // close to full; this is just a simple heuristic to finish quickly if the
310 // mempool has a lot of entries.
311 const int64_t MAX_CONSECUTIVE_FAILURES = 1000;
312 int64_t nConsecutiveFailed = 0;
313
314 while (mi != mempool.mapTx.get<ancestor_score>().end() || !mapModifiedTx.empty()) {
315 // First try to find a new transaction in mapTx to evaluate.
316 //
317 // Skip entries in mapTx that are already in a block or are present
318 // in mapModifiedTx (which implies that the mapTx ancestor state is
319 // stale due to ancestor inclusion in the block)
320 // Also skip transactions that we've already failed to add. This can happen if
321 // we consider a transaction in mapModifiedTx and it fails: we can then
322 // potentially consider it again while walking mapTx. It's currently
323 // guaranteed to fail again, but as a belt-and-suspenders check we put it in
324 // failedTx and avoid re-evaluation, since the re-evaluation would be using
325 // cached size/sigops/fee values that are not actually correct.
328 if (mi != mempool.mapTx.get<ancestor_score>().end()) {
329 auto it = mempool.mapTx.project<0>(mi);
330 assert(it != mempool.mapTx.end());
331 if (mapModifiedTx.count(it) || inBlock.count(it->GetSharedTx()->GetHash()) || failedTx.count(it->GetSharedTx()->GetHash())) {
332 ++mi;
333 continue;
334 }
335 }
336
337 // Now that mi is not stale, determine which transaction to evaluate:
338 // the next entry from mapTx, or the best from mapModifiedTx?
339 bool fUsingModified = false;
340
341 modtxscoreiter modit = mapModifiedTx.get<ancestor_score>().begin();
342 if (mi == mempool.mapTx.get<ancestor_score>().end()) {
343 // We're out of entries in mapTx; use the entry from mapModifiedTx
344 iter = modit->iter;
345 fUsingModified = true;
346 } else {
347 // Try to compare the mapTx entry to the mapModifiedTx entry
348 iter = mempool.mapTx.project<0>(mi);
349 if (modit != mapModifiedTx.get<ancestor_score>().end() &&
351 // The best entry in mapModifiedTx has higher score
352 // than the one from mapTx.
353 // Switch which transaction (package) to consider
354 iter = modit->iter;
355 fUsingModified = true;
356 } else {
357 // Either no entry in mapModifiedTx, or it's worse than mapTx.
358 // Increment mi for the next loop iteration.
359 ++mi;
360 }
361 }
362
363 // We skip mapTx entries that are inBlock, and mapModifiedTx shouldn't
364 // contain anything that is inBlock.
365 assert(!inBlock.count(iter->GetSharedTx()->GetHash()));
366
367 uint64_t packageSize = iter->GetSizeWithAncestors();
368 CAmount packageFees = iter->GetModFeesWithAncestors();
369 int64_t packageSigOpsCost = iter->GetSigOpCostWithAncestors();
370 if (fUsingModified) {
371 packageSize = modit->nSizeWithAncestors;
372 packageFees = modit->nModFeesWithAncestors;
373 packageSigOpsCost = modit->nSigOpCostWithAncestors;
374 }
375
376 if (packageFees < m_options.blockMinFeeRate.GetFee(packageSize)) {
377 // Everything else we might consider has a lower fee rate
378 return;
379 }
380
381 if (!TestPackage(packageSize, packageSigOpsCost)) {
382 if (fUsingModified) {
383 // Since we always look at the best entry in mapModifiedTx,
384 // we must erase failed entries so that we can consider the
385 // next best entry on the next loop iteration
386 mapModifiedTx.get<ancestor_score>().erase(modit);
387 failedTx.insert(iter->GetSharedTx()->GetHash());
388 }
389
390 ++nConsecutiveFailed;
391
392 if (nConsecutiveFailed > MAX_CONSECUTIVE_FAILURES && nBlockWeight >
393 m_options.nBlockMaxWeight - m_options.coinbase_max_additional_weight) {
394 // Give up if we're close to full and haven't succeeded in a while
395 break;
396 }
397 continue;
398 }
399
400 auto ancestors{mempool.AssumeCalculateMemPoolAncestors(__func__, *iter, CTxMemPool::Limits::NoLimits(), /*fSearchForParents=*/false)};
401
402 onlyUnconfirmed(ancestors);
403 ancestors.insert(iter);
404
405 // Test if all tx's are Final
406 if (!TestPackageTransactions(ancestors)) {
407 if (fUsingModified) {
408 mapModifiedTx.get<ancestor_score>().erase(modit);
409 failedTx.insert(iter->GetSharedTx()->GetHash());
410 }
411 continue;
412 }
413
414 // This transaction will make it in; reset the failed counter.
415 nConsecutiveFailed = 0;
416
417 // Package can be added. Sort the entries in a valid order.
418 std::vector<CTxMemPool::txiter> sortedEntries;
419 SortForBlock(ancestors, sortedEntries);
420
421 for (size_t i = 0; i < sortedEntries.size(); ++i) {
422 AddToBlock(sortedEntries[i]);
423 // Erase from the modified set, if present
424 mapModifiedTx.erase(sortedEntries[i]);
425 }
426
427 ++nPackagesSelected;
428
429 // Update transactions that depend on each of these
430 nDescendantsUpdated += UpdatePackagesForAdded(mempool, ancestors, mapModifiedTx);
431 }
432}
433} // namespace node
int64_t CAmount
Amount in satoshis (Can be negative)
Definition amount.h:12
ArgsManager gArgs
Definition args.cpp:41
ArgsManager & args
Definition bitcoind.cpp:270
#define Assert(val)
Identity function.
Definition check.h:77
int64_t GetIntArg(const std::string &strArg, int64_t nDefault) const
Return integer argument or default value.
Definition args.cpp:481
std::string GetArg(const std::string &strArg, const std::string &strDefault) const
Return string argument or default value.
Definition args.cpp:456
bool GetBoolArg(const std::string &strArg, bool fDefault) const
Return boolean argument or default value.
Definition args.cpp:506
Nodes collect new transactions into a block, hash them into a hash tree, and scan through nonce value...
Definition block.h:22
uint32_t nNonce
Definition block.h:30
uint32_t nBits
Definition block.h:29
uint32_t nTime
Definition block.h:28
int32_t nVersion
Definition block.h:25
uint256 hashPrevBlock
Definition block.h:26
uint256 hashMerkleRoot
Definition block.h:27
Definition block.h:69
std::vector< CTransactionRef > vtx
Definition block.h:72
The block chain is a tree shaped structure starting with the genesis block at the root,...
Definition chain.h:141
uint256 GetBlockHash() const
Definition chain.h:243
int64_t GetBlockTime() const
Definition chain.h:266
int64_t GetMedianTimePast() const
Definition chain.h:278
int nHeight
height of the entry in the chain. The genesis block has height 0
Definition chain.h:153
Fee rate in satoshis per kilovirtualbyte: CAmount / kvB.
Definition feerate.h:33
std::string ToString(const FeeEstimateMode &fee_estimate_mode=FeeEstimateMode::BTC_KVB) const
Definition feerate.cpp:39
Serialized script, used inside transaction inputs and outputs.
Definition script.h:414
CTxMemPool stores valid-according-to-the-current-best-chain transactions that may be included in the ...
Definition txmempool.h:304
setEntries AssumeCalculateMemPoolAncestors(std::string_view calling_fn_name, const CTxMemPoolEntry &entry, const Limits &limits, bool fSearchForParents=true) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Same as CalculateMemPoolAncestors, but always returns a (non-optional) setEntries.
RecursiveMutex cs
This mutex needs to be locked when accessing mapTx or other members that are guarded by it.
Definition txmempool.h:390
CTransactionRef get(const uint256 &hash) const
indexed_transaction_set::nth_index< 0 >::type::const_iterator txiter
Definition txmempool.h:393
std::set< txiter, CompareIteratorByHash > setEntries
Definition txmempool.h:396
Chainstate stores and provides an API to update our local knowledge of the current best chain.
Definition validation.h:513
Provides an interface for creating and interacting with one or two chainstates: an IBD chainstate gen...
Definition validation.h:871
std::vector< unsigned char > GenerateCoinbaseCommitment(CBlock &block, const CBlockIndex *pindexPrev) const
Produce the necessary coinbase commitment for a block (modifies the hash, don't call for mined blocks...
node::BlockManager m_blockman
A single BlockManager instance is shared across each constructed chainstate to avoid duplicating bloc...
Definition txmempool.h:164
std::string ToString() const
Definition validation.h:128
BlockAssembler(Chainstate &chainstate, const CTxMemPool *mempool, const Options &options)
Definition miner.cpp:78
CBlockIndex * LookupBlockIndex(const uint256 &hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main)
static int64_t GetBlockWeight(const CBlock &block)
Definition validation.h:153
int GetWitnessCommitmentIndex(const CBlock &block)
Compute at which vout of the block's coinbase transaction the witness commitment occurs,...
Definition validation.h:164
static constexpr int64_t MAX_TIMEWARP
Maximum number of seconds that the timestamp of the first block of a difficulty adjustment period is ...
Definition consensus.h:35
static const int64_t MAX_BLOCK_SIGOPS_COST
The maximum allowed number of signature check operations in a block (network rule)
Definition consensus.h:17
static const int WITNESS_SCALE_FACTOR
Definition consensus.h:21
RecursiveMutex cs_main
Mutex to guard access to validation specific variables, such as reading or changing the chainstate.
Definition cs_main.cpp:8
#define LogPrint(category,...)
Definition logging.h:293
#define LogPrintf(...)
Definition logging.h:274
unsigned int nHeight
uint256 BlockMerkleRoot(const CBlock &block, bool *mutated)
Definition merkle.cpp:65
std::optional< CAmount > ParseMoney(const std::string &money_string)
Parse an amount denoted in full coins.
Definition moneystr.cpp:45
@ BENCH
Definition logging.h:46
static BlockAssembler::Options ClampOptions(BlockAssembler::Options options)
Definition miner.cpp:68
boost::multi_index_container< CTxMemPoolModifiedEntry, CTxMemPoolModifiedEntry_Indices > indexed_modified_transaction_set
Definition miner.h:119
indexed_modified_transaction_set::nth_index< 0 >::type::iterator modtxiter
Definition miner.h:121
void RegenerateCommitments(CBlock &block, ChainstateManager &chainman)
Update an old GenerateCoinbaseCommitment from CreateNewBlock after the block txs have changed.
Definition miner.cpp:56
int64_t UpdateTime(CBlockHeader *pblock, const Consensus::Params &consensusParams, const CBlockIndex *pindexPrev)
Definition miner.cpp:31
indexed_modified_transaction_set::index< ancestor_score >::type::iterator modtxscoreiter
Definition miner.h:122
util::Result< void > ApplyArgsManOptions(const ArgsManager &args, BlockManager::Options &opts)
static int UpdatePackagesForAdded(const CTxMemPool &mempool, const CTxMemPool::setEntries &alreadyAdded, indexed_modified_transaction_set &mapModifiedTx) EXCLUSIVE_LOCKS_REQUIRED(mempool.cs)
Add descendants of given transactions to mapModifiedTx with ancestor state updated assuming given tra...
Definition miner.cpp:247
static constexpr unsigned int DEFAULT_BLOCK_MAX_WEIGHT
Default for -blockmaxweight, which controls the range of block weights the mining code will create.
Definition policy.h:23
unsigned int GetNextWorkRequired(const CBlockIndex *pindexLast, const CBlockHeader *pblock, const Consensus::Params &params)
Definition pow.cpp:13
static CTransactionRef MakeTransactionRef(Tx &&txIn)
@ OP_0
Definition script.h:75
A mutable version of CTransaction.
std::vector< CTxOut > vout
std::vector< CTxIn > vin
Parameters that influence chain consensus.
Definition params.h:74
bool enforce_BIP94
Enfore BIP94 timewarp attack mitigation.
Definition params.h:115
int64_t DifficultyAdjustmentInterval() const
Definition params.h:123
bool fPowAllowMinDifficultyBlocks
Definition params.h:110
static time_point now() noexcept
Return current system time or mocked time, if set.
Definition time.cpp:21
static constexpr MemPoolLimits NoLimits()
size_t coinbase_output_max_additional_sigops
The maximum additional sigops which the pool will add in coinbase transaction outputs.
Definition types.h:45
size_t coinbase_max_additional_weight
The maximum additional weight which the pool will add to the coinbase scriptSig, witness and outputs.
Definition types.h:40
Definition miner.h:46
#define LOCK(cs)
Definition sync.h:257
#define WITH_LOCK(cs, code)
Run code while locking a mutex.
Definition sync.h:301
#define AssertLockHeld(cs)
Definition sync.h:142
#define EXCLUSIVE_LOCKS_REQUIRED(...)
constexpr auto TicksSinceEpoch(Timepoint t)
Definition time.h:50
constexpr auto Ticks(Dur2 d)
Helper to count the seconds of a duration/time_point.
Definition time.h:45
#define strprintf
Format arguments and return the string or write to given std::ostream (see tinyformat::format doc for...
unsigned int GetLegacySigOpCount(const CTransaction &tx)
Auxiliary functions for transaction validation (ideally should not be exposed)
bool IsFinalTx(const CTransaction &tx, int nBlockHeight, int64_t nBlockTime)
Check if transaction is final and can be included in a block with the specified height and time.
Definition tx_verify.cpp:17
CAmount GetBlockSubsidy(int nHeight, const Consensus::Params &consensusParams)
bool TestBlockValidity(BlockValidationState &state, const CChainParams &chainparams, Chainstate &chainstate, const CBlock &block, CBlockIndex *pindexPrev, bool fCheckPOW, bool fCheckMerkleRoot)
Check a block is completely valid from start to finish (only works on top of our current best block)
assert(!tx.IsCoinBase())