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spend.cpp
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// Copyright (c) 2011-2021 The Bitcoin Core developers
// Distributed under the MIT software license, see the accompanying
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
#include <assetsdir.h>
#include <consensus/validation.h>
#include <core_io.h>
#include <issuance.h>
#include <key_io.h>
#include <policy/policy.h>
#include <rpc/rawtransaction_util.h>
#include <rpc/util.h>
#include <script/pegins.h>
#include <util/fees.h>
#include <util/translation.h>
#include <util/vector.h>
#include <wallet/coincontrol.h>
#include <wallet/feebumper.h>
#include <wallet/receive.h>
#include <wallet/rpc/util.h>
#include <wallet/spend.h>
#include <wallet/wallet.h>
#include <univalue.h>
using wallet::CRecipient;
namespace wallet {
static void ParseRecipients(const UniValue& address_amounts, const UniValue& address_assets, const UniValue& subtract_fee_outputs, std::vector<CRecipient> &recipients) {
std::set<CTxDestination> destinations;
int i = 0;
for (const std::string& address: address_amounts.getKeys()) {
CAsset asset = Params().GetConsensus().pegged_asset;
if (!address_assets.isNull() && address_assets[address].isStr()) {
std::string strasset = address_assets[address].get_str();
asset = GetAssetFromString(strasset);
}
if (asset.IsNull() && g_con_elementsmode) {
throw JSONRPCError(RPC_WALLET_ERROR, strprintf("Unknown label and invalid asset hex: %s", asset.GetHex()));
}
CTxDestination dest = DecodeDestination(address);
if (!IsValidDestination(dest)) {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, std::string("Invalid Bitcoin address: ") + address);
}
if (destinations.count(dest)) {
throw JSONRPCError(RPC_INVALID_PARAMETER, std::string("Invalid parameter, duplicated address: ") + address);
}
destinations.insert(dest);
CScript script_pub_key = GetScriptForDestination(dest);
CAmount amount = AmountFromValue(address_amounts[i++], asset == Params().GetConsensus().pegged_asset);
bool subtract_fee = false;
for (unsigned int idx = 0; idx < subtract_fee_outputs.size(); idx++) {
const UniValue& addr = subtract_fee_outputs[idx];
if (addr.get_str() == address) {
subtract_fee = true;
}
}
CRecipient recipient = {script_pub_key, amount, asset, GetDestinationBlindingKey(dest), subtract_fee};
recipients.push_back(recipient);
}
}
UniValue SendMoney(CWallet& wallet, const CCoinControl &coin_control, std::vector<CRecipient> &recipients, mapValue_t map_value, bool verbose, bool ignore_blind_fail)
{
EnsureWalletIsUnlocked(wallet);
// This function is only used by sendtoaddress and sendmany.
// This should always try to sign, if we don't have private keys, don't try to do anything here.
if (wallet.IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS)) {
throw JSONRPCError(RPC_WALLET_ERROR, "Error: Private keys are disabled for this wallet");
}
// Shuffle recipient list
std::shuffle(recipients.begin(), recipients.end(), FastRandomContext());
// Send
CAmount nFeeRequired = 0;
int nChangePosRet = -1;
bilingual_str error;
CTransactionRef tx;
FeeCalculation fee_calc_out;
auto blind_details = g_con_elementsmode ? std::make_unique<BlindDetails>() : nullptr;
if (blind_details) blind_details->ignore_blind_failure = ignore_blind_fail;
const bool fCreated = CreateTransaction(wallet, recipients, tx, nFeeRequired, nChangePosRet, error, coin_control, fee_calc_out, true, blind_details.get());
if (!fCreated) {
throw JSONRPCError(RPC_WALLET_INSUFFICIENT_FUNDS, error.original);
}
wallet.CommitTransaction(tx, std::move(map_value), {} /* orderForm */, blind_details.get());
if (verbose) {
UniValue entry(UniValue::VOBJ);
entry.pushKV("txid", tx->GetHash().GetHex());
entry.pushKV("fee_reason", StringForFeeReason(fee_calc_out.reason));
return entry;
}
return tx->GetHash().GetHex();
}
/**
* Update coin control with fee estimation based on the given parameters
*
* @param[in] wallet Wallet reference
* @param[in,out] cc Coin control to be updated
* @param[in] conf_target UniValue integer; confirmation target in blocks, values between 1 and 1008 are valid per policy/fees.h;
* @param[in] estimate_mode UniValue string; fee estimation mode, valid values are "unset", "economical" or "conservative";
* @param[in] fee_rate UniValue real; fee rate in sat/vB;
* if present, both conf_target and estimate_mode must either be null, or "unset"
* @param[in] override_min_fee bool; whether to set fOverrideFeeRate to true to disable minimum fee rate checks and instead
* verify only that fee_rate is greater than 0
* @throws a JSONRPCError if conf_target, estimate_mode, or fee_rate contain invalid values or are in conflict
*/
static void SetFeeEstimateMode(const CWallet& wallet, CCoinControl& cc, const UniValue& conf_target, const UniValue& estimate_mode, const UniValue& fee_rate, bool override_min_fee)
{
if (!fee_rate.isNull()) {
if (!conf_target.isNull()) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Cannot specify both conf_target and fee_rate. Please provide either a confirmation target in blocks for automatic fee estimation, or an explicit fee rate.");
}
if (!estimate_mode.isNull() && estimate_mode.get_str() != "unset") {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Cannot specify both estimate_mode and fee_rate");
}
// Fee rates in sat/vB cannot represent more than 3 significant digits.
cc.m_feerate = CFeeRate{AmountFromValue(fee_rate, /*check_range=*/true, /*decimals=*/3)};
if (override_min_fee) cc.fOverrideFeeRate = true;
// Default RBF to true for explicit fee_rate, if unset.
if (!cc.m_signal_bip125_rbf) cc.m_signal_bip125_rbf = true;
return;
}
if (!estimate_mode.isNull() && !FeeModeFromString(estimate_mode.get_str(), cc.m_fee_mode)) {
throw JSONRPCError(RPC_INVALID_PARAMETER, InvalidEstimateModeErrorMessage());
}
if (!conf_target.isNull()) {
cc.m_confirm_target = ParseConfirmTarget(conf_target, wallet.chain().estimateMaxBlocks());
}
}
RPCHelpMan sendtoaddress()
{
return RPCHelpMan{"sendtoaddress",
"\nSend an amount to a given address." +
HELP_REQUIRING_PASSPHRASE,
{
{"address", RPCArg::Type::STR, RPCArg::Optional::NO, "The address to send to."},
{"amount", RPCArg::Type::AMOUNT, RPCArg::Optional::NO, "The amount in " + CURRENCY_UNIT + " to send. eg 0.1"},
{"comment", RPCArg::Type::STR, RPCArg::Optional::OMITTED_NAMED_ARG, "A comment used to store what the transaction is for.\n"
"This is not part of the transaction, just kept in your wallet."},
{"comment_to", RPCArg::Type::STR, RPCArg::Optional::OMITTED_NAMED_ARG, "A comment to store the name of the person or organization\n"
"to which you're sending the transaction. This is not part of the \n"
"transaction, just kept in your wallet."},
{"subtractfeefromamount", RPCArg::Type::BOOL, RPCArg::Default{false}, "The fee will be deducted from the amount being sent.\n"
"The recipient will receive less bitcoins than you enter in the amount field."},
{"replaceable", RPCArg::Type::BOOL, RPCArg::DefaultHint{"wallet default"}, "Allow this transaction to be replaced by a transaction with higher fees via BIP 125"},
{"conf_target", RPCArg::Type::NUM, RPCArg::DefaultHint{"wallet -txconfirmtarget"}, "Confirmation target in blocks"},
{"estimate_mode", RPCArg::Type::STR, RPCArg::Default{"unset"}, std::string() + "The fee estimate mode, must be one of (case insensitive):\n"
" \"" + FeeModes("\"\n\"") + "\""},
{"avoid_reuse", RPCArg::Type::BOOL, RPCArg::Default{true}, "(only available if avoid_reuse wallet flag is set) Avoid spending from dirty addresses; addresses are considered\n"
"dirty if they have previously been used in a transaction. If true, this also activates avoidpartialspends, grouping outputs by their addresses."},
{"assetlabel", RPCArg::Type::STR, RPCArg::Optional::OMITTED_NAMED_ARG, "Hex asset id or asset label for balance."},
{"ignoreblindfail", RPCArg::Type::BOOL, RPCArg::Default{true}, "Return a transaction even when a blinding attempt fails due to number of blinded inputs/outputs."},
{"fee_rate", RPCArg::Type::AMOUNT, RPCArg::DefaultHint{"not set, fall back to wallet fee estimation"}, "Specify a fee rate in " + CURRENCY_ATOM + "/vB."},
{"verbose", RPCArg::Type::BOOL, RPCArg::Default{false}, "If true, return extra information about the transaction."},
},
{
RPCResult{"if verbose is not set or set to false",
RPCResult::Type::STR_HEX, "txid", "The transaction id."
},
RPCResult{"if verbose is set to true",
RPCResult::Type::OBJ, "", "",
{
{RPCResult::Type::STR_HEX, "txid", "The transaction id."},
{RPCResult::Type::STR, "fee_reason", "The transaction fee reason."}
},
},
},
RPCExamples{
"\nSend 0.1 BTC\n"
+ HelpExampleCli("sendtoaddress", "\"" + EXAMPLE_ADDRESS[0] + "\" 0.1") +
"\nSend 0.1 BTC with a confirmation target of 6 blocks in economical fee estimate mode using positional arguments\n"
+ HelpExampleCli("sendtoaddress", "\"" + EXAMPLE_ADDRESS[0] + "\" 0.1 \"donation\" \"sean's outpost\" false true 6 economical") +
"\nSend 0.1 BTC with a fee rate of 1.1 " + CURRENCY_ATOM + "/vB, subtract fee from amount, BIP125-replaceable, using positional arguments\n"
+ HelpExampleCli("sendtoaddress", "\"" + EXAMPLE_ADDRESS[0] + "\" 0.1 \"drinks\" \"room77\" true true null \"unset\" null 1.1") +
"\nSend 0.2 BTC with a confirmation target of 6 blocks in economical fee estimate mode using named arguments\n"
+ HelpExampleCli("-named sendtoaddress", "address=\"" + EXAMPLE_ADDRESS[0] + "\" amount=0.2 conf_target=6 estimate_mode=\"economical\"") +
"\nSend 0.5 BTC with a fee rate of 25 " + CURRENCY_ATOM + "/vB using named arguments\n"
+ HelpExampleCli("-named sendtoaddress", "address=\"" + EXAMPLE_ADDRESS[0] + "\" amount=0.5 fee_rate=25")
+ HelpExampleCli("-named sendtoaddress", "address=\"" + EXAMPLE_ADDRESS[0] + "\" amount=0.5 fee_rate=25 subtractfeefromamount=false replaceable=true avoid_reuse=true comment=\"2 pizzas\" comment_to=\"jeremy\" verbose=true")
},
[&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
{
std::shared_ptr<CWallet> const pwallet = GetWalletForJSONRPCRequest(request);
if (!pwallet) return NullUniValue;
// Make sure the results are valid at least up to the most recent block
// the user could have gotten from another RPC command prior to now
pwallet->BlockUntilSyncedToCurrentChain();
LOCK(pwallet->cs_wallet);
// Wallet comments
mapValue_t mapValue;
if (!request.params[2].isNull() && !request.params[2].get_str().empty())
mapValue["comment"] = request.params[2].get_str();
if (!request.params[3].isNull() && !request.params[3].get_str().empty())
mapValue["to"] = request.params[3].get_str();
bool fSubtractFeeFromAmount = false;
if (!request.params[4].isNull()) {
fSubtractFeeFromAmount = request.params[4].get_bool();
}
CCoinControl coin_control;
if (!request.params[5].isNull()) {
coin_control.m_signal_bip125_rbf = request.params[5].get_bool();
}
coin_control.m_avoid_address_reuse = GetAvoidReuseFlag(*pwallet, request.params[8]);
// We also enable partial spend avoidance if reuse avoidance is set.
coin_control.m_avoid_partial_spends |= coin_control.m_avoid_address_reuse;
std::string strasset = Params().GetConsensus().pegged_asset.GetHex();
if (request.params.size() > 9 && request.params[9].isStr() && !request.params[9].get_str().empty()) {
strasset = request.params[9].get_str();
}
CAsset asset = GetAssetFromString(strasset);
if (asset.IsNull() && g_con_elementsmode) {
throw JSONRPCError(RPC_WALLET_ERROR, strprintf("Unknown label and invalid asset hex: %s", asset.GetHex()));
}
bool ignore_blind_fail = true;
if (!request.params[10].isNull()) {
ignore_blind_fail = request.params[10].get_bool();
}
SetFeeEstimateMode(*pwallet, coin_control, /* conf_target */ request.params[6], /* estimate_mode */ request.params[7], /* fee_rate */ request.params[11], /* override_min_fee */ false);
EnsureWalletIsUnlocked(*pwallet);
UniValue address_amounts(UniValue::VOBJ);
UniValue address_assets(UniValue::VOBJ);
const std::string address = request.params[0].get_str();
address_amounts.pushKV(address, request.params[1]);
address_assets.pushKV(address, asset.GetHex());
UniValue subtractFeeFromAmount(UniValue::VARR);
if (fSubtractFeeFromAmount) {
subtractFeeFromAmount.push_back(address);
}
std::vector<CRecipient> recipients;
ParseRecipients(address_amounts, address_assets, subtractFeeFromAmount, recipients);
bool verbose = request.params[12].isNull() ? false: request.params[12].get_bool();
return SendMoney(*pwallet, coin_control, recipients, mapValue, verbose, ignore_blind_fail);
},
};
}
RPCHelpMan sendmany()
{
return RPCHelpMan{"sendmany",
"\nSend multiple times. Amounts are double-precision floating point numbers." +
HELP_REQUIRING_PASSPHRASE,
{
{"dummy", RPCArg::Type::STR, RPCArg::Optional::NO, "Must be set to \"\" for backwards compatibility.", "\"\""},
{"amounts", RPCArg::Type::OBJ_USER_KEYS, RPCArg::Optional::NO, "The addresses and amounts",
{
{"address", RPCArg::Type::AMOUNT, RPCArg::Optional::NO, "The address is the key, the numeric amount (can be string) in " + CURRENCY_UNIT + " is the value"},
},
},
{"minconf", RPCArg::Type::NUM, RPCArg::Optional::OMITTED_NAMED_ARG, "Ignored dummy value"},
{"comment", RPCArg::Type::STR, RPCArg::Optional::OMITTED_NAMED_ARG, "A comment"},
{"subtractfeefrom", RPCArg::Type::ARR, RPCArg::Optional::OMITTED_NAMED_ARG, "The addresses.\n"
"The fee will be equally deducted from the amount of each selected address.\n"
"Those recipients will receive less bitcoins than you enter in their corresponding amount field.\n"
"If no addresses are specified here, the sender pays the fee.",
{
{"address", RPCArg::Type::STR, RPCArg::Optional::OMITTED, "Subtract fee from this address"},
},
},
{"replaceable", RPCArg::Type::BOOL, RPCArg::DefaultHint{"wallet default"}, "Allow this transaction to be replaced by a transaction with higher fees via BIP 125"},
{"conf_target", RPCArg::Type::NUM, RPCArg::DefaultHint{"wallet -txconfirmtarget"}, "Confirmation target in blocks"},
{"estimate_mode", RPCArg::Type::STR, RPCArg::Default{"unset"}, std::string() + "The fee estimate mode, must be one of (case insensitive):\n"
" \"" + FeeModes("\"\n\"") + "\""},
{"output_assets", RPCArg::Type::OBJ, RPCArg::Optional::OMITTED, "A json object of addresses to assets.",
{
{"address", RPCArg::Type::STR, RPCArg::Optional::NO, "A key-value pair where the key is the address used and the value is an asset label or hex asset ID."},
},
},
{"ignoreblindfail", RPCArg::Type::BOOL, RPCArg::Default{true}, "Return a transaction even when a blinding attempt fails due to number of blinded inputs/outputs."},
{"fee_rate", RPCArg::Type::AMOUNT, RPCArg::DefaultHint{"not set, fall back to wallet fee estimation"}, "Specify a fee rate in " + CURRENCY_ATOM + "/vB."},
{"verbose", RPCArg::Type::BOOL, RPCArg::Default{false}, "If true, return extra information about the transaction."},
},
{
RPCResult{"if verbose is not set or set to false",
RPCResult::Type::STR_HEX, "txid", "The transaction id for the send. Only 1 transaction is created regardless of\n"
"the number of addresses."
},
RPCResult{"if verbose is set to true",
RPCResult::Type::OBJ, "", "",
{
{RPCResult::Type::STR_HEX, "txid", "The transaction id for the send. Only 1 transaction is created regardless of\n"
"the number of addresses."},
{RPCResult::Type::STR, "fee_reason", "The transaction fee reason."}
},
},
},
RPCExamples{
"\nSend two amounts to two different addresses:\n"
+ HelpExampleCli("sendmany", "\"\" \"{\\\"" + EXAMPLE_ADDRESS[0] + "\\\":0.01,\\\"" + EXAMPLE_ADDRESS[1] + "\\\":0.02}\"") +
"\nSend two amounts to two different addresses setting the confirmation and comment:\n"
+ HelpExampleCli("sendmany", "\"\" \"{\\\"" + EXAMPLE_ADDRESS[0] + "\\\":0.01,\\\"" + EXAMPLE_ADDRESS[1] + "\\\":0.02}\" 6 \"testing\"") +
"\nSend two amounts to two different addresses, subtract fee from amount:\n"
+ HelpExampleCli("sendmany", "\"\" \"{\\\"" + EXAMPLE_ADDRESS[0] + "\\\":0.01,\\\"" + EXAMPLE_ADDRESS[1] + "\\\":0.02}\" 1 \"\" \"[\\\"" + EXAMPLE_ADDRESS[0] + "\\\",\\\"" + EXAMPLE_ADDRESS[1] + "\\\"]\"") +
"\nAs a JSON-RPC call\n"
+ HelpExampleRpc("sendmany", "\"\", {\"" + EXAMPLE_ADDRESS[0] + "\":0.01,\"" + EXAMPLE_ADDRESS[1] + "\":0.02}, 6, \"testing\"")
},
[&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
{
std::shared_ptr<CWallet> const pwallet = GetWalletForJSONRPCRequest(request);
if (!pwallet) return NullUniValue;
// Make sure the results are valid at least up to the most recent block
// the user could have gotten from another RPC command prior to now
pwallet->BlockUntilSyncedToCurrentChain();
LOCK(pwallet->cs_wallet);
if (!request.params[0].isNull() && !request.params[0].get_str().empty()) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Dummy value must be set to \"\"");
}
UniValue sendTo = request.params[1].get_obj();
mapValue_t mapValue;
if (!request.params[3].isNull() && !request.params[3].get_str().empty())
mapValue["comment"] = request.params[3].get_str();
UniValue subtractFeeFromAmount(UniValue::VARR);
if (!request.params[4].isNull())
subtractFeeFromAmount = request.params[4].get_array();
CCoinControl coin_control;
if (!request.params[5].isNull()) {
coin_control.m_signal_bip125_rbf = request.params[5].get_bool();
}
SetFeeEstimateMode(*pwallet, coin_control, /* conf_target */ request.params[6], /* estimate_mode */ request.params[7], /* fee_rate */ request.params[10], /* override_min_fee */ false);
UniValue assets;
if (!request.params[8].isNull()) {
if (!g_con_elementsmode) {
throw JSONRPCError(RPC_TYPE_ERROR, "Asset argument cannot be given for Bitcoin serialization.");
}
assets = request.params[8].get_obj();
}
bool ignore_blind_fail = true;
if (!request.params[9].isNull()) {
ignore_blind_fail = request.params[9].get_bool();
}
std::vector<CRecipient> recipients;
ParseRecipients(sendTo, assets, subtractFeeFromAmount, recipients);
bool verbose = request.params[11].isNull() ? false : request.params[11].get_bool();
return SendMoney(*pwallet, coin_control, recipients, std::move(mapValue), verbose, ignore_blind_fail);
},
};
}
RPCHelpMan settxfee()
{
return RPCHelpMan{"settxfee",
"\nSet the transaction fee rate in " + CURRENCY_UNIT + "/kvB for this wallet. Overrides the global -paytxfee command line parameter.\n"
"Can be deactivated by passing 0 as the fee. In that case automatic fee selection will be used by default.\n",
{
{"amount", RPCArg::Type::AMOUNT, RPCArg::Optional::NO, "The transaction fee rate in " + CURRENCY_UNIT + "/kvB"},
},
RPCResult{
RPCResult::Type::BOOL, "", "Returns true if successful"
},
RPCExamples{
HelpExampleCli("settxfee", "0.00001")
+ HelpExampleRpc("settxfee", "0.00001")
},
[&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
{
std::shared_ptr<CWallet> const pwallet = GetWalletForJSONRPCRequest(request);
if (!pwallet) return NullUniValue;
LOCK(pwallet->cs_wallet);
CAmount nAmount = AmountFromValue(request.params[0]);
CFeeRate tx_fee_rate(nAmount, 1000);
CFeeRate max_tx_fee_rate(pwallet->m_default_max_tx_fee, 1000);
if (tx_fee_rate == CFeeRate(0)) {
// automatic selection
} else if (tx_fee_rate < pwallet->chain().relayMinFee()) {
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("txfee cannot be less than min relay tx fee (%s)", pwallet->chain().relayMinFee().ToString()));
} else if (tx_fee_rate < pwallet->m_min_fee) {
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("txfee cannot be less than wallet min fee (%s)", pwallet->m_min_fee.ToString()));
} else if (tx_fee_rate > max_tx_fee_rate) {
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("txfee cannot be more than wallet max tx fee (%s)", max_tx_fee_rate.ToString()));
}
pwallet->m_pay_tx_fee = tx_fee_rate;
return true;
},
};
}
// Only includes key documentation where the key is snake_case in all RPC methods. MixedCase keys can be added later.
static std::vector<RPCArg> FundTxDoc()
{
return {
{"conf_target", RPCArg::Type::NUM, RPCArg::DefaultHint{"wallet -txconfirmtarget"}, "Confirmation target in blocks"},
{"estimate_mode", RPCArg::Type::STR, RPCArg::Default{"unset"}, std::string() + "The fee estimate mode, must be one of (case insensitive):\n"
" \"" + FeeModes("\"\n\"") + "\""},
{"replaceable", RPCArg::Type::BOOL, RPCArg::DefaultHint{"wallet default"}, "Marks this transaction as BIP125-replaceable.\n"
"Allows this transaction to be replaced by a transaction with higher fees"},
{"solving_data", RPCArg::Type::OBJ, RPCArg::Optional::OMITTED_NAMED_ARG, "Keys and scripts needed for producing a final transaction with a dummy signature.\n"
"Used for fee estimation during coin selection.",
{
{"pubkeys", RPCArg::Type::ARR, RPCArg::Default{UniValue::VARR}, "Public keys involved in this transaction.",
{
{"pubkey", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "A public key"},
}},
{"scripts", RPCArg::Type::ARR, RPCArg::Default{UniValue::VARR}, "Scripts involved in this transaction.",
{
{"script", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "A script"},
}},
{"descriptors", RPCArg::Type::ARR, RPCArg::Default{UniValue::VARR}, "Descriptors that provide solving data for this transaction.",
{
{"descriptor", RPCArg::Type::STR, RPCArg::Optional::OMITTED, "A descriptor"},
}},
}},
};
}
void FundTransaction(CWallet& wallet, CMutableTransaction& tx, CAmount& fee_out, int& change_position, const UniValue& options, CCoinControl& coinControl, const UniValue& solving_data, bool override_min_fee)
{
// Make sure the results are valid at least up to the most recent block
// the user could have gotten from another RPC command prior to now
wallet.BlockUntilSyncedToCurrentChain();
change_position = -1;
bool lockUnspents = false;
UniValue subtractFeeFromOutputs;
std::set<int> setSubtractFeeFromOutputs;
if (!options.isNull()) {
if (options.type() == UniValue::VBOOL) {
// backward compatibility bool only fallback
coinControl.fAllowWatchOnly = options.get_bool();
}
else {
RPCTypeCheckArgument(options, UniValue::VOBJ);
RPCTypeCheckObj(options,
{
{"add_inputs", UniValueType(UniValue::VBOOL)},
{"include_unsafe", UniValueType(UniValue::VBOOL)},
{"add_to_wallet", UniValueType(UniValue::VBOOL)},
{"changeAddress", UniValueType()}, // will be checked below
{"change_address", UniValueType()}, // will be checked below
{"changePosition", UniValueType(UniValue::VNUM)},
{"change_position", UniValueType(UniValue::VNUM)},
{"change_type", UniValueType(UniValue::VSTR)},
{"includeWatching", UniValueType(UniValue::VBOOL)},
{"include_watching", UniValueType(UniValue::VBOOL)},
{"inputs", UniValueType(UniValue::VARR)},
{"lockUnspents", UniValueType(UniValue::VBOOL)},
{"lock_unspents", UniValueType(UniValue::VBOOL)},
{"locktime", UniValueType(UniValue::VNUM)},
{"fee_rate", UniValueType()}, // will be checked by AmountFromValue() in SetFeeEstimateMode()
{"feeRate", UniValueType()}, // will be checked by AmountFromValue() below
{"psbt", UniValueType(UniValue::VBOOL)},
{"solving_data", UniValueType(UniValue::VOBJ)},
{"subtractFeeFromOutputs", UniValueType(UniValue::VARR)},
{"subtract_fee_from_outputs", UniValueType(UniValue::VARR)},
{"replaceable", UniValueType(UniValue::VBOOL)},
{"conf_target", UniValueType(UniValue::VNUM)},
{"estimate_mode", UniValueType(UniValue::VSTR)},
{"include_explicit", UniValueType(UniValue::VBOOL)},
{"input_weights", UniValueType(UniValue::VARR)},
},
true, true);
if (options.exists("add_inputs") ) {
coinControl.m_add_inputs = options["add_inputs"].get_bool();
}
if (options.exists("changeAddress") || options.exists("change_address")) {
const UniValue& change_address = options.exists("change_address") ? options["change_address"] : options["changeAddress"];
std::map<CAsset, CTxDestination> destinations;
if (change_address.isStr()) {
// Single destination for default asset (policyAsset).
CTxDestination dest = DecodeDestination(change_address.get_str());
if (!IsValidDestination(dest)) {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Change address must be a valid address");
}
destinations[::policyAsset] = dest;
} else if (change_address.isObject()) {
// Map of assets to destinations.
std::map<std::string, UniValue> kvMap;
change_address.getObjMap(kvMap);
for (const auto& kv : kvMap) {
CAsset asset = GetAssetFromString(kv.first);
if (asset.IsNull()) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Change address key must be a valid asset label or hex");
}
CTxDestination dest = DecodeDestination(kv.second.get_str());
if (!IsValidDestination(dest)) {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Change address must be a valid address");
}
destinations[asset] = dest;
}
} else {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Change address must be either a map or a string");
}
coinControl.destChange = destinations;
}
if (options.exists("changePosition") || options.exists("change_position")) {
change_position = (options.exists("change_position") ? options["change_position"] : options["changePosition"]).get_int();
}
if (options.exists("change_type")) {
if (options.exists("changeAddress") || options.exists("change_address")) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Cannot specify both change address and address type options");
}
if (std::optional<OutputType> parsed = ParseOutputType(options["change_type"].get_str())) {
coinControl.m_change_type.emplace(parsed.value());
} else {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, strprintf("Unknown change type '%s'", options["change_type"].get_str()));
}
}
const UniValue include_watching_option = options.exists("include_watching") ? options["include_watching"] : options["includeWatching"];
coinControl.fAllowWatchOnly = ParseIncludeWatchonly(include_watching_option, wallet);
if (options.exists("lockUnspents") || options.exists("lock_unspents")) {
lockUnspents = (options.exists("lock_unspents") ? options["lock_unspents"] : options["lockUnspents"]).get_bool();
}
if (options.exists("include_unsafe")) {
coinControl.m_include_unsafe_inputs = options["include_unsafe"].get_bool();
}
if (options.exists("feeRate")) {
if (options.exists("fee_rate")) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Cannot specify both fee_rate (" + CURRENCY_ATOM + "/vB) and feeRate (" + CURRENCY_UNIT + "/kvB)");
}
if (options.exists("conf_target")) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Cannot specify both conf_target and feeRate. Please provide either a confirmation target in blocks for automatic fee estimation, or an explicit fee rate.");
}
if (options.exists("estimate_mode")) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Cannot specify both estimate_mode and feeRate");
}
coinControl.m_feerate = CFeeRate(AmountFromValue(options["feeRate"]));
coinControl.fOverrideFeeRate = true;
}
if (options.exists("subtractFeeFromOutputs") || options.exists("subtract_fee_from_outputs") )
subtractFeeFromOutputs = (options.exists("subtract_fee_from_outputs") ? options["subtract_fee_from_outputs"] : options["subtractFeeFromOutputs"]).get_array();
if (options.exists("replaceable")) {
coinControl.m_signal_bip125_rbf = options["replaceable"].get_bool();
}
SetFeeEstimateMode(wallet, coinControl, options["conf_target"], options["estimate_mode"], options["fee_rate"], override_min_fee);
}
} else {
// if options is null and not a bool
coinControl.fAllowWatchOnly = ParseIncludeWatchonly(NullUniValue, wallet);
}
if (options.exists("solving_data")) {
const UniValue solving_data = options["solving_data"].get_obj();
if (solving_data.exists("pubkeys")) {
for (const UniValue& pk_univ : solving_data["pubkeys"].get_array().getValues()) {
const std::string& pk_str = pk_univ.get_str();
if (!IsHex(pk_str)) {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, strprintf("'%s' is not hex", pk_str));
}
const std::vector<unsigned char> data(ParseHex(pk_str));
const CPubKey pubkey(data.begin(), data.end());
if (!pubkey.IsFullyValid()) {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, strprintf("'%s' is not a valid public key", pk_str));
}
coinControl.m_external_provider.pubkeys.emplace(pubkey.GetID(), pubkey);
// Add witness script for pubkeys
const CScript wit_script = GetScriptForDestination(WitnessV0KeyHash(pubkey));
coinControl.m_external_provider.scripts.emplace(CScriptID(wit_script), wit_script);
}
}
if (solving_data.exists("scripts")) {
for (const UniValue& script_univ : solving_data["scripts"].get_array().getValues()) {
const std::string& script_str = script_univ.get_str();
if (!IsHex(script_str)) {
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, strprintf("'%s' is not hex", script_str));
}
std::vector<unsigned char> script_data(ParseHex(script_str));
const CScript script(script_data.begin(), script_data.end());
coinControl.m_external_provider.scripts.emplace(CScriptID(script), script);
}
}
if (solving_data.exists("descriptors")) {
for (const UniValue& desc_univ : solving_data["descriptors"].get_array().getValues()) {
const std::string& desc_str = desc_univ.get_str();
FlatSigningProvider desc_out;
std::string error;
std::vector<CScript> scripts_temp;
std::unique_ptr<Descriptor> desc = Parse(desc_str, desc_out, error, true);
if (!desc) {
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("Unable to parse descriptor '%s': %s", desc_str, error));
}
desc->Expand(0, desc_out, scripts_temp, desc_out);
coinControl.m_external_provider = Merge(coinControl.m_external_provider, desc_out);
}
}
}
if (options.exists("input_weights")) {
for (const UniValue& input : options["input_weights"].get_array().getValues()) {
uint256 txid = ParseHashO(input, "txid");
const UniValue& vout_v = input.find_value("vout");
if (!vout_v.isNum()) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Invalid parameter, missing vout key");
}
int vout = vout_v.get_int();
if (vout < 0) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Invalid parameter, vout cannot be negative");
}
const UniValue& weight_v = input.find_value("weight");
if (!weight_v.isNum()) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Invalid parameter, missing weight key");
}
int64_t weight = weight_v.get_int64();
CMutableTransaction mtx;
mtx.vin.resize(1);
mtx.witness.vtxinwit.resize(1);
const int64_t min_input_weight = GetTransactionInputWeight(CTransaction(mtx), 0);
CHECK_NONFATAL(min_input_weight == 165);
if (weight < min_input_weight) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Invalid parameter, weight cannot be less than 165 (41 bytes (size of outpoint + sequence + empty scriptSig) * 4 (witness scaling factor)) + 1 (empty witness)");
}
if (weight > MAX_STANDARD_TX_WEIGHT) {
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("Invalid parameter, weight cannot be greater than the maximum standard tx weight of %d", MAX_STANDARD_TX_WEIGHT));
}
coinControl.SetInputWeight(COutPoint(txid, vout), weight);
}
}
if (tx.vout.size() == 0)
throw JSONRPCError(RPC_INVALID_PARAMETER, "TX must have at least one output");
if (change_position != -1 && (change_position < 0 || (unsigned int)change_position > tx.vout.size()))
throw JSONRPCError(RPC_INVALID_PARAMETER, "changePosition out of bounds");
for (unsigned int idx = 0; idx < subtractFeeFromOutputs.size(); idx++) {
int pos = subtractFeeFromOutputs[idx].get_int();
if (setSubtractFeeFromOutputs.count(pos))
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("Invalid parameter, duplicated position: %d", pos));
if (pos < 0)
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("Invalid parameter, negative position: %d", pos));
if (pos >= int(tx.vout.size()))
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("Invalid parameter, position too large: %d", pos));
setSubtractFeeFromOutputs.insert(pos);
}
// Check any existing inputs for peg-in data and add to external txouts if so
// Fetch specified UTXOs from the UTXO set to get the scriptPubKeys and values of the outputs being selected
// and to match with the given solving_data. Only used for non-wallet outputs.
const auto& fedpegscripts = GetValidFedpegScripts(wallet.chain().getTip(), Params().GetConsensus(), true /* nextblock_validation */);
std::map<COutPoint, Coin> coins;
for (unsigned int i = 0; i < tx.vin.size(); ++i ) {
const CTxIn& txin = tx.vin[i];
coins[txin.prevout]; // Create empty map entry keyed by prevout.
if (txin.m_is_pegin) {
std::string err;
if (tx.witness.vtxinwit.size() != tx.vin.size() || !IsValidPeginWitness(tx.witness.vtxinwit[i].m_pegin_witness, fedpegscripts, txin.prevout, err, false)) {
throw JSONRPCError(RPC_INVALID_PARAMETER, strprintf("Transaction contains invalid peg-in input: %s", err));
}
CScriptWitness& pegin_witness = tx.witness.vtxinwit[i].m_pegin_witness;
CTxOut txout = GetPeginOutputFromWitness(pegin_witness);
coinControl.SelectExternal(txin.prevout, txout);
}
}
wallet.chain().findCoins(coins);
for (const auto& coin : coins) {
if (!coin.second.out.IsNull()) {
coinControl.SelectExternal(coin.first, coin.second.out);
}
}
bilingual_str error;
if (!FundTransaction(wallet, tx, fee_out, change_position, error, lockUnspents, setSubtractFeeFromOutputs, coinControl)) {
throw JSONRPCError(RPC_WALLET_ERROR, error.original);
}
}
static void SetOptionsInputWeights(const UniValue& inputs, UniValue& options)
{
if (options.exists("input_weights")) {
throw JSONRPCError(RPC_INVALID_PARAMETER, "Input weights should be specified in inputs rather than in options.");
}
if (inputs.size() == 0) {
return;
}
UniValue weights(UniValue::VARR);
for (const UniValue& input : inputs.getValues()) {
if (input.exists("weight")) {
weights.push_back(input);
}
}
options.pushKV("input_weights", weights);
}
RPCHelpMan fundrawtransaction()
{
return RPCHelpMan{"fundrawtransaction",
"\nIf the transaction has no inputs, they will be automatically selected to meet its out value.\n"
"It will add at most one change output to the outputs.\n"
"No existing outputs will be modified unless \"subtractFeeFromOutputs\" is specified.\n"
"Note that inputs which were signed may need to be resigned after completion since in/outputs have been added.\n"
"The inputs added will not be signed, use signrawtransactionwithkey\n"
"or signrawtransactionwithwallet for that.\n"
"All existing inputs must either have their previous output transaction be in the wallet\n"
"or be in the UTXO set. Solving data must be provided for non-wallet inputs.\n"
"Note that all inputs selected must be of standard form and P2SH scripts must be\n"
"in the wallet using importaddress or addmultisigaddress (to calculate fees).\n"
"You can see whether this is the case by checking the \"solvable\" field in the listunspent output.\n"
"Only pay-to-pubkey, multisig, and P2SH versions thereof are currently supported for watch-only\n",
{
{"hexstring", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The hex string of the raw transaction"},
{"options", RPCArg::Type::OBJ, RPCArg::Optional::OMITTED_NAMED_ARG, "for backward compatibility: passing in a true instead of an object will result in {\"includeWatching\":true}",
Cat<std::vector<RPCArg>>(
{
{"add_inputs", RPCArg::Type::BOOL, RPCArg::Default{true}, "For a transaction with existing inputs, automatically include more if they are not enough."},
{"include_unsafe", RPCArg::Type::BOOL, RPCArg::Default{false}, "Include inputs that are not safe to spend (unconfirmed transactions from outside keys and unconfirmed replacement transactions).\n"
"Warning: the resulting transaction may become invalid if one of the unsafe inputs disappears.\n"
"If that happens, you will need to fund the transaction with different inputs and republish it."},
{"changeAddress", RPCArg::Type::STR, RPCArg::DefaultHint{"pool address"}, "The address to receive the change"},
{"changePosition", RPCArg::Type::NUM, RPCArg::DefaultHint{"random"}, "The index of the change output"},
{"change_type", RPCArg::Type::STR, RPCArg::DefaultHint{"set by -changetype"}, "The output type to use. Only valid if changeAddress is not specified. Options are \"legacy\", \"p2sh-segwit\", and \"bech32\"."},
{"includeWatching", RPCArg::Type::BOOL, RPCArg::DefaultHint{"true for watch-only wallets, otherwise false"}, "Also select inputs which are watch only.\n"
"Only solvable inputs can be used. Watch-only destinations are solvable if the public key and/or output script was imported,\n"
"e.g. with 'importpubkey' or 'importmulti' with the 'pubkeys' or 'desc' field."},
{"lockUnspents", RPCArg::Type::BOOL, RPCArg::Default{false}, "Lock selected unspent outputs"},
{"fee_rate", RPCArg::Type::AMOUNT, RPCArg::DefaultHint{"not set, fall back to wallet fee estimation"}, "Specify a fee rate in " + CURRENCY_ATOM + "/vB."},
{"feeRate", RPCArg::Type::AMOUNT, RPCArg::DefaultHint{"not set, fall back to wallet fee estimation"}, "Specify a fee rate in " + CURRENCY_UNIT + "/kvB."},
{"subtractFeeFromOutputs", RPCArg::Type::ARR, RPCArg::Default{UniValue::VARR}, "The integers.\n"
"The fee will be equally deducted from the amount of each specified output.\n"
"Those recipients will receive less coins than you enter in their corresponding amount field.\n"
"If no outputs are specified here, the sender pays the fee.",
{
{"vout_index", RPCArg::Type::NUM, RPCArg::Optional::OMITTED, "The zero-based output index, before a change output is added."},
},
},
{"input_weights", RPCArg::Type::ARR, RPCArg::Optional::OMITTED_NAMED_ARG, "Inputs and their corresponding weights",
{
{"txid", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The transaction id"},
{"vout", RPCArg::Type::NUM, RPCArg::Optional::NO, "The output index"},
{"weight", RPCArg::Type::NUM, RPCArg::Optional::NO, "The maximum weight for this input, "
"including the weight of the outpoint and sequence number. "
"Note that serialized signature sizes are not guaranteed to be consistent, "
"so the maximum DER signatures size of 73 bytes should be used when considering ECDSA signatures."
"Remember to convert serialized sizes to weight units when necessary."},
},
},
},
FundTxDoc()),
"options"},
{"iswitness", RPCArg::Type::BOOL, RPCArg::DefaultHint{"depends on heuristic tests"}, "Whether the transaction hex is a serialized witness transaction.\n"
"If iswitness is not present, heuristic tests will be used in decoding.\n"
"If true, only witness deserialization will be tried.\n"
"If false, only non-witness deserialization will be tried.\n"
"This boolean should reflect whether the transaction has inputs\n"
"(e.g. fully valid, or on-chain transactions), if known by the caller."
},
{"solving_data", RPCArg::Type::OBJ, RPCArg::Optional::OMITTED_NAMED_ARG, "Keys and scripts needed for producing a final transaction with a dummy signature. Used for fee estimation during coin selection.\n",
{
{"pubkeys", RPCArg::Type::ARR, RPCArg::DefaultHint{"empty array"}, "A json array of public keys.\n",
{
{"pubkey", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "A public key"},
},
},
{"scripts", RPCArg::Type::ARR, RPCArg::DefaultHint{"empty array"}, "A json array of scripts.\n",
{
{"script", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "A script"},
},
},
{"descriptors", RPCArg::Type::ARR, RPCArg::DefaultHint{"empty array"}, "A json array of descriptors.\n",
{
{"descriptor", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "A descriptor"},
},
}
}
},
},
RPCResult{
RPCResult::Type::OBJ, "", "",
{
{RPCResult::Type::STR_HEX, "hex", "The resulting raw transaction (hex-encoded string)"},
{RPCResult::Type::STR_AMOUNT, "fee", "Fee in " + CURRENCY_UNIT + " the resulting transaction pays"},
{RPCResult::Type::NUM, "changepos", "The position of the added change output, or -1"},
}
},
RPCExamples{
"\nCreate a transaction with no inputs\n"
+ HelpExampleCli("createrawtransaction", "\"[]\" \"{\\\"myaddress\\\":0.01}\"") +
"\nAdd sufficient unsigned inputs to meet the output value\n"
+ HelpExampleCli("fundrawtransaction", "\"rawtransactionhex\"") +
"\nSign the transaction\n"
+ HelpExampleCli("signrawtransactionwithwallet", "\"fundedtransactionhex\"") +
"\nSend the transaction\n"
+ HelpExampleCli("sendrawtransaction", "\"signedtransactionhex\"")
},
[&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
{
std::shared_ptr<CWallet> const pwallet = GetWalletForJSONRPCRequest(request);
if (!pwallet) return NullUniValue;
RPCTypeCheck(request.params, {UniValue::VSTR, UniValueType(), UniValue::VBOOL});
// parse hex string from parameter
CMutableTransaction tx;
bool try_witness = request.params[2].isNull() ? true : request.params[2].get_bool();
bool try_no_witness = request.params[2].isNull() ? true : !request.params[2].get_bool();
if (!DecodeHexTx(tx, request.params[0].get_str(), try_no_witness, try_witness)) {
throw JSONRPCError(RPC_DESERIALIZATION_ERROR, "TX decode failed");
}
CAmount fee;
int change_position;
CCoinControl coin_control;
// Automatically select (additional) coins. Can be overridden by options.add_inputs.
coin_control.m_add_inputs = true;
FundTransaction(*pwallet, tx, fee, change_position, request.params[1], coin_control, request.params[3], /* override_min_fee */ true);
UniValue result(UniValue::VOBJ);
result.pushKV("hex", EncodeHexTx(CTransaction(tx)));
result.pushKV("fee", ValueFromAmount(fee));
result.pushKV("changepos", change_position);
return result;
},
};
}
RPCHelpMan signrawtransactionwithwallet()
{
return RPCHelpMan{"signrawtransactionwithwallet",
"\nSign inputs for raw transaction (serialized, hex-encoded).\n"
"The second optional argument (may be null) is an array of previous transaction outputs that\n"
"this transaction depends on but may not yet be in the block chain." +
HELP_REQUIRING_PASSPHRASE,
{
{"hexstring", RPCArg::Type::STR, RPCArg::Optional::NO, "The transaction hex string"},
{"prevtxs", RPCArg::Type::ARR, RPCArg::Optional::OMITTED_NAMED_ARG, "The previous dependent transaction outputs",
{
{"", RPCArg::Type::OBJ, RPCArg::Optional::OMITTED, "",
{
{"txid", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The transaction id"},
{"vout", RPCArg::Type::NUM, RPCArg::Optional::NO, "The output number"},
{"scriptPubKey", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "script key"},
{"redeemScript", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "(required for P2SH) redeem script"},
{"witnessScript", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "(required for P2WSH or P2SH-P2WSH) witness script"},
{"amount", RPCArg::Type::AMOUNT, RPCArg::Optional::OMITTED, "The amount spent (required if non-confidential segwit output)"},
{"amountcommitment", RPCArg::Type::STR, RPCArg::Optional::OMITTED, "The amount commitment spent (required if confidential segwit output)"},
},
},
},
},
{"sighashtype", RPCArg::Type::STR, RPCArg::Default{"DEFAULT for Taproot, ALL otherwise"}, "The signature hash type. Must be one of\n"
" \"DEFAULT\"\n"
" \"ALL\"\n"
" \"NONE\"\n"
" \"SINGLE\"\n"
" \"ALL|ANYONECANPAY\"\n"
" \"NONE|ANYONECANPAY\"\n"
" \"SINGLE|ANYONECANPAY\""},
},
RPCResult{
RPCResult::Type::OBJ, "", "",
{
{RPCResult::Type::STR_HEX, "hex", "The hex-encoded raw transaction with signature(s)"},
{RPCResult::Type::BOOL, "complete", "If the transaction has a complete set of signatures"},
{RPCResult::Type::ARR, "errors", /*optional=*/true, "Script verification errors (if there are any)",
{
{RPCResult::Type::OBJ, "", "",
{
{RPCResult::Type::STR_HEX, "txid", "The hash of the referenced, previous transaction"},
{RPCResult::Type::NUM, "vout", "The index of the output to spent and used as input"},
{RPCResult::Type::ARR, "witness", "",
{
{RPCResult::Type::STR_HEX, "witness", ""},
}},
{RPCResult::Type::STR_HEX, "scriptSig", "The hex-encoded signature script"},
{RPCResult::Type::NUM, "sequence", "Script sequence number"},
{RPCResult::Type::STR, "error", "Verification or signing error related to the input"},
}},
}},
{RPCResult::Type::STR, "warning", "Warning that a peg-in input signed may be immature. This could mean lack of connectivity to or misconfiguration of the daemon."},
}
},
RPCExamples{
HelpExampleCli("signrawtransactionwithwallet", "\"myhex\"")
+ HelpExampleRpc("signrawtransactionwithwallet", "\"myhex\"")
},
[&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue
{
const std::shared_ptr<const CWallet> pwallet = GetWalletForJSONRPCRequest(request);
if (!pwallet) return NullUniValue;
RPCTypeCheck(request.params, {UniValue::VSTR, UniValue::VARR, UniValue::VSTR}, true);
CMutableTransaction mtx;
if (!DecodeHexTx(mtx, request.params[0].get_str())) {
throw JSONRPCError(RPC_DESERIALIZATION_ERROR, "TX decode failed. Make sure the tx has at least one input.");
}
// Sign the transaction
LOCK(pwallet->cs_wallet);
EnsureWalletIsUnlocked(*pwallet);
// Fetch previous transactions (inputs):
std::map<COutPoint, Coin> coins;
for (const CTxIn& txin : mtx.vin) {
coins[txin.prevout]; // Create empty map entry keyed by prevout.
}
pwallet->chain().findCoins(coins);
// Parse the prevtxs array
ParsePrevouts(request.params[1], nullptr, coins);
int nHashType = ParseSighashString(request.params[2]);
// Script verification errors
std::map<int, bilingual_str> input_errors;
bool immature_pegin = ValidateTransactionPeginInputs(mtx, pwallet->chain().getTip(), input_errors);
bool complete = pwallet->SignTransaction(mtx, coins, nHashType, input_errors);
UniValue result(UniValue::VOBJ);
SignTransactionResultToJSON(mtx, complete, coins, input_errors, immature_pegin, result);
return result;
},
};
}
static RPCHelpMan bumpfee_helper(std::string method_name)
{
const bool want_psbt = method_name == "psbtbumpfee";
const std::string incremental_fee{CFeeRate(DEFAULT_INCREMENTAL_RELAY_FEE).ToString(FeeEstimateMode::SAT_VB)};
return RPCHelpMan{method_name,
"\nBumps the fee of an opt-in-RBF transaction T, replacing it with a new transaction B.\n"
+ std::string(want_psbt ? "Returns a PSBT instead of creating and signing a new transaction.\n" : "") +
"An opt-in RBF transaction with the given txid must be in the wallet.\n"
"The command will pay the additional fee by reducing change outputs or adding inputs when necessary.\n"
"It may add a new change output if one does not already exist.\n"
"All inputs in the original transaction will be included in the replacement transaction.\n"
"The command will fail if the wallet or mempool contains a transaction that spends one of T's outputs.\n"
"By default, the new fee will be calculated automatically using the estimatesmartfee RPC.\n"
"The user can specify a confirmation target for estimatesmartfee.\n"
"Alternatively, the user can specify a fee rate in " + CURRENCY_ATOM + "/vB for the new transaction.\n"
"At a minimum, the new fee rate must be high enough to pay an additional new relay fee (incrementalfee\n"
"returned by getnetworkinfo) to enter the node's mempool.\n"
"* WARNING: before version 0.21, fee_rate was in " + CURRENCY_UNIT + "/kvB. As of 0.21, fee_rate is in " + CURRENCY_ATOM + "/vB. *\n",
{
{"txid", RPCArg::Type::STR_HEX, RPCArg::Optional::NO, "The txid to be bumped"},
{"options", RPCArg::Type::OBJ, RPCArg::Optional::OMITTED_NAMED_ARG, "",
{
{"conf_target", RPCArg::Type::NUM, RPCArg::DefaultHint{"wallet -txconfirmtarget"}, "Confirmation target in blocks\n"},
{"fee_rate", RPCArg::Type::AMOUNT, RPCArg::DefaultHint{"not set, fall back to wallet fee estimation"},
"\nSpecify a fee rate in " + CURRENCY_ATOM + "/vB instead of relying on the built-in fee estimator.\n"
"Must be at least " + incremental_fee + " higher than the current transaction fee rate.\n"
"WARNING: before version 0.21, fee_rate was in " + CURRENCY_UNIT + "/kvB. As of 0.21, fee_rate is in " + CURRENCY_ATOM + "/vB.\n"},
{"replaceable", RPCArg::Type::BOOL, RPCArg::Default{true}, "Whether the new transaction should still be\n"
"marked bip-125 replaceable. If true, the sequence numbers in the transaction will\n"
"be left unchanged from the original. If false, any input sequence numbers in the\n"
"original transaction that were less than 0xfffffffe will be increased to 0xfffffffe\n"
"so the new transaction will not be explicitly bip-125 replaceable (though it may\n"
"still be replaceable in practice, for example if it has unconfirmed ancestors which\n"
"are replaceable).\n"},
{"estimate_mode", RPCArg::Type::STR, RPCArg::Default{"unset"}, "The fee estimate mode, must be one of (case insensitive):\n"