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978 lines
39 KiB
C++
Executable file
978 lines
39 KiB
C++
Executable file
// Copyright (c) 2009-2021 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 <blindpsbt.h>
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#include <psbt.h>
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#include <chainparams.h>
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#include <pegins.h>
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#include <primitives/transaction.h>
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#include <util/check.h>
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#include <util/strencodings.h>
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PartiallySignedTransaction::PartiallySignedTransaction(const CMutableTransaction& tx, uint32_t version) : m_version(version)
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{
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if (version == 0) {
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this->tx = tx;
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}
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inputs.resize(tx.vin.size(), PSBTInput(GetVersion()));
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outputs.resize(tx.vout.size(), PSBTOutput(GetVersion()));
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SetupFromTx(tx);
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}
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PartiallySignedTransaction::PartiallySignedTransaction(uint32_t version) :
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m_version(version)
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{
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if (GetVersion() >= 2) {
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tx_version = CTransaction::CURRENT_VERSION;
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}
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}
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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 (GetUniqueID() != psbt.GetUniqueID()) {
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return false;
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}
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assert(*tx_version == psbt.tx_version);
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for (unsigned int i = 0; i < inputs.size(); ++i) {
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if (!inputs[i].Merge(psbt.inputs[i])) {
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return false;
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}
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}
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for (unsigned int i = 0; i < outputs.size(); ++i) {
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if (!outputs[i].Merge(psbt.outputs[i])) {
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return false;
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}
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}
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for (auto& xpub_pair : psbt.m_xpubs) {
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if (m_xpubs.count(xpub_pair.first) == 0) {
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m_xpubs[xpub_pair.first] = xpub_pair.second;
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} else {
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m_xpubs[xpub_pair.first].insert(xpub_pair.second.begin(), xpub_pair.second.end());
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}
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}
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for (auto& scalar : psbt.m_scalar_offsets) {
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m_scalar_offsets.insert(scalar);
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}
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if (fallback_locktime == std::nullopt && psbt.fallback_locktime != std::nullopt) fallback_locktime = psbt.fallback_locktime;
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if (m_tx_modifiable == std::nullopt && psbt.m_tx_modifiable != std::nullopt) m_tx_modifiable = psbt.m_tx_modifiable;
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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::ComputeTimeLock(uint32_t& locktime) const
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{
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std::optional<uint32_t> time_lock{0};
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std::optional<uint32_t> height_lock{0};
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for (const PSBTInput& input : inputs) {
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if (input.time_locktime != std::nullopt && input.height_locktime == std::nullopt) {
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height_lock.reset(); // Transaction can no longer have a height locktime
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if (time_lock == std::nullopt) {
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return false;
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}
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} else if (input.time_locktime == std::nullopt && input.height_locktime != std::nullopt) {
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time_lock.reset(); // Transaction can no longer have a time locktime
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if (height_lock == std::nullopt) {
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return false;
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}
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}
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if (input.time_locktime && time_lock != std::nullopt) {
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time_lock = std::max(time_lock, input.time_locktime);
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}
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if (input.height_locktime && height_lock != std::nullopt) {
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height_lock = std::max(height_lock, input.height_locktime);
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}
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}
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if (height_lock != std::nullopt && *height_lock > 0) {
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locktime = *height_lock;
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return true;
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}
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if (time_lock != std::nullopt && *time_lock > 0) {
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locktime = *time_lock;
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return true;
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}
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locktime = fallback_locktime.value_or(0);
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return true;
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}
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CMutableTransaction PartiallySignedTransaction::GetUnsignedTx(bool force_unblinded) const
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{
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if (tx != std::nullopt) {
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return *tx;
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}
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CMutableTransaction mtx;
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mtx.nVersion = *tx_version;
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bool locktime_success = ComputeTimeLock(mtx.nLockTime);
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assert(locktime_success);
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uint32_t max_sequence = CTxIn::SEQUENCE_FINAL;
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for (const PSBTInput& input : inputs) {
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CTxIn txin;
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txin.prevout.hash = input.prev_txid;
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txin.prevout.n = *input.prev_out;
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txin.nSequence = input.sequence.value_or(max_sequence);
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txin.assetIssuance.assetBlindingNonce = input.m_issuance_blinding_nonce;
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txin.assetIssuance.assetEntropy = input.m_issuance_asset_entropy;
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// If there is a commitment we should set the value to the commitment unless we are forcing unblinded.
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// If we are forcing unblinded but there is no value, we just use the commitment.
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if (input.m_issuance_value != std::nullopt && (input.m_issuance_value_commitment.IsNull() || force_unblinded)) {
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txin.assetIssuance.nAmount.SetToAmount(*input.m_issuance_value);
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}
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else if(!input.m_issuance_value_commitment.IsNull()) {
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txin.assetIssuance.nAmount = input.m_issuance_value_commitment;
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}
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else {
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txin.assetIssuance.nAmount.SetNull();
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}
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if (input.m_issuance_inflation_keys_amount != std::nullopt && (input.m_issuance_inflation_keys_commitment.IsNull() || force_unblinded)) {
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txin.assetIssuance.nInflationKeys.SetToAmount(*input.m_issuance_inflation_keys_amount);
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}
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else if(!input.m_issuance_inflation_keys_commitment.IsNull()) {
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txin.assetIssuance.nInflationKeys = input.m_issuance_inflation_keys_commitment;
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}
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else {
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txin.assetIssuance.nInflationKeys.SetNull();
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}
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mtx.vin.push_back(txin);
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}
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for (const PSBTOutput& output : outputs) {
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CTxOut txout;
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CTxOutWitness txoutwit;
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txout.scriptPubKey = *output.script;
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bool exp_value = output.m_value_commitment.IsNull() || force_unblinded;
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exp_value = exp_value && output.amount != std::nullopt;
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if (!output.m_value_commitment.IsNull() && output.amount != std::nullopt) {
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exp_value = exp_value && !output.m_blind_value_proof.empty();
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exp_value = exp_value && !output.m_asset_commitment.IsNull();
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exp_value = exp_value && VerifyBlindValueProof(*output.amount, output.m_value_commitment, output.m_blind_value_proof, output.m_asset_commitment);
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}
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if (exp_value) {
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txout.nValue.SetToAmount(*output.amount);
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} else {
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txout.nValue = output.m_value_commitment;
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txoutwit.vchRangeproof = output.m_value_rangeproof;
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}
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bool exp_asset = output.m_asset_commitment.IsNull() || force_unblinded;
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exp_asset = exp_asset && !output.m_asset.IsNull();
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if (!output.m_asset_commitment.IsNull() && !output.m_asset.IsNull()) {
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exp_asset = exp_asset && !output.m_blind_asset_proof.empty();
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exp_asset = exp_asset && !output.m_asset.IsNull();
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exp_asset = exp_asset && VerifyBlindAssetProof(output.m_asset, output.m_blind_asset_proof, output.m_asset_commitment);
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}
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if (exp_asset) {
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txout.nAsset.SetToAsset(CAsset(output.m_asset));
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} else {
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txout.nAsset = output.m_asset_commitment;
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txoutwit.vchSurjectionproof = output.m_asset_surjection_proof;
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}
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if (output.m_ecdh_pubkey.IsValid() && !force_unblinded) {
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txout.nNonce.vchCommitment.insert(txout.nNonce.vchCommitment.end(), output.m_ecdh_pubkey.begin(), output.m_ecdh_pubkey.end());
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}
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mtx.vout.push_back(txout);
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mtx.witness.vtxoutwit.push_back(txoutwit);
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}
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mtx.witness.vtxinwit.resize(inputs.size());
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return mtx;
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}
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uint256 PartiallySignedTransaction::GetUniqueID() const
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{
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if (tx != std::nullopt) {
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return tx->GetHash();
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}
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// Get the unsigned transaction
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CMutableTransaction mtx = GetUnsignedTx(/* force_unblinded */ true);
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// Set the locktime to 0
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mtx.nLockTime = 0;
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// Set the sequence numbers to 0
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for (CTxIn& txin : mtx.vin) {
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txin.nSequence = 0;
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}
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return mtx.GetHash();
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}
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bool PartiallySignedTransaction::AddInput(PSBTInput& psbtin)
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{
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// Check required fields are present and this input is not a duplicate
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if (psbtin.prev_txid.IsNull() ||
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psbtin.prev_out == std::nullopt ||
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std::find_if(inputs.begin(), inputs.end(),
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[psbtin](const PSBTInput& psbt) {
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return psbt.prev_txid == psbtin.prev_txid && psbt.prev_out == psbtin.prev_out;
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}
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) != inputs.end()) {
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return false;
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}
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if (tx != std::nullopt) {
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// This is a v0 psbt, so do the v0 AddInput
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CTxIn txin(COutPoint(psbtin.prev_txid, *psbtin.prev_out));
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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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psbtin.final_script_witness.SetNull();
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inputs.push_back(psbtin);
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return true;
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}
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// No global tx, must be PSBTv2.
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// Check inputs modifiable flag
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if (m_tx_modifiable == std::nullopt || !m_tx_modifiable->test(0)) {
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return false;
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}
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// Determine if we need to iterate the inputs.
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// For now, we only do this if the new input has a required time lock.
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// The BIP states that we should also do this if m_tx_modifiable's bit 2 is set
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// (Has SIGHASH_SINGLE flag) but since we are only adding inputs at the end of the vector,
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// we don't care about that.
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bool iterate_inputs = psbtin.time_locktime != std::nullopt || psbtin.height_locktime != std::nullopt;
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if (iterate_inputs) {
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uint32_t old_timelock;
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if (!ComputeTimeLock(old_timelock)) {
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return false;
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}
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std::optional<uint32_t> time_lock = psbtin.time_locktime;
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std::optional<uint32_t> height_lock = psbtin.height_locktime;
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bool has_sigs = false;
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for (const PSBTInput& input : inputs) {
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if (input.time_locktime != std::nullopt && input.height_locktime == std::nullopt) {
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height_lock.reset(); // Transaction can no longer have a height locktime
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if (time_lock == std::nullopt) {
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return false;
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}
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} else if (input.time_locktime == std::nullopt && input.height_locktime != std::nullopt) {
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time_lock.reset(); // Transaction can no longer have a time locktime
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if (height_lock == std::nullopt) {
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return false;
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}
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}
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if (input.time_locktime && time_lock != std::nullopt) {
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time_lock = std::max(time_lock, input.time_locktime);
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}
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if (input.height_locktime && height_lock != std::nullopt) {
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height_lock = std::max(height_lock, input.height_locktime);
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}
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if (!input.partial_sigs.empty()) {
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has_sigs = true;
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}
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}
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uint32_t new_timelock = fallback_locktime.value_or(0);
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if (height_lock != std::nullopt && *height_lock > 0) {
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new_timelock = *height_lock;
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} else if (time_lock != std::nullopt && *time_lock > 0) {
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new_timelock = *time_lock;
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}
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if (has_sigs && old_timelock != new_timelock) {
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return false;
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}
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}
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// Add the input to the end
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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 PSBTOutput& psbtout)
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{
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if (psbtout.amount == std::nullopt || psbtout.script == std::nullopt) {
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return false;
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}
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if (tx != std::nullopt) {
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// This is a v0 psbt, do the v0 AddOutput
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CTxOut txout(CAsset(), *psbtout.amount, *psbtout.script);
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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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// No global tx, must be PSBTv2
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// Check outputs are modifiable
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if (m_tx_modifiable == std::nullopt || !m_tx_modifiable->test(1)) {
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return false;
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}
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outputs.push_back(psbtout);
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return true;
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}
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bool PSBTInput::GetUTXO(CTxOut& utxo) const
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{
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if (non_witness_utxo) {
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if (*prev_out >= non_witness_utxo->vout.size()) {
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return false;
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}
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utxo = non_witness_utxo->vout[*prev_out];
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} else if (!witness_utxo.IsNull()) {
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utxo = witness_utxo;
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} else if (m_peg_in_value && !m_peg_in_claim_script.empty()) {
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// For Peg-ins, get the UTXO from the peg-in stuff
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utxo = CTxOut(Params().GetConsensus().pegged_asset, CConfidentialValue(*m_peg_in_value), m_peg_in_claim_script);
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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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COutPoint PSBTInput::GetOutPoint() const
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{
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return COutPoint(prev_txid, *prev_out);
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}
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bool PartiallySignedTransaction::IsBlinded() const
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{
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for (const PSBTOutput& out : outputs) {
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if (out.IsBlinded()) {
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return true;
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}
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}
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return false;
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}
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bool PartiallySignedTransaction::IsFullyBlinded() const
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{
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for (const PSBTOutput& out : outputs) {
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if (out.IsBlinded() && !out.IsFullyBlinded()) {
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return false;
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}
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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 && witness_utxo.IsNull() && partial_sigs.empty() && unknown.empty() && hd_keypaths.empty() && redeem_script.empty() && witness_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 (!final_script_witness.IsNull()) {
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sigdata.scriptWitness = final_script_witness;
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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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if (!witness_script.empty()) {
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sigdata.witness_script = witness_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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if (!m_tap_key_sig.empty()) {
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sigdata.taproot_key_path_sig = m_tap_key_sig;
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}
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for (const auto& [pubkey_leaf, sig] : m_tap_script_sigs) {
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sigdata.taproot_script_sigs.emplace(pubkey_leaf, sig);
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}
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if (!m_tap_internal_key.IsNull()) {
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sigdata.tr_spenddata.internal_key = m_tap_internal_key;
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}
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if (!m_tap_merkle_root.IsNull()) {
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sigdata.tr_spenddata.merkle_root = m_tap_merkle_root;
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}
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for (const auto& [leaf_script, control_block] : m_tap_scripts) {
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sigdata.tr_spenddata.scripts.emplace(leaf_script, control_block);
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}
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for (const auto& [pubkey, leaf_origin] : m_tap_bip32_paths) {
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sigdata.taproot_misc_pubkeys.emplace(pubkey, leaf_origin);
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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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witness_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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if (!sigdata.scriptWitness.IsNull()) {
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final_script_witness = sigdata.scriptWitness;
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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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if (witness_script.empty() && !sigdata.witness_script.empty()) {
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witness_script = sigdata.witness_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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if (!sigdata.taproot_key_path_sig.empty()) {
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m_tap_key_sig = sigdata.taproot_key_path_sig;
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}
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for (const auto& [pubkey_leaf, sig] : sigdata.taproot_script_sigs) {
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m_tap_script_sigs.emplace(pubkey_leaf, sig);
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}
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if (!sigdata.tr_spenddata.internal_key.IsNull()) {
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m_tap_internal_key = sigdata.tr_spenddata.internal_key;
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}
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if (!sigdata.tr_spenddata.merkle_root.IsNull()) {
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m_tap_merkle_root = sigdata.tr_spenddata.merkle_root;
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}
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for (const auto& [leaf_script, control_block] : sigdata.tr_spenddata.scripts) {
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|
m_tap_scripts.emplace(leaf_script, control_block);
|
|
}
|
|
for (const auto& [pubkey, leaf_origin] : sigdata.taproot_misc_pubkeys) {
|
|
m_tap_bip32_paths.emplace(pubkey, leaf_origin);
|
|
}
|
|
}
|
|
|
|
bool PSBTInput::Merge(const PSBTInput& input)
|
|
{
|
|
assert(prev_txid == input.prev_txid);
|
|
assert(*prev_out == *input.prev_out);
|
|
|
|
if (!non_witness_utxo && input.non_witness_utxo) non_witness_utxo = input.non_witness_utxo;
|
|
if (witness_utxo.IsNull() && !input.witness_utxo.IsNull()) {
|
|
witness_utxo = input.witness_utxo;
|
|
}
|
|
|
|
partial_sigs.insert(input.partial_sigs.begin(), input.partial_sigs.end());
|
|
ripemd160_preimages.insert(input.ripemd160_preimages.begin(), input.ripemd160_preimages.end());
|
|
sha256_preimages.insert(input.sha256_preimages.begin(), input.sha256_preimages.end());
|
|
hash160_preimages.insert(input.hash160_preimages.begin(), input.hash160_preimages.end());
|
|
hash256_preimages.insert(input.hash256_preimages.begin(), input.hash256_preimages.end());
|
|
hd_keypaths.insert(input.hd_keypaths.begin(), input.hd_keypaths.end());
|
|
unknown.insert(input.unknown.begin(), input.unknown.end());
|
|
m_tap_script_sigs.insert(input.m_tap_script_sigs.begin(), input.m_tap_script_sigs.end());
|
|
m_tap_scripts.insert(input.m_tap_scripts.begin(), input.m_tap_scripts.end());
|
|
m_tap_bip32_paths.insert(input.m_tap_bip32_paths.begin(), input.m_tap_bip32_paths.end());
|
|
|
|
if (redeem_script.empty() && !input.redeem_script.empty()) redeem_script = input.redeem_script;
|
|
if (witness_script.empty() && !input.witness_script.empty()) witness_script = input.witness_script;
|
|
if (final_script_sig.empty() && !input.final_script_sig.empty()) final_script_sig = input.final_script_sig;
|
|
if (final_script_witness.IsNull() && !input.final_script_witness.IsNull()) final_script_witness = input.final_script_witness;
|
|
if (sequence == std::nullopt && input.sequence != std::nullopt) sequence = input.sequence;
|
|
if (time_locktime == std::nullopt && input.time_locktime != std::nullopt) time_locktime = input.time_locktime;
|
|
if (height_locktime == std::nullopt && input.height_locktime != std::nullopt) height_locktime = input.height_locktime;
|
|
|
|
if (m_issuance_value == std::nullopt && m_issuance_value_commitment.IsNull() && input.m_issuance_value != std::nullopt) m_issuance_value = input.m_issuance_value;
|
|
if (m_issuance_value_commitment.IsNull() && !input.m_issuance_value_commitment.IsNull()) {
|
|
m_issuance_value_commitment = input.m_issuance_value_commitment;
|
|
m_issuance_value.reset();
|
|
}
|
|
if (m_issuance_rangeproof.empty() && !input.m_issuance_rangeproof.empty()) m_issuance_rangeproof = input.m_issuance_rangeproof;
|
|
if (m_issuance_inflation_keys_rangeproof.empty() && !input.m_issuance_inflation_keys_rangeproof.empty()) m_issuance_inflation_keys_rangeproof = input.m_issuance_inflation_keys_rangeproof;
|
|
if (m_issuance_inflation_keys_amount == std::nullopt && m_issuance_inflation_keys_commitment.IsNull() && input.m_issuance_inflation_keys_amount != std::nullopt) m_issuance_inflation_keys_amount = input.m_issuance_inflation_keys_amount;
|
|
if (m_issuance_inflation_keys_commitment.IsNull() && !input.m_issuance_inflation_keys_commitment.IsNull()) {
|
|
m_issuance_inflation_keys_commitment = input.m_issuance_inflation_keys_commitment;
|
|
m_issuance_inflation_keys_amount.reset();
|
|
}
|
|
if (m_issuance_blinding_nonce.IsNull() && !input.m_issuance_blinding_nonce.IsNull()) m_issuance_blinding_nonce = input.m_issuance_blinding_nonce;
|
|
if (m_issuance_asset_entropy.IsNull() && !input.m_issuance_asset_entropy.IsNull()) m_issuance_asset_entropy = input.m_issuance_asset_entropy;
|
|
if (m_blind_issuance_value_proof.empty() && !input.m_blind_issuance_value_proof.empty()) m_blind_issuance_value_proof = input.m_blind_issuance_value_proof;
|
|
if (m_blind_issuance_inflation_keys_proof.empty() && !input.m_blind_issuance_inflation_keys_proof.empty()) m_blind_issuance_inflation_keys_proof = input.m_blind_issuance_inflation_keys_proof;
|
|
|
|
if (m_peg_in_tx.index() == 0 && input.m_peg_in_tx.index() != 0) m_peg_in_tx = input.m_peg_in_tx;
|
|
if (m_peg_in_txout_proof.index() == 0 && input.m_peg_in_txout_proof.index() != 0) m_peg_in_txout_proof = input.m_peg_in_txout_proof;
|
|
if (m_peg_in_claim_script.empty() && !input.m_peg_in_claim_script.empty()) m_peg_in_claim_script = input.m_peg_in_claim_script;
|
|
if (m_peg_in_genesis_hash.IsNull() && !input.m_peg_in_genesis_hash.IsNull()) m_peg_in_genesis_hash = input.m_peg_in_genesis_hash;
|
|
if (m_peg_in_value == std::nullopt && input.m_peg_in_value != std::nullopt) m_peg_in_value = input.m_peg_in_value;
|
|
if (m_peg_in_witness.IsNull() && !input.m_peg_in_witness.IsNull()) m_peg_in_witness = input.m_peg_in_witness;
|
|
|
|
if (m_utxo_rangeproof.empty() && !input.m_utxo_rangeproof.empty()) m_utxo_rangeproof = input.m_utxo_rangeproof;
|
|
|
|
if (m_tap_key_sig.empty() && !input.m_tap_key_sig.empty()) m_tap_key_sig = input.m_tap_key_sig;
|
|
if (m_tap_internal_key.IsNull() && !input.m_tap_internal_key.IsNull()) m_tap_internal_key = input.m_tap_internal_key;
|
|
if (m_tap_merkle_root.IsNull() && !input.m_tap_merkle_root.IsNull()) m_tap_merkle_root = input.m_tap_merkle_root;
|
|
|
|
return true;
|
|
}
|
|
|
|
void PSBTOutput::FillSignatureData(SignatureData& sigdata) const
|
|
{
|
|
if (!redeem_script.empty()) {
|
|
sigdata.redeem_script = redeem_script;
|
|
}
|
|
if (!witness_script.empty()) {
|
|
sigdata.witness_script = witness_script;
|
|
}
|
|
for (const auto& key_pair : hd_keypaths) {
|
|
sigdata.misc_pubkeys.emplace(key_pair.first.GetID(), key_pair);
|
|
}
|
|
if (m_tap_tree.has_value() && m_tap_internal_key.IsFullyValid()) {
|
|
TaprootSpendData spenddata = m_tap_tree->GetSpendData();
|
|
|
|
sigdata.tr_spenddata.internal_key = m_tap_internal_key;
|
|
sigdata.tr_spenddata.Merge(spenddata);
|
|
}
|
|
for (const auto& [pubkey, leaf_origin] : m_tap_bip32_paths) {
|
|
sigdata.taproot_misc_pubkeys.emplace(pubkey, leaf_origin);
|
|
}
|
|
}
|
|
|
|
void PSBTOutput::FromSignatureData(const SignatureData& sigdata)
|
|
{
|
|
if (redeem_script.empty() && !sigdata.redeem_script.empty()) {
|
|
redeem_script = sigdata.redeem_script;
|
|
}
|
|
if (witness_script.empty() && !sigdata.witness_script.empty()) {
|
|
witness_script = sigdata.witness_script;
|
|
}
|
|
for (const auto& entry : sigdata.misc_pubkeys) {
|
|
hd_keypaths.emplace(entry.second);
|
|
}
|
|
if (!sigdata.tr_spenddata.internal_key.IsNull()) {
|
|
m_tap_internal_key = sigdata.tr_spenddata.internal_key;
|
|
}
|
|
if (sigdata.tr_builder.has_value()) {
|
|
m_tap_tree = sigdata.tr_builder;
|
|
}
|
|
for (const auto& [pubkey, leaf_origin] : sigdata.taproot_misc_pubkeys) {
|
|
m_tap_bip32_paths.emplace(pubkey, leaf_origin);
|
|
}
|
|
}
|
|
|
|
bool PSBTOutput::IsNull() const
|
|
{
|
|
return redeem_script.empty() && witness_script.empty() && hd_keypaths.empty() && unknown.empty();
|
|
}
|
|
|
|
bool PSBTOutput::Merge(const PSBTOutput& output)
|
|
{
|
|
assert(amount == output.amount);
|
|
assert(script == output.script);
|
|
assert(m_asset == output.m_asset);
|
|
|
|
hd_keypaths.insert(output.hd_keypaths.begin(), output.hd_keypaths.end());
|
|
unknown.insert(output.unknown.begin(), output.unknown.end());
|
|
m_tap_bip32_paths.insert(output.m_tap_bip32_paths.begin(), output.m_tap_bip32_paths.end());
|
|
|
|
if (redeem_script.empty() && !output.redeem_script.empty()) redeem_script = output.redeem_script;
|
|
if (witness_script.empty() && !output.witness_script.empty()) witness_script = output.witness_script;
|
|
|
|
// If this IsBlinded and output IsBlinded, make sure the creator added fields are the same
|
|
if (IsBlinded() && output.IsBlinded()) {
|
|
if (!m_blinding_pubkey.IsValid() || !output.m_blinding_pubkey.IsValid() || !m_blinder_index || !output.m_blinder_index) return false;
|
|
if (m_blinding_pubkey != output.m_blinding_pubkey) return false;
|
|
if (m_blinder_index != output.m_blinder_index) return false;
|
|
}
|
|
|
|
// If this IsFullyBlinded and output IsFullyBlinded, just double check them
|
|
if (IsFullyBlinded() && output.IsFullyBlinded()) {
|
|
if (!m_value_commitment.IsNull() && !output.m_value_commitment.IsNull() && (m_value_commitment != output.m_value_commitment)) return false;
|
|
if (!m_asset_commitment.IsNull() && !output.m_asset_commitment.IsNull() && (m_asset_commitment != output.m_asset_commitment)) return false;
|
|
if (!m_value_rangeproof.empty() && !output.m_value_rangeproof.empty() && (m_value_rangeproof != output.m_value_rangeproof)) return false;
|
|
if (!m_asset_surjection_proof.empty() && !output.m_asset_surjection_proof.empty() && (m_asset_surjection_proof != output.m_asset_surjection_proof)) return false;
|
|
}
|
|
|
|
// If output IsFullyBlinded and this is not, copy the blinding data and remove the explicits
|
|
if (IsBlinded() && !IsFullyBlinded() && output.IsFullyBlinded()) {
|
|
m_value_commitment = output.m_value_commitment;
|
|
m_asset_commitment = output.m_asset_commitment;
|
|
m_value_rangeproof = output.m_value_rangeproof;
|
|
m_asset_surjection_proof = output.m_asset_surjection_proof;
|
|
m_ecdh_pubkey = output.m_ecdh_pubkey;
|
|
m_blind_value_proof = output.m_blind_value_proof;
|
|
m_blind_asset_proof = output.m_blind_asset_proof;
|
|
}
|
|
|
|
if (m_tap_internal_key.IsNull() && !output.m_tap_internal_key.IsNull()) m_tap_internal_key = output.m_tap_internal_key;
|
|
if (m_tap_tree.has_value() && !output.m_tap_tree.has_value()) m_tap_tree = output.m_tap_tree;
|
|
|
|
return true;
|
|
}
|
|
|
|
CTxOut PSBTOutput::GetTxOut() const
|
|
{
|
|
assert(script != std::nullopt);
|
|
assert(amount != std::nullopt || !m_value_commitment.IsNull());
|
|
assert(!m_asset.IsNull() || !m_asset_commitment.IsNull());
|
|
return CTxOut(!m_asset_commitment.IsNull() ? m_asset_commitment : CAsset(m_asset), !m_value_commitment.IsNull() ? m_value_commitment : CConfidentialValue(*amount), *script);
|
|
}
|
|
|
|
bool PSBTOutput::IsBlinded() const
|
|
{
|
|
return m_blinding_pubkey.IsValid();
|
|
}
|
|
|
|
bool PSBTOutput::IsPartiallyBlinded() const
|
|
{
|
|
return IsBlinded() && (
|
|
!m_value_commitment.IsNull() ||
|
|
!m_asset_commitment.IsNull() ||
|
|
!m_value_rangeproof.empty() ||
|
|
!m_asset_surjection_proof.empty() ||
|
|
m_ecdh_pubkey.IsValid());
|
|
}
|
|
|
|
bool PSBTOutput::IsFullyBlinded() const
|
|
{
|
|
return IsBlinded() &&
|
|
!m_value_commitment.IsNull() &&
|
|
!m_asset_commitment.IsNull() &&
|
|
!m_value_rangeproof.empty() &&
|
|
!m_asset_surjection_proof.empty() &&
|
|
m_ecdh_pubkey.IsValid();
|
|
}
|
|
|
|
bool PSBTInputSigned(const PSBTInput& input)
|
|
{
|
|
return !input.final_script_sig.empty() || !input.final_script_witness.IsNull();
|
|
}
|
|
|
|
size_t CountPSBTUnsignedInputs(const PartiallySignedTransaction& psbt) {
|
|
size_t count = 0;
|
|
for (const auto& input : psbt.inputs) {
|
|
if (!PSBTInputSigned(input)) {
|
|
count++;
|
|
}
|
|
}
|
|
|
|
return count;
|
|
}
|
|
|
|
void UpdatePSBTOutput(const SigningProvider& provider, PartiallySignedTransaction& psbt, int index)
|
|
{
|
|
CMutableTransaction tx = psbt.GetUnsignedTx();
|
|
const CTxOut& out = tx.vout.at(index);
|
|
PSBTOutput& psbt_out = psbt.outputs.at(index);
|
|
|
|
// Fill a SignatureData with output info
|
|
SignatureData sigdata;
|
|
psbt_out.FillSignatureData(sigdata);
|
|
|
|
// Construct a would-be spend of this output, to update sigdata with.
|
|
// Note that ProduceSignature is used to fill in metadata (not actual signatures),
|
|
// so provider does not need to provide any private keys (it can be a HidingSigningProvider).
|
|
MutableTransactionSignatureCreator creator(tx, /*input_idx=*/0, out.nValue, SIGHASH_ALL);
|
|
ProduceSignature(provider, creator, out.scriptPubKey, sigdata);
|
|
|
|
// Put redeem_script, witness_script, key paths, into PSBTOutput.
|
|
psbt_out.FromSignatureData(sigdata);
|
|
}
|
|
|
|
PrecomputedTransactionData PrecomputePSBTData(const PartiallySignedTransaction& psbt)
|
|
{
|
|
const CMutableTransaction tx = psbt.GetUnsignedTx();
|
|
bool have_all_spent_outputs = true;
|
|
std::vector<CTxOut> utxos(psbt.inputs.size());
|
|
for (size_t idx = 0; idx < psbt.inputs.size(); ++idx) {
|
|
if (!psbt.inputs[idx].GetUTXO(utxos[idx])) have_all_spent_outputs = false;
|
|
}
|
|
PrecomputedTransactionData txdata{Params().HashGenesisBlock()};
|
|
if (have_all_spent_outputs) {
|
|
txdata.Init(tx, std::move(utxos), true);
|
|
} else {
|
|
txdata.Init(tx, {}, true);
|
|
}
|
|
return txdata;
|
|
}
|
|
|
|
bool SignPSBTInput(const SigningProvider& provider, PartiallySignedTransaction& psbt, int index, const PrecomputedTransactionData* txdata, int sighash, SignatureData* out_sigdata, bool finalize)
|
|
{
|
|
PSBTInput& input = psbt.inputs.at(index);
|
|
|
|
// If this input is a peg-in, also make the peg-in witness
|
|
if (input.m_peg_in_tx.index() != 0
|
|
&& input.m_peg_in_txout_proof.index() != 0
|
|
&& !input.m_peg_in_claim_script.empty()
|
|
&& !input.m_peg_in_genesis_hash.IsNull()
|
|
&& input.m_peg_in_value != std::nullopt) {
|
|
if (Params().GetConsensus().ParentChainHasPow()) {
|
|
input.m_peg_in_witness = CreatePeginWitness(*input.m_peg_in_value, Params().GetConsensus().pegged_asset, input.m_peg_in_genesis_hash, input.m_peg_in_claim_script, *std::get_if<Sidechain::Bitcoin::CTransactionRef>(&input.m_peg_in_tx), *std::get_if<Sidechain::Bitcoin::CMerkleBlock>(&input.m_peg_in_txout_proof));
|
|
} else {
|
|
input.m_peg_in_witness = CreatePeginWitness(*input.m_peg_in_value, Params().GetConsensus().pegged_asset, input.m_peg_in_genesis_hash, input.m_peg_in_claim_script, *std::get_if<CTransactionRef>(&input.m_peg_in_tx), *std::get_if<CMerkleBlock>(&input.m_peg_in_txout_proof));
|
|
}
|
|
}
|
|
|
|
const CMutableTransaction& tx = psbt.GetUnsignedTx();
|
|
|
|
if (PSBTInputSigned(input)) {
|
|
return true;
|
|
}
|
|
|
|
// Fill SignatureData with input info
|
|
SignatureData sigdata;
|
|
input.FillSignatureData(sigdata);
|
|
|
|
// Get UTXO
|
|
bool require_witness_sig = false;
|
|
CTxOut utxo;
|
|
|
|
if (input.non_witness_utxo) {
|
|
// If we're taking our information from a non-witness UTXO, verify that it matches the prevout.
|
|
COutPoint prevout = input.GetOutPoint();
|
|
if (prevout.n >= input.non_witness_utxo->vout.size()) {
|
|
return false;
|
|
}
|
|
if (input.non_witness_utxo->GetHash() != prevout.hash) {
|
|
return false;
|
|
}
|
|
utxo = input.non_witness_utxo->vout[prevout.n];
|
|
} else if (!input.witness_utxo.IsNull()) {
|
|
utxo = input.witness_utxo;
|
|
// When we're taking our information from a witness UTXO, we can't verify it is actually data from
|
|
// the output being spent. This is safe in case a witness signature is produced (which includes this
|
|
// information directly in the hash), but not for non-witness signatures. Remember that we require
|
|
// a witness signature in this situation.
|
|
require_witness_sig = true;
|
|
} else if (input.m_peg_in_value && !input.m_peg_in_claim_script.empty()) {
|
|
utxo = CTxOut(Params().GetConsensus().pegged_asset, CConfidentialValue(*input.m_peg_in_value), input.m_peg_in_claim_script);
|
|
} else {
|
|
return false;
|
|
}
|
|
|
|
sigdata.witness = false;
|
|
bool sig_complete;
|
|
if (txdata == nullptr) {
|
|
sig_complete = ProduceSignature(provider, DUMMY_SIGNATURE_CREATOR, utxo.scriptPubKey, sigdata);
|
|
} else {
|
|
MutableTransactionSignatureCreator creator(tx, index, utxo.nValue, txdata, sighash);
|
|
sig_complete = ProduceSignature(provider, creator, utxo.scriptPubKey, sigdata);
|
|
}
|
|
// Verify that a witness signature was produced in case one was required.
|
|
if (require_witness_sig && !sigdata.witness) return false;
|
|
|
|
// If we are not finalizing, set sigdata.complete to false to not set the scriptWitness
|
|
if (!finalize && sigdata.complete) sigdata.complete = false;
|
|
|
|
input.FromSignatureData(sigdata);
|
|
|
|
// If we have a witness signature, put a witness UTXO.
|
|
if (sigdata.witness) {
|
|
input.witness_utxo = utxo;
|
|
// We can remove the non_witness_utxo if and only if there are no non-segwit or segwit v0
|
|
// inputs in this transaction. Since this requires inspecting the entire transaction, this
|
|
// is something for the caller to deal with (i.e. FillPSBT).
|
|
}
|
|
|
|
// Fill in the missing info
|
|
if (out_sigdata) {
|
|
out_sigdata->missing_pubkeys = sigdata.missing_pubkeys;
|
|
out_sigdata->missing_sigs = sigdata.missing_sigs;
|
|
out_sigdata->missing_redeem_script = sigdata.missing_redeem_script;
|
|
out_sigdata->missing_witness_script = sigdata.missing_witness_script;
|
|
}
|
|
|
|
return sig_complete;
|
|
}
|
|
|
|
bool FinalizePSBT(PartiallySignedTransaction& psbtx)
|
|
{
|
|
// Finalize input signatures -- in case we have partial signatures that add up to a complete
|
|
// signature, but have not combined them yet (e.g. because the combiner that created this
|
|
// PartiallySignedTransaction did not understand them), this will combine them into a final
|
|
// script.
|
|
bool complete = true;
|
|
const PrecomputedTransactionData txdata = PrecomputePSBTData(psbtx);
|
|
for (unsigned int i = 0; i < psbtx.inputs.size(); ++i) {
|
|
complete &= SignPSBTInput(DUMMY_SIGNING_PROVIDER, psbtx, i, &txdata, SIGHASH_ALL, nullptr, true);
|
|
}
|
|
|
|
return complete;
|
|
}
|
|
|
|
bool FinalizeAndExtractPSBT(PartiallySignedTransaction& psbtx, CMutableTransaction& result)
|
|
{
|
|
// It's not safe to extract a PSBT that isn't finalized, and there's no easy way to check
|
|
// whether a PSBT is finalized without finalizing it, so we just do this.
|
|
if (!FinalizePSBT(psbtx)) {
|
|
return false;
|
|
}
|
|
|
|
result = psbtx.GetUnsignedTx();
|
|
for (unsigned int i = 0; i < result.vin.size(); ++i) {
|
|
const PSBTInput& psbt_in = psbtx.inputs[i];
|
|
CTxIn& txin = result.vin[i];
|
|
CTxInWitness& txin_wit = result.witness.vtxinwit[i];
|
|
|
|
txin.scriptSig = psbt_in.final_script_sig;
|
|
txin_wit.scriptWitness = psbt_in.final_script_witness;
|
|
txin_wit.vchIssuanceAmountRangeproof = psbt_in.m_issuance_rangeproof;
|
|
txin_wit.vchInflationKeysRangeproof = psbt_in.m_issuance_inflation_keys_rangeproof;
|
|
|
|
txin.m_is_pegin = !psbt_in.m_peg_in_witness.IsNull();
|
|
txin_wit.m_pegin_witness = psbt_in.m_peg_in_witness;
|
|
}
|
|
for (unsigned int i = 0; i < result.vout.size(); ++i) {
|
|
const PSBTOutput& psbt_out = psbtx.outputs[i];
|
|
result.witness.vtxoutwit[i].vchSurjectionproof = psbt_out.m_asset_surjection_proof;
|
|
result.witness.vtxoutwit[i].vchRangeproof = psbt_out.m_value_rangeproof;
|
|
}
|
|
return true;
|
|
}
|
|
|
|
TransactionError CombinePSBTs(PartiallySignedTransaction& out, const std::vector<PartiallySignedTransaction>& psbtxs)
|
|
{
|
|
out = psbtxs[0]; // Copy the first one
|
|
|
|
// Merge
|
|
for (auto it = std::next(psbtxs.begin()); it != psbtxs.end(); ++it) {
|
|
if (!out.Merge(*it)) {
|
|
return TransactionError::PSBT_MISMATCH;
|
|
}
|
|
}
|
|
return TransactionError::OK;
|
|
}
|
|
|
|
std::string PSBTRoleName(PSBTRole role) {
|
|
switch (role) {
|
|
case PSBTRole::CREATOR: return "creator";
|
|
case PSBTRole::UPDATER: return "updater";
|
|
case PSBTRole::BLINDER: return "blinder";
|
|
case PSBTRole::SIGNER: return "signer";
|
|
case PSBTRole::FINALIZER: return "finalizer";
|
|
case PSBTRole::EXTRACTOR: return "extractor";
|
|
// no default case, so the compiler can warn about missing cases
|
|
}
|
|
assert(false);
|
|
}
|
|
|
|
std::string EncodePSBT(const PartiallySignedTransaction& psbt)
|
|
{
|
|
CDataStream ssTx(SER_NETWORK, PROTOCOL_VERSION);
|
|
ssTx << psbt;
|
|
return EncodeBase64(ssTx);
|
|
}
|
|
|
|
bool DecodeBase64PSBT(PartiallySignedTransaction& psbt, const std::string& base64_tx, std::string& error)
|
|
{
|
|
auto tx_data = DecodeBase64(base64_tx);
|
|
if (!tx_data) {
|
|
error = "invalid base64";
|
|
return false;
|
|
}
|
|
return DecodeRawPSBT(psbt, MakeByteSpan(*tx_data), error);
|
|
}
|
|
|
|
bool DecodeRawPSBT(PartiallySignedTransaction& psbt, Span<const std::byte> tx_data, std::string& error)
|
|
{
|
|
CDataStream ss_data(tx_data, SER_NETWORK, PROTOCOL_VERSION);
|
|
try {
|
|
ss_data >> psbt;
|
|
if (!ss_data.empty()) {
|
|
error = "extra data after PSBT";
|
|
return false;
|
|
}
|
|
} catch (const std::exception& e) {
|
|
error = e.what();
|
|
return false;
|
|
}
|
|
return true;
|
|
}
|
|
|
|
uint32_t PartiallySignedTransaction::GetVersion() const
|
|
{
|
|
if (m_version != std::nullopt) {
|
|
return *m_version;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
void PartiallySignedTransaction::SetupFromTx(const CMutableTransaction& tx)
|
|
{
|
|
tx_version = tx.nVersion;
|
|
fallback_locktime = tx.nLockTime;
|
|
|
|
uint32_t i;
|
|
for (i = 0; i < tx.vin.size(); ++i) {
|
|
PSBTInput& input = inputs.at(i);
|
|
const CTxIn& txin = tx.vin.at(i);
|
|
|
|
input.prev_txid = txin.prevout.hash;
|
|
input.prev_out = txin.prevout.n;
|
|
input.sequence = txin.nSequence;
|
|
|
|
// Elements things
|
|
if (!txin.assetIssuance.IsNull()) {
|
|
if (txin.assetIssuance.nAmount.IsExplicit()) {
|
|
input.m_issuance_value = txin.assetIssuance.nAmount.GetAmount();
|
|
} else {
|
|
input.m_issuance_value_commitment = txin.assetIssuance.nAmount;
|
|
}
|
|
|
|
if (txin.assetIssuance.nInflationKeys.IsExplicit()) {
|
|
input.m_issuance_inflation_keys_amount = txin.assetIssuance.nInflationKeys.GetAmount();
|
|
} else {
|
|
input.m_issuance_inflation_keys_commitment = txin.assetIssuance.nInflationKeys;
|
|
}
|
|
|
|
if (!txin.assetIssuance.assetBlindingNonce.IsNull()) {
|
|
input.m_issuance_blinding_nonce = txin.assetIssuance.assetBlindingNonce;
|
|
}
|
|
if (!txin.assetIssuance.assetEntropy.IsNull()) {
|
|
input.m_issuance_asset_entropy = txin.assetIssuance.assetEntropy;
|
|
}
|
|
}
|
|
// Peg-in things
|
|
if (txin.m_is_pegin) {
|
|
CAmount peg_in_value;
|
|
CAsset asset;
|
|
if (DecomposePeginWitness(tx.witness.vtxinwit[i].m_pegin_witness, peg_in_value, asset, input.m_peg_in_genesis_hash, input.m_peg_in_claim_script, input.m_peg_in_tx, input.m_peg_in_txout_proof)) {
|
|
input.m_peg_in_value = peg_in_value;
|
|
assert(asset == Params().GetConsensus().pegged_asset);
|
|
}
|
|
}
|
|
}
|
|
|
|
for (i = 0; i < tx.vout.size(); ++i) {
|
|
PSBTOutput& output = outputs.at(i);
|
|
const CTxOut& txout = tx.vout.at(i);
|
|
|
|
output.script = txout.scriptPubKey;
|
|
|
|
// Elements things
|
|
if (txout.nAsset.IsExplicit()) {
|
|
output.m_asset = txout.nAsset.GetAsset().id;
|
|
} else {
|
|
output.m_asset_commitment = txout.nAsset;
|
|
}
|
|
|
|
if (txout.nValue.IsExplicit()) {
|
|
output.amount = txout.nValue.GetAmount();
|
|
} else {
|
|
output.m_value_commitment = txout.nValue;
|
|
}
|
|
|
|
// Usually the blinding pubkey is put into the nonce, so pull it out of there
|
|
if (txout.nNonce.IsCommitment()) {
|
|
output.m_blinding_pubkey.Set(txout.nNonce.vchCommitment.begin(), txout.nNonce.vchCommitment.end());
|
|
}
|
|
}
|
|
}
|
|
|
|
void PartiallySignedTransaction::CacheUnsignedTxPieces()
|
|
{
|
|
// To make things easier, we split up the global unsigned transaction
|
|
// and use the PSBTv2 fields for PSBTv0.
|
|
if (tx != std::nullopt) {
|
|
SetupFromTx(*tx);
|
|
}
|
|
}
|