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C++

// This file is auto-generated. Do not edit.
#pragma once
#include <xrpl/protocol/STTx.h>
#include <xrpl/protocol/STParsedJSON.h>
#include <xrpl/protocol/jss.h>
#include <xrpl/protocol_autogen/TransactionBase.h>
#include <xrpl/protocol_autogen/TransactionBuilderBase.h>
#include <xrpl/json/json_value.h>
#include <stdexcept>
#include <optional>
namespace xrpl::transactions {
class VaultSetBuilder;
/**
* @brief Transaction: VaultSet
*
* Type: ttVAULT_SET (66)
* Delegable: Delegation::notDelegable
* Amendment: featureSingleAssetVault
* Privileges: mustModifyVault
*
* Immutable wrapper around STTx providing type-safe field access.
* Use VaultSetBuilder to construct new transactions.
*/
class VaultSet : public TransactionBase
{
public:
static constexpr xrpl::TxType txType = ttVAULT_SET;
/**
* @brief Construct a VaultSet transaction wrapper from an existing STTx object.
* @throws std::runtime_error if the transaction type doesn't match.
*/
explicit VaultSet(std::shared_ptr<STTx const> tx)
: TransactionBase(std::move(tx))
{
// Verify transaction type
if (tx_->getTxnType() != txType)
{
throw std::runtime_error("Invalid transaction type for VaultSet");
}
}
// Transaction-specific field getters
/**
* @brief Get sfVaultID (soeREQUIRED)
* @return The field value.
*/
[[nodiscard]]
SF_UINT256::type::value_type
getVaultID() const
{
return this->tx_->at(sfVaultID);
}
/**
* @brief Get sfAssetsMaximum (soeOPTIONAL)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_NUMBER::type::value_type>
getAssetsMaximum() const
{
if (hasAssetsMaximum())
{
return this->tx_->at(sfAssetsMaximum);
}
return std::nullopt;
}
/**
* @brief Check if sfAssetsMaximum is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasAssetsMaximum() const
{
return this->tx_->isFieldPresent(sfAssetsMaximum);
}
/**
* @brief Get sfDomainID (soeOPTIONAL)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_UINT256::type::value_type>
getDomainID() const
{
if (hasDomainID())
{
return this->tx_->at(sfDomainID);
}
return std::nullopt;
}
/**
* @brief Check if sfDomainID is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasDomainID() const
{
return this->tx_->isFieldPresent(sfDomainID);
}
/**
* @brief Get sfData (soeOPTIONAL)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getData() const
{
if (hasData())
{
return this->tx_->at(sfData);
}
return std::nullopt;
}
/**
* @brief Check if sfData is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasData() const
{
return this->tx_->isFieldPresent(sfData);
}
};
/**
* @brief Builder for VaultSet transactions.
*
* Provides a fluent interface for constructing transactions with method chaining.
* Uses Json::Value internally for flexible transaction construction.
* Inherits common field setters from TransactionBuilderBase.
*/
class VaultSetBuilder : public TransactionBuilderBase<VaultSetBuilder>
{
public:
/**
* @brief Construct a new VaultSetBuilder with required fields.
* @param account The account initiating the transaction.
* @param vaultID The sfVaultID field value.
* @param sequence Optional sequence number for the transaction.
* @param fee Optional fee for the transaction.
*/
VaultSetBuilder(SF_ACCOUNT::type::value_type account,
std::decay_t<typename SF_UINT256::type::value_type> const& vaultID, std::optional<SF_UINT32::type::value_type> sequence = std::nullopt,
std::optional<SF_AMOUNT::type::value_type> fee = std::nullopt
)
: TransactionBuilderBase<VaultSetBuilder>(ttVAULT_SET, account, sequence, fee)
{
setVaultID(vaultID);
}
/**
* @brief Construct a VaultSetBuilder from an existing STTx object.
* @param tx The existing transaction to copy from.
* @throws std::runtime_error if the transaction type doesn't match.
*/
VaultSetBuilder(std::shared_ptr<STTx const> tx)
{
if (tx->getTxnType() != ttVAULT_SET)
{
throw std::runtime_error("Invalid transaction type for VaultSetBuilder");
}
object_ = *tx;
}
/** @brief Transaction-specific field setters */
/**
* @brief Set sfVaultID (soeREQUIRED)
* @return Reference to this builder for method chaining.
*/
VaultSetBuilder&
setVaultID(std::decay_t<typename SF_UINT256::type::value_type> const& value)
{
object_[sfVaultID] = value;
return *this;
}
/**
* @brief Set sfAssetsMaximum (soeOPTIONAL)
* @return Reference to this builder for method chaining.
*/
VaultSetBuilder&
setAssetsMaximum(std::decay_t<typename SF_NUMBER::type::value_type> const& value)
{
object_[sfAssetsMaximum] = value;
return *this;
}
/**
* @brief Set sfDomainID (soeOPTIONAL)
* @return Reference to this builder for method chaining.
*/
VaultSetBuilder&
setDomainID(std::decay_t<typename SF_UINT256::type::value_type> const& value)
{
object_[sfDomainID] = value;
return *this;
}
/**
* @brief Set sfData (soeOPTIONAL)
* @return Reference to this builder for method chaining.
*/
VaultSetBuilder&
setData(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfData] = value;
return *this;
}
/**
* @brief Build and return the VaultSet wrapper.
* @param publicKey The public key for signing.
* @param secretKey The secret key for signing.
* @return The constructed transaction wrapper.
*/
VaultSet
build(PublicKey const& publicKey, SecretKey const& secretKey)
{
sign(publicKey, secretKey);
return VaultSet{std::make_shared<STTx>(std::move(object_))};
}
};
} // namespace xrpl::transactions