Bitcoin Core  28.1.0
P2P Digital Currency
bitcoin-tx.cpp
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1 // Copyright (c) 2009-2022 The Bitcoin Core developers
2 // Distributed under the MIT software license, see the accompanying
3 // file COPYING or http://www.opensource.org/licenses/mit-license.php.
4 
5 #include <config/bitcoin-config.h> // IWYU pragma: keep
6 
7 #include <chainparamsbase.h>
8 #include <clientversion.h>
9 #include <coins.h>
10 #include <common/args.h>
11 #include <common/system.h>
12 #include <compat/compat.h>
13 #include <consensus/amount.h>
14 #include <consensus/consensus.h>
15 #include <core_io.h>
16 #include <key_io.h>
17 #include <policy/policy.h>
18 #include <primitives/transaction.h>
19 #include <script/script.h>
20 #include <script/sign.h>
21 #include <script/signingprovider.h>
22 #include <univalue.h>
23 #include <util/exception.h>
24 #include <util/fs.h>
25 #include <util/moneystr.h>
26 #include <util/rbf.h>
27 #include <util/strencodings.h>
28 #include <util/string.h>
29 #include <util/translation.h>
30 
31 #include <cstdio>
32 #include <functional>
33 #include <memory>
34 
35 using util::SplitString;
36 using util::ToString;
37 using util::TrimString;
39 
40 static bool fCreateBlank;
41 static std::map<std::string,UniValue> registers;
42 static const int CONTINUE_EXECUTION=-1;
43 
44 const std::function<std::string(const char*)> G_TRANSLATION_FUN = nullptr;
45 
46 static void SetupBitcoinTxArgs(ArgsManager &argsman)
47 {
48  SetupHelpOptions(argsman);
49 
50  argsman.AddArg("-version", "Print version and exit", ArgsManager::ALLOW_ANY, OptionsCategory::OPTIONS);
51  argsman.AddArg("-create", "Create new, empty TX.", ArgsManager::ALLOW_ANY, OptionsCategory::OPTIONS);
52  argsman.AddArg("-json", "Select JSON output", ArgsManager::ALLOW_ANY, OptionsCategory::OPTIONS);
53  argsman.AddArg("-txid", "Output only the hex-encoded transaction id of the resultant transaction.", ArgsManager::ALLOW_ANY, OptionsCategory::OPTIONS);
55 
56  argsman.AddArg("delin=N", "Delete input N from TX", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
57  argsman.AddArg("delout=N", "Delete output N from TX", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
58  argsman.AddArg("in=TXID:VOUT(:SEQUENCE_NUMBER)", "Add input to TX", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
59  argsman.AddArg("locktime=N", "Set TX lock time to N", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
60  argsman.AddArg("nversion=N", "Set TX version to N", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
61  argsman.AddArg("outaddr=VALUE:ADDRESS", "Add address-based output to TX", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
62  argsman.AddArg("outdata=[VALUE:]DATA", "Add data-based output to TX", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
63  argsman.AddArg("outmultisig=VALUE:REQUIRED:PUBKEYS:PUBKEY1:PUBKEY2:....[:FLAGS]", "Add Pay To n-of-m Multi-sig output to TX. n = REQUIRED, m = PUBKEYS. "
64  "Optionally add the \"W\" flag to produce a pay-to-witness-script-hash output. "
65  "Optionally add the \"S\" flag to wrap the output in a pay-to-script-hash.", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
66  argsman.AddArg("outpubkey=VALUE:PUBKEY[:FLAGS]", "Add pay-to-pubkey output to TX. "
67  "Optionally add the \"W\" flag to produce a pay-to-witness-pubkey-hash output. "
68  "Optionally add the \"S\" flag to wrap the output in a pay-to-script-hash.", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
69  argsman.AddArg("outscript=VALUE:SCRIPT[:FLAGS]", "Add raw script output to TX. "
70  "Optionally add the \"W\" flag to produce a pay-to-witness-script-hash output. "
71  "Optionally add the \"S\" flag to wrap the output in a pay-to-script-hash.", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
72  argsman.AddArg("replaceable(=N)", "Sets Replace-By-Fee (RBF) opt-in sequence number for input N. "
73  "If N is not provided, the command attempts to opt-in all available inputs for RBF. "
74  "If the transaction has no inputs, this option is ignored.", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
75  argsman.AddArg("sign=SIGHASH-FLAGS", "Add zero or more signatures to transaction. "
76  "This command requires JSON registers:"
77  "prevtxs=JSON object, "
78  "privatekeys=JSON object. "
79  "See signrawtransactionwithkey docs for format of sighash flags, JSON objects.", ArgsManager::ALLOW_ANY, OptionsCategory::COMMANDS);
80 
81  argsman.AddArg("load=NAME:FILENAME", "Load JSON file FILENAME into register NAME", ArgsManager::ALLOW_ANY, OptionsCategory::REGISTER_COMMANDS);
82  argsman.AddArg("set=NAME:JSON-STRING", "Set register NAME to given JSON-STRING", ArgsManager::ALLOW_ANY, OptionsCategory::REGISTER_COMMANDS);
83 }
84 
85 //
86 // This function returns either one of EXIT_ codes when it's expected to stop the process or
87 // CONTINUE_EXECUTION when it's expected to continue further.
88 //
89 static int AppInitRawTx(int argc, char* argv[])
90 {
92  std::string error;
93  if (!gArgs.ParseParameters(argc, argv, error)) {
94  tfm::format(std::cerr, "Error parsing command line arguments: %s\n", error);
95  return EXIT_FAILURE;
96  }
97 
98  // Check for chain settings (Params() calls are only valid after this clause)
99  try {
101  } catch (const std::exception& e) {
102  tfm::format(std::cerr, "Error: %s\n", e.what());
103  return EXIT_FAILURE;
104  }
105 
106  fCreateBlank = gArgs.GetBoolArg("-create", false);
107 
108  if (argc < 2 || HelpRequested(gArgs) || gArgs.IsArgSet("-version")) {
109  // First part of help message is specific to this utility
110  std::string strUsage = PACKAGE_NAME " bitcoin-tx utility version " + FormatFullVersion() + "\n";
111 
112  if (gArgs.IsArgSet("-version")) {
113  strUsage += FormatParagraph(LicenseInfo());
114  } else {
115  strUsage += "\n"
116  "Usage: bitcoin-tx [options] <hex-tx> [commands] Update hex-encoded bitcoin transaction\n"
117  "or: bitcoin-tx [options] -create [commands] Create hex-encoded bitcoin transaction\n"
118  "\n";
119  strUsage += gArgs.GetHelpMessage();
120  }
121 
122  tfm::format(std::cout, "%s", strUsage);
123 
124  if (argc < 2) {
125  tfm::format(std::cerr, "Error: too few parameters\n");
126  return EXIT_FAILURE;
127  }
128  return EXIT_SUCCESS;
129  }
130  return CONTINUE_EXECUTION;
131 }
132 
133 static void RegisterSetJson(const std::string& key, const std::string& rawJson)
134 {
135  UniValue val;
136  if (!val.read(rawJson)) {
137  std::string strErr = "Cannot parse JSON for key " + key;
138  throw std::runtime_error(strErr);
139  }
140 
141  registers[key] = val;
142 }
143 
144 static void RegisterSet(const std::string& strInput)
145 {
146  // separate NAME:VALUE in string
147  size_t pos = strInput.find(':');
148  if ((pos == std::string::npos) ||
149  (pos == 0) ||
150  (pos == (strInput.size() - 1)))
151  throw std::runtime_error("Register input requires NAME:VALUE");
152 
153  std::string key = strInput.substr(0, pos);
154  std::string valStr = strInput.substr(pos + 1, std::string::npos);
155 
156  RegisterSetJson(key, valStr);
157 }
158 
159 static void RegisterLoad(const std::string& strInput)
160 {
161  // separate NAME:FILENAME in string
162  size_t pos = strInput.find(':');
163  if ((pos == std::string::npos) ||
164  (pos == 0) ||
165  (pos == (strInput.size() - 1)))
166  throw std::runtime_error("Register load requires NAME:FILENAME");
167 
168  std::string key = strInput.substr(0, pos);
169  std::string filename = strInput.substr(pos + 1, std::string::npos);
170 
171  FILE *f = fsbridge::fopen(filename.c_str(), "r");
172  if (!f) {
173  std::string strErr = "Cannot open file " + filename;
174  throw std::runtime_error(strErr);
175  }
176 
177  // load file chunks into one big buffer
178  std::string valStr;
179  while ((!feof(f)) && (!ferror(f))) {
180  char buf[4096];
181  int bread = fread(buf, 1, sizeof(buf), f);
182  if (bread <= 0)
183  break;
184 
185  valStr.insert(valStr.size(), buf, bread);
186  }
187 
188  int error = ferror(f);
189  fclose(f);
190 
191  if (error) {
192  std::string strErr = "Error reading file " + filename;
193  throw std::runtime_error(strErr);
194  }
195 
196  // evaluate as JSON buffer register
197  RegisterSetJson(key, valStr);
198 }
199 
200 static CAmount ExtractAndValidateValue(const std::string& strValue)
201 {
202  if (std::optional<CAmount> parsed = ParseMoney(strValue)) {
203  return parsed.value();
204  } else {
205  throw std::runtime_error("invalid TX output value");
206  }
207 }
208 
209 static void MutateTxVersion(CMutableTransaction& tx, const std::string& cmdVal)
210 {
211  uint32_t newVersion;
212  if (!ParseUInt32(cmdVal, &newVersion) || newVersion < 1 || newVersion > TX_MAX_STANDARD_VERSION) {
213  throw std::runtime_error("Invalid TX version requested: '" + cmdVal + "'");
214  }
215 
216  tx.version = newVersion;
217 }
218 
219 static void MutateTxLocktime(CMutableTransaction& tx, const std::string& cmdVal)
220 {
221  int64_t newLocktime;
222  if (!ParseInt64(cmdVal, &newLocktime) || newLocktime < 0LL || newLocktime > 0xffffffffLL)
223  throw std::runtime_error("Invalid TX locktime requested: '" + cmdVal + "'");
224 
225  tx.nLockTime = (unsigned int) newLocktime;
226 }
227 
228 static void MutateTxRBFOptIn(CMutableTransaction& tx, const std::string& strInIdx)
229 {
230  // parse requested index
231  int64_t inIdx = -1;
232  if (strInIdx != "" && (!ParseInt64(strInIdx, &inIdx) || inIdx < 0 || inIdx >= static_cast<int64_t>(tx.vin.size()))) {
233  throw std::runtime_error("Invalid TX input index '" + strInIdx + "'");
234  }
235 
236  // set the nSequence to MAX_INT - 2 (= RBF opt in flag)
237  int cnt = 0;
238  for (CTxIn& txin : tx.vin) {
239  if (strInIdx == "" || cnt == inIdx) {
240  if (txin.nSequence > MAX_BIP125_RBF_SEQUENCE) {
242  }
243  }
244  ++cnt;
245  }
246 }
247 
248 template <typename T>
249 static T TrimAndParse(const std::string& int_str, const std::string& err)
250 {
251  const auto parsed{ToIntegral<T>(TrimStringView(int_str))};
252  if (!parsed.has_value()) {
253  throw std::runtime_error(err + " '" + int_str + "'");
254  }
255  return parsed.value();
256 }
257 
258 static void MutateTxAddInput(CMutableTransaction& tx, const std::string& strInput)
259 {
260  std::vector<std::string> vStrInputParts = SplitString(strInput, ':');
261 
262  // separate TXID:VOUT in string
263  if (vStrInputParts.size()<2)
264  throw std::runtime_error("TX input missing separator");
265 
266  // extract and validate TXID
267  auto txid{Txid::FromHex(vStrInputParts[0])};
268  if (!txid) {
269  throw std::runtime_error("invalid TX input txid");
270  }
271 
272  static const unsigned int minTxOutSz = 9;
273  static const unsigned int maxVout = MAX_BLOCK_WEIGHT / (WITNESS_SCALE_FACTOR * minTxOutSz);
274 
275  // extract and validate vout
276  const std::string& strVout = vStrInputParts[1];
277  int64_t vout;
278  if (!ParseInt64(strVout, &vout) || vout < 0 || vout > static_cast<int64_t>(maxVout))
279  throw std::runtime_error("invalid TX input vout '" + strVout + "'");
280 
281  // extract the optional sequence number
282  uint32_t nSequenceIn = CTxIn::SEQUENCE_FINAL;
283  if (vStrInputParts.size() > 2) {
284  nSequenceIn = TrimAndParse<uint32_t>(vStrInputParts.at(2), "invalid TX sequence id");
285  }
286 
287  // append to transaction input list
288  CTxIn txin(*txid, vout, CScript(), nSequenceIn);
289  tx.vin.push_back(txin);
290 }
291 
292 static void MutateTxAddOutAddr(CMutableTransaction& tx, const std::string& strInput)
293 {
294  // Separate into VALUE:ADDRESS
295  std::vector<std::string> vStrInputParts = SplitString(strInput, ':');
296 
297  if (vStrInputParts.size() != 2)
298  throw std::runtime_error("TX output missing or too many separators");
299 
300  // Extract and validate VALUE
301  CAmount value = ExtractAndValidateValue(vStrInputParts[0]);
302 
303  // extract and validate ADDRESS
304  std::string strAddr = vStrInputParts[1];
305  CTxDestination destination = DecodeDestination(strAddr);
306  if (!IsValidDestination(destination)) {
307  throw std::runtime_error("invalid TX output address");
308  }
309  CScript scriptPubKey = GetScriptForDestination(destination);
310 
311  // construct TxOut, append to transaction output list
312  CTxOut txout(value, scriptPubKey);
313  tx.vout.push_back(txout);
314 }
315 
316 static void MutateTxAddOutPubKey(CMutableTransaction& tx, const std::string& strInput)
317 {
318  // Separate into VALUE:PUBKEY[:FLAGS]
319  std::vector<std::string> vStrInputParts = SplitString(strInput, ':');
320 
321  if (vStrInputParts.size() < 2 || vStrInputParts.size() > 3)
322  throw std::runtime_error("TX output missing or too many separators");
323 
324  // Extract and validate VALUE
325  CAmount value = ExtractAndValidateValue(vStrInputParts[0]);
326 
327  // Extract and validate PUBKEY
328  CPubKey pubkey(ParseHex(vStrInputParts[1]));
329  if (!pubkey.IsFullyValid())
330  throw std::runtime_error("invalid TX output pubkey");
331  CScript scriptPubKey = GetScriptForRawPubKey(pubkey);
332 
333  // Extract and validate FLAGS
334  bool bSegWit = false;
335  bool bScriptHash = false;
336  if (vStrInputParts.size() == 3) {
337  std::string flags = vStrInputParts[2];
338  bSegWit = (flags.find('W') != std::string::npos);
339  bScriptHash = (flags.find('S') != std::string::npos);
340  }
341 
342  if (bSegWit) {
343  if (!pubkey.IsCompressed()) {
344  throw std::runtime_error("Uncompressed pubkeys are not useable for SegWit outputs");
345  }
346  // Build a P2WPKH script
347  scriptPubKey = GetScriptForDestination(WitnessV0KeyHash(pubkey));
348  }
349  if (bScriptHash) {
350  // Get the ID for the script, and then construct a P2SH destination for it.
351  scriptPubKey = GetScriptForDestination(ScriptHash(scriptPubKey));
352  }
353 
354  // construct TxOut, append to transaction output list
355  CTxOut txout(value, scriptPubKey);
356  tx.vout.push_back(txout);
357 }
358 
359 static void MutateTxAddOutMultiSig(CMutableTransaction& tx, const std::string& strInput)
360 {
361  // Separate into VALUE:REQUIRED:NUMKEYS:PUBKEY1:PUBKEY2:....[:FLAGS]
362  std::vector<std::string> vStrInputParts = SplitString(strInput, ':');
363 
364  // Check that there are enough parameters
365  if (vStrInputParts.size()<3)
366  throw std::runtime_error("Not enough multisig parameters");
367 
368  // Extract and validate VALUE
369  CAmount value = ExtractAndValidateValue(vStrInputParts[0]);
370 
371  // Extract REQUIRED
372  const uint32_t required{TrimAndParse<uint32_t>(vStrInputParts.at(1), "invalid multisig required number")};
373 
374  // Extract NUMKEYS
375  const uint32_t numkeys{TrimAndParse<uint32_t>(vStrInputParts.at(2), "invalid multisig total number")};
376 
377  // Validate there are the correct number of pubkeys
378  if (vStrInputParts.size() < numkeys + 3)
379  throw std::runtime_error("incorrect number of multisig pubkeys");
380 
381  if (required < 1 || required > MAX_PUBKEYS_PER_MULTISIG || numkeys < 1 || numkeys > MAX_PUBKEYS_PER_MULTISIG || numkeys < required)
382  throw std::runtime_error("multisig parameter mismatch. Required " \
383  + ToString(required) + " of " + ToString(numkeys) + "signatures.");
384 
385  // extract and validate PUBKEYs
386  std::vector<CPubKey> pubkeys;
387  for(int pos = 1; pos <= int(numkeys); pos++) {
388  CPubKey pubkey(ParseHex(vStrInputParts[pos + 2]));
389  if (!pubkey.IsFullyValid())
390  throw std::runtime_error("invalid TX output pubkey");
391  pubkeys.push_back(pubkey);
392  }
393 
394  // Extract FLAGS
395  bool bSegWit = false;
396  bool bScriptHash = false;
397  if (vStrInputParts.size() == numkeys + 4) {
398  std::string flags = vStrInputParts.back();
399  bSegWit = (flags.find('W') != std::string::npos);
400  bScriptHash = (flags.find('S') != std::string::npos);
401  }
402  else if (vStrInputParts.size() > numkeys + 4) {
403  // Validate that there were no more parameters passed
404  throw std::runtime_error("Too many parameters");
405  }
406 
407  CScript scriptPubKey = GetScriptForMultisig(required, pubkeys);
408 
409  if (bSegWit) {
410  for (const CPubKey& pubkey : pubkeys) {
411  if (!pubkey.IsCompressed()) {
412  throw std::runtime_error("Uncompressed pubkeys are not useable for SegWit outputs");
413  }
414  }
415  // Build a P2WSH with the multisig script
416  scriptPubKey = GetScriptForDestination(WitnessV0ScriptHash(scriptPubKey));
417  }
418  if (bScriptHash) {
419  if (scriptPubKey.size() > MAX_SCRIPT_ELEMENT_SIZE) {
420  throw std::runtime_error(strprintf(
421  "redeemScript exceeds size limit: %d > %d", scriptPubKey.size(), MAX_SCRIPT_ELEMENT_SIZE));
422  }
423  // Get the ID for the script, and then construct a P2SH destination for it.
424  scriptPubKey = GetScriptForDestination(ScriptHash(scriptPubKey));
425  }
426 
427  // construct TxOut, append to transaction output list
428  CTxOut txout(value, scriptPubKey);
429  tx.vout.push_back(txout);
430 }
431 
432 static void MutateTxAddOutData(CMutableTransaction& tx, const std::string& strInput)
433 {
434  CAmount value = 0;
435 
436  // separate [VALUE:]DATA in string
437  size_t pos = strInput.find(':');
438 
439  if (pos==0)
440  throw std::runtime_error("TX output value not specified");
441 
442  if (pos == std::string::npos) {
443  pos = 0;
444  } else {
445  // Extract and validate VALUE
446  value = ExtractAndValidateValue(strInput.substr(0, pos));
447  ++pos;
448  }
449 
450  // extract and validate DATA
451  const std::string strData{strInput.substr(pos, std::string::npos)};
452 
453  if (!IsHex(strData))
454  throw std::runtime_error("invalid TX output data");
455 
456  std::vector<unsigned char> data = ParseHex(strData);
457 
458  CTxOut txout(value, CScript() << OP_RETURN << data);
459  tx.vout.push_back(txout);
460 }
461 
462 static void MutateTxAddOutScript(CMutableTransaction& tx, const std::string& strInput)
463 {
464  // separate VALUE:SCRIPT[:FLAGS]
465  std::vector<std::string> vStrInputParts = SplitString(strInput, ':');
466  if (vStrInputParts.size() < 2)
467  throw std::runtime_error("TX output missing separator");
468 
469  // Extract and validate VALUE
470  CAmount value = ExtractAndValidateValue(vStrInputParts[0]);
471 
472  // extract and validate script
473  std::string strScript = vStrInputParts[1];
474  CScript scriptPubKey = ParseScript(strScript);
475 
476  // Extract FLAGS
477  bool bSegWit = false;
478  bool bScriptHash = false;
479  if (vStrInputParts.size() == 3) {
480  std::string flags = vStrInputParts.back();
481  bSegWit = (flags.find('W') != std::string::npos);
482  bScriptHash = (flags.find('S') != std::string::npos);
483  }
484 
485  if (scriptPubKey.size() > MAX_SCRIPT_SIZE) {
486  throw std::runtime_error(strprintf(
487  "script exceeds size limit: %d > %d", scriptPubKey.size(), MAX_SCRIPT_SIZE));
488  }
489 
490  if (bSegWit) {
491  scriptPubKey = GetScriptForDestination(WitnessV0ScriptHash(scriptPubKey));
492  }
493  if (bScriptHash) {
494  if (scriptPubKey.size() > MAX_SCRIPT_ELEMENT_SIZE) {
495  throw std::runtime_error(strprintf(
496  "redeemScript exceeds size limit: %d > %d", scriptPubKey.size(), MAX_SCRIPT_ELEMENT_SIZE));
497  }
498  scriptPubKey = GetScriptForDestination(ScriptHash(scriptPubKey));
499  }
500 
501  // construct TxOut, append to transaction output list
502  CTxOut txout(value, scriptPubKey);
503  tx.vout.push_back(txout);
504 }
505 
506 static void MutateTxDelInput(CMutableTransaction& tx, const std::string& strInIdx)
507 {
508  // parse requested deletion index
509  int64_t inIdx;
510  if (!ParseInt64(strInIdx, &inIdx) || inIdx < 0 || inIdx >= static_cast<int64_t>(tx.vin.size())) {
511  throw std::runtime_error("Invalid TX input index '" + strInIdx + "'");
512  }
513 
514  // delete input from transaction
515  tx.vin.erase(tx.vin.begin() + inIdx);
516 }
517 
518 static void MutateTxDelOutput(CMutableTransaction& tx, const std::string& strOutIdx)
519 {
520  // parse requested deletion index
521  int64_t outIdx;
522  if (!ParseInt64(strOutIdx, &outIdx) || outIdx < 0 || outIdx >= static_cast<int64_t>(tx.vout.size())) {
523  throw std::runtime_error("Invalid TX output index '" + strOutIdx + "'");
524  }
525 
526  // delete output from transaction
527  tx.vout.erase(tx.vout.begin() + outIdx);
528 }
529 
530 static const unsigned int N_SIGHASH_OPTS = 7;
531 static const struct {
532  const char *flagStr;
533  int flags;
535  {"DEFAULT", SIGHASH_DEFAULT},
536  {"ALL", SIGHASH_ALL},
537  {"NONE", SIGHASH_NONE},
538  {"SINGLE", SIGHASH_SINGLE},
539  {"ALL|ANYONECANPAY", SIGHASH_ALL|SIGHASH_ANYONECANPAY},
540  {"NONE|ANYONECANPAY", SIGHASH_NONE|SIGHASH_ANYONECANPAY},
541  {"SINGLE|ANYONECANPAY", SIGHASH_SINGLE|SIGHASH_ANYONECANPAY},
542 };
543 
544 static bool findSighashFlags(int& flags, const std::string& flagStr)
545 {
546  flags = 0;
547 
548  for (unsigned int i = 0; i < N_SIGHASH_OPTS; i++) {
549  if (flagStr == sighashOptions[i].flagStr) {
550  flags = sighashOptions[i].flags;
551  return true;
552  }
553  }
554 
555  return false;
556 }
557 
558 static CAmount AmountFromValue(const UniValue& value)
559 {
560  if (!value.isNum() && !value.isStr())
561  throw std::runtime_error("Amount is not a number or string");
562  CAmount amount;
563  if (!ParseFixedPoint(value.getValStr(), 8, &amount))
564  throw std::runtime_error("Invalid amount");
565  if (!MoneyRange(amount))
566  throw std::runtime_error("Amount out of range");
567  return amount;
568 }
569 
570 static std::vector<unsigned char> ParseHexUV(const UniValue& v, const std::string& strName)
571 {
572  std::string strHex;
573  if (v.isStr())
574  strHex = v.getValStr();
575  if (!IsHex(strHex))
576  throw std::runtime_error(strName + " must be hexadecimal string (not '" + strHex + "')");
577  return ParseHex(strHex);
578 }
579 
580 static void MutateTxSign(CMutableTransaction& tx, const std::string& flagStr)
581 {
582  int nHashType = SIGHASH_ALL;
583 
584  if (flagStr.size() > 0)
585  if (!findSighashFlags(nHashType, flagStr))
586  throw std::runtime_error("unknown sighash flag/sign option");
587 
588  // mergedTx will end up with all the signatures; it
589  // starts as a clone of the raw tx:
590  CMutableTransaction mergedTx{tx};
591  const CMutableTransaction txv{tx};
592  CCoinsView viewDummy;
593  CCoinsViewCache view(&viewDummy);
594 
595  if (!registers.count("privatekeys"))
596  throw std::runtime_error("privatekeys register variable must be set.");
597  FillableSigningProvider tempKeystore;
598  UniValue keysObj = registers["privatekeys"];
599 
600  for (unsigned int kidx = 0; kidx < keysObj.size(); kidx++) {
601  if (!keysObj[kidx].isStr())
602  throw std::runtime_error("privatekey not a std::string");
603  CKey key = DecodeSecret(keysObj[kidx].getValStr());
604  if (!key.IsValid()) {
605  throw std::runtime_error("privatekey not valid");
606  }
607  tempKeystore.AddKey(key);
608  }
609 
610  // Add previous txouts given in the RPC call:
611  if (!registers.count("prevtxs"))
612  throw std::runtime_error("prevtxs register variable must be set.");
613  UniValue prevtxsObj = registers["prevtxs"];
614  {
615  for (unsigned int previdx = 0; previdx < prevtxsObj.size(); previdx++) {
616  const UniValue& prevOut = prevtxsObj[previdx];
617  if (!prevOut.isObject())
618  throw std::runtime_error("expected prevtxs internal object");
619 
620  std::map<std::string, UniValue::VType> types = {
621  {"txid", UniValue::VSTR},
622  {"vout", UniValue::VNUM},
623  {"scriptPubKey", UniValue::VSTR},
624  };
625  if (!prevOut.checkObject(types))
626  throw std::runtime_error("prevtxs internal object typecheck fail");
627 
628  auto txid{Txid::FromHex(prevOut["txid"].get_str())};
629  if (!txid) {
630  throw std::runtime_error("txid must be hexadecimal string (not '" + prevOut["txid"].get_str() + "')");
631  }
632 
633  const int nOut = prevOut["vout"].getInt<int>();
634  if (nOut < 0)
635  throw std::runtime_error("vout cannot be negative");
636 
637  COutPoint out(*txid, nOut);
638  std::vector<unsigned char> pkData(ParseHexUV(prevOut["scriptPubKey"], "scriptPubKey"));
639  CScript scriptPubKey(pkData.begin(), pkData.end());
640 
641  {
642  const Coin& coin = view.AccessCoin(out);
643  if (!coin.IsSpent() && coin.out.scriptPubKey != scriptPubKey) {
644  std::string err("Previous output scriptPubKey mismatch:\n");
645  err = err + ScriptToAsmStr(coin.out.scriptPubKey) + "\nvs:\n"+
646  ScriptToAsmStr(scriptPubKey);
647  throw std::runtime_error(err);
648  }
649  Coin newcoin;
650  newcoin.out.scriptPubKey = scriptPubKey;
651  newcoin.out.nValue = MAX_MONEY;
652  if (prevOut.exists("amount")) {
653  newcoin.out.nValue = AmountFromValue(prevOut["amount"]);
654  }
655  newcoin.nHeight = 1;
656  view.AddCoin(out, std::move(newcoin), true);
657  }
658 
659  // if redeemScript given and private keys given,
660  // add redeemScript to the tempKeystore so it can be signed:
661  if ((scriptPubKey.IsPayToScriptHash() || scriptPubKey.IsPayToWitnessScriptHash()) &&
662  prevOut.exists("redeemScript")) {
663  UniValue v = prevOut["redeemScript"];
664  std::vector<unsigned char> rsData(ParseHexUV(v, "redeemScript"));
665  CScript redeemScript(rsData.begin(), rsData.end());
666  tempKeystore.AddCScript(redeemScript);
667  }
668  }
669  }
670 
671  const FillableSigningProvider& keystore = tempKeystore;
672 
673  bool fHashSingle = ((nHashType & ~SIGHASH_ANYONECANPAY) == SIGHASH_SINGLE);
674 
675  // Sign what we can:
676  for (unsigned int i = 0; i < mergedTx.vin.size(); i++) {
677  CTxIn& txin = mergedTx.vin[i];
678  const Coin& coin = view.AccessCoin(txin.prevout);
679  if (coin.IsSpent()) {
680  continue;
681  }
682  const CScript& prevPubKey = coin.out.scriptPubKey;
683  const CAmount& amount = coin.out.nValue;
684 
685  SignatureData sigdata = DataFromTransaction(mergedTx, i, coin.out);
686  // Only sign SIGHASH_SINGLE if there's a corresponding output:
687  if (!fHashSingle || (i < mergedTx.vout.size()))
688  ProduceSignature(keystore, MutableTransactionSignatureCreator(mergedTx, i, amount, nHashType), prevPubKey, sigdata);
689 
690  if (amount == MAX_MONEY && !sigdata.scriptWitness.IsNull()) {
691  throw std::runtime_error(strprintf("Missing amount for CTxOut with scriptPubKey=%s", HexStr(prevPubKey)));
692  }
693 
694  UpdateInput(txin, sigdata);
695  }
696 
697  tx = mergedTx;
698 }
699 
700 static void MutateTx(CMutableTransaction& tx, const std::string& command,
701  const std::string& commandVal)
702 {
703  std::unique_ptr<ECC_Context> ecc;
704 
705  if (command == "nversion")
706  MutateTxVersion(tx, commandVal);
707  else if (command == "locktime")
708  MutateTxLocktime(tx, commandVal);
709  else if (command == "replaceable") {
710  MutateTxRBFOptIn(tx, commandVal);
711  }
712 
713  else if (command == "delin")
714  MutateTxDelInput(tx, commandVal);
715  else if (command == "in")
716  MutateTxAddInput(tx, commandVal);
717 
718  else if (command == "delout")
719  MutateTxDelOutput(tx, commandVal);
720  else if (command == "outaddr")
721  MutateTxAddOutAddr(tx, commandVal);
722  else if (command == "outpubkey") {
723  ecc.reset(new ECC_Context());
724  MutateTxAddOutPubKey(tx, commandVal);
725  } else if (command == "outmultisig") {
726  ecc.reset(new ECC_Context());
727  MutateTxAddOutMultiSig(tx, commandVal);
728  } else if (command == "outscript")
729  MutateTxAddOutScript(tx, commandVal);
730  else if (command == "outdata")
731  MutateTxAddOutData(tx, commandVal);
732 
733  else if (command == "sign") {
734  ecc.reset(new ECC_Context());
735  MutateTxSign(tx, commandVal);
736  }
737 
738  else if (command == "load")
739  RegisterLoad(commandVal);
740 
741  else if (command == "set")
742  RegisterSet(commandVal);
743 
744  else
745  throw std::runtime_error("unknown command");
746 }
747 
748 static void OutputTxJSON(const CTransaction& tx)
749 {
750  UniValue entry(UniValue::VOBJ);
751  TxToUniv(tx, /*block_hash=*/uint256(), entry);
752 
753  std::string jsonOutput = entry.write(4);
754  tfm::format(std::cout, "%s\n", jsonOutput);
755 }
756 
757 static void OutputTxHash(const CTransaction& tx)
758 {
759  std::string strHexHash = tx.GetHash().GetHex(); // the hex-encoded transaction hash (aka the transaction id)
760 
761  tfm::format(std::cout, "%s\n", strHexHash);
762 }
763 
764 static void OutputTxHex(const CTransaction& tx)
765 {
766  std::string strHex = EncodeHexTx(tx);
767 
768  tfm::format(std::cout, "%s\n", strHex);
769 }
770 
771 static void OutputTx(const CTransaction& tx)
772 {
773  if (gArgs.GetBoolArg("-json", false))
774  OutputTxJSON(tx);
775  else if (gArgs.GetBoolArg("-txid", false))
776  OutputTxHash(tx);
777  else
778  OutputTxHex(tx);
779 }
780 
781 static std::string readStdin()
782 {
783  char buf[4096];
784  std::string ret;
785 
786  while (!feof(stdin)) {
787  size_t bread = fread(buf, 1, sizeof(buf), stdin);
788  ret.append(buf, bread);
789  if (bread < sizeof(buf))
790  break;
791  }
792 
793  if (ferror(stdin))
794  throw std::runtime_error("error reading stdin");
795 
796  return TrimString(ret);
797 }
798 
799 static int CommandLineRawTx(int argc, char* argv[])
800 {
801  std::string strPrint;
802  int nRet = 0;
803  try {
804  // Skip switches; Permit common stdin convention "-"
805  while (argc > 1 && IsSwitchChar(argv[1][0]) &&
806  (argv[1][1] != 0)) {
807  argc--;
808  argv++;
809  }
810 
812  int startArg;
813 
814  if (!fCreateBlank) {
815  // require at least one param
816  if (argc < 2)
817  throw std::runtime_error("too few parameters");
818 
819  // param: hex-encoded bitcoin transaction
820  std::string strHexTx(argv[1]);
821  if (strHexTx == "-") // "-" implies standard input
822  strHexTx = readStdin();
823 
824  if (!DecodeHexTx(tx, strHexTx, true))
825  throw std::runtime_error("invalid transaction encoding");
826 
827  startArg = 2;
828  } else
829  startArg = 1;
830 
831  for (int i = startArg; i < argc; i++) {
832  std::string arg = argv[i];
833  std::string key, value;
834  size_t eqpos = arg.find('=');
835  if (eqpos == std::string::npos)
836  key = arg;
837  else {
838  key = arg.substr(0, eqpos);
839  value = arg.substr(eqpos + 1);
840  }
841 
842  MutateTx(tx, key, value);
843  }
844 
845  OutputTx(CTransaction(tx));
846  }
847  catch (const std::exception& e) {
848  strPrint = std::string("error: ") + e.what();
849  nRet = EXIT_FAILURE;
850  }
851  catch (...) {
852  PrintExceptionContinue(nullptr, "CommandLineRawTx()");
853  throw;
854  }
855 
856  if (strPrint != "") {
857  tfm::format(nRet == 0 ? std::cout : std::cerr, "%s\n", strPrint);
858  }
859  return nRet;
860 }
861 
863 {
865 
866  try {
867  int ret = AppInitRawTx(argc, argv);
868  if (ret != CONTINUE_EXECUTION)
869  return ret;
870  }
871  catch (const std::exception& e) {
872  PrintExceptionContinue(&e, "AppInitRawTx()");
873  return EXIT_FAILURE;
874  } catch (...) {
875  PrintExceptionContinue(nullptr, "AppInitRawTx()");
876  return EXIT_FAILURE;
877  }
878 
879  int ret = EXIT_FAILURE;
880  try {
881  ret = CommandLineRawTx(argc, argv);
882  }
883  catch (const std::exception& e) {
884  PrintExceptionContinue(&e, "CommandLineRawTx()");
885  } catch (...) {
886  PrintExceptionContinue(nullptr, "CommandLineRawTx()");
887  }
888  return ret;
889 }
CAmount nValue
Definition: transaction.h:152
static void MutateTxAddOutScript(CMutableTransaction &tx, const std::string &strInput)
Definition: bitcoin-tx.cpp:462
std::string GetHex() const
static std::map< std::string, UniValue > registers
Definition: bitcoin-tx.cpp:41
CScript GetScriptForMultisig(int nRequired, const std::vector< CPubKey > &keys)
Generate a multisig script.
Definition: solver.cpp:218
bool IsSpent() const
Either this coin never existed (see e.g.
Definition: coins.h:81
bool isObject() const
Definition: univalue.h:86
bool IsArgSet(const std::string &strArg) const
Return true if the given argument has been manually set.
Definition: args.cpp:370
static void MutateTxAddOutAddr(CMutableTransaction &tx, const std::string &strInput)
Definition: bitcoin-tx.cpp:292
std::vector< std::string > SplitString(std::string_view str, char sep)
Definition: string.h:59
void SetupChainParamsBaseOptions(ArgsManager &argsman)
Set the arguments for chainparams.
static void MutateTxAddOutMultiSig(CMutableTransaction &tx, const std::string &strInput)
Definition: bitcoin-tx.cpp:359
return EXIT_SUCCESS
std::vector< Byte > ParseHex(std::string_view hex_str)
Like TryParseHex, but returns an empty vector on invalid input.
Definition: strencodings.h:66
static const int WITNESS_SCALE_FACTOR
Definition: consensus.h:21
std::string TrimString(std::string_view str, std::string_view pattern=" \\\)
Definition: string.h:79
FILE * fopen(const fs::path &p, const char *mode)
Definition: fs.cpp:26
CScript scriptPubKey
Definition: transaction.h:153
bool IsValidDestination(const CTxDestination &dest)
Check whether a CTxDestination corresponds to one with an address.
const Coin & AccessCoin(const COutPoint &output) const
Return a reference to Coin in the cache, or coinEmpty if not found.
Definition: coins.cpp:156
RAII class initializing and deinitializing global state for elliptic curve support.
Definition: key.h:321
A UTXO entry.
Definition: coins.h:32
static const int MAX_SCRIPT_SIZE
Definition: script.h:39
static void MutateTxVersion(CMutableTransaction &tx, const std::string &cmdVal)
Definition: bitcoin-tx.cpp:209
#define strprintf
Format arguments and return the string or write to given std::ostream (see tinyformat::format doc for...
Definition: tinyformat.h:1161
Taproot only; implied when sighash byte is missing, and equivalent to SIGHASH_ALL.
Definition: interpreter.h:35
std::vector< CTxIn > vin
Definition: transaction.h:379
bool read(std::string_view raw)
static const uint32_t SEQUENCE_FINAL
Setting nSequence to this value for every input in a transaction disables nLockTime/IsFinalTx().
Definition: transaction.h:81
virtual bool AddCScript(const CScript &redeemScript)
std::string strPrint
const char * flagStr
Definition: bitcoin-tx.cpp:532
bool MoneyRange(const CAmount &nValue)
Definition: amount.h:27
bool IsHex(std::string_view str)
CTxOut out
unspent transaction output
Definition: coins.h:36
static void MutateTxAddOutData(CMutableTransaction &tx, const std::string &strInput)
Definition: bitcoin-tx.cpp:432
#define PACKAGE_NAME
SetupEnvironment()
Definition: system.cpp:59
bool isNum() const
Definition: univalue.h:84
bool ParseParameters(int argc, const char *const argv[], std::string &error)
Definition: args.cpp:178
const std::function< std::string(const char *)> G_TRANSLATION_FUN
Translate string to current locale using Qt.
Definition: bitcoin-tx.cpp:44
static void RegisterLoad(const std::string &strInput)
Definition: bitcoin-tx.cpp:159
bool isStr() const
Definition: univalue.h:83
bool GetBoolArg(const std::string &strArg, bool fDefault) const
Return boolean argument or default value.
Definition: args.cpp:506
std::string LicenseInfo()
Returns licensing information (for -version)
A signature creator for transactions.
Definition: sign.h:39
static void MutateTxLocktime(CMutableTransaction &tx, const std::string &cmdVal)
Definition: bitcoin-tx.cpp:219
Int getInt() const
Definition: univalue.h:138
static void RegisterSetJson(const std::string &key, const std::string &rawJson)
Definition: bitcoin-tx.cpp:133
bool IsNull() const
Definition: script.h:582
void PrintExceptionContinue(const std::exception *pex, std::string_view thread_name)
Definition: exception.cpp:36
static CAmount ExtractAndValidateValue(const std::string &strValue)
Definition: bitcoin-tx.cpp:200
ChainType GetChainType() const
Returns the appropriate chain type from the program arguments.
Definition: args.cpp:749
static void OutputTxHex(const CTransaction &tx)
Definition: bitcoin-tx.cpp:764
const std::string & getValStr() const
Definition: univalue.h:68
static const int MAX_PUBKEYS_PER_MULTISIG
Definition: script.h:33
disable validation
Definition: args.h:104
std::string GetHelpMessage() const
Get the help string.
Definition: args.cpp:591
static const unsigned int MAX_BLOCK_WEIGHT
The maximum allowed weight for a block, see BIP 141 (network rule)
Definition: consensus.h:15
std::string_view TrimStringView(std::string_view str, std::string_view pattern=" \\\)
Definition: string.h:69
static bool fCreateBlank
Definition: bitcoin-tx.cpp:40
int64_t CAmount
Amount in satoshis (Can be negative)
Definition: amount.h:12
static decltype(CTransaction::version) constexpr TX_MAX_STANDARD_VERSION
Definition: policy.h:134
static void MutateTxSign(CMutableTransaction &tx, const std::string &flagStr)
Definition: bitcoin-tx.cpp:580
uint32_t nHeight
at which height this containing transaction was included in the active block chain ...
Definition: coins.h:42
bool ParseUInt32(std::string_view str, uint32_t *out)
Convert decimal string to unsigned 32-bit integer with strict parse error feedback.
static const unsigned int N_SIGHASH_OPTS
Definition: bitcoin-tx.cpp:530
static constexpr uint32_t MAX_BIP125_RBF_SEQUENCE
Definition: rbf.h:12
static void MutateTxDelInput(CMutableTransaction &tx, const std::string &strInIdx)
Definition: bitcoin-tx.cpp:506
std::string ScriptToAsmStr(const CScript &script, const bool fAttemptSighashDecode=false)
Create the assembly string representation of a CScript object.
Definition: core_write.cpp:98
static CAmount AmountFromValue(const UniValue &value)
Definition: bitcoin-tx.cpp:558
bool IsFullyValid() const
fully validate whether this is a valid public key (more expensive than IsValid()) ...
Definition: pubkey.cpp:316
static void SetupBitcoinTxArgs(ArgsManager &argsman)
Definition: bitcoin-tx.cpp:46
Abstract view on the open txout dataset.
Definition: coins.h:303
An input of a transaction.
Definition: transaction.h:66
int ret
Definition: bitcoin-tx.cpp:879
static int AppInitRawTx(int argc, char *argv[])
Definition: bitcoin-tx.cpp:89
bool exists(const std::string &key) const
Definition: univalue.h:77
void format(std::ostream &out, const char *fmt, const Args &... args)
Format list of arguments to the stream according to given format string.
Definition: tinyformat.h:1059
static void MutateTxRBFOptIn(CMutableTransaction &tx, const std::string &strInIdx)
Definition: bitcoin-tx.cpp:228
An encapsulated public key.
Definition: pubkey.h:33
Fillable signing provider that keeps keys in an address->secret map.
void AddArg(const std::string &name, const std::string &help, unsigned int flags, const OptionsCategory &cat)
Add argument.
Definition: args.cpp:563
std::optional< CAmount > ParseMoney(const std::string &money_string)
Parse an amount denoted in full coins.
Definition: moneystr.cpp:45
std::string write(unsigned int prettyIndent=0, unsigned int indentLevel=0) const
An output of a transaction.
Definition: transaction.h:149
std::string FormatParagraph(std::string_view in, size_t width, size_t indent)
Format a paragraph of text to a fixed width, adding spaces for indentation to any added line...
An outpoint - a combination of a transaction hash and an index n into its vout.
Definition: transaction.h:28
static std::vector< unsigned char > ParseHexUV(const UniValue &v, const std::string &strName)
Definition: bitcoin-tx.cpp:570
std::vector< CTxOut > vout
Definition: transaction.h:380
void AddCoin(const COutPoint &outpoint, Coin &&coin, bool possible_overwrite)
Add a coin.
Definition: coins.cpp:70
CScriptWitness scriptWitness
The scriptWitness of an input. Contains complete signatures or the traditional partial signatures for...
Definition: sign.h:74
std::string FormatFullVersion()
CScript GetScriptForDestination(const CTxDestination &dest)
Generate a Bitcoin scriptPubKey for the given CTxDestination.
bool ParseFixedPoint(std::string_view val, int decimals, int64_t *amount_out)
Parse number as fixed point according to JSON number syntax.
ArgsManager gArgs
Definition: args.cpp:41
static bool findSighashFlags(int &flags, const std::string &flagStr)
Definition: bitcoin-tx.cpp:544
int flags
Definition: bitcoin-tx.cpp:533
bool checkObject(const std::map< std::string, UniValue::VType > &memberTypes) const
Definition: univalue.cpp:168
void SetupHelpOptions(ArgsManager &args)
Add help options to the args manager.
Definition: args.cpp:665
256-bit opaque blob.
Definition: uint256.h:178
std::string EncodeHexTx(const CTransaction &tx)
Definition: core_write.cpp:143
static void OutputTx(const CTransaction &tx)
Definition: bitcoin-tx.cpp:771
const auto command
static std::string readStdin()
Definition: bitcoin-tx.cpp:781
bool ParseInt64(std::string_view str, int64_t *out)
Convert string to signed 64-bit integer with strict parse error feedback.
SignatureData DataFromTransaction(const CMutableTransaction &tx, unsigned int nIn, const CTxOut &txout)
Extract signature data from a transaction input, and insert it.
Definition: sign.cpp:610
Serialized script, used inside transaction inputs and outputs.
Definition: script.h:413
uint32_t nSequence
Definition: transaction.h:71
static void MutateTxAddOutPubKey(CMutableTransaction &tx, const std::string &strInput)
Definition: bitcoin-tx.cpp:316
std::variant< CNoDestination, PubKeyDestination, PKHash, ScriptHash, WitnessV0ScriptHash, WitnessV0KeyHash, WitnessV1Taproot, PayToAnchor, WitnessUnknown > CTxDestination
A txout script categorized into standard templates.
Definition: addresstype.h:140
static void MutateTx(CMutableTransaction &tx, const std::string &command, const std::string &commandVal)
Definition: bitcoin-tx.cpp:700
static const unsigned int MAX_SCRIPT_ELEMENT_SIZE
Definition: script.h:27
static int CommandLineRawTx(int argc, char *argv[])
Definition: bitcoin-tx.cpp:799
void UpdateInput(CTxIn &input, const SignatureData &data)
Definition: sign.cpp:675
bool DecodeHexTx(CMutableTransaction &tx, const std::string &hex_tx, bool try_no_witness=false, bool try_witness=true)
Definition: core_read.cpp:196
bool HelpRequested(const ArgsManager &args)
Definition: args.cpp:660
std::string HexStr(const Span< const uint8_t > s)
Convert a span of bytes to a lower-case hexadecimal string.
Definition: hex_base.cpp:29
static constexpr CAmount MAX_MONEY
No amount larger than this (in satoshi) is valid.
Definition: amount.h:26
bool ProduceSignature(const SigningProvider &provider, const BaseSignatureCreator &creator, const CScript &fromPubKey, SignatureData &sigdata)
Produce a script signature using a generic signature creator.
Definition: sign.cpp:502
static void RegisterSet(const std::string &strInput)
Definition: bitcoin-tx.cpp:144
A mutable version of CTransaction.
Definition: transaction.h:377
static T TrimAndParse(const std::string &int_str, const std::string &err)
Definition: bitcoin-tx.cpp:249
CScript GetScriptForRawPubKey(const CPubKey &pubKey)
Generate a P2PK script for the given pubkey.
Definition: solver.cpp:213
size_type size() const
Definition: prevector.h:296
MAIN_FUNCTION
Definition: bitcoin-tx.cpp:863
size_t size() const
Definition: univalue.h:71
An encapsulated private key.
Definition: key.h:34
The basic transaction that is broadcasted on the network and contained in blocks. ...
Definition: transaction.h:295
CKey DecodeSecret(const std::string &str)
Definition: key_io.cpp:213
CCoinsView that adds a memory cache for transactions to another CCoinsView.
Definition: coins.h:359
static const struct @0 sighashOptions[N_SIGHASH_OPTS]
CTxDestination DecodeDestination(const std::string &str, std::string &error_msg, std::vector< int > *error_locations)
Definition: key_io.cpp:299
static const int CONTINUE_EXECUTION
Definition: bitcoin-tx.cpp:42
CScript ParseScript(const std::string &s)
Definition: core_read.cpp:63
COutPoint prevout
Definition: transaction.h:69
static void MutateTxDelOutput(CMutableTransaction &tx, const std::string &strOutIdx)
Definition: bitcoin-tx.cpp:518
static std::optional< transaction_identifier > FromHex(std::string_view hex)
bool IsSwitchChar(char c)
Definition: args.h:43
static void OutputTxHash(const CTransaction &tx)
Definition: bitcoin-tx.cpp:757
void SelectParams(const ChainType chain)
Sets the params returned by Params() to those for the given chain type.
std::string ToString(const T &t)
Locale-independent version of std::to_string.
Definition: string.h:156
virtual bool AddKey(const CKey &key)
const Txid & GetHash() const LIFETIMEBOUND
Definition: transaction.h:343
static void MutateTxAddInput(CMutableTransaction &tx, const std::string &strInput)
Definition: bitcoin-tx.cpp:258
bool IsValid() const
Check whether this private key is valid.
Definition: key.h:123
void TxToUniv(const CTransaction &tx, const uint256 &block_hash, UniValue &entry, bool include_hex=true, const CTxUndo *txundo=nullptr, TxVerbosity verbosity=TxVerbosity::SHOW_DETAILS)
Definition: core_write.cpp:171
bool IsCompressed() const
Check whether this is a compressed public key.
Definition: pubkey.h:204
static void OutputTxJSON(const CTransaction &tx)
Definition: bitcoin-tx.cpp:748