Bitcoin Core 28.0.0
P2P Digital Currency
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spend.cpp
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1// Copyright (c) 2021-2022 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 <algorithm>
6#include <common/args.h>
7#include <common/messages.h>
8#include <common/system.h>
9#include <consensus/amount.h>
11#include <interfaces/chain.h>
12#include <node/types.h>
13#include <numeric>
14#include <policy/policy.h>
16#include <script/script.h>
18#include <script/solver.h>
19#include <util/check.h>
20#include <util/moneystr.h>
21#include <util/rbf.h>
22#include <util/trace.h>
23#include <util/translation.h>
24#include <wallet/coincontrol.h>
25#include <wallet/fees.h>
26#include <wallet/receive.h>
27#include <wallet/spend.h>
28#include <wallet/transaction.h>
29#include <wallet/wallet.h>
30
31#include <cmath>
32
37
38namespace wallet {
39static constexpr size_t OUTPUT_GROUP_MAX_ENTRIES{100};
40
42static bool IsSegwit(const Descriptor& desc) {
43 if (const auto typ = desc.GetOutputType()) return *typ != OutputType::LEGACY;
44 return false;
45}
46
48static bool UseMaxSig(const std::optional<CTxIn>& txin, const CCoinControl* coin_control) {
49 // Use max sig if watch only inputs were used or if this particular input is an external input
50 // to ensure a sufficient fee is attained for the requested feerate.
51 return coin_control && (coin_control->fAllowWatchOnly || (txin && coin_control->IsExternalSelected(txin->prevout)));
52}
53
62static std::optional<int64_t> MaxInputWeight(const Descriptor& desc, const std::optional<CTxIn>& txin,
63 const CCoinControl* coin_control, const bool tx_is_segwit,
64 const bool can_grind_r) {
65 if (const auto sat_weight = desc.MaxSatisfactionWeight(!can_grind_r || UseMaxSig(txin, coin_control))) {
66 if (const auto elems_count = desc.MaxSatisfactionElems()) {
67 const bool is_segwit = IsSegwit(desc);
68 // Account for the size of the scriptsig and the number of elements on the witness stack. Note
69 // that if any input in the transaction is spending a witness program, we need to specify the
70 // witness stack size for every input regardless of whether it is segwit itself.
71 // NOTE: this also works in case of mixed scriptsig-and-witness such as in p2sh-wrapped segwit v0
72 // outputs. In this case the size of the scriptsig length will always be one (since the redeemScript
73 // is always a push of the witness program in this case, which is smaller than 253 bytes).
74 const int64_t scriptsig_len = is_segwit ? 1 : GetSizeOfCompactSize(*sat_weight / WITNESS_SCALE_FACTOR);
75 const int64_t witstack_len = is_segwit ? GetSizeOfCompactSize(*elems_count) : (tx_is_segwit ? 1 : 0);
76 // previous txid + previous vout + sequence + scriptsig len + witstack size + scriptsig or witness
77 // NOTE: sat_weight already accounts for the witness discount accordingly.
78 return (32 + 4 + 4 + scriptsig_len) * WITNESS_SCALE_FACTOR + witstack_len + *sat_weight;
79 }
80 }
81
82 return {};
83}
84
85int CalculateMaximumSignedInputSize(const CTxOut& txout, const COutPoint outpoint, const SigningProvider* provider, bool can_grind_r, const CCoinControl* coin_control)
86{
87 if (!provider) return -1;
88
89 if (const auto desc = InferDescriptor(txout.scriptPubKey, *provider)) {
90 if (const auto weight = MaxInputWeight(*desc, {}, coin_control, true, can_grind_r)) {
91 return static_cast<int>(GetVirtualTransactionSize(*weight, 0, 0));
92 }
93 }
94
95 return -1;
96}
97
98int CalculateMaximumSignedInputSize(const CTxOut& txout, const CWallet* wallet, const CCoinControl* coin_control)
99{
100 const std::unique_ptr<SigningProvider> provider = wallet->GetSolvingProvider(txout.scriptPubKey);
101 return CalculateMaximumSignedInputSize(txout, COutPoint(), provider.get(), wallet->CanGrindR(), coin_control);
102}
103
105static std::unique_ptr<Descriptor> GetDescriptor(const CWallet* wallet, const CCoinControl* coin_control,
106 const CScript script_pubkey)
107{
108 MultiSigningProvider providers;
109 for (const auto spkman: wallet->GetScriptPubKeyMans(script_pubkey)) {
110 providers.AddProvider(spkman->GetSolvingProvider(script_pubkey));
111 }
112 if (coin_control) {
113 providers.AddProvider(std::make_unique<FlatSigningProvider>(coin_control->m_external_provider));
114 }
115 return InferDescriptor(script_pubkey, providers);
116}
117
119static std::optional<int64_t> GetSignedTxinWeight(const CWallet* wallet, const CCoinControl* coin_control,
120 const CTxIn& txin, const CTxOut& txo, const bool tx_is_segwit,
121 const bool can_grind_r)
122{
123 // If weight was provided, use that.
124 std::optional<int64_t> weight;
125 if (coin_control && (weight = coin_control->GetInputWeight(txin.prevout))) {
126 return weight.value();
127 }
128
129 // Otherwise, use the maximum satisfaction size provided by the descriptor.
130 std::unique_ptr<Descriptor> desc{GetDescriptor(wallet, coin_control, txo.scriptPubKey)};
131 if (desc) return MaxInputWeight(*desc, {txin}, coin_control, tx_is_segwit, can_grind_r);
132
133 return {};
134}
135
136// txouts needs to be in the order of tx.vin
137TxSize CalculateMaximumSignedTxSize(const CTransaction &tx, const CWallet *wallet, const std::vector<CTxOut>& txouts, const CCoinControl* coin_control)
138{
139 // version + nLockTime + input count + output count
140 int64_t weight = (4 + 4 + GetSizeOfCompactSize(tx.vin.size()) + GetSizeOfCompactSize(tx.vout.size())) * WITNESS_SCALE_FACTOR;
141 // Whether any input spends a witness program. Necessary to run before the next loop over the
142 // inputs in order to accurately compute the compactSize length for the witness data per input.
143 bool is_segwit = std::any_of(txouts.begin(), txouts.end(), [&](const CTxOut& txo) {
144 std::unique_ptr<Descriptor> desc{GetDescriptor(wallet, coin_control, txo.scriptPubKey)};
145 if (desc) return IsSegwit(*desc);
146 return false;
147 });
148 // Segwit marker and flag
149 if (is_segwit) weight += 2;
150
151 // Add the size of the transaction outputs.
152 for (const auto& txo : tx.vout) weight += GetSerializeSize(txo) * WITNESS_SCALE_FACTOR;
153
154 // Add the size of the transaction inputs as if they were signed.
155 for (uint32_t i = 0; i < txouts.size(); i++) {
156 const auto txin_weight = GetSignedTxinWeight(wallet, coin_control, tx.vin[i], txouts[i], is_segwit, wallet->CanGrindR());
157 if (!txin_weight) return TxSize{-1, -1};
158 assert(*txin_weight > -1);
159 weight += *txin_weight;
160 }
161
162 // It's ok to use 0 as the number of sigops since we never create any pathological transaction.
163 return TxSize{GetVirtualTransactionSize(weight, 0, 0), weight};
164}
165
167{
168 std::vector<CTxOut> txouts;
169 // Look up the inputs. The inputs are either in the wallet, or in coin_control.
170 for (const CTxIn& input : tx.vin) {
171 const auto mi = wallet->mapWallet.find(input.prevout.hash);
172 // Can not estimate size without knowing the input details
173 if (mi != wallet->mapWallet.end()) {
174 assert(input.prevout.n < mi->second.tx->vout.size());
175 txouts.emplace_back(mi->second.tx->vout.at(input.prevout.n));
176 } else if (coin_control) {
177 const auto& txout{coin_control->GetExternalOutput(input.prevout)};
178 if (!txout) return TxSize{-1, -1};
179 txouts.emplace_back(*txout);
180 } else {
181 return TxSize{-1, -1};
182 }
183 }
184 return CalculateMaximumSignedTxSize(tx, wallet, txouts, coin_control);
185}
186
187size_t CoinsResult::Size() const
188{
189 size_t size{0};
190 for (const auto& it : coins) {
191 size += it.second.size();
192 }
193 return size;
194}
195
196std::vector<COutput> CoinsResult::All() const
197{
198 std::vector<COutput> all;
199 all.reserve(coins.size());
200 for (const auto& it : coins) {
201 all.insert(all.end(), it.second.begin(), it.second.end());
202 }
203 return all;
204}
205
206void CoinsResult::Clear() {
207 coins.clear();
208}
209
210void CoinsResult::Erase(const std::unordered_set<COutPoint, SaltedOutpointHasher>& coins_to_remove)
211{
212 for (auto& [type, vec] : coins) {
213 auto remove_it = std::remove_if(vec.begin(), vec.end(), [&](const COutput& coin) {
214 // remove it if it's on the set
215 if (coins_to_remove.count(coin.outpoint) == 0) return false;
216
217 // update cached amounts
218 total_amount -= coin.txout.nValue;
219 if (coin.HasEffectiveValue()) total_effective_amount = *total_effective_amount - coin.GetEffectiveValue();
220 return true;
221 });
222 vec.erase(remove_it, vec.end());
223 }
224}
225
226void CoinsResult::Shuffle(FastRandomContext& rng_fast)
227{
228 for (auto& it : coins) {
229 std::shuffle(it.second.begin(), it.second.end(), rng_fast);
230 }
231}
232
233void CoinsResult::Add(OutputType type, const COutput& out)
234{
235 coins[type].emplace_back(out);
236 total_amount += out.txout.nValue;
237 if (out.HasEffectiveValue()) {
238 total_effective_amount = total_effective_amount.has_value() ?
239 *total_effective_amount + out.GetEffectiveValue() : out.GetEffectiveValue();
240 }
241}
242
243static OutputType GetOutputType(TxoutType type, bool is_from_p2sh)
244{
245 switch (type) {
247 return OutputType::BECH32M;
250 if (is_from_p2sh) return OutputType::P2SH_SEGWIT;
251 else return OutputType::BECH32;
254 return OutputType::LEGACY;
255 default:
256 return OutputType::UNKNOWN;
257 }
258}
259
260// Fetch and validate the coin control selected inputs.
261// Coins could be internal (from the wallet) or external.
263 const CoinSelectionParams& coin_selection_params)
264{
265 PreSelectedInputs result;
266 const bool can_grind_r = wallet.CanGrindR();
267 std::map<COutPoint, CAmount> map_of_bump_fees = wallet.chain().calculateIndividualBumpFees(coin_control.ListSelected(), coin_selection_params.m_effective_feerate);
268 for (const COutPoint& outpoint : coin_control.ListSelected()) {
269 int64_t input_bytes = coin_control.GetInputWeight(outpoint).value_or(-1);
270 if (input_bytes != -1) {
271 input_bytes = GetVirtualTransactionSize(input_bytes, 0, 0);
272 }
273 CTxOut txout;
274 if (auto ptr_wtx = wallet.GetWalletTx(outpoint.hash)) {
275 // Clearly invalid input, fail
276 if (ptr_wtx->tx->vout.size() <= outpoint.n) {
277 return util::Error{strprintf(_("Invalid pre-selected input %s"), outpoint.ToString())};
278 }
279 txout = ptr_wtx->tx->vout.at(outpoint.n);
280 if (input_bytes == -1) {
281 input_bytes = CalculateMaximumSignedInputSize(txout, &wallet, &coin_control);
282 }
283 } else {
284 // The input is external. We did not find the tx in mapWallet.
285 const auto out{coin_control.GetExternalOutput(outpoint)};
286 if (!out) {
287 return util::Error{strprintf(_("Not found pre-selected input %s"), outpoint.ToString())};
288 }
289
290 txout = *out;
291 }
292
293 if (input_bytes == -1) {
294 input_bytes = CalculateMaximumSignedInputSize(txout, outpoint, &coin_control.m_external_provider, can_grind_r, &coin_control);
295 }
296
297 if (input_bytes == -1) {
298 return util::Error{strprintf(_("Not solvable pre-selected input %s"), outpoint.ToString())}; // Not solvable, can't estimate size for fee
299 }
300
301 /* Set some defaults for depth, spendable, solvable, safe, time, and from_me as these don't matter for preset inputs since no selection is being done. */
302 COutput output(outpoint, txout, /*depth=*/ 0, input_bytes, /*spendable=*/ true, /*solvable=*/ true, /*safe=*/ true, /*time=*/ 0, /*from_me=*/ false, coin_selection_params.m_effective_feerate);
303 output.ApplyBumpFee(map_of_bump_fees.at(output.outpoint));
304 result.Insert(output, coin_selection_params.m_subtract_fee_outputs);
305 }
306 return result;
307}
308
310 const CCoinControl* coinControl,
311 std::optional<CFeeRate> feerate,
312 const CoinFilterParams& params)
313{
314 AssertLockHeld(wallet.cs_wallet);
315
316 CoinsResult result;
317 // Either the WALLET_FLAG_AVOID_REUSE flag is not set (in which case we always allow), or we default to avoiding, and only in the case where
318 // a coin control object is provided, and has the avoid address reuse flag set to false, do we allow already used addresses
319 bool allow_used_addresses = !wallet.IsWalletFlagSet(WALLET_FLAG_AVOID_REUSE) || (coinControl && !coinControl->m_avoid_address_reuse);
320 const int min_depth = {coinControl ? coinControl->m_min_depth : DEFAULT_MIN_DEPTH};
321 const int max_depth = {coinControl ? coinControl->m_max_depth : DEFAULT_MAX_DEPTH};
322 const bool only_safe = {coinControl ? !coinControl->m_include_unsafe_inputs : true};
323 const bool can_grind_r = wallet.CanGrindR();
324 std::vector<COutPoint> outpoints;
325
326 std::set<uint256> trusted_parents;
327 for (const auto& entry : wallet.mapWallet)
328 {
329 const uint256& txid = entry.first;
330 const CWalletTx& wtx = entry.second;
331
332 if (wallet.IsTxImmatureCoinBase(wtx) && !params.include_immature_coinbase)
333 continue;
334
335 int nDepth = wallet.GetTxDepthInMainChain(wtx);
336 if (nDepth < 0)
337 continue;
338
339 // We should not consider coins which aren't at least in our mempool
340 // It's possible for these to be conflicted via ancestors which we may never be able to detect
341 if (nDepth == 0 && !wtx.InMempool())
342 continue;
343
344 bool safeTx = CachedTxIsTrusted(wallet, wtx, trusted_parents);
345
346 // We should not consider coins from transactions that are replacing
347 // other transactions.
348 //
349 // Example: There is a transaction A which is replaced by bumpfee
350 // transaction B. In this case, we want to prevent creation of
351 // a transaction B' which spends an output of B.
352 //
353 // Reason: If transaction A were initially confirmed, transactions B
354 // and B' would no longer be valid, so the user would have to create
355 // a new transaction C to replace B'. However, in the case of a
356 // one-block reorg, transactions B' and C might BOTH be accepted,
357 // when the user only wanted one of them. Specifically, there could
358 // be a 1-block reorg away from the chain where transactions A and C
359 // were accepted to another chain where B, B', and C were all
360 // accepted.
361 if (nDepth == 0 && wtx.mapValue.count("replaces_txid")) {
362 safeTx = false;
363 }
364
365 // Similarly, we should not consider coins from transactions that
366 // have been replaced. In the example above, we would want to prevent
367 // creation of a transaction A' spending an output of A, because if
368 // transaction B were initially confirmed, conflicting with A and
369 // A', we wouldn't want to the user to create a transaction D
370 // intending to replace A', but potentially resulting in a scenario
371 // where A, A', and D could all be accepted (instead of just B and
372 // D, or just A and A' like the user would want).
373 if (nDepth == 0 && wtx.mapValue.count("replaced_by_txid")) {
374 safeTx = false;
375 }
376
377 if (only_safe && !safeTx) {
378 continue;
379 }
380
381 if (nDepth < min_depth || nDepth > max_depth) {
382 continue;
383 }
384
385 bool tx_from_me = CachedTxIsFromMe(wallet, wtx, ISMINE_ALL);
386
387 for (unsigned int i = 0; i < wtx.tx->vout.size(); i++) {
388 const CTxOut& output = wtx.tx->vout[i];
389 const COutPoint outpoint(Txid::FromUint256(txid), i);
390
391 if (output.nValue < params.min_amount || output.nValue > params.max_amount)
392 continue;
393
394 // Skip manually selected coins (the caller can fetch them directly)
395 if (coinControl && coinControl->HasSelected() && coinControl->IsSelected(outpoint))
396 continue;
397
398 if (wallet.IsLockedCoin(outpoint) && params.skip_locked)
399 continue;
400
401 if (wallet.IsSpent(outpoint))
402 continue;
403
404 isminetype mine = wallet.IsMine(output);
405
406 if (mine == ISMINE_NO) {
407 continue;
408 }
409
410 if (!allow_used_addresses && wallet.IsSpentKey(output.scriptPubKey)) {
411 continue;
412 }
413
414 std::unique_ptr<SigningProvider> provider = wallet.GetSolvingProvider(output.scriptPubKey);
415
416 int input_bytes = CalculateMaximumSignedInputSize(output, COutPoint(), provider.get(), can_grind_r, coinControl);
417 // Because CalculateMaximumSignedInputSize infers a solvable descriptor to get the satisfaction size,
418 // it is safe to assume that this input is solvable if input_bytes is greater than -1.
419 bool solvable = input_bytes > -1;
420 bool spendable = ((mine & ISMINE_SPENDABLE) != ISMINE_NO) || (((mine & ISMINE_WATCH_ONLY) != ISMINE_NO) && (coinControl && coinControl->fAllowWatchOnly && solvable));
421
422 // Filter by spendable outputs only
423 if (!spendable && params.only_spendable) continue;
424
425 // Obtain script type
426 std::vector<std::vector<uint8_t>> script_solutions;
427 TxoutType type = Solver(output.scriptPubKey, script_solutions);
428
429 // If the output is P2SH and solvable, we want to know if it is
430 // a P2SH (legacy) or one of P2SH-P2WPKH, P2SH-P2WSH (P2SH-Segwit). We can determine
431 // this from the redeemScript. If the output is not solvable, it will be classified
432 // as a P2SH (legacy), since we have no way of knowing otherwise without the redeemScript
433 bool is_from_p2sh{false};
434 if (type == TxoutType::SCRIPTHASH && solvable) {
436 if (!provider->GetCScript(CScriptID(uint160(script_solutions[0])), script)) continue;
437 type = Solver(script, script_solutions);
438 is_from_p2sh = true;
439 }
440
441 result.Add(GetOutputType(type, is_from_p2sh),
442 COutput(outpoint, output, nDepth, input_bytes, spendable, solvable, safeTx, wtx.GetTxTime(), tx_from_me, feerate));
443
444 outpoints.push_back(outpoint);
445
446 // Checks the sum amount of all UTXO's.
447 if (params.min_sum_amount != MAX_MONEY) {
448 if (result.GetTotalAmount() >= params.min_sum_amount) {
449 return result;
450 }
451 }
452
453 // Checks the maximum number of UTXO's.
454 if (params.max_count > 0 && result.Size() >= params.max_count) {
455 return result;
456 }
457 }
458 }
459
460 if (feerate.has_value()) {
461 std::map<COutPoint, CAmount> map_of_bump_fees = wallet.chain().calculateIndividualBumpFees(outpoints, feerate.value());
462
463 for (auto& [_, outputs] : result.coins) {
464 for (auto& output : outputs) {
465 output.ApplyBumpFee(map_of_bump_fees.at(output.outpoint));
466 }
467 }
468 }
469
470 return result;
471}
472
474{
475 params.only_spendable = false;
476 return AvailableCoins(wallet, coinControl, /*feerate=*/ std::nullopt, params);
477}
478
480{
481 AssertLockHeld(wallet.cs_wallet);
482 const CWalletTx* wtx{Assert(wallet.GetWalletTx(outpoint.hash))};
483
484 const CTransaction* ptx = wtx->tx.get();
485 int n = outpoint.n;
486 while (OutputIsChange(wallet, ptx->vout[n]) && ptx->vin.size() > 0) {
487 const COutPoint& prevout = ptx->vin[0].prevout;
488 const CWalletTx* it = wallet.GetWalletTx(prevout.hash);
489 if (!it || it->tx->vout.size() <= prevout.n ||
490 !wallet.IsMine(it->tx->vout[prevout.n])) {
491 break;
492 }
493 ptx = it->tx.get();
494 n = prevout.n;
495 }
496 return ptx->vout[n];
497}
498
499std::map<CTxDestination, std::vector<COutput>> ListCoins(const CWallet& wallet)
500{
501 AssertLockHeld(wallet.cs_wallet);
502
503 std::map<CTxDestination, std::vector<COutput>> result;
504
505 CCoinControl coin_control;
506 // Include watch-only for LegacyScriptPubKeyMan wallets without private keys
507 coin_control.fAllowWatchOnly = wallet.GetLegacyScriptPubKeyMan() && wallet.IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS);
508 CoinFilterParams coins_params;
509 coins_params.only_spendable = false;
510 coins_params.skip_locked = false;
511 for (const COutput& coin : AvailableCoins(wallet, &coin_control, /*feerate=*/std::nullopt, coins_params).All()) {
512 CTxDestination address;
513 if ((coin.spendable || (wallet.IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS) && coin.solvable))) {
514 if (!ExtractDestination(FindNonChangeParentOutput(wallet, coin.outpoint).scriptPubKey, address)) {
515 // For backwards compatibility, we convert P2PK output scripts into PKHash destinations
516 if (auto pk_dest = std::get_if<PubKeyDestination>(&address)) {
517 address = PKHash(pk_dest->GetPubKey());
518 } else {
519 continue;
520 }
521 }
522 result[address].emplace_back(coin);
523 }
524 }
525 return result;
526}
527
529 const CoinsResult& coins,
530 const CoinSelectionParams& coin_sel_params,
531 const std::vector<SelectionFilter>& filters,
532 std::vector<OutputGroup>& ret_discarded_groups)
533{
534 FilteredOutputGroups filtered_groups;
535
536 if (!coin_sel_params.m_avoid_partial_spends) {
537 // Allowing partial spends means no grouping. Each COutput gets its own OutputGroup
538 for (const auto& [type, outputs] : coins.coins) {
539 for (const COutput& output : outputs) {
540 // Get mempool info
541 size_t ancestors, descendants;
542 wallet.chain().getTransactionAncestry(output.outpoint.hash, ancestors, descendants);
543
544 // Create a new group per output and add it to the all groups vector
545 OutputGroup group(coin_sel_params);
546 group.Insert(std::make_shared<COutput>(output), ancestors, descendants);
547
548 // Each filter maps to a different set of groups
549 bool accepted = false;
550 for (const auto& sel_filter : filters) {
551 const auto& filter = sel_filter.filter;
552 if (!group.EligibleForSpending(filter)) continue;
553 filtered_groups[filter].Push(group, type, /*insert_positive=*/true, /*insert_mixed=*/true);
554 accepted = true;
555 }
556 if (!accepted) ret_discarded_groups.emplace_back(group);
557 }
558 }
559 return filtered_groups;
560 }
561
562 // We want to combine COutputs that have the same scriptPubKey into single OutputGroups
563 // except when there are more than OUTPUT_GROUP_MAX_ENTRIES COutputs grouped in an OutputGroup.
564 // To do this, we maintain a map where the key is the scriptPubKey and the value is a vector of OutputGroups.
565 // For each COutput, we check if the scriptPubKey is in the map, and if it is, the COutput is added
566 // to the last OutputGroup in the vector for the scriptPubKey. When the last OutputGroup has
567 // OUTPUT_GROUP_MAX_ENTRIES COutputs, a new OutputGroup is added to the end of the vector.
568 typedef std::map<std::pair<CScript, OutputType>, std::vector<OutputGroup>> ScriptPubKeyToOutgroup;
569 const auto& insert_output = [&](
570 const std::shared_ptr<COutput>& output, OutputType type, size_t ancestors, size_t descendants,
571 ScriptPubKeyToOutgroup& groups_map) {
572 std::vector<OutputGroup>& groups = groups_map[std::make_pair(output->txout.scriptPubKey,type)];
573
574 if (groups.size() == 0) {
575 // No OutputGroups for this scriptPubKey yet, add one
576 groups.emplace_back(coin_sel_params);
577 }
578
579 // Get the last OutputGroup in the vector so that we can add the COutput to it
580 // A pointer is used here so that group can be reassigned later if it is full.
581 OutputGroup* group = &groups.back();
582
583 // Check if this OutputGroup is full. We limit to OUTPUT_GROUP_MAX_ENTRIES when using -avoidpartialspends
584 // to avoid surprising users with very high fees.
585 if (group->m_outputs.size() >= OUTPUT_GROUP_MAX_ENTRIES) {
586 // The last output group is full, add a new group to the vector and use that group for the insertion
587 groups.emplace_back(coin_sel_params);
588 group = &groups.back();
589 }
590
591 group->Insert(output, ancestors, descendants);
592 };
593
594 ScriptPubKeyToOutgroup spk_to_groups_map;
595 ScriptPubKeyToOutgroup spk_to_positive_groups_map;
596 for (const auto& [type, outs] : coins.coins) {
597 for (const COutput& output : outs) {
598 size_t ancestors, descendants;
599 wallet.chain().getTransactionAncestry(output.outpoint.hash, ancestors, descendants);
600
601 const auto& shared_output = std::make_shared<COutput>(output);
602 // Filter for positive only before adding the output
603 if (output.GetEffectiveValue() > 0) {
604 insert_output(shared_output, type, ancestors, descendants, spk_to_positive_groups_map);
605 }
606
607 // 'All' groups
608 insert_output(shared_output, type, ancestors, descendants, spk_to_groups_map);
609 }
610 }
611
612 // Now we go through the entire maps and pull out the OutputGroups
613 const auto& push_output_groups = [&](const ScriptPubKeyToOutgroup& groups_map, bool positive_only) {
614 for (const auto& [script, groups] : groups_map) {
615 // Go through the vector backwards. This allows for the first item we deal with being the partial group.
616 for (auto group_it = groups.rbegin(); group_it != groups.rend(); group_it++) {
617 const OutputGroup& group = *group_it;
618
619 // Each filter maps to a different set of groups
620 bool accepted = false;
621 for (const auto& sel_filter : filters) {
622 const auto& filter = sel_filter.filter;
623 if (!group.EligibleForSpending(filter)) continue;
624
625 // Don't include partial groups if there are full groups too and we don't want partial groups
626 if (group_it == groups.rbegin() && groups.size() > 1 && !filter.m_include_partial_groups) {
627 continue;
628 }
629
630 OutputType type = script.second;
631 // Either insert the group into the positive-only groups or the mixed ones.
632 filtered_groups[filter].Push(group, type, positive_only, /*insert_mixed=*/!positive_only);
633 accepted = true;
634 }
635 if (!accepted) ret_discarded_groups.emplace_back(group);
636 }
637 }
638 };
639
640 push_output_groups(spk_to_groups_map, /*positive_only=*/ false);
641 push_output_groups(spk_to_positive_groups_map, /*positive_only=*/ true);
642
643 return filtered_groups;
644}
645
647 const CoinsResult& coins,
648 const CoinSelectionParams& params,
649 const std::vector<SelectionFilter>& filters)
650{
651 std::vector<OutputGroup> unused;
652 return GroupOutputs(wallet, coins, params, filters, unused);
653}
654
655// Returns true if the result contains an error and the message is not empty
656static bool HasErrorMsg(const util::Result<SelectionResult>& res) { return !util::ErrorString(res).empty(); }
657
658util::Result<SelectionResult> AttemptSelection(interfaces::Chain& chain, const CAmount& nTargetValue, OutputGroupTypeMap& groups,
659 const CoinSelectionParams& coin_selection_params, bool allow_mixed_output_types)
660{
661 // Run coin selection on each OutputType and compute the Waste Metric
662 std::vector<SelectionResult> results;
663 for (auto& [type, group] : groups.groups_by_type) {
664 auto result{ChooseSelectionResult(chain, nTargetValue, group, coin_selection_params)};
665 // If any specific error message appears here, then something particularly wrong happened.
666 if (HasErrorMsg(result)) return result; // So let's return the specific error.
667 // Append the favorable result.
668 if (result) results.push_back(*result);
669 }
670 // If we have at least one solution for funding the transaction without mixing, choose the minimum one according to waste metric
671 // and return the result
672 if (results.size() > 0) return *std::min_element(results.begin(), results.end());
673
674 // If we can't fund the transaction from any individual OutputType, run coin selection one last time
675 // over all available coins, which would allow mixing.
676 // If TypesCount() <= 1, there is nothing to mix.
677 if (allow_mixed_output_types && groups.TypesCount() > 1) {
678 return ChooseSelectionResult(chain, nTargetValue, groups.all_groups, coin_selection_params);
679 }
680 // Either mixing is not allowed and we couldn't find a solution from any single OutputType, or mixing was allowed and we still couldn't
681 // find a solution using all available coins
682 return util::Error();
683};
684
685util::Result<SelectionResult> ChooseSelectionResult(interfaces::Chain& chain, const CAmount& nTargetValue, Groups& groups, const CoinSelectionParams& coin_selection_params)
686{
687 // Vector of results. We will choose the best one based on waste.
688 std::vector<SelectionResult> results;
689 std::vector<util::Result<SelectionResult>> errors;
690 auto append_error = [&] (util::Result<SelectionResult>&& result) {
691 // If any specific error message appears here, then something different from a simple "no selection found" happened.
692 // Let's save it, so it can be retrieved to the user if no other selection algorithm succeeded.
693 if (HasErrorMsg(result)) {
694 errors.emplace_back(std::move(result));
695 }
696 };
697
698 // Maximum allowed weight for selected coins.
699 int max_transaction_weight = coin_selection_params.m_max_tx_weight.value_or(MAX_STANDARD_TX_WEIGHT);
700 int tx_weight_no_input = coin_selection_params.tx_noinputs_size * WITNESS_SCALE_FACTOR;
701 int max_selection_weight = max_transaction_weight - tx_weight_no_input;
702 if (max_selection_weight <= 0) {
703 return util::Error{_("Maximum transaction weight is less than transaction weight without inputs")};
704 }
705
706 // SFFO frequently causes issues in the context of changeless input sets: skip BnB when SFFO is active
707 if (!coin_selection_params.m_subtract_fee_outputs) {
708 if (auto bnb_result{SelectCoinsBnB(groups.positive_group, nTargetValue, coin_selection_params.m_cost_of_change, max_selection_weight)}) {
709 results.push_back(*bnb_result);
710 } else append_error(std::move(bnb_result));
711 }
712
713 // Deduct change weight because remaining Coin Selection algorithms can create change output
714 int change_outputs_weight = coin_selection_params.change_output_size * WITNESS_SCALE_FACTOR;
715 max_selection_weight -= change_outputs_weight;
716 if (max_selection_weight < 0 && results.empty()) {
717 return util::Error{_("Maximum transaction weight is too low, can not accommodate change output")};
718 }
719
720 // The knapsack solver has some legacy behavior where it will spend dust outputs. We retain this behavior, so don't filter for positive only here.
721 if (auto knapsack_result{KnapsackSolver(groups.mixed_group, nTargetValue, coin_selection_params.m_min_change_target, coin_selection_params.rng_fast, max_selection_weight)}) {
722 results.push_back(*knapsack_result);
723 } else append_error(std::move(knapsack_result));
724
725 if (coin_selection_params.m_effective_feerate > CFeeRate{3 * coin_selection_params.m_long_term_feerate}) { // Minimize input set for feerates of at least 3×LTFRE (default: 30 ṩ/vB+)
726 if (auto cg_result{CoinGrinder(groups.positive_group, nTargetValue, coin_selection_params.m_min_change_target, max_selection_weight)}) {
727 cg_result->RecalculateWaste(coin_selection_params.min_viable_change, coin_selection_params.m_cost_of_change, coin_selection_params.m_change_fee);
728 results.push_back(*cg_result);
729 } else {
730 append_error(std::move(cg_result));
731 }
732 }
733
734 if (auto srd_result{SelectCoinsSRD(groups.positive_group, nTargetValue, coin_selection_params.m_change_fee, coin_selection_params.rng_fast, max_selection_weight)}) {
735 results.push_back(*srd_result);
736 } else append_error(std::move(srd_result));
737
738 if (results.empty()) {
739 // No solution found, retrieve the first explicit error (if any).
740 // future: add 'severity level' to errors so the worst one can be retrieved instead of the first one.
741 return errors.empty() ? util::Error() : std::move(errors.front());
742 }
743
744 // If the chosen input set has unconfirmed inputs, check for synergies from overlapping ancestry
745 for (auto& result : results) {
746 std::vector<COutPoint> outpoints;
747 std::set<std::shared_ptr<COutput>> coins = result.GetInputSet();
748 CAmount summed_bump_fees = 0;
749 for (auto& coin : coins) {
750 if (coin->depth > 0) continue; // Bump fees only exist for unconfirmed inputs
751 outpoints.push_back(coin->outpoint);
752 summed_bump_fees += coin->ancestor_bump_fees;
753 }
754 std::optional<CAmount> combined_bump_fee = chain.calculateCombinedBumpFee(outpoints, coin_selection_params.m_effective_feerate);
755 if (!combined_bump_fee.has_value()) {
756 return util::Error{_("Failed to calculate bump fees, because unconfirmed UTXOs depend on enormous cluster of unconfirmed transactions.")};
757 }
758 CAmount bump_fee_overestimate = summed_bump_fees - combined_bump_fee.value();
759 if (bump_fee_overestimate) {
760 result.SetBumpFeeDiscount(bump_fee_overestimate);
761 }
762 result.RecalculateWaste(coin_selection_params.min_viable_change, coin_selection_params.m_cost_of_change, coin_selection_params.m_change_fee);
763 }
764
765 // Choose the result with the least waste
766 // If the waste is the same, choose the one which spends more inputs.
767 return *std::min_element(results.begin(), results.end());
768}
769
771 const CAmount& nTargetValue, const CCoinControl& coin_control,
772 const CoinSelectionParams& coin_selection_params)
773{
774 // Deduct preset inputs amount from the search target
775 CAmount selection_target = nTargetValue - pre_set_inputs.total_amount;
776
777 // Return if automatic coin selection is disabled, and we don't cover the selection target
778 if (!coin_control.m_allow_other_inputs && selection_target > 0) {
779 return util::Error{_("The preselected coins total amount does not cover the transaction target. "
780 "Please allow other inputs to be automatically selected or include more coins manually")};
781 }
782
783 // Return if we can cover the target only with the preset inputs
784 if (selection_target <= 0) {
785 SelectionResult result(nTargetValue, SelectionAlgorithm::MANUAL);
786 result.AddInputs(pre_set_inputs.coins, coin_selection_params.m_subtract_fee_outputs);
787 result.RecalculateWaste(coin_selection_params.min_viable_change, coin_selection_params.m_cost_of_change, coin_selection_params.m_change_fee);
788 return result;
789 }
790
791 // Return early if we cannot cover the target with the wallet's UTXO.
792 // We use the total effective value if we are not subtracting fee from outputs and 'available_coins' contains the data.
793 CAmount available_coins_total_amount = coin_selection_params.m_subtract_fee_outputs ? available_coins.GetTotalAmount() :
794 (available_coins.GetEffectiveTotalAmount().has_value() ? *available_coins.GetEffectiveTotalAmount() : 0);
795 if (selection_target > available_coins_total_amount) {
796 return util::Error(); // Insufficient funds
797 }
798
799 // Start wallet Coin Selection procedure
800 auto op_selection_result = AutomaticCoinSelection(wallet, available_coins, selection_target, coin_selection_params);
801 if (!op_selection_result) return op_selection_result;
802
803 // If needed, add preset inputs to the automatic coin selection result
804 if (!pre_set_inputs.coins.empty()) {
805 SelectionResult preselected(pre_set_inputs.total_amount, SelectionAlgorithm::MANUAL);
806 preselected.AddInputs(pre_set_inputs.coins, coin_selection_params.m_subtract_fee_outputs);
807 op_selection_result->Merge(preselected);
808 op_selection_result->RecalculateWaste(coin_selection_params.min_viable_change,
809 coin_selection_params.m_cost_of_change,
810 coin_selection_params.m_change_fee);
811
812 // Verify we haven't exceeded the maximum allowed weight
813 int max_inputs_weight = coin_selection_params.m_max_tx_weight.value_or(MAX_STANDARD_TX_WEIGHT) - (coin_selection_params.tx_noinputs_size * WITNESS_SCALE_FACTOR);
814 if (op_selection_result->GetWeight() > max_inputs_weight) {
815 return util::Error{_("The combination of the pre-selected inputs and the wallet automatic inputs selection exceeds the transaction maximum weight. "
816 "Please try sending a smaller amount or manually consolidating your wallet's UTXOs")};
817 }
818 }
819 return op_selection_result;
820}
821
822util::Result<SelectionResult> AutomaticCoinSelection(const CWallet& wallet, CoinsResult& available_coins, const CAmount& value_to_select, const CoinSelectionParams& coin_selection_params)
823{
824 unsigned int limit_ancestor_count = 0;
825 unsigned int limit_descendant_count = 0;
826 wallet.chain().getPackageLimits(limit_ancestor_count, limit_descendant_count);
827 const size_t max_ancestors = (size_t)std::max<int64_t>(1, limit_ancestor_count);
828 const size_t max_descendants = (size_t)std::max<int64_t>(1, limit_descendant_count);
829 const bool fRejectLongChains = gArgs.GetBoolArg("-walletrejectlongchains", DEFAULT_WALLET_REJECT_LONG_CHAINS);
830
831 // Cases where we have 101+ outputs all pointing to the same destination may result in
832 // privacy leaks as they will potentially be deterministically sorted. We solve that by
833 // explicitly shuffling the outputs before processing
834 if (coin_selection_params.m_avoid_partial_spends && available_coins.Size() > OUTPUT_GROUP_MAX_ENTRIES) {
835 available_coins.Shuffle(coin_selection_params.rng_fast);
836 }
837
838 // Coin Selection attempts to select inputs from a pool of eligible UTXOs to fund the
839 // transaction at a target feerate. If an attempt fails, more attempts may be made using a more
840 // permissive CoinEligibilityFilter.
841 {
842 // Place coins eligibility filters on a scope increasing order.
843 std::vector<SelectionFilter> ordered_filters{
844 // If possible, fund the transaction with confirmed UTXOs only. Prefer at least six
845 // confirmations on outputs received from other wallets and only spend confirmed change.
846 {CoinEligibilityFilter(1, 6, 0), /*allow_mixed_output_types=*/false},
847 {CoinEligibilityFilter(1, 1, 0)},
848 };
849 // Fall back to using zero confirmation change (but with as few ancestors in the mempool as
850 // possible) if we cannot fund the transaction otherwise.
851 if (wallet.m_spend_zero_conf_change) {
852 ordered_filters.push_back({CoinEligibilityFilter(0, 1, 2)});
853 ordered_filters.push_back({CoinEligibilityFilter(0, 1, std::min(size_t{4}, max_ancestors/3), std::min(size_t{4}, max_descendants/3))});
854 ordered_filters.push_back({CoinEligibilityFilter(0, 1, max_ancestors/2, max_descendants/2)});
855 // If partial groups are allowed, relax the requirement of spending OutputGroups (groups
856 // of UTXOs sent to the same address, which are obviously controlled by a single wallet)
857 // in their entirety.
858 ordered_filters.push_back({CoinEligibilityFilter(0, 1, max_ancestors-1, max_descendants-1, /*include_partial=*/true)});
859 // Try with unsafe inputs if they are allowed. This may spend unconfirmed outputs
860 // received from other wallets.
861 if (coin_selection_params.m_include_unsafe_inputs) {
862 ordered_filters.push_back({CoinEligibilityFilter(/*conf_mine=*/0, /*conf_theirs*/0, max_ancestors-1, max_descendants-1, /*include_partial=*/true)});
863 }
864 // Try with unlimited ancestors/descendants. The transaction will still need to meet
865 // mempool ancestor/descendant policy to be accepted to mempool and broadcasted, but
866 // OutputGroups use heuristics that may overestimate ancestor/descendant counts.
867 if (!fRejectLongChains) {
868 ordered_filters.push_back({CoinEligibilityFilter(0, 1, std::numeric_limits<uint64_t>::max(),
869 std::numeric_limits<uint64_t>::max(),
870 /*include_partial=*/true)});
871 }
872 }
873
874 // Group outputs and map them by coin eligibility filter
875 std::vector<OutputGroup> discarded_groups;
876 FilteredOutputGroups filtered_groups = GroupOutputs(wallet, available_coins, coin_selection_params, ordered_filters, discarded_groups);
877
878 // Check if we still have enough balance after applying filters (some coins might be discarded)
879 CAmount total_discarded = 0;
880 CAmount total_unconf_long_chain = 0;
881 for (const auto& group : discarded_groups) {
882 total_discarded += group.GetSelectionAmount();
883 if (group.m_ancestors >= max_ancestors || group.m_descendants >= max_descendants) total_unconf_long_chain += group.GetSelectionAmount();
884 }
885
886 if (CAmount total_amount = available_coins.GetTotalAmount() - total_discarded < value_to_select) {
887 // Special case, too-long-mempool cluster.
888 if (total_amount + total_unconf_long_chain > value_to_select) {
889 return util::Error{_("Unconfirmed UTXOs are available, but spending them creates a chain of transactions that will be rejected by the mempool")};
890 }
891 return util::Error{}; // General "Insufficient Funds"
892 }
893
894 // Walk-through the filters until the solution gets found.
895 // If no solution is found, return the first detailed error (if any).
896 // future: add "error level" so the worst one can be picked instead.
897 std::vector<util::Result<SelectionResult>> res_detailed_errors;
898 for (const auto& select_filter : ordered_filters) {
899 auto it = filtered_groups.find(select_filter.filter);
900 if (it == filtered_groups.end()) continue;
901 if (auto res{AttemptSelection(wallet.chain(), value_to_select, it->second,
902 coin_selection_params, select_filter.allow_mixed_output_types)}) {
903 return res; // result found
904 } else {
905 // If any specific error message appears here, then something particularly wrong might have happened.
906 // Save the error and continue the selection process. So if no solutions gets found, we can return
907 // the detailed error to the upper layers.
908 if (HasErrorMsg(res)) res_detailed_errors.emplace_back(std::move(res));
909 }
910 }
911
912 // Return right away if we have a detailed error
913 if (!res_detailed_errors.empty()) return std::move(res_detailed_errors.front());
914
915
916 // General "Insufficient Funds"
917 return util::Error{};
918 }
919}
920
921static bool IsCurrentForAntiFeeSniping(interfaces::Chain& chain, const uint256& block_hash)
922{
923 if (chain.isInitialBlockDownload()) {
924 return false;
925 }
926 constexpr int64_t MAX_ANTI_FEE_SNIPING_TIP_AGE = 8 * 60 * 60; // in seconds
927 int64_t block_time;
928 CHECK_NONFATAL(chain.findBlock(block_hash, FoundBlock().time(block_time)));
929 if (block_time < (GetTime() - MAX_ANTI_FEE_SNIPING_TIP_AGE)) {
930 return false;
931 }
932 return true;
933}
934
940 interfaces::Chain& chain, const uint256& block_hash, int block_height)
941{
942 // All inputs must be added by now
943 assert(!tx.vin.empty());
944 // Discourage fee sniping.
945 //
946 // For a large miner the value of the transactions in the best block and
947 // the mempool can exceed the cost of deliberately attempting to mine two
948 // blocks to orphan the current best block. By setting nLockTime such that
949 // only the next block can include the transaction, we discourage this
950 // practice as the height restricted and limited blocksize gives miners
951 // considering fee sniping fewer options for pulling off this attack.
952 //
953 // A simple way to think about this is from the wallet's point of view we
954 // always want the blockchain to move forward. By setting nLockTime this
955 // way we're basically making the statement that we only want this
956 // transaction to appear in the next block; we don't want to potentially
957 // encourage reorgs by allowing transactions to appear at lower heights
958 // than the next block in forks of the best chain.
959 //
960 // Of course, the subsidy is high enough, and transaction volume low
961 // enough, that fee sniping isn't a problem yet, but by implementing a fix
962 // now we ensure code won't be written that makes assumptions about
963 // nLockTime that preclude a fix later.
964 if (IsCurrentForAntiFeeSniping(chain, block_hash)) {
965 tx.nLockTime = block_height;
966
967 // Secondly occasionally randomly pick a nLockTime even further back, so
968 // that transactions that are delayed after signing for whatever reason,
969 // e.g. high-latency mix networks and some CoinJoin implementations, have
970 // better privacy.
971 if (rng_fast.randrange(10) == 0) {
972 tx.nLockTime = std::max(0, int(tx.nLockTime) - int(rng_fast.randrange(100)));
973 }
974 } else {
975 // If our chain is lagging behind, we can't discourage fee sniping nor help
976 // the privacy of high-latency transactions. To avoid leaking a potentially
977 // unique "nLockTime fingerprint", set nLockTime to a constant.
978 tx.nLockTime = 0;
979 }
980 // Sanity check all values
981 assert(tx.nLockTime < LOCKTIME_THRESHOLD); // Type must be block height
982 assert(tx.nLockTime <= uint64_t(block_height));
983 for (const auto& in : tx.vin) {
984 // Can not be FINAL for locktime to work
985 assert(in.nSequence != CTxIn::SEQUENCE_FINAL);
986 // May be MAX NONFINAL to disable both BIP68 and BIP125
987 if (in.nSequence == CTxIn::MAX_SEQUENCE_NONFINAL) continue;
988 // May be MAX BIP125 to disable BIP68 and enable BIP125
989 if (in.nSequence == MAX_BIP125_RBF_SEQUENCE) continue;
990 // The wallet does not support any other sequence-use right now.
991 assert(false);
992 }
993}
994
996{
997 return ::GetSerializeSize(CTxOut(recipient.nAmount, GetScriptForDestination(recipient.dest)));
998}
999
1000bool IsDust(const CRecipient& recipient, const CFeeRate& dustRelayFee)
1001{
1002 return ::IsDust(CTxOut(recipient.nAmount, GetScriptForDestination(recipient.dest)), dustRelayFee);
1003}
1004
1006 CWallet& wallet,
1007 const std::vector<CRecipient>& vecSend,
1008 std::optional<unsigned int> change_pos,
1009 const CCoinControl& coin_control,
1010 bool sign) EXCLUSIVE_LOCKS_REQUIRED(wallet.cs_wallet)
1011{
1012 AssertLockHeld(wallet.cs_wallet);
1013
1014 FastRandomContext rng_fast;
1015 CMutableTransaction txNew; // The resulting transaction that we make
1016
1017 if (coin_control.m_version) {
1018 txNew.version = coin_control.m_version.value();
1019 }
1020
1021 CoinSelectionParams coin_selection_params{rng_fast}; // Parameters for coin selection, init with dummy
1022 coin_selection_params.m_avoid_partial_spends = coin_control.m_avoid_partial_spends;
1023 coin_selection_params.m_include_unsafe_inputs = coin_control.m_include_unsafe_inputs;
1024 coin_selection_params.m_max_tx_weight = coin_control.m_max_tx_weight.value_or(MAX_STANDARD_TX_WEIGHT);
1025 int minimum_tx_weight = MIN_STANDARD_TX_NONWITNESS_SIZE * WITNESS_SCALE_FACTOR;
1026 if (coin_selection_params.m_max_tx_weight.value() < minimum_tx_weight || coin_selection_params.m_max_tx_weight.value() > MAX_STANDARD_TX_WEIGHT) {
1027 return util::Error{strprintf(_("Maximum transaction weight must be between %d and %d"), minimum_tx_weight, MAX_STANDARD_TX_WEIGHT)};
1028 }
1029 // Set the long term feerate estimate to the wallet's consolidate feerate
1030 coin_selection_params.m_long_term_feerate = wallet.m_consolidate_feerate;
1031 // Static vsize overhead + outputs vsize. 4 nVersion, 4 nLocktime, 1 input count, 1 witness overhead (dummy, flag, stack size)
1032 coin_selection_params.tx_noinputs_size = 10 + GetSizeOfCompactSize(vecSend.size()); // bytes for output count
1033
1034 CAmount recipients_sum = 0;
1035 const OutputType change_type = wallet.TransactionChangeType(coin_control.m_change_type ? *coin_control.m_change_type : wallet.m_default_change_type, vecSend);
1036 ReserveDestination reservedest(&wallet, change_type);
1037 unsigned int outputs_to_subtract_fee_from = 0; // The number of outputs which we are subtracting the fee from
1038 for (const auto& recipient : vecSend) {
1039 if (IsDust(recipient, wallet.chain().relayDustFee())) {
1040 return util::Error{_("Transaction amount too small")};
1041 }
1042
1043 // Include the fee cost for outputs.
1044 coin_selection_params.tx_noinputs_size += GetSerializeSizeForRecipient(recipient);
1045 recipients_sum += recipient.nAmount;
1046
1047 if (recipient.fSubtractFeeFromAmount) {
1048 outputs_to_subtract_fee_from++;
1049 coin_selection_params.m_subtract_fee_outputs = true;
1050 }
1051 }
1052
1053 // Create change script that will be used if we need change
1054 CScript scriptChange;
1055 bilingual_str error; // possible error str
1056
1057 // coin control: send change to custom address
1058 if (!std::get_if<CNoDestination>(&coin_control.destChange)) {
1059 scriptChange = GetScriptForDestination(coin_control.destChange);
1060 } else { // no coin control: send change to newly generated address
1061 // Note: We use a new key here to keep it from being obvious which side is the change.
1062 // The drawback is that by not reusing a previous key, the change may be lost if a
1063 // backup is restored, if the backup doesn't have the new private key for the change.
1064 // If we reused the old key, it would be possible to add code to look for and
1065 // rediscover unknown transactions that were written with keys of ours to recover
1066 // post-backup change.
1067
1068 // Reserve a new key pair from key pool. If it fails, provide a dummy
1069 // destination in case we don't need change.
1070 CTxDestination dest;
1071 auto op_dest = reservedest.GetReservedDestination(true);
1072 if (!op_dest) {
1073 error = _("Transaction needs a change address, but we can't generate it.") + Untranslated(" ") + util::ErrorString(op_dest);
1074 } else {
1075 dest = *op_dest;
1076 scriptChange = GetScriptForDestination(dest);
1077 }
1078 // A valid destination implies a change script (and
1079 // vice-versa). An empty change script will abort later, if the
1080 // change keypool ran out, but change is required.
1081 CHECK_NONFATAL(IsValidDestination(dest) != scriptChange.empty());
1082 }
1083 CTxOut change_prototype_txout(0, scriptChange);
1084 coin_selection_params.change_output_size = GetSerializeSize(change_prototype_txout);
1085
1086 // Get size of spending the change output
1087 int change_spend_size = CalculateMaximumSignedInputSize(change_prototype_txout, &wallet, /*coin_control=*/nullptr);
1088 // If the wallet doesn't know how to sign change output, assume p2sh-p2wpkh
1089 // as lower-bound to allow BnB to do it's thing
1090 if (change_spend_size == -1) {
1091 coin_selection_params.change_spend_size = DUMMY_NESTED_P2WPKH_INPUT_SIZE;
1092 } else {
1093 coin_selection_params.change_spend_size = change_spend_size;
1094 }
1095
1096 // Set discard feerate
1097 coin_selection_params.m_discard_feerate = GetDiscardRate(wallet);
1098
1099 // Get the fee rate to use effective values in coin selection
1100 FeeCalculation feeCalc;
1101 coin_selection_params.m_effective_feerate = GetMinimumFeeRate(wallet, coin_control, &feeCalc);
1102 // Do not, ever, assume that it's fine to change the fee rate if the user has explicitly
1103 // provided one
1104 if (coin_control.m_feerate && coin_selection_params.m_effective_feerate > *coin_control.m_feerate) {
1105 return util::Error{strprintf(_("Fee rate (%s) is lower than the minimum fee rate setting (%s)"), coin_control.m_feerate->ToString(FeeEstimateMode::SAT_VB), coin_selection_params.m_effective_feerate.ToString(FeeEstimateMode::SAT_VB))};
1106 }
1107 if (feeCalc.reason == FeeReason::FALLBACK && !wallet.m_allow_fallback_fee) {
1108 // eventually allow a fallback fee
1109 return util::Error{strprintf(_("Fee estimation failed. Fallbackfee is disabled. Wait a few blocks or enable %s."), "-fallbackfee")};
1110 }
1111
1112 // Calculate the cost of change
1113 // Cost of change is the cost of creating the change output + cost of spending the change output in the future.
1114 // For creating the change output now, we use the effective feerate.
1115 // For spending the change output in the future, we use the discard feerate for now.
1116 // So cost of change = (change output size * effective feerate) + (size of spending change output * discard feerate)
1117 coin_selection_params.m_change_fee = coin_selection_params.m_effective_feerate.GetFee(coin_selection_params.change_output_size);
1118 coin_selection_params.m_cost_of_change = coin_selection_params.m_discard_feerate.GetFee(coin_selection_params.change_spend_size) + coin_selection_params.m_change_fee;
1119
1120 coin_selection_params.m_min_change_target = GenerateChangeTarget(std::floor(recipients_sum / vecSend.size()), coin_selection_params.m_change_fee, rng_fast);
1121
1122 // The smallest change amount should be:
1123 // 1. at least equal to dust threshold
1124 // 2. at least 1 sat greater than fees to spend it at m_discard_feerate
1125 const auto dust = GetDustThreshold(change_prototype_txout, coin_selection_params.m_discard_feerate);
1126 const auto change_spend_fee = coin_selection_params.m_discard_feerate.GetFee(coin_selection_params.change_spend_size);
1127 coin_selection_params.min_viable_change = std::max(change_spend_fee + 1, dust);
1128
1129 // Include the fees for things that aren't inputs, excluding the change output
1130 const CAmount not_input_fees = coin_selection_params.m_effective_feerate.GetFee(coin_selection_params.m_subtract_fee_outputs ? 0 : coin_selection_params.tx_noinputs_size);
1131 CAmount selection_target = recipients_sum + not_input_fees;
1132
1133 // This can only happen if feerate is 0, and requested destinations are value of 0 (e.g. OP_RETURN)
1134 // and no pre-selected inputs. This will result in 0-input transaction, which is consensus-invalid anyways
1135 if (selection_target == 0 && !coin_control.HasSelected()) {
1136 return util::Error{_("Transaction requires one destination of non-0 value, a non-0 feerate, or a pre-selected input")};
1137 }
1138
1139 // Fetch manually selected coins
1140 PreSelectedInputs preset_inputs;
1141 if (coin_control.HasSelected()) {
1142 auto res_fetch_inputs = FetchSelectedInputs(wallet, coin_control, coin_selection_params);
1143 if (!res_fetch_inputs) return util::Error{util::ErrorString(res_fetch_inputs)};
1144 preset_inputs = *res_fetch_inputs;
1145 }
1146
1147 // Fetch wallet available coins if "other inputs" are
1148 // allowed (coins automatically selected by the wallet)
1149 CoinsResult available_coins;
1150 if (coin_control.m_allow_other_inputs) {
1151 available_coins = AvailableCoins(wallet, &coin_control, coin_selection_params.m_effective_feerate);
1152 }
1153
1154 // Choose coins to use
1155 auto select_coins_res = SelectCoins(wallet, available_coins, preset_inputs, /*nTargetValue=*/selection_target, coin_control, coin_selection_params);
1156 if (!select_coins_res) {
1157 // 'SelectCoins' either returns a specific error message or, if empty, means a general "Insufficient funds".
1158 const bilingual_str& err = util::ErrorString(select_coins_res);
1159 return util::Error{err.empty() ?_("Insufficient funds") : err};
1160 }
1161 const SelectionResult& result = *select_coins_res;
1162 TRACE5(coin_selection, selected_coins,
1163 wallet.GetName().c_str(),
1164 GetAlgorithmName(result.GetAlgo()).c_str(),
1165 result.GetTarget(),
1166 result.GetWaste(),
1167 result.GetSelectedValue());
1168
1169 // vouts to the payees
1170 for (const auto& recipient : vecSend)
1171 {
1172 txNew.vout.emplace_back(recipient.nAmount, GetScriptForDestination(recipient.dest));
1173 }
1174 const CAmount change_amount = result.GetChange(coin_selection_params.min_viable_change, coin_selection_params.m_change_fee);
1175 if (change_amount > 0) {
1176 CTxOut newTxOut(change_amount, scriptChange);
1177 if (!change_pos) {
1178 // Insert change txn at random position:
1179 change_pos = rng_fast.randrange(txNew.vout.size() + 1);
1180 } else if ((unsigned int)*change_pos > txNew.vout.size()) {
1181 return util::Error{_("Transaction change output index out of range")};
1182 }
1183 txNew.vout.insert(txNew.vout.begin() + *change_pos, newTxOut);
1184 } else {
1185 change_pos = std::nullopt;
1186 }
1187
1188 // Shuffle selected coins and fill in final vin
1189 std::vector<std::shared_ptr<COutput>> selected_coins = result.GetShuffledInputVector();
1190
1191 if (coin_control.HasSelected() && coin_control.HasSelectedOrder()) {
1192 // When there are preselected inputs, we need to move them to be the first UTXOs
1193 // and have them be in the order selected. We can use stable_sort for this, where we
1194 // compare with the positions stored in coin_control. The COutputs that have positions
1195 // will be placed before those that don't, and those positions will be in order.
1196 std::stable_sort(selected_coins.begin(), selected_coins.end(),
1197 [&coin_control](const std::shared_ptr<COutput>& a, const std::shared_ptr<COutput>& b) {
1198 auto a_pos = coin_control.GetSelectionPos(a->outpoint);
1199 auto b_pos = coin_control.GetSelectionPos(b->outpoint);
1200 if (a_pos.has_value() && b_pos.has_value()) {
1201 return a_pos.value() < b_pos.value();
1202 } else if (a_pos.has_value() && !b_pos.has_value()) {
1203 return true;
1204 } else {
1205 return false;
1206 }
1207 });
1208 }
1209
1210 // The sequence number is set to non-maxint so that DiscourageFeeSniping
1211 // works.
1212 //
1213 // BIP125 defines opt-in RBF as any nSequence < maxint-1, so
1214 // we use the highest possible value in that range (maxint-2)
1215 // to avoid conflicting with other possible uses of nSequence,
1216 // and in the spirit of "smallest possible change from prior
1217 // behavior."
1218 bool use_anti_fee_sniping = true;
1219 const uint32_t default_sequence{coin_control.m_signal_bip125_rbf.value_or(wallet.m_signal_rbf) ? MAX_BIP125_RBF_SEQUENCE : CTxIn::MAX_SEQUENCE_NONFINAL};
1220 for (const auto& coin : selected_coins) {
1221 std::optional<uint32_t> sequence = coin_control.GetSequence(coin->outpoint);
1222 if (sequence) {
1223 // If an input has a preset sequence, we can't do anti-fee-sniping
1224 use_anti_fee_sniping = false;
1225 }
1226 txNew.vin.emplace_back(coin->outpoint, CScript{}, sequence.value_or(default_sequence));
1227
1228 auto scripts = coin_control.GetScripts(coin->outpoint);
1229 if (scripts.first) {
1230 txNew.vin.back().scriptSig = *scripts.first;
1231 }
1232 if (scripts.second) {
1233 txNew.vin.back().scriptWitness = *scripts.second;
1234 }
1235 }
1236 if (coin_control.m_locktime) {
1237 txNew.nLockTime = coin_control.m_locktime.value();
1238 // If we have a locktime set, we can't use anti-fee-sniping
1239 use_anti_fee_sniping = false;
1240 }
1241 if (use_anti_fee_sniping) {
1242 DiscourageFeeSniping(txNew, rng_fast, wallet.chain(), wallet.GetLastBlockHash(), wallet.GetLastBlockHeight());
1243 }
1244
1245 // Calculate the transaction fee
1246 TxSize tx_sizes = CalculateMaximumSignedTxSize(CTransaction(txNew), &wallet, &coin_control);
1247 int nBytes = tx_sizes.vsize;
1248 if (nBytes == -1) {
1249 return util::Error{_("Missing solving data for estimating transaction size")};
1250 }
1251 CAmount fee_needed = coin_selection_params.m_effective_feerate.GetFee(nBytes) + result.GetTotalBumpFees();
1252 const CAmount output_value = CalculateOutputValue(txNew);
1253 Assume(recipients_sum + change_amount == output_value);
1254 CAmount current_fee = result.GetSelectedValue() - output_value;
1255
1256 // Sanity check that the fee cannot be negative as that means we have more output value than input value
1257 if (current_fee < 0) {
1258 return util::Error{Untranslated(STR_INTERNAL_BUG("Fee paid < 0"))};
1259 }
1260
1261 // If there is a change output and we overpay the fees then increase the change to match the fee needed
1262 if (change_pos && fee_needed < current_fee) {
1263 auto& change = txNew.vout.at(*change_pos);
1264 change.nValue += current_fee - fee_needed;
1265 current_fee = result.GetSelectedValue() - CalculateOutputValue(txNew);
1266 if (fee_needed != current_fee) {
1267 return util::Error{Untranslated(STR_INTERNAL_BUG("Change adjustment: Fee needed != fee paid"))};
1268 }
1269 }
1270
1271 // Reduce output values for subtractFeeFromAmount
1272 if (coin_selection_params.m_subtract_fee_outputs) {
1273 CAmount to_reduce = fee_needed - current_fee;
1274 unsigned int i = 0;
1275 bool fFirst = true;
1276 for (const auto& recipient : vecSend)
1277 {
1278 if (change_pos && i == *change_pos) {
1279 ++i;
1280 }
1281 CTxOut& txout = txNew.vout[i];
1282
1283 if (recipient.fSubtractFeeFromAmount)
1284 {
1285 txout.nValue -= to_reduce / outputs_to_subtract_fee_from; // Subtract fee equally from each selected recipient
1286
1287 if (fFirst) // first receiver pays the remainder not divisible by output count
1288 {
1289 fFirst = false;
1290 txout.nValue -= to_reduce % outputs_to_subtract_fee_from;
1291 }
1292
1293 // Error if this output is reduced to be below dust
1294 if (IsDust(txout, wallet.chain().relayDustFee())) {
1295 if (txout.nValue < 0) {
1296 return util::Error{_("The transaction amount is too small to pay the fee")};
1297 } else {
1298 return util::Error{_("The transaction amount is too small to send after the fee has been deducted")};
1299 }
1300 }
1301 }
1302 ++i;
1303 }
1304 current_fee = result.GetSelectedValue() - CalculateOutputValue(txNew);
1305 if (fee_needed != current_fee) {
1306 return util::Error{Untranslated(STR_INTERNAL_BUG("SFFO: Fee needed != fee paid"))};
1307 }
1308 }
1309
1310 // fee_needed should now always be less than or equal to the current fees that we pay.
1311 // If it is not, it is a bug.
1312 if (fee_needed > current_fee) {
1313 return util::Error{Untranslated(STR_INTERNAL_BUG("Fee needed > fee paid"))};
1314 }
1315
1316 // Give up if change keypool ran out and change is required
1317 if (scriptChange.empty() && change_pos) {
1318 return util::Error{error};
1319 }
1320
1321 if (sign && !wallet.SignTransaction(txNew)) {
1322 return util::Error{_("Signing transaction failed")};
1323 }
1324
1325 // Return the constructed transaction data.
1326 CTransactionRef tx = MakeTransactionRef(std::move(txNew));
1327
1328 // Limit size
1329 if ((sign && GetTransactionWeight(*tx) > MAX_STANDARD_TX_WEIGHT) ||
1330 (!sign && tx_sizes.weight > MAX_STANDARD_TX_WEIGHT))
1331 {
1332 return util::Error{_("Transaction too large")};
1333 }
1334
1335 if (current_fee > wallet.m_default_max_tx_fee) {
1336 return util::Error{TransactionErrorString(TransactionError::MAX_FEE_EXCEEDED)};
1337 }
1338
1339 if (gArgs.GetBoolArg("-walletrejectlongchains", DEFAULT_WALLET_REJECT_LONG_CHAINS)) {
1340 // Lastly, ensure this tx will pass the mempool's chain limits
1341 auto result = wallet.chain().checkChainLimits(tx);
1342 if (!result) {
1343 return util::Error{util::ErrorString(result)};
1344 }
1345 }
1346
1347 // Before we return success, we assume any change key will be used to prevent
1348 // accidental reuse.
1349 reservedest.KeepDestination();
1350
1351 wallet.WalletLogPrintf("Coin Selection: Algorithm:%s, Waste Metric Score:%d\n", GetAlgorithmName(result.GetAlgo()), result.GetWaste());
1352 wallet.WalletLogPrintf("Fee Calculation: Fee:%d Bytes:%u Tgt:%d (requested %d) Reason:\"%s\" Decay %.5f: Estimation: (%g - %g) %.2f%% %.1f/(%.1f %d mem %.1f out) Fail: (%g - %g) %.2f%% %.1f/(%.1f %d mem %.1f out)\n",
1353 current_fee, nBytes, feeCalc.returnedTarget, feeCalc.desiredTarget, StringForFeeReason(feeCalc.reason), feeCalc.est.decay,
1354 feeCalc.est.pass.start, feeCalc.est.pass.end,
1355 (feeCalc.est.pass.totalConfirmed + feeCalc.est.pass.inMempool + feeCalc.est.pass.leftMempool) > 0.0 ? 100 * feeCalc.est.pass.withinTarget / (feeCalc.est.pass.totalConfirmed + feeCalc.est.pass.inMempool + feeCalc.est.pass.leftMempool) : 0.0,
1356 feeCalc.est.pass.withinTarget, feeCalc.est.pass.totalConfirmed, feeCalc.est.pass.inMempool, feeCalc.est.pass.leftMempool,
1357 feeCalc.est.fail.start, feeCalc.est.fail.end,
1358 (feeCalc.est.fail.totalConfirmed + feeCalc.est.fail.inMempool + feeCalc.est.fail.leftMempool) > 0.0 ? 100 * feeCalc.est.fail.withinTarget / (feeCalc.est.fail.totalConfirmed + feeCalc.est.fail.inMempool + feeCalc.est.fail.leftMempool) : 0.0,
1359 feeCalc.est.fail.withinTarget, feeCalc.est.fail.totalConfirmed, feeCalc.est.fail.inMempool, feeCalc.est.fail.leftMempool);
1360 return CreatedTransactionResult(tx, current_fee, change_pos, feeCalc);
1361}
1362
1364 CWallet& wallet,
1365 const std::vector<CRecipient>& vecSend,
1366 std::optional<unsigned int> change_pos,
1367 const CCoinControl& coin_control,
1368 bool sign)
1369{
1370 if (vecSend.empty()) {
1371 return util::Error{_("Transaction must have at least one recipient")};
1372 }
1373
1374 if (std::any_of(vecSend.cbegin(), vecSend.cend(), [](const auto& recipient){ return recipient.nAmount < 0; })) {
1375 return util::Error{_("Transaction amounts must not be negative")};
1376 }
1377
1378 LOCK(wallet.cs_wallet);
1379
1380 auto res = CreateTransactionInternal(wallet, vecSend, change_pos, coin_control, sign);
1381 TRACE4(coin_selection, normal_create_tx_internal,
1382 wallet.GetName().c_str(),
1383 bool(res),
1384 res ? res->fee : 0,
1385 res && res->change_pos.has_value() ? int32_t(*res->change_pos) : -1);
1386 if (!res) return res;
1387 const auto& txr_ungrouped = *res;
1388 // try with avoidpartialspends unless it's enabled already
1389 if (txr_ungrouped.fee > 0 /* 0 means non-functional fee rate estimation */ && wallet.m_max_aps_fee > -1 && !coin_control.m_avoid_partial_spends) {
1390 TRACE1(coin_selection, attempting_aps_create_tx, wallet.GetName().c_str());
1391 CCoinControl tmp_cc = coin_control;
1392 tmp_cc.m_avoid_partial_spends = true;
1393
1394 // Reuse the change destination from the first creation attempt to avoid skipping BIP44 indexes
1395 if (txr_ungrouped.change_pos) {
1396 ExtractDestination(txr_ungrouped.tx->vout[*txr_ungrouped.change_pos].scriptPubKey, tmp_cc.destChange);
1397 }
1398
1399 auto txr_grouped = CreateTransactionInternal(wallet, vecSend, change_pos, tmp_cc, sign);
1400 // if fee of this alternative one is within the range of the max fee, we use this one
1401 const bool use_aps{txr_grouped.has_value() ? (txr_grouped->fee <= txr_ungrouped.fee + wallet.m_max_aps_fee) : false};
1402 TRACE5(coin_selection, aps_create_tx_internal,
1403 wallet.GetName().c_str(),
1404 use_aps,
1405 txr_grouped.has_value(),
1406 txr_grouped.has_value() ? txr_grouped->fee : 0,
1407 txr_grouped.has_value() && txr_grouped->change_pos.has_value() ? int32_t(*txr_grouped->change_pos) : -1);
1408 if (txr_grouped) {
1409 wallet.WalletLogPrintf("Fee non-grouped = %lld, grouped = %lld, using %s\n",
1410 txr_ungrouped.fee, txr_grouped->fee, use_aps ? "grouped" : "non-grouped");
1411 if (use_aps) return txr_grouped;
1412 }
1413 }
1414 return res;
1415}
1416
1417util::Result<CreatedTransactionResult> FundTransaction(CWallet& wallet, const CMutableTransaction& tx, const std::vector<CRecipient>& vecSend, std::optional<unsigned int> change_pos, bool lockUnspents, CCoinControl coinControl)
1418{
1419 // We want to make sure tx.vout is not used now that we are passing outputs as a vector of recipients.
1420 // This sets us up to remove tx completely in a future PR in favor of passing the inputs directly.
1421 assert(tx.vout.empty());
1422
1423 // Set the user desired locktime
1424 coinControl.m_locktime = tx.nLockTime;
1425
1426 // Set the user desired version
1427 coinControl.m_version = tx.version;
1428
1429 // Acquire the locks to prevent races to the new locked unspents between the
1430 // CreateTransaction call and LockCoin calls (when lockUnspents is true).
1431 LOCK(wallet.cs_wallet);
1432
1433 // Fetch specified UTXOs from the UTXO set to get the scriptPubKeys and values of the outputs being selected
1434 // and to match with the given solving_data. Only used for non-wallet outputs.
1435 std::map<COutPoint, Coin> coins;
1436 for (const CTxIn& txin : tx.vin) {
1437 coins[txin.prevout]; // Create empty map entry keyed by prevout.
1438 }
1439 wallet.chain().findCoins(coins);
1440
1441 for (const CTxIn& txin : tx.vin) {
1442 const auto& outPoint = txin.prevout;
1443 PreselectedInput& preset_txin = coinControl.Select(outPoint);
1444 if (!wallet.IsMine(outPoint)) {
1445 if (coins[outPoint].out.IsNull()) {
1446 return util::Error{_("Unable to find UTXO for external input")};
1447 }
1448
1449 // The input was not in the wallet, but is in the UTXO set, so select as external
1450 preset_txin.SetTxOut(coins[outPoint].out);
1451 }
1452 preset_txin.SetSequence(txin.nSequence);
1453 preset_txin.SetScriptSig(txin.scriptSig);
1454 preset_txin.SetScriptWitness(txin.scriptWitness);
1455 }
1456
1457 auto res = CreateTransaction(wallet, vecSend, change_pos, coinControl, false);
1458 if (!res) {
1459 return res;
1460 }
1461
1462 if (lockUnspents) {
1463 for (const CTxIn& txin : res->tx->vin) {
1464 wallet.LockCoin(txin.prevout);
1465 }
1466 }
1467
1468 return res;
1469}
1470} // namespace wallet
bool ExtractDestination(const CScript &scriptPubKey, CTxDestination &addressRet)
Parse a scriptPubKey for the destination.
bool IsValidDestination(const CTxDestination &dest)
Check whether a CTxDestination corresponds to one with an address.
CScript GetScriptForDestination(const CTxDestination &dest)
Generate a Bitcoin scriptPubKey for the given CTxDestination.
std::variant< CNoDestination, PubKeyDestination, PKHash, ScriptHash, WitnessV0ScriptHash, WitnessV0KeyHash, WitnessV1Taproot, PayToAnchor, WitnessUnknown > CTxDestination
A txout script categorized into standard templates.
static constexpr CAmount MAX_MONEY
No amount larger than this (in satoshi) is valid.
Definition amount.h:26
int64_t CAmount
Amount in satoshis (Can be negative)
Definition amount.h:12
ArgsManager gArgs
Definition args.cpp:41
if(!SetupNetworking())
#define CHECK_NONFATAL(condition)
Identity function.
Definition check.h:73
#define Assert(val)
Identity function.
Definition check.h:77
#define STR_INTERNAL_BUG(msg)
Definition check.h:60
#define Assume(val)
Assume is the identity function.
Definition check.h:89
bool GetBoolArg(const std::string &strArg, bool fDefault) const
Return boolean argument or default value.
Definition args.cpp:506
Fee rate in satoshis per kilovirtualbyte: CAmount / kvB.
Definition feerate.h:33
An outpoint - a combination of a transaction hash and an index n into its vout.
Definition transaction.h:29
uint32_t n
Definition transaction.h:32
Serialized script, used inside transaction inputs and outputs.
Definition script.h:414
A reference to a CScript: the Hash160 of its serialization.
Definition script.h:591
The basic transaction that is broadcasted on the network and contained in blocks.
const std::vector< CTxOut > vout
const std::vector< CTxIn > vin
An input of a transaction.
Definition transaction.h:67
static const uint32_t MAX_SEQUENCE_NONFINAL
This is the maximum sequence number that enables both nLockTime and OP_CHECKLOCKTIMEVERIFY (BIP 65).
Definition transaction.h:87
uint32_t nSequence
Definition transaction.h:71
static const uint32_t SEQUENCE_FINAL
Setting nSequence to this value for every input in a transaction disables nLockTime/IsFinalTx().
Definition transaction.h:81
CScript scriptSig
Definition transaction.h:70
CScriptWitness scriptWitness
Only serialized through CTransaction.
Definition transaction.h:72
COutPoint prevout
Definition transaction.h:69
An output of a transaction.
CScript scriptPubKey
CAmount nValue
Fast randomness source.
Definition random.h:377
A signing provider to be used to interface with multiple signing providers at once.
void AddProvider(std::unique_ptr< SigningProvider > provider)
I randrange(I range) noexcept
Generate a random integer in the range [0..range), with range > 0.
Definition random.h:254
An interface to be implemented by keystores that support signing.
Interface giving clients (wallet processes, maybe other analysis tools in the future) ability to acce...
Definition chain.h:135
virtual bool isInitialBlockDownload()=0
Check if in IBD.
virtual std::optional< CAmount > calculateCombinedBumpFee(const std::vector< COutPoint > &outpoints, const CFeeRate &target_feerate)=0
Calculate the combined bump fee for an input set per the same strategy.
virtual bool findBlock(const uint256 &hash, const FoundBlock &block={})=0
Return whether node has the block and optionally return block metadata or contents.
Helper for findBlock to selectively return pieces of block data.
Definition chain.h:54
bool empty() const
Definition prevector.h:300
static transaction_identifier FromUint256(const uint256 &id)
160-bit opaque blob.
Definition uint256.h:166
256-bit opaque blob.
Definition uint256.h:178
Coin Control Features.
Definition coincontrol.h:81
bool IsSelected(const COutPoint &outpoint) const
Returns true if the given output is pre-selected.
std::optional< CTxOut > GetExternalOutput(const COutPoint &outpoint) const
Returns the external output for the given outpoint if it exists.
bool m_avoid_address_reuse
Forbids inclusion of dirty (previously used) addresses.
std::optional< int64_t > GetInputWeight(const COutPoint &outpoint) const
Returns the input weight.
PreselectedInput & Select(const COutPoint &outpoint)
Lock-in the given output for spending.
bool HasSelected() const
Returns true if there are pre-selected inputs.
bool IsExternalSelected(const COutPoint &outpoint) const
Returns true if the given output is selected as an external input.
int m_min_depth
Minimum chain depth value for coin availability.
bool m_allow_other_inputs
If true, the selection process can add extra unselected inputs from the wallet while requires all sel...
Definition coincontrol.h:91
int m_max_depth
Maximum chain depth value for coin availability.
std::optional< uint32_t > m_version
Version.
bool m_include_unsafe_inputs
If false, only safe inputs will be used.
Definition coincontrol.h:88
bool m_avoid_partial_spends
Avoid partial use of funds sent to a given address.
bool fAllowWatchOnly
Includes watch only addresses which are solvable.
Definition coincontrol.h:93
FlatSigningProvider m_external_provider
SigningProvider that has pubkeys and scripts to do spend size estimation for external inputs.
CTxDestination destChange
Custom change destination, if not set an address is generated.
Definition coincontrol.h:84
std::vector< COutPoint > ListSelected() const
List the selected inputs.
std::optional< uint32_t > m_locktime
Locktime.
A CWallet maintains a set of transactions and balances, and provides the ability to create new transa...
Definition wallet.h:300
A transaction with a bunch of additional info that only the owner cares about.
mapValue_t mapValue
Key/value map with information about the transaction.
CTransactionRef tx
bool InMempool() const
int64_t GetTxTime() const
void SetScriptSig(const CScript &script)
Set the scriptSig for this input.
void SetSequence(uint32_t sequence)
Set the sequence for this input.
void SetScriptWitness(const CScriptWitness &script_wit)
Set the scriptWitness for this input.
void SetTxOut(const CTxOut &txout)
Set the previous output for this input.
A wrapper to reserve an address from a wallet.
Definition wallet.h:188
static int32_t GetTransactionWeight(const CTransaction &tx)
Definition validation.h:149
static const int WITNESS_SCALE_FACTOR
Definition consensus.h:21
@ SAT_VB
Use sat/vB fee rate unit.
util::Result< CTxDestination > GetReservedDestination(bool internal)
Reserve an address.
Definition wallet.cpp:2649
uint64_t sequence
is a home for simple string functions returning descriptive messages that are used in RPC and GUI int...
bilingual_str TransactionErrorString(const TransactionError err)
Definition messages.cpp:124
std::string StringForFeeReason(FeeReason reason)
Definition messages.cpp:26
TransactionError
Definition types.h:19
bilingual_str ErrorString(const Result< T > &result)
Definition result.h:93
const CTxOut & FindNonChangeParentOutput(const CWallet &wallet, const COutPoint &outpoint)
Find non-change parent output.
Definition spend.cpp:479
bool OutputIsChange(const CWallet &wallet, const CTxOut &txout)
Definition receive.cpp:73
CreatedTransactionResult FundTransaction(CWallet &wallet, const CMutableTransaction &tx, const std::vector< CRecipient > &recipients, const UniValue &options, CCoinControl &coinControl, bool override_min_fee)
Definition spend.cpp:500
util::Result< SelectionResult > AutomaticCoinSelection(const CWallet &wallet, CoinsResult &available_coins, const CAmount &value_to_select, const CoinSelectionParams &coin_selection_params)
Select a set of coins such that nTargetValue is met; never select unconfirmed coins if they are not o...
Definition spend.cpp:822
FilteredOutputGroups GroupOutputs(const CWallet &wallet, const CoinsResult &coins, const CoinSelectionParams &coin_sel_params, const std::vector< SelectionFilter > &filters, std::vector< OutputGroup > &ret_discarded_groups)
Definition spend.cpp:528
util::Result< CreatedTransactionResult > CreateTransaction(CWallet &wallet, const std::vector< CRecipient > &vecSend, std::optional< unsigned int > change_pos, const CCoinControl &coin_control, bool sign)
Create a new transaction paying the recipients with a set of coins selected by SelectCoins(); Also cr...
Definition spend.cpp:1363
const int DEFAULT_MIN_DEPTH
Definition coincontrol.h:21
CAmount GenerateChangeTarget(const CAmount payment_value, const CAmount change_fee, FastRandomContext &rng)
Choose a random change target for each transaction to make it harder to fingerprint the Core wallet b...
bool CachedTxIsFromMe(const CWallet &wallet, const CWalletTx &wtx, const isminefilter &filter)
Definition receive.cpp:251
static std::unique_ptr< Descriptor > GetDescriptor(const CWallet *wallet, const CCoinControl *coin_control, const CScript script_pubkey)
Infer a descriptor for the given output script.
Definition spend.cpp:105
static bool UseMaxSig(const std::optional< CTxIn > &txin, const CCoinControl *coin_control)
Whether to assume ECDSA signatures' will be high-r.
Definition spend.cpp:48
static std::optional< int64_t > GetSignedTxinWeight(const CWallet *wallet, const CCoinControl *coin_control, const CTxIn &txin, const CTxOut &txo, const bool tx_is_segwit, const bool can_grind_r)
Infer the maximum size of this input after it will be signed.
Definition spend.cpp:119
util::Result< SelectionResult > CoinGrinder(std::vector< OutputGroup > &utxo_pool, const CAmount &selection_target, CAmount change_target, int max_selection_weight)
util::Result< PreSelectedInputs > FetchSelectedInputs(const CWallet &wallet, const CCoinControl &coin_control, const CoinSelectionParams &coin_selection_params)
Fetch and validate coin control selected inputs.
Definition spend.cpp:262
static OutputType GetOutputType(TxoutType type, bool is_from_p2sh)
Definition spend.cpp:243
bool CachedTxIsTrusted(const CWallet &wallet, const CWalletTx &wtx, std::set< uint256 > &trusted_parents)
Definition receive.cpp:257
static bool IsSegwit(const Descriptor &desc)
Whether the descriptor represents, directly or not, a witness program.
Definition spend.cpp:42
const int DEFAULT_MAX_DEPTH
Definition coincontrol.h:22
util::Result< SelectionResult > ChooseSelectionResult(interfaces::Chain &chain, const CAmount &nTargetValue, Groups &groups, const CoinSelectionParams &coin_selection_params)
Attempt to find a valid input set that meets the provided eligibility filter and target.
Definition spend.cpp:685
util::Result< SelectionResult > KnapsackSolver(std::vector< OutputGroup > &groups, const CAmount &nTargetValue, CAmount change_target, FastRandomContext &rng, int max_selection_weight)
util::Result< SelectionResult > SelectCoins(const CWallet &wallet, CoinsResult &available_coins, const PreSelectedInputs &pre_set_inputs, const CAmount &nTargetValue, const CCoinControl &coin_control, const CoinSelectionParams &coin_selection_params)
Select all coins from coin_control, and if coin_control 'm_allow_other_inputs=true',...
Definition spend.cpp:770
CFeeRate GetMinimumFeeRate(const CWallet &wallet, const CCoinControl &coin_control, FeeCalculation *feeCalc)
Estimate the minimum fee rate considering user set parameters and the required fee.
Definition fees.cpp:29
std::map< CTxDestination, std::vector< COutput > > ListCoins(const CWallet &wallet)
Return list of available coins and locked coins grouped by non-change output address.
Definition spend.cpp:499
isminetype
IsMine() return codes, which depend on ScriptPubKeyMan implementation.
Definition types.h:41
CoinsResult AvailableCoinsListUnspent(const CWallet &wallet, const CCoinControl *coinControl, CoinFilterParams params)
Wrapper function for AvailableCoins which skips the feerate and CoinFilterParams::only_spendable para...
Definition spend.cpp:473
std::string GetAlgorithmName(const SelectionAlgorithm algo)
static bool HasErrorMsg(const util::Result< SelectionResult > &res)
Definition spend.cpp:656
size_t GetSerializeSizeForRecipient(const CRecipient &recipient)
Definition spend.cpp:995
CFeeRate GetDiscardRate(const CWallet &wallet)
Return the maximum feerate for discarding change.
Definition fees.cpp:84
std::map< CoinEligibilityFilter, OutputGroupTypeMap > FilteredOutputGroups
TxSize CalculateMaximumSignedTxSize(const CTransaction &tx, const CWallet *wallet, const std::vector< CTxOut > &txouts, const CCoinControl *coin_control)
Calculate the size of the transaction using CoinControl to determine whether to expect signature grin...
Definition spend.cpp:137
static util::Result< CreatedTransactionResult > CreateTransactionInternal(CWallet &wallet, const std::vector< CRecipient > &vecSend, std::optional< unsigned int > change_pos, const CCoinControl &coin_control, bool sign) EXCLUSIVE_LOCKS_REQUIRED(wallet.cs_wallet)
Definition spend.cpp:1005
@ WALLET_FLAG_AVOID_REUSE
Definition walletutil.h:42
static bool IsCurrentForAntiFeeSniping(interfaces::Chain &chain, const uint256 &block_hash)
Definition spend.cpp:921
static void DiscourageFeeSniping(CMutableTransaction &tx, FastRandomContext &rng_fast, interfaces::Chain &chain, const uint256 &block_hash, int block_height)
Set a height-based locktime for new transactions (uses the height of the current chain tip unless we ...
Definition spend.cpp:939
static constexpr size_t OUTPUT_GROUP_MAX_ENTRIES
Definition spend.cpp:39
int CalculateMaximumSignedInputSize(const CTxOut &txout, const COutPoint outpoint, const SigningProvider *provider, bool can_grind_r, const CCoinControl *coin_control)
Definition spend.cpp:85
static std::optional< int64_t > MaxInputWeight(const Descriptor &desc, const std::optional< CTxIn > &txin, const CCoinControl *coin_control, const bool tx_is_segwit, const bool can_grind_r)
Get the size of an input (in witness units) once it's signed.
Definition spend.cpp:62
util::Result< SelectionResult > SelectCoinsSRD(const std::vector< OutputGroup > &utxo_pool, CAmount target_value, CAmount change_fee, FastRandomContext &rng, int max_selection_weight)
Select coins by Single Random Draw.
is a home for public enum and struct type definitions that are used by internally by node code,...
OutputType
Definition outputtype.h:17
CAmount GetDustThreshold(const CTxOut &txout, const CFeeRate &dustRelayFeeIn)
Definition policy.cpp:26
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:300
bool IsDust(const CTxOut &txout, const CFeeRate &dustRelayFeeIn)
Definition policy.cpp:65
static constexpr unsigned int MIN_STANDARD_TX_NONWITNESS_SIZE
The minimum non-witness size for transactions we're willing to relay/mine: one larger than 64
Definition policy.h:29
static constexpr int32_t MAX_STANDARD_TX_WEIGHT
The maximum weight for transactions we're willing to relay/mine.
Definition policy.h:27
CAmount CalculateOutputValue(const TxType &tx)
static CTransactionRef MakeTransactionRef(Tx &&txIn)
std::shared_ptr< const CTransaction > CTransactionRef
std::unique_ptr< Descriptor > InferDescriptor(const CScript &script, const SigningProvider &provider)
Find a descriptor for the specified script, using information from provider where possible.
static const unsigned int LOCKTIME_THRESHOLD
Definition script.h:46
size_t GetSerializeSize(const T &t)
Definition serialize.h:1101
constexpr unsigned int GetSizeOfCompactSize(uint64_t nSize)
Compact Size size < 253 – 1 byte size <= USHRT_MAX – 3 bytes (253 + 2 bytes) size <= UINT_MAX – 5 byt...
Definition serialize.h:295
TxoutType Solver(const CScript &scriptPubKey, std::vector< std::vector< unsigned char > > &vSolutionsRet)
Parse a scriptPubKey and identify script type for standard scripts.
Definition solver.cpp:141
TxoutType
Definition solver.h:22
@ WITNESS_V1_TAPROOT
@ WITNESS_V0_SCRIPTHASH
@ WITNESS_V0_KEYHASH
A mutable version of CTransaction.
std::vector< CTxOut > vout
std::vector< CTxIn > vin
Interface for parsed descriptor objects.
Definition descriptor.h:98
virtual std::optional< int64_t > MaxSatisfactionElems() const =0
Get the maximum size number of stack elements for satisfying this descriptor.
virtual std::optional< int64_t > MaxSatisfactionWeight(bool use_max_sig) const =0
Get the maximum size of a satisfaction for this descriptor, in weight units.
virtual std::optional< OutputType > GetOutputType() const =0
FeeReason reason
Definition fees.h:95
Bilingual messages:
Definition translation.h:18
bool empty() const
Definition translation.h:29
A UTXO under consideration for use in funding a new transaction.
COutPoint outpoint
The outpoint identifying this UTXO.
void ApplyBumpFee(CAmount bump_fee)
CAmount nAmount
Definition wallet.h:291
CTxDestination dest
Definition wallet.h:290
Parameters for filtering which OutputGroups we may use in coin selection.
bool include_immature_coinbase
Definition spend.h:78
Parameters for one iteration of Coin Selection.
FastRandomContext & rng_fast
Randomness to use in the context of coin selection.
CAmount m_min_change_target
Mininmum change to target in Knapsack solver and CoinGrinder: select coins to cover the payment and a...
bool m_subtract_fee_outputs
Indicate that we are subtracting the fee from outputs.
bool m_include_unsafe_inputs
When true, allow unsafe coins to be selected during Coin Selection.
CFeeRate m_effective_feerate
The targeted feerate of the transaction being built.
CAmount min_viable_change
Minimum amount for creating a change output.
CAmount m_cost_of_change
Cost of creating the change output + cost of spending the change output in the future.
CAmount m_change_fee
Cost of creating the change output.
int change_output_size
Size of a change output in bytes, determined by the output type.
int tx_noinputs_size
Size of the transaction before coin selection, consisting of the header and recipient output(s),...
std::optional< int > m_max_tx_weight
The maximum weight for this transaction.
bool m_avoid_partial_spends
When true, always spend all (up to OUTPUT_GROUP_MAX_ENTRIES) or none of the outputs associated with t...
COutputs available for spending, stored by OutputType.
Definition spend.h:40
std::optional< CAmount > GetEffectiveTotalAmount()
Definition spend.h:57
void Add(OutputType type, const COutput &out)
Definition spend.cpp:233
size_t Size() const
The following methods are provided so that CoinsResult can mimic a vector, i.e., methods can work wit...
Definition spend.cpp:187
std::map< OutputType, std::vector< COutput > > coins
Definition spend.h:41
void Shuffle(FastRandomContext &rng_fast)
Definition spend.cpp:226
CAmount GetTotalAmount()
Definition spend.h:56
std::vector< OutputGroup > positive_group
std::vector< OutputGroup > mixed_group
A group of UTXOs paid to the same output script.
Stores several 'Groups' whose were mapped by output type.
std::map< OutputType, Groups > groups_by_type
std::set< std::shared_ptr< COutput > > coins
Definition spend.h:158
void Insert(const COutput &output, bool subtract_fee_outputs)
Definition spend.h:164
CAmount GetChange(const CAmount min_viable_change, const CAmount change_fee) const
Get the amount for the change output after paying needed fees.
CAmount GetSelectedValue() const
Get the sum of the input values.
CAmount GetTarget() const
void RecalculateWaste(const CAmount min_viable_change, const CAmount change_cost, const CAmount change_fee)
Calculates and stores the waste for this result given the cost of change and the opportunity cost of ...
SelectionAlgorithm GetAlgo() const
void AddInputs(const std::set< std::shared_ptr< COutput > > &inputs, bool subtract_fee_outputs)
std::vector< std::shared_ptr< COutput > > GetShuffledInputVector() const
Get the vector of COutputs that will be used to fill in a CTransaction's vin.
#define LOCK(cs)
Definition sync.h:257
#define AssertLockHeld(cs)
Definition sync.h:142
#define EXCLUSIVE_LOCKS_REQUIRED(...)
int64_t GetTime()
DEPRECATED Use either ClockType::now() or Now<TimePointType>() if a cast is needed.
Definition time.cpp:44
#define strprintf
Format arguments and return the string or write to given std::ostream (see tinyformat::format doc for...
#define TRACE5(context, event, a, b, c, d, e)
Definition trace.h:35
#define TRACE4(context, event, a, b, c, d)
Definition trace.h:34
#define TRACE1(context, event, a)
Definition trace.h:31
bilingual_str _(ConstevalStringLiteral str)
Translation function.
Definition translation.h:80
bilingual_str Untranslated(std::string original)
Mark a bilingual_str as untranslated.
Definition translation.h:48
static constexpr uint32_t MAX_BIP125_RBF_SEQUENCE
Definition rbf.h:12
assert(!tx.IsCoinBase())
static void AvailableCoins(benchmark::Bench &bench, const std::vector< OutputType > &output_type)