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//! Typed result payloads for the control methods.
//!
//! Each struct is field-for-field identical to what dig-node emits (snake_case wire fields), so a
//! client deserializes the node's real response and re-serializes the same bytes — the property the
//! conformance KATs pin. Genuinely open/proxied shapes (the updater beacon's status, the peer-pool
//! snapshot, the pairing list) stay [`serde_json::Value`] on the call's `Output` rather than being
//! frozen into a struct that would drift from the proxied source.
use ;
/// The on-disk content-cache view (`control.cache.get`, and embedded in [`StatusResult`]).
/// The §21 sync availability flag embedded in [`StatusResult`].
/// How much of its own build a node reveals when it advertises (dig_ecosystem#2215).
///
/// Advertising an exact build is a fingerprinting aid — it tells an observer precisely which peers
/// run a version with a publicly disclosed defect. This is the operator's dial between that cost
/// and the diagnostic value of knowing what the network is running.
///
/// It lives here, beside [`PeerSoftware`], because rendering and parsing are two halves of one
/// format: a node that hand-rolled its own `product/version` string would be re-implementing half
/// the contract, and the two halves would drift. A node picks a mode; this type renders it.
/// A peer's advertised SOFTWARE build, as read from the gossip handshake (dig_ecosystem#2215).
///
/// dig-gossip carries the peer's `Handshake.software_version` as an opaque sanitized string and
/// deliberately does not interpret it. This type is where that string becomes meaning, once, at the
/// control boundary — so the interpretation is defined in one place and every client agrees.
///
/// # This is NOT the protocol version
///
/// Wire compatibility is a separate field that dig-gossip gates connections on. Two peers can speak
/// the same protocol while running builds months apart; this type reports the latter. It MUST NOT
/// be used to decide whether to talk to a peer.
///
/// # Why there is no `Ord` and no `Default`
///
/// [`Unknown`](PeerSoftware::Unknown) has no position on a version line: it is the absence of a
/// measurement, not a low value. Deriving `Ord` would place it somewhere — and every peer built
/// before #2215 is Unknown, so "somewhere" would silently become a verdict about most of the live
/// network. Comparison is therefore reachable only by destructuring
/// [`Reported`](PeerSoftware::Reported), which forces the caller to say what Unknown means for
/// their question. There is no `Default` for the same reason: a defaulted Unknown that appears from
/// nowhere is a different fact from one that was measured, and the two must not be confusable.
///
/// # JSON
///
/// ```json
/// {"kind": "unknown"}
/// {"kind": "reported", "product": "dig-node", "version": "0.99.1", "raw": "dig-node/0.99.1"}
/// ```
///
/// Unknown carries no `version` member at all — never version zero, never `""`, never `null` in a
/// field a consumer might read as a version.
/// Is this VERSION ZERO — the legacy "no version" sentinel, whatever it is dressed in?
///
/// Three of dig-gossip's four handshake send sites hardcoded `"0.0.0"` before dig_ecosystem#2215,
/// so version zero is not a hypothetical value: it is what the live fleet is sending right now. It
/// means "this build predates the field", which is [`PeerSoftware::Unknown`]; mapping it to a
/// *version* would make the whole existing network read as ancient.
///
/// The test is over the major/minor/patch TRIPLE, ignoring any pre-release or build metadata. A
/// peer advertising `0.0.0-rc.1` is no more versioned than one advertising `0.0.0`, and matching
/// the bare string would let the decorated forms through as real builds at version zero.
/// The separator between the product and the version in a `product/semver` advertisement.
const PRODUCT_VERSION_SEPARATOR: char = '/';
/// `control.status` — a rich node status snapshot.
/// `control.config.get` — the node's effective configuration.
/// `control.config.setUpstream` — the persisted override + a restart hint.
/// `control.log.setLevel` — the applied filter directive.
/// `control.cache.setCap` — the applied cap (after the 64 MiB floor).
/// `control.cache.clear` — the clear acknowledgement.
/// One cached capsule of a store, as listed by the hosted-stores methods.
/// One hosted/pinned store (`control.hostedStores.list`).
/// `control.hostedStores.list` — every held/pinned store.
/// `control.hostedStores.pin` — the pin acknowledgement + the pre-fetch outcome.
/// `control.hostedStores.unpin` — the unpin acknowledgement + eviction count.
/// `control.hostedStores.status` — per-store pinned flag + cached capsules.
/// `control.sync.status` — §21 sync availability + pin coverage.
/// `control.sync.trigger` — the synced-capsule outcome.
/// `control.pairing.approve` — the mint acknowledgement + the new token's id.
/// `control.pairing.revoke` — the revoke acknowledgement.
/// `control.peerCounts` — how many peers this node holds on EACH network.
///
/// # Two networks, two numbers, and neither is "peers"
///
/// A DIG node is connected to two entirely separate networks at once: the DIG content/gossip
/// network (port 9445), and the Chia full nodes its wallet chain sync talks to. The counts are
/// unrelated and move independently — a node with many DIG peers and no Chia peer is serving content
/// while its wallet is not syncing at all, and the reverse is equally possible.
///
/// So neither field is spelled `peers`, `connected_peers` or `peer_count`. A bare name forces a
/// consumer to KNOW which network a number describes, and the failure when it guesses wrong is
/// silent: a plausible integer in a right-looking place. This method exists so that one call answers
/// for both networks and each answer names its own.
///
/// # `relay.peer_count` from `control.peerStatus` is NOT this
///
/// That field counts the peers connected to THE RELAY, not to this node, and it is frequently the
/// only non-zero number on a node connected to nothing. It is never the answer to "how many peers
/// does this node have"; [`dig_peer_count`](Self::dig_peer_count) is.
///
/// # `Some(0)` is measured; `null` is unknown
///
/// `0` means the node looked at that network and found nothing connected. `null` means it cannot
/// observe the count at all — which is what a node whose peer network is not running reports, since
/// a zero there would claim "nothing is connected" about a network it never asked.
///
/// # Connected is not the same question as known
///
/// [`known_dig_peer_count`](PeerCountsResult::known_dig_peer_count) answers a THIRD question —
/// how many DIG peers this node has heard of, connected or not — so that a lonely node can say
/// which of the two ways it is lonely. Every count here is one node's local view; none of them is
/// the size of the network.
/// `control.peers.connect` — the connected peer's id.
/// `control.peers.disconnect` — the dropped peer's id.
/// `control.subscribe` — the subscription acknowledgement.
/// `control.unsubscribe` — the unsubscription acknowledgement.
/// `control.listSubscriptions` — the node's persisted subscription set.
/// `control.wallet.balance` — an address's balance for one asset, as the node's chain read saw it.
///
/// A READ-only result: this reports chain state, it never moves funds. It is a strict SUPERSET of
/// dig-app's frozen `BalanceResponse { balance }` — the node emits the richer shape, and because
/// dig-app's struct does not deny unknown fields it reads [`balance`](Self::balance) losslessly and
/// ignores the rest. That superset relationship is the "no dig-app code change" guarantee, pinned by
/// the conformance KAT.
/// Which tier answered a wallet read (dig_ecosystem#2233).
///
/// A node serves a wallet read either from its own chain replica or from a third-party HTTP
/// oracle, and the two are not interchangeable to a caller: the oracle path is a network round
/// trip that **discloses the queried address off-node**, which a user on a metered or private
/// connection has a legitimate interest in knowing about. Reporting the tier is also what makes
/// "the node answered from its own chain state" a falsifiable claim — a sync-progress flag is not,
/// since a flag can flip while the oracle keeps answering.
/// One coin, as the node's chain read saw it (`control.wallet.coins` / `control.wallet.coinById`).
///
/// The first three fields are byte-identical to dig-app's frozen `CoinRecord`, so its
/// `CoinsResponse` deserializes this losslessly and ignores the rest. The rest is what a spend
/// actually needs: a coin cannot be spent from an id and an amount alone — the parent and the
/// puzzle hash are what reconstruct the `Coin` — and the heights are how a caller tells a confirmed
/// coin from one it only saw in the mempool.
///
/// ONE record type serves both reads deliberately. A second coin shape would be a second thing to
/// keep in step with dig-app's frozen struct, and the two would drift byte-wise the first time only
/// one of them was touched.
/// `control.wallet.coins` — an address's spendable coins for one asset.
///
/// # An empty list is an ANSWER, never a fallback
///
/// `coins: []` means the node consulted a chain and that address holds nothing. It is NEVER what a
/// caller gets when the chain could not be reached: those are catalogued errors
/// ([`crate::error::ControlErrorCode::WalletNoChainSource`] / `WalletNotSynced` /
/// `WalletReadFailed` / `WalletRateLimited`). The distinction is the whole point of the method —
/// a well-shaped empty result on an unreachable chain would tell somebody who holds funds that they
/// hold nothing, and a spend built on that answer refuses with a shortfall that is not true.
/// Deserialize an `Option<T>` that is nullable but NOT omittable.
///
/// Serde special-cases a missing field of type `Option<T>` into `None`, so a required-but-nullable
/// field is not expressible by the derive alone. Naming a `deserialize_with` suppresses that
/// special case: an absent key becomes a `missing field` error, while an explicit `null` still
/// decodes to `None`.
/// `control.wallet.coinById` — ONE coin, named by its own id, spent or unspent.
///
/// # An absent coin is an ANSWER; an unreachable chain is an ERROR
///
/// `coin: null` means a chain WAS consulted and holds no such coin. It is NEVER what a caller gets
/// when the chain could not be reached: those are the catalogued errors
/// ([`crate::error::ControlErrorCode::WalletNoChainSource`] / `WalletReadFailed` /
/// `WalletRateLimited`). Collapsing the two turns "your wifi dropped" into "your mint never
/// happened", and the remedies are opposite: retry the read, versus stop waiting.
///
/// # Why this method exists — observing a mint
///
/// `control.wallet.broadcast`'s `accepted: true` reports mempool admission only; only a buried
/// confirmation of the CREATED COIN is evidence that a mint happened. `control.wallet.coins`
/// cannot supply it — it answers by ADDRESS and lists UNSPENT coins only, so it can see neither the
/// created DID coin nor the funding coin the mint spent. This method is how that evidence is
/// obtained: read the created coin's id for a `created_height`, and the funding coin's id for a
/// [`spent_height`](WalletCoinRecord::spent_height). Without it a mint can be pushed, real XCH can
/// leave the wallet, and the outcome stays permanently "pending".
///
/// # The freshness fields are honest, not decorative
///
/// [`source`](Self::source) discloses which tier answered, and every freshness field describes THAT
/// tier — the same rule the by-address reads carry. A `fallback` answer MUST report
/// [`synced`](Self::synced) `false` and [`peak_height`](Self::peak_height) `null` however caught-up
/// the node's own replica is, because the oracle produced the figures and the replica neither
/// produced them nor bounds their freshness. A `db` answer means the node's OWN replica answered, so
/// it MUST report `synced: true` and the replica's peak.
///
/// # A negative answer requires a view that could have held the coin
///
/// `coin: null` is a VERDICT — it says stop waiting — so it MUST NOT be served from a view that
/// could not have seen the coin in the first place. A node whose replica is still catching up, or
/// whose local index is address-scoped rather than a full chain view, has NOT established that the
/// coin is absent; it has only established that IT cannot see it. Such a node MUST return
/// [`WalletNoChainSource`](crate::error::ControlErrorCode::WalletNoChainSource) or
/// [`WalletReadFailed`](crate::error::ControlErrorCode::WalletReadFailed) and MUST NOT answer
/// `coin: null`.
///
/// This matters precisely for the two coins this method exists to observe. A created coin sits at no
/// wallet address and a spent funding coin is gone from every unspent list, so an address-scoped
/// replica is guaranteed to miss both — and a `coin: null` from it would report a mint that DID
/// happen as never-having-happened, with the funds already gone. `control.wallet.peak` is no escape
/// hatch here: it reports that same replica's height, which can bound a positive confirmation but
/// can never license a negative one.
/// One coin's SPEND: the coin that was consumed, plus the two programs that consumed it.
///
/// This is the chia `CoinSpend` in the contract's own wire form — the puzzle reveal and the solution
/// as lowercase hex of their serialized CLVM, beside the [`WalletCoinRecord`] for the spent coin.
/// The coin is carried as the SAME record type the other reads use rather than a trimmed
/// parent/puzzle-hash/amount triple, because a second coin shape is a second thing to keep in step
/// with dig-app's frozen `CoinRecord` (see [`WalletCoinRecord`]).
///
/// # The reveal is checkable, and a conforming node MUST have checked it
///
/// A puzzle reveal is supplied by a peer, and a lying peer can supply a different program. The
/// reveal's tree hash MUST equal the spent coin's own
/// [`puzzle_hash`](WalletCoinRecord::puzzle_hash), which makes the claim self-checking, and a node
/// MUST fail closed — a catalogued error, never a spend carrying an unverified reveal — when the
/// hashes disagree or the reveal does not parse. A caller MAY re-derive the same check from the two
/// fields it is handed; it never has to trust the node to have done it.
///
/// # `spent_height` is present on the coin, always
///
/// A spend exists only because the coin was spent, so
/// [`spent_height`](WalletCoinRecord::spent_height) MUST be non-null here. A spend reporting an
/// unspent coin is a contradiction the shape cannot forbid, so the contract forbids it instead.
/// `control.wallet.coinSpend` — the spend that spent one coin, named by that coin's id.
///
/// # `spend: null` is an ANSWER with TWO honest causes; an unreachable chain is an ERROR
///
/// `null` means a chain WAS consulted and no spend of that coin exists there — either because the
/// coin is UNSPENT, or because the chain holds no such coin at all. Both are legitimately "there is
/// no spend", and the contract deliberately does not distinguish them here: a caller that needs to
/// tell them apart asks [`WalletCoinByIdResult`], whose `coin: null` separates the two.
///
/// What `null` NEVER means is that the node could not answer. That is a catalogued error
/// ([`WalletNoChainSource`](crate::error::ControlErrorCode::WalletNoChainSource) /
/// [`WalletReadFailed`](crate::error::ControlErrorCode::WalletReadFailed) /
/// [`WalletRateLimited`](crate::error::ControlErrorCode::WalletRateLimited)). The three-valued
/// distinction is money-critical: a caller following a singleton forward reads "no spend" as *this
/// is the current tip* and stops walking. Collapsing "could not answer" into it makes a stale coin
/// look like the tip, and a spend built against a superseded singleton is invalid.
///
/// # A negative answer requires a view that could have held the spend
///
/// `spend: null` is a VERDICT, and the same rule [`WalletCoinByIdResult`] states applies unchanged: a
/// node whose replica is still catching up, or whose index is address-scoped rather than a full
/// chain view, has established only that IT cannot see the spend. Such a node MUST return
/// `WalletNoChainSource` / `WalletReadFailed` and MUST NOT answer `null`.
/// `control.wallet.coinsByParent` — the DIRECT children created by spending one coin.
///
/// # ONE hop, never a walk
///
/// The list is the coins the named parent's spend created, and nothing further. It is not a lineage,
/// not a subtree, and not transitive: a grandchild appears only when the caller asks again with the
/// child's id. A node MUST NOT recurse — an unbounded server-side walk over caller-supplied input is
/// work the caller cannot bound, and a partial walk returned as if complete would be a lineage with
/// a silent hole in it.
///
/// # A page, and it says so — the truncation rule
///
/// [`coins`](Self::coins) is ONE PAGE of the parent's children, bounded by
/// [`COINS_BY_PARENT_MAX_LIMIT`](crate::params::COINS_BY_PARENT_MAX_LIMIT). Whether it is the WHOLE
/// child set is stated by [`complete`](Self::complete) and never left to be inferred from the page's
/// length.
///
/// This is the money-critical shape in this type. A caller walking a lineage reads "no more
/// children" as *this branch ends here*, so a page that was truncated but looks whole terminates the
/// walk early and presents a partial lineage as a complete one. Inferring completeness from
/// `coins.len() < limit` is NOT equivalent and MUST NOT be done: a node is free to return a short
/// page for its own reasons, and a child set that is an exact multiple of the page size makes the
/// last full page indistinguishable from a truncated one.
///
/// # Resuming: the same lesson `control.wallet.arrivals` records
///
/// Resume from [`cursor`](Self::cursor) — the last child you were actually HANDED — by passing it
/// as [`after_coin_id`](crate::params::WalletCoinsByParentParams::after_coin_id). There is
/// deliberately no "where the chain got to" marker on this type to reach for instead; that is the
/// distinction `WalletArrivalsResult::latest` exists to warn about, and the cheapest way not to lose
/// a row to it is to give a caller nothing else to resume from.
///
/// # The order is part of the contract, because paging is meaningless without one
///
/// A node MUST return children in ASCENDING `coin_id` order, and MUST keep that order stable across
/// the pages of one walk. `after_coin_id` means *strictly after this id in that order*. Without a
/// fixed order a cursor names no position, and a walk would silently repeat some children and skip
/// others. Coin ids are fixed-length lowercase hex, so ascending lexicographic order and ascending
/// 32-byte numeric order are the SAME order — an implementation may use whichever it has, and the
/// two can never disagree.
///
/// # An empty list is an ANSWER, never a fallback
///
/// `coins: []` means the node consulted a chain and that parent created no children it knows of —
/// typically because the parent is unspent. It is NEVER what a caller gets when the chain could not
/// be reached: those are the catalogued errors
/// ([`WalletNoChainSource`](crate::error::ControlErrorCode::WalletNoChainSource) /
/// [`WalletReadFailed`](crate::error::ControlErrorCode::WalletReadFailed) /
/// [`WalletRateLimited`](crate::error::ControlErrorCode::WalletRateLimited)). The distinction is the
/// same one every read in this family carries, and it matters most here: a caller walking a
/// singleton forward reads an empty list as *this is the tip*.
///
/// # `asset` is `null` on every record
///
/// A child is named by its parent, not by an address and not by an asset, so this read classifies
/// nothing — exactly like [`WalletCoinByIdResult`]. Every record MUST report
/// [`asset`](WalletCoinRecord::asset) as `null` rather than assert a class the read never verified.
/// `control.wallet.peak` — the node's current chain peak height.
///
/// `peak_height: null` is an honest "this node tracks no height yet", not a zero. A caller bounding
/// a claimed confirmation MUST treat it as unknown rather than as height 0, which every block is
/// trivially above.
///
/// # This `synced` is the WEAKER of the contract's two same-named notions
///
/// [`synced`](Self::synced) here reports only that the replica's initial catch-up COMPLETED. It says
/// nothing about whether the wallet is still connected to a Chia peer, so a node that caught up
/// yesterday and has been offline since still reports `synced: true` beside a height that stopped
/// moving. [`WalletSyncStatusResult::phase`] answers the stronger question — *is this being kept
/// current?* — and `WalletSyncPhase::Synced` therefore IMPLIES this flag while this flag does not
/// imply that phase. The two are stated in terms of each other on purpose: they carry the same word
/// and would otherwise drift apart silently.
///
/// # The height is the last EXISTING block
///
/// It is the height of the last block the peer view reported, never a next-block height. A consumer
/// computing confirmation depth must floor its own arithmetic rather than assume a convention — see
/// [`WalletSyncStatusResult`], which records why.
/// How far the node's wallet chain replica has got — the states a background sync can be in.
///
/// Named states rather than a boolean, because "has never started" and "is caught up" are different
/// facts and a `bool` can only carry one of them. Paired with a `peak_height` a boolean forces a
/// never-started wallet to report some height, and 0 is the only one available — which reads as
/// *synced to the genesis block*, a claim about the chain that is simply false.
///
/// # Nothing to watch is TWO states, not one
///
/// A sync with no addresses to follow is idle for one of two reasons, and they are different
/// sentences to a user with different remedies. [`NoWalletEnrolled`](Self::NoWalletEnrolled) is the
/// honest all-clear: there is no wallet, so watching nothing is correct and complete.
/// [`WalletNotUnlocked`](Self::WalletNotUnlocked) is the opposite — a wallet EXISTS and is not being
/// watched — and reporting it as the all-clear tells a user with real coins that their balance is
/// fully accounted for while the node follows none of their addresses. Merging the two would put a
/// money-lie behind a green tick, so the contract keeps them apart.
///
/// # An unrecognised token is a VALUE, not a parse failure
///
/// [`Unrecognized`](Self::Unrecognized) exists because this enum was once closed, and a node that
/// grew a new phase took every consumer's whole response down with it — see the variant's own docs.
/// Consumers MUST treat an unrecognised phase as *unknown*, never as progress.
/// A phase token this build does not recognise, held so it cannot be confused with one it does.
///
/// # Why the payload is a type and not a bare `String`
///
/// [`WalletSyncPhase::Unrecognized`] serializes whatever it holds. With a public `String` inside,
/// `Unrecognized("synced".to_owned())` was constructible by any consumer, reported
/// `is_recognized() == false` locally, went onto the wire as the bare token `"synced"`, and arrived
/// at the far side as a confident [`WalletSyncPhase::Synced`] — a value that claims the wallet is
/// caught up while calling itself unrecognised. It was also the one value in the type that did not
/// round-trip, contradicting the verbatim-carriage guarantee the variant exists to provide.
///
/// The field is private and this type has no public constructor, so the only way to reach
/// `Unrecognized` from outside the crate is [`WalletSyncPhase::from`], which is TOTAL: hand it a
/// known spelling and it returns that known variant instead. The dishonest value is therefore not
/// merely discouraged — it cannot be built.
///
/// This is deliberately a type-level guard rather than a documented rule. The whole family exists
/// because a wire-level mismatch went unnoticed until someone built a probe, and a rule that only a
/// doc comment enforces is the same shape of mistake one layer up.
///
/// # The seal is guarded by a test that can actually see it removed
///
/// The ordinary unit tests cannot. They reach `Unrecognized` only through
/// [`WalletSyncPhase::from`], and the seal is precisely what determines which values that route can
/// produce — so making this field `pub` again leaves every one of them green while the forged
/// value becomes constructible. Measured: the whole suite passed with the field public.
///
/// A doctest is the instrument that works, because doctests compile as a SEPARATE CRATE and
/// therefore see this type exactly as a consumer does. The one below must FAIL to compile; if the
/// field is ever made public it starts compiling, and `cargo test` reports the doctest as failed.
///
/// ```compile_fail
/// use dig_node_control_interface::results::{UnknownPhaseToken, WalletSyncPhase};
/// // A value that calls itself unrecognised while spelling itself `synced` on the wire.
/// let forged = WalletSyncPhase::Unrecognized(UnknownPhaseToken("synced".to_owned()));
/// ```
///
/// The honest route returns the KNOWN variant instead, which is the whole point:
///
/// ```
/// use dig_node_control_interface::results::WalletSyncPhase;
/// assert_eq!(WalletSyncPhase::from("synced"), WalletSyncPhase::Synced);
/// assert!(WalletSyncPhase::from("synced").is_recognized());
/// ```
;
/// `control.wallet.syncStatus` — is the wallet's chain replica being kept current, how far has it
/// got, and how many Chia peers is it using?
///
/// # `Synced` means CAUGHT UP AND CONNECTED, not ONCE CAUGHT UP
///
/// [`phase`](Self::phase) is [`WalletSyncPhase::Synced`] only when the initial catch-up completed
/// AND at least one Chia peer connection is live right now. A wallet that caught up yesterday and
/// has been offline since MUST report [`Syncing`](WalletSyncPhase::Syncing). This makes `phase ==
/// Synced` STRICTLY STRONGER than [`WalletPeakResult::synced`], which reflects only the
/// completed-catch-up flag: `Synced` implies that flag, the flag does not imply `Synced`. Both types
/// say so, because the two notions share a word and nothing but the docs would keep them aligned.
///
/// This is the whole reason the method exists. A surface asking *does my wallet stay synced?* cannot
/// be answered by a flag that a disconnected wallet still sets.
///
/// **`Synced` is nevertheless not a freshness guarantee.** Being connected is not being up to date:
/// a live connection to a stalled or lagging peer satisfies the predicate while the replica goes
/// stale. The phase reports that catch-up finished and a peer is attached — that nothing KNOWN is
/// preventing the replica from being kept current — and a consumer needing actual freshness must
/// compare [`peak_height`](Self::peak_height) against something, not read this phase. Stating the
/// limit is the point: this family exists because a surface asserted more than it knew.
///
/// # The height NEVER comes from a third-party oracle
///
/// [`peak_height`](Self::peak_height) is the node's OWN replica's height or `null`. It MUST NOT fall
/// back to the coinset oracle. `control.wallet.peak` deliberately does fall back, because it answers
/// a different question — *what height is the chain at?* — whereas this field answers *how far has
/// this replica got?* An oracle's height here would report a caller's own sync progress using a
/// number the replica never reached, which is precisely the reading a progress display makes.
///
/// # `chia_peer_count: 0` is a disambiguator, not a phase
///
/// A sync that is running while connected to nothing reports `Syncing` with a count of `0`, and a
/// consumer SHOULD render the count alongside the phase for exactly that reason: "syncing — no
/// peers" is honest where a bare "syncing" implies progress that is not happening. `null` means the
/// node cannot observe the count at all and licenses no claim about connectivity either way.
///
/// # `watched_addresses` is what makes an idle sync readable
///
/// A sync following nothing is idle, and the phase alone does not say whether that is correct. The
/// count is the second fact that settles it: `0` beside [`WalletSyncPhase::NoWalletEnrolled`] is a
/// complete and honest picture, while `0` beside [`WalletSyncPhase::WalletNotUnlocked`] is a wallet
/// whose coins nobody is following. A consumer SHOULD render the two together for the same reason it
/// renders the peer count beside `Syncing`.
///
/// `Some(0)` is an OBSERVED zero — the node looked and is following no addresses. `None` means the
/// node did not report the number, which is not the same claim and MUST NOT be rendered as zero: a
/// node that cannot say how many addresses it follows has not told you that it follows none.
///
/// A `Synced` phase with `watched_addresses: Some(0)` is a contradiction a conforming node MUST NOT
/// emit — a sync following no addresses has not caught anything up. A consumer meeting it SHOULD
/// trust the count over the phase, because the count is the narrower claim.
///
/// # An older node's payload still parses
///
/// A node that predates `watched_addresses` omits the key, and it deserializes to `None` — *the node
/// did not report it*. That tolerance is required, not incidental: a mandatory new field would make
/// every older node unreadable to a client that has it, which is dig_ecosystem#2609 in mirror image
/// — the same fail-closed break with the old and new sides swapped. A contract that tolerates a
/// token from the future must equally tolerate a payload from the past.
///
/// **Every `Option` field here behaves this way**, because serde decodes a missing `Option` to
/// `None`. So `peak_height` and `chia_peer_count` are absent-tolerant too, and have been since this
/// type shipped. Only [`phase`](Self::phase) is structurally mandatory. A conforming node MUST still
/// emit all four keys — absence is a compatibility allowance for older builds, never a licence to
/// omit an observation — and a consumer MUST read an absent count as unreported rather than zero.
///
/// # These are CHIA peers, not DIG peers
///
/// [`chia_peer_count`](Self::chia_peer_count) counts CHIA FULL-NODE peers the wallet's chain sync is
/// connected to. It is NOT the DIG gossip/content peer count from `control.peerStatus`
/// (`connected_peers` / `relay_peer_count`); the two are unrelated numbers that move independently.
/// A surface that placed one of them beside a wallet sync status under a bare label of "peers" would
/// assert something false — a node with many DIG peers and no Chia peer is a wallet that is not
/// syncing at all. A caller that wants BOTH networks' counts reads [`PeerCountsResult`], which is
/// the one call that answers for each network by name.
///
/// # The duplicated field is ONE observation
///
/// [`chia_peer_count`](Self::chia_peer_count) also appears on [`PeerCountsResult`], and the two are
/// the SAME observation: a conforming node MUST serve them from one source, and they MUST agree
/// within a single node's view. The field is duplicated rather than moved because it is load-bearing
/// HERE — `chia_peer_count: 0` beside `Syncing` is the honest "syncing — no peers" state, and a
/// phase separated from its count reads as a contradiction. A DIG content-network count, by
/// contrast, is not a wallet fact and does not vary with wallet state, which is why it is absent
/// from this type rather than added for symmetry.
///
/// # Which field combinations are meaningful
///
/// `{phase: Synced, peak_height: null}` MUST NOT be emitted. A node records its peak BEFORE it marks
/// the initial catch-up complete, so a completed catch-up always has a height behind it; a `Synced`
/// with no height describes a state a conforming node cannot be in, and a consumer has no honest
/// reading for it.
///
/// `{phase: NotStarted, peak_height: <some height>}` is the opposite case, and is EXPLICITLY
/// LEGITIMATE — it is not a contradiction and MUST NOT be "fixed". The height is persisted in the
/// wallet database, while the phase describes whether a sync is running IN THIS PROCESS. A node that
/// synced yesterday and has just restarted reports exactly this, and reports it truthfully: *here is
/// the height I reached, and no sync is running right now.* Forbidding the pair would force a
/// conforming node to either fabricate a phase it is not in or discard a height it genuinely has —
/// which is the dishonesty this method was created to prevent. `peak_height: null` alongside
/// `NotStarted` is equally legitimate and means a wallet that has never synced at all.
///
/// # No confirmation-depth arithmetic happens here
///
/// The height recorded is the height of the LAST EXISTING block the peer view reported
/// (`NewPeakWallet.height` / `RespondPuzzleState.height` from a real full node). This surface
/// performs no depth arithmetic. dig_ecosystem#2483 records that `peak_height`'s meaning differs
/// between a simulator (the NEXT height) and a full node (the last existing one), so a consumer
/// computing depth must floor its own input rather than assume a convention.
/// `control.wallet.broadcast` — the outcome of pushing an already-signed bundle.
///
/// # A rejection is a VALUE; an unreachable network is an ERROR
///
/// A mempool that looked at the bundle and said no is a successful call with `accepted: false` and
/// a [`rejection`](Self::rejection) reason — the bundle was seen and judged. Failing to REACH a
/// mempool is a catalogued error instead. Collapsing the two turns "your wifi dropped" into "your
/// mint failed", and the remedies are opposite: retry the same bundle, versus build a new one.
///
/// # Accepted is not confirmed
///
/// `accepted: true` says the mempool took the bundle. It is not evidence that anything reached a
/// block, and a caller must never record an outcome from it — only a buried confirmation of the
/// created coin is evidence.
/// `control.wallet.watch` — the outcome of enrolling public keys.
///
/// # Two numbers, because idempotence is only observable with both
///
/// [`added`](Self::added) counts the keys this call newly enrolled; [`watched`](Self::watched) is the
/// size of the whole enrolled set afterwards. A re-enrolment of keys the node already follows is a
/// SUCCESS that reports `added: 0` with `watched` unchanged — which is how a client tells "already
/// done" from "nothing happened because the request was ignored". A single number could not: a
/// caller seeing only the total cannot distinguish its own duplicate call from another client's
/// concurrent enrolment.
/// `control.wallet.unwatch` — the outcome of deregistering public keys.
///
/// [`removed`](Self::removed) counts the submitted keys that were actually enrolled; a key that was
/// never enrolled is not an error, for the same reason a re-enrolment is not one — a client
/// reconciling its own state must be able to say "make sure these are gone" without first asking.
/// `control.wallet.watched` — the public keys the node currently follows.
///
/// # No count field
///
/// The list is the answer, and its length is the count. A separate number could disagree with the
/// list it is printed beside, and a client that trusted the number over the rows would reconcile
/// against a set that was never sent.
/// `pairing.request` — the pairing handshake bootstrap (OPEN, no token).
/// `pairing.poll` — the pairing poll outcome (OPEN, no token).
/// One confirmed incoming payment, as the node's arrival ledger recorded it.
///
/// Every field is a public chain fact about an address this node already watches. There is
/// deliberately no ticker and no formatted amount: naming an asset the node did not attribute, or
/// choosing a divisor for it, would be a claim about WHICH money arrived that the node cannot
/// support.
/// One page of the arrival ledger (`control.wallet.arrivals`).
///
/// An empty [`arrivals`](Self::arrivals) list is an ANSWER — the node consulted its own replica and
/// nothing has arrived since the cursor. It is NOT a claim that the replica is current: a node that
/// has never completed a catch-up has no arrival baseline and reports an empty page forever, which
/// is the honest answer to "what arrived?" from a wallet that cannot tell history from news. A
/// caller that needs to know whether the replica is current asks `control.wallet.syncStatus`.
/// `control.profile.putBody` — the acknowledgement that the node accepted and persisted a body.
///
/// Reaching this result at all means the node RESOLVED the root on chain and found it confirmed and
/// matching the supplied bytes. A refusal is an error, never a success carrying `stored: false` —
/// a caller that has to inspect a boolean to learn whether its profile published is a caller that
/// will forget to.
/// `control.profile.getBody` — the body this node holds at a store id + root, if it holds one.
///
/// `body_b64: None` MUST mean "this node was consulted and holds no body at that root". It NEVER
/// means the body could not be read: a read that failed MUST return a catalogued error instead. A
/// caller that cannot tell those apart shows an empty profile for a profile that exists.