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This change adds a fix amendment (`fixIncludeKeyletFields`) that adds: * `sfSequence` to `Escrow` and `PayChannel` * `sfOwner` to `SignerList` * `sfOracleDocumentID` to `Oracle` This ensures that all ledger entries hold all the information needed to determine their keylet.
400 lines
10 KiB
C++
400 lines
10 KiB
C++
//------------------------------------------------------------------------------
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/*
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This file is part of rippled: https://github.com/ripple/rippled
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Copyright (c) 2012, 2013 Ripple Labs Inc.
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Permission to use, copy, modify, and/or distribute this software for any
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purpose with or without fee is hereby granted, provided that the above
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copyright notice and this permission notice appear in all copies.
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THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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ANY SPECIAL , DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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//==============================================================================
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#ifndef RIPPLE_PROTOCOL_INDEXES_H_INCLUDED
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#define RIPPLE_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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