Bitcoin Core  26.1.0
P2P Digital Currency
mempool.cpp
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1 // Copyright (c) 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 <rpc/blockchain.h>
7 
9 
10 #include <chainparams.h>
11 #include <core_io.h>
12 #include <kernel/mempool_entry.h>
14 #include <policy/rbf.h>
15 #include <policy/settings.h>
16 #include <primitives/transaction.h>
17 #include <rpc/server.h>
18 #include <rpc/server_util.h>
19 #include <rpc/util.h>
20 #include <txmempool.h>
21 #include <univalue.h>
22 #include <util/fs.h>
23 #include <util/moneystr.h>
24 #include <util/time.h>
25 
26 #include <utility>
27 
29 
31 using node::MempoolPath;
32 using node::NodeContext;
33 
35 {
36  return RPCHelpMan{"sendrawtransaction",
37  "\nSubmit a raw transaction (serialized, hex-encoded) to local node and network.\n"
38  "\nThe transaction will be sent unconditionally to all peers, so using sendrawtransaction\n"
39  "for manual rebroadcast may degrade privacy by leaking the transaction's origin, as\n"
40  "nodes will normally not rebroadcast non-wallet transactions already in their mempool.\n"
41  "\nA specific exception, RPC_TRANSACTION_ALREADY_IN_CHAIN, may throw if the transaction cannot be added to the mempool.\n"
42  "\nRelated RPCs: createrawtransaction, signrawtransactionwithkey\n",
43  {
44  {"hexstring", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The hex string of the raw transaction"},
46  "Reject transactions whose fee rate is higher than the specified value, expressed in " + CURRENCY_UNIT +
47  "/kvB.\nSet to 0 to accept any fee rate."},
48  {"maxburnamount", RPCArg::Type::AMOUNT, RPCArg::Default{FormatMoney(0)},
49  "Reject transactions with provably unspendable outputs (e.g. 'datacarrier' outputs that use the OP_RETURN opcode) greater than the specified value, expressed in " + CURRENCY_UNIT + ".\n"
50  "If burning funds through unspendable outputs is desired, increase this value.\n"
51  "This check is based on heuristics and does not guarantee spendability of outputs.\n"},
52  },
53  RPCResult{
54  RPCResult::Type::STR_HEX, "", "The transaction hash in hex"
55  },
57  "\nCreate a transaction\n"
58  + HelpExampleCli("createrawtransaction", "\"[{\\\"txid\\\" : \\\"mytxid\\\",\\\"vout\\\":0}]\" \"{\\\"myaddress\\\":0.01}\"") +
59  "Sign the transaction, and get back the hex\n"
60  + HelpExampleCli("signrawtransactionwithwallet", "\"myhex\"") +
61  "\nSend the transaction (signed hex)\n"
62  + HelpExampleCli("sendrawtransaction", "\"signedhex\"") +
63  "\nAs a JSON-RPC call\n"
64  + HelpExampleRpc("sendrawtransaction", "\"signedhex\"")
65  },
66  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
67  {
68  const CAmount max_burn_amount = request.params[2].isNull() ? 0 : AmountFromValue(request.params[2]);
69 
71  if (!DecodeHexTx(mtx, request.params[0].get_str())) {
72  throw JSONRPCError(RPC_DESERIALIZATION_ERROR, "TX decode failed. Make sure the tx has at least one input.");
73  }
74 
75  for (const auto& out : mtx.vout) {
76  if((out.scriptPubKey.IsUnspendable() || !out.scriptPubKey.HasValidOps()) && out.nValue > max_burn_amount) {
78  }
79  }
80 
81  CTransactionRef tx(MakeTransactionRef(std::move(mtx)));
82 
83  const CFeeRate max_raw_tx_fee_rate = request.params[1].isNull() ?
85  CFeeRate(AmountFromValue(request.params[1]));
86 
87  int64_t virtual_size = GetVirtualTransactionSize(*tx);
88  CAmount max_raw_tx_fee = max_raw_tx_fee_rate.GetFee(virtual_size);
89 
90  std::string err_string;
92  NodeContext& node = EnsureAnyNodeContext(request.context);
93  const TransactionError err = BroadcastTransaction(node, tx, err_string, max_raw_tx_fee, /*relay=*/true, /*wait_callback=*/true);
94  if (TransactionError::OK != err) {
95  throw JSONRPCTransactionError(err, err_string);
96  }
97 
98  return tx->GetHash().GetHex();
99  },
100  };
101 }
102 
104 {
105  return RPCHelpMan{"testmempoolaccept",
106  "\nReturns result of mempool acceptance tests indicating if raw transaction(s) (serialized, hex-encoded) would be accepted by mempool.\n"
107  "\nIf multiple transactions are passed in, parents must come before children and package policies apply: the transactions cannot conflict with any mempool transactions or each other.\n"
108  "\nIf one transaction fails, other transactions may not be fully validated (the 'allowed' key will be blank).\n"
109  "\nThe maximum number of transactions allowed is " + ToString(MAX_PACKAGE_COUNT) + ".\n"
110  "\nThis checks if transactions violate the consensus or policy rules.\n"
111  "\nSee sendrawtransaction call.\n",
112  {
113  {"rawtxs", RPCArg::Type::ARR, RPCArg::Optional::NO, "An array of hex strings of raw transactions.",
114  {
116  },
117  },
119  "Reject transactions whose fee rate is higher than the specified value, expressed in " + CURRENCY_UNIT + "/kvB\n"},
120  },
121  RPCResult{
122  RPCResult::Type::ARR, "", "The result of the mempool acceptance test for each raw transaction in the input array.\n"
123  "Returns results for each transaction in the same order they were passed in.\n"
124  "Transactions that cannot be fully validated due to failures in other transactions will not contain an 'allowed' result.\n",
125  {
126  {RPCResult::Type::OBJ, "", "",
127  {
128  {RPCResult::Type::STR_HEX, "txid", "The transaction hash in hex"},
129  {RPCResult::Type::STR_HEX, "wtxid", "The transaction witness hash in hex"},
130  {RPCResult::Type::STR, "package-error", /*optional=*/true, "Package validation error, if any (only possible if rawtxs had more than 1 transaction)."},
131  {RPCResult::Type::BOOL, "allowed", /*optional=*/true, "Whether this tx would be accepted to the mempool and pass client-specified maxfeerate. "
132  "If not present, the tx was not fully validated due to a failure in another tx in the list."},
133  {RPCResult::Type::NUM, "vsize", /*optional=*/true, "Virtual transaction size as defined in BIP 141. This is different from actual serialized size for witness transactions as witness data is discounted (only present when 'allowed' is true)"},
134  {RPCResult::Type::OBJ, "fees", /*optional=*/true, "Transaction fees (only present if 'allowed' is true)",
135  {
136  {RPCResult::Type::STR_AMOUNT, "base", "transaction fee in " + CURRENCY_UNIT},
137  {RPCResult::Type::STR_AMOUNT, "effective-feerate", /*optional=*/false, "the effective feerate in " + CURRENCY_UNIT + " per KvB. May differ from the base feerate if, for example, there are modified fees from prioritisetransaction or a package feerate was used."},
138  {RPCResult::Type::ARR, "effective-includes", /*optional=*/false, "transactions whose fees and vsizes are included in effective-feerate.",
139  {RPCResult{RPCResult::Type::STR_HEX, "", "transaction wtxid in hex"},
140  }},
141  }},
142  {RPCResult::Type::STR, "reject-reason", /*optional=*/true, "Rejection string (only present when 'allowed' is false)"},
143  }},
144  }
145  },
146  RPCExamples{
147  "\nCreate a transaction\n"
148  + HelpExampleCli("createrawtransaction", "\"[{\\\"txid\\\" : \\\"mytxid\\\",\\\"vout\\\":0}]\" \"{\\\"myaddress\\\":0.01}\"") +
149  "Sign the transaction, and get back the hex\n"
150  + HelpExampleCli("signrawtransactionwithwallet", "\"myhex\"") +
151  "\nTest acceptance of the transaction (signed hex)\n"
152  + HelpExampleCli("testmempoolaccept", R"('["signedhex"]')") +
153  "\nAs a JSON-RPC call\n"
154  + HelpExampleRpc("testmempoolaccept", "[\"signedhex\"]")
155  },
156  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
157  {
158  const UniValue raw_transactions = request.params[0].get_array();
159  if (raw_transactions.size() < 1 || raw_transactions.size() > MAX_PACKAGE_COUNT) {
161  "Array must contain between 1 and " + ToString(MAX_PACKAGE_COUNT) + " transactions.");
162  }
163 
164  const CFeeRate max_raw_tx_fee_rate = request.params[1].isNull() ?
166  CFeeRate(AmountFromValue(request.params[1]));
167 
168  std::vector<CTransactionRef> txns;
169  txns.reserve(raw_transactions.size());
170  for (const auto& rawtx : raw_transactions.getValues()) {
172  if (!DecodeHexTx(mtx, rawtx.get_str())) {
174  "TX decode failed: " + rawtx.get_str() + " Make sure the tx has at least one input.");
175  }
176  txns.emplace_back(MakeTransactionRef(std::move(mtx)));
177  }
178 
179  NodeContext& node = EnsureAnyNodeContext(request.context);
180  CTxMemPool& mempool = EnsureMemPool(node);
182  Chainstate& chainstate = chainman.ActiveChainstate();
183  const PackageMempoolAcceptResult package_result = [&] {
184  LOCK(::cs_main);
185  if (txns.size() > 1) return ProcessNewPackage(chainstate, mempool, txns, /*test_accept=*/true);
186  return PackageMempoolAcceptResult(txns[0]->GetWitnessHash(),
187  chainman.ProcessTransaction(txns[0], /*test_accept=*/true));
188  }();
189 
190  UniValue rpc_result(UniValue::VARR);
191  // We will check transaction fees while we iterate through txns in order. If any transaction fee
192  // exceeds maxfeerate, we will leave the rest of the validation results blank, because it
193  // doesn't make sense to return a validation result for a transaction if its ancestor(s) would
194  // not be submitted.
195  bool exit_early{false};
196  for (const auto& tx : txns) {
197  UniValue result_inner(UniValue::VOBJ);
198  result_inner.pushKV("txid", tx->GetHash().GetHex());
199  result_inner.pushKV("wtxid", tx->GetWitnessHash().GetHex());
200  if (package_result.m_state.GetResult() == PackageValidationResult::PCKG_POLICY) {
201  result_inner.pushKV("package-error", package_result.m_state.GetRejectReason());
202  }
203  auto it = package_result.m_tx_results.find(tx->GetWitnessHash());
204  if (exit_early || it == package_result.m_tx_results.end()) {
205  // Validation unfinished. Just return the txid and wtxid.
206  rpc_result.push_back(result_inner);
207  continue;
208  }
209  const auto& tx_result = it->second;
210  // Package testmempoolaccept doesn't allow transactions to already be in the mempool.
212  if (tx_result.m_result_type == MempoolAcceptResult::ResultType::VALID) {
213  const CAmount fee = tx_result.m_base_fees.value();
214  // Check that fee does not exceed maximum fee
215  const int64_t virtual_size = tx_result.m_vsize.value();
216  const CAmount max_raw_tx_fee = max_raw_tx_fee_rate.GetFee(virtual_size);
217  if (max_raw_tx_fee && fee > max_raw_tx_fee) {
218  result_inner.pushKV("allowed", false);
219  result_inner.pushKV("reject-reason", "max-fee-exceeded");
220  exit_early = true;
221  } else {
222  // Only return the fee and vsize if the transaction would pass ATMP.
223  // These can be used to calculate the feerate.
224  result_inner.pushKV("allowed", true);
225  result_inner.pushKV("vsize", virtual_size);
226  UniValue fees(UniValue::VOBJ);
227  fees.pushKV("base", ValueFromAmount(fee));
228  fees.pushKV("effective-feerate", ValueFromAmount(tx_result.m_effective_feerate.value().GetFeePerK()));
229  UniValue effective_includes_res(UniValue::VARR);
230  for (const auto& wtxid : tx_result.m_wtxids_fee_calculations.value()) {
231  effective_includes_res.push_back(wtxid.ToString());
232  }
233  fees.pushKV("effective-includes", effective_includes_res);
234  result_inner.pushKV("fees", fees);
235  }
236  } else {
237  result_inner.pushKV("allowed", false);
238  const TxValidationState state = tx_result.m_state;
240  result_inner.pushKV("reject-reason", "missing-inputs");
241  } else {
242  result_inner.pushKV("reject-reason", state.GetRejectReason());
243  }
244  }
245  rpc_result.push_back(result_inner);
246  }
247  return rpc_result;
248  },
249  };
250 }
251 
252 static std::vector<RPCResult> MempoolEntryDescription()
253 {
254  return {
255  RPCResult{RPCResult::Type::NUM, "vsize", "virtual transaction size as defined in BIP 141. This is different from actual serialized size for witness transactions as witness data is discounted."},
256  RPCResult{RPCResult::Type::NUM, "weight", "transaction weight as defined in BIP 141."},
257  RPCResult{RPCResult::Type::NUM_TIME, "time", "local time transaction entered pool in seconds since 1 Jan 1970 GMT"},
258  RPCResult{RPCResult::Type::NUM, "height", "block height when transaction entered pool"},
259  RPCResult{RPCResult::Type::NUM, "descendantcount", "number of in-mempool descendant transactions (including this one)"},
260  RPCResult{RPCResult::Type::NUM, "descendantsize", "virtual transaction size of in-mempool descendants (including this one)"},
261  RPCResult{RPCResult::Type::NUM, "ancestorcount", "number of in-mempool ancestor transactions (including this one)"},
262  RPCResult{RPCResult::Type::NUM, "ancestorsize", "virtual transaction size of in-mempool ancestors (including this one)"},
263  RPCResult{RPCResult::Type::STR_HEX, "wtxid", "hash of serialized transaction, including witness data"},
264  RPCResult{RPCResult::Type::OBJ, "fees", "",
265  {
266  RPCResult{RPCResult::Type::STR_AMOUNT, "base", "transaction fee, denominated in " + CURRENCY_UNIT},
267  RPCResult{RPCResult::Type::STR_AMOUNT, "modified", "transaction fee with fee deltas used for mining priority, denominated in " + CURRENCY_UNIT},
268  RPCResult{RPCResult::Type::STR_AMOUNT, "ancestor", "transaction fees of in-mempool ancestors (including this one) with fee deltas used for mining priority, denominated in " + CURRENCY_UNIT},
269  RPCResult{RPCResult::Type::STR_AMOUNT, "descendant", "transaction fees of in-mempool descendants (including this one) with fee deltas used for mining priority, denominated in " + CURRENCY_UNIT},
270  }},
271  RPCResult{RPCResult::Type::ARR, "depends", "unconfirmed transactions used as inputs for this transaction",
272  {RPCResult{RPCResult::Type::STR_HEX, "transactionid", "parent transaction id"}}},
273  RPCResult{RPCResult::Type::ARR, "spentby", "unconfirmed transactions spending outputs from this transaction",
274  {RPCResult{RPCResult::Type::STR_HEX, "transactionid", "child transaction id"}}},
275  RPCResult{RPCResult::Type::BOOL, "bip125-replaceable", "Whether this transaction signals BIP125 replaceability or has an unconfirmed ancestor signaling BIP125 replaceability.\n"},
276  RPCResult{RPCResult::Type::BOOL, "unbroadcast", "Whether this transaction is currently unbroadcast (initial broadcast not yet acknowledged by any peers)"},
277  };
278 }
279 
280 static void entryToJSON(const CTxMemPool& pool, UniValue& info, const CTxMemPoolEntry& e) EXCLUSIVE_LOCKS_REQUIRED(pool.cs)
281 {
282  AssertLockHeld(pool.cs);
283 
284  info.pushKV("vsize", (int)e.GetTxSize());
285  info.pushKV("weight", (int)e.GetTxWeight());
286  info.pushKV("time", count_seconds(e.GetTime()));
287  info.pushKV("height", (int)e.GetHeight());
288  info.pushKV("descendantcount", e.GetCountWithDescendants());
289  info.pushKV("descendantsize", e.GetSizeWithDescendants());
290  info.pushKV("ancestorcount", e.GetCountWithAncestors());
291  info.pushKV("ancestorsize", e.GetSizeWithAncestors());
292  info.pushKV("wtxid", pool.vTxHashes[e.vTxHashesIdx].first.ToString());
293 
294  UniValue fees(UniValue::VOBJ);
295  fees.pushKV("base", ValueFromAmount(e.GetFee()));
296  fees.pushKV("modified", ValueFromAmount(e.GetModifiedFee()));
297  fees.pushKV("ancestor", ValueFromAmount(e.GetModFeesWithAncestors()));
298  fees.pushKV("descendant", ValueFromAmount(e.GetModFeesWithDescendants()));
299  info.pushKV("fees", fees);
300 
301  const CTransaction& tx = e.GetTx();
302  std::set<std::string> setDepends;
303  for (const CTxIn& txin : tx.vin)
304  {
305  if (pool.exists(GenTxid::Txid(txin.prevout.hash)))
306  setDepends.insert(txin.prevout.hash.ToString());
307  }
308 
309  UniValue depends(UniValue::VARR);
310  for (const std::string& dep : setDepends)
311  {
312  depends.push_back(dep);
313  }
314 
315  info.pushKV("depends", depends);
316 
317  UniValue spent(UniValue::VARR);
318  const CTxMemPool::txiter& it = pool.mapTx.find(tx.GetHash());
319  const CTxMemPoolEntry::Children& children = it->GetMemPoolChildrenConst();
320  for (const CTxMemPoolEntry& child : children) {
321  spent.push_back(child.GetTx().GetHash().ToString());
322  }
323 
324  info.pushKV("spentby", spent);
325 
326  // Add opt-in RBF status
327  bool rbfStatus = false;
328  RBFTransactionState rbfState = IsRBFOptIn(tx, pool);
329  if (rbfState == RBFTransactionState::UNKNOWN) {
330  throw JSONRPCError(RPC_MISC_ERROR, "Transaction is not in mempool");
331  } else if (rbfState == RBFTransactionState::REPLACEABLE_BIP125) {
332  rbfStatus = true;
333  }
334 
335  info.pushKV("bip125-replaceable", rbfStatus);
336  info.pushKV("unbroadcast", pool.IsUnbroadcastTx(tx.GetHash()));
337 }
338 
339 UniValue MempoolToJSON(const CTxMemPool& pool, bool verbose, bool include_mempool_sequence)
340 {
341  if (verbose) {
342  if (include_mempool_sequence) {
343  throw JSONRPCError(RPC_INVALID_PARAMETER, "Verbose results cannot contain mempool sequence values.");
344  }
345  LOCK(pool.cs);
347  for (const CTxMemPoolEntry& e : pool.entryAll()) {
348  UniValue info(UniValue::VOBJ);
349  entryToJSON(pool, info, e);
350  // Mempool has unique entries so there is no advantage in using
351  // UniValue::pushKV, which checks if the key already exists in O(N).
352  // UniValue::pushKVEnd is used instead which currently is O(1).
353  o.pushKVEnd(e.GetTx().GetHash().ToString(), info);
354  }
355  return o;
356  } else {
357  uint64_t mempool_sequence;
358  std::vector<uint256> vtxid;
359  {
360  LOCK(pool.cs);
361  pool.queryHashes(vtxid);
362  mempool_sequence = pool.GetSequence();
363  }
365  for (const uint256& hash : vtxid)
366  a.push_back(hash.ToString());
367 
368  if (!include_mempool_sequence) {
369  return a;
370  } else {
372  o.pushKV("txids", a);
373  o.pushKV("mempool_sequence", mempool_sequence);
374  return o;
375  }
376  }
377 }
378 
380 {
381  return RPCHelpMan{"getrawmempool",
382  "\nReturns all transaction ids in memory pool as a json array of string transaction ids.\n"
383  "\nHint: use getmempoolentry to fetch a specific transaction from the mempool.\n",
384  {
385  {"verbose", RPCArg::Type::BOOL, RPCArg::Default{false}, "True for a json object, false for array of transaction ids"},
386  {"mempool_sequence", RPCArg::Type::BOOL, RPCArg::Default{false}, "If verbose=false, returns a json object with transaction list and mempool sequence number attached."},
387  },
388  {
389  RPCResult{"for verbose = false",
390  RPCResult::Type::ARR, "", "",
391  {
392  {RPCResult::Type::STR_HEX, "", "The transaction id"},
393  }},
394  RPCResult{"for verbose = true",
395  RPCResult::Type::OBJ_DYN, "", "",
396  {
397  {RPCResult::Type::OBJ, "transactionid", "", MempoolEntryDescription()},
398  }},
399  RPCResult{"for verbose = false and mempool_sequence = true",
400  RPCResult::Type::OBJ, "", "",
401  {
402  {RPCResult::Type::ARR, "txids", "",
403  {
404  {RPCResult::Type::STR_HEX, "", "The transaction id"},
405  }},
406  {RPCResult::Type::NUM, "mempool_sequence", "The mempool sequence value."},
407  }},
408  },
409  RPCExamples{
410  HelpExampleCli("getrawmempool", "true")
411  + HelpExampleRpc("getrawmempool", "true")
412  },
413  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
414 {
415  bool fVerbose = false;
416  if (!request.params[0].isNull())
417  fVerbose = request.params[0].get_bool();
418 
419  bool include_mempool_sequence = false;
420  if (!request.params[1].isNull()) {
421  include_mempool_sequence = request.params[1].get_bool();
422  }
423 
424  return MempoolToJSON(EnsureAnyMemPool(request.context), fVerbose, include_mempool_sequence);
425 },
426  };
427 }
428 
430 {
431  return RPCHelpMan{"getmempoolancestors",
432  "\nIf txid is in the mempool, returns all in-mempool ancestors.\n",
433  {
434  {"txid", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The transaction id (must be in mempool)"},
435  {"verbose", RPCArg::Type::BOOL, RPCArg::Default{false}, "True for a json object, false for array of transaction ids"},
436  },
437  {
438  RPCResult{"for verbose = false",
439  RPCResult::Type::ARR, "", "",
440  {{RPCResult::Type::STR_HEX, "", "The transaction id of an in-mempool ancestor transaction"}}},
441  RPCResult{"for verbose = true",
442  RPCResult::Type::OBJ_DYN, "", "",
443  {
444  {RPCResult::Type::OBJ, "transactionid", "", MempoolEntryDescription()},
445  }},
446  },
447  RPCExamples{
448  HelpExampleCli("getmempoolancestors", "\"mytxid\"")
449  + HelpExampleRpc("getmempoolancestors", "\"mytxid\"")
450  },
451  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
452 {
453  bool fVerbose = false;
454  if (!request.params[1].isNull())
455  fVerbose = request.params[1].get_bool();
456 
457  uint256 hash = ParseHashV(request.params[0], "parameter 1");
458 
459  const CTxMemPool& mempool = EnsureAnyMemPool(request.context);
460  LOCK(mempool.cs);
461 
462  CTxMemPool::txiter it = mempool.mapTx.find(hash);
463  if (it == mempool.mapTx.end()) {
464  throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Transaction not in mempool");
465  }
466 
467  auto ancestors{mempool.AssumeCalculateMemPoolAncestors(__func__, *it, CTxMemPool::Limits::NoLimits(), /*fSearchForParents=*/false)};
468 
469  if (!fVerbose) {
471  for (CTxMemPool::txiter ancestorIt : ancestors) {
472  o.push_back(ancestorIt->GetTx().GetHash().ToString());
473  }
474  return o;
475  } else {
477  for (CTxMemPool::txiter ancestorIt : ancestors) {
478  const CTxMemPoolEntry &e = *ancestorIt;
479  const uint256& _hash = e.GetTx().GetHash();
480  UniValue info(UniValue::VOBJ);
481  entryToJSON(mempool, info, e);
482  o.pushKV(_hash.ToString(), info);
483  }
484  return o;
485  }
486 },
487  };
488 }
489 
491 {
492  return RPCHelpMan{"getmempooldescendants",
493  "\nIf txid is in the mempool, returns all in-mempool descendants.\n",
494  {
495  {"txid", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The transaction id (must be in mempool)"},
496  {"verbose", RPCArg::Type::BOOL, RPCArg::Default{false}, "True for a json object, false for array of transaction ids"},
497  },
498  {
499  RPCResult{"for verbose = false",
500  RPCResult::Type::ARR, "", "",
501  {{RPCResult::Type::STR_HEX, "", "The transaction id of an in-mempool descendant transaction"}}},
502  RPCResult{"for verbose = true",
503  RPCResult::Type::OBJ_DYN, "", "",
504  {
505  {RPCResult::Type::OBJ, "transactionid", "", MempoolEntryDescription()},
506  }},
507  },
508  RPCExamples{
509  HelpExampleCli("getmempooldescendants", "\"mytxid\"")
510  + HelpExampleRpc("getmempooldescendants", "\"mytxid\"")
511  },
512  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
513 {
514  bool fVerbose = false;
515  if (!request.params[1].isNull())
516  fVerbose = request.params[1].get_bool();
517 
518  uint256 hash = ParseHashV(request.params[0], "parameter 1");
519 
520  const CTxMemPool& mempool = EnsureAnyMemPool(request.context);
521  LOCK(mempool.cs);
522 
523  CTxMemPool::txiter it = mempool.mapTx.find(hash);
524  if (it == mempool.mapTx.end()) {
525  throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Transaction not in mempool");
526  }
527 
528  CTxMemPool::setEntries setDescendants;
529  mempool.CalculateDescendants(it, setDescendants);
530  // CTxMemPool::CalculateDescendants will include the given tx
531  setDescendants.erase(it);
532 
533  if (!fVerbose) {
535  for (CTxMemPool::txiter descendantIt : setDescendants) {
536  o.push_back(descendantIt->GetTx().GetHash().ToString());
537  }
538 
539  return o;
540  } else {
542  for (CTxMemPool::txiter descendantIt : setDescendants) {
543  const CTxMemPoolEntry &e = *descendantIt;
544  const uint256& _hash = e.GetTx().GetHash();
545  UniValue info(UniValue::VOBJ);
546  entryToJSON(mempool, info, e);
547  o.pushKV(_hash.ToString(), info);
548  }
549  return o;
550  }
551 },
552  };
553 }
554 
556 {
557  return RPCHelpMan{"getmempoolentry",
558  "\nReturns mempool data for given transaction\n",
559  {
560  {"txid", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The transaction id (must be in mempool)"},
561  },
562  RPCResult{
564  RPCExamples{
565  HelpExampleCli("getmempoolentry", "\"mytxid\"")
566  + HelpExampleRpc("getmempoolentry", "\"mytxid\"")
567  },
568  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
569 {
570  uint256 hash = ParseHashV(request.params[0], "parameter 1");
571 
572  const CTxMemPool& mempool = EnsureAnyMemPool(request.context);
573  LOCK(mempool.cs);
574 
575  CTxMemPool::txiter it = mempool.mapTx.find(hash);
576  if (it == mempool.mapTx.end()) {
577  throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Transaction not in mempool");
578  }
579 
580  const CTxMemPoolEntry &e = *it;
581  UniValue info(UniValue::VOBJ);
582  entryToJSON(mempool, info, e);
583  return info;
584 },
585  };
586 }
587 
589 {
590  return RPCHelpMan{"gettxspendingprevout",
591  "Scans the mempool to find transactions spending any of the given outputs",
592  {
593  {"outputs", RPCArg::Type::ARR, RPCArg::Optional::NO, "The transaction outputs that we want to check, and within each, the txid (string) vout (numeric).",
594  {
596  {
597  {"txid", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The transaction id"},
598  {"vout", RPCArg::Type::NUM, RPCArg::Optional::NO, "The output number"},
599  },
600  },
601  },
602  },
603  },
604  RPCResult{
605  RPCResult::Type::ARR, "", "",
606  {
607  {RPCResult::Type::OBJ, "", "",
608  {
609  {RPCResult::Type::STR_HEX, "txid", "the transaction id of the checked output"},
610  {RPCResult::Type::NUM, "vout", "the vout value of the checked output"},
611  {RPCResult::Type::STR_HEX, "spendingtxid", /*optional=*/true, "the transaction id of the mempool transaction spending this output (omitted if unspent)"},
612  }},
613  }
614  },
615  RPCExamples{
616  HelpExampleCli("gettxspendingprevout", "\"[{\\\"txid\\\":\\\"a08e6907dbbd3d809776dbfc5d82e371b764ed838b5655e72f463568df1aadf0\\\",\\\"vout\\\":3}]\"")
617  + HelpExampleRpc("gettxspendingprevout", "\"[{\\\"txid\\\":\\\"a08e6907dbbd3d809776dbfc5d82e371b764ed838b5655e72f463568df1aadf0\\\",\\\"vout\\\":3}]\"")
618  },
619  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
620  {
621  const UniValue& output_params = request.params[0].get_array();
622  if (output_params.empty()) {
623  throw JSONRPCError(RPC_INVALID_PARAMETER, "Invalid parameter, outputs are missing");
624  }
625 
626  std::vector<COutPoint> prevouts;
627  prevouts.reserve(output_params.size());
628 
629  for (unsigned int idx = 0; idx < output_params.size(); idx++) {
630  const UniValue& o = output_params[idx].get_obj();
631 
632  RPCTypeCheckObj(o,
633  {
634  {"txid", UniValueType(UniValue::VSTR)},
635  {"vout", UniValueType(UniValue::VNUM)},
636  }, /*fAllowNull=*/false, /*fStrict=*/true);
637 
638  const uint256 txid(ParseHashO(o, "txid"));
639  const int nOutput{o.find_value("vout").getInt<int>()};
640  if (nOutput < 0) {
641  throw JSONRPCError(RPC_INVALID_PARAMETER, "Invalid parameter, vout cannot be negative");
642  }
643 
644  prevouts.emplace_back(txid, nOutput);
645  }
646 
647  const CTxMemPool& mempool = EnsureAnyMemPool(request.context);
648  LOCK(mempool.cs);
649 
650  UniValue result{UniValue::VARR};
651 
652  for (const COutPoint& prevout : prevouts) {
654  o.pushKV("txid", prevout.hash.ToString());
655  o.pushKV("vout", (uint64_t)prevout.n);
656 
657  const CTransaction* spendingTx = mempool.GetConflictTx(prevout);
658  if (spendingTx != nullptr) {
659  o.pushKV("spendingtxid", spendingTx->GetHash().ToString());
660  }
661 
662  result.push_back(o);
663  }
664 
665  return result;
666  },
667  };
668 }
669 
671 {
672  // Make sure this call is atomic in the pool.
673  LOCK(pool.cs);
675  ret.pushKV("loaded", pool.GetLoadTried());
676  ret.pushKV("size", (int64_t)pool.size());
677  ret.pushKV("bytes", (int64_t)pool.GetTotalTxSize());
678  ret.pushKV("usage", (int64_t)pool.DynamicMemoryUsage());
679  ret.pushKV("total_fee", ValueFromAmount(pool.GetTotalFee()));
680  ret.pushKV("maxmempool", pool.m_max_size_bytes);
681  ret.pushKV("mempoolminfee", ValueFromAmount(std::max(pool.GetMinFee(), pool.m_min_relay_feerate).GetFeePerK()));
682  ret.pushKV("minrelaytxfee", ValueFromAmount(pool.m_min_relay_feerate.GetFeePerK()));
683  ret.pushKV("incrementalrelayfee", ValueFromAmount(pool.m_incremental_relay_feerate.GetFeePerK()));
684  ret.pushKV("unbroadcastcount", uint64_t{pool.GetUnbroadcastTxs().size()});
685  ret.pushKV("fullrbf", pool.m_full_rbf);
686  return ret;
687 }
688 
690 {
691  return RPCHelpMan{"getmempoolinfo",
692  "Returns details on the active state of the TX memory pool.",
693  {},
694  RPCResult{
695  RPCResult::Type::OBJ, "", "",
696  {
697  {RPCResult::Type::BOOL, "loaded", "True if the initial load attempt of the persisted mempool finished"},
698  {RPCResult::Type::NUM, "size", "Current tx count"},
699  {RPCResult::Type::NUM, "bytes", "Sum of all virtual transaction sizes as defined in BIP 141. Differs from actual serialized size because witness data is discounted"},
700  {RPCResult::Type::NUM, "usage", "Total memory usage for the mempool"},
701  {RPCResult::Type::STR_AMOUNT, "total_fee", "Total fees for the mempool in " + CURRENCY_UNIT + ", ignoring modified fees through prioritisetransaction"},
702  {RPCResult::Type::NUM, "maxmempool", "Maximum memory usage for the mempool"},
703  {RPCResult::Type::STR_AMOUNT, "mempoolminfee", "Minimum fee rate in " + CURRENCY_UNIT + "/kvB for tx to be accepted. Is the maximum of minrelaytxfee and minimum mempool fee"},
704  {RPCResult::Type::STR_AMOUNT, "minrelaytxfee", "Current minimum relay fee for transactions"},
705  {RPCResult::Type::NUM, "incrementalrelayfee", "minimum fee rate increment for mempool limiting or replacement in " + CURRENCY_UNIT + "/kvB"},
706  {RPCResult::Type::NUM, "unbroadcastcount", "Current number of transactions that haven't passed initial broadcast yet"},
707  {RPCResult::Type::BOOL, "fullrbf", "True if the mempool accepts RBF without replaceability signaling inspection"},
708  }},
709  RPCExamples{
710  HelpExampleCli("getmempoolinfo", "")
711  + HelpExampleRpc("getmempoolinfo", "")
712  },
713  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
714 {
715  return MempoolInfoToJSON(EnsureAnyMemPool(request.context));
716 },
717  };
718 }
719 
721 {
722  return RPCHelpMan{
723  "importmempool",
724  "Import a mempool.dat file and attempt to add its contents to the mempool.\n"
725  "Warning: Importing untrusted files is dangerous, especially if metadata from the file is taken over.",
726  {
727  {"filepath", RPCArg::Type::STR, RPCArg::Optional::NO, "The mempool file"},
728  {"options",
731  "",
732  {
733  {"use_current_time", RPCArg::Type::BOOL, RPCArg::Default{true},
734  "Whether to use the current system time or use the entry time metadata from the mempool file.\n"
735  "Warning: Importing untrusted metadata may lead to unexpected issues and undesirable behavior."},
736  {"apply_fee_delta_priority", RPCArg::Type::BOOL, RPCArg::Default{false},
737  "Whether to apply the fee delta metadata from the mempool file.\n"
738  "It will be added to any existing fee deltas.\n"
739  "The fee delta can be set by the prioritisetransaction RPC.\n"
740  "Warning: Importing untrusted metadata may lead to unexpected issues and undesirable behavior.\n"
741  "Only set this bool if you understand what it does."},
742  {"apply_unbroadcast_set", RPCArg::Type::BOOL, RPCArg::Default{false},
743  "Whether to apply the unbroadcast set metadata from the mempool file.\n"
744  "Warning: Importing untrusted metadata may lead to unexpected issues and undesirable behavior."},
745  },
746  RPCArgOptions{.oneline_description = "options"}},
747  },
748  RPCResult{RPCResult::Type::OBJ, "", "", std::vector<RPCResult>{}},
749  RPCExamples{HelpExampleCli("importmempool", "/path/to/mempool.dat") + HelpExampleRpc("importmempool", "/path/to/mempool.dat")},
750  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue {
751  const NodeContext& node{EnsureAnyNodeContext(request.context)};
752 
753  CTxMemPool& mempool{EnsureMemPool(node)};
755  Chainstate& chainstate = chainman.ActiveChainstate();
756 
757  if (chainman.IsInitialBlockDownload()) {
758  throw JSONRPCError(RPC_CLIENT_IN_INITIAL_DOWNLOAD, "Can only import the mempool after the block download and sync is done.");
759  }
760 
761  const fs::path load_path{fs::u8path(request.params[0].get_str())};
762  const UniValue& use_current_time{request.params[1]["use_current_time"]};
763  const UniValue& apply_fee_delta{request.params[1]["apply_fee_delta_priority"]};
764  const UniValue& apply_unbroadcast{request.params[1]["apply_unbroadcast_set"]};
766  .use_current_time = use_current_time.isNull() ? true : use_current_time.get_bool(),
767  .apply_fee_delta_priority = apply_fee_delta.isNull() ? false : apply_fee_delta.get_bool(),
768  .apply_unbroadcast_set = apply_unbroadcast.isNull() ? false : apply_unbroadcast.get_bool(),
769  };
770 
771  if (!kernel::LoadMempool(mempool, load_path, chainstate, std::move(opts))) {
772  throw JSONRPCError(RPC_MISC_ERROR, "Unable to import mempool file, see debug.log for details.");
773  }
774 
776  return ret;
777  },
778  };
779 }
780 
782 {
783  return RPCHelpMan{"savemempool",
784  "\nDumps the mempool to disk. It will fail until the previous dump is fully loaded.\n",
785  {},
786  RPCResult{
787  RPCResult::Type::OBJ, "", "",
788  {
789  {RPCResult::Type::STR, "filename", "the directory and file where the mempool was saved"},
790  }},
791  RPCExamples{
792  HelpExampleCli("savemempool", "")
793  + HelpExampleRpc("savemempool", "")
794  },
795  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
796 {
797  const ArgsManager& args{EnsureAnyArgsman(request.context)};
798  const CTxMemPool& mempool = EnsureAnyMemPool(request.context);
799 
800  if (!mempool.GetLoadTried()) {
801  throw JSONRPCError(RPC_MISC_ERROR, "The mempool was not loaded yet");
802  }
803 
804  const fs::path& dump_path = MempoolPath(args);
805 
806  if (!DumpMempool(mempool, dump_path)) {
807  throw JSONRPCError(RPC_MISC_ERROR, "Unable to dump mempool to disk");
808  }
809 
811  ret.pushKV("filename", dump_path.u8string());
812 
813  return ret;
814 },
815  };
816 }
817 
819 {
820  return RPCHelpMan{"submitpackage",
821  "Submit a package of raw transactions (serialized, hex-encoded) to local node.\n"
822  "The package must consist of a child with its parents, and none of the parents may depend on one another.\n"
823  "The package will be validated according to consensus and mempool policy rules. If all transactions pass, they will be accepted to mempool.\n"
824  "This RPC is experimental and the interface may be unstable. Refer to doc/policy/packages.md for documentation on package policies.\n"
825  "Warning: successful submission does not mean the transactions will propagate throughout the network.\n"
826  ,
827  {
828  {"package", RPCArg::Type::ARR, RPCArg::Optional::NO, "An array of raw transactions.",
829  {
831  },
832  },
833  },
834  RPCResult{
835  RPCResult::Type::OBJ, "", "",
836  {
837  {RPCResult::Type::OBJ_DYN, "tx-results", "transaction results keyed by wtxid",
838  {
839  {RPCResult::Type::OBJ, "wtxid", "transaction wtxid", {
840  {RPCResult::Type::STR_HEX, "txid", "The transaction hash in hex"},
841  {RPCResult::Type::STR_HEX, "other-wtxid", /*optional=*/true, "The wtxid of a different transaction with the same txid but different witness found in the mempool. This means the submitted transaction was ignored."},
842  {RPCResult::Type::NUM, "vsize", "Virtual transaction size as defined in BIP 141."},
843  {RPCResult::Type::OBJ, "fees", "Transaction fees", {
844  {RPCResult::Type::STR_AMOUNT, "base", "transaction fee in " + CURRENCY_UNIT},
845  {RPCResult::Type::STR_AMOUNT, "effective-feerate", /*optional=*/true, "if the transaction was not already in the mempool, the effective feerate in " + CURRENCY_UNIT + " per KvB. For example, the package feerate and/or feerate with modified fees from prioritisetransaction."},
846  {RPCResult::Type::ARR, "effective-includes", /*optional=*/true, "if effective-feerate is provided, the wtxids of the transactions whose fees and vsizes are included in effective-feerate.",
847  {{RPCResult::Type::STR_HEX, "", "transaction wtxid in hex"},
848  }},
849  }},
850  }}
851  }},
852  {RPCResult::Type::ARR, "replaced-transactions", /*optional=*/true, "List of txids of replaced transactions",
853  {
854  {RPCResult::Type::STR_HEX, "", "The transaction id"},
855  }},
856  },
857  },
858  RPCExamples{
859  HelpExampleCli("testmempoolaccept", "[rawtx1, rawtx2]") +
860  HelpExampleCli("submitpackage", "[rawtx1, rawtx2]")
861  },
862  [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
863  {
864  const UniValue raw_transactions = request.params[0].get_array();
865  if (raw_transactions.size() < 1 || raw_transactions.size() > MAX_PACKAGE_COUNT) {
867  "Array must contain between 1 and " + ToString(MAX_PACKAGE_COUNT) + " transactions.");
868  }
869 
870  std::vector<CTransactionRef> txns;
871  txns.reserve(raw_transactions.size());
872  for (const auto& rawtx : raw_transactions.getValues()) {
874  if (!DecodeHexTx(mtx, rawtx.get_str())) {
876  "TX decode failed: " + rawtx.get_str() + " Make sure the tx has at least one input.");
877  }
878  txns.emplace_back(MakeTransactionRef(std::move(mtx)));
879  }
880  if (!IsChildWithParentsTree(txns)) {
881  throw JSONRPCTransactionError(TransactionError::INVALID_PACKAGE, "package topology disallowed. not child-with-parents or parents depend on each other.");
882  }
883 
884  NodeContext& node = EnsureAnyNodeContext(request.context);
885  CTxMemPool& mempool = EnsureMemPool(node);
887  const auto package_result = WITH_LOCK(::cs_main, return ProcessNewPackage(chainstate, mempool, txns, /*test_accept=*/ false));
888 
889  // First catch any errors.
890  switch(package_result.m_state.GetResult()) {
893  {
895  package_result.m_state.GetRejectReason());
896  }
898  {
900  package_result.m_state.GetRejectReason());
901  }
903  {
904  for (const auto& tx : txns) {
905  auto it = package_result.m_tx_results.find(tx->GetWitnessHash());
906  if (it != package_result.m_tx_results.end() && it->second.m_state.IsInvalid()) {
908  strprintf("%s failed: %s", tx->GetHash().ToString(), it->second.m_state.GetRejectReason()));
909  }
910  }
911  // If a PCKG_TX error was returned, there must have been an invalid transaction.
913  }
914  }
915  size_t num_broadcast{0};
916  for (const auto& tx : txns) {
917  std::string err_string;
918  const auto err = BroadcastTransaction(node, tx, err_string, /*max_tx_fee=*/0, /*relay=*/true, /*wait_callback=*/true);
919  if (err != TransactionError::OK) {
920  throw JSONRPCTransactionError(err,
921  strprintf("transaction broadcast failed: %s (all transactions were submitted, %d transactions were broadcast successfully)",
922  err_string, num_broadcast));
923  }
924  num_broadcast++;
925  }
926  UniValue rpc_result{UniValue::VOBJ};
927  UniValue tx_result_map{UniValue::VOBJ};
928  std::set<uint256> replaced_txids;
929  for (const auto& tx : txns) {
930  auto it = package_result.m_tx_results.find(tx->GetWitnessHash());
931  CHECK_NONFATAL(it != package_result.m_tx_results.end());
932  UniValue result_inner{UniValue::VOBJ};
933  result_inner.pushKV("txid", tx->GetHash().GetHex());
934  const auto& tx_result = it->second;
935  if (it->second.m_result_type == MempoolAcceptResult::ResultType::DIFFERENT_WITNESS) {
936  result_inner.pushKV("other-wtxid", it->second.m_other_wtxid.value().GetHex());
937  }
938  if (it->second.m_result_type == MempoolAcceptResult::ResultType::VALID ||
939  it->second.m_result_type == MempoolAcceptResult::ResultType::MEMPOOL_ENTRY) {
940  result_inner.pushKV("vsize", int64_t{it->second.m_vsize.value()});
941  UniValue fees(UniValue::VOBJ);
942  fees.pushKV("base", ValueFromAmount(it->second.m_base_fees.value()));
943  if (tx_result.m_result_type == MempoolAcceptResult::ResultType::VALID) {
944  // Effective feerate is not provided for MEMPOOL_ENTRY transactions even
945  // though modified fees is known, because it is unknown whether package
946  // feerate was used when it was originally submitted.
947  fees.pushKV("effective-feerate", ValueFromAmount(tx_result.m_effective_feerate.value().GetFeePerK()));
948  UniValue effective_includes_res(UniValue::VARR);
949  for (const auto& wtxid : tx_result.m_wtxids_fee_calculations.value()) {
950  effective_includes_res.push_back(wtxid.ToString());
951  }
952  fees.pushKV("effective-includes", effective_includes_res);
953  }
954  result_inner.pushKV("fees", fees);
955  if (it->second.m_replaced_transactions.has_value()) {
956  for (const auto& ptx : it->second.m_replaced_transactions.value()) {
957  replaced_txids.insert(ptx->GetHash());
958  }
959  }
960  }
961  tx_result_map.pushKV(tx->GetWitnessHash().GetHex(), result_inner);
962  }
963  rpc_result.pushKV("tx-results", tx_result_map);
964  UniValue replaced_list(UniValue::VARR);
965  for (const uint256& hash : replaced_txids) replaced_list.push_back(hash.ToString());
966  rpc_result.pushKV("replaced-transactions", replaced_list);
967  return rpc_result;
968  },
969  };
970 }
971 
973 {
974  static const CRPCCommand commands[]{
975  {"rawtransactions", &sendrawtransaction},
976  {"rawtransactions", &testmempoolaccept},
977  {"blockchain", &getmempoolancestors},
978  {"blockchain", &getmempooldescendants},
979  {"blockchain", &getmempoolentry},
980  {"blockchain", &gettxspendingprevout},
981  {"blockchain", &getmempoolinfo},
982  {"blockchain", &getrawmempool},
983  {"blockchain", &importmempool},
984  {"blockchain", &savemempool},
985  {"rawtransactions", &submitpackage},
986  };
987  for (const auto& c : commands) {
988  t.appendCommand(c.name, &c);
989  }
990 }
std::shared_ptr< const CTransaction > CTransactionRef
Definition: transaction.h:421
void queryHashes(std::vector< uint256 > &vtxid) const
Definition: txmempool.cpp:822
void RegisterMempoolRPCCommands(CRPCTable &t)
Definition: mempool.cpp:972
void push_back(UniValue val)
Definition: univalue.cpp:104
UniValue MempoolToJSON(const CTxMemPool &pool, bool verbose, bool include_mempool_sequence)
Mempool to JSON.
Definition: mempool.cpp:339
int ret
static RPCHelpMan getrawmempool()
Definition: mempool.cpp:379
AssertLockHeld(pool.cs)
const std::vector< UniValue > & getValues() const
RPC command dispatcher.
Definition: server.h:134
indexed_transaction_set::nth_index< 0 >::type::const_iterator txiter
Definition: txmempool.h:394
static RPCHelpMan getmempoolancestors()
Definition: mempool.cpp:429
void RPCTypeCheckObj(const UniValue &o, const std::map< std::string, UniValueType > &typesExpected, bool fAllowNull, bool fStrict)
Definition: util.cpp:38
RBFTransactionState IsRBFOptIn(const CTransaction &tx, const CTxMemPool &pool)
Determine whether an unconfirmed transaction is signaling opt-in to RBF according to BIP 125 This inv...
Definition: rbf.cpp:21
bool get_bool() const
The package itself is invalid (e.g. too many transactions).
Required arg.
Valid, transaction was already in the mempool.
Either this tx or a mempool ancestor signals rbf.
CTxMemPool & EnsureMemPool(const NodeContext &node)
Definition: server_util.cpp:30
Provides an interface for creating and interacting with one or two chainstates: an IBD chainstate gen...
Definition: validation.h:827
static RPCHelpMan getmempoolinfo()
Definition: mempool.cpp:689
#define strprintf
Format arguments and return the string or write to given std::ostream (see tinyformat::format doc for...
Definition: tinyformat.h:1162
Unconfirmed tx that does not signal rbf and is not in the mempool.
void CalculateDescendants(txiter it, setEntries &setDescendants) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Populate setDescendants with all in-mempool descendants of hash.
Definition: txmempool.cpp:544
const int64_t m_max_size_bytes
Definition: txmempool.h:440
size_t DynamicMemoryUsage() const
Definition: txmempool.cpp:1045
transaction was missing some of its inputs
#define CHECK_NONFATAL(condition)
Identity function.
Definition: check.h:46
Special type that behaves almost exactly like OBJ, defining an options object with a list of pre-defi...
unsigned long size() const
Definition: txmempool.h:660
UniValue MempoolInfoToJSON(const CTxMemPool &pool)
Mempool information to JSON.
Definition: mempool.cpp:670
uint64_t GetSequence() const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition: txmempool.h:734
bool IsChildWithParentsTree(const Package &package)
Context-free check that a package IsChildWithParents() and none of the parents depend on each other (...
Definition: packages.cpp:92
std::set< txiter, CompareIteratorByHash > setEntries
Definition: txmempool.h:397
void pushKVEnd(std::string key, UniValue val)
Definition: univalue.cpp:118
const bool m_full_rbf
Definition: txmempool.h:448
std::map< uint256, MempoolAcceptResult > m_tx_results
Map from wtxid to finished MempoolAcceptResults.
Definition: validation.h:221
const UniValue & get_array() const
static void entryToJSON(const CTxMemPool &pool, UniValue &info, const CTxMemPoolEntry &e) EXCLUSIVE_LOCKS_REQUIRED(pool.cs)
Definition: mempool.cpp:280
int64_t GetVirtualTransactionSize(int64_t nWeight, int64_t nSigOpCost, unsigned int bytes_per_sigop)
Compute the virtual transaction size (weight reinterpreted as bytes).
Definition: policy.cpp:295
bool DumpMempool(const CTxMemPool &pool, const fs::path &dump_path, FopenFn mockable_fopen_function, bool skip_file_commit)
Int getInt() const
Definition: univalue.h:137
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.
Definition: txmempool.cpp:275
bool LoadMempool(CTxMemPool &pool, const fs::path &load_path, Chainstate &active_chainstate, ImportMempoolOptions &&opts)
Import the file and attempt to add its contents to the mempool.
const std::vector< CTxIn > vin
Definition: transaction.h:305
Invalid, missing or duplicate parameter.
Definition: protocol.h:43
RBFTransactionState
The rbf state of unconfirmed transactions.
Definition: rbf.h:27
CTxMemPoolEntry stores data about the corresponding transaction, as well as data about all in-mempool...
Definition: mempool_entry.h:65
static RPCHelpMan importmempool()
Definition: mempool.cpp:720
int64_t CAmount
Amount in satoshis (Can be negative)
Definition: amount.h:12
const UniValue & find_value(std::string_view key) const
Definition: univalue.cpp:233
std::string oneline_description
Should be empty unless it is supposed to override the auto-generated summary line.
Definition: util.h:150
std::string ToString(const T &t)
Locale-independent version of std::to_string.
Definition: string.h:109
Special type that is a STR with only hex chars.
NodeContext struct containing references to chain state and connection state.
Definition: context.h:48
std::string HelpExampleRpc(const std::string &methodname, const std::string &args)
Definition: util.cpp:161
uint256 ParseHashO(const UniValue &o, std::string strKey)
Definition: util.cpp:86
UniValue JSONRPCError(int code, const std::string &message)
Definition: request.cpp:58
Special string with only hex chars.
ArgsManager & args
Definition: bitcoind.cpp:269
static CAmount AmountFromValue(const UniValue &value)
Definition: bitcoin-tx.cpp:553
Chainstate stores and provides an API to update our local knowledge of the current best chain...
Definition: validation.h:469
static RPCHelpMan submitpackage()
Definition: mempool.cpp:818
Validation result for package mempool acceptance.
Definition: validation.h:212
An input of a transaction.
Definition: transaction.h:74
#define LOCK(cs)
Definition: sync.h:258
const uint256 & GetHash() const
Definition: transaction.h:337
bool empty() const
Definition: univalue.h:68
PackageMempoolAcceptResult ProcessNewPackage(Chainstate &active_chainstate, CTxMemPool &pool, const Package &package, bool test_accept)
Validate (and maybe submit) a package to the mempool.
const CFeeRate m_min_relay_feerate
Definition: txmempool.h:443
const std::string CURRENCY_UNIT
Definition: feerate.h:17
TransactionError BroadcastTransaction(NodeContext &node, const CTransactionRef tx, std::string &err_string, const CAmount &max_tx_fee, bool relay, bool wait_callback)
Submit a transaction to the mempool and (optionally) relay it to all P2P peers.
Definition: transaction.cpp:33
static RPCHelpMan savemempool()
Definition: mempool.cpp:781
Result GetResult() const
Definition: validation.h:124
General application defined errors.
Definition: protocol.h:39
uint64_t GetTotalTxSize() const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition: txmempool.h:666
std::string ToString() const
Definition: uint256.cpp:55
Invalid address or key.
Definition: protocol.h:41
CTxMemPool & EnsureAnyMemPool(const std::any &context)
Definition: server_util.cpp:38
At least one tx is invalid.
static RPCHelpMan getmempooldescendants()
Definition: mempool.cpp:490
const CTransaction * GetConflictTx(const COutPoint &prevout) const EXCLUSIVE_LOCKS_REQUIRED(cs)
Get the transaction in the pool that spends the same prevout.
Definition: txmempool.cpp:962
An outpoint - a combination of a transaction hash and an index n into its vout.
Definition: transaction.h:35
std::string HelpExampleCli(const std::string &methodname, const std::string &args)
Definition: util.cpp:143
std::vector< CTxOut > vout
Definition: transaction.h:382
CFeeRate GetMinFee(size_t sizelimit) const
Definition: txmempool.cpp:1113
static RPCHelpMan sendrawtransaction()
Definition: mempool.cpp:34
bool isNull() const
Definition: univalue.h:78
Special numeric to denote unix epoch time.
#define WITH_LOCK(cs, code)
Run code while locking a mutex.
Definition: sync.h:302
static RPCHelpMan gettxspendingprevout()
Definition: mempool.cpp:588
const CFeeRate m_incremental_relay_feerate
Definition: txmempool.h:442
static RPCHelpMan getmempoolentry()
Definition: mempool.cpp:555
constexpr int64_t count_seconds(std::chrono::seconds t)
Definition: time.h:54
bool GetLoadTried() const
Definition: txmempool.cpp:1222
static CTransactionRef MakeTransactionRef(Tx &&txIn)
Definition: transaction.h:422
Definition: init.h:25
uint256 ParseHashV(const UniValue &v, std::string strName)
Utilities: convert hex-encoded Values (throws error if not hex).
Definition: util.cpp:77
std::string FormatMoney(const CAmount n)
Money parsing/formatting utilities.
Definition: moneystr.cpp:16
PackageValidationState m_state
Definition: validation.h:214
256-bit opaque blob.
Definition: uint256.h:106
Optional argument for which the default value is omitted from help text for one of two reasons: ...
#define EXCLUSIVE_LOCKS_REQUIRED(...)
Definition: threadsafety.h:49
CTxMemPool stores valid-according-to-the-current-best-chain transactions that may be included in the ...
Definition: txmempool.h:301
Special string to represent a floating point amount.
std::set< uint256 > GetUnbroadcastTxs() const
Returns transactions in unbroadcast set.
Definition: txmempool.h:716
void pushKV(std::string key, UniValue val)
Definition: univalue.cpp:126
const CTransaction & GetTx() const
fs::path MempoolPath(const ArgsManager &argsman)
ChainstateManager & EnsureChainman(const NodeContext &node)
Definition: server_util.cpp:70
CAmount GetTotalFee() const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition: txmempool.h:672
const UniValue & get_obj() const
bool IsInitialBlockDownload() const
Check whether we are doing an initial block download (synchronizing from disk or network) ...
#define NONFATAL_UNREACHABLE()
NONFATAL_UNREACHABLE() is a macro that is used to mark unreachable code.
Definition: check.h:90
Special type representing a floating point amount (can be either NUM or STR)
bool DecodeHexTx(CMutableTransaction &tx, const std::string &hex_tx, bool try_no_witness=false, bool try_witness=true)
Definition: core_read.cpp:195
std::string u8string() const
Definition: fs.h:55
std::set< CTxMemPoolEntryRef, CompareIteratorByHash > Children
Definition: mempool_entry.h:71
UniValue ValueFromAmount(const CAmount amount)
Definition: core_write.cpp:26
static RPCHelpMan testmempoolaccept()
Definition: mempool.cpp:103
TransactionError
Definition: error.h:22
Fee rate in satoshis per kilovirtualbyte: CAmount / kvB.
Definition: feerate.h:32
ArgsManager & EnsureAnyArgsman(const std::any &context)
Definition: server_util.cpp:65
#define AssertLockNotHeld(cs)
Definition: sync.h:148
CAmount GetFee(uint32_t num_bytes) const
Return the fee in satoshis for the given vsize in vbytes.
Definition: feerate.cpp:23
A mutable version of CTransaction.
Definition: transaction.h:379
static constexpr MemPoolLimits NoLimits()
size_t size() const
Definition: univalue.h:70
static constexpr uint32_t MAX_PACKAGE_COUNT
Default maximum number of transactions in a package.
Definition: packages.h:17
The basic transaction that is broadcasted on the network and contained in blocks. ...
Definition: transaction.h:294
UniValue JSONRPCTransactionError(TransactionError terr, const std::string &err_string)
Definition: util.cpp:368
Special dictionary with keys that are not literals.
std::string GetRejectReason() const
Definition: validation.h:125
Still downloading initial blocks.
Definition: protocol.h:59
static path u8path(const std::string &utf8_str)
Definition: fs.h:70
static const CFeeRate DEFAULT_MAX_RAW_TX_FEE_RATE
Maximum fee rate for sendrawtransaction and testmempoolaccept RPC calls.
Definition: transaction.h:27
COutPoint prevout
Definition: transaction.h:77
Initial value. The package has not yet been rejected.
Path class wrapper to block calls to the fs::path(std::string) implicit constructor and the fs::path:...
Definition: fs.h:30
RecursiveMutex cs_main
Mutex to guard access to validation specific variables, such as reading or changing the chainstate...
Definition: cs_main.cpp:8
CAmount GetFeePerK() const
Return the fee in satoshis for a vsize of 1000 vbytes.
Definition: feerate.h:65
Wrapper for UniValue::VType, which includes typeAny: Used to denote don&#39;t care type.
Definition: util.h:75
SnapshotCompletionResult MaybeCompleteSnapshotValidation() EXCLUSIVE_LOCKS_REQUIRED(const CBlockIndex *GetSnapshotBaseBlock() const EXCLUSIVE_LOCKS_REQUIRED(Chainstate ActiveChainstate)() const
Once the background validation chainstate has reached the height which is the base of the UTXO snapsh...
Definition: validation.h:1043
static GenTxid Txid(const uint256 &hash)
Definition: transaction.h:432
std::vector< CTxMemPoolEntryRef > entryAll() const EXCLUSIVE_LOCKS_REQUIRED(cs)
Definition: txmempool.cpp:839
NodeContext & EnsureAnyNodeContext(const std::any &context)
Definition: server_util.cpp:21
RecursiveMutex cs
This mutex needs to be locked when accessing mapTx or other members that are guarded by it...
Definition: txmempool.h:391
Error parsing or validating structure in raw format.
Definition: protocol.h:45
static std::vector< RPCResult > MempoolEntryDescription()
Definition: mempool.cpp:252
MempoolAcceptResult ProcessTransaction(const CTransactionRef &tx, bool test_accept=false) EXCLUSIVE_LOCKS_REQUIRED(cs_main)
Try to add a transaction to the memory pool.
uint256 hash
Definition: transaction.h:38