1 // Copyright (c) 2017 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.
5 #include "consensus/validation.h"
6 #include "wallet/coincontrol.h"
7 #include "wallet/feebumper.h"
8 #include "wallet/wallet.h"
9 #include "policy/fees.h"
10 #include "policy/policy.h"
11 #include "policy/rbf.h"
12 #include "validation.h" //for mempool access
13 #include "txmempool.h"
14 #include "utilmoneystr.h"
18 // Calculate the size of the transaction assuming all signatures are max size
19 // Use DummySignatureCreator, which inserts 72 byte signatures everywhere.
20 // TODO: re-use this in CWallet::CreateTransaction (right now
21 // CreateTransaction uses the constructed dummy-signed tx to do a priority
22 // calculation, but we should be able to refactor after priority is removed).
23 // NOTE: this requires that all inputs must be in mapWallet (eg the tx should
25 int64_t CalculateMaximumSignedTxSize(const CTransaction
&tx
, const CWallet
*pWallet
)
27 CMutableTransaction
txNew(tx
);
28 std::vector
<CInputCoin
> vCoins
;
29 // Look up the inputs. We should have already checked that this transaction
30 // IsAllFromMe(ISMINE_SPENDABLE), so every input should already be in our
31 // wallet, with a valid index into the vout array.
32 for (auto& input
: tx
.vin
) {
33 const auto mi
= pWallet
->mapWallet
.find(input
.prevout
.hash
);
34 assert(mi
!= pWallet
->mapWallet
.end() && input
.prevout
.n
< mi
->second
.tx
->vout
.size());
35 vCoins
.emplace_back(CInputCoin(&(mi
->second
), input
.prevout
.n
));
37 if (!pWallet
->DummySignTx(txNew
, vCoins
)) {
38 // This should never happen, because IsAllFromMe(ISMINE_SPENDABLE)
39 // implies that we can sign for every input.
42 return GetVirtualTransactionSize(txNew
);
45 bool CFeeBumper::preconditionChecks(const CWallet
*pWallet
, const CWalletTx
& wtx
) {
46 if (pWallet
->HasWalletSpend(wtx
.GetHash())) {
47 vErrors
.push_back("Transaction has descendants in the wallet");
48 currentResult
= BumpFeeResult::INVALID_PARAMETER
;
54 auto it_mp
= mempool
.mapTx
.find(wtx
.GetHash());
55 if (it_mp
!= mempool
.mapTx
.end() && it_mp
->GetCountWithDescendants() > 1) {
56 vErrors
.push_back("Transaction has descendants in the mempool");
57 currentResult
= BumpFeeResult::INVALID_PARAMETER
;
62 if (wtx
.GetDepthInMainChain() != 0) {
63 vErrors
.push_back("Transaction has been mined, or is conflicted with a mined transaction");
64 currentResult
= BumpFeeResult::WALLET_ERROR
;
70 CFeeBumper::CFeeBumper(const CWallet
*pWallet
, const uint256 txidIn
, const CCoinControl
& coin_control
, CAmount totalFee
)
72 txid(std::move(txidIn
)),
78 AssertLockHeld(pWallet
->cs_wallet
);
79 if (!pWallet
->mapWallet
.count(txid
)) {
80 vErrors
.push_back("Invalid or non-wallet transaction id");
81 currentResult
= BumpFeeResult::INVALID_ADDRESS_OR_KEY
;
84 auto it
= pWallet
->mapWallet
.find(txid
);
85 const CWalletTx
& wtx
= it
->second
;
87 if (!preconditionChecks(pWallet
, wtx
)) {
91 if (!SignalsOptInRBF(wtx
)) {
92 vErrors
.push_back("Transaction is not BIP 125 replaceable");
93 currentResult
= BumpFeeResult::WALLET_ERROR
;
97 if (wtx
.mapValue
.count("replaced_by_txid")) {
98 vErrors
.push_back(strprintf("Cannot bump transaction %s which was already bumped by transaction %s", txid
.ToString(), wtx
.mapValue
.at("replaced_by_txid")));
99 currentResult
= BumpFeeResult::WALLET_ERROR
;
103 // check that original tx consists entirely of our inputs
104 // if not, we can't bump the fee, because the wallet has no way of knowing the value of the other inputs (thus the fee)
105 if (!pWallet
->IsAllFromMe(wtx
, ISMINE_SPENDABLE
)) {
106 vErrors
.push_back("Transaction contains inputs that don't belong to this wallet");
107 currentResult
= BumpFeeResult::WALLET_ERROR
;
111 // figure out which output was change
112 // if there was no change output or multiple change outputs, fail
114 for (size_t i
= 0; i
< wtx
.tx
->vout
.size(); ++i
) {
115 if (pWallet
->IsChange(wtx
.tx
->vout
[i
])) {
117 vErrors
.push_back("Transaction has multiple change outputs");
118 currentResult
= BumpFeeResult::WALLET_ERROR
;
125 vErrors
.push_back("Transaction does not have a change output");
126 currentResult
= BumpFeeResult::WALLET_ERROR
;
130 // Calculate the expected size of the new transaction.
131 int64_t txSize
= GetVirtualTransactionSize(*(wtx
.tx
));
132 const int64_t maxNewTxSize
= CalculateMaximumSignedTxSize(*wtx
.tx
, pWallet
);
133 if (maxNewTxSize
< 0) {
134 vErrors
.push_back("Transaction contains inputs that cannot be signed");
135 currentResult
= BumpFeeResult::INVALID_ADDRESS_OR_KEY
;
139 // calculate the old fee and fee-rate
140 nOldFee
= wtx
.GetDebit(ISMINE_SPENDABLE
) - wtx
.tx
->GetValueOut();
141 CFeeRate
nOldFeeRate(nOldFee
, txSize
);
142 CFeeRate nNewFeeRate
;
143 // The wallet uses a conservative WALLET_INCREMENTAL_RELAY_FEE value to
144 // future proof against changes to network wide policy for incremental relay
145 // fee that our node may not be aware of.
146 CFeeRate walletIncrementalRelayFee
= CFeeRate(WALLET_INCREMENTAL_RELAY_FEE
);
147 if (::incrementalRelayFee
> walletIncrementalRelayFee
) {
148 walletIncrementalRelayFee
= ::incrementalRelayFee
;
152 CAmount minTotalFee
= nOldFeeRate
.GetFee(maxNewTxSize
) + ::incrementalRelayFee
.GetFee(maxNewTxSize
);
153 if (totalFee
< minTotalFee
) {
154 vErrors
.push_back(strprintf("Insufficient totalFee, must be at least %s (oldFee %s + incrementalFee %s)",
155 FormatMoney(minTotalFee
), FormatMoney(nOldFeeRate
.GetFee(maxNewTxSize
)), FormatMoney(::incrementalRelayFee
.GetFee(maxNewTxSize
))));
156 currentResult
= BumpFeeResult::INVALID_PARAMETER
;
159 CAmount requiredFee
= CWallet::GetRequiredFee(maxNewTxSize
);
160 if (totalFee
< requiredFee
) {
161 vErrors
.push_back(strprintf("Insufficient totalFee (cannot be less than required fee %s)",
162 FormatMoney(requiredFee
)));
163 currentResult
= BumpFeeResult::INVALID_PARAMETER
;
167 nNewFeeRate
= CFeeRate(totalFee
, maxNewTxSize
);
169 nNewFee
= CWallet::GetMinimumFee(maxNewTxSize
, coin_control
, mempool
, ::feeEstimator
, nullptr /* FeeCalculation */);
170 nNewFeeRate
= CFeeRate(nNewFee
, maxNewTxSize
);
172 // New fee rate must be at least old rate + minimum incremental relay rate
173 // walletIncrementalRelayFee.GetFeePerK() should be exact, because it's initialized
174 // in that unit (fee per kb).
175 // However, nOldFeeRate is a calculated value from the tx fee/size, so
176 // add 1 satoshi to the result, because it may have been rounded down.
177 if (nNewFeeRate
.GetFeePerK() < nOldFeeRate
.GetFeePerK() + 1 + walletIncrementalRelayFee
.GetFeePerK()) {
178 nNewFeeRate
= CFeeRate(nOldFeeRate
.GetFeePerK() + 1 + walletIncrementalRelayFee
.GetFeePerK());
179 nNewFee
= nNewFeeRate
.GetFee(maxNewTxSize
);
183 // Check that in all cases the new fee doesn't violate maxTxFee
184 if (nNewFee
> maxTxFee
) {
185 vErrors
.push_back(strprintf("Specified or calculated fee %s is too high (cannot be higher than maxTxFee %s)",
186 FormatMoney(nNewFee
), FormatMoney(maxTxFee
)));
187 currentResult
= BumpFeeResult::WALLET_ERROR
;
191 // check that fee rate is higher than mempool's minimum fee
192 // (no point in bumping fee if we know that the new tx won't be accepted to the mempool)
193 // This may occur if the user set TotalFee or paytxfee too low, if fallbackfee is too low, or, perhaps,
194 // in a rare situation where the mempool minimum fee increased significantly since the fee estimation just a
195 // moment earlier. In this case, we report an error to the user, who may use totalFee to make an adjustment.
196 CFeeRate minMempoolFeeRate
= mempool
.GetMinFee(GetArg("-maxmempool", DEFAULT_MAX_MEMPOOL_SIZE
) * 1000000);
197 if (nNewFeeRate
.GetFeePerK() < minMempoolFeeRate
.GetFeePerK()) {
198 vErrors
.push_back(strprintf("New fee rate (%s) is less than the minimum fee rate (%s) to get into the mempool. totalFee value should to be at least %s or settxfee value should be at least %s to add transaction.", FormatMoney(nNewFeeRate
.GetFeePerK()), FormatMoney(minMempoolFeeRate
.GetFeePerK()), FormatMoney(minMempoolFeeRate
.GetFee(maxNewTxSize
)), FormatMoney(minMempoolFeeRate
.GetFeePerK())));
199 currentResult
= BumpFeeResult::WALLET_ERROR
;
203 // Now modify the output to increase the fee.
204 // If the output is not large enough to pay the fee, fail.
205 CAmount nDelta
= nNewFee
- nOldFee
;
208 CTxOut
* poutput
= &(mtx
.vout
[nOutput
]);
209 if (poutput
->nValue
< nDelta
) {
210 vErrors
.push_back("Change output is too small to bump the fee");
211 currentResult
= BumpFeeResult::WALLET_ERROR
;
215 // If the output would become dust, discard it (converting the dust to fee)
216 poutput
->nValue
-= nDelta
;
217 if (poutput
->nValue
<= GetDustThreshold(*poutput
, ::dustRelayFee
)) {
218 LogPrint(BCLog::RPC
, "Bumping fee and discarding dust output\n");
219 nNewFee
+= poutput
->nValue
;
220 mtx
.vout
.erase(mtx
.vout
.begin() + nOutput
);
223 // Mark new tx not replaceable, if requested.
224 if (!coin_control
.signalRbf
) {
225 for (auto& input
: mtx
.vin
) {
226 if (input
.nSequence
< 0xfffffffe) input
.nSequence
= 0xfffffffe;
230 currentResult
= BumpFeeResult::OK
;
233 bool CFeeBumper::signTransaction(CWallet
*pWallet
)
235 return pWallet
->SignTransaction(mtx
);
238 bool CFeeBumper::commit(CWallet
*pWallet
)
240 AssertLockHeld(pWallet
->cs_wallet
);
241 if (!vErrors
.empty() || currentResult
!= BumpFeeResult::OK
) {
244 if (txid
.IsNull() || !pWallet
->mapWallet
.count(txid
)) {
245 vErrors
.push_back("Invalid or non-wallet transaction id");
246 currentResult
= BumpFeeResult::MISC_ERROR
;
249 CWalletTx
& oldWtx
= pWallet
->mapWallet
[txid
];
251 // make sure the transaction still has no descendants and hasn't been mined in the meantime
252 if (!preconditionChecks(pWallet
, oldWtx
)) {
256 CWalletTx
wtxBumped(pWallet
, MakeTransactionRef(std::move(mtx
)));
257 // commit/broadcast the tx
258 CReserveKey
reservekey(pWallet
);
259 wtxBumped
.mapValue
= oldWtx
.mapValue
;
260 wtxBumped
.mapValue
["replaces_txid"] = oldWtx
.GetHash().ToString();
261 wtxBumped
.vOrderForm
= oldWtx
.vOrderForm
;
262 wtxBumped
.strFromAccount
= oldWtx
.strFromAccount
;
263 wtxBumped
.fTimeReceivedIsTxTime
= true;
264 wtxBumped
.fFromMe
= true;
265 CValidationState state
;
266 if (!pWallet
->CommitTransaction(wtxBumped
, reservekey
, g_connman
.get(), state
)) {
267 // NOTE: CommitTransaction never returns false, so this should never happen.
268 vErrors
.push_back(strprintf("Error: The transaction was rejected! Reason given: %s", state
.GetRejectReason()));
272 bumpedTxid
= wtxBumped
.GetHash();
273 if (state
.IsInvalid()) {
274 // This can happen if the mempool rejected the transaction. Report
275 // what happened in the "errors" response.
276 vErrors
.push_back(strprintf("Error: The transaction was rejected: %s", FormatStateMessage(state
)));
279 // mark the original tx as bumped
280 if (!pWallet
->MarkReplaced(oldWtx
.GetHash(), wtxBumped
.GetHash())) {
281 // TODO: see if JSON-RPC has a standard way of returning a response
282 // along with an exception. It would be good to return information about
283 // wtxBumped to the caller even if marking the original transaction
284 // replaced does not succeed for some reason.
285 vErrors
.push_back("Error: Created new bumpfee transaction but could not mark the original transaction as replaced.");