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Per XLS-0095, we are taking steps to rename ripple(d) to xrpl(d). This change specifically removes all copyright notices referencing Ripple, XRPLF, and certain affiliated contributors upon mutual agreement, so the notice in the LICENSE.md file applies throughout. Copyright notices referencing external contributions remain as-is. Duplicate verbiage is also removed.
381 lines
9.1 KiB
C++
381 lines
9.1 KiB
C++
#ifndef XRPL_PROTOCOL_INDEXES_H_INCLUDED
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#define XRPL_PROTOCOL_INDEXES_H_INCLUDED
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#include <xrpl/basics/base_uint.h>
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#include <xrpl/protocol/Book.h>
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#include <xrpl/protocol/Keylet.h>
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#include <xrpl/protocol/LedgerFormats.h>
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#include <xrpl/protocol/Protocol.h>
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#include <xrpl/protocol/PublicKey.h>
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#include <xrpl/protocol/STXChainBridge.h>
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#include <xrpl/protocol/Serializer.h>
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#include <xrpl/protocol/UintTypes.h>
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#include <xrpl/protocol/jss.h>
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#include <cstdint>
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#include <set>
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namespace ripple {
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class SeqProxy;
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/** Keylet computation funclets.
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Entries in the ledger are located using 256-bit locators. The locators are
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calculated using a wide range of parameters specific to the entry whose
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locator we are calculating (e.g. an account's locator is derived from the
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account's address, whereas the locator for an offer is derived from the
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account and the offer sequence.)
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To enhance type safety during lookup and make the code more robust, we use
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keylets, which contain not only the locator of the object but also the type
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of the object being referenced.
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These functions each return a type-specific keylet.
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*/
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namespace keylet {
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/** AccountID root */
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Keylet
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account(AccountID const& id) noexcept;
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/** The index of the amendment table */
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Keylet const&
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amendments() noexcept;
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/** Any item that can be in an owner dir. */
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Keylet
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child(uint256 const& key) noexcept;
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/** The index of the "short" skip list
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The "short" skip list is a node (at a fixed index) that holds the hashes
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of ledgers since the last flag ledger. It will contain, at most, 256 hashes.
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*/
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Keylet const&
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skip() noexcept;
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/** The index of the long skip for a particular ledger range.
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The "long" skip list is a node that holds the hashes of (up to) 256 flag
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ledgers.
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It can be used to efficiently skip back to any ledger using only two hops:
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the first hop gets the "long" skip list for the ledger it wants to retrieve
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and uses it to get the hash of the flag ledger whose short skip list will
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contain the hash of the requested ledger.
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*/
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Keylet
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skip(LedgerIndex ledger) noexcept;
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/** The (fixed) index of the object containing the ledger fees. */
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Keylet const&
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fees() noexcept;
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/** The (fixed) index of the object containing the ledger negativeUNL. */
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Keylet const&
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negativeUNL() noexcept;
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/** The beginning of an order book */
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struct book_t
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{
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explicit book_t() = default;
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Keylet
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operator()(Book const& b) const;
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};
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static book_t const book{};
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/** The index of a trust line for a given currency
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Note that a trustline is *shared* between two accounts (commonly referred
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to as the issuer and the holder); if Alice sets up a trust line to Bob for
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BTC, and Bob trusts Alice for BTC, here is only a single BTC trust line
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between them.
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*/
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/** @{ */
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Keylet
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line(
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AccountID const& id0,
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AccountID const& id1,
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Currency const& currency) noexcept;
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inline Keylet
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line(AccountID const& id, Issue const& issue) noexcept
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{
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return line(id, issue.account, issue.currency);
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}
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/** @} */
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/** An offer from an account */
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/** @{ */
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Keylet
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offer(AccountID const& id, std::uint32_t seq) noexcept;
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inline Keylet
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offer(uint256 const& key) noexcept
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{
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return {ltOFFER, key};
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}
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/** @} */
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/** The initial directory page for a specific quality */
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Keylet
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quality(Keylet const& k, std::uint64_t q) noexcept;
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/** The directory for the next lower quality */
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struct next_t
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{
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explicit next_t() = default;
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Keylet
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operator()(Keylet const& k) const;
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};
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static next_t const next{};
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/** A ticket belonging to an account */
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struct ticket_t
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{
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explicit ticket_t() = default;
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Keylet
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operator()(AccountID const& id, std::uint32_t ticketSeq) const;
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Keylet
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operator()(AccountID const& id, SeqProxy ticketSeq) const;
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Keylet
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operator()(uint256 const& key) const
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{
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return {ltTICKET, key};
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}
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};
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static ticket_t const ticket{};
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/** A SignerList */
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Keylet
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signers(AccountID const& account) noexcept;
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/** A Check */
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/** @{ */
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Keylet
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check(AccountID const& id, std::uint32_t seq) noexcept;
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inline Keylet
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check(uint256 const& key) noexcept
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{
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return {ltCHECK, key};
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}
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/** @} */
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/** A DepositPreauth */
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/** @{ */
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Keylet
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depositPreauth(AccountID const& owner, AccountID const& preauthorized) noexcept;
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Keylet
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depositPreauth(
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AccountID const& owner,
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std::set<std::pair<AccountID, Slice>> const& authCreds) noexcept;
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inline Keylet
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depositPreauth(uint256 const& key) noexcept
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{
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return {ltDEPOSIT_PREAUTH, key};
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}
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/** @} */
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//------------------------------------------------------------------------------
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/** Any ledger entry */
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Keylet
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unchecked(uint256 const& key) noexcept;
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/** The root page of an account's directory */
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Keylet
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ownerDir(AccountID const& id) noexcept;
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/** A page in a directory */
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/** @{ */
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Keylet
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page(uint256 const& root, std::uint64_t index = 0) noexcept;
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inline Keylet
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page(Keylet const& root, std::uint64_t index = 0) noexcept
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{
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XRPL_ASSERT(
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root.type == ltDIR_NODE, "ripple::keylet::page : valid root type");
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return page(root.key, index);
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}
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/** @} */
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/** An escrow entry */
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Keylet
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escrow(AccountID const& src, std::uint32_t seq) noexcept;
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/** A PaymentChannel */
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Keylet
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payChan(AccountID const& src, AccountID const& dst, std::uint32_t seq) noexcept;
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/** NFT page keylets
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Unlike objects whose ledger identifiers are produced by hashing data,
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NFT page identifiers are composite identifiers, consisting of the owner's
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160-bit AccountID, followed by a 96-bit value that determines which NFT
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tokens are candidates for that page.
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*/
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/** @{ */
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/** A keylet for the owner's first possible NFT page. */
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Keylet
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nftpage_min(AccountID const& owner);
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/** A keylet for the owner's last possible NFT page. */
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Keylet
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nftpage_max(AccountID const& owner);
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Keylet
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nftpage(Keylet const& k, uint256 const& token);
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/** @} */
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/** An offer from an account to buy or sell an NFT */
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Keylet
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nftoffer(AccountID const& owner, std::uint32_t seq);
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inline Keylet
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nftoffer(uint256 const& offer)
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{
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return {ltNFTOKEN_OFFER, offer};
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}
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/** The directory of buy offers for the specified NFT */
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Keylet
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nft_buys(uint256 const& id) noexcept;
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/** The directory of sell offers for the specified NFT */
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Keylet
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nft_sells(uint256 const& id) noexcept;
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/** AMM entry */
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Keylet
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amm(Asset const& issue1, Asset const& issue2) noexcept;
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Keylet
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amm(uint256 const& amm) noexcept;
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/** A keylet for Delegate object */
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Keylet
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delegate(AccountID const& account, AccountID const& authorizedAccount) noexcept;
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Keylet
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bridge(STXChainBridge const& bridge, STXChainBridge::ChainType chainType);
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// `seq` is stored as `sfXChainClaimID` in the object
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Keylet
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xChainClaimID(STXChainBridge const& bridge, std::uint64_t seq);
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// `seq` is stored as `sfXChainAccountCreateCount` in the object
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Keylet
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xChainCreateAccountClaimID(STXChainBridge const& bridge, std::uint64_t seq);
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Keylet
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did(AccountID const& account) noexcept;
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Keylet
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oracle(AccountID const& account, std::uint32_t const& documentID) noexcept;
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Keylet
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credential(
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AccountID const& subject,
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AccountID const& issuer,
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Slice const& credType) noexcept;
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inline Keylet
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credential(uint256 const& key) noexcept
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{
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return {ltCREDENTIAL, key};
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}
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Keylet
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mptIssuance(std::uint32_t seq, AccountID const& issuer) noexcept;
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Keylet
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mptIssuance(MPTID const& issuanceID) noexcept;
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inline Keylet
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mptIssuance(uint256 const& issuanceKey)
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{
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return {ltMPTOKEN_ISSUANCE, issuanceKey};
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}
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Keylet
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mptoken(MPTID const& issuanceID, AccountID const& holder) noexcept;
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inline Keylet
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mptoken(uint256 const& mptokenKey)
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{
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return {ltMPTOKEN, mptokenKey};
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}
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Keylet
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mptoken(uint256 const& issuanceKey, AccountID const& holder) noexcept;
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Keylet
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vault(AccountID const& owner, std::uint32_t seq) noexcept;
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inline Keylet
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vault(uint256 const& vaultKey)
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{
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return {ltVAULT, vaultKey};
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}
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Keylet
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permissionedDomain(AccountID const& account, std::uint32_t seq) noexcept;
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Keylet
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permissionedDomain(uint256 const& domainID) noexcept;
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} // namespace keylet
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// Everything below is deprecated and should be removed in favor of keylets:
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uint256
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getBookBase(Book const& book);
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uint256
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getQualityNext(uint256 const& uBase);
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// VFALCO This name could be better
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std::uint64_t
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getQuality(uint256 const& uBase);
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uint256
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getTicketIndex(AccountID const& account, std::uint32_t uSequence);
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uint256
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getTicketIndex(AccountID const& account, SeqProxy ticketSeq);
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template <class... keyletParams>
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struct keyletDesc
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{
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std::function<Keylet(keyletParams...)> function;
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Json::StaticString expectedLEName;
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bool includeInTests;
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};
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// This list should include all of the keylet functions that take a single
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// AccountID parameter.
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std::array<keyletDesc<AccountID const&>, 6> const directAccountKeylets{
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{{&keylet::account, jss::AccountRoot, false},
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{&keylet::ownerDir, jss::DirectoryNode, true},
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{&keylet::signers, jss::SignerList, true},
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// It's normally impossible to create an item at nftpage_min, but
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// test it anyway, since the invariant checks for it.
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{&keylet::nftpage_min, jss::NFTokenPage, true},
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{&keylet::nftpage_max, jss::NFTokenPage, true},
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{&keylet::did, jss::DID, true}}};
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MPTID
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makeMptID(std::uint32_t sequence, AccountID const& account);
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} // namespace ripple
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#endif
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