dig_node_control_interface/results.rs
1//! Typed result payloads for the control methods.
2//!
3//! Each struct is field-for-field identical to what dig-node emits (snake_case wire fields), so a
4//! client deserializes the node's real response and re-serializes the same bytes — the property the
5//! conformance KATs pin. Genuinely open/proxied shapes (the updater beacon's status, the peer-pool
6//! snapshot, the pairing list) stay [`serde_json::Value`] on the call's `Output` rather than being
7//! frozen into a struct that would drift from the proxied source.
8
9use serde::{Deserialize, Serialize};
10
11/// The on-disk content-cache view (`control.cache.get`, and embedded in [`StatusResult`]).
12#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
13pub struct CacheView {
14 /// The configured cache size cap, in bytes.
15 pub cap_bytes: u64,
16 /// Bytes currently used on disk.
17 pub used_bytes: u64,
18 /// The cache directory.
19 pub dir: String,
20 /// Whether the cache directory is the machine-wide shared cache.
21 pub shared: bool,
22}
23
24/// The §21 sync availability flag embedded in [`StatusResult`].
25#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
26pub struct SyncAvailability {
27 /// Whether authenticated §21 whole-store sync is available on this node.
28 pub available: bool,
29}
30
31/// How much of its own build a node reveals when it advertises (dig_ecosystem#2215).
32///
33/// Advertising an exact build is a fingerprinting aid — it tells an observer precisely which peers
34/// run a version with a publicly disclosed defect. This is the operator's dial between that cost
35/// and the diagnostic value of knowing what the network is running.
36///
37/// It lives here, beside [`PeerSoftware`], because rendering and parsing are two halves of one
38/// format: a node that hand-rolled its own `product/version` string would be re-implementing half
39/// the contract, and the two halves would drift. A node picks a mode; this type renders it.
40#[derive(Debug, Clone, Copy, PartialEq, Eq, Default, Serialize, Deserialize)]
41#[serde(rename_all = "lowercase")]
42pub enum SoftwareVersionDetail {
43 /// Advertise the exact build, e.g. `dig-node/0.99.1`. The default: the diagnostic value is why
44 /// the field exists, and an operator who disagrees opts down explicitly.
45 #[default]
46 Full,
47 /// Advertise only the major and minor level, e.g. `dig-node/0.99.0`. Hides the patch level, and
48 /// any pre-release or build metadata, while remaining READABLE at the far end.
49 Minor,
50 /// Advertise nothing. Indistinguishable from a peer built before this field existed, and reads
51 /// as [`PeerSoftware::Unknown`].
52 Off,
53}
54
55impl SoftwareVersionDetail {
56 /// Render the advertisement a node with this setting puts on its handshake.
57 ///
58 /// The result is ALWAYS either the empty string or a value [`PeerSoftware::parse`] reads back
59 /// as `Reported`. Coarsening reduces PRECISION; it never produces a value that reads as
60 /// Unknown while pretending to be a report. Two consequences follow, and both are tested:
61 ///
62 /// - [`Minor`](SoftwareVersionDetail::Minor) renders `MAJOR.MINOR.0`, never a bare
63 /// `MAJOR.MINOR` — two-part versions are not valid semver, so that spelling would read as
64 /// Unknown and become a second, confusing spelling of [`Off`](SoftwareVersionDetail::Off).
65 /// - `Minor` of a `0.0.x` build renders the EMPTY STRING, because its coarsening is version
66 /// zero and version zero is the "unknown" sentinel. There is no coarser representable value,
67 /// so it advertises nothing rather than advertising the sentinel as if it were a report.
68 ///
69 /// A coarsened `1.4.0` is indistinguishable from a genuine `1.4.0`. That is the point of
70 /// coarsening, not a defect in it.
71 pub fn render(self, product: &str, version: &semver::Version) -> String {
72 match self {
73 Self::Full => format!("{product}/{version}"),
74 // A pre-release identifier (`-nightly.20260805`) is more precisely identifying than the
75 // patch number beside it, so a "coarse" advertisement that kept it would coarsen
76 // nothing for exactly the builds that most want it. `Version::new` drops both it and
77 // any build metadata.
78 Self::Minor => {
79 let coarsened = semver::Version::new(version.major, version.minor, 0);
80 // Hiding the patch of a `0.0.x` build leaves version zero, which the wire reserves
81 // as the "unknown" sentinel. There is no coarser representable value, so advertise
82 // nothing rather than advertise the sentinel dressed up as a report. (This differs
83 // from the rejected two-part `MAJOR.MINOR` spelling: there a representable coarse
84 // value existed and the wrong one was chosen; here none exists.)
85 if is_version_zero(&coarsened) {
86 return String::new();
87 }
88 format!("{product}/{coarsened}")
89 }
90 Self::Off => String::new(),
91 }
92 }
93}
94
95/// A peer's advertised SOFTWARE build, as read from the gossip handshake (dig_ecosystem#2215).
96///
97/// dig-gossip carries the peer's `Handshake.software_version` as an opaque sanitized string and
98/// deliberately does not interpret it. This type is where that string becomes meaning, once, at the
99/// control boundary — so the interpretation is defined in one place and every client agrees.
100///
101/// # This is NOT the protocol version
102///
103/// Wire compatibility is a separate field that dig-gossip gates connections on. Two peers can speak
104/// the same protocol while running builds months apart; this type reports the latter. It MUST NOT
105/// be used to decide whether to talk to a peer.
106///
107/// # Why there is no `Ord` and no `Default`
108///
109/// [`Unknown`](PeerSoftware::Unknown) has no position on a version line: it is the absence of a
110/// measurement, not a low value. Deriving `Ord` would place it somewhere — and every peer built
111/// before #2215 is Unknown, so "somewhere" would silently become a verdict about most of the live
112/// network. Comparison is therefore reachable only by destructuring
113/// [`Reported`](PeerSoftware::Reported), which forces the caller to say what Unknown means for
114/// their question. There is no `Default` for the same reason: a defaulted Unknown that appears from
115/// nowhere is a different fact from one that was measured, and the two must not be confusable.
116///
117/// # JSON
118///
119/// ```json
120/// {"kind": "unknown"}
121/// {"kind": "reported", "product": "dig-node", "version": "0.99.1", "raw": "dig-node/0.99.1"}
122/// ```
123///
124/// Unknown carries no `version` member at all — never version zero, never `""`, never `null` in a
125/// field a consumer might read as a version.
126#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
127#[serde(tag = "kind", rename_all = "snake_case")]
128pub enum PeerSoftware {
129 /// The peer's build is not known: it advertised nothing, advertised VERSION ZERO — the legacy
130 /// sentinel, in any decoration (`0.0.0`, `0.0.0-rc.1`, `0.0.0+build`) — or advertised something
131 /// this contract cannot parse. See [`PeerSoftware::parse`] for why those three are one case.
132 Unknown,
133 /// The peer advertised a well-formed `product/semver` build.
134 Reported {
135 /// The product name, e.g. `dig-node`. Everything before the LAST `/`.
136 product: String,
137 /// The parsed semantic version, e.g. `0.99.1`. Serializes as its string form.
138 version: semver::Version,
139 /// Exactly what the peer advertised, after trimming.
140 ///
141 /// **Currently reconstructible, deliberately kept.** The grammar this parser accepts is
142 /// lossless — `semver::Version` re-renders every string it accepts byte-identically — so
143 /// today `raw` always equals `format!("{product}/{version}")`, and no test can distinguish
144 /// this field from that expression. It is retained as the honest source: the moment the
145 /// grammar accepts anything non-canonical (a `v` prefix, a two-part version, a vendor
146 /// suffix), a diagnostic reader must see what the peer actually sent rather than this
147 /// parser's opinion of it, and callers that already read `raw` will not need to change.
148 raw: String,
149 },
150}
151
152/// Is this VERSION ZERO — the legacy "no version" sentinel, whatever it is dressed in?
153///
154/// Three of dig-gossip's four handshake send sites hardcoded `"0.0.0"` before dig_ecosystem#2215,
155/// so version zero is not a hypothetical value: it is what the live fleet is sending right now. It
156/// means "this build predates the field", which is [`PeerSoftware::Unknown`]; mapping it to a
157/// *version* would make the whole existing network read as ancient.
158///
159/// The test is over the major/minor/patch TRIPLE, ignoring any pre-release or build metadata. A
160/// peer advertising `0.0.0-rc.1` is no more versioned than one advertising `0.0.0`, and matching
161/// the bare string would let the decorated forms through as real builds at version zero.
162fn is_version_zero(version: &semver::Version) -> bool {
163 version.major == 0 && version.minor == 0 && version.patch == 0
164}
165
166/// The separator between the product and the version in a `product/semver` advertisement.
167const PRODUCT_VERSION_SEPARATOR: char = '/';
168
169impl PeerSoftware {
170 /// Interpret a peer's advertised `software_version` string.
171 ///
172 /// Returns [`Unknown`](PeerSoftware::Unknown) for an empty or blank string, for anything that
173 /// is not `product/semver` with both parts non-empty and the version parsing as semver, and for
174 /// any advertisement whose version is VERSION ZERO.
175 ///
176 /// Version zero is the legacy sentinel and is matched as a CLASS, not as a string: the bare
177 /// `0.0.0`, a product-qualified `dig-node/0.0.0`, and every decorated form (`0.0.0-rc.1`,
178 /// `0.0.0+build`, `0.0.0-0`) all mean "unversioned". A peer advertising `0.0.0-rc.1` is no more
179 /// versioned than one advertising `0.0.0`.
180 ///
181 /// A product name may contain `/`; the split is at the LAST separator.
182 pub fn parse(advertised: &str) -> Self {
183 let raw = advertised.trim();
184
185 // No separator at all: an empty advertisement, a bare version, a product with no version,
186 // or a bare version-zero sentinel (`0.0.0`, `0.0.0-rc.1`) — none of which contain a `/`, so
187 // they land here rather than needing a clause of their own. None of them name a build.
188 let Some((product, version)) = raw.rsplit_once(PRODUCT_VERSION_SEPARATOR) else {
189 return Self::Unknown;
190 };
191 if product.is_empty() {
192 return Self::Unknown;
193 }
194 let Ok(version) = version.parse::<semver::Version>() else {
195 return Self::Unknown;
196 };
197 // The sentinel is VERSION ZERO, a class — not the three-character string. Comparing the
198 // PARSED version is what makes `0.0.0+build`, `0.0.0-rc.1`, and `0.0.0-0` Unknown too; a
199 // string comparison would report each of them as a real build at version zero.
200 if is_version_zero(&version) {
201 return Self::Unknown;
202 }
203
204 Self::Reported {
205 product: product.to_string(),
206 version,
207 raw: raw.to_string(),
208 }
209 }
210}
211
212/// `control.status` — a rich node status snapshot.
213#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
214pub struct StatusResult {
215 /// Always `true` for a responding node.
216 pub running: bool,
217 /// The service name (`"dig-node"`).
218 pub service: String,
219 /// The node binary's semantic version.
220 pub version: String,
221 /// The git commit the binary was built from (or `"unknown"`).
222 pub commit: String,
223 /// The DIG read protocol version the node speaks.
224 pub protocol: String,
225 /// Process uptime in seconds.
226 pub uptime_secs: u64,
227 /// The loopback `host:port` the node is bound to.
228 pub addr: String,
229 /// The upstream DIG RPC the node proxies/syncs to.
230 pub upstream: String,
231 /// The on-disk cache view.
232 pub cache: CacheView,
233 /// Distinct stores held (from the cache).
234 pub hosted_store_count: u64,
235 /// Cached capsule count.
236 pub cached_capsule_count: u64,
237 /// Pinned-store count.
238 pub pinned_store_count: u64,
239 /// §21 sync availability.
240 pub sync: SyncAvailability,
241}
242
243/// `control.config.get` — the node's effective configuration.
244#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
245pub struct ConfigResult {
246 /// The bound `host:port`.
247 pub addr: String,
248 /// The bound port, as a string.
249 pub port: String,
250 /// The effective upstream DIG RPC.
251 pub upstream: String,
252 /// The persisted upstream override, or `null` when unset.
253 pub upstream_override: Option<String>,
254 /// The cache directory.
255 pub cache_dir: String,
256 /// Whether the cache is the machine-wide shared cache.
257 pub cache_shared: bool,
258 /// The node's config.json path.
259 pub config_path: String,
260 /// Whether authenticated §21 sync is available.
261 pub sync_available: bool,
262}
263
264/// `control.config.setUpstream` — the persisted override + a restart hint.
265#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
266pub struct SetUpstreamResult {
267 /// The normalized upstream that was persisted.
268 pub upstream: String,
269 /// Always `true` — the change takes effect on next node start.
270 pub requires_restart: bool,
271}
272
273/// `control.log.setLevel` — the applied filter directive.
274#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
275pub struct SetLevelResult {
276 /// The EnvFilter directive now in effect.
277 pub filter: String,
278}
279
280/// `control.cache.setCap` — the applied cap (after the 64 MiB floor).
281#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
282pub struct SetCapResult {
283 /// The cache cap now in effect, in bytes.
284 pub cap_bytes: u64,
285}
286
287/// `control.cache.clear` — the clear acknowledgement.
288#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
289pub struct CacheClearResult {
290 /// Always `true`.
291 pub cleared: bool,
292}
293
294/// One cached capsule of a store, as listed by the hosted-stores methods.
295#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
296pub struct CapsuleEntry {
297 /// The capsule reference (`storeId:rootHash`).
298 pub capsule: String,
299 /// The capsule root hash.
300 pub root: String,
301 /// The capsule size on disk, in bytes.
302 pub size_bytes: u64,
303 /// When the capsule was last served, in unix milliseconds.
304 pub last_used_unix_ms: u64,
305}
306
307/// One hosted/pinned store (`control.hostedStores.list`).
308#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
309pub struct HostedStore {
310 /// The canonical lowercase 64-hex store id.
311 pub store_id: String,
312 /// Whether the operator has pinned this store.
313 pub pinned: bool,
314 /// The number of cached capsules of this store.
315 pub capsule_count: u64,
316 /// The total cached bytes across this store's capsules.
317 pub total_bytes: u64,
318 /// The cached capsules of this store.
319 pub capsules: Vec<CapsuleEntry>,
320}
321
322/// `control.hostedStores.list` — every held/pinned store.
323#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
324pub struct HostedStoresListResult {
325 /// The stores, one entry per distinct store id.
326 pub stores: Vec<HostedStore>,
327}
328
329/// `control.hostedStores.pin` — the pin acknowledgement + the pre-fetch outcome.
330#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
331pub struct PinResult {
332 /// The store id that was pinned.
333 pub store_id: String,
334 /// The pinned root, or `null` when pinned at store level.
335 pub root: Option<String>,
336 /// Always `true`.
337 pub pinned: bool,
338 /// The in-band pre-fetch outcome (`{status, …}`) — its shape varies with the fetch path.
339 pub fetch: serde_json::Value,
340}
341
342/// `control.hostedStores.unpin` — the unpin acknowledgement + eviction count.
343#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
344pub struct UnpinResult {
345 /// The store id that was unpinned.
346 pub store_id: String,
347 /// Whether a pin registry entry was actually removed.
348 pub unpinned: bool,
349 /// How many cached capsules of the store were evicted.
350 pub evicted_capsules: u64,
351}
352
353/// `control.hostedStores.status` — per-store pinned flag + cached capsules.
354#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
355pub struct HostedStoreStatusResult {
356 /// The store id queried.
357 pub store_id: String,
358 /// Whether the store is pinned.
359 pub pinned: bool,
360 /// The number of cached capsules.
361 pub capsule_count: u64,
362 /// The total cached bytes.
363 pub total_bytes: u64,
364 /// The cached capsules.
365 pub capsules: Vec<CapsuleEntry>,
366}
367
368/// `control.sync.status` — §21 sync availability + pin coverage.
369#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
370pub struct SyncStatusResult {
371 /// Whether authenticated §21 whole-store sync is available.
372 pub available: bool,
373 /// The sync method name.
374 pub method: String,
375 /// The number of pinned stores.
376 pub pinned_total: u64,
377 /// How many pinned stores currently have a cached capsule.
378 pub pinned_synced: u64,
379 /// Whether whole-store (root-less) sync is supported by this build.
380 pub whole_store_trigger_supported: bool,
381}
382
383/// `control.sync.trigger` — the synced-capsule outcome.
384#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
385pub struct SyncTriggerResult {
386 /// The store id synced.
387 pub store_id: String,
388 /// The capsule root synced.
389 pub root: String,
390 /// The outcome status (`"synced"`).
391 pub status: String,
392 /// The synced capsule size, in bytes.
393 pub size_bytes: u64,
394 /// The served root the node verified against.
395 pub served_root: String,
396}
397
398/// `control.pairing.approve` — the mint acknowledgement + the new token's id.
399#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
400pub struct PairingApproveResult {
401 /// Always `true`.
402 pub approved: bool,
403 /// The requesting client's declared name.
404 pub client_name: String,
405 /// The short id of the minted paired token (used to revoke it).
406 pub token_id: String,
407}
408
409/// `control.pairing.revoke` — the revoke acknowledgement.
410#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
411pub struct PairingRevokeResult {
412 /// Whether a token was actually removed.
413 pub revoked: bool,
414 /// The token id that was targeted.
415 pub token_id: String,
416}
417
418/// `control.peers.connect` — the connected peer's id.
419#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
420pub struct PeersConnectResult {
421 /// Always `true` on success.
422 pub connected: bool,
423 /// The connected peer's id.
424 pub peer_id: String,
425}
426
427/// `control.peers.disconnect` — the dropped peer's id.
428#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
429pub struct PeersDisconnectResult {
430 /// Always `true` (idempotent — dropping an absent peer still succeeds).
431 pub disconnected: bool,
432 /// The peer id that was targeted (trimmed + lower-cased).
433 pub peer_id: String,
434}
435
436/// `control.subscribe` — the subscription acknowledgement.
437#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
438pub struct SubscribeResult {
439 /// Always `true`.
440 pub subscribed: bool,
441 /// Whether the store was newly added (vs already subscribed).
442 pub added: bool,
443 /// The canonical persisted store id (trimmed + lower-cased).
444 pub store_id: String,
445}
446
447/// `control.unsubscribe` — the unsubscription acknowledgement.
448#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
449pub struct UnsubscribeResult {
450 /// Always `false`.
451 pub subscribed: bool,
452 /// Whether the store was actually removed.
453 pub removed: bool,
454 /// The canonical store id.
455 pub store_id: String,
456}
457
458/// `control.listSubscriptions` — the node's persisted subscription set.
459#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
460pub struct ListSubscriptionsResult {
461 /// The subscribed store ids.
462 pub subscriptions: Vec<String>,
463 /// The subscription count.
464 pub count: u64,
465}
466
467/// `control.wallet.balance` — an address's balance for one asset, as the node's chain read saw it.
468///
469/// A READ-only result: this reports chain state, it never moves funds. It is a strict SUPERSET of
470/// dig-app's frozen `BalanceResponse { balance }` — the node emits the richer shape, and because
471/// dig-app's struct does not deny unknown fields it reads [`balance`](Self::balance) losslessly and
472/// ignores the rest. That superset relationship is the "no dig-app code change" guarantee, pinned by
473/// the conformance KAT.
474#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
475pub struct WalletBalanceResult {
476 /// The CONFIRMED, spendable balance in the asset's base unit (mojos for XCH, base units for DIG).
477 /// The only field dig-app 3.x reads.
478 pub balance: u64,
479 /// Incoming funds seen but not yet confirmed (asset base units); not yet spendable.
480 pub pending: u64,
481 /// Which tier produced these figures, or `None` from a node too old to disclose it.
482 ///
483 /// See [`WalletReadSource`]. Absent (`null` / omitted) is a THIRD state, not a default tier:
484 /// it means the answering node predates tier disclosure, so the caller knows the tier is
485 /// unknown rather than being told a tier that was never reported.
486 ///
487 /// The [`Option`] carries the backwards compatibility on its own — serde treats a missing
488 /// `Option` field as `None` — so no `#[serde(default)]` is needed and none is written; a
489 /// REQUIRED field here would reject an older node's payload outright.
490 pub source: Option<WalletReadSource>,
491 /// Whether THESE figures reflect a caught-up local view. When `false`, they are STALE or came
492 /// from the fallback tier.
493 ///
494 /// This describes the ANSWER, not the node: a [`WalletReadSource::Fallback`] answer is always
495 /// `false`, however caught-up the node's own replica happens to be.
496 pub synced: bool,
497 /// The peak block height the reported figures reflect, or `null` when no height applies —
498 /// including every [`WalletReadSource::Fallback`] answer, whose figures came from the oracle's
499 /// chain view rather than the node's.
500 pub peak_height: Option<u32>,
501}
502
503/// Which tier answered a wallet read (dig_ecosystem#2233).
504///
505/// A node serves a wallet read either from its own chain replica or from a third-party HTTP
506/// oracle, and the two are not interchangeable to a caller: the oracle path is a network round
507/// trip that **discloses the queried address off-node**, which a user on a metered or private
508/// connection has a legitimate interest in knowing about. Reporting the tier is also what makes
509/// "the node answered from its own chain state" a falsifiable claim — a sync-progress flag is not,
510/// since a flag can flip while the oracle keeps answering.
511#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
512#[serde(rename_all = "lowercase")]
513pub enum WalletReadSource {
514 /// The node's own local chain replica. No third party was consulted.
515 Db,
516 /// A third-party coinset HTTP oracle. The queried address was disclosed off-node.
517 Fallback,
518}
519
520/// One spendable coin, as the node's chain read saw it (`control.wallet.coins`).
521///
522/// The first three fields are byte-identical to dig-app's frozen `CoinRecord`, so its
523/// `CoinsResponse` deserializes this losslessly and ignores the rest. The rest is what a spend
524/// actually needs: a coin cannot be spent from an id and an amount alone — the parent and the
525/// puzzle hash are what reconstruct the `Coin` — and the heights are how a caller tells a confirmed
526/// coin from one it only saw in the mempool.
527#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
528pub struct WalletCoinRecord {
529 /// The coin id, lowercase 64-hex, unprefixed.
530 pub coin_id: String,
531 /// The asset this coin is denominated in.
532 pub asset: crate::params::Asset,
533 /// The coin's amount, in the asset's base unit.
534 pub amount: u64,
535 /// The parent coin's id, lowercase 64-hex, unprefixed.
536 pub parent_coin_info: String,
537 /// The coin's puzzle hash, lowercase 64-hex, unprefixed.
538 pub puzzle_hash: String,
539 /// The height the coin was created at, or `null` while it is still only in the mempool.
540 pub created_height: Option<u32>,
541 /// The height the coin was spent at, or `null` when it is unspent.
542 pub spent_height: Option<u32>,
543}
544
545/// `control.wallet.coins` — an address's spendable coins for one asset.
546///
547/// # An empty list is an ANSWER, never a fallback
548///
549/// `coins: []` means the node consulted a chain and that address holds nothing. It is NEVER what a
550/// caller gets when the chain could not be reached: those are catalogued errors
551/// ([`crate::error::ControlErrorCode::WalletNoChainSource`] / `WalletNotSynced` /
552/// `WalletReadFailed` / `WalletRateLimited`). The distinction is the whole point of the method —
553/// a well-shaped empty result on an unreachable chain would tell somebody who holds funds that they
554/// hold nothing, and a spend built on that answer refuses with a shortfall that is not true.
555#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
556pub struct WalletCoinsResult {
557 /// The spendable coins found at the address, possibly empty (see the type docs).
558 pub coins: Vec<WalletCoinRecord>,
559 /// Which tier answered, or `None` from a node too old to disclose it. See [`WalletReadSource`].
560 pub source: Option<WalletReadSource>,
561 /// Whether THESE coins reflect a caught-up local view; always `false` for a fallback answer.
562 pub synced: bool,
563 /// The peak height these coins reflect, or `null` when none applies (every fallback answer).
564 pub peak_height: Option<u32>,
565}
566
567/// `control.wallet.peak` — the node's current chain peak height.
568///
569/// `peak_height: null` is an honest "this node tracks no height yet", not a zero. A caller bounding
570/// a claimed confirmation MUST treat it as unknown rather than as height 0, which every block is
571/// trivially above.
572#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
573pub struct WalletPeakResult {
574 /// The peak block height the node's chain view has reached, or `null` when it has none.
575 pub peak_height: Option<u32>,
576 /// Whether the node's own chain replica is caught up to that peak.
577 pub synced: bool,
578}
579
580/// `control.wallet.broadcast` — the outcome of pushing an already-signed bundle.
581///
582/// # A rejection is a VALUE; an unreachable network is an ERROR
583///
584/// A mempool that looked at the bundle and said no is a successful call with `accepted: false` and
585/// a [`rejection`](Self::rejection) reason — the bundle was seen and judged. Failing to REACH a
586/// mempool is a catalogued error instead. Collapsing the two turns "your wifi dropped" into "your
587/// mint failed", and the remedies are opposite: retry the same bundle, versus build a new one.
588///
589/// # Accepted is not confirmed
590///
591/// `accepted: true` says the mempool took the bundle. It is not evidence that anything reached a
592/// block, and a caller must never record an outcome from it — only a buried confirmation of the
593/// created coin is evidence.
594#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
595pub struct WalletBroadcastResult {
596 /// Whether the network accepted the bundle into its mempool.
597 pub accepted: bool,
598 /// The transaction id (the spend bundle's name), lowercase 64-hex, when accepted.
599 pub transaction_id: Option<String>,
600 /// Why the mempool refused, when it refused. `null` on acceptance.
601 pub rejection: Option<String>,
602}
603
604/// `pairing.request` — the pairing handshake bootstrap (OPEN, no token).
605#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
606pub struct PairingRequestResult {
607 /// The opaque pairing id to poll with.
608 pub pairing_id: String,
609 /// A short numeric code the operator compares before approving.
610 pub pairing_code: String,
611 /// When the pending pairing expires, in unix milliseconds.
612 pub expires_ms: u64,
613}
614
615/// `pairing.poll` — the pairing poll outcome (OPEN, no token).
616#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
617pub struct PairingPollResult {
618 /// The pairing status (`"pending"` / `"approved"` / …).
619 pub status: String,
620 /// The minted scoped token, present exactly once after approval.
621 #[serde(skip_serializing_if = "Option::is_none", default)]
622 pub token: Option<String>,
623}
624
625#[cfg(test)]
626mod tests {
627 use super::*;
628 use serde_json::json;
629
630 #[test]
631 fn status_result_round_trips_the_node_shape() {
632 let v = json!({
633 "running": true, "service": "dig-node", "version": "0.30.0", "commit": "abc",
634 "protocol": "21", "uptime_secs": 5, "addr": "127.0.0.1:9256", "upstream": "https://rpc.dig.net",
635 "cache": {"cap_bytes": 1024, "used_bytes": 10, "dir": "/c", "shared": false},
636 "hosted_store_count": 2, "cached_capsule_count": 3, "pinned_store_count": 1,
637 "sync": {"available": true}
638 });
639 let parsed: StatusResult = serde_json::from_value(v.clone()).unwrap();
640 assert_eq!(serde_json::to_value(&parsed).unwrap(), v);
641 }
642
643 #[test]
644 fn config_result_keeps_upstream_override_null_when_unset() {
645 let parsed = ConfigResult {
646 addr: "127.0.0.1:9256".into(),
647 port: "9256".into(),
648 upstream: "https://rpc.dig.net".into(),
649 upstream_override: None,
650 cache_dir: "/c".into(),
651 cache_shared: false,
652 config_path: "/c/config.json".into(),
653 sync_available: true,
654 };
655 let v = serde_json::to_value(&parsed).unwrap();
656 assert_eq!(v["upstream_override"], json!(null));
657 assert!(v.as_object().unwrap().contains_key("upstream_override"));
658 }
659
660 #[test]
661 fn pairing_poll_omits_token_until_approved() {
662 let pending = PairingPollResult {
663 status: "pending".into(),
664 token: None,
665 };
666 let v = serde_json::to_value(&pending).unwrap();
667 assert_eq!(v, json!({"status": "pending"}));
668 let approved = PairingPollResult {
669 status: "approved".into(),
670 token: Some("deadbeef".into()),
671 };
672 assert_eq!(
673 serde_json::to_value(&approved).unwrap(),
674 json!({"status": "approved", "token": "deadbeef"})
675 );
676 }
677
678 // ---- PeerSoftware (dig_ecosystem#2215) ----
679
680 /// The mapping that matters most. Every peer built before #2215 advertises the LITERAL
681 /// `"0.0.0"` — three of dig-gossip's four handshake send sites hardcoded it. A parser that
682 /// maps only `""` to Unknown would therefore read the entire live fleet as "software version
683 /// 0.0.0", which any later `>=` comparison treats as ancient. `""`, `"0.0.0"`, and anything
684 /// unparseable must all be Unknown, and this test is that mapping's guard.
685 #[test]
686 fn unknown_covers_empty_the_legacy_sentinel_and_garbage() {
687 for raw in [
688 "", // a peer advertising nothing, or `off` coarsening
689 "0.0.0", // the pre-#2215 legacy sentinel
690 " ", // whitespace only
691 "dig-node", // no version part
692 "dig-node/", // empty version part
693 "dig-node/not-a-version", // unparseable version
694 "/1.2.3", // empty product part
695 "1.2.3", // bare version, no product
696 "dig-node/0.0.0", // the sentinel, however it is dressed up
697 ] {
698 assert_eq!(
699 PeerSoftware::parse(raw),
700 PeerSoftware::Unknown,
701 "{raw:?} must map to Unknown"
702 );
703 }
704 }
705
706 /// A well-formed `product/semver` advertisement is reported with all three parts, and `raw`
707 /// preserves exactly what the peer sent so a diagnostic reader is never shown a value the peer
708 /// did not actually advertise.
709 #[test]
710 fn reported_carries_product_version_and_the_raw_advertisement() {
711 let parsed = PeerSoftware::parse("dig-node/0.99.1");
712 let PeerSoftware::Reported {
713 product,
714 version,
715 raw,
716 } = parsed
717 else {
718 panic!("a well-formed advertisement must be Reported");
719 };
720 assert_eq!(product, "dig-node");
721 assert_eq!(version, semver::Version::new(0, 99, 1));
722 assert_eq!(raw, "dig-node/0.99.1");
723 }
724
725 /// A product name may itself contain a `/`; only the LAST separator splits product from
726 /// version. Pinning this stops a future reader from switching to a first-separator split,
727 /// which would silently reclassify such a peer as Unknown.
728 #[test]
729 fn product_is_split_at_the_last_separator() {
730 let PeerSoftware::Reported {
731 product, version, ..
732 } = PeerSoftware::parse("acme/dig-node/1.2.3")
733 else {
734 panic!("expected Reported");
735 };
736 assert_eq!(product, "acme/dig-node");
737 assert_eq!(version, semver::Version::new(1, 2, 3));
738 }
739
740 /// Surrounding whitespace is trimmed before parsing, and `raw` records the TRIMMED
741 /// advertisement. CON-008 sanitization strips Unicode Cc/Cf from the wire value but not
742 /// spaces, so a padded advertisement reaches this parser intact and must not be classified as
743 /// unparseable merely for having been padded.
744 #[test]
745 fn surrounding_whitespace_is_trimmed_before_parsing() {
746 let PeerSoftware::Reported {
747 product,
748 version,
749 raw,
750 } = PeerSoftware::parse(" dig-node/1.2.3 ")
751 else {
752 panic!("a padded advertisement must still be Reported");
753 };
754 assert_eq!(product, "dig-node");
755 assert_eq!(version, semver::Version::new(1, 2, 3));
756 assert_eq!(raw, "dig-node/1.2.3", "raw must record the trimmed value");
757 }
758
759 /// A pre-release/build-metadata semver survives intact, because that is what a nightly build
760 /// advertises and dropping it would make every nightly indistinguishable from its release.
761 #[test]
762 fn prerelease_versions_are_preserved() {
763 let PeerSoftware::Reported { version, raw, .. } =
764 PeerSoftware::parse("dig-node/1.0.0-nightly.20260805")
765 else {
766 panic!("expected Reported");
767 };
768 assert_eq!(version.to_string(), "1.0.0-nightly.20260805");
769 assert_eq!(raw, "dig-node/1.0.0-nightly.20260805");
770 }
771
772 /// Unknown's JSON is a tagged object — never `"0.0.0"`, never `""`, never a null sitting in a
773 /// version field where a consumer might read it as a number.
774 #[test]
775 fn unknown_serializes_as_a_tagged_object_with_no_version_field() {
776 let v = serde_json::to_value(PeerSoftware::Unknown).unwrap();
777 assert_eq!(v, json!({"kind": "unknown"}));
778 assert!(
779 v.get("version").is_none(),
780 "Unknown must not carry a version field at all"
781 );
782 }
783
784 /// Both variants round-trip byte-identically, which is what lets a client re-encode a node's
785 /// response unchanged.
786 #[test]
787 fn both_variants_round_trip_byte_identically() {
788 for wire in [
789 json!({"kind": "unknown"}),
790 json!({
791 "kind": "reported",
792 "product": "dig-node",
793 "version": "0.99.1",
794 "raw": "dig-node/0.99.1"
795 }),
796 ] {
797 let parsed: PeerSoftware = serde_json::from_value(wire.clone()).unwrap();
798 assert_eq!(serde_json::to_value(&parsed).unwrap(), wire);
799 }
800 }
801
802 /// Parsing a wire string and serializing the result produces the documented JSON, so the two
803 /// halves of the contract cannot drift from each other.
804 #[test]
805 fn parse_then_serialize_matches_the_documented_json() {
806 assert_eq!(
807 serde_json::to_value(PeerSoftware::parse("dig-node/0.99.1")).unwrap(),
808 json!({
809 "kind": "reported",
810 "product": "dig-node",
811 "version": "0.99.1",
812 "raw": "dig-node/0.99.1"
813 })
814 );
815 assert_eq!(
816 serde_json::to_value(PeerSoftware::parse("0.0.0")).unwrap(),
817 json!({"kind": "unknown"})
818 );
819 }
820
821 // ---- Trait-absence probes (dig_ecosystem#2215) ----
822 //
823 // `PeerSoftware` deriving `Ord` or `Default` would be a silent correctness regression rather
824 // than a compile error anywhere, so it is pinned here. The probe exploits inherent-impl
825 // precedence: `Probe::<T>::has_it()` resolves to the inherent impl (returning `true`) only when
826 // `T` satisfies the bound, and otherwise falls back to the blanket trait impl (`false`).
827 //
828 // Each probe carries a CONTROL on a type that DOES implement the trait. Without the control, a
829 // probe broken so that it always answers `false` would pass while proving nothing.
830
831 struct Probe<T>(core::marker::PhantomData<T>);
832
833 trait ProbeFallback {
834 fn is_ord() -> bool {
835 false
836 }
837 }
838 impl<T> ProbeFallback for Probe<T> {}
839
840 impl<T: Ord> Probe<T> {
841 fn is_ord() -> bool {
842 true
843 }
844 }
845
846 struct PartialOrdProbe<T>(core::marker::PhantomData<T>);
847 trait PartialOrdFallback {
848 fn is_partial_ord() -> bool {
849 false
850 }
851 }
852 impl<T> PartialOrdFallback for PartialOrdProbe<T> {}
853 impl<T: PartialOrd> PartialOrdProbe<T> {
854 fn is_partial_ord() -> bool {
855 true
856 }
857 }
858
859 /// A version comparison must be unreachable without first destructuring `Reported`, so that a
860 /// caller cannot order `Unknown` against a real version — which, since every pre-#2215 peer is
861 /// Unknown, would quietly become a verdict about most of the live network.
862 #[test]
863 fn peer_software_is_not_ordered() {
864 assert!(
865 Probe::<u32>::is_ord(),
866 "control: the probe must detect a type that IS Ord, or it proves nothing"
867 );
868 assert!(
869 !Probe::<PeerSoftware>::is_ord(),
870 "PeerSoftware must not implement Ord — comparison belongs after destructuring Reported"
871 );
872 }
873
874 /// A defaulted `Unknown` appearing from nowhere is a different fact from a measured one, and
875 /// `Default` would make the two indistinguishable at the point of construction.
876 #[test]
877 fn peer_software_has_no_default() {
878 struct DefaultProbe<T>(core::marker::PhantomData<T>);
879 trait DefaultFallback {
880 fn is_default() -> bool {
881 false
882 }
883 }
884 impl<T> DefaultFallback for DefaultProbe<T> {}
885 impl<T: Default> DefaultProbe<T> {
886 fn is_default() -> bool {
887 true
888 }
889 }
890
891 assert!(
892 DefaultProbe::<String>::is_default(),
893 "control: the probe must detect a type that IS Default, or it proves nothing"
894 );
895 assert!(
896 !DefaultProbe::<PeerSoftware>::is_default(),
897 "PeerSoftware must not implement Default"
898 );
899 }
900
901 // ---- SoftwareVersionDetail (dig_ecosystem#2215) ----
902
903 /// Each mode renders a value the PARSER reads back at the intended level of detail.
904 ///
905 /// The fixture uses a version with a non-zero minor AND a non-zero patch, because that is the
906 /// only shape where `Full` and `Minor` differ — a `1.0.0` fixture would let a renderer that
907 /// ignores the mode entirely pass.
908 #[test]
909 fn each_detail_mode_round_trips_to_the_intended_precision() {
910 let v = semver::Version::new(0, 99, 1);
911
912 let full = SoftwareVersionDetail::Full.render("dig-node", &v);
913 assert_eq!(full, "dig-node/0.99.1");
914 assert_eq!(
915 PeerSoftware::parse(&full),
916 PeerSoftware::parse("dig-node/0.99.1")
917 );
918
919 let minor = SoftwareVersionDetail::Minor.render("dig-node", &v);
920 assert_ne!(minor, full, "Minor must actually coarsen");
921 let PeerSoftware::Reported { version, .. } = PeerSoftware::parse(&minor) else {
922 panic!("a coarsened advertisement must still be READABLE, not Unknown");
923 };
924 assert_eq!(version.major, 0);
925 assert_eq!(version.minor, 99);
926 assert_eq!(version.patch, 0, "the patch level is what Minor hides");
927
928 let off = SoftwareVersionDetail::Off.render("dig-node", &v);
929 assert_eq!(off, "");
930 assert_eq!(PeerSoftware::parse(&off), PeerSoftware::Unknown);
931 }
932
933 /// `Minor` renders `MAJOR.MINOR.0`, NOT `MAJOR.MINOR`.
934 ///
935 /// A bare two-part `0.99` is not valid semver, so the parser would classify a peer that
936 /// coarsened its build as Unknown — turning "tell them less" into "tell them nothing", which
937 /// is what `Off` is for. This test is the guard on that distinction.
938 #[test]
939 fn minor_mode_stays_valid_semver_rather_than_collapsing_to_unknown() {
940 let rendered =
941 SoftwareVersionDetail::Minor.render("dig-node", &semver::Version::new(1, 4, 7));
942 assert_eq!(rendered, "dig-node/1.4.0");
943 assert_ne!(
944 PeerSoftware::parse(&rendered),
945 PeerSoftware::Unknown,
946 "a coarsened build must remain readable; `product/1.4` would not be"
947 );
948 }
949
950 /// Coarsening strips pre-release and build metadata. A nightly's identifier is more precisely
951 /// identifying than the patch number it accompanies, so leaving it in place would make `Minor`
952 /// coarsen nothing at all for exactly the builds that most want it.
953 #[test]
954 fn minor_mode_strips_prerelease_and_build_metadata() {
955 let v: semver::Version = "1.0.0-nightly.20260805+sha.abc123".parse().unwrap();
956 let rendered = SoftwareVersionDetail::Minor.render("dig-node", &v);
957 assert_eq!(rendered, "dig-node/1.0.0");
958 assert!(
959 !rendered.contains("nightly"),
960 "the nightly identifier must not survive coarsening"
961 );
962 assert!(
963 !rendered.contains("abc123"),
964 "build metadata must not survive coarsening"
965 );
966 }
967
968 /// `Off` renders the empty string for ANY version, which is what makes it indistinguishable
969 /// from a peer built before the field existed.
970 #[test]
971 fn off_mode_reveals_nothing_for_any_version() {
972 for v in ["0.0.1", "1.2.3", "99.99.99-rc.1"] {
973 let rendered = SoftwareVersionDetail::Off.render("dig-node", &v.parse().unwrap());
974 assert_eq!(
975 rendered, "",
976 "Off must reveal nothing, including the product name"
977 );
978 }
979 }
980
981 /// The default is the most informative setting: the diagnostic value is the reason the field
982 /// exists, and an operator who disagrees opts down explicitly.
983 #[test]
984 fn detail_defaults_to_full() {
985 assert_eq!(
986 SoftwareVersionDetail::default(),
987 SoftwareVersionDetail::Full
988 );
989 }
990
991 /// The wire tokens are the lowercase words an operator writes in a config file, and they are a
992 /// published contract once a config carries them.
993 #[test]
994 fn detail_uses_lowercase_wire_tokens() {
995 for (mode, token) in [
996 (SoftwareVersionDetail::Full, "\"full\""),
997 (SoftwareVersionDetail::Minor, "\"minor\""),
998 (SoftwareVersionDetail::Off, "\"off\""),
999 ] {
1000 assert_eq!(serde_json::to_string(&mode).unwrap(), token);
1001 assert_eq!(
1002 serde_json::from_str::<SoftwareVersionDetail>(token).unwrap(),
1003 mode
1004 );
1005 }
1006 }
1007
1008 // ---- Gate round 1 regressions (dig_ecosystem#2215) ----
1009
1010 /// **`PartialOrd` is the hazard the `Ord` probe misses.** `Ord: PartialOrd`, so a type can
1011 /// derive only `PartialOrd` — satisfying an `Ord`-only probe — while `Unknown < Reported(..)`
1012 /// still compiles and evaluates. That one-word derive would sort `Unknown` below every real
1013 /// version, which is the verdict-about-the-live-network the contract forbids. SPEC §4.1 names
1014 /// all three traits; this pins the weakest of them, which subsumes `Ord`.
1015 #[test]
1016 fn peer_software_is_not_partially_ordered_either() {
1017 assert!(
1018 PartialOrdProbe::<f64>::is_partial_ord(),
1019 "control: the probe must detect a type that IS PartialOrd but NOT Ord, or it proves nothing about the gap between the two"
1020 );
1021 assert!(
1022 PartialOrdProbe::<u32>::is_partial_ord(),
1023 "control: a fully-ordered type must also be detected"
1024 );
1025 assert!(
1026 !PartialOrdProbe::<PeerSoftware>::is_partial_ord(),
1027 "PeerSoftware must implement neither PartialOrd nor Ord"
1028 );
1029 }
1030
1031 /// **The sentinel is VERSION ZERO, a class — not the three-character string `\"0.0.0\"`.**
1032 /// The constant's doc, `parse`'s doc, and SPEC §4.1 all state the rule over the class, so a
1033 /// string comparison lets `0.0.0+build`, `0.0.0-rc.1`, and `0.0.0-0` through as a *reported*
1034 /// version zero — the exact reading every one of those three prose statements forbids.
1035 #[test]
1036 fn version_zero_is_unknown_however_it_is_decorated() {
1037 for raw in [
1038 "dig-node/0.0.0",
1039 "dig-node/0.0.0+build",
1040 "dig-node/0.0.0-rc.1",
1041 "x/0.0.0-0",
1042 "dig-node/0.0.0-alpha+sha.abc123",
1043 ] {
1044 assert_eq!(
1045 PeerSoftware::parse(raw),
1046 PeerSoftware::Unknown,
1047 "{raw:?} is version zero and must be Unknown"
1048 );
1049 }
1050 }
1051
1052 /// A version that is merely CLOSE to zero is still a real build and must be reported — without
1053 /// this, a parser that mapped everything below `0.1.0` to Unknown would pass the test above.
1054 #[test]
1055 fn a_nonzero_version_near_zero_is_still_reported() {
1056 for raw in ["dig-node/0.0.1", "dig-node/0.1.0", "dig-node/0.0.1-rc.1"] {
1057 assert_ne!(
1058 PeerSoftware::parse(raw),
1059 PeerSoftware::Unknown,
1060 "{raw:?} is a real build, not the sentinel"
1061 );
1062 }
1063 }
1064
1065 /// **`render`'s stated invariant, tested over the class it is stated over.**
1066 ///
1067 /// The doc promises: every rendering is either the empty string or a value `parse` reads back
1068 /// as `Reported`. A `1.4.7` fixture cannot see the case that breaks it — a `0.0.x` build, whose
1069 /// `MAJOR.MINOR.0` coarsening IS version zero and therefore reads as Unknown. That is the same
1070 /// Minor-collapses-into-Off defect as the two-part spelling, arriving through the other door.
1071 #[test]
1072 fn every_rendering_is_empty_or_readable() {
1073 let versions = [
1074 "0.0.1",
1075 "0.0.7",
1076 "0.0.99", // the class the 1.4.7 fixture cannot see
1077 "0.1.0",
1078 "0.99.1",
1079 "1.0.0",
1080 "1.4.7",
1081 "10.20.30",
1082 "1.0.0-nightly.20260805+sha.abc123",
1083 "0.0.1-rc.1",
1084 ];
1085 for mode in [
1086 SoftwareVersionDetail::Full,
1087 SoftwareVersionDetail::Minor,
1088 SoftwareVersionDetail::Off,
1089 ] {
1090 for v in versions {
1091 let rendered = mode.render("dig-node", &v.parse().unwrap());
1092 if rendered.is_empty() {
1093 continue;
1094 }
1095 assert_ne!(
1096 PeerSoftware::parse(&rendered),
1097 PeerSoftware::Unknown,
1098 "{mode:?} rendered {rendered:?} for {v}, which reads back as Unknown — a non-empty rendering must always be readable"
1099 );
1100 }
1101 }
1102 }
1103
1104 /// `Minor` on a `0.0.x` build advertises NOTHING, deliberately.
1105 ///
1106 /// Hiding the patch of a `0.0.x` version leaves only version zero, which the wire reserves as
1107 /// the "unknown" sentinel. There is no coarser representable value, so the honest rendering is
1108 /// the empty string rather than the sentinel dressed up as a report. This differs from the
1109 /// `0.99` case: there a representable coarse value existed and the wrong spelling was chosen;
1110 /// here none exists.
1111 #[test]
1112 fn minor_of_a_zero_zero_build_advertises_nothing_rather_than_the_sentinel() {
1113 let rendered = SoftwareVersionDetail::Minor.render("dig-node", &"0.0.7".parse().unwrap());
1114 assert_eq!(rendered, "");
1115 assert_ne!(
1116 rendered, "dig-node/0.0.0",
1117 "the sentinel must never be ADVERTISED; it is only ever received from a legacy peer"
1118 );
1119 }
1120
1121 /// **Tripwire, not a guard.** `raw` is reconstructible from `product` + `version` for every
1122 /// string the current grammar accepts, because `semver::Version` re-renders losslessly. This
1123 /// asserts that equivalence deliberately.
1124 ///
1125 /// **When this test FAILS, `raw` has become load-bearing** — the grammar has started accepting
1126 /// something non-canonical (a `v` prefix, a two-part version, a vendor suffix) and `raw` is now
1127 /// the only record of what the peer actually sent. Do not "fix" it by deleting the field;
1128 /// replace this test with real assertions on the divergent inputs.
1129 #[test]
1130 fn raw_is_still_reconstructible_from_the_parsed_parts() {
1131 for advertised in [
1132 "dig-node/0.0.1",
1133 "dig-node/0.99.1",
1134 "dig-node/1.0.0-nightly.20260805",
1135 "dig-node/1.0.0+sha.abc123",
1136 "dig-node/1.0.0-rc.1+build.7",
1137 "acme/dig-node/1.2.3",
1138 ] {
1139 let PeerSoftware::Reported {
1140 product,
1141 version,
1142 raw,
1143 } = PeerSoftware::parse(advertised)
1144 else {
1145 panic!("{advertised:?} must be Reported");
1146 };
1147 assert_eq!(
1148 raw,
1149 format!("{product}/{version}"),
1150 "raw diverged from the parsed parts for {advertised:?} — `raw` is now load-bearing; see this test's doc comment before changing anything"
1151 );
1152 }
1153 }
1154}