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shep_core/protocol/
request.rs

1//! RPC frames: requests, responses, envelopes, and structured errors
2
3use core::fmt;
4
5use serde::{Deserialize, Deserializer, Serialize};
6
7use crate::config::{AppConfig, DeclaredApp, ResetDepth};
8use crate::status::ProcStatus;
9
10/// Client's opening frame
11///
12/// No `deny_unknown_fields`: refusing an unknown field here would refuse a
13/// newer client before `protocol` is read.
14// wire format: changing this is a breaking change
15#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
16pub struct Hello {
17    /// Client crate version (semver string)
18    pub client_version: String,
19    /// [`crate::protocol::PROTOCOL_VERSION`] the client speaks
20    pub protocol: u32,
21    /// The name this client was registered under as a dog, when it is one.
22    ///
23    /// `None` for every other client; a bare `Client` cannot set it. The
24    /// daemon needs it to name a dog it refuses at the handshake, which never
25    /// reaches `Request::DogConfig`. A dog reads its own name from
26    /// `$SHEP_DOG_NAME`.
27    ///
28    /// Absent on the wire rather than `null`, so
29    /// [`crate::protocol::PROTOCOL_VERSION`] does not move for it.
30    #[serde(default, skip_serializing_if = "Option::is_none")]
31    pub dog_name: Option<String>,
32}
33
34/// Daemon's handshake answer
35// wire format: changing this is a breaking change
36#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
37pub struct HelloAck {
38    /// Daemon crate version
39    pub daemon_version: String,
40    /// Protocol version the daemon speaks
41    pub protocol: u32,
42    /// Daemon pid
43    pub pid: u32,
44}
45
46/// Serializable selector (mirror of [`crate::selector::ProcessSelector`];
47/// regex travels as its source string)
48// wire format: changing this is a breaking change
49#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
50#[serde(tag = "kind", content = "value", rename_all = "snake_case")]
51pub enum SelectorSpec {
52    /// Every sheep
53    All,
54    /// By id
55    Id(u32),
56    /// By exact name
57    Name(String),
58    /// By regex source
59    Regex(String),
60    /// By fold name
61    Fold(String),
62    // Both field names are wire contract, pinned by `request_wire_v4`.
63    /// By app name and instance slot
64    ///
65    /// On the wire: `{"kind":"instance","value":{"name":"web","slot":2}}`.
66    Instance {
67        /// The app name
68        name: String,
69        /// The instance slot, counting from 0
70        slot: u32,
71    },
72}
73
74/// A short marker a dog attaches to a sheep for `shep flock` to paint.
75///
76/// shep stores and prints it, never parses it: `▲ main@a1b2c3` is a
77/// deploy tool's sentence.
78///
79/// The grammar: non-empty once whitespace is discounted, at most
80/// [`Self::MAX_CHARS`] characters, no [`char::is_control`] character,
81/// `\u{1b}` included. Refused, never repaired, and validated here rather
82/// than at the renderer: `shep`'s own `output::width::sanitize_cell` keeps
83/// a well-formed CSI sequence, since shep's colouring is made of them.
84///
85/// [`Self::MAX_CHARS`] counts `char`s, not bytes: a byte cap would refuse a
86/// legitimate CJK smit at roughly a third of its apparent length.
87///
88/// `Debug` is derived: a smit carries no secret, so there is nothing to
89/// redact.
90///
91/// # Example
92/// ```
93/// use shep_core::protocol::Smit;
94///
95/// assert_eq!("▲ main@a1b2c3".parse::<Smit>()?.as_str(), "▲ main@a1b2c3");
96/// assert!("\u{1b}[2Jgone".parse::<Smit>().is_err()); // no escapes
97/// # Ok::<(), shep_core::protocol::SmitError>(())
98/// ```
99// wire format: changing this is a breaking change
100#[derive(Debug, Clone, PartialEq, Eq, Serialize)]
101pub struct Smit(String);
102
103impl Smit {
104    /// The longest a smit may be, in characters.
105    pub const MAX_CHARS: usize = 48;
106
107    /// The marker as text, exactly as its publisher sent it.
108    #[must_use]
109    pub fn as_str(&self) -> &str {
110        &self.0
111    }
112}
113
114impl fmt::Display for Smit {
115    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
116        f.write_str(&self.0)
117    }
118}
119
120impl core::str::FromStr for Smit {
121    type Err = SmitError;
122
123    /// # Errors
124    /// - [`SmitError::Empty`] if the text is nothing but whitespace.
125    /// - [`SmitError::TooLong`] if it is over [`Self::MAX_CHARS`] characters.
126    /// - [`SmitError::Unprintable`] if it holds a control character.
127    fn from_str(text: &str) -> Result<Self, Self::Err> {
128        if text.trim().is_empty() {
129            return Err(SmitError::Empty);
130        }
131        let chars = text.chars().count();
132        if chars > Self::MAX_CHARS {
133            return Err(SmitError::TooLong { chars });
134        }
135        if text.chars().any(char::is_control) {
136            return Err(SmitError::Unprintable);
137        }
138        Ok(Self(text.to_string()))
139    }
140}
141
142/// Validates on decode: a dog written in another language speaks this wire
143/// directly and never runs [`core::str::FromStr`], so a derived impl would
144/// let `\u{1b}[2J` reach every listing built from a smit.
145impl<'de> Deserialize<'de> for Smit {
146    fn deserialize<D: Deserializer<'de>>(deserializer: D) -> Result<Self, D::Error> {
147        // String, not &str: a non-borrowing deserializer cannot always borrow
148        let text = String::deserialize(deserializer)?;
149        text.parse().map_err(serde::de::Error::custom)
150    }
151}
152
153/// Why a string is not a [`Smit`].
154#[non_exhaustive]
155#[derive(Debug, Clone, Copy, PartialEq, Eq)]
156pub enum SmitError {
157    /// Over [`Smit::MAX_CHARS`] characters; carries the count that was sent.
158    TooLong {
159        /// How many characters the string held.
160        chars: usize,
161    },
162    /// A control character, `\u{1b}` included.
163    Unprintable,
164    /// Empty, or nothing but whitespace.
165    Empty,
166}
167
168impl fmt::Display for SmitError {
169    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
170        match self {
171            Self::TooLong { chars } => write!(
172                f,
173                "a smit is at most {} characters; this one is {chars}",
174                Smit::MAX_CHARS
175            ),
176            Self::Unprintable => {
177                f.write_str("a smit may not contain a control character, an escape included")
178            }
179            Self::Empty => f.write_str("a smit may not be empty"),
180        }
181    }
182}
183
184impl core::error::Error for SmitError {}
185
186/// One RPC request
187// wire format: changing existing variants is a breaking change
188#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
189#[serde(tag = "kind", rename_all = "snake_case")]
190#[non_exhaustive]
191pub enum Request {
192    /// Liveness check
193    Ping,
194    /// Full flock listing
195    ListFlock,
196    /// Detailed info for matching sheep
197    Describe {
198        /// Which sheep
199        selector: SelectorSpec,
200    },
201    /// Register + start apps
202    Start {
203        /// App configs. The daemon must re-normalize them, since peer input
204        /// is untrusted; failures return [`RpcErrorCode::InvalidConfig`]
205        apps: Vec<AppConfig>,
206    },
207    /// Register apps as flock members without starting any of them
208    ///
209    /// Each app lands `Stopped` and holds no pid; `shep add` is the verb.
210    ///
211    /// Idempotent by name: an app the flock already has is answered as it
212    /// stands, running or not, and nothing about it changes.
213    /// [`Self::ApplyConfig`] merges a template into one the flock already
214    /// has, and `shep add` sends both.
215    ///
216    /// Answers [`Response::Added`].
217    Add {
218        /// App configs, carried exactly as [`Self::Start`] carries them. The
219        /// daemon must re-normalize them, since peer input is untrusted;
220        /// failures return [`RpcErrorCode::InvalidConfig`]
221        apps: Vec<AppConfig>,
222    },
223    /// Ask which of `apps` name a sheep the flock already has under a
224    /// different config
225    ///
226    /// Read-only. [`Self::Start`] on an already-registered name adds
227    /// instances rather than reconciling config.
228    ///
229    /// Answers [`Response::Drifted`] with one [`SheepDrift`] per app that is
230    /// both registered and different. An app the flock does not have is
231    /// absent from the answer, not reported as unchanged.
232    ConfigDrift {
233        /// The configs to compare against, exactly as [`Self::Start`] would
234        /// carry them. The daemon must re-normalize them: peer input is
235        /// untrusted, and an unnormalized config would report every default
236        /// it has not spelled out as a difference. Failures return
237        /// [`RpcErrorCode::InvalidConfig`].
238        apps: Vec<AppConfig>,
239    },
240    /// Merge each declared app into the sheep of the same name, applying
241    /// what can be applied and parking the rest for that sheep's next spawn
242    ///
243    /// Nothing is registered, nothing is pruned and nothing running is
244    /// killed: an app the flock does not have is refused by name, and a
245    /// field the running child was spawned from waits for a `shep reload`.
246    /// Additive by default; `reset` widens it.
247    ///
248    /// Answers [`Response::Applied`] with one [`SheepApplied`] per entry in
249    /// `apps`, in the order given, found or not and changed or not. One
250    /// app's refusal rides in [`SheepApplied::refused`] and does not cost
251    /// the rest of the file its load.
252    ApplyConfig {
253        /// The apps to merge in, each carrying the keys its document
254        /// literally wrote. The daemon must re-normalize the merge result,
255        /// since peer input is untrusted, and refuses the whole request with
256        /// [`RpcErrorCode::InvalidConfig`] when two entries share a name:
257        /// the second would be merged against a store the first has not
258        /// written yet.
259        apps: Vec<DeclaredApp>,
260        /// How much of what the operator has set since a template last
261        /// loaded this request may overwrite. Default [`ResetDepth::None`],
262        /// which overwrites nothing.
263        ///
264        /// Spelled `none`/`file`/`env`/`policy` on the wire.
265        reset: ResetDepth,
266    },
267    /// One sheep's effective config, for a pane that is about to edit it.
268    ///
269    /// `env` comes back emptied and its key names ride separately, so a
270    /// value never crosses the wire. Read-only: nothing about the sheep
271    /// changes.
272    ///
273    /// Answers [`Response::SheepConfig`], or
274    /// [`RpcErrorCode::NotFound`] when no sheep has that name.
275    SheepConfig {
276        /// The sheep's name, not a selector: a pane edits one sheep, for
277        /// the reason [`Self::Scale`] states at length.
278        name: String,
279    },
280    /// Sets, replaces, or with `None` removes one env key on one sheep,
281    /// recorded as an operator override. Never reads it back.
282    ///
283    /// Its own request rather than a [`Self::ApplyConfig`] depth, because
284    /// no depth does this: `ResetDepth::None` appends only, `File` and
285    /// `Policy` leave env alone, and `Env`/`All` replace the whole map with
286    /// the template's. A pane cannot send the whole map, since it is never
287    /// told the values it would have to send back.
288    ///
289    /// The running child holds the env it was spawned from, so the change
290    /// parks for the next spawn exactly as `ApplyConfig` parks a
291    /// respawn-only field, and `shep reload`/`shep restart` promote it.
292    ///
293    /// Answers [`Response::SheepEnvSet`], or
294    /// [`RpcErrorCode::NotFound`] when no sheep has that name.
295    SetSheepEnv {
296        /// The sheep's name, not a selector, for [`Self::SheepConfig`]'s
297        /// reason.
298        name: String,
299        /// The env key.
300        key: String,
301        /// The value, or `None` to remove the key.
302        ///
303        /// [`EnvValue`], not a bare `String`, for the reason that type's
304        /// own doc gives: this is the most secret-dense field on the wire
305        /// and a derived `Debug` on [`Request`] would print it (IR-41).
306        value: Option<EnvValue>,
307    },
308    /// Sets one config field on one sheep, recorded as an operator
309    /// override.
310    ///
311    /// [`Self::SetSheepEnv`]'s twin for everything that is not `env`, and
312    /// it exists for the reason that one does rather than by symmetry.
313    /// [`Self::ApplyConfig`] can move a single field (one [`DeclaredApp`]
314    /// declaring one key, at [`ResetDepth::File`]), but it moves it as a
315    /// template and spends the operator's override for it. That reasoning
316    /// does not hold here: a pane's value is the operator's, and the sheep
317    /// still differs from its file. Routed through `ApplyConfig`, the `*`
318    /// marker would never appear for that edit.
319    ///
320    /// One field, not a map: a pane edits one row at a time, and a request
321    /// that took several would need [`Response::Applied`]'s per-field
322    /// reporting back again for no caller that wants it.
323    ///
324    /// `env` is refused here and goes through [`Self::SetSheepEnv`]. So are
325    /// `name` and `instances`, which are
326    /// [`ApplyGroup::Structural`](crate::config::ApplyGroup::Structural):
327    /// identity and flock shape rather than runtime knobs, and the count
328    /// moves through [`Self::Scale`].
329    ///
330    /// The four-way apply classification governs exactly as it does for a
331    /// load. A `Live` field is in force at the daemon's next decision, a
332    /// `NextSpawn` field reaches the stored spec, and a `NeedsRespawn`
333    /// field parks for `shep reload` to promote.
334    ///
335    /// Answers [`Response::SheepFieldSet`], or
336    /// [`RpcErrorCode::NotFound`] when no sheep has that name.
337    SetSheepField {
338        /// The sheep's name, not a selector, for [`Self::SheepConfig`]'s
339        /// reason.
340        name: String,
341        /// The [`AppConfig`] field to set. A key that type has no such
342        /// field is refused with [`RpcErrorCode::InvalidConfig`] rather
343        /// than ignored.
344        key: String,
345        /// The new value, in the shape that field serializes as. The daemon
346        /// must re-validate the resulting config (peer input is untrusted)
347        /// and refuses with [`RpcErrorCode::InvalidConfig`] when it does not
348        /// deserialize or does not normalize; nothing is written in either
349        /// case.
350        ///
351        /// A bare [`serde_json::Value`] and not a redacting newtype, unlike
352        /// [`Self::SetSheepEnv`]'s [`EnvValue`], and the asymmetry is
353        /// deliberate. `env` is the one field [`AppConfig`]'s own manual
354        /// `Debug` redacts; `cwd`, `script` and `args` are printed in the
355        /// clear by every request that already carries a whole config
356        /// ([`Self::Start`], [`Self::Add`], [`Self::ApplyConfig`]). A
357        /// newtype here would protect one copy of a value this enum prints
358        /// three other ways, which reads as a guarantee the wire does not
359        /// make. Widening that protection is a change to [`AppConfig`]'s
360        /// `Debug`, not to this field.
361        value: serde_json::Value,
362    },
363    /// Replaces one dog's `[<name>]` section in `dogs.toml` and publishes
364    /// `config.dog.<name>` so a running dog re-reads it.
365    ///
366    /// The writing twin of [`Self::DogConfig`], which reads the same
367    /// section.
368    ///
369    /// Answers [`Response::DogConfigSet`].
370    SetDogConfig {
371        /// The dog's name, the config key.
372        name: String,
373        /// The whole section, as TOML text.
374        ///
375        /// [`DogSectionToml`], not a bare `String`, for the reason that
376        /// type's own doc gives: a section can hold a dog's credentials and
377        /// this is what keeps them out of a `{:?}` (IR-41).
378        toml: DogSectionToml,
379    },
380    /// Stop matching sheep (stay registered)
381    Stop {
382        /// Which sheep
383        selector: SelectorSpec,
384    },
385    /// Restart matching sheep
386    Restart {
387        /// Which sheep
388        selector: SelectorSpec,
389    },
390    /// Replace each matching sheep with a fresh instance of the same app, one
391    /// instance of an app at a time, so the app has a window in which it can
392    /// stay reachable across the swap
393    Reload {
394        /// Which sheep. No default: a reload replaces running processes.
395        selector: SelectorSpec,
396    },
397    /// Stop + deregister matching sheep
398    Delete {
399        /// Which sheep
400        selector: SelectorSpec,
401    },
402    /// Set how many instances one app runs (see `shep stock`).
403    ///
404    /// Takes a name where every other verb takes a [`SelectorSpec`]:
405    /// `instances` is a per-app number and slots are allocated against the
406    /// same-name group, so a selector matching two apps could mean four of
407    /// each or four in total.
408    ///
409    /// The count is absolute: two operators sending `+2` against the same
410    /// app would get a number neither asked for.
411    Scale {
412        /// The app's name, exactly as its config spells it. Not a selector: no
413        /// `all`, no regex, no `fold:`.
414        name: String,
415        /// How many instances the app has when this returns. `0` is refused
416        /// with [`RpcErrorCode::InvalidConfig`]: `shep delete` is the verb
417        /// for removing an app.
418        count: u32,
419    },
420    /// Attach a short marker to `sheep` for `shep flock` to paint, or clear
421    /// it with `None`.
422    ///
423    /// By name, not a selector: a smit belongs to a sheep, and every
424    /// instance of that name shows it, one spawned after the paint included.
425    ///
426    /// Held in memory and scoped to the connection that sent it, so a
427    /// publisher republishes rather than publishing on change.
428    SetSmit {
429        /// Which sheep.
430        sheep: String,
431        /// The marker, or `None` to clear it.
432        smit: Option<Smit>,
433    },
434    /// Reopen every matched sheep's log files, for an external rotator that
435    /// has renamed them (`create`-mode rotation)
436    Reopen {
437        /// Which sheep
438        selector: SelectorSpec,
439    },
440    /// Empty every matched sheep's log files: flush what is still pending,
441    /// then truncate the recorded paths
442    Flush {
443        /// Which sheep. No default: this destroys log data.
444        selector: SelectorSpec,
445    },
446    /// Send a named action to every matched sheep over its shepherd channel
447    /// and report what each app says back (see `shep trigger`).
448    Trigger {
449        /// Which sheep. No default, matching every other verb that reaches
450        /// a running process.
451        selector: SelectorSpec,
452        /// The action name. Free-form: the daemon never declares, parses, or
453        /// validates it, and an app that does not recognize the name is
454        /// expected to say so in its own reply.
455        action: String,
456        /// Argument text, passed through to the app verbatim. One opaque
457        /// string, matching the shepherd channel's own `action` message this
458        /// becomes.
459        params: Option<String>,
460    },
461    /// Deliver one signal to every matched sheep's own process, never its
462    /// process group (see `shep signal`).
463    Signal {
464        /// Which sheep. No default, matching every other verb that reaches
465        /// a running process.
466        selector: SelectorSpec,
467        /// The signal's name, as
468        /// [`OperatorSignal`](crate::signals::OperatorSignal) spells it. The
469        /// `SIG` prefix and the case are both optional; a name outside the
470        /// grammar answers [`RpcErrorCode::InvalidConfig`].
471        signal: String,
472    },
473    /// Write one line to every matched sheep's stdin (see `shep whisper`).
474    SendLine {
475        /// Which sheep. No default, matching every other verb that reaches a
476        /// running process.
477        selector: SelectorSpec,
478        /// The line, without its terminator: the shepherd appends exactly
479        /// one `\n` when it writes.
480        ///
481        /// A line containing an embedded newline is refused
482        /// ([`RpcErrorCode::InvalidConfig`]): it would deliver two commands
483        /// where the operator typed one.
484        line: String,
485    },
486    /// Write the muster roll now, bypassing the snapshot writer's debounce
487    SaveRoll,
488    /// Assemble the flock from the muster roll on disk: start every app the
489    /// roll recorded running, leaving every app the flock already has exactly
490    /// as it stands
491    Muster,
492    /// Ask for one dog's `[dog.<name>]` section, as the dog itself parses it
493    DogConfig {
494        /// The dog's name: the config key, not a selector
495        name: String,
496    },
497    /// Start one dog now, marking it as coming from `source`
498    EnableDog {
499        /// The dog's name
500        name: String,
501        /// Where its binary comes from
502        source: DogSource,
503    },
504    /// Stop and deregister one dog
505    ///
506    /// Answers [`Response::Deleted`]: disabling deregisters exactly as
507    /// `Delete` does.
508    DisableDog {
509        /// The dog's name
510        name: String,
511    },
512    /// Ask which dogs this daemon has given up on, and which it is still
513    /// waiting to hear from (`shep daemon reload`).
514    ///
515    /// Read-only, and about this daemon's own handshakes: take the reading
516    /// after a reload, not before one. Never sent to an older daemon, on
517    /// [`Self::HandoverFitness`]'s terms.
518    ///
519    /// Answers [`Response::DogStaleness`].
520    DogStaleness,
521    /// Ask whether this daemon could hand its flock to a successor in place,
522    /// rather than stopping it and starting it again (`shep daemon reload`).
523    ///
524    /// Read-only: the handover itself is triggered by a signal, which reaches
525    /// a daemon that refuses the client at the handshake.
526    ///
527    /// Answers [`Response::HandoverFitness`]. A refusal is a feature the
528    /// running daemon cannot carry, not an error: the caller falls back to a
529    /// stop-and-start and prints the reason. Never sent to an older daemon:
530    /// shep-cli's `commands::daemon` gates it on the crate version the
531    /// handshake reported.
532    HandoverFitness,
533    /// Graceful daemon shutdown
534    KillDaemon,
535    /// Subscribe this connection to bus topics (glob patterns)
536    Subscribe {
537        /// Topic globs, e.g. `process.*`
538        topics: Vec<String>,
539    },
540}
541
542/// Where a dog came from: this binary, or one an operator adopted.
543///
544/// Carried on [`ProcessInfo::dog`], so a listing distinguishes the two
545/// populations without a second request.
546// wire format: changing existing variants is a breaking change
547#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
548#[serde(tag = "kind", rename_all = "snake_case")]
549#[non_exhaustive]
550pub enum DogSource {
551    /// An argv branch of the shep binary itself (`shep dog <name>`).
552    BuiltIn,
553    /// A binary an operator adopted, run at the daemon's own trust level.
554    Adopted {
555        /// The binary's path, exactly as the operator gave it to `adopt`.
556        path: String,
557    },
558}
559
560/// One process the OS reports as a descendant of a sheep.
561///
562/// Not the set of processes that die with the sheep: this is a parent-pid
563/// walk, where the stop ladder acts on the process group. A lamb that forks
564/// and exits leaves children re-parented to init, out of this list and still
565/// in the group; a `setsid()` grandchild stays in the list and leaves the
566/// group.
567///
568/// `name` is the executable's name (`node`, `sh`), never argv, which carries
569/// credentials and would ride into `shep describe --format json`. Build one
570/// with [`Self::new`].
571// wire format: changing this is a breaking change
572#[non_exhaustive]
573#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
574pub struct Lamb {
575    /// The lamb's own pid.
576    pub pid: u32,
577    /// The executable's name, as the OS reports it. Never its command line.
578    pub name: String,
579}
580
581impl Lamb {
582    /// One lamb.
583    #[must_use]
584    pub fn new(pid: u32, name: impl Into<String>) -> Self {
585        Self {
586            pid,
587            name: name.into(),
588        }
589    }
590}
591
592/// Why a sheep's process most recently stopped existing under this daemon.
593///
594/// Behind [`ProcessInfo::last_exit`]'s own `Option`, so `None` there means
595/// never exited. Ordinarily exactly one of `code`/`signal` is `Some`,
596/// mirroring the OS's `WIFEXITED`/`WIFSIGNALED` split; both `None` together
597/// is legal and means this daemon recorded an exit it could not
598/// characterize.
599// wire format: changing this is a breaking change
600#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
601pub struct ExitInfo {
602    /// The process's own exit code, set on a normal exit (`WIFEXITED`).
603    pub code: Option<i32>,
604    /// The raw unix signal number that ended the process, set when it did
605    /// not exit on its own (`WIFSIGNALED`). An operator's own `shep stop`
606    /// counts: the process still stopped by a signal.
607    ///
608    /// Platform-specific, and never rendered as a name here; that is an
609    /// OS-aware layer's job.
610    pub signal: Option<i32>,
611}
612
613/// Snapshot of one sheep for listings and events
614///
615/// Construct one with [`ProcessInfo::builder`]: `#[non_exhaustive]` forbids
616/// a struct literal outside this crate, though not inside it. The fields
617/// stay `pub`.
618// wire format: changing this is a breaking change. No `Eq`: `cpu_percent` is
619// an `f32`. Paths travel as `String`, since serde's `PathBuf` refuses a
620// non-UTF-8 path and would blank a whole `Reply`. Every added field is an
621// `Option`, so a peer built before it sends no key and `None` reads as unknown.
622#[non_exhaustive]
623#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
624pub struct ProcessInfo {
625    /// Stable numeric id
626    pub id: u32,
627    /// Sheep name
628    pub name: String,
629    /// Lifecycle status
630    pub status: ProcStatus,
631    /// OS pid while running
632    pub pid: Option<u32>,
633    /// Restart count since registration
634    pub restarts: u32,
635    /// Milliseconds since last successful start
636    pub uptime_ms: u64,
637    /// Fold membership
638    pub fold: Option<String>,
639    /// Resolved stdout log path: the app's explicit
640    /// [`AppConfig::out_file`] when it set one, else the daemon-derived
641    /// default. `None` only when the peer daemon predates this field.
642    pub out_file: Option<String>,
643    /// Resolved stderr log path, resolved exactly as [`Self::out_file`]
644    pub err_file: Option<String>,
645    /// Tree CPU as a percentage of one core, over the window since the
646    /// daemon's last periodic sample. `None` when the sheep is not running,
647    /// when it has been up for less than one sampling window, or when the
648    /// peer daemon predates the field; all three render as unknown, never as
649    /// zero. A value over 100 is a tree using more than one core.
650    pub cpu_percent: Option<f32>,
651    /// Tree resident set size in bytes, current as of the reply. `None`
652    /// under the same three conditions as [`Self::cpu_percent`], minus the
653    /// window one: memory needs no baseline.
654    pub memory_bytes: Option<u64>,
655    /// Set when this entry is a dog, naming where the dog came from;
656    /// `None` for a sheep.
657    ///
658    /// Two cases, not [`Self::cpu_percent`]'s three: "not a dog" is the true
659    /// answer whether the peer predates the field or the entry is a sheep.
660    pub dog: Option<DogSource>,
661    /// The processes the OS reports as descendants of this sheep, or `None`
662    /// when this reply did not walk for them.
663    ///
664    /// `None` covers two cases: this reply is not a `Describe` (only
665    /// `Describe` walks), or the peer daemon predates the field.
666    /// `Some(vec![])` is the third: walked, and this sheep has no children.
667    ///
668    /// Read [`Lamb`]'s own doc before rendering this: the list is not the set
669    /// of processes a stop kills, and any output built from it has to say so.
670    pub lambs: Option<Vec<Lamb>>,
671    /// How this sheep's process most recently stopped existing under this
672    /// daemon. `None` while it has never exited under this daemon, and when
673    /// the peer daemon predates the field.
674    ///
675    /// Sticky across a respawn: it answers why the sheep last stopped, not
676    /// whether it is stopped now, and updates only on the next exit.
677    pub last_exit: Option<ExitInfo>,
678    /// The marker a dog has asked to have painted beside this sheep, or
679    /// `None` when no dog has painted one, which also covers a peer daemon
680    /// that predates the field.
681    ///
682    /// A `String` rather than a [`Smit`]: this is a report, and the
683    /// validation that makes it safe to print happened at the daemon's
684    /// ingress. Every instance of a name shows the same marker, since smits
685    /// are keyed by sheep name.
686    pub smit: Option<String>,
687    /// Which instance slot of its app this sheep occupies, counting from 0.
688    ///
689    /// `None` when the peer daemon predates the field. Not a bare `u32`
690    /// defaulted to 0: an app stocked to four instances would report four
691    /// rows all claiming slot 0.
692    pub instance: Option<u32>,
693    /// Whether this dog has completed a handshake with the shepherd that is
694    /// reporting it, and not been refused since; `None` for a sheep.
695    ///
696    /// `None` on [`Self::dog`]'s two-case terms: a sheep has no connection
697    /// to the shepherd, so "no handshake fact to report" is the true answer
698    /// for a sheep and for a peer that predates the field alike.
699    ///
700    /// `Some(false)` is the one that matters: a dog on a protocol this
701    /// shepherd refuses is alive, which is all [`Self::status`] reports, and
702    /// not doing its job. A fact and not a verdict, though: a dog spawned a
703    /// moment ago has not handshaken yet and is healthy.
704    pub handshook: Option<bool>,
705    /// Whether the reporting shepherd has given up on this dog: restarted it
706    /// once for never answering, watched that not help, and stopped
707    /// restarting it. `None` for a sheep, on [`Self::handshook`]'s terms.
708    ///
709    /// Not derivable from [`Self::handshook`]. `Some(false)` there covers
710    /// both a dog spawned three seconds ago that has not dialled back and one
711    /// this shepherd has permanently stopped restarting; the first needs
712    /// nothing done and the second is an incident.
713    ///
714    /// A fact and not a verdict: it says the shepherd stopped, never why.
715    /// The why is in that dog's own log (`shep bleats <dog>`).
716    pub dog_stale: Option<bool>,
717    /// The [`AppConfig`] field names this sheep's spec differs from a load's
718    /// parked config for, in field-name order. `None` when nothing is parked,
719    /// and when the peer daemon predates the field.
720    ///
721    /// Names only, never values, as [`SheepDrift::fields`] carries them: a
722    /// differing `env` reports `"env"` and stops there. `shep reload`
723    /// promotes a parked config.
724    #[serde(default, skip_serializing_if = "Option::is_none")]
725    pub pending: Option<Vec<String>>,
726    /// The [`AppConfig`] field names an operator has set on this sheep that
727    /// its current Flockfile does not declare, in field-name order. `None`
728    /// when there is nothing to report, and when the peer daemon predates
729    /// the field.
730    ///
731    /// Names only, never values, for [`Self::pending`]'s reason:
732    /// [`crate::overrides::AppOverrides::fields`] can hold an `env` value.
733    #[serde(default, skip_serializing_if = "Option::is_none")]
734    pub overridden: Option<Vec<String>>,
735}
736
737/// Orders one flock listing the way every operator-facing surface presents
738/// one: `(name, instance, id)`.
739///
740/// Name first: an id is assigned at registration and a `delete all` plus a
741/// fresh start renumbers the flock, where a name survives. A name is not a
742/// total order on its own, so the id breaks the tie and stays an addressing
743/// key (`shep stop 11`).
744///
745/// A listing whose rows all carry `None` for the slot collapses to
746/// `(name, id)`, since `None` sorts before every `Some`.
747pub fn sort_flock(listing: &mut [ProcessInfo]) {
748    listing.sort_unstable_by(|a, b| {
749        (a.name.as_str(), a.instance, a.id).cmp(&(b.name.as_str(), b.instance, b.id))
750    });
751}
752
753impl ProcessInfo {
754    /// Starts a builder for one sheep's row.
755    ///
756    /// The three arguments are the fields no row can omit and no reader can
757    /// default.
758    ///
759    /// No `#[must_use]`: [`ProcessInfoBuilder`] carries one, which clippy's
760    /// `double_must_use` lint treats as covering this return too.
761    pub fn builder(id: u32, name: impl Into<String>, status: ProcStatus) -> ProcessInfoBuilder {
762        ProcessInfoBuilder {
763            info: Self {
764                id,
765                name: name.into(),
766                status,
767                pid: None,
768                restarts: 0,
769                uptime_ms: 0,
770                fold: None,
771                out_file: None,
772                err_file: None,
773                cpu_percent: None,
774                memory_bytes: None,
775                dog: None,
776                lambs: None,
777                last_exit: None,
778                smit: None,
779                instance: None,
780                handshook: None,
781                dog_stale: None,
782                pending: None,
783                overridden: None,
784            },
785        }
786    }
787}
788
789/// Builds a [`ProcessInfo`], which is `#[non_exhaustive]` and so cannot be
790/// written as a struct literal outside this crate.
791///
792/// Every setter takes the field's own type, `Option` included, so a caller
793/// already holding `Option<u32>` writes `.pid(entry.pid())` rather than an
794/// `if let` ladder. A setter is skipped, not passed `None`, when a row has
795/// nothing to say about that field; the skipped defaults are the ones a
796/// not-yet-running sheep has.
797#[derive(Debug, Clone)]
798#[must_use = "a builder that is never `build`-ed produces no ProcessInfo"]
799pub struct ProcessInfoBuilder {
800    info: ProcessInfo,
801}
802
803impl ProcessInfoBuilder {
804    /// Sets the OS pid; `None` while the sheep is not running.
805    pub fn pid(mut self, pid: Option<u32>) -> Self {
806        self.info.pid = pid;
807        self
808    }
809
810    /// Sets the restart count since registration.
811    pub fn restarts(mut self, restarts: u32) -> Self {
812        self.info.restarts = restarts;
813        self
814    }
815
816    /// Sets milliseconds since the last successful start.
817    pub fn uptime_ms(mut self, uptime_ms: u64) -> Self {
818        self.info.uptime_ms = uptime_ms;
819        self
820    }
821
822    /// Sets fold membership.
823    pub fn fold(mut self, fold: Option<String>) -> Self {
824        self.info.fold = fold;
825        self
826    }
827
828    /// Sets the resolved stdout log path.
829    pub fn out_file(mut self, out_file: Option<String>) -> Self {
830        self.info.out_file = out_file;
831        self
832    }
833
834    /// Sets the resolved stderr log path.
835    pub fn err_file(mut self, err_file: Option<String>) -> Self {
836        self.info.err_file = err_file;
837        self
838    }
839
840    /// Sets tree CPU as a percentage of one core.
841    pub fn cpu_percent(mut self, cpu_percent: Option<f32>) -> Self {
842        self.info.cpu_percent = cpu_percent;
843        self
844    }
845
846    /// Sets tree resident set size in bytes.
847    pub fn memory_bytes(mut self, memory_bytes: Option<u64>) -> Self {
848        self.info.memory_bytes = memory_bytes;
849        self
850    }
851
852    /// Marks this row a dog and names where the dog came from.
853    pub fn dog(mut self, dog: Option<DogSource>) -> Self {
854        self.info.dog = dog;
855        self
856    }
857
858    /// Sets the sheep's lamb list; `None` when this reply did not walk for one.
859    pub fn lambs(mut self, lambs: Option<Vec<Lamb>>) -> Self {
860        self.info.lambs = lambs;
861        self
862    }
863
864    /// Sets how this sheep's process most recently stopped; `None` while it
865    /// has never exited under this daemon.
866    pub fn last_exit(mut self, last_exit: Option<ExitInfo>) -> Self {
867        self.info.last_exit = last_exit;
868        self
869    }
870
871    /// Sets the marker a dog has painted on this sheep; `None` when none has.
872    pub fn smit(mut self, smit: Option<String>) -> Self {
873        self.info.smit = smit;
874        self
875    }
876
877    /// Sets the instance slot; `None` when the peer daemon predates the field.
878    pub fn instance(mut self, instance: Option<u32>) -> Self {
879        self.info.instance = instance;
880        self
881    }
882
883    /// Sets whether this dog has handshaken with the shepherd; `None` for a
884    /// sheep, which has no handshake to report.
885    pub fn handshook(mut self, handshook: Option<bool>) -> Self {
886        self.info.handshook = handshook;
887        self
888    }
889
890    /// Sets whether the shepherd has given up restarting this dog; `None`
891    /// for a sheep, which is never given up on.
892    pub fn dog_stale(mut self, dog_stale: Option<bool>) -> Self {
893        self.info.dog_stale = dog_stale;
894        self
895    }
896
897    /// Sets the field names a load has parked for this sheep's next spawn;
898    /// `None` when nothing is parked.
899    pub fn pending(mut self, pending: Option<Vec<String>>) -> Self {
900        self.info.pending = pending;
901        self
902    }
903
904    /// Sets the field names an operator has overridden on this sheep;
905    /// `None` when there is nothing to report.
906    pub fn overridden(mut self, overridden: Option<Vec<String>>) -> Self {
907        self.info.overridden = overridden;
908        self
909    }
910
911    /// Finishes the row.
912    #[must_use]
913    pub fn build(self) -> ProcessInfo {
914        self.info
915    }
916}
917
918/// What happened when the daemon tried to deliver one sheep's triggered
919/// action.
920// wire format: changing existing variants is a breaking change
921#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
922#[serde(tag = "kind", rename_all = "snake_case")]
923#[non_exhaustive]
924pub enum ActionOutcome {
925    /// The app answered on the shepherd channel.
926    Replied {
927        /// The reply body, exactly as the app sent it.
928        body: String,
929    },
930    /// The sheep had no reachable shepherd channel for the daemon to
931    /// deliver the action over.
932    NoChannel,
933    /// The sheep is a reload drainee, mid-swap and on its way out, so the
934    /// daemon skipped it rather than deliver the action to a process already
935    /// being replaced.
936    Skipped,
937    /// The daemon delivered the action, but no reply arrived before the
938    /// app's configured action timeout elapsed.
939    TimedOut,
940}
941
942/// One matched sheep's row in a `Trigger` reply.
943///
944/// Not a [`ProcessInfo`]: a reply body has nowhere to live on one.
945/// [`Self::outcome`] is per-row, since the selector grammar makes a mixed
946/// flock the normal case.
947// wire format: changing this is a breaking change
948#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
949pub struct ActionReply {
950    /// The sheep's stable id.
951    pub id: u32,
952    /// The sheep's name.
953    pub name: String,
954    /// What happened when the daemon tried to deliver the action.
955    pub outcome: ActionOutcome,
956}
957
958/// What happened when the shepherd tried to deliver one signal.
959// wire format: changing existing variants is a breaking change
960#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
961#[serde(tag = "kind", rename_all = "snake_case")]
962#[non_exhaustive]
963pub enum SignalOutcome {
964    /// The kernel accepted the signal for this sheep's pid.
965    ///
966    /// Says the signal was delivered, not that the app did anything with it.
967    /// A signal the app blocks or ignores is `Delivered` too.
968    Delivered,
969    /// The sheep is registered but has no live process to signal: stopped,
970    /// errored, or waiting out a restart backoff.
971    NotRunning,
972    /// The kernel refused the delivery; carries its reason (`ESRCH` for a
973    /// process reaped between the lookup and the syscall, `EPERM` for one this
974    /// daemon may not signal).
975    Failed {
976        /// The refusal, as the OS worded it.
977        reason: String,
978    },
979}
980
981/// One matched sheep's row in a `Signal` reply.
982///
983/// Per-row like [`ActionReply`]: the selector grammar makes a mixed flock
984/// the normal case.
985// wire format: changing this is a breaking change
986#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
987pub struct SignalReply {
988    /// The sheep's stable id.
989    pub id: u32,
990    /// The sheep's name.
991    pub name: String,
992    /// What happened when the shepherd tried to deliver the signal.
993    pub outcome: SignalOutcome,
994}
995
996/// What happened when the shepherd tried to write one line to a sheep's stdin.
997// wire format: changing existing variants is a breaking change
998#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
999#[serde(tag = "kind", rename_all = "snake_case")]
1000#[non_exhaustive]
1001pub enum LineOutcome {
1002    /// The line was written to the pipe and flushed.
1003    ///
1004    /// Says the bytes left the shepherd, not that the app read them. A pipe
1005    /// holds 64 KiB before it blocks.
1006    Sent,
1007    /// The sheep has no stdin pipe: its config does not set `stdin = true`, or
1008    /// it is not running.
1009    ///
1010    /// One outcome for two causes: both answer "there is no pipe here".
1011    NoStdin,
1012    /// The shepherd had a pipe and did not confirm a write to it; carries
1013    /// why.
1014    ///
1015    /// Three shapes reach it: the write failed (the far end is gone), the
1016    /// line found the sheep's queue already full, or the write did not
1017    /// finish inside the shepherd's own bound. The reason names which.
1018    ///
1019    /// A timed-out write is not a promise the line was never written: the
1020    /// bytes may be part-written into a pipe the app is not draining, and
1021    /// land in full the moment it drains. A line still queued behind that one
1022    /// is dropped once its caller gives up, so treat a retry as a second
1023    /// command.
1024    NotWritten {
1025        /// What went wrong, in plain English.
1026        reason: String,
1027    },
1028}
1029
1030/// One matched sheep's row in a `SendLine` reply.
1031///
1032/// Per-row like [`ActionReply`] and [`SignalReply`].
1033// wire format: changing this is a breaking change
1034#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
1035pub struct LineReply {
1036    /// The sheep's stable id.
1037    pub id: u32,
1038    /// The sheep's name.
1039    pub name: String,
1040    /// What happened.
1041    pub outcome: LineOutcome,
1042}
1043
1044/// A dog's `[dog.<name>]` config section, carried as TOML text.
1045///
1046/// Travels over the socket rather than the child's environment: a dog's
1047/// section routinely holds webhook credentials, and the socket keeps them
1048/// out of the process table and out of crash dumps. The manual `Debug`
1049/// below prints only a length, since [`Response`] derives `Debug`.
1050///
1051/// [`Self::as_str`] is the only way out: a `Deref<Target = str>` would hand
1052/// the type `ToString` and defeat that `Debug`.
1053///
1054/// `#[serde(transparent)]`: the wire representation is a bare `String`.
1055#[derive(Clone, PartialEq, Eq, Serialize, Deserialize)]
1056#[serde(transparent)]
1057pub struct DogSectionToml(String);
1058
1059impl DogSectionToml {
1060    /// The TOML text, empty when the file has no such section.
1061    #[must_use]
1062    pub fn as_str(&self) -> &str {
1063        &self.0
1064    }
1065}
1066
1067impl From<String> for DogSectionToml {
1068    fn from(toml: String) -> Self {
1069        Self(toml)
1070    }
1071}
1072
1073/// Prints a length, never the section body. Pinned as an exact string by
1074/// `dog_section_toml_debug_does_not_leak`.
1075impl fmt::Debug for DogSectionToml {
1076    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1077        write!(f, "DogSectionToml(<{} bytes>)", self.0.len())
1078    }
1079}
1080
1081/// One environment variable's value, on its way to a sheep.
1082///
1083/// A newtype for one reason, the same one [`DogSectionToml`] exists for: an
1084/// env value is the single most secret-dense thing a client can send this
1085/// daemon (a database URL, an API token, a signing key), and a derived
1086/// `Debug` on [`Request`] would print it in the clear the moment anything
1087/// logs a request. Every other secret-bearing field on this wire is already
1088/// protected by its inner type ([`AppConfig`]'s own manual `Debug` prints
1089/// `env: <N vars>`), and a bare `String` here would have been the first
1090/// field in the enum without that protection.
1091///
1092/// One direction only. Nothing ever sends one back: [`Request::SheepConfig`]
1093/// answers with the env keys and no values at all.
1094///
1095/// [`Self::as_str`] is the only way out, for the reason
1096/// [`DogSectionToml`] gives: a `Deref<Target = str>` would hand the type
1097/// `ToString` too, and `.to_string()` would return the value in the clear,
1098/// defeating the redacted `Debug` below.
1099///
1100/// `#[serde(transparent)]` makes the wire representation identical to a
1101/// bare `String`, so this newtype changes nothing about
1102/// [`crate::protocol::PROTOCOL_VERSION`] or the pinned snapshot fixtures.
1103#[derive(Clone, PartialEq, Eq, Serialize, Deserialize)]
1104#[serde(transparent)]
1105pub struct EnvValue(String);
1106
1107impl EnvValue {
1108    /// The value.
1109    #[must_use]
1110    pub fn as_str(&self) -> &str {
1111        &self.0
1112    }
1113}
1114
1115impl From<String> for EnvValue {
1116    fn from(value: String) -> Self {
1117        Self(value)
1118    }
1119}
1120
1121/// Debug prints a length and never the value (IR-41); see the type doc for
1122/// why. Exact-string-tested below (`env_value_debug_does_not_leak`) so a
1123/// future `#[derive(Debug)]` fails that test instead of silently reopening
1124/// the leak.
1125impl fmt::Debug for EnvValue {
1126    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1127        write!(f, "EnvValue(<{} bytes>)", self.0.len())
1128    }
1129}
1130
1131/// One registered sheep whose stored config differs from a caller's copy:
1132/// the answer [`Request::ConfigDrift`] is asking for
1133///
1134/// Field names only, never their values. This is printed at an operator,
1135/// and [`AppConfig::env`](crate::config::AppConfig::env) carries secrets,
1136/// so a differing `env` reports `"env"` and nothing more. `Debug` is
1137/// derived: there is nothing here to redact.
1138// wire format: changing field names is a breaking change
1139#[non_exhaustive]
1140#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
1141pub struct SheepDrift {
1142    /// The sheep's name. Both configs share it by construction: it is what
1143    /// matched them to each other.
1144    pub name: String,
1145    /// The [`AppConfig`] fields that differ, in field-name order. Never
1146    /// empty: a sheep with nothing to report is left out of the answer.
1147    pub fields: Vec<String>,
1148}
1149
1150impl SheepDrift {
1151    /// Builds one sheep's report.
1152    #[must_use]
1153    pub fn new(name: impl Into<String>, fields: Vec<String>) -> Self {
1154        Self {
1155            name: name.into(),
1156            fields,
1157        }
1158    }
1159}
1160
1161/// What one app's [`Request::ApplyConfig`] did: the answer a load owes the
1162/// operator who ran it
1163///
1164/// One of these per app the request named, found or not and changed or not.
1165///
1166/// [`Self::applied`] and [`Self::pending`] carry field names only, never
1167/// their values, as [`SheepDrift`] does; the merged config never reaches a
1168/// client. [`Self::refused`] is prose and is scoped out of that rule: it
1169/// quotes values out of the file the caller just sent, never out of the
1170/// flock's stored config. `Debug` is derived on that basis: nothing here
1171/// needs redacting.
1172// wire format: changing field names is a breaking change
1173#[non_exhaustive]
1174#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
1175pub struct SheepApplied {
1176    /// The sheep's name, exactly as the request spelled it.
1177    pub name: String,
1178    /// Fields now in force, in field-name order. Empty when the load changed
1179    /// nothing the daemon could act on immediately.
1180    pub applied: Vec<String>,
1181    /// Fields the app picks up at its next spawn, in field-name order. Empty
1182    /// when nothing is waiting.
1183    ///
1184    /// `shep reload <name>` promotes them; a client rendering this list says
1185    /// so, since a pending list with no remedy beside it cannot be acted on.
1186    pub pending: Vec<String>,
1187    /// Why some or all of this app's change did not land, in the daemon's own
1188    /// words, or `None` when the whole of it did.
1189    ///
1190    /// Not the same question as the two lists being empty: a refusal raised
1191    /// before anything was touched leaves both empty, and so does a load with
1192    /// nothing to do. It is a sentence rather than a code because the message
1193    /// is what tells them apart.
1194    pub refused: Option<String>,
1195}
1196
1197impl SheepApplied {
1198    /// Builds one app's report.
1199    #[must_use]
1200    pub fn new(
1201        name: impl Into<String>,
1202        applied: Vec<String>,
1203        pending: Vec<String>,
1204        refused: Option<String>,
1205    ) -> Self {
1206        Self {
1207            name: name.into(),
1208            applied,
1209            pending,
1210            refused,
1211        }
1212    }
1213}
1214
1215/// One sheep's effective config as a pane sees it: every field but env's
1216/// values, plus which fields an operator has overridden and which are
1217/// waiting on a respawn.
1218///
1219/// The answer to [`Request::SheepConfig`], and the one reply in this module
1220/// that carries a whole [`AppConfig`]. [`SheepApplied`] deliberately carries
1221/// field names alone, and the difference is what each is for: that one is
1222/// printed at an operator who already has the file, this one feeds a pane
1223/// that is about to edit fields it has to be able to show first.
1224// wire format: changing field names is a breaking change
1225//
1226// `#[non_exhaustive]`: shep-core is a published library and a sixth field
1227// would otherwise break an out-of-tree consumer's construction of this with
1228// no version bump to say so (IR-20). [`SheepConfigView::new`] is how the
1229// daemon builds one, and it is what enforces the emptied `env`.
1230#[non_exhaustive]
1231#[derive(Clone, PartialEq, Eq, Serialize, Deserialize)]
1232pub struct SheepConfigView {
1233    /// The sheep's name.
1234    pub name: String,
1235    /// The effective config with `env` cleared. Every remaining field is
1236    /// operator-supplied policy the pane is about to let them edit, so
1237    /// withholding a value would make the pane unusable while protecting
1238    /// nothing.
1239    pub config: AppConfig,
1240    /// The env keys, so the pane can list them. Never the values.
1241    pub env_keys: Vec<String>,
1242    /// Field names an operator has set that the Flockfile does not declare.
1243    pub overridden: Vec<String>,
1244    /// Field names parked until the next respawn.
1245    pub pending: Vec<String>,
1246}
1247
1248impl SheepConfigView {
1249    /// Builds one, clearing `env` and recording its keys.
1250    ///
1251    /// The clearing happens here rather than at the one call site, so a
1252    /// second caller cannot forget it: this constructor is the only way to
1253    /// build the type outside this crate, since `#[non_exhaustive]` blocks
1254    /// a literal.
1255    #[must_use]
1256    pub fn new(mut config: AppConfig, overridden: Vec<String>, pending: Vec<String>) -> Self {
1257        let env_keys = config.env.keys().cloned().collect();
1258        config.env.clear();
1259        Self {
1260            name: config.name.clone(),
1261            config,
1262            env_keys,
1263            overridden,
1264            pending,
1265        }
1266    }
1267}
1268
1269/// Redacted (IR-41): `config` carries `args` and `cwd`, which routinely hold
1270/// a token or a home directory, and this type is what a `{:?}` on a
1271/// [`Response`] would print. The three lists are counted rather than named
1272/// for the same reason: `env_keys` is a key set, which is itself worth
1273/// keeping out of a log.
1274impl fmt::Debug for SheepConfigView {
1275    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1276        write!(
1277            f,
1278            "SheepConfigView {{ name: {:?}, env_keys: {}, overridden: {}, pending: {} }}",
1279            self.name,
1280            self.env_keys.len(),
1281            self.overridden.len(),
1282            self.pending.len()
1283        )
1284    }
1285}
1286
1287/// One RPC response (pairs with [`Request`] variants)
1288///
1289/// Ten variants carry a bare `Vec<ProcessInfo>`. Do not collapse them into
1290/// one: each names which request it answers, which is what lets a variant
1291/// diverge without a protocol bump. `Reloading` already means an acceptance
1292/// rather than a result, `Scaled` only the survivors of a scale-down, and
1293/// `Mustered` every sheep of every restored app rather than what this call
1294/// started.
1295// wire format: changing existing variants is a breaking change.
1296// `large_enum_variant` allowed, not fixed: clippy's remedy is to box
1297// `DogStarted`'s payload, a source break for every
1298// `Response::DogStarted(info)` in and out of this workspace.
1299#[allow(clippy::large_enum_variant)]
1300#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
1301#[serde(tag = "kind", content = "data", rename_all = "snake_case")]
1302#[non_exhaustive]
1303pub enum Response {
1304    /// Answer to `Ping`
1305    Pong,
1306    /// Answer to `ListFlock`
1307    Flock(Vec<ProcessInfo>),
1308    /// Answer to `Describe`
1309    Described(Vec<ProcessInfo>),
1310    /// Answer to `Start`
1311    Started(Vec<ProcessInfo>),
1312    /// Answer to `Add`: one row per app the request named, registered and
1313    /// spawning nothing.
1314    ///
1315    /// A row here can still be `Online`: `Add` is idempotent by name, so the
1316    /// reply describes the membership the request leaves behind.
1317    Added(Vec<ProcessInfo>),
1318    /// Answer to `ConfigDrift`: one entry per app that is registered under a
1319    /// config different from the one asked about, and no entry for anything
1320    /// else. An empty vector means every app asked about either matches or
1321    /// is not registered at all.
1322    Drifted(Vec<SheepDrift>),
1323    /// Answer to `ApplyConfig`: one entry per app the request named, in the
1324    /// order it named them, the refused and the unchanged included.
1325    ///
1326    /// Complete where [`Self::Drifted`] is filtered: an app missing from
1327    /// "what did you do to each of these" looks like one the daemon dropped.
1328    Applied(Vec<SheepApplied>),
1329    /// Answer to `SheepConfig`: one sheep's config with `env` emptied and
1330    /// its keys listed beside it.
1331    ///
1332    /// Boxed, and the only variant here that is. This one carries a whole
1333    /// [`AppConfig`], which is several times the size of anything else in
1334    /// the enum, and a `Response` is inside a `Reply` which is inside a
1335    /// [`ServerFrame`](crate::protocol::ServerFrame): without the box,
1336    /// every frame the daemon sends costs the largest config's worth of
1337    /// stack for a variant almost none of them use.
1338    ///
1339    /// The enum-level `#[allow(clippy::large_enum_variant)]` below does not
1340    /// cover it, and the difference is the point of that allow's own
1341    /// argument: boxing `DogStarted` would be a source break for every
1342    /// `Response::DogStarted(info)` in and out of this workspace, where
1343    /// this variant has never shipped and so breaks nobody.
1344    ///
1345    /// `Box<T>` serializes exactly as `T`, so the wire bytes and the pinned
1346    /// fixtures are untouched.
1347    SheepConfig(Box<SheepConfigView>),
1348    /// Answer to `SetSheepEnv`: the key that was set or removed.
1349    ///
1350    /// Never the value, and never the resulting env map. This reply exists
1351    /// to confirm which key moved, and echoing what was just written back
1352    /// down a socket would undo the whole point of `SheepConfig` withholding
1353    /// it (IR-41).
1354    SheepEnvSet {
1355        /// The sheep.
1356        name: String,
1357        /// The key.
1358        key: String,
1359    },
1360    /// Answer to `SetSheepField`: which field moved, and whether the
1361    /// running child has it.
1362    ///
1363    /// Not [`Self::Applied`]'s three lists; the difference is the
1364    /// request's own shape. `applied`, `pending` and `refused` exist
1365    /// because `ApplyConfig` carries N apps of M fields, so a caller cannot
1366    /// otherwise tell which field went where or that one app of eleven was
1367    /// refused. This request carries one field of one sheep, so `refused`
1368    /// would be a second way to say no beside the `Err` arm (a client
1369    /// checking only the `Err` would silently swallow the other), and the
1370    /// two lists collapse to the one bit that is left.
1371    ///
1372    /// That bit is not redundant with the field's own
1373    /// [`ApplyGroup`](crate::config::ApplyGroup), which the caller already
1374    /// knows. It is the daemon's answer about state a caller cannot see:
1375    /// `autostart` is `NextSpawn` and yet reports as in force, because it
1376    /// is read at muster rather than at a spawn, and a `Live` field whose
1377    /// config subset will not normalize on its own parks instead of
1378    /// applying.
1379    SheepFieldSet {
1380        /// The sheep.
1381        name: String,
1382        /// The field that moved.
1383        key: String,
1384        /// `true` when the running child does not have the value yet and
1385        /// `shep reload <name>` is what promotes it. A client rendering
1386        /// this says so, the same rule [`SheepApplied::pending`] carries.
1387        pending: bool,
1388    },
1389    /// Answer to `SetDogConfig`: the section was written and the topic
1390    /// published.
1391    DogConfigSet {
1392        /// The dog.
1393        name: String,
1394    },
1395    /// Answer to `Stop`
1396    Stopped(Vec<ProcessInfo>),
1397    /// Answer to `Restart`
1398    Restarted(Vec<ProcessInfo>),
1399    /// Answer to `Reload`: an acceptance, not a result.
1400    ///
1401    /// One instance costs a readiness wait plus a drain, so a clustered app
1402    /// outlasts any deadline a client may ask for. The daemon answers as soon
1403    /// as the reload is accepted, with the matched sheep as they stood then,
1404    /// and the swaps report themselves on the bus (`process.reload`,
1405    /// `process.reloaded`, `process.reload_abandoned`). A matched sheep with
1406    /// nothing to replace is listed as the no-op success it is.
1407    Reloading(Vec<ProcessInfo>),
1408    /// Answer to `Scale`: the app's instances that will remain, one row each,
1409    /// ordered by [`sort_flock`]. Every row shares one name, so that is slot
1410    /// order with the id breaking a tie.
1411    ///
1412    /// Scaling down, the departing instances are absent even though their
1413    /// kill ladders are still running; they report themselves on the bus as
1414    /// `process.delete`.
1415    Scaled(Vec<ProcessInfo>),
1416    /// Answer to `SetSmit`: every instance of the named sheep, one row each,
1417    /// carrying the smit as it now stands.
1418    SmitPainted(Vec<ProcessInfo>),
1419    /// Answer to `Delete`: ids removed
1420    Deleted(Vec<u32>),
1421    /// Answer to `Reopen`: every matched sheep, running or not. A sheep with
1422    /// no live log pump has nothing to reopen and is reported as a success,
1423    /// so this carries the same matches `Describe` would.
1424    Reopened(Vec<ProcessInfo>),
1425    /// Answer to `Flush`: one row per matched sheep, running or not, exactly
1426    /// as [`Self::Reopened`].
1427    ///
1428    /// One row per sheep, not per file emptied: several sheep can share one
1429    /// log path, and the daemon truncates each distinct path once.
1430    Flushed(Vec<ProcessInfo>),
1431    /// Answer to `Trigger`: one [`ActionReply`] row per matched sheep, rather
1432    /// than a flock listing, since `ProcessInfo` has nowhere to hold a reply
1433    /// body.
1434    Triggered(Vec<ActionReply>),
1435    /// Answer to `Signal`: one [`SignalReply`] row per matched sheep.
1436    ///
1437    /// Not a flock listing: [`ProcessInfo`] has nowhere to hold a per-sheep
1438    /// outcome.
1439    Signalled(Vec<SignalReply>),
1440    /// Answer to `SendLine`: one [`LineReply`] row per matched sheep.
1441    SentLine(Vec<LineReply>),
1442    /// Answer to `SaveRoll`
1443    RollSaved {
1444        /// Absolute path of the roll the daemon wrote
1445        path: String,
1446        /// How many apps that roll records
1447        apps: u32,
1448    },
1449    /// Answer to `Muster`: every sheep of every app the roll restored, not
1450    /// only the ones this call spawned.
1451    ///
1452    /// Assembling a flock that is already assembled starts nothing, so a
1453    /// listing of what this call spawned would be indistinguishable from an
1454    /// empty roll.
1455    Mustered(Vec<ProcessInfo>),
1456    /// Answer to `DogConfig`: the dog's own section, rendered back to TOML.
1457    ///
1458    /// `toml` is [`DogSectionToml`], whose manual `Debug` keeps the webhook
1459    /// credentials this text carries out of a `{:?}`-formatted `Response`.
1460    DogSection {
1461        /// The `[dog.<name>]` table as TOML text, empty when the file has
1462        /// no such section
1463        toml: DogSectionToml,
1464    },
1465    /// Answer to `EnableDog`: the dog as it stands now
1466    DogStarted(ProcessInfo),
1467    /// Answer to `DogStaleness`: this daemon's own handshake record, split
1468    /// into the dogs it has given up on and the dogs it is still waiting on.
1469    ///
1470    /// Two lists because they answer two questions. `stale` is a finding;
1471    /// `pending` is a reason to ask again, since a reading taken now would
1472    /// be a guess about them.
1473    ///
1474    /// Names only: two builds differing only in the protocol they speak
1475    /// report the same crate version.
1476    DogStaleness {
1477        /// Dogs this daemon has refused twice: once on the handshake that
1478        /// bought them a restart from disk, and again after it. It will not
1479        /// restart them a third time.
1480        stale: Vec<String>,
1481        /// Dogs this daemon is still waiting to hear a final answer from: one
1482        /// whose restart is in flight, or one it supervises that has not
1483        /// handshook yet. Neither stale nor known healthy.
1484        pending: Vec<String>,
1485    },
1486    /// Answer to `HandoverFitness`: `None` when the whole flock can be
1487    /// carried across a daemon handover, and otherwise the sentence saying
1488    /// which sheep cannot be and why.
1489    ///
1490    /// A rendered sentence rather than a structured reason: the set of things
1491    /// a handover cannot carry keeps changing, and the client only prints it.
1492    HandoverFitness {
1493        /// Why the flock cannot be handed over in place, or `None` when it
1494        /// can.
1495        refusal: Option<String>,
1496    },
1497    /// Answer to `Subscribe`
1498    Subscribed,
1499    /// Answer to `KillDaemon`
1500    ShuttingDown,
1501}
1502
1503/// A request frame
1504// wire format: changing this is a breaking change
1505#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
1506pub struct Envelope {
1507    /// Per-connection request id
1508    pub id: u64,
1509    /// Client-imposed deadline (daemon aborts work past it)
1510    pub deadline_ms: Option<u64>,
1511    /// The request
1512    pub body: Request,
1513}
1514
1515/// A reply frame
1516///
1517/// `result` uses serde's stock `Result` representation: the wire carries
1518/// `{"Ok": ...}` / `{"Err": ...}`, with capitalized keys, pinned by snapshot.
1519// wire format: changing this is a breaking change
1520#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
1521pub struct Reply {
1522    /// Echoes [`Envelope::id`]
1523    pub id: u64,
1524    /// The outcome
1525    pub result: Result<Response, RpcError>,
1526}
1527
1528/// Handshake outcome: `HelloAck` or a typed refusal, since version skew is
1529/// an error rather than silence. Same `Ok`/`Err` wire shape as
1530/// [`Reply::result`]; refusals use [`RpcErrorCode::ProtocolMismatch`].
1531pub type HelloReply = Result<HelloAck, RpcError>;
1532
1533/// Structured RPC failure
1534// wire format: changing this is a breaking change
1535#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
1536pub struct RpcError {
1537    /// Machine-readable code
1538    pub code: RpcErrorCode,
1539    /// Human-readable message (plain English, no theme)
1540    pub message: String,
1541    /// The daemon's own crate version, when it chose to name it.
1542    ///
1543    /// Set on a [`RpcErrorCode::ProtocolMismatch`] refusal, the only place a
1544    /// client can learn it, since [`HelloAck::daemon_version`] never arrives
1545    /// there. `None` on every other error, and on a refusal from a daemon
1546    /// built before the field existed, so a reader treats `None` as unknown
1547    /// and takes the conservative path.
1548    ///
1549    /// Absent on the wire rather than `null`, so
1550    /// [`crate::protocol::PROTOCOL_VERSION`] does not move for it.
1551    #[serde(default, skip_serializing_if = "Option::is_none")]
1552    pub daemon_version: Option<String>,
1553}
1554
1555/// Machine-readable RPC error codes
1556// wire format: changing existing variants is a breaking change
1557#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
1558#[serde(rename_all = "snake_case")]
1559#[non_exhaustive]
1560pub enum RpcErrorCode {
1561    /// Selector matched nothing
1562    NotFound,
1563    /// Config failed validation daemon-side
1564    InvalidConfig,
1565    /// Spawn failed (exec error, permissions)
1566    SpawnFailed,
1567    /// Handshake protocol version mismatch
1568    ProtocolMismatch,
1569    /// Unexpected daemon-side failure
1570    Internal,
1571    /// The request's deadline expired before the daemon finished it
1572    DeadlineExceeded,
1573}
1574
1575impl RpcErrorCode {
1576    /// Every variant, for code that needs to iterate them all.
1577    ///
1578    /// `#[non_exhaustive]` forces a `_` arm on any match written outside this
1579    /// crate, which would swallow a variant added here and never updated
1580    /// there (`crates/shep-cli/src/exit.rs` maps every code to an exit
1581    /// status).
1582    pub const ALL: [Self; 6] = [
1583        Self::NotFound,
1584        Self::InvalidConfig,
1585        Self::SpawnFailed,
1586        Self::ProtocolMismatch,
1587        Self::Internal,
1588        Self::DeadlineExceeded,
1589    ];
1590
1591    /// Never called; exists so this crate fails to build if a variant is
1592    /// added to [`RpcErrorCode`] without also being added to [`Self::ALL`].
1593    ///
1594    /// A match here is still checked for exhaustiveness, and each arm indexes
1595    /// a fixed literal position into [`Self::ALL`], so growing the enum
1596    /// without growing the array is an out-of-bounds constant index.
1597    #[allow(dead_code)]
1598    const fn assert_all_lists_every_variant(code: Self) -> Self {
1599        match code {
1600            Self::NotFound => Self::ALL[0],
1601            Self::InvalidConfig => Self::ALL[1],
1602            Self::SpawnFailed => Self::ALL[2],
1603            Self::ProtocolMismatch => Self::ALL[3],
1604            Self::Internal => Self::ALL[4],
1605            Self::DeadlineExceeded => Self::ALL[5],
1606        }
1607    }
1608}
1609
1610#[cfg(test)]
1611mod tests {
1612    use super::*;
1613    use crate::config::AppConfig;
1614    use crate::protocol::PROTOCOL_VERSION;
1615    use crate::status::ProcStatus;
1616
1617    fn sample_info() -> ProcessInfo {
1618        ProcessInfo {
1619            id: 3,
1620            name: "web".to_string(),
1621            status: ProcStatus::Online,
1622            pid: Some(4242),
1623            restarts: 1,
1624            uptime_ms: 60_000,
1625            fold: Some("backend".to_string()),
1626            out_file: Some("/home/ada/.shep/logs/web-0-out.log".to_string()),
1627            err_file: Some("/home/ada/.shep/logs/web-0-err.log".to_string()),
1628            // 12.5: an insta JSON snapshot is stable across platforms only
1629            // for a float the binary representation holds exactly.
1630            cpu_percent: Some(12.5),
1631            memory_bytes: Some(48 * 1024 * 1024),
1632            dog: None,
1633            lambs: None,
1634            last_exit: Some(ExitInfo {
1635                code: Some(1),
1636                signal: None,
1637            }),
1638            smit: None,
1639            instance: None,
1640            handshook: None,
1641            dog_stale: None,
1642            // Left at the builder's default: this fixture feeds
1643            // `reply_wire_snapshots` and `bus_event_wire_snapshots`, so a
1644            // `Some(..)` moves pinned bytes.
1645            pending: None,
1646            overridden: None,
1647        }
1648    }
1649
1650    #[test]
1651    fn a_builder_with_nothing_set_is_a_sheep_that_has_not_run() {
1652        let info = ProcessInfo::builder(3, "web", ProcStatus::Stopped).build();
1653
1654        assert_eq!(info.id, 3);
1655        assert_eq!(info.name, "web");
1656        assert_eq!(info.status, ProcStatus::Stopped);
1657        assert_eq!(info.pid, None);
1658        assert_eq!(info.restarts, 0);
1659        assert_eq!(info.uptime_ms, 0);
1660        assert_eq!(info.fold, None);
1661        assert_eq!(info.out_file, None);
1662        assert_eq!(info.err_file, None);
1663        assert_eq!(info.cpu_percent, None);
1664        assert_eq!(info.memory_bytes, None);
1665        assert_eq!(info.dog, None);
1666        assert_eq!(info.lambs, None);
1667        assert_eq!(info.last_exit, None);
1668    }
1669
1670    /// Every field is given a value distinct from every other field's
1671    /// default, so a copy-pasted setter body shows up as a mismatch.
1672    #[test]
1673    fn every_setter_writes_its_own_field_and_no_other() {
1674        let built = ProcessInfo::builder(3, "web", ProcStatus::Online)
1675            .pid(Some(4242))
1676            .restarts(1)
1677            .uptime_ms(60_000)
1678            .fold(Some("backend".to_string()))
1679            .out_file(Some("/home/ada/.shep/logs/web-0-out.log".to_string()))
1680            .err_file(Some("/home/ada/.shep/logs/web-0-err.log".to_string()))
1681            .cpu_percent(Some(12.5))
1682            .memory_bytes(Some(48 * 1024 * 1024))
1683            .dog(None)
1684            .last_exit(Some(ExitInfo {
1685                code: Some(1),
1686                signal: None,
1687            }))
1688            .build();
1689
1690        // `sample_info()` is a struct literal on purpose: it is the one
1691        // place that names every field by hand, so this comparison fails the
1692        // day the struct grows a field the builder cannot set.
1693        assert_eq!(built, sample_info());
1694
1695        // `sample_info()`'s `dog` is `None`, the builder's default too, so an
1696        // empty `dog` setter body would pass the comparison above. It cannot
1697        // be changed: it feeds pinned snapshots.
1698        assert_eq!(
1699            ProcessInfo::builder(1, "metrics", ProcStatus::Online)
1700                .dog(Some(DogSource::BuiltIn))
1701                .build()
1702                .dog,
1703            Some(DogSource::BuiltIn),
1704            "an empty `dog` setter body is invisible to the comparison above"
1705        );
1706
1707        // `lambs`, on `dog`'s terms above.
1708        assert_eq!(
1709            ProcessInfo::builder(1, "web", ProcStatus::Online)
1710                .lambs(Some(vec![Lamb::new(4243, "node")]))
1711                .build()
1712                .lambs,
1713            Some(vec![Lamb::new(4243, "node")]),
1714            "an empty `lambs` setter body is invisible to the comparison above"
1715        );
1716
1717        // `smit`, on the same terms, and the field a third party writes: an
1718        // empty setter body drops every dog's mark.
1719        assert_eq!(
1720            ProcessInfo::builder(1, "web", ProcStatus::Online)
1721                .smit(Some("\u{25b2} main@a1b2c3".to_string()))
1722                .build()
1723                .smit
1724                .as_deref(),
1725            Some("\u{25b2} main@a1b2c3"),
1726            "an empty `smit` setter body is invisible to the comparison above"
1727        );
1728
1729        // `handshook`, on the same terms.
1730        assert_eq!(
1731            ProcessInfo::builder(1, "web", ProcStatus::Online)
1732                .handshook(Some(false))
1733                .build()
1734                .handshook,
1735            Some(false),
1736            "an empty `handshook` setter body is invisible to the comparison above"
1737        );
1738
1739        // `dog_stale`, paired with `handshook`: both default to `None`.
1740        assert_eq!(
1741            ProcessInfo::builder(1, "web", ProcStatus::Online)
1742                .dog_stale(Some(true))
1743                .build()
1744                .dog_stale,
1745            Some(true),
1746            "an empty `dog_stale` setter body is invisible to the comparison above"
1747        );
1748
1749        // `pending`, on the same terms.
1750        assert_eq!(
1751            ProcessInfo::builder(1, "web", ProcStatus::Online)
1752                .pending(Some(vec!["env".to_string()]))
1753                .build()
1754                .pending,
1755            Some(vec!["env".to_string()]),
1756            "an empty `pending` setter body is invisible to the comparison above"
1757        );
1758
1759        // `overridden`, on the same terms.
1760        assert_eq!(
1761            ProcessInfo::builder(1, "web", ProcStatus::Online)
1762                .overridden(Some(vec!["cwd".to_string()]))
1763                .build()
1764                .overridden,
1765            Some(vec!["cwd".to_string()]),
1766            "an empty `overridden` setter body is invisible to the comparison above"
1767        );
1768    }
1769
1770    #[test]
1771    fn lambs_distinguishes_not_walked_from_walked_and_empty() {
1772        let not_walked = ProcessInfo::builder(1, "web", ProcStatus::Online).build();
1773        assert_eq!(not_walked.lambs, None);
1774
1775        let walked_empty = ProcessInfo::builder(1, "web", ProcStatus::Online)
1776            .lambs(Some(Vec::new()))
1777            .build();
1778        assert_eq!(walked_empty.lambs, Some(Vec::new()));
1779    }
1780
1781    #[test]
1782    fn a_process_info_without_a_lambs_key_still_deserializes() {
1783        let fixture = r#"{
1784            "id": 3, "name": "web", "status": "online", "pid": 4242,
1785            "restarts": 0, "uptime_ms": 100, "fold": null,
1786            "out_file": null, "err_file": null,
1787            "cpu_percent": null, "memory_bytes": null, "dog": null
1788        }"#;
1789        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
1790        assert_eq!(info.lambs, None);
1791    }
1792
1793    /// argv holds credentials (`--password=`, `?token=`) and
1794    /// `shep describe --format json` is output people paste into issues.
1795    #[test]
1796    fn a_lamb_is_a_pid_and_an_executable_name() {
1797        let lamb = Lamb::new(4243, "node");
1798        let json = serde_json::to_string(&lamb).unwrap();
1799        assert_eq!(json, r#"{"pid":4243,"name":"node"}"#);
1800        assert_eq!(serde_json::from_str::<Lamb>(&json).unwrap(), lamb);
1801    }
1802
1803    #[test]
1804    fn a_dog_source_serializes_snake_case_under_its_kind() {
1805        assert_eq!(
1806            serde_json::to_string(&DogSource::BuiltIn).unwrap(),
1807            r#"{"kind":"built_in"}"#
1808        );
1809        let adopted = DogSource::Adopted {
1810            path: "/usr/local/bin/shep-otel".to_string(),
1811        };
1812        let wire = r#"{"kind":"adopted","path":"/usr/local/bin/shep-otel"}"#;
1813        assert_eq!(serde_json::to_string(&adopted).unwrap(), wire);
1814        assert_eq!(serde_json::from_str::<DogSource>(wire).unwrap(), adopted);
1815    }
1816
1817    #[test]
1818    fn v1_process_info_without_a_dog_marker_still_deserializes() {
1819        let fixture = r#"{"id":3,"name":"web","status":"online","pid":4242,"restarts":1,"uptime_ms":60000,"fold":"backend","out_file":"/l/o.log","err_file":"/l/e.log","cpu_percent":12.5,"memory_bytes":50331648}"#;
1820        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
1821        assert_eq!(info.dog, None);
1822    }
1823
1824    /// No field here carries `#[serde(default)]`: serde's derive resolves a
1825    /// missing key to `None` for a field whose type is syntactically
1826    /// `Option<...>`.
1827    #[test]
1828    fn a_process_info_without_a_last_exit_key_still_deserializes() {
1829        let fixture = r#"{"id":3,"name":"web","status":"online","pid":4242,"restarts":1,"uptime_ms":60000,"fold":"backend","out_file":"/l/o.log","err_file":"/l/e.log","cpu_percent":12.5,"memory_bytes":50331648,"dog":null,"lambs":null}"#;
1830        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
1831        assert_eq!(info.last_exit, None);
1832    }
1833
1834    #[test]
1835    fn a_signal_request_and_its_reply_round_trip() {
1836        let request = Request::Signal {
1837            selector: SelectorSpec::Name("web".to_string()),
1838            signal: "SIGHUP".to_string(),
1839        };
1840        let json = serde_json::to_string(&request).unwrap();
1841        assert_eq!(serde_json::from_str::<Request>(&json).unwrap(), request);
1842
1843        let reply = Response::Signalled(vec![
1844            SignalReply {
1845                id: 1,
1846                name: "web".to_string(),
1847                outcome: SignalOutcome::Delivered,
1848            },
1849            SignalReply {
1850                id: 2,
1851                name: "web".to_string(),
1852                outcome: SignalOutcome::NotRunning,
1853            },
1854            SignalReply {
1855                id: 3,
1856                name: "api".to_string(),
1857                outcome: SignalOutcome::Failed {
1858                    reason: "no such process".to_string(),
1859                },
1860            },
1861        ]);
1862        let json = serde_json::to_string(&reply).unwrap();
1863        assert_eq!(serde_json::from_str::<Response>(&json).unwrap(), reply);
1864        // The three tags, spelled out: a variant renamed in Rust changes
1865        // these strings, compiles clean, and breaks a client matching on them.
1866        assert!(json.contains(r#""kind":"delivered""#), "{json}");
1867        assert!(json.contains(r#""kind":"not_running""#), "{json}");
1868        assert!(json.contains(r#""kind":"failed""#), "{json}");
1869    }
1870
1871    /// `instances` is a per-app number, so `shep stock /web.*/ 4` could mean
1872    /// four each or four total.
1873    #[test]
1874    fn a_scale_request_names_one_app_and_a_count() {
1875        let request = Request::Scale {
1876            name: "web".to_string(),
1877            count: 4,
1878        };
1879        let json = serde_json::to_string(&request).unwrap();
1880        assert_eq!(serde_json::from_str::<Request>(&json).unwrap(), request);
1881        assert!(json.contains(r#""kind":"scale""#), "{json}");
1882        assert!(json.contains(r#""name":"web""#), "{json}");
1883        // No `selector` key at all: this verb is not one of the
1884        // selector-taking family.
1885        assert!(!json.contains("selector"), "{json}");
1886    }
1887
1888    #[test]
1889    fn a_scaled_reply_carries_its_own_tag() {
1890        let json = serde_json::to_string(&Response::Scaled(vec![])).unwrap();
1891        assert_eq!(json, r#"{"kind":"scaled","data":[]}"#);
1892    }
1893
1894    /// `Add` and `Start` carry byte-identical payloads and differ by their
1895    /// `kind` alone.
1896    #[test]
1897    fn an_add_request_and_its_reply_round_trip() {
1898        let request = Request::Add {
1899            apps: vec![AppConfig::minimal("web", "./srv")],
1900        };
1901        let json = serde_json::to_string(&request).unwrap();
1902        assert_eq!(serde_json::from_str::<Request>(&json).unwrap(), request);
1903        assert!(json.contains(r#""kind":"add""#), "{json}");
1904
1905        let reply = Response::Added(vec![]);
1906        let json = serde_json::to_string(&reply).unwrap();
1907        assert_eq!(serde_json::from_str::<Response>(&json).unwrap(), reply);
1908        assert!(json.contains(r#""kind":"added""#), "{json}");
1909    }
1910
1911    /// `NotWritten`'s reason is the only thing separating "the app is not
1912    /// reading its stdin" from "the pipe broke".
1913    #[test]
1914    fn a_send_line_request_and_its_reply_round_trip() {
1915        let request = Request::SendLine {
1916            selector: SelectorSpec::Name("repl".to_string()),
1917            line: "reload-config".to_string(),
1918        };
1919        let json = serde_json::to_string(&request).unwrap();
1920        assert_eq!(serde_json::from_str::<Request>(&json).unwrap(), request);
1921
1922        let reply = Response::SentLine(vec![
1923            LineReply {
1924                id: 1,
1925                name: "repl".to_string(),
1926                outcome: LineOutcome::Sent,
1927            },
1928            LineReply {
1929                id: 2,
1930                name: "web".to_string(),
1931                outcome: LineOutcome::NoStdin,
1932            },
1933            LineReply {
1934                id: 3,
1935                name: "stuck".to_string(),
1936                outcome: LineOutcome::NotWritten {
1937                    reason: "the app did not read its stdin within 2s".to_string(),
1938                },
1939            },
1940        ]);
1941        let json = serde_json::to_string(&reply).unwrap();
1942        assert_eq!(serde_json::from_str::<Response>(&json).unwrap(), reply);
1943        assert!(json.contains(r#""kind":"sent""#), "{json}");
1944        assert!(json.contains(r#""kind":"no_stdin""#), "{json}");
1945        assert!(json.contains("did not read its stdin"), "{json}");
1946    }
1947
1948    #[test]
1949    fn a_line_carrying_a_newline_is_still_one_field_on_the_wire() {
1950        let request = Request::SendLine {
1951            selector: SelectorSpec::All,
1952            line: "a\nb".to_string(),
1953        };
1954        let json = serde_json::to_string(&request).unwrap();
1955        // Escaped, not literal: the frame stays one JSON object. Refusing
1956        // it is the daemon's job, not serde's.
1957        assert!(json.contains(r#""line":"a\nb""#), "{json}");
1958        assert_eq!(serde_json::from_str::<Request>(&json).unwrap(), request);
1959    }
1960
1961    /// Also pins that the newtype protecting this field costs the wire
1962    /// nothing: a bare string either way, so no fixture and no protocol
1963    /// version moves for it.
1964    #[test]
1965    fn env_value_debug_does_not_leak() {
1966        let request = Request::SetSheepEnv {
1967            name: "web".to_string(),
1968            key: "DATABASE_URL".to_string(),
1969            value: Some("postgres://user:hunter2@localhost/app".to_string().into()),
1970        };
1971        let debug = format!("{request:?}");
1972        assert!(!debug.contains("hunter2"), "{debug}");
1973        assert!(debug.contains("EnvValue(<37 bytes>)"), "{debug}");
1974
1975        let json = serde_json::to_string(&request).unwrap();
1976        assert!(
1977            json.contains(r#""value":"postgres://user:hunter2@localhost/app""#),
1978            "{json}"
1979        );
1980        assert_eq!(serde_json::from_str::<Request>(&json).unwrap(), request);
1981    }
1982
1983    /// The pane edits everything else about a sheep, so the config itself
1984    /// has to travel; `env` is the one map in it that holds secrets, and
1985    /// the keys travel while the values never do (IR-41).
1986    #[test]
1987    fn a_sheep_config_view_never_carries_an_env_value() {
1988        let mut config = AppConfig::minimal("web", "./srv");
1989        config
1990            .env
1991            .insert("DB_PASS".to_string(), "hunter2".to_string());
1992        let view = SheepConfigView::new(config, Vec::new(), Vec::new());
1993        assert!(view.config.env.is_empty());
1994        assert_eq!(view.env_keys, ["DB_PASS"]);
1995        let json = serde_json::to_string(&view).unwrap();
1996        assert!(!json.contains("hunter2"), "{json}");
1997    }
1998
1999    /// A `{:?}` on a `Response` reaches it, and `config` holds `args` and
2000    /// `cwd` as well as the env keys (IR-41).
2001    #[test]
2002    fn a_sheep_config_views_debug_is_the_exact_redacted_string() {
2003        let mut config = AppConfig::minimal("web", "./srv");
2004        config.env.insert("A".to_string(), "1".to_string());
2005        let view = SheepConfigView::new(config, vec!["max_restarts".to_string()], Vec::new());
2006        assert_eq!(
2007            format!("{view:?}"),
2008            r#"SheepConfigView { name: "web", env_keys: 1, overridden: 1, pending: 0 }"#
2009        );
2010    }
2011
2012    #[test]
2013    fn request_wire_snapshots() {
2014        let requests = vec![
2015            Envelope {
2016                id: 1,
2017                deadline_ms: Some(5000),
2018                body: Request::Ping,
2019            },
2020            Envelope {
2021                id: 2,
2022                deadline_ms: None,
2023                body: Request::ListFlock,
2024            },
2025            Envelope {
2026                id: 3,
2027                deadline_ms: None,
2028                body: Request::Stop {
2029                    selector: SelectorSpec::Name("web".to_string()),
2030                },
2031            },
2032            Envelope {
2033                id: 4,
2034                deadline_ms: None,
2035                body: Request::Start {
2036                    apps: vec![AppConfig::minimal("web", "./srv")],
2037                },
2038            },
2039            // `All` rather than a named sheep: the selector `shep reopen`
2040            // sends when given no argument.
2041            Envelope {
2042                id: 5,
2043                deadline_ms: None,
2044                body: Request::Reopen {
2045                    selector: SelectorSpec::All,
2046                },
2047            },
2048            // The same selector as the row above, so the two log-plane rows
2049            // differ by their `kind` and by nothing else.
2050            Envelope {
2051                id: 6,
2052                deadline_ms: None,
2053                body: Request::Flush {
2054                    selector: SelectorSpec::All,
2055                },
2056            },
2057            // The same selector as the `stop` row: `reload` under `stop`'s tag
2058            // shows up here as two identical objects.
2059            Envelope {
2060                id: 7,
2061                deadline_ms: None,
2062                body: Request::Reload {
2063                    selector: SelectorSpec::Name("web".to_string()),
2064                },
2065            },
2066            // `action`/`params` match channel.rs's with-params fixture
2067            // verbatim, so a trigger reads the same at every hop.
2068            Envelope {
2069                id: 8,
2070                deadline_ms: None,
2071                body: Request::Trigger {
2072                    selector: SelectorSpec::Name("web".to_string()),
2073                    action: "set-log-level".to_string(),
2074                    params: Some("debug".to_string()),
2075                },
2076            },
2077            // A fieldless verb: a bare `{"kind":"..."}` with no `selector` key.
2078            Envelope {
2079                id: 9,
2080                deadline_ms: None,
2081                body: Request::SaveRoll,
2082            },
2083            // Paired with the `save_roll` row: they differ by their `kind` alone.
2084            Envelope {
2085                id: 10,
2086                deadline_ms: None,
2087                body: Request::Muster,
2088            },
2089            // The three dog verbs. `enable_dog` and `disable_dog` differ by
2090            // their `kind` and by `source` alone.
2091            Envelope {
2092                id: 11,
2093                deadline_ms: None,
2094                body: Request::DogConfig {
2095                    name: "bark".to_string(),
2096                },
2097            },
2098            Envelope {
2099                id: 12,
2100                deadline_ms: None,
2101                body: Request::EnableDog {
2102                    name: "metrics".to_string(),
2103                    source: DogSource::BuiltIn,
2104                },
2105            },
2106            Envelope {
2107                id: 13,
2108                deadline_ms: None,
2109                body: Request::DisableDog {
2110                    name: "metrics".to_string(),
2111                },
2112            },
2113            // `Id`, `Regex` and `Fold` are three newtypes the wire tells apart
2114            // only by their `kind` tag: a `Fold` under `regex`'s tag turns
2115            // `shep restart fold:api` into a regex match.
2116            Envelope {
2117                id: 14,
2118                deadline_ms: None,
2119                body: Request::Describe {
2120                    selector: SelectorSpec::Id(7),
2121                },
2122            },
2123            Envelope {
2124                id: 15,
2125                deadline_ms: None,
2126                body: Request::Describe {
2127                    selector: SelectorSpec::Regex("^web-".to_string()),
2128                },
2129            },
2130            Envelope {
2131                id: 16,
2132                deadline_ms: None,
2133                body: Request::Describe {
2134                    selector: SelectorSpec::Fold("api".to_string()),
2135                },
2136            },
2137            // `SIGHUP` rather than `SIGTERM`: the stop ladder already sends
2138            // TERM, so a TERM fixture could not tell the two frames apart.
2139            Envelope {
2140                id: 17,
2141                deadline_ms: None,
2142                body: Request::Signal {
2143                    selector: SelectorSpec::Name("web".to_string()),
2144                    signal: "SIGHUP".to_string(),
2145                },
2146            },
2147            // The one verb here whose body has no `selector` key.
2148            Envelope {
2149                id: 18,
2150                deadline_ms: None,
2151                body: Request::Scale {
2152                    name: "web".to_string(),
2153                    count: 4,
2154                },
2155            },
2156            // The line carries no terminator on the wire, since the shepherd
2157            // appends it.
2158            Envelope {
2159                id: 19,
2160                deadline_ms: None,
2161                body: Request::SendLine {
2162                    selector: SelectorSpec::All,
2163                    line: "reload-config".to_string(),
2164                },
2165            },
2166            // Both halves of the `Option` are pinned, a paint and a clear, so a
2167            // dog author does not have to guess the clear frame's shape.
2168            Envelope {
2169                id: 20,
2170                deadline_ms: None,
2171                body: Request::SetSmit {
2172                    sheep: "web".to_string(),
2173                    smit: Some(
2174                        "\u{25b2} main@a1b2c3"
2175                            .parse()
2176                            .expect("the reference smit is valid"),
2177                    ),
2178                },
2179            },
2180            Envelope {
2181                id: 21,
2182                deadline_ms: None,
2183                body: Request::SetSmit {
2184                    sheep: "web".to_string(),
2185                    smit: None,
2186                },
2187            },
2188            // An empty `apps`: `start`'s row already pins the payload type, so
2189            // this row's own are the tag and the key the list travels under.
2190            Envelope {
2191                id: 22,
2192                deadline_ms: None,
2193                body: Request::ConfigDrift { apps: Vec::new() },
2194            },
2195            // The only struct-shaped `SelectorSpec` variant, so the only place
2196            // `"kind":"instance"` and the `slot` key are pinned.
2197            Envelope {
2198                id: 23,
2199                deadline_ms: None,
2200                body: Request::Restart {
2201                    selector: SelectorSpec::Instance {
2202                        name: "web".to_string(),
2203                        slot: 2,
2204                    },
2205                },
2206            },
2207            // The one request an older daemon must never be sent: shep-cli
2208            // gates it on the daemon's crate version.
2209            Envelope {
2210                id: 24,
2211                deadline_ms: None,
2212                body: Request::HandoverFitness,
2213            },
2214            // The second request gated on the daemon's crate version.
2215            Envelope {
2216                id: 25,
2217                deadline_ms: None,
2218                body: Request::DogStaleness,
2219            },
2220            // The only request carrying a `DeclaredApp`: a merge keys on what a
2221            // document claimed. `declared_env` is non-empty to show it holds
2222            // env key names and no env value, and `reset` is pinned at a
2223            // non-default depth.
2224            Envelope {
2225                id: 26,
2226                deadline_ms: None,
2227                body: Request::ApplyConfig {
2228                    apps: vec![DeclaredApp {
2229                        config: AppConfig::minimal("web", "./srv"),
2230                        declared: ["name", "script"]
2231                            .iter()
2232                            .map(|k| (*k).to_string())
2233                            .collect(),
2234                        declared_env: ["DATABASE_URL"].iter().map(|k| (*k).to_string()).collect(),
2235                    }],
2236                    reset: ResetDepth::Policy,
2237                },
2238            },
2239            // The same app as the `start` row above: the two differ by their
2240            // `kind` alone, so a mis-tagged `add` shows up as two identical
2241            // objects.
2242            Envelope {
2243                id: 27,
2244                deadline_ms: None,
2245                body: Request::Add {
2246                    apps: vec![AppConfig::minimal("web", "./srv")],
2247                },
2248            },
2249            // The four config-pane requests. `SheepConfig` takes a name
2250            // rather than a selector, like `Scale` and `SetSmit` above and
2251            // for their reason: a pane edits one sheep.
2252            Envelope {
2253                id: 28,
2254                deadline_ms: None,
2255                body: Request::SheepConfig {
2256                    name: "web".to_string(),
2257                },
2258            },
2259            // `value` is pinned as `Some`, because the `None` spelling is
2260            // what removes the key, and a reader that guessed the two apart
2261            // wrongly would delete an operator's env instead of setting it.
2262            // The value is a placeholder, not a secret: this is the one
2263            // request in the enum that carries an env value at all, and it
2264            // travels in one direction only, nothing ever reads it back.
2265            Envelope {
2266                id: 29,
2267                deadline_ms: None,
2268                body: Request::SetSheepEnv {
2269                    name: "web".to_string(),
2270                    key: "DATABASE_URL".to_string(),
2271                    value: Some("postgres://localhost/app".to_string().into()),
2272                },
2273            },
2274            // `SetSheepEnv`'s twin for everything that is not `env`, and
2275            // pinned beside it: the two are one letter apart in the tag and
2276            // a reader that crossed them would write a config field into an
2277            // env map. `value` is a bare JSON value rather than a string,
2278            // which is the half a hand-written reader gets wrong: an
2279            // integer field is an integer here, not `"32"`.
2280            Envelope {
2281                id: 30,
2282                deadline_ms: None,
2283                body: Request::SetSheepField {
2284                    name: "web".to_string(),
2285                    key: "max_restarts".to_string(),
2286                    value: serde_json::json!(32),
2287                },
2288            },
2289            // The second request carrying a `DogSectionToml`, and pinned
2290            // beside its reader: `DogConfig` asks for a section and this
2291            // writes one back, so the two have to agree about the shape a
2292            // section takes on the wire.
2293            Envelope {
2294                id: 31,
2295                deadline_ms: None,
2296                body: Request::SetDogConfig {
2297                    name: "bark".to_string(),
2298                    toml: "debounce = \"30s\"\n".to_string().into(),
2299                },
2300            },
2301        ];
2302        insta::assert_json_snapshot!("request_wire_v4", requests);
2303    }
2304
2305    #[test]
2306    fn reply_wire_snapshots() {
2307        let replies = vec![
2308            Reply {
2309                id: 1,
2310                result: Ok(Response::Pong),
2311            },
2312            Reply {
2313                id: 2,
2314                result: Ok(Response::Flock(vec![sample_info()])),
2315            },
2316            Reply {
2317                id: 3,
2318                result: Err(RpcError {
2319                    code: RpcErrorCode::NotFound,
2320                    message: "no sheep matches `web`".to_string(),
2321                    daemon_version: None,
2322                }),
2323            },
2324            // `ActionReply` is not a `ProcessInfo`. `Replied` is the
2325            // struct-shaped `ActionOutcome` variant and so the one worth
2326            // pinning.
2327            Reply {
2328                id: 4,
2329                result: Ok(Response::Triggered(vec![ActionReply {
2330                    id: 3,
2331                    name: "web".to_string(),
2332                    outcome: ActionOutcome::Replied {
2333                        body: "ok".to_string(),
2334                    },
2335                }])),
2336            },
2337            // The only struct-shaped `Response` variant; every other one is
2338            // a newtype over a `Vec` or a unit, both proven above.
2339            Reply {
2340                id: 5,
2341                result: Ok(Response::RollSaved {
2342                    path: "/home/ada/.shep/flock.json".to_string(),
2343                    apps: 2,
2344                }),
2345            },
2346            // The present `dog` marker; `sample_info()` pins the absent one.
2347            // `Adopted` because it is the variant carrying a payload.
2348            Reply {
2349                id: 6,
2350                result: Ok(Response::Flock(vec![ProcessInfo {
2351                    id: 7,
2352                    name: "otel".to_string(),
2353                    dog: Some(DogSource::Adopted {
2354                        path: "/usr/local/bin/shep-otel".to_string(),
2355                    }),
2356                    ..sample_info()
2357                }])),
2358            },
2359            // The section crosses the wire as text, never a typed structure.
2360            Reply {
2361                id: 7,
2362                result: Ok(Response::DogSection {
2363                    toml: "port = 9615\n".to_string().into(),
2364                }),
2365            },
2366            // The only `Response` variant carrying a bare `ProcessInfo`
2367            // rather than a `Vec`: `enable` starts exactly one dog.
2368            Reply {
2369                id: 8,
2370                result: Ok(Response::DogStarted(ProcessInfo {
2371                    id: 4,
2372                    name: "metrics".to_string(),
2373                    dog: Some(DogSource::BuiltIn),
2374                    ..sample_info()
2375                })),
2376            },
2377            // Each row below carries the smallest body that shows its wire
2378            // shape: the tag is what is being pinned. `Deleted` is a
2379            // `Vec<u32>`; `Subscribed` and `ShuttingDown` carry nothing.
2380            Reply {
2381                id: 9,
2382                result: Ok(Response::Described(vec![])),
2383            },
2384            Reply {
2385                id: 10,
2386                result: Ok(Response::Started(vec![])),
2387            },
2388            Reply {
2389                id: 11,
2390                result: Ok(Response::Stopped(vec![])),
2391            },
2392            Reply {
2393                id: 12,
2394                result: Ok(Response::Restarted(vec![])),
2395            },
2396            Reply {
2397                id: 13,
2398                result: Ok(Response::Reloading(vec![])),
2399            },
2400            Reply {
2401                id: 14,
2402                result: Ok(Response::Deleted(vec![7, 8])),
2403            },
2404            Reply {
2405                id: 15,
2406                result: Ok(Response::Reopened(vec![])),
2407            },
2408            Reply {
2409                id: 16,
2410                result: Ok(Response::Flushed(vec![])),
2411            },
2412            Reply {
2413                id: 17,
2414                result: Ok(Response::Mustered(vec![])),
2415            },
2416            Reply {
2417                id: 18,
2418                result: Ok(Response::Subscribed),
2419            },
2420            Reply {
2421                id: 19,
2422                result: Ok(Response::ShuttingDown),
2423            },
2424            // `Signalled`, mirroring the `Triggered` row: one row per
2425            // `SignalOutcome` variant, so no tag is left unproven.
2426            Reply {
2427                id: 20,
2428                result: Ok(Response::Signalled(vec![
2429                    SignalReply {
2430                        id: 1,
2431                        name: "web".to_string(),
2432                        outcome: SignalOutcome::Delivered,
2433                    },
2434                    SignalReply {
2435                        id: 2,
2436                        name: "web".to_string(),
2437                        outcome: SignalOutcome::NotRunning,
2438                    },
2439                    SignalReply {
2440                        id: 3,
2441                        name: "api".to_string(),
2442                        outcome: SignalOutcome::Failed {
2443                            reason: "no such process".to_string(),
2444                        },
2445                    },
2446                ])),
2447            },
2448            Reply {
2449                id: 21,
2450                result: Ok(Response::Scaled(vec![sample_info()])),
2451            },
2452            // `SentLine`, mirroring the `Signalled` row: one row per
2453            // `LineOutcome` variant.
2454            Reply {
2455                id: 22,
2456                result: Ok(Response::SentLine(vec![
2457                    LineReply {
2458                        id: 1,
2459                        name: "repl".to_string(),
2460                        outcome: LineOutcome::Sent,
2461                    },
2462                    LineReply {
2463                        id: 2,
2464                        name: "web".to_string(),
2465                        outcome: LineOutcome::NoStdin,
2466                    },
2467                    LineReply {
2468                        id: 3,
2469                        name: "stuck".to_string(),
2470                        outcome: LineOutcome::NotWritten {
2471                            reason: "the app did not read its stdin within 2s".to_string(),
2472                        },
2473                    },
2474                ])),
2475            },
2476            // A walked lamb tree; every other row pins the `null` shape.
2477            Reply {
2478                id: 23,
2479                result: Ok(Response::Described(vec![
2480                    ProcessInfo::builder(3, "web", ProcStatus::Online)
2481                        .pid(Some(4242))
2482                        .lambs(Some(vec![Lamb::new(4243, "node"), Lamb::new(4244, "sh")]))
2483                        .build(),
2484                ])),
2485            },
2486            // The killed-by-signal shape of `last_exit`; every row above pins
2487            // the exited-normally one. `SIGTERM`'s raw number, since this
2488            // crate carries no name for it.
2489            Reply {
2490                id: 24,
2491                result: Ok(Response::Flock(vec![
2492                    ProcessInfo::builder(5, "worker", ProcStatus::Stopped)
2493                        .restarts(1)
2494                        .last_exit(Some(ExitInfo {
2495                            code: None,
2496                            signal: Some(15),
2497                        }))
2498                        .build(),
2499                ])),
2500            },
2501            // The one row that pins a smit on the wire; `sample_info()` carries
2502            // none.
2503            Reply {
2504                id: 25,
2505                result: Ok(Response::SmitPainted(vec![
2506                    ProcessInfo::builder(3, "web", ProcStatus::Online)
2507                        .pid(Some(4242))
2508                        .smit(Some("\u{25b2} main@a1b2c3".to_string()))
2509                        .build(),
2510                ])),
2511            },
2512            // A sheep drifting in one field and a sheep drifting in several.
2513            // `env` is one of them: the name travels and the value never does.
2514            Reply {
2515                id: 26,
2516                result: Ok(Response::Drifted(vec![
2517                    SheepDrift::new("web", vec!["cwd".to_string()]),
2518                    SheepDrift::new(
2519                        "api",
2520                        vec!["args".to_string(), "env".to_string(), "script".to_string()],
2521                    ),
2522                ])),
2523            },
2524            // The present shape of `instance`; every row above pins its absence.
2525            Reply {
2526                id: 27,
2527                result: Ok(Response::Flock(vec![
2528                    ProcessInfo::builder(9, "web", ProcStatus::Online)
2529                        .pid(Some(5150))
2530                        .instance(Some(2))
2531                        .build(),
2532                ])),
2533            },
2534            // Both shapes of the handover answer; the difference between them
2535            // is a `null`.
2536            Reply {
2537                id: 28,
2538                result: Ok(Response::HandoverFitness { refusal: None }),
2539            },
2540            Reply {
2541                id: 29,
2542                result: Ok(Response::HandoverFitness {
2543                    refusal: Some("sheep 'web' has a shepherd channel".to_string()),
2544                }),
2545            },
2546            // Both lists non-empty and different: the two carry the same wire
2547            // shape.
2548            Reply {
2549                id: 30,
2550                result: Ok(Response::DogStaleness {
2551                    stale: vec!["metrics".to_string()],
2552                    pending: vec!["bark".to_string()],
2553                }),
2554            },
2555            // A dog whose process is up and which has never answered this
2556            // shepherd. `dog_stale: false` is the silence still being waited
2557            // out; the row below is the one it has given up on.
2558            Reply {
2559                id: 31,
2560                result: Ok(Response::Flock(vec![
2561                    ProcessInfo::builder(10, "log-rotate", ProcStatus::Online)
2562                        .pid(Some(208_341))
2563                        .dog(Some(DogSource::Adopted {
2564                            path: "/usr/local/bin/shep-log-rotate".to_string(),
2565                        }))
2566                        .handshook(Some(false))
2567                        .dog_stale(Some(false))
2568                        .build(),
2569                ])),
2570            },
2571            Reply {
2572                id: 32,
2573                result: Ok(Response::Flock(vec![
2574                    ProcessInfo::builder(10, "log-rotate", ProcStatus::Online)
2575                        .pid(Some(208_341))
2576                        .dog(Some(DogSource::Adopted {
2577                            path: "/usr/local/bin/shep-log-rotate".to_string(),
2578                        }))
2579                        .handshook(Some(false))
2580                        .dog_stale(Some(true))
2581                        .build(),
2582                ])),
2583            },
2584            // Three entries, one per shape a load produces: applied, pending,
2585            // refused. `env` is a pending name on purpose: the name travels
2586            // and the value never does.
2587            Reply {
2588                id: 32,
2589                result: Ok(Response::Applied(vec![
2590                    SheepApplied::new("web", vec!["max_memory".to_string()], Vec::new(), None),
2591                    SheepApplied::new(
2592                        "api",
2593                        Vec::new(),
2594                        vec!["args".to_string(), "env".to_string()],
2595                        None,
2596                    ),
2597                    SheepApplied::new(
2598                        "worker",
2599                        Vec::new(),
2600                        Vec::new(),
2601                        Some("worker is not registered".to_string()),
2602                    ),
2603                ])),
2604            },
2605            // `Added`'s tag, all a fixture can prove for a `Vec<ProcessInfo>`
2606            // variant. Down here because every id in this vector is
2607            // hand-written.
2608            Reply {
2609                id: 33,
2610                result: Ok(Response::Added(vec![])),
2611            },
2612            // The config pane's answer, and the row that proves its whole
2613            // security property: `env` serializes as an empty object while
2614            // `env_keys` names the key beside it, so an out-of-tree reader
2615            // learns here that a value never travels (IR-41).
2616            Reply {
2617                id: 34,
2618                result: Ok(Response::SheepConfig(Box::new(SheepConfigView::new(
2619                    {
2620                        let mut config = AppConfig::minimal("web", "./srv");
2621                        config
2622                            .env
2623                            .insert("DATABASE_URL".to_string(), "postgres://x".to_string());
2624                        config
2625                    },
2626                    vec!["max_restarts".to_string()],
2627                    vec!["env".to_string()],
2628                )))),
2629            },
2630            // The three acknowledgements. None echoes what was written:
2631            // `SheepEnvSet` names the key and not its value, for the reason
2632            // the row above pins, `SheepFieldSet` does the same and adds
2633            // the one bit the caller cannot derive, and `DogConfigSet`
2634            // names the dog and not the section.
2635            Reply {
2636                id: 35,
2637                result: Ok(Response::SheepEnvSet {
2638                    name: "web".to_string(),
2639                    key: "DATABASE_URL".to_string(),
2640                }),
2641            },
2642            // `pending` pinned `true`, because `false` is the value a reader
2643            // that dropped the field entirely would decode by accident, and
2644            // the two answers send an operator to different places: one
2645            // says the change is in force, the other says to reload.
2646            Reply {
2647                id: 36,
2648                result: Ok(Response::SheepFieldSet {
2649                    name: "web".to_string(),
2650                    key: "script".to_string(),
2651                    pending: true,
2652                }),
2653            },
2654            Reply {
2655                id: 37,
2656                result: Ok(Response::DogConfigSet {
2657                    name: "bark".to_string(),
2658                }),
2659            },
2660        ];
2661        insta::assert_json_snapshot!("reply_wire_v4", replies);
2662    }
2663
2664    /// Asserts on the JSON, not the struct: a `Vec<String>` cannot say which
2665    /// of the two a string is, so a build carrying a value would typecheck.
2666    #[test]
2667    fn a_sheep_applied_carries_names_and_never_values() {
2668        let applied = SheepApplied::new(
2669            "web",
2670            vec!["cwd".to_string()],
2671            vec!["env".to_string()],
2672            None,
2673        );
2674        let json = serde_json::to_string(&applied).unwrap();
2675        assert!(json.contains("\"env\""), "the NAME travels: {json}");
2676        assert!(
2677            !json.contains("DATABASE_URL"),
2678            "and no value ever does: {json}"
2679        );
2680    }
2681
2682    #[test]
2683    fn a_sheep_applied_debug_prints_the_names_it_was_given() {
2684        let applied = SheepApplied::new("web", vec!["cwd".to_string()], Vec::new(), None);
2685        assert_eq!(
2686            format!("{applied:?}"),
2687            "SheepApplied { name: \"web\", applied: [\"cwd\"], pending: [], refused: None }"
2688        );
2689    }
2690
2691    #[test]
2692    fn a_process_info_without_a_smit_key_still_deserializes() {
2693        let fixture = r#"{"id":1,"name":"web","status":"online","pid":42,"restarts":0,"uptime_ms":10,"fold":null,"out_file":null,"err_file":null,"cpu_percent":null,"memory_bytes":null,"dog":null,"lambs":null,"last_exit":null}"#;
2694        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
2695        assert_eq!(info.smit, None);
2696    }
2697
2698    /// The fixture is a dog's row, where `None` means "render this as it
2699    /// rendered before the field existed", never "never handshaken".
2700    #[test]
2701    fn a_process_info_without_a_handshook_key_still_deserializes() {
2702        let fixture = r#"{"id":1,"name":"metrics","status":"online","pid":42,"restarts":0,"uptime_ms":10,"fold":null,"out_file":null,"err_file":null,"cpu_percent":null,"memory_bytes":null,"dog":{"kind":"built_in"},"lambs":null,"last_exit":null,"smit":null,"instance":0}"#;
2703        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
2704        assert_eq!(info.handshook, None);
2705        assert_eq!(info.dog, Some(DogSource::BuiltIn));
2706    }
2707
2708    /// The fixture carries `handshook: false`, the case that matters: `None`
2709    /// is "no verdict to report", never "it has not given up".
2710    #[test]
2711    fn a_process_info_without_a_dog_stale_key_still_deserializes() {
2712        let fixture = r#"{"id":1,"name":"metrics","status":"online","pid":42,"restarts":0,"uptime_ms":10,"fold":null,"out_file":null,"err_file":null,"cpu_percent":null,"memory_bytes":null,"dog":{"kind":"built_in"},"lambs":null,"last_exit":null,"smit":null,"instance":0,"handshook":false}"#;
2713        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
2714        assert_eq!(info.dog_stale, None);
2715        assert_eq!(info.handshook, Some(false));
2716    }
2717
2718    /// A dog written in another language speaks this wire directly and never
2719    /// runs `FromStr`.
2720    #[test]
2721    fn a_smit_is_validated_when_it_is_deserialized_not_only_when_parsed() {
2722        for bad in [
2723            r#""\u001b[2Jgone""#.to_string(),                    // an escape
2724            r#""a\nb""#.to_string(),                             // a newline
2725            r#""""#.to_string(),                                 // empty
2726            r#""   ""#.to_string(),                              // whitespace
2727            format!(r#""{}""#, "x".repeat(Smit::MAX_CHARS + 1)), // too long
2728        ] {
2729            assert!(
2730                serde_json::from_str::<Smit>(&bad).is_err(),
2731                "a daemon must refuse this on the wire: {bad}"
2732            );
2733        }
2734        assert!(serde_json::from_str::<Smit>(r#""\u25b2 main@a1b2c3""#).is_ok());
2735    }
2736
2737    /// The hand-written `Deserialize` agrees with the derived `Serialize`
2738    /// only while the serialize side stays transparent.
2739    #[test]
2740    fn a_smit_travels_as_a_bare_string() {
2741        let smit: Smit = "\u{25b2} main@a1b2c3".parse().expect("valid");
2742        let json = serde_json::to_string(&smit).unwrap();
2743        assert_eq!(json, "\"\u{25b2} main@a1b2c3\"");
2744        assert_eq!(serde_json::from_str::<Smit>(&json).unwrap(), smit);
2745    }
2746
2747    #[test]
2748    fn a_smit_is_capped_in_characters_not_bytes() {
2749        let cjk = "\u{7f8a}".repeat(Smit::MAX_CHARS);
2750        assert_eq!(cjk.len(), Smit::MAX_CHARS * 3);
2751        assert!(cjk.parse::<Smit>().is_ok(), "{cjk}");
2752        assert_eq!(
2753            "x".repeat(Smit::MAX_CHARS + 1).parse::<Smit>(),
2754            Err(SmitError::TooLong {
2755                chars: Smit::MAX_CHARS + 1
2756            })
2757        );
2758    }
2759
2760    #[test]
2761    fn a_smit_is_stored_exactly_as_it_arrived() {
2762        let padded: Smit = "  main@a1b2c3  ".parse().expect("valid");
2763        assert_eq!(padded.as_str(), "  main@a1b2c3  ");
2764        assert_eq!(padded.to_string(), "  main@a1b2c3  ");
2765    }
2766
2767    #[test]
2768    fn v1_fixture_still_deserializes() {
2769        // Committed byte fixture from protocol v1. If this breaks, bump
2770        // PROTOCOL_VERSION and record it in the CHANGELOG.
2771        let fixture = r#"{"id":7,"deadline_ms":null,"body":{"kind":"stop","selector":{"kind":"name","value":"web"}}}"#;
2772        let env: Envelope = serde_json::from_str(fixture).unwrap();
2773        assert_eq!(env.id, 7);
2774        assert!(matches!(
2775            env.body,
2776            Request::Stop { selector: SelectorSpec::Name(ref n) } if n == "web"
2777        ));
2778    }
2779
2780    #[test]
2781    fn hello_handshake_shape() {
2782        let hello = Hello {
2783            client_version: "0.1.0".to_string(),
2784            protocol: PROTOCOL_VERSION,
2785            dog_name: None,
2786        };
2787        let json = serde_json::to_string(&hello).unwrap();
2788        assert_eq!(json, r#"{"client_version":"0.1.0","protocol":4}"#);
2789    }
2790
2791    #[test]
2792    fn a_dogs_hello_names_the_dog_and_nothing_elses_does() {
2793        let dog = Hello {
2794            client_version: "0.1.0".to_string(),
2795            protocol: PROTOCOL_VERSION,
2796            dog_name: Some("metrics".to_string()),
2797        };
2798        let json = serde_json::to_string(&dog).unwrap();
2799        assert_eq!(
2800            json,
2801            r#"{"client_version":"0.1.0","protocol":4,"dog_name":"metrics"}"#
2802        );
2803        assert_eq!(serde_json::from_str::<Hello>(&json).unwrap(), dog);
2804    }
2805
2806    /// `Hello` is the version-negotiation frame, so `deny_unknown_fields`
2807    /// here would refuse a newer client before `protocol` is read, leaving
2808    /// neither peer able to report the skew.
2809    #[test]
2810    fn a_hello_without_a_dog_name_still_parses() {
2811        let fixture = r#"{"client_version":"0.1.14","protocol":2}"#;
2812        let hello: Hello = serde_json::from_str(fixture).unwrap();
2813        assert_eq!(hello.protocol, 2);
2814        assert_eq!(hello.dog_name, None);
2815
2816        // The other direction: an older daemon ignores a key it does not
2817        // know. `unknown_to_an_older_daemon` stands in for `dog_name`.
2818        let newer = r#"{"client_version":"9.9.9","protocol":2,"dog_name":"metrics","unknown_to_an_older_daemon":true}"#;
2819        let hello: Hello = serde_json::from_str(newer).unwrap();
2820        assert_eq!(hello.protocol, 2);
2821        assert_eq!(hello.dog_name.as_deref(), Some("metrics"));
2822    }
2823
2824    #[test]
2825    fn hello_reply_carries_typed_skew_error() {
2826        let refusal: HelloReply = Err(RpcError {
2827            code: RpcErrorCode::ProtocolMismatch,
2828            message: "daemon speaks protocol 1, client sent 2".to_string(),
2829            daemon_version: None,
2830        });
2831        let json = serde_json::to_string(&refusal).unwrap();
2832        assert_eq!(
2833            json,
2834            r#"{"Err":{"code":"protocol_mismatch","message":"daemon speaks protocol 1, client sent 2"}}"#
2835        );
2836        let back: HelloReply = serde_json::from_str(&json).unwrap();
2837        assert_eq!(back, refusal);
2838    }
2839
2840    #[test]
2841    fn v1_reply_fixture_still_deserializes() {
2842        // Committed byte fixture, protocol v1.
2843        let ok = r#"{"id":1,"result":{"Ok":{"kind":"pong"}}}"#;
2844        let reply: Reply = serde_json::from_str(ok).unwrap();
2845        assert!(matches!(reply.result, Ok(Response::Pong)));
2846        let err = r#"{"id":2,"result":{"Err":{"code":"not_found","message":"no sheep"}}}"#;
2847        let reply: Reply = serde_json::from_str(err).unwrap();
2848        assert_eq!(reply.result.unwrap_err().code, RpcErrorCode::NotFound);
2849    }
2850
2851    #[test]
2852    fn v1_hello_ack_fixture_still_deserializes() {
2853        let fixture = r#"{"Ok":{"daemon_version":"0.1.0","protocol":1,"pid":4242}}"#;
2854        let ack: HelloReply = serde_json::from_str(fixture).unwrap();
2855        assert_eq!(ack.unwrap().pid, 4242);
2856    }
2857
2858    #[test]
2859    fn v1_process_info_without_stats_still_deserializes() {
2860        let fixture = r#"{"id":3,"name":"web","status":"online","pid":4242,"restarts":1,"uptime_ms":60000,"fold":"backend","out_file":"/l/o.log","err_file":"/l/e.log"}"#;
2861        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
2862        assert_eq!(info.cpu_percent, None);
2863        assert_eq!(info.memory_bytes, None);
2864    }
2865
2866    #[test]
2867    fn v1_process_info_without_log_paths_still_deserializes() {
2868        // Committed byte fixture from before `out_file`/`err_file` existed.
2869        let fixture = r#"{"id":3,"name":"web","status":"online","pid":4242,"restarts":1,"uptime_ms":60000,"fold":"backend"}"#;
2870        let info: ProcessInfo = serde_json::from_str(fixture).unwrap();
2871        assert_eq!(info.id, 3);
2872        assert_eq!(info.out_file, None);
2873        assert_eq!(info.err_file, None);
2874    }
2875
2876    #[test]
2877    fn an_old_client_still_decodes_a_new_process_info() {
2878        // `ProcessInfo` carries no `deny_unknown_fields`, unlike the config
2879        // types in `crate::config`, so extra keys are ignored.
2880        #[derive(Deserialize)]
2881        struct V1ProcessInfo {
2882            id: u32,
2883            fold: Option<String>,
2884        }
2885
2886        let current = serde_json::to_string(&sample_info()).unwrap();
2887        let old: V1ProcessInfo = serde_json::from_str(&current).unwrap();
2888        assert_eq!(old.id, 3);
2889        assert_eq!(old.fold.as_deref(), Some("backend"));
2890    }
2891
2892    #[test]
2893    fn an_rpc_error_without_a_daemon_version_serializes_exactly_as_before() {
2894        // `skip_serializing_if` is what makes the field free: no
2895        // `"daemon_version":null` key for an older client to ignore.
2896        let plain = RpcError {
2897            code: RpcErrorCode::NotFound,
2898            message: "no sheep".to_string(),
2899            daemon_version: None,
2900        };
2901        assert_eq!(
2902            serde_json::to_string(&plain).unwrap(),
2903            r#"{"code":"not_found","message":"no sheep"}"#
2904        );
2905    }
2906
2907    #[test]
2908    fn a_v1_rpc_error_fixture_deserializes_with_no_daemon_version() {
2909        let fixture =
2910            r#"{"code":"protocol_mismatch","message":"daemon speaks protocol 1, client sent 2"}"#;
2911        let err: RpcError = serde_json::from_str(fixture).unwrap();
2912        assert_eq!(err.code, RpcErrorCode::ProtocolMismatch);
2913        assert_eq!(err.daemon_version, None);
2914    }
2915
2916    #[test]
2917    fn an_old_client_ignores_an_rpc_error_field_it_has_never_seen() {
2918        // `RpcError` carries no `deny_unknown_fields`, so an optional field
2919        // may be added without moving `PROTOCOL_VERSION`.
2920        #[derive(Deserialize)]
2921        struct OldRpcError {
2922            code: RpcErrorCode,
2923            message: String,
2924        }
2925
2926        let current = serde_json::to_string(&RpcError {
2927            code: RpcErrorCode::ProtocolMismatch,
2928            message: "daemon speaks protocol 1, client sent 2".to_string(),
2929            daemon_version: Some("0.1.16".to_string()),
2930        })
2931        .unwrap();
2932        let old: OldRpcError = serde_json::from_str(&current).expect("must tolerate");
2933        assert_eq!(old.code, RpcErrorCode::ProtocolMismatch);
2934        assert_eq!(old.message, "daemon speaks protocol 1, client sent 2");
2935    }
2936
2937    #[test]
2938    fn deadline_exceeded_code_serializes_snake_case() {
2939        assert_eq!(
2940            serde_json::to_string(&RpcErrorCode::DeadlineExceeded).unwrap(),
2941            "\"deadline_exceeded\""
2942        );
2943        assert_eq!(
2944            serde_json::from_str::<RpcErrorCode>("\"deadline_exceeded\"").unwrap(),
2945            RpcErrorCode::DeadlineExceeded
2946        );
2947    }
2948
2949    #[test]
2950    fn action_outcome_kinds_serialize_snake_case_and_round_trip() {
2951        // The shared snapshots exercise only `Replied`, the struct-shaped
2952        // variant.
2953        let cases = [
2954            (
2955                ActionOutcome::Replied {
2956                    body: "pong".to_string(),
2957                },
2958                r#"{"kind":"replied","body":"pong"}"#,
2959            ),
2960            (ActionOutcome::NoChannel, r#"{"kind":"no_channel"}"#),
2961            (ActionOutcome::Skipped, r#"{"kind":"skipped"}"#),
2962            (ActionOutcome::TimedOut, r#"{"kind":"timed_out"}"#),
2963        ];
2964        for (outcome, wire) in cases {
2965            assert_eq!(
2966                serde_json::to_string(&outcome).unwrap(),
2967                wire,
2968                "{outcome:?}"
2969            );
2970            assert_eq!(
2971                serde_json::from_str::<ActionOutcome>(wire).unwrap(),
2972                outcome
2973            );
2974        }
2975    }
2976
2977    #[test]
2978    fn save_roll_serializes_snake_case_with_its_payload_under_data() {
2979        assert_eq!(
2980            serde_json::to_string(&Request::SaveRoll).unwrap(),
2981            r#"{"kind":"save_roll"}"#
2982        );
2983        let reply = Response::RollSaved {
2984            path: "/tmp/flock.json".to_string(),
2985            apps: 3,
2986        };
2987        let wire = r#"{"kind":"roll_saved","data":{"path":"/tmp/flock.json","apps":3}}"#;
2988        assert_eq!(serde_json::to_string(&reply).unwrap(), wire);
2989        assert_eq!(serde_json::from_str::<Response>(wire).unwrap(), reply);
2990    }
2991
2992    /// The listing is empty on purpose: `reply_wire_snapshots` pins the row
2993    /// field by field.
2994    #[test]
2995    fn muster_serializes_snake_case_with_its_listing_under_data() {
2996        assert_eq!(
2997            serde_json::to_string(&Request::Muster).unwrap(),
2998            r#"{"kind":"muster"}"#
2999        );
3000        let reply = Response::Mustered(Vec::new());
3001        let wire = r#"{"kind":"mustered","data":[]}"#;
3002        assert_eq!(serde_json::to_string(&reply).unwrap(), wire);
3003        assert_eq!(serde_json::from_str::<Response>(wire).unwrap(), reply);
3004    }
3005
3006    #[test]
3007    fn the_dog_verbs_serialize_snake_case_with_their_payloads_under_data() {
3008        assert_eq!(
3009            serde_json::to_string(&Request::DogConfig {
3010                name: "bark".to_string()
3011            })
3012            .unwrap(),
3013            r#"{"kind":"dog_config","name":"bark"}"#
3014        );
3015        assert_eq!(
3016            serde_json::to_string(&Request::DisableDog {
3017                name: "bark".to_string()
3018            })
3019            .unwrap(),
3020            r#"{"kind":"disable_dog","name":"bark"}"#
3021        );
3022        let section = Response::DogSection {
3023            toml: "port = 9615\n".to_string().into(),
3024        };
3025        let wire = r#"{"kind":"dog_section","data":{"toml":"port = 9615\n"}}"#;
3026        assert_eq!(serde_json::to_string(&section).unwrap(), wire);
3027        assert_eq!(serde_json::from_str::<Response>(wire).unwrap(), section);
3028    }
3029
3030    #[test]
3031    fn dog_section_toml_debug_does_not_leak() {
3032        // A dog's section routinely holds webhook credentials. Pinned as an
3033        // exact string, so a `#[derive(Debug)]` on `DogSectionToml` fails
3034        // here.
3035        let toml: DogSectionToml =
3036            "webhook_url = \"https://discord.com/api/webhooks/1/super-secret-token\"\n"
3037                .to_string()
3038                .into();
3039        assert_eq!(format!("{toml:?}"), "DogSectionToml(<70 bytes>)");
3040
3041        let response = Response::DogSection { toml };
3042        assert_eq!(
3043            format!("{response:?}"),
3044            "DogSection { toml: DogSectionToml(<70 bytes>) }"
3045        );
3046    }
3047
3048    /// The fixture cannot agree under either candidate order: by id it is
3049    /// `web/1, api/2, web/0`, by name `api, web, web`. The two `web` rows
3050    /// are the tiebreak half, seeded out of order.
3051    #[test]
3052    fn a_listing_sorts_by_name_then_by_id() {
3053        let mut listing = vec![
3054            ProcessInfo::builder(1, "web", ProcStatus::Online).build(),
3055            ProcessInfo::builder(2, "api", ProcStatus::Online).build(),
3056            ProcessInfo::builder(0, "web", ProcStatus::Online).build(),
3057        ];
3058        sort_flock(&mut listing);
3059
3060        let seen: Vec<(&str, u32)> = listing
3061            .iter()
3062            .map(|info| (info.name.as_str(), info.id))
3063            .collect();
3064        assert_eq!(
3065            seen,
3066            vec![("api", 2), ("web", 0), ("web", 1)],
3067            "name first, then id inside a name"
3068        );
3069    }
3070
3071    #[test]
3072    fn an_instance_slot_survives_a_round_trip_and_defaults_to_absent() {
3073        let with = ProcessInfo::builder(1, "web", ProcStatus::Online)
3074            .instance(Some(2))
3075            .build();
3076        assert_eq!(with.instance, Some(2));
3077
3078        let without = ProcessInfo::builder(1, "web", ProcStatus::Online).build();
3079        assert_eq!(
3080            without.instance, None,
3081            "a row nobody set a slot on says so, rather than claiming slot 0"
3082        );
3083    }
3084
3085    #[test]
3086    fn a_reply_from_a_daemon_without_the_field_deserializes_as_absent() {
3087        let json = r#"{"id":1,"name":"web","status":"online","pid":null,
3088            "restarts":0,"uptime_ms":0,"fold":null,"out_file":null,
3089            "err_file":null,"cpu_percent":null,"memory_bytes":null,"dog":null,
3090            "lambs":null,"last_exit":null,"smit":null}"#;
3091        let info: ProcessInfo = serde_json::from_str(json).expect("older reply still parses");
3092        assert_eq!(info.instance, None);
3093    }
3094
3095    #[test]
3096    fn sort_flock_orders_by_slot_before_id() {
3097        // A reload gave slot 0 a fresh, higher id. Slot order must still win.
3098        let mut listing = vec![
3099            ProcessInfo::builder(9, "web", ProcStatus::Online)
3100                .instance(Some(0))
3101                .build(),
3102            ProcessInfo::builder(2, "web", ProcStatus::Online)
3103                .instance(Some(1))
3104                .build(),
3105        ];
3106        sort_flock(&mut listing);
3107        assert_eq!(
3108            listing.iter().map(|i| i.id).collect::<Vec<_>>(),
3109            vec![9, 2],
3110            "slot 0 leads even though its id is higher"
3111        );
3112    }
3113
3114    #[test]
3115    fn sort_flock_falls_back_to_id_when_no_row_carries_a_slot() {
3116        let mut listing = vec![
3117            ProcessInfo::builder(5, "web", ProcStatus::Online).build(),
3118            ProcessInfo::builder(3, "web", ProcStatus::Online).build(),
3119        ];
3120        sort_flock(&mut listing);
3121        assert_eq!(
3122            listing.iter().map(|i| i.id).collect::<Vec<_>>(),
3123            vec![3, 5],
3124            "an older daemon's listing sorts exactly as it does today"
3125        );
3126    }
3127}