Merge branch 'develop' into ximinez/fix-getkeys

This commit is contained in:
Ed Hennis
2026-06-30 16:27:25 -04:00
committed by GitHub
225 changed files with 24969 additions and 2397 deletions

View File

@@ -298,7 +298,8 @@ set(T& target, std::string const& name, Section const& section)
try
{
auto const val = section.get<T>(name);
if ((foundAndValid = val.has_value()))
foundAndValid = val.has_value();
if (foundAndValid)
target = *val;
}
catch (boost::bad_lexical_cast const&) // NOLINT(bugprone-empty-catch)

View File

@@ -63,6 +63,39 @@ checkArray(STArray const& credentials, unsigned maxSize, beast::Journal j);
TER
verifyValidDomain(ApplyView& view, AccountID const& account, uint256 domainID, beast::Journal j);
/**
* @brief Check whether src is authorized to deposit to dst.
*
* @param tx Transaction containing optional credential IDs.
* @param view Read-only ledger view.
* @param src Source account.
* @param dst Destination account.
* @param sleDst Destination AccountRoot, if it exists.
* @param j Journal for diagnostics.
* @return tesSUCCESS if the deposit is allowed, otherwise an authorization
* error.
*/
TER
checkDepositPreauth(
STTx const& tx,
ReadView const& view,
AccountID const& src,
AccountID const& dst,
std::shared_ptr<SLE const> const& sleDst,
beast::Journal j);
/**
* @brief Remove expired credentials referenced by the transaction.
*
* @param tx Transaction containing optional sfCredentialIDs.
* @param view Mutable ledger view.
* @param j Journal for diagnostics.
* @return tesSUCCESS if no referenced credentials expired, tecEXPIRED if any
* were removed, or an error from credential deletion.
*/
TER
cleanupExpiredCredentials(STTx const& tx, ApplyView& view, beast::Journal j);
// Check expired credentials and for existing DepositPreauth ledger object
TER
verifyDepositPreauth(

View File

@@ -42,7 +42,7 @@ escrowUnlockApplyHelper<Issue>(
beast::Journal journal)
{
Issue const& issue = amount.get<Issue>();
Keylet const trustLineKey = keylet::line(receiver, issue);
Keylet const trustLineKey = keylet::trustLine(receiver, issue);
bool const recvLow = issuer > receiver;
bool const senderIssuer = issuer == sender;
bool const receiverIssuer = issuer == receiver;
@@ -175,7 +175,7 @@ escrowUnlockApplyHelper<MPTIssue>(
bool const receiverIssuer = issuer == receiver;
auto const mptID = amount.get<MPTIssue>().getMptID();
auto const issuanceKey = keylet::mptIssuance(mptID);
auto const issuanceKey = keylet::mptokenIssuance(mptID);
if (!view.exists(keylet::mptoken(issuanceKey.key, receiver)) && createAsset && !receiverIssuer)
{
if (std::uint32_t const ownerCount = {sleDest->at(sfOwnerCount)};

View File

@@ -131,6 +131,75 @@ checkDeepFrozen(ReadView const& view, AccountID const& account, MPTIssue const&
[[nodiscard]] TER
checkDeepFrozen(ReadView const& view, AccountID const& account, Asset const& asset);
/**
* Checks freeze compliance for withdrawing an asset from a pseudo-account (e.g. Vault, AMM,
* LoanBroker) to a destination account.
*
* Asserts that sourceAcct is a pseudo-account and that submitterAcct and dstAcct are not.
*
* Issuer exemption: returns tesSUCCESS immediately when dstAcct is the asset issuer — the issuer
* can always receive their own token, even when the pool is frozen. Callers that need to block
* withdrawals from a frozen pool even for the issuer (e.g. because the pool math cannot handle it)
* must check checkFrozen(sourceAcct, asset) separately before calling this function.
*
* Otherwise checks, in order:
* 1. If the asset is globally frozen the remaining checks are redundant.
* 2. For MPT shares: The pseudo-account's vault share must not be transitively frozen via its
* underlying asset.
* 3. The pseudo-account's trustline / MPToken must not be frozen for sending.
* 4. Skipped when submitter == dst (self-withdrawal); a regular freeze should not prevent
* recovering one's own funds.
* 5. The destination must not be deep-frozen (cannot receive under any circumstance).
*
* For IOUs a regular individual freeze on the withdrawer does NOT block self-withdrawal; only deep
* freeze does. For MPTs "locked" is equivalent to deep-frozen, so locked MPT holders are always
* blocked.
*
* @param view Ledger view to read freeze state from.
* @param srcAcct Pseudo-account the funds are withdrawn from (sender).
* @param submitterAcct Account that submitted the withdrawal transaction.
* @param dstAcct Account receiving the withdrawn funds.
* @param asset Asset being withdrawn.
* @return tesSUCCESS if the withdrawal is permitted, otherwise a freeze
* result (tecFROZEN for IOUs, tecLOCKED for MPTs).
*/
[[nodiscard]] TER
checkWithdrawFreeze(
ReadView const& view,
AccountID const& srcAcct,
AccountID const& submitterAcct,
AccountID const& dstAcct,
Asset const& asset);
/**
* Checks freeze compliance for depositing an asset into a pseudo-account (e.g. Vault, AMM,
* LoanBroker).
*
*
* Checks, in order:
* 1. If the asset is globally frozen the remaining checks are redundant.
* 2. For MPT shares: the pseudo-account's vault share must not be transitively frozen via its
* underlying asset (returns tecLOCKED).
* 3. The depositor must not be individually frozen. Skipped when srcAcct is the asset issuer,
* since the issuer can always send its own asset.
* 4. The pseudo-account must not be individually frozen for the asset. Unlike regular accounts,
* pseudo-accounts cannot receive deposits under a regular freeze because the deposited funds
* could not later be withdrawn.
*
* @param view Ledger view to read freeze state from.
* @param srcAcct Depositor sending the funds.
* @param dstAcct Pseudo-account receiving the deposit.
* @param asset Asset being deposited.
* @return tesSUCCESS if the deposit is permitted, otherwise a freeze result
* (tecFROZEN for IOUs, tecLOCKED for MPTs).
*/
[[nodiscard]] TER
checkDepositFreeze(
ReadView const& view,
AccountID const& srcAcct,
AccountID const& dstAcct,
Asset const& asset);
//------------------------------------------------------------------------------
//
// Account balance functions (Asset-based dispatchers)

View File

@@ -0,0 +1,431 @@
#pragma once
#include <xrpl/basics/Slice.h>
#include <xrpl/basics/base_uint.h>
#include <xrpl/protocol/Indexes.h>
#include <xrpl/protocol/MPTIssue.h>
#include <xrpl/protocol/Protocol.h>
#include <xrpl/protocol/Rate.h>
#include <xrpl/protocol/STLedgerEntry.h>
#include <xrpl/protocol/STObject.h>
#include <xrpl/protocol/Serializer.h>
#include <xrpl/protocol/TER.h>
#include <xrpl/protocol/TxFormats.h>
#include <xrpl/protocol/detail/secp256k1.h>
#include <secp256k1_mpt.h>
#include <cstdint>
#include <limits>
namespace xrpl {
/**
* @brief Bundles an ElGamal public key with its associated encrypted amount.
*
* Used to represent a recipient in confidential transfers, containing both
* the recipient's ElGamal public key and the ciphertext encrypting the
* transfer amount under that key.
*/
struct ConfidentialRecipient
{
/** @brief The recipient's ElGamal public key (size=xrpl::kEcPubKeyLength). */
Slice publicKey;
/**
* @brief The encrypted amount ciphertext
* (size=xrpl::kEcGamalEncryptedTotalLength).
*/
Slice encryptedAmount;
};
/**
* @brief Holds two secp256k1 public key components representing an ElGamal
* ciphertext (C1, C2).
*/
struct EcPair
{
/** @brief First ElGamal ciphertext component. */
secp256k1_pubkey c1;
/** @brief Second ElGamal ciphertext component. */
secp256k1_pubkey c2;
};
/**
* @brief Increments the confidential balance version counter on an MPToken.
*
* The version counter is used to prevent replay attacks by binding proofs
* to a specific state of the account's confidential balance. Wraps to 0
* on overflow (defined behavior for unsigned integers).
*
* @param mptoken The MPToken ledger entry to update.
*/
inline void
incrementConfidentialVersion(STObject& mptoken)
{
// Retrieve current version and increment, wrapping back to 0 at UINT32_MAX.
// The wrap is computed explicitly rather than relying on unsigned overflow
// of `+ 1u`, as it trips the unsigned-integer-overflow sanitizer in the UBSan CI build.
auto const current = mptoken[~sfConfidentialBalanceVersion].valueOr(0u);
mptoken[sfConfidentialBalanceVersion] =
current == std::numeric_limits<std::uint32_t>::max() ? 0u : current + 1u;
}
/**
* @brief Generates the context hash for ConfidentialMPTSend transactions.
*
* Creates a unique 256-bit hash that binds the zero-knowledge proofs to
* this specific send transaction, preventing proof reuse across transactions.
*
* @param account The sender's account ID.
* @param issuanceID The MPToken Issuance ID.
* @param sequence The transaction sequence number or ticket number.
* @param destination The destination account ID.
* @param version The sender's confidential balance version.
* @return A 256-bit context hash unique to this transaction.
*/
uint256
getSendContextHash(
AccountID const& account,
uint192 const& issuanceID,
std::uint32_t sequence,
AccountID const& destination,
std::uint32_t version);
/**
* @brief Generates the context hash for ConfidentialMPTClawback transactions.
*
* Creates a unique 256-bit hash that binds the equality proof to this
* specific clawback transaction.
*
* @param account The issuer's account ID.
* @param issuanceID The MPToken Issuance ID.
* @param sequence The transaction sequence number or ticket number.
* @param holder The holder's account ID being clawed back from.
* @return A 256-bit context hash unique to this transaction.
*/
uint256
getClawbackContextHash(
AccountID const& account,
uint192 const& issuanceID,
std::uint32_t sequence,
AccountID const& holder);
/**
* @brief Generates the context hash for ConfidentialMPTConvert transactions.
*
* Creates a unique 256-bit hash that binds the Schnorr proof (for key
* registration) to this specific convert transaction.
*
* @param account The holder's account ID.
* @param issuanceID The MPToken Issuance ID.
* @param sequence The transaction sequence number or a ticket number.
* @return A 256-bit context hash unique to this transaction.
*/
uint256
getConvertContextHash(AccountID const& account, uint192 const& issuanceID, std::uint32_t sequence);
/**
* @brief Generates the context hash for ConfidentialMPTConvertBack transactions.
*
* Creates a unique 256-bit hash that binds the zero-knowledge proofs to
* this specific convert-back transaction.
*
* @param account The holder's account ID.
* @param issuanceID The MPToken Issuance ID.
* @param sequence The transaction sequence number or a ticket number.
* @param version The holder's confidential balance version.
* @return A 256-bit context hash unique to this transaction.
*/
uint256
getConvertBackContextHash(
AccountID const& account,
uint192 const& issuanceID,
std::uint32_t sequence,
std::uint32_t version);
/**
* @brief Parses an ElGamal ciphertext into two secp256k1 public key components.
*
* Breaks an encrypted amount (size=xrpl::kEcGamalEncryptedTotalLength, two
* compressed EC points of size=xrpl::kEcCiphertextComponentLength) into
* a pair containing (C1, C2) for use in cryptographic operations.
*
* @param buffer The buffer containing the compressed ciphertext
* (size=xrpl::kEcGamalEncryptedTotalLength).
* @return The parsed pair (c1, c2) if successful, std::nullopt if the buffer is invalid.
*/
std::optional<EcPair>
makeEcPair(Slice const& buffer);
/**
* @brief Serializes an EcPair into compressed form.
*
* Converts an EcPair (C1, C2) back into a buffer
* (size=xrpl::kEcGamalEncryptedTotalLength) containing two compressed EC
* points (size=xrpl::kEcCiphertextComponentLength each).
*
* @param pair The EcPair to serialize.
* @return The buffer (size=xrpl::kEcGamalEncryptedTotalLength), or std::nullopt
* if serialization fails.
*/
std::optional<Buffer>
serializeEcPair(EcPair const& pair);
/**
* @brief Verifies that a buffer contains two valid, parsable EC public keys.
*
* @param buffer The input buffer containing two concatenated components.
* @return true if both components can be parsed successfully, false otherwise.
*/
bool
isValidCiphertext(Slice const& buffer);
/**
* @brief Verifies that a buffer contains a valid, parsable compressed EC point.
*
* Can be used to validate both compressed public keys and Pedersen commitments.
* Fails early if the prefix byte is not 0x02 or 0x03.
*
* @param buffer The input buffer containing a compressed EC point
* (size=xrpl::kCompressedEcPointLength).
* @return true if the point can be parsed successfully, false otherwise.
*/
bool
isValidCompressedECPoint(Slice const& buffer);
/**
* @brief Homomorphically adds two ElGamal ciphertexts.
*
* Uses the additive homomorphic property of ElGamal encryption to compute
* Enc(a + b) from Enc(a) and Enc(b) without decryption.
*
* @param a The first ciphertext (size=xrpl::kEcGamalEncryptedTotalLength).
* @param b The second ciphertext (size=xrpl::kEcGamalEncryptedTotalLength).
* @return The resulting ciphertext Enc(a + b), or std::nullopt on failure.
*/
std::optional<Buffer>
homomorphicAdd(Slice const& a, Slice const& b);
/**
* @brief Homomorphically subtracts two ElGamal ciphertexts.
*
* Uses the additive homomorphic property of ElGamal encryption to compute
* Enc(a - b) from Enc(a) and Enc(b) without decryption.
*
* @param a The minuend ciphertext (size=xrpl::kEcGamalEncryptedTotalLength).
* @param b The subtrahend ciphertext (size=xrpl::kEcGamalEncryptedTotalLength).
* @return The resulting ciphertext Enc(a - b), or std::nullopt on failure.
*/
std::optional<Buffer>
homomorphicSubtract(Slice const& a, Slice const& b);
/**
* @brief Re-randomizes an ElGamal ciphertext without changing its plaintext.
*
* Adds Enc(0; randomness) under the supplied public key to the ciphertext.
* This is used when a public, deterministic scalar must perturb ciphertext
* randomness while preserving ledger reproducibility.
*
* @param ciphertext The ciphertext to re-randomize
* (size=xrpl::kEcGamalEncryptedTotalLength).
* @param pubKeySlice The ElGamal public key matching the ciphertext recipient.
* @param randomness The scalar used as zero-encryption randomness
* (size=xrpl::kEcScalarLength).
* @return The re-randomized ciphertext, or std::nullopt on failure.
*/
std::optional<Buffer>
rerandomizeCiphertext(Slice const& ciphertext, Slice const& pubKeySlice, Slice const& randomness);
/**
* @brief Encrypts an amount using ElGamal encryption.
*
* Produces a ciphertext C = (C1, C2) where C1 = r*G and C2 = m*G + r*Pk,
* using the provided blinding factor r.
*
* @param amt The plaintext amount to encrypt.
* @param pubKeySlice The recipient's ElGamal public key (size=xrpl::kEcPubKeyLength).
* @param blindingFactor The randomness used as blinding factor r
* (size=xrpl::ecBlindingFactorLength).
* @return The ciphertext (size=xrpl::kEcGamalEncryptedTotalLength), or std::nullopt on failure.
*/
std::optional<Buffer>
encryptAmount(uint64_t const amt, Slice const& pubKeySlice, Slice const& blindingFactor);
/**
* @brief Generates the canonical zero encryption for a specific MPToken.
*
* Creates a deterministic encryption of zero that is unique to the account
* and MPT issuance. Used to initialize confidential balance fields.
*
* @param pubKeySlice The holder's ElGamal public key (size=xrpl::kEcPubKeyLength).
* @param account The account ID of the token holder.
* @param mptId The MPToken Issuance ID.
* @return The canonical zero ciphertext (size=xrpl::kEcGamalEncryptedTotalLength), or std::nullopt
* on failure.
*/
std::optional<Buffer>
encryptCanonicalZeroAmount(Slice const& pubKeySlice, AccountID const& account, MPTID const& mptId);
/**
* @brief Verifies a Schnorr proof of knowledge of an ElGamal private key.
*
* Proves that the submitter knows the secret key corresponding to the
* provided public key, without revealing the secret key itself.
*
* @param pubKeySlice The ElGamal public key (size=xrpl::kEcPubKeyLength).
* @param proofSlice The Schnorr proof (size=xrpl::ecSchnorrProofLength).
* @param contextHash The 256-bit context hash binding the proof.
* @return tesSUCCESS if valid, or an error code otherwise.
*/
TER
verifySchnorrProof(Slice const& pubKeySlice, Slice const& proofSlice, uint256 const& contextHash);
/**
* @brief Validates the format of encrypted amount fields in a transaction.
*
* Checks that all ciphertext fields in the transaction object have the
* correct length and contain valid EC points. This function is only used
* by ConfidentialMPTConvert and ConfidentialMPTConvertBack transactions.
*
* @param object The transaction object containing encrypted amount fields.
* @return tesSUCCESS if all formats are valid, temMALFORMED if required fields
* are missing, or temBAD_CIPHERTEXT if format validation fails.
*/
NotTEC
checkEncryptedAmountFormat(STObject const& object);
/**
* @brief Verifies revealed amount encryptions for all recipients.
*
* Validates that the same amount was correctly encrypted for the holder,
* issuer, and optionally the auditor using their respective public keys.
*
* @param amount The revealed plaintext amount.
* @param blindingFactor The blinding factor used in all encryptions
* (size=xrpl::ecBlindingFactorLength).
* @param holder The holder's public key and encrypted amount.
* @param issuer The issuer's public key and encrypted amount.
* @param auditor Optional auditor's public key and encrypted amount.
* @return tesSUCCESS if all encryptions are valid, or an error code otherwise.
*/
TER
verifyRevealedAmount(
uint64_t const amount,
Slice const& blindingFactor,
ConfidentialRecipient const& holder,
ConfidentialRecipient const& issuer,
std::optional<ConfidentialRecipient> const& auditor);
/**
* @brief Returns the number of recipients in a confidential transfer.
*
* Returns 4 if an auditor is present (sender, destination, issuer, auditor),
* or 3 if no auditor (sender, destination, issuer).
*
* @param hasAuditor Whether the issuance has an auditor configured.
* @return The number of recipients (3 or 4).
*/
constexpr uint8_t
getConfidentialRecipientCount(bool hasAuditor)
{
return hasAuditor ? 4 : 3;
}
/**
* @brief Verifies a compact sigma clawback proof.
*
* Proves that the issuer knows the exact amount encrypted in the holder's
* balance ciphertext. Used in ConfidentialMPTClawback to verify the issuer
* can decrypt the balance using their private key.
*
* @param amount The revealed plaintext amount.
* @param proof The zero-knowledge proof bytes (ecClawbackProofLength).
* @param pubKeySlice The issuer's ElGamal public key (kEcPubKeyLength bytes).
* @param ciphertext The issuer's encrypted balance on the holder's account
* (kEcGamalEncryptedTotalLength bytes).
* @param contextHash The 256-bit context hash binding the proof.
* @return tesSUCCESS if the proof is valid, or an error code otherwise.
*/
TER
verifyClawbackProof(
uint64_t const amount,
Slice const& proof,
Slice const& pubKeySlice,
Slice const& ciphertext,
uint256 const& contextHash);
/**
* @brief Generates a cryptographically secure blinding factor
* (size=xrpl::kEcBlindingFactorLength).
*
* Produces random bytes suitable for use as an ElGamal blinding factor
* or Pedersen commitment randomness.
*
* @return A buffer containing the random blinding factor
* (size=xrpl::kEcBlindingFactorLength).
*/
Buffer
generateBlindingFactor();
/**
* @brief Verifies all zero-knowledge proofs for a ConfidentialMPTSend transaction.
*
* This function calls mpt_verify_send_proof API in the mpt-crypto utility lib, which verifies the
* equality proof, amount linkage, balance linkage, and range proof.
* Equality proof: Proves the same value is encrypted for the sender, receiver, issuer, and auditor.
* Amount linkage: Proves the send amount matches the amount Pedersen commitment.
* Balance linkage: Proves the sender's balance matches the balance Pedersen
* commitment.
* Range proof: Proves the amount and the remaining balance are within range [0, 2^64-1].
*
* @param proof The full proof blob.
* @param sender The sender's public key and encrypted amount.
* @param destination The destination's public key and encrypted amount.
* @param issuer The issuer's public key and encrypted amount.
* @param auditor The auditor's public key and encrypted amount if present.
* @param spendingBalance The sender's current spending balance ciphertext.
* @param amountCommitment The Pedersen commitment to the send amount.
* @param balanceCommitment The Pedersen commitment to the sender's balance.
* @param contextHash The context hash binding the proof.
* @return tesSUCCESS if all proofs are valid, or an error code otherwise.
*/
TER
verifySendProof(
Slice const& proof,
ConfidentialRecipient const& sender,
ConfidentialRecipient const& destination,
ConfidentialRecipient const& issuer,
std::optional<ConfidentialRecipient> const& auditor,
Slice const& spendingBalance,
Slice const& amountCommitment,
Slice const& balanceCommitment,
uint256 const& contextHash);
/**
* @brief Verifies all zero-knowledge proofs for a ConfidentialMPTConvertBack transaction.
*
* This function calls mpt_verify_convert_back_proof API in the mpt-crypto utility lib, which
* verifies the balance linkage proof and range proof. Balance linkage proof: proves the balance
* commitment matches the spending ciphertext. Range proof: proves the remaining balance after
* convert back is within range [0, 2^64-1].
*
* @param proof The full proof blob.
* @param pubKeySlice The holder's public key.
* @param spendingBalance The holder's spending balance ciphertext.
* @param balanceCommitment The Pedersen commitment to the balance.
* @param amount The amount being converted back to public.
* @param contextHash The context hash binding the proof.
* @return tesSUCCESS if all proofs are valid, or an error code otherwise.
*/
TER
verifyConvertBackProof(
Slice const& proof,
Slice const& pubKeySlice,
Slice const& spendingBalance,
Slice const& balanceCommitment,
uint64_t amount,
uint256 const& contextHash);
} // namespace xrpl

View File

@@ -68,21 +68,15 @@ skip(LedgerIndex ledger) noexcept;
/** The (fixed) index of the object containing the ledger fees. */
Keylet const&
fees() noexcept;
feeSettings() noexcept;
/** The (fixed) index of the object containing the ledger negativeUNL. */
Keylet const&
negativeUNL() noexcept;
/** The beginning of an order book */
struct BookT
{
explicit BookT() = default;
Keylet
operator()(Book const& b) const;
};
static BookT const kBook{};
Keylet
book(Book const& b);
/** The index of a trust line for a given currency
@@ -93,12 +87,12 @@ static BookT const kBook{};
*/
/** @{ */
Keylet
line(AccountID const& id0, AccountID const& id1, Currency const& currency) noexcept;
trustLine(AccountID const& id0, AccountID const& id1, Currency const& currency) noexcept;
inline Keylet
line(AccountID const& id, Issue const& issue) noexcept
trustLine(AccountID const& id, Issue const& issue) noexcept
{
return line(id, issue.account, issue.currency);
return trustLine(id, issue.account, issue.currency);
}
/** @} */
@@ -119,37 +113,27 @@ Keylet
quality(Keylet const& k, std::uint64_t q) noexcept;
/** The directory for the next lower quality */
struct NextT
{
explicit NextT() = default;
Keylet
operator()(Keylet const& k) const;
};
static NextT const kNext{};
Keylet
next(Keylet const& k);
/** A ticket belonging to an account */
struct TicketT
/** @{ */
Keylet
ticket(AccountID const& id, std::uint32_t ticketSeq);
Keylet
ticket(AccountID const& id, SeqProxy ticketSeq);
inline Keylet
ticket(uint256 const& key)
{
explicit TicketT() = default;
Keylet
operator()(AccountID const& id, std::uint32_t ticketSeq) const;
Keylet
operator()(AccountID const& id, SeqProxy ticketSeq) const;
Keylet
operator()(uint256 const& key) const
{
return {ltTICKET, key};
}
};
static TicketT const kTicket{};
return {ltTICKET, key};
}
/** @} */
/** A SignerList */
Keylet
signers(AccountID const& account) noexcept;
signerList(AccountID const& account) noexcept;
/** A Check */
/** @{ */
@@ -209,7 +193,7 @@ escrow(AccountID const& src, std::uint32_t seq) noexcept;
/** A PaymentChannel */
Keylet
payChan(AccountID const& src, AccountID const& dst, std::uint32_t seq) noexcept;
payChannel(AccountID const& src, AccountID const& dst, std::uint32_t seq) noexcept;
/** NFT page keylets
@@ -221,22 +205,22 @@ payChan(AccountID const& src, AccountID const& dst, std::uint32_t seq) noexcept;
/** @{ */
/** A keylet for the owner's first possible NFT page. */
Keylet
nftpageMin(AccountID const& owner);
nftokenPageMin(AccountID const& owner);
/** A keylet for the owner's last possible NFT page. */
Keylet
nftpageMax(AccountID const& owner);
nftokenPageMax(AccountID const& owner);
Keylet
nftpage(Keylet const& k, uint256 const& token);
nftokenPage(Keylet const& k, uint256 const& token);
/** @} */
/** An offer from an account to buy or sell an NFT */
Keylet
nftoffer(AccountID const& owner, std::uint32_t seq);
nftokenOffer(AccountID const& owner, std::uint32_t seq);
inline Keylet
nftoffer(uint256 const& offer)
nftokenOffer(uint256 const& offer)
{
return {ltNFTOKEN_OFFER, offer};
}
@@ -287,13 +271,13 @@ credential(uint256 const& key) noexcept
}
Keylet
mptIssuance(std::uint32_t seq, AccountID const& issuer) noexcept;
mptokenIssuance(std::uint32_t seq, AccountID const& issuer) noexcept;
Keylet
mptIssuance(MPTID const& issuanceID) noexcept;
mptokenIssuance(MPTID const& issuanceID) noexcept;
inline Keylet
mptIssuance(uint256 const& issuanceKey)
mptokenIssuance(uint256 const& issuanceKey)
{
return {ltMPTOKEN_ISSUANCE, issuanceKey};
}
@@ -320,10 +304,10 @@ vault(uint256 const& vaultKey)
}
Keylet
loanbroker(AccountID const& owner, std::uint32_t seq) noexcept;
loanBroker(AccountID const& owner, std::uint32_t seq) noexcept;
inline Keylet
loanbroker(uint256 const& key)
loanBroker(uint256 const& key)
{
return {ltLOAN_BROKER, key};
}
@@ -376,11 +360,15 @@ struct KeyletDesc
std::array<KeyletDesc<AccountID const&>, 6> const kDirectAccountKeylets{
{{.function = &keylet::account, .expectedLEName = jss::AccountRoot, .includeInTests = false},
{.function = &keylet::ownerDir, .expectedLEName = jss::DirectoryNode, .includeInTests = true},
{.function = &keylet::signers, .expectedLEName = jss::SignerList, .includeInTests = true},
{.function = &keylet::signerList, .expectedLEName = jss::SignerList, .includeInTests = true},
// It's normally impossible to create an item at nftpage_min, but
// test it anyway, since the invariant checks for it.
{.function = &keylet::nftpageMin, .expectedLEName = jss::NFTokenPage, .includeInTests = true},
{.function = &keylet::nftpageMax, .expectedLEName = jss::NFTokenPage, .includeInTests = true},
{.function = &keylet::nftokenPageMin,
.expectedLEName = jss::NFTokenPage,
.includeInTests = true},
{.function = &keylet::nftokenPageMax,
.expectedLEName = jss::NFTokenPage,
.includeInTests = true},
{.function = &keylet::did, .expectedLEName = jss::DID, .includeInTests = true}}};
MPTID

View File

@@ -177,7 +177,8 @@ enum LedgerEntryType : std::uint16_t {
LSF_FLAG(lsfMPTCanEscrow, 0x00000008) \
LSF_FLAG(lsfMPTCanTrade, 0x00000010) \
LSF_FLAG(lsfMPTCanTransfer, 0x00000020) \
LSF_FLAG(lsfMPTCanClawback, 0x00000040)) \
LSF_FLAG(lsfMPTCanClawback, 0x00000040) \
LSF_FLAG(lsfMPTCanHoldConfidentialBalance, 0x00000080)) \
\
LEDGER_OBJECT(MPTokenIssuanceMutable, \
LSF_FLAG(lsmfMPTCanEnableCanLock, 0x00000002) \
@@ -186,8 +187,9 @@ enum LedgerEntryType : std::uint16_t {
LSF_FLAG(lsmfMPTCanEnableCanTrade, 0x00000010) \
LSF_FLAG(lsmfMPTCanEnableCanTransfer, 0x00000020) \
LSF_FLAG(lsmfMPTCanEnableCanClawback, 0x00000040) \
LSF_FLAG(lsmfMPTCannotEnableCanHoldConfidentialBalance, 0x00000080) \
LSF_FLAG(lsmfMPTCanMutateMetadata, 0x00010000) \
LSF_FLAG(lsmfMPTCanMutateTransferFee, 0x00020000)) \
LSF_FLAG(lsmfMPTCanMutateTransferFee, 0x00020000)) \
\
LEDGER_OBJECT(MPToken, \
LSF_FLAG2(lsfMPTLocked, 0x00000001) \

View File

@@ -106,7 +106,7 @@ public:
txToPermissionType(TxType type);
// tx type value is permission value minus one
[[nodiscard]] static TxType
[[nodiscard]] static std::optional<TxType>
permissionToTxType(std::uint32_t value);
/**

View File

@@ -4,6 +4,10 @@
#include <xrpl/basics/base_uint.h>
#include <xrpl/protocol/Units.h>
#include <mpt_protocol.h>
#include <secp256k1_mpt.h>
#include <cstddef>
#include <cstdint>
namespace xrpl {
@@ -307,4 +311,62 @@ constexpr std::size_t kPermissionMaxSize = 10;
/** The maximum number of transactions that can be in a batch. */
constexpr std::size_t kMaxBatchTxCount = 8;
/** Length of a secp256k1 scalar in bytes. */
constexpr std::size_t kEcScalarLength = kMPT_SCALAR_SIZE;
/** Length of EC point (compressed) */
constexpr std::size_t kCompressedEcPointLength = 33;
/** Length of one compressed EC point component in an EC ElGamal ciphertext. */
constexpr std::size_t kEcCiphertextComponentLength = kMPT_ELGAMAL_CIPHER_SIZE;
/** EC ElGamal ciphertext length: two compressed EC points concatenated. */
constexpr std::size_t kEcGamalEncryptedTotalLength = kMPT_ELGAMAL_TOTAL_SIZE;
/** Length of EC public key (compressed) */
constexpr std::size_t kEcPubKeyLength = kMPT_PUBKEY_SIZE;
/** Length of EC private key in bytes */
constexpr std::size_t kEcPrivKeyLength = kMPT_PRIVKEY_SIZE;
/** Length of the EC blinding factor in bytes */
constexpr std::size_t kEcBlindingFactorLength = kMPT_BLINDING_FACTOR_SIZE;
/** Length of Schnorr ZKProof for public key registration (compact form) in bytes */
constexpr std::size_t kEcSchnorrProofLength = kMPT_SCHNORR_PROOF_SIZE;
/** Length of Pedersen Commitment (compressed) */
constexpr std::size_t kEcPedersenCommitmentLength = kMPT_PEDERSEN_COMMIT_SIZE;
/** Length of single bulletproof (range proof for 1 commitment) in bytes */
constexpr std::size_t kEcSingleBulletproofLength = kMPT_SINGLE_BULLETPROOF_SIZE;
/** Length of double bulletproof (range proof for 2 commitments) in bytes */
constexpr std::size_t kEcDoubleBulletproofLength = kMPT_DOUBLE_BULLETPROOF_SIZE;
/** Length of the compact sigma proof component for ConfidentialMPTSend. */
constexpr std::size_t kEcSendSigmaProofLength = SECP256K1_COMPACT_STANDARD_PROOF_SIZE;
/** 192 bytes compact sigma proof + 754 bytes double bulletproof. */
constexpr std::size_t kEcSendProofLength = kEcSendSigmaProofLength + kEcDoubleBulletproofLength;
/** Length of the compact sigma proof component for ConfidentialMPTConvertBack. */
constexpr std::size_t kEcConvertBackSigmaProofLength = SECP256K1_COMPACT_CONVERTBACK_PROOF_SIZE;
/** 128 bytes compact sigma proof + 688 bytes single bulletproof. */
constexpr std::size_t kEcConvertBackProofLength =
kEcConvertBackSigmaProofLength + kEcSingleBulletproofLength;
/** Length of the ZKProof for ConfidentialMPTClawback. */
constexpr std::size_t kEcClawbackProofLength = SECP256K1_COMPACT_CLAWBACK_PROOF_SIZE;
/** Extra base fee multiplier charged to confidential MPT transactions. */
constexpr std::uint32_t kConfidentialFeeMultiplier = 9;
/** Compressed EC point prefix for even y-coordinate */
constexpr std::uint8_t kEcCompressedPrefixEvenY = 0x02;
/** Compressed EC point prefix for odd y-coordinate */
constexpr std::uint8_t kEcCompressedPrefixOddY = 0x03;
} // namespace xrpl

View File

@@ -128,6 +128,7 @@ enum TEMcodes : TERUnderlyingType {
temBAD_TRANSFER_FEE,
temINVALID_INNER_BATCH,
temBAD_MPT,
temBAD_CIPHERTEXT,
};
//------------------------------------------------------------------------------
@@ -358,6 +359,11 @@ enum TECcodes : TERUnderlyingType {
tecLIMIT_EXCEEDED = 195,
tecPSEUDO_ACCOUNT = 196,
tecPRECISION_LOSS = 197,
// DEPRECATED: This error code tecNO_DELEGATE_PERMISSION is reserved for
// backward compatibility with historical data on non-prod networks, can be
// reclaimed after those networks reset.
tecNO_DELEGATE_PERMISSION = 198,
tecBAD_PROOF = 199,
};
//------------------------------------------------------------------------------

View File

@@ -140,7 +140,8 @@ inline constexpr FlagValue tfUniversalMask = ~tfUniversal;
TF_FLAG(tfMPTCanEscrow, lsfMPTCanEscrow) \
TF_FLAG(tfMPTCanTrade, lsfMPTCanTrade) \
TF_FLAG(tfMPTCanTransfer, lsfMPTCanTransfer) \
TF_FLAG(tfMPTCanClawback, lsfMPTCanClawback), \
TF_FLAG(tfMPTCanClawback, lsfMPTCanClawback) \
TF_FLAG(tfMPTCanHoldConfidentialBalance, lsfMPTCanHoldConfidentialBalance), \
MASK_ADJ(0)) \
\
TRANSACTION(MPTokenAuthorize, \
@@ -349,10 +350,13 @@ inline constexpr FlagValue tmfMPTCanEnableCanTransfer = lsmfMPTCanEnableCanTrans
inline constexpr FlagValue tmfMPTCanEnableCanClawback = lsmfMPTCanEnableCanClawback;
inline constexpr FlagValue tmfMPTCanMutateMetadata = lsmfMPTCanMutateMetadata;
inline constexpr FlagValue tmfMPTCanMutateTransferFee = lsmfMPTCanMutateTransferFee;
inline constexpr FlagValue tmfMPTCannotEnableCanHoldConfidentialBalance =
lsmfMPTCannotEnableCanHoldConfidentialBalance;
inline constexpr FlagValue tmfMPTokenIssuanceCreateMutableMask =
~(tmfMPTCanEnableCanLock | tmfMPTCanEnableRequireAuth | tmfMPTCanEnableCanEscrow |
tmfMPTCanEnableCanTrade | tmfMPTCanEnableCanTransfer | tmfMPTCanEnableCanClawback |
tmfMPTCanMutateMetadata | tmfMPTCanMutateTransferFee);
tmfMPTCanMutateMetadata | tmfMPTCanMutateTransferFee |
tmfMPTCannotEnableCanHoldConfidentialBalance);
// MPTokenIssuanceSet MutableFlags:
// Enable mutable capability flags. These flags are one-way: once enabled,
@@ -364,9 +368,10 @@ inline constexpr FlagValue tmfMPTSetCanEscrow = 0x00000004;
inline constexpr FlagValue tmfMPTSetCanTrade = 0x00000008;
inline constexpr FlagValue tmfMPTSetCanTransfer = 0x00000010;
inline constexpr FlagValue tmfMPTSetCanClawback = 0x00000020;
inline constexpr FlagValue tmfMPTSetCanHoldConfidentialBalance = 0x00000040;
inline constexpr FlagValue tmfMPTokenIssuanceSetMutableMask =
~(tmfMPTSetCanLock | tmfMPTSetRequireAuth | tmfMPTSetCanEscrow | tmfMPTSetCanTrade |
tmfMPTSetCanTransfer | tmfMPTSetCanClawback);
tmfMPTSetCanTransfer | tmfMPTSetCanClawback | tmfMPTSetCanHoldConfidentialBalance);
// Prior to fixRemoveNFTokenAutoTrustLine, transfer of an NFToken between accounts allowed a
// TrustLine to be added to the issuer of that token without explicit permission from that issuer.

View File

@@ -14,7 +14,7 @@
// Add new amendments to the top of this list.
// Keep it sorted in reverse chronological order.
XRPL_FEATURE(ConfidentialTransfer, Supported::No, VoteBehavior::DefaultNo)
XRPL_FIX (Cleanup3_3_0, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FIX (Cleanup3_2_0, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(MPTokensV2, Supported::No, VoteBehavior::DefaultNo)
@@ -58,13 +58,11 @@ XRPL_FIX (EmptyDID, Supported::Yes, VoteBehavior::DefaultNo
XRPL_FEATURE(PriceOracle, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FIX (AMMOverflowOffer, Supported::Yes, VoteBehavior::DefaultYes)
XRPL_FIX (InnerObjTemplate, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FIX (NFTokenReserve, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FIX (FillOrKill, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(DID, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FIX (DisallowIncomingV1, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(XChainBridge, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(AMM, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(Clawback, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(XRPFees, Supported::Yes, VoteBehavior::DefaultNo)
XRPL_FIX (RemoveNFTokenAutoTrustLine, Supported::Yes, VoteBehavior::DefaultYes)
@@ -105,6 +103,7 @@ XRPL_RETIRE_FIX(CheckThreading)
XRPL_RETIRE_FIX(MasterKeyAsRegularKey)
XRPL_RETIRE_FIX(NonFungibleTokensV1_2)
XRPL_RETIRE_FIX(NFTokenRemint)
XRPL_RETIRE_FIX(NFTokenReserve)
XRPL_RETIRE_FIX(PayChanRecipientOwnerDir)
XRPL_RETIRE_FIX(QualityUpperBound)
XRPL_RETIRE_FIX(ReducedOffersV1)
@@ -116,6 +115,7 @@ XRPL_RETIRE_FIX(UniversalNumber)
XRPL_RETIRE_FEATURE(Checks)
XRPL_RETIRE_FEATURE(CheckCashMakesTrustLine)
XRPL_RETIRE_FEATURE(Clawback)
XRPL_RETIRE_FEATURE(CryptoConditions)
XRPL_RETIRE_FEATURE(CryptoConditionsSuite)
XRPL_RETIRE_FEATURE(DeletableAccounts)

View File

@@ -21,7 +21,7 @@
/** A ledger object which identifies an offer to buy or sell an NFT.
\sa keylet::nftoffer
\sa keylet::nftokenOffer
*/
LEDGER_ENTRY(ltNFTOKEN_OFFER, 0x0037, NFTokenOffer, nft_offer, ({
{sfOwner, SoeRequired},
@@ -84,7 +84,7 @@ LEDGER_ENTRY(ltNEGATIVE_UNL, 0x004e, NegativeUNL, nunl, ({
/** A ledger object which contains a list of NFTs
\sa keylet::nftpageMin, keylet::nftpageMax, keylet::nftpage
\sa keylet::nftokenPageMin, keylet::nftokenPageMax, keylet::nftokenPage
*/
LEDGER_ENTRY(ltNFTOKEN_PAGE, 0x0050, NFTokenPage, nft_page, ({
{sfPreviousPageMin, SoeOptional},
@@ -96,7 +96,7 @@ LEDGER_ENTRY(ltNFTOKEN_PAGE, 0x0050, NFTokenPage, nft_page, ({
/** A ledger object which contains a signer list for an account.
\sa keylet::signers
\sa keylet::signerList
*/
// All fields are SoeRequired because there is always a SignerEntries.
// If there are no SignerEntries the node is deleted.
@@ -112,7 +112,7 @@ LEDGER_ENTRY(ltSIGNER_LIST, 0x0053, SignerList, signer_list, ({
/** A ledger object which describes a ticket.
\sa keylet::kTicket
\sa keylet::ticket
*/
LEDGER_ENTRY(ltTICKET, 0x0054, Ticket, ticket, ({
{sfAccount, SoeRequired},
@@ -272,7 +272,7 @@ LEDGER_ENTRY(ltXCHAIN_OWNED_CLAIM_ID, 0x0071, XChainOwnedClaimID, xchain_owned_c
@note Per Vinnie Falco this should be renamed to ltTRUST_LINE
\sa keylet::line
\sa keylet::trustLine
*/
LEDGER_ENTRY(ltRIPPLE_STATE, 0x0072, RippleState, state, ({
{sfBalance, SoeRequired},
@@ -292,7 +292,7 @@ LEDGER_ENTRY(ltRIPPLE_STATE, 0x0072, RippleState, state, ({
\note This is a singleton: only one such object exists in the ledger.
\sa keylet::fees
\sa keylet::feeSettings
*/
LEDGER_ENTRY(ltFEE_SETTINGS, 0x0073, FeeSettings, fee, ({
// Old version uses raw numbers
@@ -346,7 +346,7 @@ LEDGER_ENTRY(ltESCROW, 0x0075, Escrow, escrow, ({
/** A ledger object describing a single unidirectional XRP payment channel.
\sa keylet::payChan
\sa keylet::payChannel
*/
LEDGER_ENTRY(ltPAYCHAN, 0x0078, PayChannel, payment_channel, ({
{sfAccount, SoeRequired},
@@ -384,7 +384,7 @@ LEDGER_ENTRY(ltAMM, 0x0079, AMM, amm, ({
}))
/** A ledger object which tracks MPTokenIssuance
\sa keylet::mptIssuance
\sa keylet::mptokenIssuance
*/
LEDGER_ENTRY(ltMPTOKEN_ISSUANCE, 0x007e, MPTokenIssuance, mpt_issuance, ({
{sfIssuer, SoeRequired},
@@ -401,19 +401,28 @@ LEDGER_ENTRY(ltMPTOKEN_ISSUANCE, 0x007e, MPTokenIssuance, mpt_issuance, ({
{sfDomainID, SoeOptional},
{sfMutableFlags, SoeDefault},
{sfReferenceHolding, SoeOptional},
{sfIssuerEncryptionKey, SoeOptional},
{sfAuditorEncryptionKey, SoeOptional},
{sfConfidentialOutstandingAmount, SoeDefault},
}))
/** A ledger object which tracks MPToken
\sa keylet::mptoken
*/
LEDGER_ENTRY(ltMPTOKEN, 0x007f, MPToken, mptoken, ({
{sfAccount, SoeRequired},
{sfMPTokenIssuanceID, SoeRequired},
{sfMPTAmount, SoeDefault},
{sfLockedAmount, SoeOptional},
{sfOwnerNode, SoeRequired},
{sfPreviousTxnID, SoeRequired},
{sfPreviousTxnLgrSeq, SoeRequired},
{sfAccount, SoeRequired},
{sfMPTokenIssuanceID, SoeRequired},
{sfMPTAmount, SoeDefault},
{sfLockedAmount, SoeOptional},
{sfOwnerNode, SoeRequired},
{sfPreviousTxnID, SoeRequired},
{sfPreviousTxnLgrSeq, SoeRequired},
{sfConfidentialBalanceInbox, SoeOptional},
{sfConfidentialBalanceSpending, SoeOptional},
{sfConfidentialBalanceVersion, SoeDefault},
{sfIssuerEncryptedBalance, SoeOptional},
{sfAuditorEncryptedBalance, SoeOptional},
{sfHolderEncryptionKey, SoeOptional},
}))
/** A ledger object which tracks Oracle
@@ -499,7 +508,7 @@ LEDGER_ENTRY(ltVAULT, 0x0084, Vault, vault, ({
/** A ledger object representing a loan broker
\sa keylet::loanbroker
\sa keylet::loanBroker
*/
LEDGER_ENTRY(ltLOAN_BROKER, 0x0088, LoanBroker, loan_broker, ({
{sfPreviousTxnID, SoeRequired},

View File

@@ -11,7 +11,10 @@ secp256k1Context()
struct Holder
{
secp256k1_context* impl;
Holder() : impl(secp256k1_context_create(SECP256K1_CONTEXT_VERIFY | SECP256K1_CONTEXT_SIGN))
// SECP256K1_CONTEXT_SIGN and SECP256K1_CONTEXT_VERIFY were deprecated.
// All contexts support both signing and verification, so
// SECP256K1_CONTEXT_NONE is the correct flag to use.
Holder() : impl(secp256k1_context_create(SECP256K1_CONTEXT_NONE))
{
}

View File

@@ -113,6 +113,7 @@ TYPED_SFIELD(sfInterestRate, UINT32, 65) // 1/10 basis points (bi
TYPED_SFIELD(sfLateInterestRate, UINT32, 66) // 1/10 basis points (bips)
TYPED_SFIELD(sfCloseInterestRate, UINT32, 67) // 1/10 basis points (bips)
TYPED_SFIELD(sfOverpaymentInterestRate, UINT32, 68) // 1/10 basis points (bips)
TYPED_SFIELD(sfConfidentialBalanceVersion, UINT32, 69)
// 64-bit integers (common)
TYPED_SFIELD(sfIndexNext, UINT64, 1)
@@ -146,6 +147,7 @@ TYPED_SFIELD(sfSubjectNode, UINT64, 28)
TYPED_SFIELD(sfLockedAmount, UINT64, 29, SField::kSmdBaseTen|SField::kSmdDefault)
TYPED_SFIELD(sfVaultNode, UINT64, 30)
TYPED_SFIELD(sfLoanBrokerNode, UINT64, 31)
TYPED_SFIELD(sfConfidentialOutstandingAmount, UINT64, 32, SField::kSmdBaseTen|SField::kSmdDefault)
// 128-bit
TYPED_SFIELD(sfEmailHash, UINT128, 1)
@@ -206,6 +208,7 @@ TYPED_SFIELD(sfLoanBrokerID, UINT256, 37,
SField::kSmdPseudoAccount | SField::kSmdDefault)
TYPED_SFIELD(sfLoanID, UINT256, 38)
TYPED_SFIELD(sfReferenceHolding, UINT256, 39)
TYPED_SFIELD(sfBlindingFactor, UINT256, 40)
// number (common)
TYPED_SFIELD(sfNumber, NUMBER, 1)
@@ -299,6 +302,21 @@ TYPED_SFIELD(sfAssetClass, VL, 28)
TYPED_SFIELD(sfProvider, VL, 29)
TYPED_SFIELD(sfMPTokenMetadata, VL, 30)
TYPED_SFIELD(sfCredentialType, VL, 31)
TYPED_SFIELD(sfConfidentialBalanceInbox, VL, 32)
TYPED_SFIELD(sfConfidentialBalanceSpending, VL, 33)
TYPED_SFIELD(sfIssuerEncryptedBalance, VL, 34)
TYPED_SFIELD(sfIssuerEncryptionKey, VL, 35)
TYPED_SFIELD(sfHolderEncryptionKey, VL, 36)
TYPED_SFIELD(sfZKProof, VL, 37)
TYPED_SFIELD(sfHolderEncryptedAmount, VL, 38)
TYPED_SFIELD(sfIssuerEncryptedAmount, VL, 39)
TYPED_SFIELD(sfSenderEncryptedAmount, VL, 40)
TYPED_SFIELD(sfDestinationEncryptedAmount, VL, 41)
TYPED_SFIELD(sfAuditorEncryptedBalance, VL, 42)
TYPED_SFIELD(sfAuditorEncryptedAmount, VL, 43)
TYPED_SFIELD(sfAuditorEncryptionKey, VL, 44)
TYPED_SFIELD(sfAmountCommitment, VL, 45)
TYPED_SFIELD(sfBalanceCommitment, VL, 46)
// account (common)
TYPED_SFIELD(sfAccount, ACCOUNT, 1)

View File

@@ -58,7 +58,6 @@ public:
case TokenCodecErrc::InvalidEncodingChar:
return "invalid encoding char";
case TokenCodecErrc::Unknown:
return "unknown";
default:
return "unknown";
}

View File

@@ -395,7 +395,7 @@ TRANSACTION(ttNFTOKEN_ACCEPT_OFFER, 29, NFTokenAcceptOffer,
#endif
TRANSACTION(ttCLAWBACK, 30, Clawback,
Delegation::Delegable,
featureClawback,
uint256{},
NoPriv,
({
{sfAmount, SoeRequired, SoeMptSupported},
@@ -735,6 +735,8 @@ TRANSACTION(ttMPTOKEN_ISSUANCE_SET, 56, MPTokenIssuanceSet,
{sfMPTokenMetadata, SoeOptional},
{sfTransferFee, SoeOptional},
{sfMutableFlags, SoeOptional},
{sfIssuerEncryptionKey, SoeOptional},
{sfAuditorEncryptionKey, SoeOptional},
}))
/** This transaction type authorizes a MPToken instance */
@@ -1077,6 +1079,91 @@ TRANSACTION(ttLOAN_PAY, 84, LoanPay,
{sfAmount, SoeRequired, SoeMptSupported},
}))
/** This transaction type converts into confidential MPT balance. */
#if TRANSACTION_INCLUDE
# include <xrpl/tx/transactors/token/ConfidentialMPTConvert.h>
#endif
TRANSACTION(ttCONFIDENTIAL_MPT_CONVERT, 85, ConfidentialMPTConvert,
Delegation::Delegable,
featureConfidentialTransfer,
NoPriv,
({
{sfMPTokenIssuanceID, SoeRequired},
{sfMPTAmount, SoeRequired},
{sfHolderEncryptionKey, SoeOptional},
{sfHolderEncryptedAmount, SoeRequired},
{sfIssuerEncryptedAmount, SoeRequired},
{sfAuditorEncryptedAmount, SoeOptional},
{sfBlindingFactor, SoeRequired},
{sfZKProof, SoeOptional},
}))
/** This transaction type merges MPT inbox. */
#if TRANSACTION_INCLUDE
# include <xrpl/tx/transactors/token/ConfidentialMPTMergeInbox.h>
#endif
TRANSACTION(ttCONFIDENTIAL_MPT_MERGE_INBOX, 86, ConfidentialMPTMergeInbox,
Delegation::Delegable,
featureConfidentialTransfer,
NoPriv,
({
{sfMPTokenIssuanceID, SoeRequired},
}))
/** This transaction type converts back into public MPT balance. */
#if TRANSACTION_INCLUDE
# include <xrpl/tx/transactors/token/ConfidentialMPTConvertBack.h>
#endif
TRANSACTION(ttCONFIDENTIAL_MPT_CONVERT_BACK, 87, ConfidentialMPTConvertBack,
Delegation::Delegable,
featureConfidentialTransfer,
NoPriv,
({
{sfMPTokenIssuanceID, SoeRequired},
{sfMPTAmount, SoeRequired},
{sfHolderEncryptedAmount, SoeRequired},
{sfIssuerEncryptedAmount, SoeRequired},
{sfAuditorEncryptedAmount, SoeOptional},
{sfBlindingFactor, SoeRequired},
{sfZKProof, SoeRequired},
{sfBalanceCommitment, SoeRequired},
}))
#if TRANSACTION_INCLUDE
# include <xrpl/tx/transactors/token/ConfidentialMPTSend.h>
#endif
TRANSACTION(ttCONFIDENTIAL_MPT_SEND, 88, ConfidentialMPTSend,
Delegation::Delegable,
featureConfidentialTransfer,
NoPriv,
({
{sfMPTokenIssuanceID, SoeRequired},
{sfDestination, SoeRequired},
{sfDestinationTag, SoeOptional},
{sfSenderEncryptedAmount, SoeRequired},
{sfDestinationEncryptedAmount, SoeRequired},
{sfIssuerEncryptedAmount, SoeRequired},
{sfAuditorEncryptedAmount, SoeOptional},
{sfZKProof, SoeRequired},
{sfAmountCommitment, SoeRequired},
{sfBalanceCommitment, SoeRequired},
{sfCredentialIDs, SoeOptional},
}))
#if TRANSACTION_INCLUDE
# include <xrpl/tx/transactors/token/ConfidentialMPTClawback.h>
#endif
TRANSACTION(ttCONFIDENTIAL_MPT_CLAWBACK, 89, ConfidentialMPTClawback,
Delegation::Delegable,
featureConfidentialTransfer,
NoPriv,
({
{sfMPTokenIssuanceID, SoeRequired},
{sfHolder, SoeRequired},
{sfMPTAmount, SoeRequired},
{sfZKProof, SoeRequired},
}))
/** This system-generated transaction type is used to update the status of the various amendments.
For details, see: https://xrpl.org/amendments.html

View File

@@ -137,6 +137,7 @@ JSS(authorized_credentials); // in: ledger_entry DepositPreauth
JSS(auth_accounts); // out: amm_info
JSS(auth_change); // out: AccountInfo
JSS(auth_change_queued); // out: AccountInfo
JSS(auditor_encrypted_balance); // out: mpt_holders (confidential MPT)
JSS(available); // out: ValidatorList
JSS(avg_bps_recv); // out: Peers
JSS(avg_bps_sent); // out: Peers
@@ -161,9 +162,6 @@ JSS(build_path); // in: TransactionSign
JSS(build_version); // out: NetworkOPs
JSS(cancel_after); // out: AccountChannels
JSS(can_delete); // out: CanDelete
JSS(mpt_amount); // out: mpt_holders
JSS(mpt_issuance_id); // in: Payment, mpt_holders
JSS(mptoken_index); // out: mpt_holders
JSS(changes); // out: BookChanges
JSS(channel_id); // out: AccountChannels
JSS(channels); // out: AccountChannels
@@ -185,165 +183,170 @@ JSS(command); // in: RPCHandler
JSS(common); // out: RPC server_definitions
JSS(complete); // out: NetworkOPs, InboundLedger
JSS(complete_ledgers); // out: NetworkOPs, PeerImp
JSS(consensus); // out: NetworkOPs, LedgerConsensus
JSS(converge_time); // out: NetworkOPs
JSS(converge_time_s); // out: NetworkOPs
JSS(cookie); // out: NetworkOPs
JSS(count); // in: AccountTx*, ValidatorList
JSS(counters); // in/out: retrieve counters
JSS(credentials); // in: deposit_authorized
JSS(credential_type); // in: LedgerEntry DepositPreauth
JSS(ctid); // in/out: Tx RPC
JSS(currency_a); // out: BookChanges
JSS(currency_b); // out: BookChanges
JSS(currency); // in: paths/PathRequest, STAmount
// out: STPathSet, STAmount, AccountLines
JSS(current); // out: OwnerInfo
JSS(current_activities); //
JSS(current_ledger_size); // out: TxQ
JSS(current_queue_size); // out: TxQ
JSS(data); // out: LedgerData
JSS(date); // out: tx/Transaction, NetworkOPs
JSS(dbKBLedger); // out: getCounts
JSS(dbKBTotal); // out: getCounts
JSS(dbKBTransaction); // out: getCounts
JSS(debug_signing); // in: TransactionSign
JSS(deletion_blockers_only); // in: AccountObjects
JSS(delivered_amount); // out: insertDeliveredAmount
JSS(deposit_authorized); // out: deposit_authorized
JSS(deprecated); //
JSS(descending); // in: AccountTx*
JSS(description); // in/out: Reservations
JSS(destination); // in: nft_buy_offers, nft_sell_offers
JSS(destination_account); // in: PathRequest, RipplePathFind, account_lines
// out: AccountChannels
JSS(destination_amount); // in: PathRequest, RipplePathFind
JSS(destination_currencies); // in: PathRequest, RipplePathFind
JSS(destination_tag); // in: PathRequest
// out: AccountChannels
JSS(details); // out: Manifest, server_info
JSS(dir_entry); // out: DirectoryEntryIterator
JSS(dir_index); // out: DirectoryEntryIterator
JSS(dir_root); // out: DirectoryEntryIterator
JSS(discounted_fee); // out: amm_info
JSS(domain); // out: ValidatorInfo, Manifest
JSS(drops); // out: TxQ
JSS(duration_us); // out: NetworkOPs
JSS(effective); // out: ValidatorList
// in: UNL
JSS(enabled); // out: AmendmentTable
JSS(engine_result); // out: NetworkOPs, TransactionSign, Submit
JSS(engine_result_code); // out: NetworkOPs, TransactionSign, Submit
JSS(engine_result_message); // out: NetworkOPs, TransactionSign, Submit
JSS(entire_set); // out: get_aggregate_price
JSS(ephemeral_key); // out: ValidatorInfo
// in/out: Manifest
JSS(error); // out: error
JSS(errored); //
JSS(error_code); // out: error
JSS(error_exception); // out: Submit
JSS(error_message); // out: error
JSS(expand); // in: handler/Ledger
JSS(expected_date); // out: any (warnings)
JSS(expected_date_UTC); // out: any (warnings)
JSS(expected_ledger_size); // out: TxQ
JSS(expiration); // out: AccountOffers, AccountChannels, ValidatorList, amm_info
JSS(fail_hard); // in: Sign, Submit
JSS(failed); // out: InboundLedger
JSS(feature); // in: Feature
JSS(features); // out: Feature
JSS(fee_base); // out: NetworkOPs
JSS(fee_div_max); // in: TransactionSign
JSS(fee_level); // out: AccountInfo
JSS(fee_mult_max); // in: TransactionSign
JSS(fee_ref); // out: NetworkOPs, DEPRECATED
JSS(fetch_pack); // out: NetworkOPs
JSS(FIELDS); // out: RPC server_definitions
// matches definitions.json format
JSS(first); // out: rpc/Version
JSS(finished); //
JSS(fix_txns); // in: LedgerCleaner
JSS(flags); // out: AccountOffers, NetworkOPs
JSS(forward); // in: AccountTx
JSS(freeze); // out: AccountLines
JSS(freeze_peer); // out: AccountLines
JSS(deep_freeze); // out: AccountLines
JSS(deep_freeze_peer); // out: AccountLines
JSS(frozen_balances); // out: GatewayBalances
JSS(full); // in: LedgerClearer, handlers/Ledger
JSS(full_reply); // out: PathFind
JSS(fullbelow_size); // out: GetCounts
JSS(git); // out: server_info
JSS(good); // out: RPCVersion
JSS(hash); // out: NetworkOPs, InboundLedger, LedgerToJson, STTx; field
JSS(have_header); // out: InboundLedger
JSS(have_state); // out: InboundLedger
JSS(have_transactions); // out: InboundLedger
JSS(high); // out: BookChanges
JSS(highest_sequence); // out: AccountInfo
JSS(highest_ticket); // out: AccountInfo
JSS(historical_perminute); // historical_perminute.
JSS(holders); // out: MPTHolders
JSS(hostid); // out: NetworkOPs
JSS(hotwallet); // in: GatewayBalances
JSS(id); // websocket.
JSS(ident); // in: AccountCurrencies, AccountInfo, OwnerInfo
JSS(ignore_default); // in: AccountLines
JSS(in); // out: OverlayImpl
JSS(inLedger); // out: tx/Transaction
JSS(inbound); // out: PeerImp
JSS(index); // in: LedgerEntry
// out: STLedgerEntry, LedgerEntry, TxHistory, LedgerData
JSS(info); // out: ServerInfo, ConsensusInfo, FetchInfo
JSS(initial_sync_duration_us); //
JSS(internal_command); // in: Internal
JSS(invalid_API_version); // out: Many, when a request has an invalid version
JSS(io_latency_ms); // out: NetworkOPs
JSS(ip); // in: Connect, out: OverlayImpl
JSS(is_burned); // out: nft_info (clio)
JSS(isSerialized); // out: RPC server_definitions
// matches definitions.json format
JSS(isSigningField); // out: RPC server_definitions
// matches definitions.json format
JSS(isVLEncoded); // out: RPC server_definitions
// matches definitions.json format
JSS(issuer); // in: RipplePathFind, Subscribe, Unsubscribe, BookOffers
// out: STPathSet, STAmount
JSS(job); //
JSS(job_queue); //
JSS(jobs); //
JSS(jsonrpc); // json version
JSS(jq_trans_overflow); // JobQueue transaction limit overflow.
JSS(kept); // out: SubmitTransaction
JSS(key); // out
JSS(key_type); // in/out: WalletPropose, TransactionSign
JSS(latency); // out: PeerImp
JSS(last); // out: RPCVersion
JSS(last_close); // out: NetworkOPs
JSS(last_refresh_time); // out: ValidatorSite
JSS(last_refresh_status); // out: ValidatorSite
JSS(last_refresh_message); // out: ValidatorSite
JSS(ledger); // in: NetworkOPs, LedgerCleaner, RPCHelpers
// out: NetworkOPs, PeerImp
JSS(ledger_current_index); // out: NetworkOPs, RPCHelpers, LedgerCurrent, LedgerAccept,
// AccountLines
JSS(ledger_data); // out: LedgerHeader
JSS(ledger_hash); // in: RPCHelpers, LedgerRequest, RipplePathFind,
// TransactionEntry, handlers/Ledger
// out: NetworkOPs, RPCHelpers, LedgerClosed, LedgerData,
// AccountLines
JSS(ledger_hit_rate); // out: GetCounts
JSS(ledger_index); // in/out: many
JSS(ledger_index_max); // in, out: AccountTx*
JSS(ledger_index_min); // in, out: AccountTx*
JSS(ledger_max); // in, out: AccountTx*
JSS(ledger_min); // in, out: AccountTx*
JSS(ledger_time); // out: NetworkOPs
JSS(LEDGER_ENTRY_TYPES); // out: RPC server_definitions
// matches definitions.json format
JSS(LEDGER_ENTRY_FLAGS); // out: RPC server_definitions
JSS(LEDGER_ENTRY_FORMATS); // out: RPC server_definitions
JSS(levels); // LogLevels
JSS(confidential_balance_inbox); // out: mpt_holders (confidential MPT)
JSS(confidential_balance_spending); // out: mpt_holders (confidential MPT)
JSS(confidential_balance_version); // out: mpt_holders (confidential MPT)
JSS(consensus); // out: NetworkOPs, LedgerConsensus
JSS(converge_time); // out: NetworkOPs
JSS(converge_time_s); // out: NetworkOPs
JSS(cookie); // out: NetworkOPs
JSS(count); // in: AccountTx*, ValidatorList
JSS(counters); // in/out: retrieve counters
JSS(credentials); // in: deposit_authorized
JSS(credential_type); // in: LedgerEntry DepositPreauth
JSS(ctid); // in/out: Tx RPC
JSS(currency_a); // out: BookChanges
JSS(currency_b); // out: BookChanges
JSS(currency); // in: paths/PathRequest, STAmount
// out: STPathSet, STAmount, AccountLines
JSS(current); // out: OwnerInfo
JSS(current_activities); //
JSS(current_ledger_size); // out: TxQ
JSS(current_queue_size); // out: TxQ
JSS(data); // out: LedgerData
JSS(date); // out: tx/Transaction, NetworkOPs
JSS(dbKBLedger); // out: getCounts
JSS(dbKBTotal); // out: getCounts
JSS(dbKBTransaction); // out: getCounts
JSS(debug_signing); // in: TransactionSign
JSS(deletion_blockers_only); // in: AccountObjects
JSS(delivered_amount); // out: insertDeliveredAmount
JSS(deposit_authorized); // out: deposit_authorized
JSS(deprecated); //
JSS(descending); // in: AccountTx*
JSS(description); // in/out: Reservations
JSS(destination); // in: nft_buy_offers, nft_sell_offers
JSS(destination_account); // in: PathRequest, RipplePathFind, account_lines
// out: AccountChannels
JSS(destination_amount); // in: PathRequest, RipplePathFind
JSS(destination_currencies); // in: PathRequest, RipplePathFind
JSS(destination_tag); // in: PathRequest
// out: AccountChannels
JSS(details); // out: Manifest, server_info
JSS(dir_entry); // out: DirectoryEntryIterator
JSS(dir_index); // out: DirectoryEntryIterator
JSS(dir_root); // out: DirectoryEntryIterator
JSS(discounted_fee); // out: amm_info
JSS(domain); // out: ValidatorInfo, Manifest
JSS(drops); // out: TxQ
JSS(duration_us); // out: NetworkOPs
JSS(effective); // out: ValidatorList
// in: UNL
JSS(enabled); // out: AmendmentTable
JSS(engine_result); // out: NetworkOPs, TransactionSign, Submit
JSS(engine_result_code); // out: NetworkOPs, TransactionSign, Submit
JSS(engine_result_message); // out: NetworkOPs, TransactionSign, Submit
JSS(entire_set); // out: get_aggregate_price
JSS(ephemeral_key); // out: ValidatorInfo
// in/out: Manifest
JSS(error); // out: error
JSS(errored); //
JSS(error_code); // out: error
JSS(error_exception); // out: Submit
JSS(error_message); // out: error
JSS(expand); // in: handler/Ledger
JSS(expected_date); // out: any (warnings)
JSS(expected_date_UTC); // out: any (warnings)
JSS(expected_ledger_size); // out: TxQ
JSS(expiration); // out: AccountOffers, AccountChannels, ValidatorList, amm_info
JSS(fail_hard); // in: Sign, Submit
JSS(failed); // out: InboundLedger
JSS(feature); // in: Feature
JSS(features); // out: Feature
JSS(fee_base); // out: NetworkOPs
JSS(fee_div_max); // in: TransactionSign
JSS(fee_level); // out: AccountInfo
JSS(fee_mult_max); // in: TransactionSign
JSS(fee_ref); // out: NetworkOPs, DEPRECATED
JSS(fetch_pack); // out: NetworkOPs
JSS(FIELDS); // out: RPC server_definitions
// matches definitions.json format
JSS(first); // out: rpc/Version
JSS(finished); //
JSS(fix_txns); // in: LedgerCleaner
JSS(flags); // out: AccountOffers, NetworkOPs
JSS(forward); // in: AccountTx
JSS(freeze); // out: AccountLines
JSS(freeze_peer); // out: AccountLines
JSS(deep_freeze); // out: AccountLines
JSS(deep_freeze_peer); // out: AccountLines
JSS(frozen_balances); // out: GatewayBalances
JSS(full); // in: LedgerClearer, handlers/Ledger
JSS(full_reply); // out: PathFind
JSS(fullbelow_size); // out: GetCounts
JSS(git); // out: server_info
JSS(good); // out: RPCVersion
JSS(hash); // out: NetworkOPs, InboundLedger, LedgerToJson, STTx; field
JSS(have_header); // out: InboundLedger
JSS(have_state); // out: InboundLedger
JSS(have_transactions); // out: InboundLedger
JSS(high); // out: BookChanges
JSS(highest_sequence); // out: AccountInfo
JSS(highest_ticket); // out: AccountInfo
JSS(historical_perminute); // historical_perminute.
JSS(holders); // out: MPTHolders
JSS(holder_encryption_key); // out: mpt_holders (confidential MPT)
JSS(hostid); // out: NetworkOPs
JSS(hotwallet); // in: GatewayBalances
JSS(id); // websocket.
JSS(ident); // in: AccountCurrencies, AccountInfo, OwnerInfo
JSS(ignore_default); // in: AccountLines
JSS(in); // out: OverlayImpl
JSS(inLedger); // out: tx/Transaction
JSS(inbound); // out: PeerImp
JSS(index); // in: LedgerEntry
// out: STLedgerEntry, LedgerEntry, TxHistory, LedgerData
JSS(info); // out: ServerInfo, ConsensusInfo, FetchInfo
JSS(initial_sync_duration_us); //
JSS(internal_command); // in: Internal
JSS(invalid_API_version); // out: Many, when a request has an invalid version
JSS(io_latency_ms); // out: NetworkOPs
JSS(ip); // in: Connect, out: OverlayImpl
JSS(is_burned); // out: nft_info (clio)
JSS(isSerialized); // out: RPC server_definitions
// matches definitions.json format
JSS(isSigningField); // out: RPC server_definitions
// matches definitions.json format
JSS(isVLEncoded); // out: RPC server_definitions
// matches definitions.json format
JSS(issuer); // in: RipplePathFind, Subscribe, Unsubscribe, BookOffers
// out: STPathSet, STAmount
JSS(issuer_encrypted_balance); // out: mpt_holders (confidential MPT)
JSS(job); //
JSS(job_queue); //
JSS(jobs); //
JSS(jsonrpc); // json version
JSS(jq_trans_overflow); // JobQueue transaction limit overflow.
JSS(kept); // out: SubmitTransaction
JSS(key); // out
JSS(key_type); // in/out: WalletPropose, TransactionSign
JSS(latency); // out: PeerImp
JSS(last); // out: RPCVersion
JSS(last_close); // out: NetworkOPs
JSS(last_refresh_time); // out: ValidatorSite
JSS(last_refresh_status); // out: ValidatorSite
JSS(last_refresh_message); // out: ValidatorSite
JSS(ledger); // in: NetworkOPs, LedgerCleaner, RPCHelpers
// out: NetworkOPs, PeerImp
JSS(ledger_current_index); // out: NetworkOPs, RPCHelpers, LedgerCurrent, LedgerAccept,
// AccountLines
JSS(ledger_data); // out: LedgerHeader
JSS(ledger_hash); // in: RPCHelpers, LedgerRequest, RipplePathFind,
// TransactionEntry, handlers/Ledger
// out: NetworkOPs, RPCHelpers, LedgerClosed, LedgerData,
// AccountLines
JSS(ledger_hit_rate); // out: GetCounts
JSS(ledger_index); // in/out: many
JSS(ledger_index_max); // in, out: AccountTx*
JSS(ledger_index_min); // in, out: AccountTx*
JSS(ledger_max); // in, out: AccountTx*
JSS(ledger_min); // in, out: AccountTx*
JSS(ledger_time); // out: NetworkOPs
JSS(LEDGER_ENTRY_TYPES); // out: RPC server_definitions
// matches definitions.json format
JSS(LEDGER_ENTRY_FLAGS); // out: RPC server_definitions
JSS(LEDGER_ENTRY_FORMATS); // out: RPC server_definitions
JSS(levels); // LogLevels
JSS(limit); // in/out: AccountTx*, AccountOffers, AccountLines, AccountObjects
// in: LedgerData, BookOffers
JSS(limit_peer); // out: AccountLines
@@ -401,6 +404,9 @@ JSS(min_ledger); // in: LedgerCleaner
JSS(minimum_fee); // out: TxQ
JSS(minimum_level); // out: TxQ
JSS(missingCommand); // error
JSS(mpt_amount); // out: mpt_holders
JSS(mpt_issuance_id); // in: Payment, mpt_holders
JSS(mptoken_index); // out: mpt_holders
JSS(mpt_issuance_id_a); // out: BookChanges
JSS(mpt_issuance_id_b); // out: BookChanges
JSS(name); // out: AmendmentTableImpl, PeerImp

View File

@@ -52,7 +52,7 @@ getTransferFee(uint256 const& id)
}
inline std::uint32_t
getSerial(uint256 const& id)
getSequence(uint256 const& id)
{
std::uint32_t seq = 0;
memcpy(&seq, id.begin() + 28, 4);
@@ -92,7 +92,7 @@ getTaxon(uint256 const& id)
// The taxon cipher is just an XOR, so it is reversible by applying the
// XOR a second time.
return cipheredTaxon(getSerial(id), toTaxon(taxon));
return cipheredTaxon(getSequence(id), toTaxon(taxon));
}
inline AccountID

View File

@@ -147,6 +147,150 @@ public:
{
return this->sle_->at(sfPreviousTxnLgrSeq);
}
/**
* @brief Get sfConfidentialBalanceInbox (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getConfidentialBalanceInbox() const
{
if (hasConfidentialBalanceInbox())
return this->sle_->at(sfConfidentialBalanceInbox);
return std::nullopt;
}
/**
* @brief Check if sfConfidentialBalanceInbox is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasConfidentialBalanceInbox() const
{
return this->sle_->isFieldPresent(sfConfidentialBalanceInbox);
}
/**
* @brief Get sfConfidentialBalanceSpending (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getConfidentialBalanceSpending() const
{
if (hasConfidentialBalanceSpending())
return this->sle_->at(sfConfidentialBalanceSpending);
return std::nullopt;
}
/**
* @brief Check if sfConfidentialBalanceSpending is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasConfidentialBalanceSpending() const
{
return this->sle_->isFieldPresent(sfConfidentialBalanceSpending);
}
/**
* @brief Get sfConfidentialBalanceVersion (SoeDefault)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_UINT32::type::value_type>
getConfidentialBalanceVersion() const
{
if (hasConfidentialBalanceVersion())
return this->sle_->at(sfConfidentialBalanceVersion);
return std::nullopt;
}
/**
* @brief Check if sfConfidentialBalanceVersion is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasConfidentialBalanceVersion() const
{
return this->sle_->isFieldPresent(sfConfidentialBalanceVersion);
}
/**
* @brief Get sfIssuerEncryptedBalance (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getIssuerEncryptedBalance() const
{
if (hasIssuerEncryptedBalance())
return this->sle_->at(sfIssuerEncryptedBalance);
return std::nullopt;
}
/**
* @brief Check if sfIssuerEncryptedBalance is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasIssuerEncryptedBalance() const
{
return this->sle_->isFieldPresent(sfIssuerEncryptedBalance);
}
/**
* @brief Get sfAuditorEncryptedBalance (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getAuditorEncryptedBalance() const
{
if (hasAuditorEncryptedBalance())
return this->sle_->at(sfAuditorEncryptedBalance);
return std::nullopt;
}
/**
* @brief Check if sfAuditorEncryptedBalance is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasAuditorEncryptedBalance() const
{
return this->sle_->isFieldPresent(sfAuditorEncryptedBalance);
}
/**
* @brief Get sfHolderEncryptionKey (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getHolderEncryptionKey() const
{
if (hasHolderEncryptionKey())
return this->sle_->at(sfHolderEncryptionKey);
return std::nullopt;
}
/**
* @brief Check if sfHolderEncryptionKey is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasHolderEncryptionKey() const
{
return this->sle_->isFieldPresent(sfHolderEncryptionKey);
}
};
/**
@@ -270,6 +414,72 @@ public:
return *this;
}
/**
* @brief Set sfConfidentialBalanceInbox (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenBuilder&
setConfidentialBalanceInbox(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfConfidentialBalanceInbox] = value;
return *this;
}
/**
* @brief Set sfConfidentialBalanceSpending (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenBuilder&
setConfidentialBalanceSpending(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfConfidentialBalanceSpending] = value;
return *this;
}
/**
* @brief Set sfConfidentialBalanceVersion (SoeDefault)
* @return Reference to this builder for method chaining.
*/
MPTokenBuilder&
setConfidentialBalanceVersion(std::decay_t<typename SF_UINT32::type::value_type> const& value)
{
object_[sfConfidentialBalanceVersion] = value;
return *this;
}
/**
* @brief Set sfIssuerEncryptedBalance (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenBuilder&
setIssuerEncryptedBalance(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfIssuerEncryptedBalance] = value;
return *this;
}
/**
* @brief Set sfAuditorEncryptedBalance (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenBuilder&
setAuditorEncryptedBalance(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfAuditorEncryptedBalance] = value;
return *this;
}
/**
* @brief Set sfHolderEncryptionKey (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenBuilder&
setHolderEncryptionKey(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfHolderEncryptionKey] = value;
return *this;
}
/**
* @brief Build and return the completed MPToken wrapper.
* @param index The ledger entry index.

View File

@@ -302,6 +302,78 @@ public:
{
return this->sle_->isFieldPresent(sfReferenceHolding);
}
/**
* @brief Get sfIssuerEncryptionKey (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getIssuerEncryptionKey() const
{
if (hasIssuerEncryptionKey())
return this->sle_->at(sfIssuerEncryptionKey);
return std::nullopt;
}
/**
* @brief Check if sfIssuerEncryptionKey is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasIssuerEncryptionKey() const
{
return this->sle_->isFieldPresent(sfIssuerEncryptionKey);
}
/**
* @brief Get sfAuditorEncryptionKey (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getAuditorEncryptionKey() const
{
if (hasAuditorEncryptionKey())
return this->sle_->at(sfAuditorEncryptionKey);
return std::nullopt;
}
/**
* @brief Check if sfAuditorEncryptionKey is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasAuditorEncryptionKey() const
{
return this->sle_->isFieldPresent(sfAuditorEncryptionKey);
}
/**
* @brief Get sfConfidentialOutstandingAmount (SoeDefault)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_UINT64::type::value_type>
getConfidentialOutstandingAmount() const
{
if (hasConfidentialOutstandingAmount())
return this->sle_->at(sfConfidentialOutstandingAmount);
return std::nullopt;
}
/**
* @brief Check if sfConfidentialOutstandingAmount is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasConfidentialOutstandingAmount() const
{
return this->sle_->isFieldPresent(sfConfidentialOutstandingAmount);
}
};
/**
@@ -504,6 +576,39 @@ public:
return *this;
}
/**
* @brief Set sfIssuerEncryptionKey (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenIssuanceBuilder&
setIssuerEncryptionKey(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfIssuerEncryptionKey] = value;
return *this;
}
/**
* @brief Set sfAuditorEncryptionKey (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenIssuanceBuilder&
setAuditorEncryptionKey(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfAuditorEncryptionKey] = value;
return *this;
}
/**
* @brief Set sfConfidentialOutstandingAmount (SoeDefault)
* @return Reference to this builder for method chaining.
*/
MPTokenIssuanceBuilder&
setConfidentialOutstandingAmount(std::decay_t<typename SF_UINT64::type::value_type> const& value)
{
object_[sfConfidentialOutstandingAmount] = value;
return *this;
}
/**
* @brief Build and return the completed MPTokenIssuance wrapper.
* @param index The ledger entry index.

View File

@@ -20,7 +20,7 @@ class ClawbackBuilder;
*
* Type: ttCLAWBACK (30)
* Delegable: Delegation::Delegable
* Amendment: featureClawback
* Amendment: uint256{}
* Privileges: NoPriv
*
* Immutable wrapper around STTx providing type-safe field access.

View File

@@ -0,0 +1,201 @@
// 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 ConfidentialMPTClawbackBuilder;
/**
* @brief Transaction: ConfidentialMPTClawback
*
* Type: ttCONFIDENTIAL_MPT_CLAWBACK (89)
* Delegable: Delegation::Delegable
* Amendment: featureConfidentialTransfer
* Privileges: NoPriv
*
* Immutable wrapper around STTx providing type-safe field access.
* Use ConfidentialMPTClawbackBuilder to construct new transactions.
*/
class ConfidentialMPTClawback : public TransactionBase
{
public:
static constexpr xrpl::TxType txType = ttCONFIDENTIAL_MPT_CLAWBACK;
/**
* @brief Construct a ConfidentialMPTClawback transaction wrapper from an existing STTx object.
* @throws std::runtime_error if the transaction type doesn't match.
*/
explicit ConfidentialMPTClawback(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 ConfidentialMPTClawback");
}
}
// Transaction-specific field getters
/**
* @brief Get sfMPTokenIssuanceID (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT192::type::value_type
getMPTokenIssuanceID() const
{
return this->tx_->at(sfMPTokenIssuanceID);
}
/**
* @brief Get sfHolder (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_ACCOUNT::type::value_type
getHolder() const
{
return this->tx_->at(sfHolder);
}
/**
* @brief Get sfMPTAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT64::type::value_type
getMPTAmount() const
{
return this->tx_->at(sfMPTAmount);
}
/**
* @brief Get sfZKProof (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getZKProof() const
{
return this->tx_->at(sfZKProof);
}
};
/**
* @brief Builder for ConfidentialMPTClawback transactions.
*
* Provides a fluent interface for constructing transactions with method chaining.
* Uses STObject internally for flexible transaction construction.
* Inherits common field setters from TransactionBuilderBase.
*/
class ConfidentialMPTClawbackBuilder : public TransactionBuilderBase<ConfidentialMPTClawbackBuilder>
{
public:
/**
* @brief Construct a new ConfidentialMPTClawbackBuilder with required fields.
* @param account The account initiating the transaction.
* @param mPTokenIssuanceID The sfMPTokenIssuanceID field value.
* @param holder The sfHolder field value.
* @param mPTAmount The sfMPTAmount field value.
* @param zKProof The sfZKProof field value.
* @param sequence Optional sequence number for the transaction.
* @param fee Optional fee for the transaction.
*/
ConfidentialMPTClawbackBuilder(SF_ACCOUNT::type::value_type account,
std::decay_t<typename SF_UINT192::type::value_type> const& mPTokenIssuanceID, std::decay_t<typename SF_ACCOUNT::type::value_type> const& holder, std::decay_t<typename SF_UINT64::type::value_type> const& mPTAmount, std::decay_t<typename SF_VL::type::value_type> const& zKProof, std::optional<SF_UINT32::type::value_type> sequence = std::nullopt,
std::optional<SF_AMOUNT::type::value_type> fee = std::nullopt
)
: TransactionBuilderBase<ConfidentialMPTClawbackBuilder>(ttCONFIDENTIAL_MPT_CLAWBACK, account, sequence, fee)
{
setMPTokenIssuanceID(mPTokenIssuanceID);
setHolder(holder);
setMPTAmount(mPTAmount);
setZKProof(zKProof);
}
/**
* @brief Construct a ConfidentialMPTClawbackBuilder from an existing STTx object.
* @param tx The existing transaction to copy from.
* @throws std::runtime_error if the transaction type doesn't match.
*/
ConfidentialMPTClawbackBuilder(std::shared_ptr<STTx const> tx)
{
if (tx->getTxnType() != ttCONFIDENTIAL_MPT_CLAWBACK)
{
throw std::runtime_error("Invalid transaction type for ConfidentialMPTClawbackBuilder");
}
object_ = *tx;
}
/** @brief Transaction-specific field setters */
/**
* @brief Set sfMPTokenIssuanceID (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTClawbackBuilder&
setMPTokenIssuanceID(std::decay_t<typename SF_UINT192::type::value_type> const& value)
{
object_[sfMPTokenIssuanceID] = value;
return *this;
}
/**
* @brief Set sfHolder (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTClawbackBuilder&
setHolder(std::decay_t<typename SF_ACCOUNT::type::value_type> const& value)
{
object_[sfHolder] = value;
return *this;
}
/**
* @brief Set sfMPTAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTClawbackBuilder&
setMPTAmount(std::decay_t<typename SF_UINT64::type::value_type> const& value)
{
object_[sfMPTAmount] = value;
return *this;
}
/**
* @brief Set sfZKProof (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTClawbackBuilder&
setZKProof(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfZKProof] = value;
return *this;
}
/**
* @brief Build and return the ConfidentialMPTClawback wrapper.
* @param publicKey The public key for signing.
* @param secretKey The secret key for signing.
* @return The constructed transaction wrapper.
*/
ConfidentialMPTClawback
build(PublicKey const& publicKey, SecretKey const& secretKey)
{
sign(publicKey, secretKey);
return ConfidentialMPTClawback{std::make_shared<STTx>(std::move(object_))};
}
};
} // namespace xrpl::transactions

View File

@@ -0,0 +1,336 @@
// 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 ConfidentialMPTConvertBuilder;
/**
* @brief Transaction: ConfidentialMPTConvert
*
* Type: ttCONFIDENTIAL_MPT_CONVERT (85)
* Delegable: Delegation::Delegable
* Amendment: featureConfidentialTransfer
* Privileges: NoPriv
*
* Immutable wrapper around STTx providing type-safe field access.
* Use ConfidentialMPTConvertBuilder to construct new transactions.
*/
class ConfidentialMPTConvert : public TransactionBase
{
public:
static constexpr xrpl::TxType txType = ttCONFIDENTIAL_MPT_CONVERT;
/**
* @brief Construct a ConfidentialMPTConvert transaction wrapper from an existing STTx object.
* @throws std::runtime_error if the transaction type doesn't match.
*/
explicit ConfidentialMPTConvert(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 ConfidentialMPTConvert");
}
}
// Transaction-specific field getters
/**
* @brief Get sfMPTokenIssuanceID (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT192::type::value_type
getMPTokenIssuanceID() const
{
return this->tx_->at(sfMPTokenIssuanceID);
}
/**
* @brief Get sfMPTAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT64::type::value_type
getMPTAmount() const
{
return this->tx_->at(sfMPTAmount);
}
/**
* @brief Get sfHolderEncryptionKey (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getHolderEncryptionKey() const
{
if (hasHolderEncryptionKey())
{
return this->tx_->at(sfHolderEncryptionKey);
}
return std::nullopt;
}
/**
* @brief Check if sfHolderEncryptionKey is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasHolderEncryptionKey() const
{
return this->tx_->isFieldPresent(sfHolderEncryptionKey);
}
/**
* @brief Get sfHolderEncryptedAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getHolderEncryptedAmount() const
{
return this->tx_->at(sfHolderEncryptedAmount);
}
/**
* @brief Get sfIssuerEncryptedAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getIssuerEncryptedAmount() const
{
return this->tx_->at(sfIssuerEncryptedAmount);
}
/**
* @brief Get sfAuditorEncryptedAmount (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getAuditorEncryptedAmount() const
{
if (hasAuditorEncryptedAmount())
{
return this->tx_->at(sfAuditorEncryptedAmount);
}
return std::nullopt;
}
/**
* @brief Check if sfAuditorEncryptedAmount is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasAuditorEncryptedAmount() const
{
return this->tx_->isFieldPresent(sfAuditorEncryptedAmount);
}
/**
* @brief Get sfBlindingFactor (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT256::type::value_type
getBlindingFactor() const
{
return this->tx_->at(sfBlindingFactor);
}
/**
* @brief Get sfZKProof (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getZKProof() const
{
if (hasZKProof())
{
return this->tx_->at(sfZKProof);
}
return std::nullopt;
}
/**
* @brief Check if sfZKProof is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasZKProof() const
{
return this->tx_->isFieldPresent(sfZKProof);
}
};
/**
* @brief Builder for ConfidentialMPTConvert transactions.
*
* Provides a fluent interface for constructing transactions with method chaining.
* Uses STObject internally for flexible transaction construction.
* Inherits common field setters from TransactionBuilderBase.
*/
class ConfidentialMPTConvertBuilder : public TransactionBuilderBase<ConfidentialMPTConvertBuilder>
{
public:
/**
* @brief Construct a new ConfidentialMPTConvertBuilder with required fields.
* @param account The account initiating the transaction.
* @param mPTokenIssuanceID The sfMPTokenIssuanceID field value.
* @param mPTAmount The sfMPTAmount field value.
* @param holderEncryptedAmount The sfHolderEncryptedAmount field value.
* @param issuerEncryptedAmount The sfIssuerEncryptedAmount field value.
* @param blindingFactor The sfBlindingFactor field value.
* @param sequence Optional sequence number for the transaction.
* @param fee Optional fee for the transaction.
*/
ConfidentialMPTConvertBuilder(SF_ACCOUNT::type::value_type account,
std::decay_t<typename SF_UINT192::type::value_type> const& mPTokenIssuanceID, std::decay_t<typename SF_UINT64::type::value_type> const& mPTAmount, std::decay_t<typename SF_VL::type::value_type> const& holderEncryptedAmount, std::decay_t<typename SF_VL::type::value_type> const& issuerEncryptedAmount, std::decay_t<typename SF_UINT256::type::value_type> const& blindingFactor, std::optional<SF_UINT32::type::value_type> sequence = std::nullopt,
std::optional<SF_AMOUNT::type::value_type> fee = std::nullopt
)
: TransactionBuilderBase<ConfidentialMPTConvertBuilder>(ttCONFIDENTIAL_MPT_CONVERT, account, sequence, fee)
{
setMPTokenIssuanceID(mPTokenIssuanceID);
setMPTAmount(mPTAmount);
setHolderEncryptedAmount(holderEncryptedAmount);
setIssuerEncryptedAmount(issuerEncryptedAmount);
setBlindingFactor(blindingFactor);
}
/**
* @brief Construct a ConfidentialMPTConvertBuilder from an existing STTx object.
* @param tx The existing transaction to copy from.
* @throws std::runtime_error if the transaction type doesn't match.
*/
ConfidentialMPTConvertBuilder(std::shared_ptr<STTx const> tx)
{
if (tx->getTxnType() != ttCONFIDENTIAL_MPT_CONVERT)
{
throw std::runtime_error("Invalid transaction type for ConfidentialMPTConvertBuilder");
}
object_ = *tx;
}
/** @brief Transaction-specific field setters */
/**
* @brief Set sfMPTokenIssuanceID (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setMPTokenIssuanceID(std::decay_t<typename SF_UINT192::type::value_type> const& value)
{
object_[sfMPTokenIssuanceID] = value;
return *this;
}
/**
* @brief Set sfMPTAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setMPTAmount(std::decay_t<typename SF_UINT64::type::value_type> const& value)
{
object_[sfMPTAmount] = value;
return *this;
}
/**
* @brief Set sfHolderEncryptionKey (SoeOptional)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setHolderEncryptionKey(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfHolderEncryptionKey] = value;
return *this;
}
/**
* @brief Set sfHolderEncryptedAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setHolderEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfHolderEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfIssuerEncryptedAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setIssuerEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfIssuerEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfAuditorEncryptedAmount (SoeOptional)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setAuditorEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfAuditorEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfBlindingFactor (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setBlindingFactor(std::decay_t<typename SF_UINT256::type::value_type> const& value)
{
object_[sfBlindingFactor] = value;
return *this;
}
/**
* @brief Set sfZKProof (SoeOptional)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBuilder&
setZKProof(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfZKProof] = value;
return *this;
}
/**
* @brief Build and return the ConfidentialMPTConvert wrapper.
* @param publicKey The public key for signing.
* @param secretKey The secret key for signing.
* @return The constructed transaction wrapper.
*/
ConfidentialMPTConvert
build(PublicKey const& publicKey, SecretKey const& secretKey)
{
sign(publicKey, secretKey);
return ConfidentialMPTConvert{std::make_shared<STTx>(std::move(object_))};
}
};
} // namespace xrpl::transactions

View File

@@ -0,0 +1,310 @@
// 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 ConfidentialMPTConvertBackBuilder;
/**
* @brief Transaction: ConfidentialMPTConvertBack
*
* Type: ttCONFIDENTIAL_MPT_CONVERT_BACK (87)
* Delegable: Delegation::Delegable
* Amendment: featureConfidentialTransfer
* Privileges: NoPriv
*
* Immutable wrapper around STTx providing type-safe field access.
* Use ConfidentialMPTConvertBackBuilder to construct new transactions.
*/
class ConfidentialMPTConvertBack : public TransactionBase
{
public:
static constexpr xrpl::TxType txType = ttCONFIDENTIAL_MPT_CONVERT_BACK;
/**
* @brief Construct a ConfidentialMPTConvertBack transaction wrapper from an existing STTx object.
* @throws std::runtime_error if the transaction type doesn't match.
*/
explicit ConfidentialMPTConvertBack(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 ConfidentialMPTConvertBack");
}
}
// Transaction-specific field getters
/**
* @brief Get sfMPTokenIssuanceID (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT192::type::value_type
getMPTokenIssuanceID() const
{
return this->tx_->at(sfMPTokenIssuanceID);
}
/**
* @brief Get sfMPTAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT64::type::value_type
getMPTAmount() const
{
return this->tx_->at(sfMPTAmount);
}
/**
* @brief Get sfHolderEncryptedAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getHolderEncryptedAmount() const
{
return this->tx_->at(sfHolderEncryptedAmount);
}
/**
* @brief Get sfIssuerEncryptedAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getIssuerEncryptedAmount() const
{
return this->tx_->at(sfIssuerEncryptedAmount);
}
/**
* @brief Get sfAuditorEncryptedAmount (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getAuditorEncryptedAmount() const
{
if (hasAuditorEncryptedAmount())
{
return this->tx_->at(sfAuditorEncryptedAmount);
}
return std::nullopt;
}
/**
* @brief Check if sfAuditorEncryptedAmount is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasAuditorEncryptedAmount() const
{
return this->tx_->isFieldPresent(sfAuditorEncryptedAmount);
}
/**
* @brief Get sfBlindingFactor (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT256::type::value_type
getBlindingFactor() const
{
return this->tx_->at(sfBlindingFactor);
}
/**
* @brief Get sfZKProof (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getZKProof() const
{
return this->tx_->at(sfZKProof);
}
/**
* @brief Get sfBalanceCommitment (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getBalanceCommitment() const
{
return this->tx_->at(sfBalanceCommitment);
}
};
/**
* @brief Builder for ConfidentialMPTConvertBack transactions.
*
* Provides a fluent interface for constructing transactions with method chaining.
* Uses STObject internally for flexible transaction construction.
* Inherits common field setters from TransactionBuilderBase.
*/
class ConfidentialMPTConvertBackBuilder : public TransactionBuilderBase<ConfidentialMPTConvertBackBuilder>
{
public:
/**
* @brief Construct a new ConfidentialMPTConvertBackBuilder with required fields.
* @param account The account initiating the transaction.
* @param mPTokenIssuanceID The sfMPTokenIssuanceID field value.
* @param mPTAmount The sfMPTAmount field value.
* @param holderEncryptedAmount The sfHolderEncryptedAmount field value.
* @param issuerEncryptedAmount The sfIssuerEncryptedAmount field value.
* @param blindingFactor The sfBlindingFactor field value.
* @param zKProof The sfZKProof field value.
* @param balanceCommitment The sfBalanceCommitment field value.
* @param sequence Optional sequence number for the transaction.
* @param fee Optional fee for the transaction.
*/
ConfidentialMPTConvertBackBuilder(SF_ACCOUNT::type::value_type account,
std::decay_t<typename SF_UINT192::type::value_type> const& mPTokenIssuanceID, std::decay_t<typename SF_UINT64::type::value_type> const& mPTAmount, std::decay_t<typename SF_VL::type::value_type> const& holderEncryptedAmount, std::decay_t<typename SF_VL::type::value_type> const& issuerEncryptedAmount, std::decay_t<typename SF_UINT256::type::value_type> const& blindingFactor, std::decay_t<typename SF_VL::type::value_type> const& zKProof, std::decay_t<typename SF_VL::type::value_type> const& balanceCommitment, std::optional<SF_UINT32::type::value_type> sequence = std::nullopt,
std::optional<SF_AMOUNT::type::value_type> fee = std::nullopt
)
: TransactionBuilderBase<ConfidentialMPTConvertBackBuilder>(ttCONFIDENTIAL_MPT_CONVERT_BACK, account, sequence, fee)
{
setMPTokenIssuanceID(mPTokenIssuanceID);
setMPTAmount(mPTAmount);
setHolderEncryptedAmount(holderEncryptedAmount);
setIssuerEncryptedAmount(issuerEncryptedAmount);
setBlindingFactor(blindingFactor);
setZKProof(zKProof);
setBalanceCommitment(balanceCommitment);
}
/**
* @brief Construct a ConfidentialMPTConvertBackBuilder from an existing STTx object.
* @param tx The existing transaction to copy from.
* @throws std::runtime_error if the transaction type doesn't match.
*/
ConfidentialMPTConvertBackBuilder(std::shared_ptr<STTx const> tx)
{
if (tx->getTxnType() != ttCONFIDENTIAL_MPT_CONVERT_BACK)
{
throw std::runtime_error("Invalid transaction type for ConfidentialMPTConvertBackBuilder");
}
object_ = *tx;
}
/** @brief Transaction-specific field setters */
/**
* @brief Set sfMPTokenIssuanceID (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setMPTokenIssuanceID(std::decay_t<typename SF_UINT192::type::value_type> const& value)
{
object_[sfMPTokenIssuanceID] = value;
return *this;
}
/**
* @brief Set sfMPTAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setMPTAmount(std::decay_t<typename SF_UINT64::type::value_type> const& value)
{
object_[sfMPTAmount] = value;
return *this;
}
/**
* @brief Set sfHolderEncryptedAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setHolderEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfHolderEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfIssuerEncryptedAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setIssuerEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfIssuerEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfAuditorEncryptedAmount (SoeOptional)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setAuditorEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfAuditorEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfBlindingFactor (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setBlindingFactor(std::decay_t<typename SF_UINT256::type::value_type> const& value)
{
object_[sfBlindingFactor] = value;
return *this;
}
/**
* @brief Set sfZKProof (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setZKProof(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfZKProof] = value;
return *this;
}
/**
* @brief Set sfBalanceCommitment (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTConvertBackBuilder&
setBalanceCommitment(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfBalanceCommitment] = value;
return *this;
}
/**
* @brief Build and return the ConfidentialMPTConvertBack wrapper.
* @param publicKey The public key for signing.
* @param secretKey The secret key for signing.
* @return The constructed transaction wrapper.
*/
ConfidentialMPTConvertBack
build(PublicKey const& publicKey, SecretKey const& secretKey)
{
sign(publicKey, secretKey);
return ConfidentialMPTConvertBack{std::make_shared<STTx>(std::move(object_))};
}
};
} // namespace xrpl::transactions

View File

@@ -0,0 +1,129 @@
// 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 ConfidentialMPTMergeInboxBuilder;
/**
* @brief Transaction: ConfidentialMPTMergeInbox
*
* Type: ttCONFIDENTIAL_MPT_MERGE_INBOX (86)
* Delegable: Delegation::Delegable
* Amendment: featureConfidentialTransfer
* Privileges: NoPriv
*
* Immutable wrapper around STTx providing type-safe field access.
* Use ConfidentialMPTMergeInboxBuilder to construct new transactions.
*/
class ConfidentialMPTMergeInbox : public TransactionBase
{
public:
static constexpr xrpl::TxType txType = ttCONFIDENTIAL_MPT_MERGE_INBOX;
/**
* @brief Construct a ConfidentialMPTMergeInbox transaction wrapper from an existing STTx object.
* @throws std::runtime_error if the transaction type doesn't match.
*/
explicit ConfidentialMPTMergeInbox(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 ConfidentialMPTMergeInbox");
}
}
// Transaction-specific field getters
/**
* @brief Get sfMPTokenIssuanceID (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT192::type::value_type
getMPTokenIssuanceID() const
{
return this->tx_->at(sfMPTokenIssuanceID);
}
};
/**
* @brief Builder for ConfidentialMPTMergeInbox transactions.
*
* Provides a fluent interface for constructing transactions with method chaining.
* Uses STObject internally for flexible transaction construction.
* Inherits common field setters from TransactionBuilderBase.
*/
class ConfidentialMPTMergeInboxBuilder : public TransactionBuilderBase<ConfidentialMPTMergeInboxBuilder>
{
public:
/**
* @brief Construct a new ConfidentialMPTMergeInboxBuilder with required fields.
* @param account The account initiating the transaction.
* @param mPTokenIssuanceID The sfMPTokenIssuanceID field value.
* @param sequence Optional sequence number for the transaction.
* @param fee Optional fee for the transaction.
*/
ConfidentialMPTMergeInboxBuilder(SF_ACCOUNT::type::value_type account,
std::decay_t<typename SF_UINT192::type::value_type> const& mPTokenIssuanceID, std::optional<SF_UINT32::type::value_type> sequence = std::nullopt,
std::optional<SF_AMOUNT::type::value_type> fee = std::nullopt
)
: TransactionBuilderBase<ConfidentialMPTMergeInboxBuilder>(ttCONFIDENTIAL_MPT_MERGE_INBOX, account, sequence, fee)
{
setMPTokenIssuanceID(mPTokenIssuanceID);
}
/**
* @brief Construct a ConfidentialMPTMergeInboxBuilder from an existing STTx object.
* @param tx The existing transaction to copy from.
* @throws std::runtime_error if the transaction type doesn't match.
*/
ConfidentialMPTMergeInboxBuilder(std::shared_ptr<STTx const> tx)
{
if (tx->getTxnType() != ttCONFIDENTIAL_MPT_MERGE_INBOX)
{
throw std::runtime_error("Invalid transaction type for ConfidentialMPTMergeInboxBuilder");
}
object_ = *tx;
}
/** @brief Transaction-specific field setters */
/**
* @brief Set sfMPTokenIssuanceID (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTMergeInboxBuilder&
setMPTokenIssuanceID(std::decay_t<typename SF_UINT192::type::value_type> const& value)
{
object_[sfMPTokenIssuanceID] = value;
return *this;
}
/**
* @brief Build and return the ConfidentialMPTMergeInbox wrapper.
* @param publicKey The public key for signing.
* @param secretKey The secret key for signing.
* @return The constructed transaction wrapper.
*/
ConfidentialMPTMergeInbox
build(PublicKey const& publicKey, SecretKey const& secretKey)
{
sign(publicKey, secretKey);
return ConfidentialMPTMergeInbox{std::make_shared<STTx>(std::move(object_))};
}
};
} // namespace xrpl::transactions

View File

@@ -0,0 +1,408 @@
// 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 ConfidentialMPTSendBuilder;
/**
* @brief Transaction: ConfidentialMPTSend
*
* Type: ttCONFIDENTIAL_MPT_SEND (88)
* Delegable: Delegation::Delegable
* Amendment: featureConfidentialTransfer
* Privileges: NoPriv
*
* Immutable wrapper around STTx providing type-safe field access.
* Use ConfidentialMPTSendBuilder to construct new transactions.
*/
class ConfidentialMPTSend : public TransactionBase
{
public:
static constexpr xrpl::TxType txType = ttCONFIDENTIAL_MPT_SEND;
/**
* @brief Construct a ConfidentialMPTSend transaction wrapper from an existing STTx object.
* @throws std::runtime_error if the transaction type doesn't match.
*/
explicit ConfidentialMPTSend(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 ConfidentialMPTSend");
}
}
// Transaction-specific field getters
/**
* @brief Get sfMPTokenIssuanceID (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_UINT192::type::value_type
getMPTokenIssuanceID() const
{
return this->tx_->at(sfMPTokenIssuanceID);
}
/**
* @brief Get sfDestination (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_ACCOUNT::type::value_type
getDestination() const
{
return this->tx_->at(sfDestination);
}
/**
* @brief Get sfDestinationTag (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_UINT32::type::value_type>
getDestinationTag() const
{
if (hasDestinationTag())
{
return this->tx_->at(sfDestinationTag);
}
return std::nullopt;
}
/**
* @brief Check if sfDestinationTag is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasDestinationTag() const
{
return this->tx_->isFieldPresent(sfDestinationTag);
}
/**
* @brief Get sfSenderEncryptedAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getSenderEncryptedAmount() const
{
return this->tx_->at(sfSenderEncryptedAmount);
}
/**
* @brief Get sfDestinationEncryptedAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getDestinationEncryptedAmount() const
{
return this->tx_->at(sfDestinationEncryptedAmount);
}
/**
* @brief Get sfIssuerEncryptedAmount (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getIssuerEncryptedAmount() const
{
return this->tx_->at(sfIssuerEncryptedAmount);
}
/**
* @brief Get sfAuditorEncryptedAmount (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getAuditorEncryptedAmount() const
{
if (hasAuditorEncryptedAmount())
{
return this->tx_->at(sfAuditorEncryptedAmount);
}
return std::nullopt;
}
/**
* @brief Check if sfAuditorEncryptedAmount is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasAuditorEncryptedAmount() const
{
return this->tx_->isFieldPresent(sfAuditorEncryptedAmount);
}
/**
* @brief Get sfZKProof (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getZKProof() const
{
return this->tx_->at(sfZKProof);
}
/**
* @brief Get sfAmountCommitment (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getAmountCommitment() const
{
return this->tx_->at(sfAmountCommitment);
}
/**
* @brief Get sfBalanceCommitment (SoeRequired)
* @return The field value.
*/
[[nodiscard]]
SF_VL::type::value_type
getBalanceCommitment() const
{
return this->tx_->at(sfBalanceCommitment);
}
/**
* @brief Get sfCredentialIDs (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VECTOR256::type::value_type>
getCredentialIDs() const
{
if (hasCredentialIDs())
{
return this->tx_->at(sfCredentialIDs);
}
return std::nullopt;
}
/**
* @brief Check if sfCredentialIDs is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasCredentialIDs() const
{
return this->tx_->isFieldPresent(sfCredentialIDs);
}
};
/**
* @brief Builder for ConfidentialMPTSend transactions.
*
* Provides a fluent interface for constructing transactions with method chaining.
* Uses STObject internally for flexible transaction construction.
* Inherits common field setters from TransactionBuilderBase.
*/
class ConfidentialMPTSendBuilder : public TransactionBuilderBase<ConfidentialMPTSendBuilder>
{
public:
/**
* @brief Construct a new ConfidentialMPTSendBuilder with required fields.
* @param account The account initiating the transaction.
* @param mPTokenIssuanceID The sfMPTokenIssuanceID field value.
* @param destination The sfDestination field value.
* @param senderEncryptedAmount The sfSenderEncryptedAmount field value.
* @param destinationEncryptedAmount The sfDestinationEncryptedAmount field value.
* @param issuerEncryptedAmount The sfIssuerEncryptedAmount field value.
* @param zKProof The sfZKProof field value.
* @param amountCommitment The sfAmountCommitment field value.
* @param balanceCommitment The sfBalanceCommitment field value.
* @param sequence Optional sequence number for the transaction.
* @param fee Optional fee for the transaction.
*/
ConfidentialMPTSendBuilder(SF_ACCOUNT::type::value_type account,
std::decay_t<typename SF_UINT192::type::value_type> const& mPTokenIssuanceID, std::decay_t<typename SF_ACCOUNT::type::value_type> const& destination, std::decay_t<typename SF_VL::type::value_type> const& senderEncryptedAmount, std::decay_t<typename SF_VL::type::value_type> const& destinationEncryptedAmount, std::decay_t<typename SF_VL::type::value_type> const& issuerEncryptedAmount, std::decay_t<typename SF_VL::type::value_type> const& zKProof, std::decay_t<typename SF_VL::type::value_type> const& amountCommitment, std::decay_t<typename SF_VL::type::value_type> const& balanceCommitment, std::optional<SF_UINT32::type::value_type> sequence = std::nullopt,
std::optional<SF_AMOUNT::type::value_type> fee = std::nullopt
)
: TransactionBuilderBase<ConfidentialMPTSendBuilder>(ttCONFIDENTIAL_MPT_SEND, account, sequence, fee)
{
setMPTokenIssuanceID(mPTokenIssuanceID);
setDestination(destination);
setSenderEncryptedAmount(senderEncryptedAmount);
setDestinationEncryptedAmount(destinationEncryptedAmount);
setIssuerEncryptedAmount(issuerEncryptedAmount);
setZKProof(zKProof);
setAmountCommitment(amountCommitment);
setBalanceCommitment(balanceCommitment);
}
/**
* @brief Construct a ConfidentialMPTSendBuilder from an existing STTx object.
* @param tx The existing transaction to copy from.
* @throws std::runtime_error if the transaction type doesn't match.
*/
ConfidentialMPTSendBuilder(std::shared_ptr<STTx const> tx)
{
if (tx->getTxnType() != ttCONFIDENTIAL_MPT_SEND)
{
throw std::runtime_error("Invalid transaction type for ConfidentialMPTSendBuilder");
}
object_ = *tx;
}
/** @brief Transaction-specific field setters */
/**
* @brief Set sfMPTokenIssuanceID (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setMPTokenIssuanceID(std::decay_t<typename SF_UINT192::type::value_type> const& value)
{
object_[sfMPTokenIssuanceID] = value;
return *this;
}
/**
* @brief Set sfDestination (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setDestination(std::decay_t<typename SF_ACCOUNT::type::value_type> const& value)
{
object_[sfDestination] = value;
return *this;
}
/**
* @brief Set sfDestinationTag (SoeOptional)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setDestinationTag(std::decay_t<typename SF_UINT32::type::value_type> const& value)
{
object_[sfDestinationTag] = value;
return *this;
}
/**
* @brief Set sfSenderEncryptedAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setSenderEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfSenderEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfDestinationEncryptedAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setDestinationEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfDestinationEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfIssuerEncryptedAmount (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setIssuerEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfIssuerEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfAuditorEncryptedAmount (SoeOptional)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setAuditorEncryptedAmount(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfAuditorEncryptedAmount] = value;
return *this;
}
/**
* @brief Set sfZKProof (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setZKProof(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfZKProof] = value;
return *this;
}
/**
* @brief Set sfAmountCommitment (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setAmountCommitment(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfAmountCommitment] = value;
return *this;
}
/**
* @brief Set sfBalanceCommitment (SoeRequired)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setBalanceCommitment(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfBalanceCommitment] = value;
return *this;
}
/**
* @brief Set sfCredentialIDs (SoeOptional)
* @return Reference to this builder for method chaining.
*/
ConfidentialMPTSendBuilder&
setCredentialIDs(std::decay_t<typename SF_VECTOR256::type::value_type> const& value)
{
object_[sfCredentialIDs] = value;
return *this;
}
/**
* @brief Build and return the ConfidentialMPTSend wrapper.
* @param publicKey The public key for signing.
* @param secretKey The secret key for signing.
* @return The constructed transaction wrapper.
*/
ConfidentialMPTSend
build(PublicKey const& publicKey, SecretKey const& secretKey)
{
sign(publicKey, secretKey);
return ConfidentialMPTSend{std::make_shared<STTx>(std::move(object_))};
}
};
} // namespace xrpl::transactions

View File

@@ -187,6 +187,58 @@ public:
{
return this->tx_->isFieldPresent(sfMutableFlags);
}
/**
* @brief Get sfIssuerEncryptionKey (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getIssuerEncryptionKey() const
{
if (hasIssuerEncryptionKey())
{
return this->tx_->at(sfIssuerEncryptionKey);
}
return std::nullopt;
}
/**
* @brief Check if sfIssuerEncryptionKey is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasIssuerEncryptionKey() const
{
return this->tx_->isFieldPresent(sfIssuerEncryptionKey);
}
/**
* @brief Get sfAuditorEncryptionKey (SoeOptional)
* @return The field value, or std::nullopt if not present.
*/
[[nodiscard]]
protocol_autogen::Optional<SF_VL::type::value_type>
getAuditorEncryptionKey() const
{
if (hasAuditorEncryptionKey())
{
return this->tx_->at(sfAuditorEncryptionKey);
}
return std::nullopt;
}
/**
* @brief Check if sfAuditorEncryptionKey is present.
* @return True if the field is present, false otherwise.
*/
[[nodiscard]]
bool
hasAuditorEncryptionKey() const
{
return this->tx_->isFieldPresent(sfAuditorEncryptionKey);
}
};
/**
@@ -297,6 +349,28 @@ public:
return *this;
}
/**
* @brief Set sfIssuerEncryptionKey (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenIssuanceSetBuilder&
setIssuerEncryptionKey(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfIssuerEncryptionKey] = value;
return *this;
}
/**
* @brief Set sfAuditorEncryptionKey (SoeOptional)
* @return Reference to this builder for method chaining.
*/
MPTokenIssuanceSetBuilder&
setAuditorEncryptionKey(std::decay_t<typename SF_VL::type::value_type> const& value)
{
object_[sfAuditorEncryptionKey] = value;
return *this;
}
/**
* @brief Build and return the MPTokenIssuanceSet wrapper.
* @param publicKey The public key for signing.

View File

@@ -7,6 +7,7 @@
#include <xrpl/tx/ApplyContext.h>
#include <xrpl/tx/applySteps.h>
#include <cstdint>
#include <tuple>
#include <utility>
@@ -186,6 +187,10 @@ public:
static XRPAmount
calculateBaseFee(ReadView const& view, STTx const& tx);
// Returns the base fee plus extra base fee units, not scaled for load.
static XRPAmount
calculateBaseFee(ReadView const& view, STTx const& tx, std::uint32_t extraBaseFeeMultiplier);
/* Do NOT define an invokePreflight function in a derived class.
Instead, define:

View File

@@ -413,6 +413,7 @@ using InvariantChecks = std::tuple<
ValidLoanBroker,
ValidLoan,
ValidVault,
ValidConfidentialMPToken,
ValidMPTPayment,
ValidAmounts,
ValidMPTTransfer>;

View File

@@ -36,17 +36,42 @@ class ValidMPTIssuance
std::vector<std::shared_ptr<SLE const>> deletedHoldings_;
public:
/**
* @brief Track MPT issuance and holding creations, deletions, and
* mutations.
*
* @param isDelete Whether the ledger entry is being deleted.
* @param before The ledger entry before transaction application.
* @param after The ledger entry after transaction application.
*/
void
visitEntry(bool, SLE::const_ref, SLE::const_ref);
visitEntry(bool isDelete, SLE::const_ref before, SLE::const_ref after);
/**
* @brief Verify MPT issuance invariants after transaction application.
*
* @param tx The transaction being checked.
* @param result The transaction result code.
* @param fee The fee charged by the transaction.
* @param view The ledger view after transaction application.
* @param j Journal used for diagnostics.
* @return true if the invariant checks pass, otherwise false.
*/
[[nodiscard]] bool
finalize(STTx const&, TER const, XRPAmount const, ReadView const&, beast::Journal const&) const;
finalize(
STTx const& tx,
TER const result,
XRPAmount const fee,
ReadView const& view,
beast::Journal const& j) const;
};
/** Verify:
* - OutstandingAmount <= MaximumAmount for any MPT
* - OutstandingAmount after = OutstandingAmount before +
* sum (MPT after - MPT before) - this is total MPT credit/debit
/**
* @brief Verify public MPT amount and outstanding amount accounting.
*
* Checks that OutstandingAmount does not exceed MaximumAmount and that
* OutstandingAmount after application equals OutstandingAmount before
* application plus the net holder balance delta.
*/
class ValidMPTPayment
{
@@ -64,11 +89,104 @@ class ValidMPTPayment
hash_map<uint192, MPTData> data_;
public:
/**
* @brief Track MPT amount and outstanding amount changes.
*
* @param isDelete Whether the ledger entry is being deleted.
* @param before The ledger entry before transaction application.
* @param after The ledger entry after transaction application.
*/
void
visitEntry(bool, SLE::const_ref, SLE::const_ref);
visitEntry(bool isDelete, SLE::const_ref before, SLE::const_ref after);
/**
* @brief Verify public MPT payment accounting invariants.
*
* @param tx The transaction being checked.
* @param result The transaction result code.
* @param fee The fee charged by the transaction.
* @param view The ledger view after transaction application.
* @param j Journal used for diagnostics.
* @return true if the invariant checks pass, otherwise false.
*/
bool
finalize(STTx const&, TER const, XRPAmount const, ReadView const&, beast::Journal const&);
finalize(
STTx const& tx,
TER const result,
XRPAmount const fee,
ReadView const& view,
beast::Journal const& j);
};
/**
* @brief Invariants: Confidential MPToken consistency
*
* - Convert/ConvertBack symmetry:
* Regular MPToken balance change (±X) == COA (Confidential Outstanding Amount) change (∓X)
* - Cannot delete MPToken with non-zero confidential state:
* Cannot delete if sfIssuerEncryptedBalance exists
* Cannot delete if sfConfidentialBalanceInbox and sfConfidentialBalanceSpending exist
* - Privacy flag consistency:
* MPToken confidential balance fields can only be created or changed if
* lsfMPTCanHoldConfidentialBalance is set on the issuance.
* - Encrypted field existence consistency:
* If sfConfidentialBalanceSpending/sfConfidentialBalanceInbox exists, then
* sfIssuerEncryptedBalance must also exist (and vice versa). If
* sfAuditorEncryptedBalance exists, then those core encrypted balance fields
* must also exist.
* - COA <= OutstandingAmount:
* Confidential outstanding balance cannot exceed total outstanding.
* - Verifies sfConfidentialBalanceVersion is changed whenever sfConfidentialBalanceSpending is
* modified on an MPToken.
*/
class ValidConfidentialMPToken
{
struct Changes
{
std::int64_t mptAmountDelta = 0;
std::int64_t coaDelta = 0;
std::int64_t outstandingDelta = 0;
SLE::const_pointer issuance;
bool deletedWithEncrypted = false;
bool badConsistency = false;
bool badCOA = false;
bool changesConfidentialFields = false;
bool badVersion = false;
};
std::map<uint192, Changes> changes_;
public:
/**
* @brief Track confidential MPT balance, issuance, and version changes.
*
* @param isDelete Whether the ledger entry is being deleted.
* @param before The ledger entry before transaction application.
* @param after The ledger entry after transaction application.
*/
void
visitEntry(
bool isDelete,
std::shared_ptr<SLE const> const& before,
std::shared_ptr<SLE const> const& after);
/**
* @brief Verify confidential MPT accounting and encrypted-field
* invariants.
*
* @param tx The transaction being checked.
* @param result The transaction result code.
* @param fee The fee charged by the transaction.
* @param view The ledger view after transaction application.
* @param j Journal used for diagnostics.
* @return true if the invariant checks pass, otherwise false.
*/
bool
finalize(
STTx const& tx,
TER const result,
XRPAmount const fee,
ReadView const& view,
beast::Journal const& j);
};
class ValidMPTTransfer
@@ -85,11 +203,36 @@ class ValidMPTTransfer
hash_map<uint256, bool> deletedAuthorized_;
public:
/**
* @brief Track MPT balance changes and deleted authorization state.
*
* @param isDelete Whether the ledger entry is being deleted.
* @param before The ledger entry before transaction application.
* @param after The ledger entry after transaction application.
*/
void
visitEntry(bool, std::shared_ptr<SLE const> const&, std::shared_ptr<SLE const> const&);
visitEntry(
bool isDelete,
std::shared_ptr<SLE const> const& before,
std::shared_ptr<SLE const> const& after);
/**
* @brief Verify MPT transfer authorization invariants.
*
* @param tx The transaction being checked.
* @param result The transaction result code.
* @param fee The fee charged by the transaction.
* @param view The ledger view after transaction application.
* @param j Journal used for diagnostics.
* @return true if the invariant checks pass, otherwise false.
*/
bool
finalize(STTx const&, TER const, XRPAmount const, ReadView const&, beast::Journal const&);
finalize(
STTx const& tx,
TER const result,
XRPAmount const fee,
ReadView const& view,
beast::Journal const& j);
private:
/**
@@ -99,7 +242,13 @@ private:
* finalize() runs, so their authorization state is captured during
* visitEntry() and stored in deletedAuthorized_. For deleted MPTokens,
* returns true if reqAuth is false or lsfMPTAuthorized was set at deletion.
* For existing MPTokens, returns the result of requireAuth()
* For existing MPTokens, returns the result of requireAuth().
*
* @param view The ledger view after transaction application.
* @param mptid The MPToken issuance ID.
* @param holder The holder account being checked.
* @param requireAuth Whether the issuance requires explicit authorization.
* @return true if the holder is authorized, otherwise false.
*/
[[nodiscard]] bool
isAuthorized(

View File

@@ -27,7 +27,7 @@ checkFreeze(
}
}
if (auto sle = view.read(keylet::line(src, dst, currency)))
if (auto sle = view.read(keylet::trustLine(src, dst, currency)))
{
if (sle->isFlag((dst > src) ? lsfHighFreeze : lsfLowFreeze))
{
@@ -71,8 +71,8 @@ checkNoRipple(
beast::Journal j)
{
// fetch the ripple lines into and out of this node
auto sleIn = view.read(keylet::line(prev, cur, currency));
auto sleOut = view.read(keylet::line(cur, next, currency));
auto sleIn = view.read(keylet::trustLine(prev, cur, currency));
auto sleOut = view.read(keylet::trustLine(cur, next, currency));
if (!sleIn || !sleOut)
return terNO_LINE;

View File

@@ -159,6 +159,11 @@ public:
beast::Journal const& journal);
private:
/** Returns IgnoreFreeze when the withdrawer is the issuer of a pool
* asset (post-fixCleanup3_3_0), ZeroIfFrozen otherwise. */
[[nodiscard]] FreezeHandling
issuerFreezeHandling() const;
std::pair<TER, bool>
applyGuts(Sandbox& view);

View File

@@ -0,0 +1,59 @@
#pragma once
#include <xrpl/tx/Transactor.h>
namespace xrpl {
/**
* @brief Allows an MPT issuer to clawback confidential balances from a holder.
*
* This transaction enables the issuer of an MPToken Issuance (with clawback
* enabled) to reclaim confidential tokens from a holder's account. Unlike
* regular clawback, the issuer cannot see the holder's balance directly.
* Instead, the issuer must provide a zero-knowledge proof that demonstrates
* they know the exact encrypted balance amount.
*
* @par Cryptographic Operations:
* - **Equality Proof Verification**: Verifies that the issuer's revealed
* amount matches the holder's encrypted balance using the issuer's
* ElGamal private key.
*
* @see ConfidentialMPTSend, ConfidentialMPTConvert
*/
class ConfidentialMPTClawback : public Transactor
{
public:
static constexpr auto kConsequencesFactory = ConsequencesFactoryType::Normal;
explicit ConfidentialMPTClawback(ApplyContext& ctx) : Transactor(ctx)
{
}
static NotTEC
preflight(PreflightContext const& ctx);
static XRPAmount
calculateBaseFee(ReadView const& view, STTx const& tx);
static TER
preclaim(PreclaimContext const& ctx);
TER
doApply() override;
void
visitInvariantEntry(
bool isDelete,
std::shared_ptr<SLE const> const& before,
std::shared_ptr<SLE const> const& after) override;
[[nodiscard]] bool
finalizeInvariants(
STTx const& tx,
TER result,
XRPAmount fee,
ReadView const& view,
beast::Journal const& j) override;
};
} // namespace xrpl

View File

@@ -0,0 +1,61 @@
#pragma once
#include <xrpl/tx/Transactor.h>
namespace xrpl {
/**
* @brief Converts public (plaintext) MPT balance to confidential (encrypted)
* balance.
*
* This transaction allows a token holder to convert their publicly visible
* MPToken balance into an encrypted confidential balance. Once converted,
* the balance can only be spent using ConfidentialMPTSend transactions and
* remains hidden from public view on the ledger.
*
* @par Cryptographic Operations:
* - **Schnorr Proof Verification**: When registering a new ElGamal public key,
* verifies proof of knowledge of the corresponding private key.
* - **Revealed Amount Verification**: Verifies that the provided encrypted
* amounts (for holder, issuer, and optionally auditor) all encrypt the
* same plaintext amount using the provided blinding factor.
*
* @see ConfidentialMPTConvertBack, ConfidentialMPTSend
*/
class ConfidentialMPTConvert : public Transactor
{
public:
static constexpr auto kConsequencesFactory = ConsequencesFactoryType::Normal;
explicit ConfidentialMPTConvert(ApplyContext& ctx) : Transactor(ctx)
{
}
static NotTEC
preflight(PreflightContext const& ctx);
static XRPAmount
calculateBaseFee(ReadView const& view, STTx const& tx);
static TER
preclaim(PreclaimContext const& ctx);
TER
doApply() override;
void
visitInvariantEntry(
bool isDelete,
std::shared_ptr<SLE const> const& before,
std::shared_ptr<SLE const> const& after) override;
[[nodiscard]] bool
finalizeInvariants(
STTx const& tx,
TER result,
XRPAmount fee,
ReadView const& view,
beast::Journal const& j) override;
};
} // namespace xrpl

View File

@@ -0,0 +1,62 @@
#pragma once
#include <xrpl/tx/Transactor.h>
namespace xrpl {
/**
* @brief Converts confidential (encrypted) MPT balance back to public
* (plaintext) balance.
*
* This transaction allows a token holder to convert their encrypted
* confidential balance back into a publicly visible MPToken balance. The
* holder must prove they have sufficient confidential balance without
* revealing the actual balance amount.
*
* @par Cryptographic Operations:
* - **Revealed Amount Verification**: Verifies that the provided encrypted
* amounts correctly encrypt the conversion amount.
* - **Pedersen Linkage Proof**: Verifies that the provided balance commitment
* correctly links to the holder's encrypted spending balance.
* - **Bulletproof Range Proof**: Verifies that the remaining balance (after
* conversion) is non-negative, ensuring the holder has sufficient funds.
*
* @see ConfidentialMPTConvert, ConfidentialMPTSend
*/
class ConfidentialMPTConvertBack : public Transactor
{
public:
static constexpr auto kConsequencesFactory = ConsequencesFactoryType::Normal;
explicit ConfidentialMPTConvertBack(ApplyContext& ctx) : Transactor(ctx)
{
}
static NotTEC
preflight(PreflightContext const& ctx);
static XRPAmount
calculateBaseFee(ReadView const& view, STTx const& tx);
static TER
preclaim(PreclaimContext const& ctx);
TER
doApply() override;
void
visitInvariantEntry(
bool isDelete,
std::shared_ptr<SLE const> const& before,
std::shared_ptr<SLE const> const& after) override;
[[nodiscard]] bool
finalizeInvariants(
STTx const& tx,
TER result,
XRPAmount fee,
ReadView const& view,
beast::Journal const& j) override;
};
} // namespace xrpl

View File

@@ -0,0 +1,63 @@
#pragma once
#include <xrpl/tx/Transactor.h>
namespace xrpl {
/**
* @brief Merges the confidential inbox balance into the spending balance.
*
* In the confidential transfer system, incoming funds are deposited into an
* "inbox" balance that the recipient cannot immediately spend. This prevents
* front-running attacks where an attacker could invalidate a pending
* transaction by sending funds to the sender. This transaction merges the
* inbox into the spending balance, making those funds available for spending.
*
* @par Cryptographic Operations:
* - **Homomorphic Addition**: Adds the encrypted inbox balance to the
* encrypted spending balance using ElGamal homomorphic properties.
* - **Zero Encryption**: Resets the inbox to an encryption of zero.
*
* @note This transaction requires no zero-knowledge proofs because it only
* combines encrypted values that the holder already owns. The
* homomorphic properties of ElGamal encryption ensure correctness.
*
* @see ConfidentialMPTSend, ConfidentialMPTConvert
*/
class ConfidentialMPTMergeInbox : public Transactor
{
public:
static constexpr auto kConsequencesFactory = ConsequencesFactoryType::Normal;
explicit ConfidentialMPTMergeInbox(ApplyContext& ctx) : Transactor(ctx)
{
}
static NotTEC
preflight(PreflightContext const& ctx);
static XRPAmount
calculateBaseFee(ReadView const& view, STTx const& tx);
static TER
preclaim(PreclaimContext const& ctx);
TER
doApply() override;
void
visitInvariantEntry(
bool isDelete,
std::shared_ptr<SLE const> const& before,
std::shared_ptr<SLE const> const& after) override;
[[nodiscard]] bool
finalizeInvariants(
STTx const& tx,
TER result,
XRPAmount fee,
ReadView const& view,
beast::Journal const& j) override;
};
} // namespace xrpl

View File

@@ -0,0 +1,72 @@
#pragma once
#include <xrpl/tx/Transactor.h>
namespace xrpl {
/**
* @brief Transfers confidential MPT tokens between holders privately.
*
* This transaction enables private token transfers where the transfer amount
* is hidden from public view. Both sender and recipient must have initialized
* confidential balances. The transaction provides encrypted amounts for all
* parties (sender, destination, issuer, and optionally auditor) along with
* zero-knowledge proofs that verify correctness without revealing the amount.
*
* @par Cryptographic Operations:
* - **Multi-Ciphertext Equality Proof**: Verifies that all encrypted amounts
* (sender, destination, issuer, auditor) encrypt the same plaintext value.
* - **Amount Pedersen Linkage Proof**: Verifies that the amount commitment
* correctly links to the sender's encrypted amount.
* - **Balance Pedersen Linkage Proof**: Verifies that the balance commitment
* correctly links to the sender's encrypted spending balance.
* - **Bulletproof Range Proof**: Verifies remaining balance and
* transfer amount are non-negative.
*
* @note Funds are deposited into the destination's inbox, not spending
* balance. The recipient must call ConfidentialMPTMergeInbox to make
* received funds spendable.
*
* @see ConfidentialMPTMergeInbox, ConfidentialMPTConvert,
* ConfidentialMPTConvertBack
*/
class ConfidentialMPTSend : public Transactor
{
public:
static constexpr auto kConsequencesFactory = ConsequencesFactoryType::Normal;
explicit ConfidentialMPTSend(ApplyContext& ctx) : Transactor(ctx)
{
}
static bool
checkExtraFeatures(PreflightContext const& ctx);
static NotTEC
preflight(PreflightContext const& ctx);
static XRPAmount
calculateBaseFee(ReadView const& view, STTx const& tx);
static TER
preclaim(PreclaimContext const& ctx);
TER
doApply() override;
void
visitInvariantEntry(
bool isDelete,
std::shared_ptr<SLE const> const& before,
std::shared_ptr<SLE const> const& after) override;
[[nodiscard]] bool
finalizeInvariants(
STTx const& tx,
TER result,
XRPAmount fee,
ReadView const& view,
beast::Journal const& j) override;
};
} // namespace xrpl