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a9ce72a8bb
fa9b60c842 Remove unused TransactionError constants (MarcoFalke) Pull request description: Fixup to #14978, which introduced a bunch of unused enum values, such as `UNKNOWN_ERROR`, `ERROR_COUNT` and `TRANSACTION_ERR_LAST`. None of those have a meaning in the context of an `enum class`, where the compiler can infer if all cases have been covered in a switch-case. Also, move the global `::maxTxFee` back to the rpc caller, so it can be set on a per call basis (in the future). Tree-SHA512: 7f1e2d795f1c1278ecd54ddab2b92c2a862f3c637b482d1d008208925befa1c9dd4b3c4bb1bfcbc5ca4b66a41004aaf01ea96ea95236f944250b8a6cf99ff173
239 lines
7.2 KiB
C++
239 lines
7.2 KiB
C++
// Copyright (c) 2009-2018 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <psbt.h>
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#include <util/strencodings.h>
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bool PartiallySignedTransaction::IsNull() const
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{
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return !tx && inputs.empty() && outputs.empty() && unknown.empty();
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}
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bool PartiallySignedTransaction::Merge(const PartiallySignedTransaction& psbt)
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{
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// Prohibited to merge two PSBTs over different transactions
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if (tx->GetHash() != psbt.tx->GetHash()) {
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return false;
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}
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for (unsigned int i = 0; i < inputs.size(); ++i) {
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inputs[i].Merge(psbt.inputs[i]);
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}
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for (unsigned int i = 0; i < outputs.size(); ++i) {
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outputs[i].Merge(psbt.outputs[i]);
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}
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unknown.insert(psbt.unknown.begin(), psbt.unknown.end());
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return true;
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}
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bool PartiallySignedTransaction::IsSane() const
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{
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for (PSBTInput input : inputs) {
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if (!input.IsSane()) return false;
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}
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return true;
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}
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bool PartiallySignedTransaction::AddInput(const CTxIn& txin, PSBTInput& psbtin)
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{
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if (std::find(tx->vin.begin(), tx->vin.end(), txin) != tx->vin.end()) {
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return false;
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}
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tx->vin.push_back(txin);
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psbtin.partial_sigs.clear();
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psbtin.final_script_sig.clear();
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inputs.push_back(psbtin);
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return true;
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}
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bool PartiallySignedTransaction::AddOutput(const CTxOut& txout, const PSBTOutput& psbtout)
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{
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tx->vout.push_back(txout);
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outputs.push_back(psbtout);
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return true;
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}
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bool PartiallySignedTransaction::GetInputUTXO(CTxOut& utxo, int input_index) const
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{
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PSBTInput input = inputs[input_index];
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int prevout_index = tx->vin[input_index].prevout.n;
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if (input.non_witness_utxo) {
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utxo = input.non_witness_utxo->vout[prevout_index];
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} else {
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return false;
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}
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return true;
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}
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bool PSBTInput::IsNull() const
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{
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return !non_witness_utxo && partial_sigs.empty() && unknown.empty() && hd_keypaths.empty() && redeem_script.empty();
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}
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void PSBTInput::FillSignatureData(SignatureData& sigdata) const
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{
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if (!final_script_sig.empty()) {
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sigdata.scriptSig = final_script_sig;
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sigdata.complete = true;
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}
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if (sigdata.complete) {
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return;
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}
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sigdata.signatures.insert(partial_sigs.begin(), partial_sigs.end());
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if (!redeem_script.empty()) {
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sigdata.redeem_script = redeem_script;
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}
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for (const auto& key_pair : hd_keypaths) {
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sigdata.misc_pubkeys.emplace(key_pair.first.GetID(), key_pair);
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}
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}
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void PSBTInput::FromSignatureData(const SignatureData& sigdata)
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{
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if (sigdata.complete) {
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partial_sigs.clear();
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hd_keypaths.clear();
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redeem_script.clear();
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if (!sigdata.scriptSig.empty()) {
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final_script_sig = sigdata.scriptSig;
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}
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return;
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}
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partial_sigs.insert(sigdata.signatures.begin(), sigdata.signatures.end());
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if (redeem_script.empty() && !sigdata.redeem_script.empty()) {
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redeem_script = sigdata.redeem_script;
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}
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for (const auto& entry : sigdata.misc_pubkeys) {
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hd_keypaths.emplace(entry.second);
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}
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}
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void PSBTInput::Merge(const PSBTInput& input)
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{
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if (!non_witness_utxo && input.non_witness_utxo) non_witness_utxo = input.non_witness_utxo;
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partial_sigs.insert(input.partial_sigs.begin(), input.partial_sigs.end());
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hd_keypaths.insert(input.hd_keypaths.begin(), input.hd_keypaths.end());
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unknown.insert(input.unknown.begin(), input.unknown.end());
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if (redeem_script.empty() && !input.redeem_script.empty()) redeem_script = input.redeem_script;
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if (final_script_sig.empty() && !input.final_script_sig.empty()) final_script_sig = input.final_script_sig;
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}
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bool PSBTInput::IsSane() const
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{
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return true;
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}
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void PSBTOutput::FillSignatureData(SignatureData& sigdata) const
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{
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if (!redeem_script.empty()) {
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sigdata.redeem_script = redeem_script;
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}
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for (const auto& key_pair : hd_keypaths) {
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sigdata.misc_pubkeys.emplace(key_pair.first.GetID(), key_pair);
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}
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}
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void PSBTOutput::FromSignatureData(const SignatureData& sigdata)
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{
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if (redeem_script.empty() && !sigdata.redeem_script.empty()) {
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redeem_script = sigdata.redeem_script;
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}
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for (const auto& entry : sigdata.misc_pubkeys) {
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hd_keypaths.emplace(entry.second);
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}
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}
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bool PSBTOutput::IsNull() const
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{
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return redeem_script.empty() && hd_keypaths.empty() && unknown.empty();
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}
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void PSBTOutput::Merge(const PSBTOutput& output)
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{
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hd_keypaths.insert(output.hd_keypaths.begin(), output.hd_keypaths.end());
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unknown.insert(output.unknown.begin(), output.unknown.end());
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if (redeem_script.empty() && !output.redeem_script.empty()) redeem_script = output.redeem_script;
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}
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bool SignPSBTInput(const SigningProvider& provider, const CMutableTransaction& tx, PSBTInput& input, int index, int sighash)
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{
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// if this input has a final scriptsig, don't do anything with it
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if (!input.final_script_sig.empty()) {
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return true;
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}
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// Fill SignatureData with input info
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SignatureData sigdata;
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input.FillSignatureData(sigdata);
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// Get UTXO
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CTxOut utxo;
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if (input.non_witness_utxo) {
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// If we're taking our information from a non-witness UTXO, verify that it matches the prevout.
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if (input.non_witness_utxo->GetHash() != tx.vin[index].prevout.hash) return false;
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utxo = input.non_witness_utxo->vout[tx.vin[index].prevout.n];
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} else {
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return false;
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}
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MutableTransactionSignatureCreator creator(&tx, index, utxo.nValue, sighash);
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bool sig_complete = ProduceSignature(provider, creator, utxo.scriptPubKey, sigdata);
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input.FromSignatureData(sigdata);
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return sig_complete;
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}
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bool FinalizePSBT(PartiallySignedTransaction& psbtx)
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{
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// Finalize input signatures -- in case we have partial signatures that add up to a complete
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// signature, but have not combined them yet (e.g. because the combiner that created this
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// PartiallySignedTransaction did not understand them), this will combine them into a final
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// script.
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bool complete = true;
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for (unsigned int i = 0; i < psbtx.tx->vin.size(); ++i) {
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PSBTInput& input = psbtx.inputs.at(i);
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complete &= SignPSBTInput(DUMMY_SIGNING_PROVIDER, *psbtx.tx, input, i, 1);
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}
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return complete;
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}
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bool FinalizeAndExtractPSBT(PartiallySignedTransaction& psbtx, CMutableTransaction& result)
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{
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// It's not safe to extract a PSBT that isn't finalized, and there's no easy way to check
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// whether a PSBT is finalized without finalizing it, so we just do this.
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if (!FinalizePSBT(psbtx)) {
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return false;
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}
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result = *psbtx.tx;
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for (unsigned int i = 0; i < result.vin.size(); ++i) {
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result.vin[i].scriptSig = psbtx.inputs[i].final_script_sig;
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}
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return true;
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}
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TransactionError CombinePSBTs(PartiallySignedTransaction& out, const std::vector<PartiallySignedTransaction>& psbtxs)
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{
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out = psbtxs[0]; // Copy the first one
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// Merge
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for (auto it = std::next(psbtxs.begin()); it != psbtxs.end(); ++it) {
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if (!out.Merge(*it)) {
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return TransactionError::PSBT_MISMATCH;
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}
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}
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if (!out.IsSane()) {
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return TransactionError::INVALID_PSBT;
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}
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return TransactionError::OK;
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}
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