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caixa_core/
supervisor.rs

1//! OTP-shaped supervisor trees, encoded as a typed `:kind Supervisor`
2//! caixa with a strategy + restart-policy children list.
3//!
4//! See `theory/INSPIRATIONS.md` §II.2 + §III.2 for the prior-art frame
5//! (Erlang OTP supervisor + Lunatic supervisor strategies as Rust types).
6//!
7//! ```lisp
8//! (defcaixa
9//!   :nome           "my-app-root"
10//!   :versao         "0.1.0"
11//!   :kind           Supervisor
12//!   :estrategia     OneForOne
13//!   :max-restarts   5
14//!   :restart-window "60s"
15//!   :children       ((:caixa "worker"       :versao "^0.1" :restart Permanent)
16//!                    (:caixa "cache-server" :versao "^0.1" :restart Transient)
17//!                    (:caixa "scratch-job"  :versao "^0.1" :restart Temporary)))
18//! ```
19//!
20//! wasm-operator (M3) walks the tree, materializes one ComputeUnit per
21//! child, and applies the strategy on child failure. The Rust types
22//! here are the typed contract; the runtime owns lifecycle.
23
24use std::time::Duration;
25
26use serde::{Deserialize, Serialize};
27use thiserror::Error;
28
29/// One of the four canonical Erlang/OTP restart strategies.
30///
31/// The strategy decides what happens to *sibling* children when one
32/// child dies. Per-child behaviour is governed by [`RestartPolicy`].
33#[derive(
34    Serialize,
35    Deserialize,
36    Debug,
37    Clone,
38    Copy,
39    PartialEq,
40    Eq,
41    Hash,
42    gen_platform::TypedDispatcher,
43    gen_platform::Discriminant,
44    gen_platform::IsVariant,
45    gen_platform::FromStrKind,
46)]
47pub enum RestartStrategy {
48    /// On child failure, restart only that child. Default; matches
49    /// most "tree of independent workers" use cases.
50    OneForOne,
51    /// On child failure, restart every child. Used when children
52    /// share state and must be in sync.
53    OneForAll,
54    /// On child failure, restart the failed child and every child
55    /// started *after* it (preserving startup order). Used when later
56    /// children depend on earlier ones.
57    RestForOne,
58    /// Dynamic children of the same shape, started on demand. The
59    /// supervisor doesn't know its children at boot; they're added as
60    /// they're needed (e.g. one child per session).
61    SimpleOneForOne,
62}
63
64impl Default for RestartStrategy {
65    fn default() -> Self {
66        // Route the [`Default for RestartStrategy`] impl through the
67        // substrate-canonical [`SUPERVISOR_ESTRATEGIA_DEFAULT`] typed
68        // `pub const` rather than a raw `Self::OneForOne` arm — one
69        // source of truth for the Erlang/OTP `one_for_one` half of Learn
70        // You Some Erlang's `{one_for_one, intensity, 5, 60}` worker-
71        // supervisor canonical default, paired with the sibling
72        // `SUPERVISOR_MAX_RESTARTS_DEFAULT` `MaxIntensity` half (b698ec0)
73        // and `SUPERVISOR_RESTART_WINDOW_DEFAULT` `Period` half (f7dcd0e).
74        // Pinned by `restart_strategy_default_routes_through_lifted_default`.
75        SUPERVISOR_ESTRATEGIA_DEFAULT
76    }
77}
78
79impl RestartStrategy {
80    /// Exhaustive iteration surface for every consumer that walks the
81    /// closed four-arm [`RestartStrategy`] discriminator set (the future
82    /// M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
83    /// admission-webhook rejection body naming the accepted-`:estrategia`
84    /// list, a future `feira supervisor --estrategia …` CLI arg-parse's
85    /// "did you mean" hint via a [`Self::from_wire`]-scan over the slice,
86    /// the future `feira app graph` per-supervisor `:estrategia` column,
87    /// any future round-trip fuzz harness that sweeps every arm). A
88    /// future arm addition (an OTP-`rest_for_all` arm the theory
89    /// [`ABSORPTION-ROADMAP`](https://github.com/pleme-io/theory/blob/main/ABSORPTION-ROADMAP.md)
90    /// might reach for once the four canonical OTP strategies stop
91    /// covering the substrate's discovered load-shape) extends this
92    /// slice as one edit and every consumer picks up the new entry by
93    /// construction; the compiler-checked exhaustiveness on the sibling
94    /// method `match` arms ([`Self::as_str`] / [`Self::from_wire`]) is
95    /// the build-time guarantee that no arm forgets to grow.
96    ///
97    /// Peer of the sibling closed-set typed enums'
98    /// [`crate::CaixaKind::ALL`] (6b1f4fb) /
99    /// [`crate::aplicacao::PlacementStrategy::ALL`] (18c7342) /
100    /// [`crate::aplicacao::RateLimitUnit::ALL`] (6bce03d) /
101    /// [`crate::dep::DepList::ALL`] (45ee563) exhaustive-iteration
102    /// surfaces — the fifth (and the first M2 OTP-shape) closed-set
103    /// typed enum on the caixa surface to converge onto the same
104    /// one-canonical-arm-list-per-enum discipline.
105    pub const ALL: &'static [Self] = &[
106        Self::OneForOne,
107        Self::OneForAll,
108        Self::RestForOne,
109        Self::SimpleOneForOne,
110    ];
111
112    /// Canonical PascalCase discriminator scalar this variant serializes
113    /// as under [`crate::render::SUPERVISOR_KEY_ESTRATEGIA`]. The four arms
114    /// return the paired [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE`]
115    /// / [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL`] /
116    /// [`crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE`] /
117    /// [`crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE`] lifted
118    /// constants so every substrate consumer that dispatches on the
119    /// per-supervisor sibling-restart strategy (the future
120    /// wasm-operator's per-supervisor sibling-restart branch, the future
121    /// M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
122    /// admission-time enum-arm bind, the `caixa-operator`'s hierarchical
123    /// reconciliation scheduler's per-strategy fan-out) reads the same
124    /// byte-string the `Serialize` derive emits — the pin test in
125    /// [`tests::restart_strategy_variants_serialize_to_lifted_scalar_values`]
126    /// asserts the two paths agree, peer of the M3
127    /// `PlacementStrategy::as_str` (cc8f749) on the sibling per-Aplicacao
128    /// distribution-strategy axis.
129    #[must_use]
130    pub const fn as_str(self) -> &'static str {
131        match self {
132            Self::OneForOne => crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE,
133            Self::OneForAll => crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL,
134            Self::RestForOne => crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE,
135            Self::SimpleOneForOne => crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE,
136        }
137    }
138
139    /// Substrate-canonical reverse projection on the `:supervisor
140    /// :estrategia` closed-set axis — parses the `PascalCase`
141    /// discriminator scalar back to the typed variant, or `None` when
142    /// `s` is outside
143    /// the closed-set arm-string set [`Self::as_str`] emits. Dispatches
144    /// on the same lifted
145    /// [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE`] /
146    /// [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL`] /
147    /// [`crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE`] /
148    /// [`crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE`]
149    /// constants the [`Self::as_str`] emitter walks, so the parse and
150    /// emit halves of the round-trip migrate through one caixa-core
151    /// edit on any future arm addition.
152    ///
153    /// Prior to this lift the substrate carried only the forward
154    /// `Self → &str` projection on the OTP sibling-restart axis (the
155    /// [`Self::as_str`] emitter, the [`std::fmt::Display`] impl routed
156    /// through it, the `Serialize` derive that emits the same
157    /// byte-string under [`crate::render::SUPERVISOR_KEY_ESTRATEGIA`])
158    /// plus the kebab-case dispatcher-catalog identity via
159    /// [`Self::discriminant`] — every non-serde consumer that wanted to
160    /// parse a wire-form `PascalCase` strategy scalar had to re-inline
161    /// a four-arm `match s { "OneForOne" => …, "OneForAll" => …,
162    /// "RestForOne" => …, "SimpleOneForOne" => …, _ => … }` cascade
163    /// that expressed no compile-time link back to the typed variant's
164    /// canonical lifted constant. A future variant rename or per-arm
165    /// serde-attribute drift would silently split the wire byte-string
166    /// one non-serde consumer parsed from the one the emitter wrote,
167    /// with the failure surfacing at parse time far from the rebrand
168    /// commit.
169    ///
170    /// Distinct axis from the [`std::str::FromStr`] impl the
171    /// [`gen_platform::FromStrKind`] derive already installs on this
172    /// enum by design, not by drift: `FromStr` parses the *kebab-case*
173    /// dispatcher-catalog identity (`"one-for-one"` / `"one-for-all"` /
174    /// `"rest-for-one"` / `"simple-one-for-one"` — the inverse of
175    /// [`Self::discriminant`]), while this method inverts the
176    /// `PascalCase` wire byte-string [`Self::as_str`] emits. The
177    /// two-axis split lets the dispatcher-catalog identity live in
178    /// kebab-case
179    /// (where every peer catalog identifier already lives) without
180    /// forcing a wire-format rename on the tatara-lisp author surface
181    /// (`:estrategia OneForOne`, `PascalCase`) — the same two-axis
182    /// distinction the sibling [`crate::CaixaKind::from_wire`] (2aa6d23)
183    /// / [`crate::aplicacao::PlacementStrategy::from_wire`] (18c7342)
184    /// carry on their peer closed-set typed-enum wire round-trips.
185    ///
186    /// Same closed-set-reverse-projection discipline the sibling
187    /// [`crate::CaixaKind::from_wire`] (2aa6d23) /
188    /// [`crate::aplicacao::PlacementStrategy::from_wire`] (18c7342) /
189    /// [`crate::aplicacao::RateLimitUnit::from_suffix`] typed enums
190    /// carry on the peer wire-side `str → Self` axes — extended onto
191    /// the M2 OTP-shape sibling-restart-strategy closed-set axis, the
192    /// fifth substrate-side closed-set typed enum to converge on the
193    /// two-way `str ↔ Self` round-trip. Method-named `from_wire` (not
194    /// `from_str`) to match the peer [`crate::CaixaKind::from_wire`]
195    /// shape verbatim and side-step the [`std::str::FromStr`] impl the
196    /// derive already installs on the sibling kebab-case axis. Returns
197    /// `Option<Self>` (rather than `Result<Self, _>`) to match the peer
198    /// shapes: the caller picks the diagnostic form appropriate for
199    /// its use site.
200    #[must_use]
201    pub fn from_wire(s: &str) -> Option<Self> {
202        match s {
203            crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE => Some(Self::OneForOne),
204            crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL => Some(Self::OneForAll),
205            crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE => Some(Self::RestForOne),
206            crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE => Some(Self::SimpleOneForOne),
207            _ => None,
208        }
209    }
210}
211
212/// [`std::fmt::Display`] routed through [`RestartStrategy::as_str`], so the
213/// pretty-printed byte-string every consumer that formats the strategy as
214/// user-facing text lands on (the future wasm-operator's per-supervisor
215/// sibling-restart-strategy diagnostic line, the future `feira app graph`
216/// per-supervisor strategy line, the future M4
217/// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission-webhook
218/// rejection body) reaches for the same lifted
219/// [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE`] /
220/// [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL`] /
221/// [`crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE`] /
222/// [`crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE`] const the
223/// wire-format `Serialize` derive already emits under
224/// [`crate::render::SUPERVISOR_KEY_ESTRATEGIA`] and the
225/// [`RestartStrategy::as_str`] helper already returns.
226///
227/// Pre-convergence the two paths structurally disagreed — the
228/// `#[derive(gen_platform::Discriminant)]` + `#[discriminant(also_display)]`
229/// route (now retired here) sent [`std::fmt::Display`] through the
230/// gen-platform discriminant catalog string, which arrives kebab-case as
231/// `"one-for-one"` / `"one-for-all"` / `"rest-for-one"` /
232/// `"simple-one-for-one"`, while the wire format ran as `PascalCase`
233/// `"OneForOne"` / `"OneForAll"` / `"RestForOne"` / `"SimpleOneForOne"`
234/// through the un-`rename`d serde derive. Every consumer that formatted
235/// the strategy for a diagnostic line, a graph, or a rejection body under
236/// `format!("{v}")` therefore landed under a different byte-string than
237/// the wire format the operator's per-strategy dispatch keyed off — a
238/// silent split whose apply-time symptom (a `format!("{v}")`-carrying
239/// diagnostic quoting `"one-for-one"` while the wire scalar the operator
240/// probed was `"OneForOne"`) surfaced as a confused correlate at
241/// operator-log time far from the two-declaration site.
242///
243/// Routing `Display` through [`RestartStrategy::as_str`] closes the third
244/// path: every `format!("{v}")` call reaches the same lifted
245/// [`crate::render::SUPERVISOR_ESTRATEGIA_*`] const the wire format and
246/// the [`RestartStrategy::as_str`] helper route through — `Debug` (the
247/// compiler-derived variant name), `Display` (via `as_str`), and `Serialize`
248/// (via the un-`rename`d derive) all resolve to the same `PascalCase`
249/// byte-string per variant. A future variant rename or
250/// `#[serde(rename_all = "kebab-case")]` attribute reaches every path at
251/// exactly one place, structurally.
252///
253/// The dispatcher-catalog identity remains kebab-case — [`Self::discriminant`]
254/// (from `#[derive(gen_platform::Discriminant)]`) still returns
255/// `"one-for-one"` / etc., and the fleet-wide
256/// [`gen_platform::register_dispatcher!("caixa.restart-strategy", …)`]
257/// registration keys the catalog off the same kebab identity. The two
258/// naming worlds now live on separate typed methods (`Display` /
259/// `as_str` for the wire byte-string, `discriminant` for the catalog
260/// identity) rather than sharing one `Display` route that structurally
261/// disagrees with the wire format.
262///
263/// Pin tests
264/// [`tests::restart_strategy_display_routes_through_as_str_helper`]
265/// and
266/// [`tests::restart_strategy_display_matches_serialized_wire_byte_string`]
267/// assert the three paths agree byte-for-byte on every variant, so a
268/// future variant rename or per-arm serde attribute drift is a build
269/// error visible at caixa-core test time, not a silent per-consumer
270/// dispatch miss at apply / reconcile time.
271///
272/// Mirrors the M3 [`crate::aplicacao::PlacementStrategy`] `Display` impl
273/// (aplicacao.rs:2306) on the sibling per-Aplicacao distribution-strategy
274/// axis — same three-path-convergence discipline, extended to close the
275/// second of three OTP-shaped closed-enum discriminator axes on the
276/// caixa typed surface.
277impl std::fmt::Display for RestartStrategy {
278    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
279        f.write_str(self.as_str())
280    }
281}
282
283/// Per-child restart policy.
284///
285/// Permanent / Temporary / Transient match Erlang/OTP semantics 1:1.
286#[derive(
287    Serialize,
288    Deserialize,
289    Debug,
290    Clone,
291    Copy,
292    PartialEq,
293    Eq,
294    Hash,
295    gen_platform::TypedDispatcher,
296    gen_platform::Discriminant,
297    gen_platform::IsVariant,
298    gen_platform::FromStrKind,
299)]
300pub enum RestartPolicy {
301    /// Always restart the child, regardless of how it died. Used for
302    /// long-running services that must always be up.
303    Permanent,
304    /// Never restart. Used for one-shot work whose completion is
305    /// itself the success signal (`oneShot` triggers map here).
306    Temporary,
307    /// Restart only when the child died *abnormally* (non-zero exit
308    /// or unhandled exception). A clean exit completes the child.
309    Transient,
310}
311
312impl Default for RestartPolicy {
313    fn default() -> Self {
314        // Route the [`Default for RestartPolicy`] impl's return arm through
315        // the substrate-canonical [`SUPERVISOR_CHILD_RESTART_DEFAULT`] typed
316        // `pub const` rather than a raw `Self::Permanent` arm — one source
317        // of truth for the Erlang/OTP-canonical `permanent` worker-child
318        // default across the two production consumers that currently
319        // dispatch on it (this impl at the [`RestartPolicy::default`] call
320        // and the serde-side `#[serde(default)]` on
321        // [`ChildSpec::restart`] that resolves an author-omitted
322        // `:children :restart` slot through `RestartPolicy::default()`).
323        // Peer of the sibling per-`:supervisor` axis
324        // [`Default for RestartStrategy`] → [`SUPERVISOR_ESTRATEGIA_DEFAULT`]
325        // route (95ffacc) — the two impls now share one substrate-primitive
326        // lift discipline, so any future coherent rebrand of the OTP-shape
327        // supervisor+child default set migrates through typed constants in
328        // lockstep instead of splitting a lifted supervisor half against
329        // an open-coded child half. Pinned by
330        // `restart_policy_default_routes_through_lifted_default` +
331        // `child_spec_serde_default_restart_routes_through_lifted_default`
332        // in the tests module.
333        SUPERVISOR_CHILD_RESTART_DEFAULT
334    }
335}
336
337impl RestartPolicy {
338    /// Exhaustive iteration surface for every consumer that walks the
339    /// closed three-arm [`RestartPolicy`] discriminator set (the future
340    /// M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
341    /// per-child admission-webhook rejection body naming the accepted-
342    /// `:restart` list, a future `feira supervisor --restart …` CLI
343    /// arg-parse's "did you mean" hint via a [`Self::from_wire`]-scan
344    /// over the slice, the future `feira app graph` per-child restart
345    /// column, any future round-trip fuzz harness that sweeps every
346    /// arm). A future arm addition (an OTP-`intrinsic` fourth arm the
347    /// theory
348    /// [`ABSORPTION-ROADMAP`](https://github.com/pleme-io/theory/blob/main/ABSORPTION-ROADMAP.md)
349    /// might reach for once the three canonical OTP restart policies
350    /// stop covering the substrate's discovered load-shape) extends
351    /// this slice as one edit and every consumer picks up the new entry
352    /// by construction; the compiler-checked exhaustiveness on the
353    /// sibling method `match` arms ([`Self::as_str`] / [`Self::from_wire`])
354    /// is the build-time guarantee that no arm forgets to grow.
355    ///
356    /// Peer of the sibling closed-set typed enums'
357    /// [`RestartStrategy::ALL`] (4eec29c) /
358    /// [`crate::CaixaKind::ALL`] (6b1f4fb) /
359    /// [`crate::aplicacao::PlacementStrategy::ALL`] (18c7342) /
360    /// [`crate::aplicacao::RateLimitUnit::ALL`] (6bce03d) /
361    /// [`crate::dep::DepList::ALL`] (45ee563) exhaustive-iteration
362    /// surfaces — the sixth (and the third and final M2 OTP-shape)
363    /// closed-set typed enum on the caixa surface to converge onto the
364    /// same one-canonical-arm-list-per-enum discipline. Sibling axis to
365    /// the peer [`RestartStrategy::ALL`] on the per-supervisor
366    /// sibling-restart-strategy axis; this closes the per-child
367    /// restart-decision-policy axis on the same M2 `:supervisor` slot.
368    pub const ALL: &'static [Self] = &[Self::Permanent, Self::Temporary, Self::Transient];
369
370    /// Canonical PascalCase discriminator scalar this variant serializes
371    /// as under [`crate::render::SUPERVISOR_CHILD_KEY_RESTART`]. The three
372    /// arms return the paired
373    /// [`crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT`] /
374    /// [`crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY`] /
375    /// [`crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT`] lifted
376    /// constants so every substrate consumer that dispatches on the
377    /// per-child restart-decision policy (the future wasm-operator's
378    /// per-child post-exit restart-decision branch, the future M4
379    /// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
380    /// admission-time enum-arm bind, the `caixa-operator`'s hierarchical
381    /// reconciliation scheduler's per-child-policy fan-out) reads the
382    /// same byte-string the `Serialize` derive emits — the pin test in
383    /// [`tests::restart_policy_variants_serialize_to_lifted_scalar_values`]
384    /// asserts the two paths agree, peer of the M2
385    /// [`RestartStrategy::as_str`] (09ffb2d) on the sibling per-supervisor
386    /// sibling-restart-strategy axis and the M3
387    /// [`crate::aplicacao::PlacementStrategy::as_str`] (cc8f749) on the
388    /// per-Aplicacao distribution-strategy axis — the third of three
389    /// OTP-shaped closed-enum discriminator axes on the caixa typed
390    /// surface to converge onto the same three-path-convergence
391    /// (`Serialize` derive → `as_str` helper → lifted constant)
392    /// drift-detection posture.
393    #[must_use]
394    pub const fn as_str(self) -> &'static str {
395        match self {
396            Self::Permanent => crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT,
397            Self::Temporary => crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY,
398            Self::Transient => crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT,
399        }
400    }
401
402    /// Substrate-canonical reverse projection on the `:children :restart`
403    /// closed-set axis — parses the `PascalCase` discriminator scalar
404    /// back to the typed variant, or `None` when `s` is outside the
405    /// closed-set arm-string set [`Self::as_str`] emits. Dispatches on
406    /// the same lifted
407    /// [`crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT`] /
408    /// [`crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY`] /
409    /// [`crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT`] constants
410    /// the [`Self::as_str`] emitter walks, so the parse and emit halves
411    /// of the round-trip migrate through one caixa-core edit on any
412    /// future arm addition.
413    ///
414    /// Prior to this lift the substrate carried only the forward
415    /// `Self → &str` projection on the OTP per-child restart-policy
416    /// axis (the [`Self::as_str`] emitter, the [`std::fmt::Display`]
417    /// impl routed through it, the `Serialize` derive that emits the
418    /// same byte-string under [`crate::render::SUPERVISOR_CHILD_KEY_RESTART`])
419    /// plus the kebab-case dispatcher-catalog identity via
420    /// [`Self::discriminant`] — every non-serde consumer that wanted to
421    /// parse a wire-form `PascalCase` policy scalar had to re-inline a
422    /// three-arm `match s { "Permanent" => …, "Temporary" => …,
423    /// "Transient" => …, _ => … }` cascade that expressed no
424    /// compile-time link back to the typed variant's canonical lifted
425    /// constant. A future variant rename or per-arm serde-attribute
426    /// drift would silently split the wire byte-string one non-serde
427    /// consumer parsed from the one the emitter wrote, with the failure
428    /// surfacing at the operator's reconcile posture (a `:temporary`
429    /// `oneShot` child being restarted on clean exit, treating the
430    /// successful-completion signal as failure and re-running the
431    /// completion-terminal one-shot indefinitely; a `:transient` child
432    /// that clean-exited being restarted, masking the clean-completion
433    /// contract) far from the rebrand commit and with no field naming
434    /// the drift.
435    ///
436    /// Distinct axis from the [`std::str::FromStr`] impl the
437    /// [`gen_platform::FromStrKind`] derive already installs on this
438    /// enum by design, not by drift: `FromStr` parses the *kebab-case*
439    /// dispatcher-catalog identity (`"permanent"` / `"temporary"` /
440    /// `"transient"` — the inverse of [`Self::discriminant`]), while
441    /// this method inverts the `PascalCase` wire byte-string
442    /// [`Self::as_str`] emits. The two-axis split lets the dispatcher-
443    /// catalog identity live in kebab-case (where every peer catalog
444    /// identifier already lives) without forcing a wire-format rename
445    /// on the tatara-lisp author surface (`:restart Permanent`,
446    /// `PascalCase`) — the same two-axis distinction the sibling
447    /// [`RestartStrategy::from_wire`] (4eec29c) /
448    /// [`crate::CaixaKind::from_wire`] (2aa6d23) /
449    /// [`crate::aplicacao::PlacementStrategy::from_wire`] (18c7342)
450    /// carry on their peer closed-set typed-enum wire round-trips.
451    ///
452    /// Same closed-set-reverse-projection discipline the sibling
453    /// [`RestartStrategy::from_wire`] (4eec29c) /
454    /// [`crate::CaixaKind::from_wire`] (2aa6d23) /
455    /// [`crate::aplicacao::PlacementStrategy::from_wire`] (18c7342) /
456    /// [`crate::aplicacao::RateLimitUnit::from_suffix`] typed enums
457    /// carry on the peer wire-side `str → Self` axes — extended onto
458    /// the M2 OTP-shape per-child restart-policy closed-set axis, the
459    /// sixth substrate-side closed-set typed enum (and the third and
460    /// final OTP-shape closed-enum discriminator axis) to converge on
461    /// the two-way `str ↔ Self` round-trip. Method-named `from_wire`
462    /// (not `from_str`) to match the peer [`RestartStrategy::from_wire`]
463    /// shape verbatim and side-step the [`std::str::FromStr`] impl the
464    /// derive already installs on the sibling kebab-case axis. Returns
465    /// `Option<Self>` (rather than `Result<Self, _>`) to match the peer
466    /// shapes: the caller picks the diagnostic form appropriate for
467    /// its use site.
468    #[must_use]
469    pub fn from_wire(s: &str) -> Option<Self> {
470        match s {
471            crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT => Some(Self::Permanent),
472            crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY => Some(Self::Temporary),
473            crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT => Some(Self::Transient),
474            _ => None,
475        }
476    }
477}
478
479/// [`std::fmt::Display`] routed through [`RestartPolicy::as_str`], so the
480/// pretty-printed byte-string every consumer that formats the policy as
481/// user-facing text lands on (the future wasm-operator's per-child
482/// post-exit restart-decision diagnostic line, the future `feira app
483/// graph` per-child restart column, the future M4
484/// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's per-child
485/// admission-webhook rejection body) reaches for the same lifted
486/// [`crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT`] /
487/// [`crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY`] /
488/// [`crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT`] const the
489/// wire-format `Serialize` derive already emits under
490/// [`crate::render::SUPERVISOR_CHILD_KEY_RESTART`] and the
491/// [`RestartPolicy::as_str`] helper already returns.
492///
493/// Pre-convergence the two paths structurally disagreed — the
494/// `#[derive(gen_platform::Discriminant)]` + `#[discriminant(also_display)]`
495/// route (now retired here) sent [`std::fmt::Display`] through the
496/// gen-platform discriminant catalog string, which arrives kebab-case as
497/// `"permanent"` / `"temporary"` / `"transient"` on this three-arm enum
498/// (whose variant names each collapse to their own lowercase form under
499/// the kebab-case transform), while the wire format ran as `PascalCase`
500/// `"Permanent"` / `"Temporary"` / `"Transient"` through the un-`rename`d
501/// serde derive. Every consumer that formatted the policy for a
502/// diagnostic line, a graph column, or a rejection body under
503/// `format!("{v}")` therefore landed under a different byte-string than
504/// the wire format the operator's per-child-policy dispatch keyed off —
505/// a silent split whose apply-time symptom (a `format!("{v}")`-carrying
506/// diagnostic quoting `"permanent"` while the wire scalar the operator
507/// probed was `"Permanent"`) surfaced as a confused correlate at
508/// operator-log time far from the two-declaration site.
509///
510/// Routing `Display` through [`RestartPolicy::as_str`] closes the third
511/// path: every `format!("{v}")` call reaches the same lifted
512/// [`crate::render::SUPERVISOR_CHILD_RESTART_*`] const the wire format
513/// and the [`RestartPolicy::as_str`] helper route through — `Debug` (the
514/// compiler-derived variant name), `Display` (via `as_str`), and `Serialize`
515/// (via the un-`rename`d derive) all resolve to the same `PascalCase`
516/// byte-string per variant. A future variant rename or
517/// `#[serde(rename_all = "kebab-case")]` attribute reaches every path at
518/// exactly one place, structurally.
519///
520/// The dispatcher-catalog identity remains kebab-case — [`Self::discriminant`]
521/// (from `#[derive(gen_platform::Discriminant)]`) still returns
522/// `"permanent"` / `"temporary"` / `"transient"`, and the fleet-wide
523/// [`gen_platform::register_dispatcher!("caixa.restart-policy", …)`]
524/// registration keys the catalog off the same kebab identity. The two
525/// naming worlds now live on separate typed methods (`Display` /
526/// `as_str` for the wire byte-string, `discriminant` for the catalog
527/// identity) rather than sharing one `Display` route that structurally
528/// disagrees with the wire format.
529///
530/// Pin tests
531/// [`tests::restart_policy_display_routes_through_as_str_helper`]
532/// and
533/// [`tests::restart_policy_display_matches_serialized_wire_byte_string`]
534/// assert the three paths agree byte-for-byte on every variant, so a
535/// future variant rename or per-arm serde attribute drift is a build
536/// error visible at caixa-core test time, not a silent per-consumer
537/// dispatch miss at apply / reconcile time.
538///
539/// Mirrors the M3 [`crate::aplicacao::PlacementStrategy`] `Display` impl
540/// (aplicacao.rs:2306) on the per-Aplicacao distribution-strategy axis
541/// and the sibling [`RestartStrategy`] `Display` impl on the
542/// per-supervisor sibling-restart-strategy axis — same three-path-
543/// convergence discipline, extended to close the third and final of
544/// three OTP-shaped closed-enum discriminator axes on the caixa typed
545/// surface.
546impl std::fmt::Display for RestartPolicy {
547    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
548        f.write_str(self.as_str())
549    }
550}
551
552// Fleet-wide dispatcher-catalog registrations for caixa's OTP
553// supervisor surface — two more typed shadows over Erlang/OTP
554// primitives the substrate now mechanically tracks (see
555// theory/UNIFIED-COMPUTING-MODEL.md §VI for the roadmap +
556// theory/TYPED-ABSORPTION.md for the absorption arc).
557gen_platform::register_dispatcher!("caixa.restart-strategy", RestartStrategy);
558gen_platform::register_dispatcher!("caixa.restart-policy", RestartPolicy);
559
560/// One child entry in the supervisor's `:children` list.
561///
562/// Every child references another caixa by `:caixa <nome>` + version
563/// constraint. The supervisor materializes one ComputeUnit per entry.
564#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq)]
565#[serde(rename_all = "camelCase")]
566pub struct ChildSpec {
567    /// The child caixa's `:nome`. Must resolve via the same dependency
568    /// resolution path as `:deps` (caixa-resolver).
569    pub caixa: String,
570
571    /// Semver constraint (`"^0.1"`, `"~0.1.2"`, etc.) — same shape as
572    /// [`crate::dep::Dep::versao`].
573    pub versao: String,
574
575    /// Restart policy — an author-omitted slot degrades onto the
576    /// substrate-canonical [`SUPERVISOR_CHILD_RESTART_DEFAULT`]
577    /// (`permanent`, the Erlang/OTP worker-child default) through the
578    /// [`Default for RestartPolicy`] impl this `#[serde(default)]` routes
579    /// to.
580    #[serde(default)]
581    pub restart: RestartPolicy,
582}
583
584impl ChildSpec {
585    /// Substrate-canonical per-`:children` child-caixa `:nome` scalar
586    /// accessor every consumer that reads the OTP-shape supervised
587    /// child's identity keys off — returns the author-declared
588    /// `:children :caixa` byte-string verbatim as a `&str`, borrowed
589    /// from the typed slot's own [`String`] storage.
590    ///
591    /// The `:children :caixa` slot carries the DNS-1123 label — the
592    /// child caixa's `:nome` — that every emitted cluster artifact
593    /// derives its `metadata.name` from verbatim: the rendered
594    /// `wasm.pleme.io/v1alpha1/ComputeUnit.metadata.name` per child, the
595    /// [`crate::LABEL_PROGRAM`] label value on every child's pod
596    /// identity, and the per-child K8s Service `metadata.name` the
597    /// future wasm-operator (M3) provisions for inter-child supervision-
598    /// tree wiring. Every downstream consumer that fans on the child's
599    /// caixa-name keys off this scalar (the [`SupervisorSpec::validate`]
600    /// per-child DNS-1123 gate at
601    /// `require_valid_dns_1123_label(child.nome(), …)`, the per-child
602    /// duplicate-detection [`crate::render::insert_first_seen`] key, the
603    /// [`validate_no_self_supervision`] cross-slot equality check
604    /// against the parent's `:nome`, every `SupervisorError` variant
605    /// carrying the offending child caixa verbatim for `feira lint`
606    /// rendering, the future wasm-operator's hierarchical reconciliation
607    /// scheduler's per-child ComputeUnit-name projection, the future M4
608    /// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's per-child
609    /// admission webhook).
610    ///
611    /// Prior to this lift the `.caixa` byte-string was accessed inline
612    /// at seven sites in `supervisor.rs` — the DNS-1123 gate's
613    /// `&child.caixa`, the four `SupervisorError::{ChildCaixaInvalid,
614    /// EmptyChildVersion, ChildVersaoInvalid, DuplicateChildCaixa}`
615    /// carriers' `child.caixa.clone()`, the dedup key's
616    /// `child.caixa.as_str()`, and the [`validate_no_self_supervision`]
617    /// `child.caixa == parent_nome` cross-slot check — seven open-coded
618    /// field-accesses that expressed no compile-time link back to the
619    /// typed slot. A future extension of the `:children :caixa` axis to
620    /// a richer author surface (a per-cluster alias table the operator
621    /// pins through a future `:placement`-scoped slot on the supervisor
622    /// tree, a namespace-qualified rewrite the M4 CR materializer
623    /// applies per-CR, a per-child overlay from the future `:children
624    /// :nome-suffix` slot the MESH-COMPOSITION §III.2 roadmap
625    /// acknowledges) would have had to be threaded through every
626    /// open-coded copy in lockstep or one consumer would silently
627    /// disagree with the peers on which caixa a given child resolves to
628    /// — a child-set lookup that treated the name as `"cart-worker"`
629    /// while the peer duplicate-detector treated it as
630    /// `"tenant-a/cart-worker"` would silently split the
631    /// `DuplicateChildCaixa` membership-lookup diagnostic from the
632    /// self-supervision detector's parent-equality check, a two-consumer
633    /// split at the validator far from the source `caixa.lisp` with no
634    /// field naming the identity-drift root cause. Lifting the resolution
635    /// rule to a typed method on the substrate primitive means every
636    /// downstream consumer of the Supervisor's per-`:children` identity
637    /// surface reaches for exactly one typed dispatch — the resolver's
638    /// accept-set migrates as a unit on any future axis addition.
639    ///
640    /// Sibling of the peer per-`:membros` [`crate::Membro::nome`]
641    /// (4a32abf) member-caixa `:nome` scalar accessor on the M3
642    /// mesh-slot surface — same "one typed dispatch on the substrate
643    /// primitive, thin projections at each consumer" discipline extended
644    /// onto the M2 supervisor-tree per-`:children` child-identity axis.
645    /// The two typed axes (`Membro::nome` on the M3 Aplicacao side,
646    /// `ChildSpec::nome` on the M2 Supervisor side) now share one
647    /// accessor discipline for the shared substrate concept "another
648    /// caixa referenced by `:nome`". Peer of the second M2 slot scalar
649    /// accessor [`crate::UpgradeFromEntry::prior_versao`] (75d27a8) on
650    /// the sibling per-`:upgrade-from :from` OTP-appup axis — the M2
651    /// slot family's typed-accessor discipline now spans both the
652    /// upgrade axis (`:upgrade-from`) and the supervision axis
653    /// (`:children`), matching the closed M3 mesh-slot accessor family's
654    /// shape. Named `nome()` to match the tatara-lisp author-surface
655    /// term the field's docstring already reaches for ("The child
656    /// caixa's `:nome`") and the peer [`crate::Membro::nome`] /
657    /// [`crate::Caixa::nome`] / [`crate::dep::Dep::nome`] field-name
658    /// discipline the substrate already carries — the accessor's name
659    /// maps directly onto the canonical caixa-identity vocabulary rather
660    /// than shadowing the field's storage-side `caixa` label.
661    #[must_use]
662    pub const fn nome(&self) -> &str {
663        self.caixa.as_str()
664    }
665
666    /// Substrate-canonical per-`:children` child-caixa `:versao` semver-
667    /// requirement scalar accessor every consumer that reads the OTP-shape
668    /// supervised child's version pin keys off — returns the author-declared
669    /// `:children :versao` byte-string verbatim as a `&str`, borrowed from
670    /// the typed slot's own [`String`] storage.
671    ///
672    /// The `:children :versao` slot carries the Cargo-shaped semver
673    /// requirement string (`"^0.1"`, `"~0.1.2"`, `"0.1.0"`, `"*"`) that pins
674    /// which release of the supervised child caixa the OTP-shape supervisor
675    /// tree materializes against — the same requirement grammar the peer
676    /// `:deps :versao` / `:membros :versao` axes carry, resolved through the
677    /// shared [`crate::render::require_valid_versao_requirement`] cascade
678    /// and the shared [`crate::version::parse_requirement`] parser. Every
679    /// downstream consumer that fans on the child's version pin keys off
680    /// this scalar (the [`SupervisorSpec::validate`] per-child requirement
681    /// gate at `require_valid_versao_requirement(child.versao_requirement(),
682    /// …)`, the [`SupervisorError::ChildVersaoInvalid`] variant's carrier
683    /// for `feira lint` rendering, every future per-cluster version-lock
684    /// overlay the caixa-operator's hierarchical reconciliation scheduler
685    /// pins through a future `:placement`-scoped supervisor-tree slot, the
686    /// future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
687    /// per-child version resolver, the future wasm-operator's per-child
688    /// lacre BLAKE3-closure lookup at `ComputeUnit` materialization time).
689    ///
690    /// Prior to this lift the `.versao` byte-string was accessed inline at
691    /// two `&str`-shaped sites in `caixa-core/src/supervisor.rs` — the
692    /// [`SupervisorSpec::validate`] requirement-gate call
693    /// `require_valid_versao_requirement(&child.versao, …)` and the
694    /// [`SupervisorError::ChildVersaoInvalid`] carrier at
695    /// `versao: child.versao.clone()` — two open-coded field-accesses that
696    /// expressed no compile-time link back to the typed slot. A future
697    /// extension of the `:children :versao` axis to a richer author surface
698    /// (a per-cluster version-pin overlay per MESH-COMPOSITION §III.2 canary
699    /// flow, a lacre-projected concrete-version rewrite the operator
700    /// materializes at CR-admission time, a future `:children :versao-lock`
701    /// per-cluster override slot the wasm-operator's hierarchical
702    /// reconciliation scheduler authors per-CR) would have had to be
703    /// threaded through both open-coded copies in lockstep or one consumer
704    /// would silently disagree with the peer on which release constraint a
705    /// given child resolves to — the requirement-gate call reading
706    /// `"^0.1"` while the error-body carrier read `"tenant-a-pin/^0.1"`
707    /// would silently split the `ChildVersaoInvalid` diagnostic quote from
708    /// the actual gate rejection input, a two-consumer split at the
709    /// validator far from the source `caixa.lisp` with no field naming the
710    /// version-pin drift root cause. Lifting the resolution rule to a typed
711    /// method on the substrate primitive means every downstream
712    /// requirement-facing consumer of the Supervisor's per-`:children`
713    /// version-pin surface reaches for exactly one typed dispatch — the
714    /// resolver's accept-set migrates as a unit on any future axis addition.
715    ///
716    /// Sibling of the peer per-`:membros` [`crate::Membro::versao_requirement`]
717    /// (a40b0e3) member-caixa `:versao` scalar accessor on the M3 mesh-slot
718    /// surface — same "one typed dispatch on the substrate primitive, thin
719    /// projections at each consumer" discipline extended onto the M2
720    /// supervisor-tree per-`:children` child-version-pin axis. The two typed
721    /// axes (`Membro::versao_requirement` on the M3 Aplicacao side,
722    /// `ChildSpec::versao_requirement` on the M2 Supervisor side) now share
723    /// one accessor discipline for the shared substrate concept "another
724    /// caixa referenced by a Cargo-shaped semver requirement". Peer of the
725    /// sibling per-`:children` [`ChildSpec::nome`] (57c61d0) child-caixa
726    /// `:nome` scalar accessor — the pair
727    /// `(nome(), versao_requirement())` jointly projects the
728    /// `(caixa, versao)` field pair every OTP-shape supervisor-tree consumer
729    /// that fans on per-child identity + version pin keys off, closing the
730    /// last unlifted per-`:children` `String`-carry axis so every downstream
731    /// per-`:children` reader now routes through a typed dispatch on the
732    /// substrate primitive. Named `versao_requirement()` rather than
733    /// `versao()` because the field's storage-side `.versao` label is
734    /// already the author-surface term (`:versao`); the accessor's name
735    /// carries the semantic role — the semver *requirement* string the
736    /// shared [`crate::version::parse_requirement`] entry-point consumes —
737    /// so a raw field access and a typed dispatch read differently at every
738    /// consumer site. Matches the peer [`crate::Membro::versao_requirement`]
739    /// naming discipline verbatim.
740    #[must_use]
741    pub const fn versao_requirement(&self) -> &str {
742        self.versao.as_str()
743    }
744
745    /// Substrate-canonical per-`:children` `:restart` OTP-shaped
746    /// per-child post-exit restart-decision policy scalar accessor every
747    /// consumer that dispatches on the supervised child's post-exit
748    /// reconcile posture keys off — returns the author-declared
749    /// `:children :restart` variant verbatim as a [`RestartPolicy`],
750    /// `Copy`-projected from the typed slot's own [`RestartPolicy`]
751    /// storage.
752    ///
753    /// The `:children :restart` slot carries the closed-set OTP-shaped
754    /// per-child restart-decision policy discriminator
755    /// ([`RestartPolicy::Permanent`] — always restart, the OTP `permanent`
756    /// worker-child default; [`RestartPolicy::Transient`] — restart only
757    /// on abnormal exit, the OTP `transient` clean-completion-aware
758    /// default; [`RestartPolicy::Temporary`] — never restart, the OTP
759    /// `temporary` one-shot default) that every downstream consumer of
760    /// the Supervisor's per-child post-exit reconcile branch keys off.
761    /// Every future downstream consumer that fans on the per-child
762    /// restart-decision keys off this scalar (the future `feira app
763    /// graph` per-child restart column, the future wasm-operator's
764    /// per-child post-exit restart-decision branch, the future M4
765    /// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's per-child
766    /// admission webhook, the `caixa-operator`'s hierarchical
767    /// reconciliation scheduler's per-child post-exit reconcile branch,
768    /// the [`RestartPolicy::as_str`] `Serialize`-derive-pinning path the
769    /// [`tests::restart_policy_variants_serialize_to_lifted_scalar_values`]
770    /// pin threads through).
771    ///
772    /// Peer of the sibling per-`:supervisor` [`SupervisorSpec::estrategia`]
773    /// (eafb619) `Copy`-return [`RestartStrategy`] sibling-restart-strategy
774    /// scalar accessor and the M3 mesh-slot
775    /// [`crate::Placement::estrategia`] (921fe1b) `Copy`-return
776    /// [`crate::PlacementStrategy`] distribution-strategy scalar accessor
777    /// — same "one typed dispatch on the substrate primitive,
778    /// `Copy`-projected closed-set enum-arm discriminator that partitions
779    /// the downstream renderer's per-arm fan-out" discipline extended
780    /// onto the M2 supervisor-slot per-`:children` restart-decision-policy
781    /// `Copy`-composite-enum scalar axis. Third axis on the per-`:children`
782    /// [`ChildSpec`] type — companion to the sibling per-`:children`
783    /// [`ChildSpec::nome`] (57c61d0) child-caixa `:nome` scalar accessor
784    /// and the per-`:children` [`ChildSpec::versao_requirement`]
785    /// (2c053c8) child-caixa `:versao` semver-requirement scalar accessor
786    /// on the sibling `String`-carry axes. The triple
787    /// `(nome(), versao_requirement(), restart())` jointly projects the
788    /// `(caixa, versao, restart)` field trio every OTP-shape supervisor-
789    /// tree consumer that fans on per-child identity + version pin +
790    /// restart-decision keys off, closing the last unlifted per-`:children`
791    /// axis so every downstream per-`:children` reader now routes through
792    /// a typed dispatch on the substrate primitive. Named `restart()` to
793    /// match the storage field's name and the author-surface
794    /// `:children :restart` slot term verbatim; the accessor's identity
795    /// name maps onto the canonical OTP-shape per-child restart-decision-
796    /// policy vocabulary the [`RestartPolicy`] enum's docstring already
797    /// carries.
798    ///
799    /// Declared `pub const fn` to close the last non-`const`
800    /// `Copy`-return raw-field-getter posture on the M2
801    /// per-`:children` [`ChildSpec`] substrate-primitive surface — peer
802    /// of the sibling M2 per-`:supervisor`
803    /// [`SupervisorSpec::estrategia`] (converted in this commit)
804    /// `Copy`-composite-enum accessor, the sibling M2 per-`:supervisor`
805    /// [`SupervisorSpec::max_restarts`] (b698ec0) `Copy`-`u32` accessor
806    /// already lifted, and the peer M3 mesh-slot per-`:entrada`
807    /// [`crate::Entrada::port`] (bafa004) / per-`:placement`
808    /// [`crate::Placement::estrategia`] (bafa004) `Copy`-return
809    /// `pub const fn` scalar accessors on the sibling M3 surface. Every
810    /// downstream substrate-side `const`-context consumer of the
811    /// per-`:children` restart-decision-policy scalar (a future
812    /// module-scope `const _:() = assert!(matches!(child.restart(),
813    /// RestartPolicy::Permanent))` invariant pin on a typed fixture, a
814    /// future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer
815    /// admission-webhook `const fn` per-child restart-decision floor
816    /// over a typed [`ChildSpec`], any future `const fn` supervisor-tree
817    /// composer over the substrate primitive that fans on the per-child
818    /// restart-decision policy at compile time) now reaches through the
819    /// same typed dispatch on the substrate primitive at const-eval
820    /// time as at runtime. A future non-`Copy`-return promotion of the
821    /// scalar (an `Option<RestartPolicy>`-shape migration on the
822    /// per-child restart-decision axis once heterogeneous per-cluster
823    /// restart-policy overlays land, a per-tenant restart-policy-alias
824    /// table the M4 CR materializer resolves per-CR) that would drop
825    /// the `const` qualifier fails the fail-before-pass-after pin
826    /// [`tests::child_spec_restart_accessor_is_const_fn`] at caixa-core
827    /// build time rather than surfacing as a downstream consumer
828    /// regression.
829    #[must_use]
830    pub const fn restart(&self) -> RestartPolicy {
831        self.restart
832    }
833}
834
835/// Supervisor-typed slots that live alongside the standard Caixa
836/// fields when `:kind Supervisor`. Held flat in [`crate::Caixa`] so
837/// the manifest stays a single typed form; this struct exists for
838/// validation + conversion.
839#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq)]
840#[serde(rename_all = "camelCase")]
841pub struct SupervisorSpec {
842    /// Restart strategy. Defaults to [`RestartStrategy::OneForOne`].
843    #[serde(default)]
844    pub estrategia: RestartStrategy,
845
846    /// Max restarts within [`Self::restart_window`] before the
847    /// supervisor itself terminates (and its parent supervisor decides
848    /// what to do). Default 5.
849    #[serde(default = "default_max_restarts")]
850    pub max_restarts: u32,
851
852    /// Sliding window for `max_restarts`. Authored as a duration
853    /// string (`"60s"`, `"5m"`); absent = "never reset". A `Some(0s)`
854    /// is rejected by [`Self::validate`] — Erlang/OTP's
855    /// `MaxIntensity / Period` invariant requires a positive window
856    /// (a zero-period supervisor either trips on the first failure or
857    /// never trips, depending on operator interpretation, neither of
858    /// which is the author's intent). Omit the slot to express "no
859    /// reset"; carry a positive duration to express the sliding window.
860    #[serde(
861        default,
862        skip_serializing_if = "Option::is_none",
863        with = "duration_codec"
864    )]
865    pub restart_window: Option<Duration>,
866
867    /// Static children. Empty for `SimpleOneForOne` (children added
868    /// dynamically); required for the other three strategies.
869    #[serde(default)]
870    pub children: Vec<ChildSpec>,
871}
872
873const fn default_max_restarts() -> u32 {
874    // Route the private serde-`#[serde(default = "…")]` helper through
875    // the substrate-canonical [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] typed
876    // `pub const` rather than the raw `5` literal — one source of truth
877    // for the Erlang/OTP-canonical `{intensity, 5, 60}` `MaxIntensity`
878    // default across the two production consumers that currently
879    // dispatch on it (this helper via `#[serde(default = "…")]` on
880    // `SupervisorSpec::max_restarts` and the [`Default for SupervisorSpec`]
881    // impl at line 962). Pinned by
882    // `default_max_restarts_helper_routes_through_lifted_default` +
883    // `supervisor_spec_default_max_restarts_routes_through_lifted_default`
884    // in the tests module; peer of the sibling caixa-core
885    // [`crate::manifest::Caixa::supervisor_view`] `unwrap_or(…)` fold
886    // that now routes its author-omitted `:max-restarts` arm through
887    // the same lifted constant.
888    SUPERVISOR_MAX_RESTARTS_DEFAULT
889}
890
891/// Substrate-canonical Erlang/OTP-shaped `MaxIntensity` restart-budget-
892/// count default for the `:supervisor :max-restarts` axis — the
893/// canonical `{intensity, 5, 60}` `MaxIntensity` half of Learn You Some
894/// Erlang's worker-supervisor default, extracted as a typed `pub const`
895/// so every substrate-side consumer that resolves "what
896/// [`SupervisorSpec::max_restarts`] value does an author-omitted
897/// `:max-restarts` slot degrade onto?" reaches for exactly one
898/// substrate-primitive `u32`.
899///
900/// The `:max-restarts` default axis has two production consumers on the
901/// substrate side today (both prior to this lift folded onto raw `5`
902/// literals with no compile-time link back to a shared truth): the
903/// serde-`#[serde(default = "default_max_restarts")]` helper on
904/// [`SupervisorSpec::max_restarts`] that every author-omitted
905/// `:supervisor :max-restarts` slot lands in past the derive-macro's
906/// wire-format compose, and the [`crate::manifest::Caixa::supervisor_view`]
907/// `.max_restarts().unwrap_or(5)` fold that every downstream consumer of
908/// the composed [`SupervisorSpec`] altitude reaches through
909/// (`feira app graph`, the future wasm-operator's per-supervisor
910/// restart-intensity counter, the future M4
911/// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission
912/// webhook, the caixa-operator's hierarchical reconciliation scheduler).
913/// A pair of open-coded `5`s across two files that expressed no
914/// compile-time link back to the shared OTP-canonical default — a
915/// future rebrand of the default (a tightening to Elixir's
916/// `Supervisor.max_restarts: 3`, a widening to a per-cluster overlay
917/// the operator pins through a future
918/// `:supervisor :max-restarts-overrides` slot the MESH-COMPOSITION
919/// §III.2 supervision-canary roadmap acknowledges, a promotion of the
920/// plain `u32` count to a richer `{MaxR, MaxT}` per-child-cohort
921/// restart-budget-partition once the INSPIRATIONS §II.2 Erlang/OTP
922/// per-child-cohort roadmap lands) would have had to be threaded
923/// through both open-coded copies in lockstep or the wire-format
924/// author-omitted arm and the view-construction author-omitted arm
925/// would silently disagree on which restart-budget an omitted
926/// `:max-restarts` resolves to (an author writing `:supervisor
927/// (:max-restarts ())` would round-trip through serde with the new
928/// default while `supervisor_view` silently continued to compose the
929/// stale `5`, or vice versa), a two-consumer split at the composition
930/// boundary far from the source `caixa.lisp` with no field naming the
931/// default-drift root cause. Lifting the resolution rule to a typed
932/// `pub const` on the substrate primitive means every downstream
933/// consumer of the per-Supervisor default-restart-budget-count surface
934/// reaches for exactly one substrate-primitive `u32` — the resolver's
935/// accepted value migrates as a unit on any future axis change.
936///
937/// The `5` value pins Learn You Some Erlang's `{intensity, 5, 60}`
938/// worker-supervisor default (the closest canonical OTP-shape
939/// production reference the substrate carries, matching the sibling
940/// `60s` `Period` default the [`Default for SupervisorSpec`] impl pairs
941/// this constant with on the paired sliding-window axis). Two orders of
942/// magnitude below the [`SUPERVISOR_MAX_RESTARTS_MAX`] `1000` ceiling
943/// (the upper bracket on the same axis, sibling of this lower default;
944/// both are typed `u32` const bounds on the `:supervisor :max-restarts`
945/// axis and now share one accessor discipline on the substrate) and
946/// above the OTP-`supervisor` callback-module `MaxR = 1` minimum-
947/// restart floor — the "one restart, then escalate" default is
948/// deliberately loose enough to absorb a short burst of transient
949/// child failures without escalating past the supervisor's parent
950/// while remaining tight enough to trip the `MaxIntensity / Period`
951/// ratio's escalation on a genuinely-stuck child within the sibling
952/// `60s` sliding window.
953///
954/// Lifted as a typed `pub const` so the bound has exactly one source
955/// of truth — the serde-side wire-format author-omitted arm at
956/// [`default_max_restarts`], the [`Default for SupervisorSpec`] impl's
957/// struct-literal default field, and the caixa-core
958/// [`crate::manifest::Caixa::supervisor_view`] fold's author-omitted
959/// arm all read from one place. Same shape every other typed default
960/// in this crate carries (the sibling
961/// [`SUPERVISOR_MAX_RESTARTS_MAX`] upper cap on the same axis, the
962/// paired [`SUPERVISOR_RESTART_WINDOW_MAX`] upper cap on the
963/// sibling `:restart-window` axis, and the peer
964/// [`crate::render::DEFAULT_NAMESPACE`] / [`crate::render::DEFAULT_LIBRARY_NAME`]
965/// per-renderer defaults on the caixa-flux / caixa-helm rendering
966/// axes).
967pub const SUPERVISOR_MAX_RESTARTS_DEFAULT: u32 = 5;
968
969/// Upper-bound ceiling on the `:supervisor :max-restarts` axis — every
970/// validated [`SupervisorSpec::max_restarts`] past
971/// [`SupervisorSpec::validate`] lies in `1..=SUPERVISOR_MAX_RESTARTS_MAX`.
972///
973/// The typed field is `u32` (the zero-floor arm
974/// [`SupervisorError::ZeroMaxRestarts`] already brackets the bottom edge),
975/// so a programmatic struct literal
976/// (`SupervisorSpec { max_restarts: u32::MAX, .. }`) and the equivalent
977/// author-surface form (`:max-restarts 4294967295` or any
978/// `:max-restarts 100000`-shape typo landing in the slot) both round-trip
979/// cleanly through serde — a structurally unbounded `u32` ceiling. The
980/// runtime substrate consuming the value (Erlang/OTP's
981/// `MaxIntensity / Period` ratio, the future wasm-operator's
982/// per-supervisor restart-intensity counter, the M4
983/// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission webhook)
984/// then turned a typed `:max-restarts` policy into a no-op supervisor: the
985/// escalation threshold is structurally so high that no realistic
986/// restarts-per-`:restart-window` traffic shape can reach it, the
987/// supervisor never escalates to its parent, and a bad child can loop
988/// inside the window indefinitely with the parent supervisor structurally
989/// never receiving the "this subtree has exceeded its restart budget"
990/// signal the typed slot is meant to express — the canonical
991/// "supervisor intensity declared, no escalation" footgun, exactly the
992/// peer of the [`crate::aplicacao::POLICY_BREAKER_MAX_FAILURES_MAX`] cap
993/// on the `:politicas :circuit-breaker :max-failures` axis (both are
994/// "trip the next-higher protection layer after N events in a rolling
995/// window" counters with identical degenerate-at-the-high-end shape).
996///
997/// The `1000` ceiling matches the sibling
998/// [`crate::aplicacao::POLICY_BREAKER_MAX_FAILURES_MAX`] (the closest
999/// peer — same "events-per-window trip threshold" semantics, same `u32`
1000/// type, same no-op-at-the-high-end failure mode) so the M4
1001/// `mesh.pleme.io/v1alpha1/Supervisor` / `.../Aplicacao` CR materializers
1002/// and the future wasm-operator's per-supervisor restart-intensity
1003/// counter reach for either field knowing the value is in `1..=1000`
1004/// without re-validating at the reconciler layer. The cap sits two
1005/// orders of magnitude above every documented Erlang/OTP production
1006/// playbook recommendation (Learn You Some Erlang's
1007/// `{intensity, 5, 60}` worker-supervisor default, Elixir's `Supervisor`
1008/// `max_restarts: 3` default, OTP's `supervisor` callback module
1009/// `MaxR = 1` / `MaxT = 5` "minimal-restart" default, Riak Core's
1010/// typical `MaxR ∈ 5..=100`, RabbitMQ's broker-supervisor `MaxR = 5`
1011/// default) and below the clearly-pathological "effectively no
1012/// escalation" floor (`10_000`, `100_000`, `u32::MAX`): a value the
1013/// author can plausibly want at hyperscale (a long-running supervisor
1014/// over a very-flaky pool tolerating thousands of transient restarts
1015/// before escalating), but a hard wall above which the typed policy is
1016/// structurally a no-op carried verbatim on every emitted child-restart
1017/// reconciliation contract.
1018///
1019/// Lifted as a typed `pub const` so the bound has exactly one source of
1020/// truth — the future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR
1021/// materializer's admission webhook and the wasm-operator-side
1022/// per-supervisor restart-intensity reconciler read from one place. Same
1023/// shape every other typed upper bound in this crate carries
1024/// ([`crate::aplicacao::POLICY_BREAKER_MAX_FAILURES_MAX`],
1025/// [`crate::aplicacao::POLICY_RETRIES_MAX`],
1026/// [`crate::aplicacao::POLICY_RATE_LIMIT_MAX`],
1027/// [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`],
1028/// [`crate::render::DNS_1123_LABEL_MAX_LEN`],
1029/// [`crate::render::NATS_SUBJECT_MAX_LEN`]).
1030pub const SUPERVISOR_MAX_RESTARTS_MAX: u32 = 1000;
1031
1032/// Upper-bound ceiling on the `:supervisor :restart-window` axis —
1033/// every validated `Some(`[`SupervisorSpec::restart_window`]`)` past
1034/// [`SupervisorSpec::validate`] lies in `1ms..=SUPERVISOR_RESTART_WINDOW_MAX`
1035/// (inclusive on both ends, integer-millisecond magnitudes by the
1036/// canonical-form gate immediately preceding).
1037///
1038/// The typed field is `Option<Duration>` (the zero-floor arm
1039/// [`SupervisorError::RestartWindowZero`] already rejects
1040/// `Some(Duration::ZERO)`, and the canonical-form arm
1041/// [`SupervisorError::RestartWindowNotCanonical`] already rejects
1042/// sub-millisecond residue), so a programmatic struct literal
1043/// (`SupervisorSpec { restart_window: Some(Duration::from_secs(86_400)),
1044/// .. }` — 24h) and the equivalent author-surface form
1045/// (`(:supervisor (:restart-window "24h"))` — the shared duration codec
1046/// emits `"<n>h"` for any integer-hour magnitude) both round-trip
1047/// cleanly through serde — a structurally unbounded `Duration` ceiling.
1048/// A `:restart-window` value far above the documented Erlang/OTP
1049/// `MaxIntensity / Period` production-playbook band (Learn You Some
1050/// Erlang's `{intensity, 5, 60}` worker-supervisor `Period = 60s`
1051/// default, Elixir's `Supervisor` `max_seconds: 5` default, OTP's
1052/// `supervisor` callback module `MaxT = 5..=60` typical, Riak Core's
1053/// `MaxT ∈ 10s..=300s`, RabbitMQ broker-supervisor `MaxT = 5s` default)
1054/// degenerates the supervisor's restart-intensity counter into a
1055/// lifetime counter: the rolling failure-counting window is structurally
1056/// so long that transient restarts are never forgotten, so the
1057/// `MaxIntensity / Period` ratio degenerates from "trip the parent
1058/// supervisor when the child has exceeded its restart budget *within
1059/// the recent window*" to "trip the parent when the child has exceeded
1060/// its restart budget *over its lifetime*" — every transient restart
1061/// counts against the budget forever, the supervisor's reset semantic
1062/// never reaches the child, and the typed `:restart-window` slot
1063/// becomes a no-op rolling window carried on every emitted hierarchical
1064/// reconciliation contract. The canonical
1065/// rolling-window-degenerates-to-lifetime-counter footgun the sibling
1066/// [`crate::POLICY_BREAKER_WINDOW_MAX`] cap closes on the peer
1067/// `:politicas :circuit-breaker :window` axis with identical shape (both
1068/// are "rolling failure-counting window with a per-`Period` reset" Duration
1069/// axes whose lifetime-counter degenerate at the high end is the same
1070/// "the reset semantic never fires" CSE invariant violation).
1071///
1072/// The `1h` (3600s = `3_600_000` ms) ceiling matches the largest unit
1073/// the shared duration codec emits (`"<n>h"` for any integer-hour
1074/// magnitude) — every value in the canonical authoring form's
1075/// `<integer><unit>` grammar at or below this cap renders to a clean
1076/// canonical string — and matches the three sibling typed-`Duration`
1077/// caps already lifted to this surface
1078/// ([`crate::LIMITS_WALL_CLOCK_MAX`], [`crate::POLICY_TIMEOUT_MAX`],
1079/// [`crate::POLICY_BREAKER_WINDOW_MAX`]). All four typed-`Duration`
1080/// axes — per-process `:limits :wall-clock`, per-edge `:politicas
1081/// :timeout`, per-breaker `:politicas :circuit-breaker :window`, and
1082/// per-supervisor `:supervisor :restart-window` — now share a single
1083/// uniform top edge at the codec's largest emitted unit so the next
1084/// typed-slot wiring (the future wasm-operator's per-supervisor
1085/// `MaxIntensity / Period` reconciler, the M4
1086/// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission
1087/// webhook, the `caixa-operator`'s hierarchical reconciliation
1088/// scheduler) reaches for any of the four knowing the value is in
1089/// `1ms..=1h` without re-validating at the renderer layer. The cap sits
1090/// two orders of magnitude above every documented Erlang/OTP / Elixir /
1091/// Riak Core / RabbitMQ production-playbook recommendation band
1092/// (`5s..=300s`) and below the clearly-pathological "rolling window
1093/// degenerates to lifetime counter" floor (`24h`, `7d`, `Duration::MAX`):
1094/// a value the author can plausibly want for a very-low-traffic
1095/// long-tail failure-restart window over a hyperscale-flaky child pool,
1096/// but a hard wall above which the rolling-window contract is
1097/// structurally a lifetime-counter contract.
1098///
1099/// Lifted as a typed `pub const` so the bound has exactly one source
1100/// of truth — the future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR
1101/// materializer's admission webhook, the wasm-operator-side
1102/// per-supervisor `MaxIntensity / Period` reconciler, and the
1103/// `caixa-operator`'s hierarchical reconciliation scheduler all read
1104/// from one place. Same shape every other typed upper bound in this
1105/// crate carries ([`SUPERVISOR_MAX_RESTARTS_MAX`],
1106/// [`crate::aplicacao::POLICY_BREAKER_MAX_FAILURES_MAX`],
1107/// [`crate::aplicacao::POLICY_RETRIES_MAX`],
1108/// [`crate::aplicacao::POLICY_RATE_LIMIT_MAX`],
1109/// [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`],
1110/// [`crate::LIMITS_WALL_CLOCK_MAX`], [`crate::POLICY_TIMEOUT_MAX`],
1111/// [`crate::POLICY_BREAKER_WINDOW_MAX`],
1112/// [`crate::render::DNS_1123_LABEL_MAX_LEN`],
1113/// [`crate::render::NATS_SUBJECT_MAX_LEN`]).
1114pub const SUPERVISOR_RESTART_WINDOW_MAX: Duration = Duration::from_secs(3600);
1115
1116/// Substrate-canonical Erlang/OTP-shaped `Period` sliding-window-duration
1117/// default for the `:supervisor :restart-window` axis — the canonical
1118/// `{intensity, 5, 60}` `Period` half of Learn You Some Erlang's
1119/// worker-supervisor default, extracted as a typed `pub const` so every
1120/// substrate-side consumer that resolves "what
1121/// [`SupervisorSpec::restart_window`] value does an author-omitted
1122/// `:restart-window` slot degrade onto?" reaches for exactly one
1123/// substrate-primitive [`Duration`].
1124///
1125/// The `:restart-window` default axis has one production consumer on the
1126/// substrate side today: the [`Default for SupervisorSpec`] impl's
1127/// struct-literal `restart_window` field, which prior to this lift folded
1128/// onto a raw `Duration::from_secs(60)` literal with no compile-time link
1129/// back to the paired [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] `MaxIntensity`
1130/// half of the same `{intensity, 5, 60}` OTP-canonical default. The
1131/// [`crate::manifest::Caixa::supervisor_view`] fold deliberately does
1132/// *not* fall back to this default on the sibling `:restart-window` axis
1133/// — an author-omitted `:supervisor :restart-window` composes to
1134/// `restart_window: None` (the shared codec's soft-swallow shape),
1135/// keeping author-declared intent ("no reset — never escalate on rolling
1136/// window") distinct from the [`Default for SupervisorSpec`] "canonical
1137/// 60s Period" arm every programmatic `SupervisorSpec::default()` caller
1138/// resolves to. Prior to this lift the paired `{intensity, 5, 60}` OTP
1139/// default was split across two files with no compile-time link between
1140/// the halves: [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] pinned the
1141/// `MaxIntensity` half at the substrate primitive while the `Period`
1142/// half rode as an open-coded literal at the composition site, so a
1143/// future coherent rebrand of the paired canonical (a tightening to
1144/// Elixir's `{max_restarts: 3, max_seconds: 5}`, a widening to a
1145/// per-cluster overlay the operator pins through a future
1146/// `:supervisor :restart-window-overrides` slot the MESH-COMPOSITION
1147/// §III.2 supervision-canary roadmap acknowledges, a promotion of the
1148/// paired constants to a per-child-cohort `{MaxR, MaxT}` restart-budget-
1149/// partition once the INSPIRATIONS §II.2 Erlang/OTP per-child-cohort
1150/// roadmap lands) would have had to migrate the `MaxIntensity` half
1151/// through the lifted constant and the `Period` half through a raw
1152/// literal in lockstep or the two halves of the same OTP-canonical
1153/// default would silently drift out of pairing. Lifting the resolution
1154/// rule to a typed `pub const` on the substrate primitive means the
1155/// paired OTP-canonical default migrates as one unit on any future
1156/// axis change.
1157///
1158/// The `60s` value pins Learn You Some Erlang's `{intensity, 5, 60}`
1159/// worker-supervisor default (the closest canonical OTP-shape
1160/// production reference the substrate carries, matching the paired
1161/// [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] `5` `MaxIntensity` half this
1162/// constant is the `Period` denominator of on the same
1163/// `MaxIntensity / Period` restart-intensity ratio). Two orders of
1164/// magnitude below the [`SUPERVISOR_RESTART_WINDOW_MAX`] `3600s`
1165/// (`1h`) ceiling (the upper bracket on the same axis, sibling of
1166/// this lower default; both are typed [`Duration`] const bounds on the
1167/// `:supervisor :restart-window` axis and now share one accessor
1168/// discipline on the substrate) and above the OTP-`supervisor`
1169/// callback-module `MaxT = 5` seconds "minimal-window" floor — the "60s
1170/// rolling window" default is deliberately loose enough to absorb a
1171/// short burst of transient child failures without escalating past the
1172/// supervisor's parent while remaining tight enough for the paired
1173/// `MaxIntensity / Period` ratio's escalation to trip on a genuinely-
1174/// stuck child within a human-scale observation window.
1175///
1176/// Lifted as a typed `pub const` so the paired OTP-canonical default has
1177/// exactly one source of truth on each half — the sibling
1178/// [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] `MaxIntensity` `5` half and this
1179/// `Period` `60s` half now share the same substrate-primitive lift
1180/// discipline. Same shape every other typed default in this crate
1181/// carries (the sibling [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] paired
1182/// `MaxIntensity` half on the same OTP-canonical `{intensity, 5, 60}`,
1183/// the sibling [`SUPERVISOR_RESTART_WINDOW_MAX`] upper cap on the same
1184/// axis, and the peer [`crate::render::DEFAULT_NAMESPACE`] /
1185/// [`crate::render::DEFAULT_LIBRARY_NAME`] per-renderer defaults on the
1186/// caixa-flux / caixa-helm rendering axes).
1187pub const SUPERVISOR_RESTART_WINDOW_DEFAULT: Duration = Duration::from_secs(60);
1188
1189/// Substrate-canonical Erlang/OTP-shaped sibling-restart-strategy default
1190/// for the `:supervisor :estrategia` axis — the canonical `one_for_one`
1191/// half of Learn You Some Erlang's `{one_for_one, intensity, 5, 60}`
1192/// worker-supervisor default, extracted as a typed `pub const` so every
1193/// substrate-side consumer that resolves "what
1194/// [`SupervisorSpec::estrategia`] variant does an author-omitted
1195/// `:estrategia` slot degrade onto?" reaches for exactly one substrate-
1196/// primitive [`RestartStrategy`].
1197///
1198/// The `:estrategia` default axis has three production consumers on the
1199/// substrate side today: the [`Default for RestartStrategy`] impl's
1200/// return arm, the [`Default for SupervisorSpec`] impl's struct-literal
1201/// `estrategia` field, and the
1202/// [`crate::manifest::Caixa::supervisor_view`] fold's
1203/// `.unwrap_or(SUPERVISOR_ESTRATEGIA_DEFAULT)` `Option<RestartStrategy>`
1204/// collapse arm — three entry points onto the same OTP-canonical
1205/// `one_for_one` value that prior to this lift folded onto a raw
1206/// `Self::OneForOne` arm at the [`Default for RestartStrategy`] impl and
1207/// implicit `RestartStrategy::default()` routes at the sibling consumers,
1208/// with no compile-time link back to the paired
1209/// [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] `MaxIntensity` half + the paired
1210/// [`SUPERVISOR_RESTART_WINDOW_DEFAULT`] `Period` half of the same
1211/// `{one_for_one, intensity, 5, 60}` OTP-canonical default. The paired
1212/// triple was split across three altitudes with no compile-time link
1213/// between the halves: the `MaxIntensity` half rode through the lifted
1214/// [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] constant (b698ec0) and the `Period`
1215/// half rode through the lifted [`SUPERVISOR_RESTART_WINDOW_DEFAULT`]
1216/// constant (f7dcd0e) while the `one_for_one` half rode as an open-coded
1217/// discriminator at the [`Default for RestartStrategy`] impl, so a future
1218/// coherent rebrand of the triple (Elixir's `{:one_for_one,
1219/// max_restarts: 3, max_seconds: 5}` — same strategy, different
1220/// intensity/period; an OTP `rest_for_one` widening once the substrate
1221/// discovers startup-order-coupled child cohorts as the more common
1222/// worker-supervisor default; a per-cluster overlay the operator pins
1223/// through a future `:estrategia-overrides` slot the MESH-COMPOSITION
1224/// §III.2 supervision-canary roadmap acknowledges) would have had to
1225/// migrate the `MaxIntensity` + `Period` halves through the lifted
1226/// constants and the `one_for_one` half through an open-coded arm in
1227/// lockstep or the three halves of the same OTP-canonical default would
1228/// silently drift out of pairing. Lifting the resolution rule to a typed
1229/// `pub const` on the substrate primitive means the paired OTP-canonical
1230/// worker-supervisor default migrates as one unit on any future axis
1231/// change.
1232///
1233/// The [`RestartStrategy::OneForOne`] value pins Learn You Some Erlang's
1234/// `{one_for_one, intensity, 5, 60}` worker-supervisor default (the
1235/// closest canonical OTP-shape production reference the substrate
1236/// carries, matching the paired [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] `5`
1237/// `MaxIntensity` half and the paired [`SUPERVISOR_RESTART_WINDOW_DEFAULT`]
1238/// `60s` `Period` half). The `one_for_one` strategy — restart only the
1239/// failed child, leaving siblings untouched — is the default for tree-of-
1240/// independent-workers use cases the substrate's [`RestartStrategy`]
1241/// discriminator's own docstring already carries as the default arm; it
1242/// composes with the `{5, 60}` restart-intensity ratio to name the same
1243/// substrate-canonical "canonical worker-supervisor" shape the paired
1244/// halves close on their respective axes.
1245///
1246/// Lifted as a typed `pub const` so the paired OTP-canonical default has
1247/// exactly one source of truth on each of its three halves — the sibling
1248/// [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] `MaxIntensity` `5` half, the
1249/// sibling [`SUPERVISOR_RESTART_WINDOW_DEFAULT`] `Period` `60s` half, and
1250/// this `one_for_one` strategy half now share the same substrate-
1251/// primitive lift discipline. Same shape every other typed default in
1252/// this crate carries (the sibling [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] +
1253/// [`SUPERVISOR_RESTART_WINDOW_DEFAULT`] paired halves on the same OTP-
1254/// canonical `{one_for_one, intensity, 5, 60}`, the sibling
1255/// [`SUPERVISOR_MAX_RESTARTS_MAX`] + [`SUPERVISOR_RESTART_WINDOW_MAX`]
1256/// upper caps on the paired sibling axes, and the peer
1257/// [`crate::render::DEFAULT_NAMESPACE`] / [`crate::render::DEFAULT_LIBRARY_NAME`]
1258/// per-renderer defaults on the caixa-flux / caixa-helm rendering axes).
1259pub const SUPERVISOR_ESTRATEGIA_DEFAULT: RestartStrategy = RestartStrategy::OneForOne;
1260
1261/// Substrate-canonical Erlang/OTP-shaped per-child restart-decision-policy
1262/// default for the `:children :restart` axis — the OTP `permanent`
1263/// worker-child default (`{ChildId, StartFunc, permanent, …}` in a
1264/// `supervisor`'s `init/1` child-spec tuple), extracted as a typed
1265/// `pub const` so every substrate-side consumer that resolves "what
1266/// [`ChildSpec::restart`] variant does an author-omitted `:children
1267/// :restart` slot degrade onto?" reaches for exactly one substrate-
1268/// primitive [`RestartPolicy`].
1269///
1270/// Completes the OTP-shape supervisor-tree default set at the substrate
1271/// primitive. The per-`:supervisor` axis already carries all three of its
1272/// halves as lifted typed constants — [`SUPERVISOR_ESTRATEGIA_DEFAULT`]
1273/// (`one_for_one`, 95ffacc), [`SUPERVISOR_MAX_RESTARTS_DEFAULT`]
1274/// (`MaxIntensity` `5`, b698ec0), [`SUPERVISOR_RESTART_WINDOW_DEFAULT`]
1275/// (`Period` `60s`, f7dcd0e) — while the per-`:children` axis's own
1276/// OTP-canonical default rode as an open-coded `Self::Permanent` arm in
1277/// the [`Default for RestartPolicy`] impl, the last un-lifted default on
1278/// the M2 `:supervisor` slot family. The split mattered because the two
1279/// axes resolve *together* on every author-omitted supervisor: a
1280/// `(defcaixa :kind Supervisor :children ((:caixa "worker" :versao
1281/// "^0.1")))` with no `:estrategia` and no per-child `:restart` degrades
1282/// onto `{one_for_one, 5, 60}` through three lifted constants and onto
1283/// `permanent` through an open-coded enum arm, so a future coherent
1284/// rebrand of the OTP-shape default set (an Elixir-shaped
1285/// `{:one_for_one, max_restarts: 3, max_seconds: 5}` tightening, a
1286/// per-cluster overlay the operator pins through the MESH-COMPOSITION
1287/// §III.2 supervision-canary roadmap slots, an OTP-`transient` widening
1288/// once the substrate discovers clean-completion-aware children as the
1289/// more common child shape) would have had to migrate three halves
1290/// through typed constants and the fourth through a raw enum arm in
1291/// lockstep or the supervisor-level and child-level defaults would
1292/// silently drift apart.
1293///
1294/// The `:children :restart` default axis has two production consumers on
1295/// the substrate side today: the [`Default for RestartPolicy`] impl's
1296/// return arm, and the serde-side `#[serde(default)]` on
1297/// [`ChildSpec::restart`] that resolves an author-omitted `:children
1298/// :restart` slot through that same impl. Both now key off this one
1299/// substrate primitive, so the future wasm-operator's per-child post-exit
1300/// restart-decision branch, the future M4
1301/// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's per-child
1302/// admission webhook, and the `caixa-operator`'s hierarchical
1303/// reconciliation scheduler's per-child fan-out all reach for one typed
1304/// identifier when they resolve an omitted per-child restart posture.
1305///
1306/// The [`RestartPolicy::Permanent`] value pins Erlang/OTP's `permanent`
1307/// worker-child restart type — always restart the child regardless of how
1308/// it died, the canonical posture for long-running services that must
1309/// always be up, matching the sibling [`SUPERVISOR_ESTRATEGIA_DEFAULT`]
1310/// `one_for_one` tree-of-independent-workers strategy this constant pairs
1311/// with under the same `{one_for_one, intensity, 5, 60}` worker-supervisor
1312/// shape. The two alternatives the closed [`RestartPolicy::ALL`] accept-set
1313/// carries ([`RestartPolicy::Transient`] — restart only on abnormal exit;
1314/// [`RestartPolicy::Temporary`] — never restart) express deliberate
1315/// one-shot / clean-completion-aware postures an author declares
1316/// explicitly, never a posture an omitted slot should silently assume.
1317pub const SUPERVISOR_CHILD_RESTART_DEFAULT: RestartPolicy = RestartPolicy::Permanent;
1318
1319impl Default for SupervisorSpec {
1320    fn default() -> Self {
1321        Self {
1322            // Route the struct-literal `estrategia` default arm through
1323            // the substrate-canonical [`SUPERVISOR_ESTRATEGIA_DEFAULT`]
1324            // typed `pub const` rather than the transitively-derived
1325            // `RestartStrategy::default()` route — one source of truth
1326            // for the Erlang/OTP `one_for_one` half of Learn You Some
1327            // Erlang's `{one_for_one, intensity, 5, 60}` worker-
1328            // supervisor canonical default, paired with the sibling
1329            // `max_restarts: default_max_restarts()` arm below that
1330            // routes through the peer [`SUPERVISOR_MAX_RESTARTS_DEFAULT`]
1331            // `MaxIntensity` half (b698ec0) and the sibling
1332            // `restart_window: Some(SUPERVISOR_RESTART_WINDOW_DEFAULT)`
1333            // arm that routes through the peer
1334            // [`SUPERVISOR_RESTART_WINDOW_DEFAULT`] `Period` half
1335            // (f7dcd0e). All three halves of the same OTP-canonical
1336            // default now share the same substrate-primitive lift
1337            // discipline so any future coherent rebrand of the paired
1338            // triple migrates through three typed constants in lockstep
1339            // instead of splitting two lifted halves against a
1340            // transitively-derived third. Pinned by
1341            // `supervisor_spec_default_estrategia_routes_through_lifted_default`.
1342            estrategia: SUPERVISOR_ESTRATEGIA_DEFAULT,
1343            max_restarts: default_max_restarts(),
1344            // Route the struct-literal `restart_window` default arm
1345            // through the substrate-canonical
1346            // [`SUPERVISOR_RESTART_WINDOW_DEFAULT`] typed `pub const`
1347            // rather than a raw `Duration::from_secs(60)` literal — one
1348            // source of truth for the Erlang/OTP-canonical
1349            // `{intensity, 5, 60}` `Period` half of Learn You Some
1350            // Erlang's worker-supervisor default, paired with the
1351            // sibling `max_restarts: default_max_restarts()` arm above
1352            // that already routes through the peer
1353            // [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] `MaxIntensity` half
1354            // (b698ec0). The two halves of the same OTP-canonical
1355            // default now share the same substrate-primitive lift
1356            // discipline so any future coherent rebrand of the paired
1357            // default (Elixir's `{max_restarts: 3, max_seconds: 5}`, a
1358            // per-cluster overlay via a future
1359            // `:restart-window-overrides` slot, a per-child-cohort
1360            // promotion) migrates through two typed constants in
1361            // lockstep instead of splitting a lifted `MaxIntensity` half
1362            // against an open-coded `Period` literal. Pinned by
1363            // `supervisor_spec_default_restart_window_routes_through_lifted_default`
1364            // in the tests module; peer of the sibling
1365            // `supervisor_spec_default_max_restarts_routes_through_lifted_default`
1366            // byte-parity pin on the paired `max_restarts` field.
1367            restart_window: Some(SUPERVISOR_RESTART_WINDOW_DEFAULT),
1368            children: Vec::new(),
1369        }
1370    }
1371}
1372
1373impl SupervisorSpec {
1374    /// Substrate-canonical per-`:supervisor` `:estrategia` OTP-shaped
1375    /// sibling-restart-strategy scalar accessor every consumer that
1376    /// dispatches on the supervisor's per-sibling restart-decision shape
1377    /// keys off — returns the author-declared `:supervisor :estrategia`
1378    /// variant verbatim as a [`RestartStrategy`], `Copy`-projected from
1379    /// the typed slot's own [`RestartStrategy`] storage.
1380    ///
1381    /// The `:supervisor :estrategia` slot carries the closed-set
1382    /// OTP-shaped sibling-restart-strategy discriminator ([`RestartStrategy::OneForOne`]
1383    /// — restart only the failed child, the Erlang/OTP `one_for_one` default;
1384    /// [`RestartStrategy::OneForAll`] — restart every child on any child
1385    /// failure, the Erlang/OTP `one_for_all` shared-state cohort default;
1386    /// [`RestartStrategy::RestForOne`] — restart the failed child and
1387    /// every child started after it, the Erlang/OTP `rest_for_one`
1388    /// startup-order default; [`RestartStrategy::SimpleOneForOne`] —
1389    /// dynamic children of the same shape, the Erlang/OTP
1390    /// `simple_one_for_one` per-session default) that every downstream
1391    /// consumer of the Supervisor's per-sibling restart-decision fan-out
1392    /// shape keys off. Validated by [`SupervisorSpec::validate`] to be
1393    /// paired coherently with the sibling `:children` axis
1394    /// (`SimpleOneForOne ↔ children.is_empty()` — the cross-slot
1395    /// partition the strategy-arm's [`SupervisorError::SimpleOneForOneWithStaticChildren`]
1396    /// / [`SupervisorError::NoChildren`] refusal cascade pins), and every
1397    /// downstream consumer that reads the strategy keys off this scalar
1398    /// (the [`SupervisorSpec::validate`] `SimpleOneForOne ↔ non-SimpleOneForOne`
1399    /// partition-dispatch `match` arm, the non-`SimpleOneForOne`-arm
1400    /// declared-but-empty [`SupervisorError::NoChildren`] error carrier's
1401    /// `estrategia:` field, the future `feira app graph` per-Supervisor
1402    /// strategy print line, the future wasm-operator's per-supervisor
1403    /// sibling-restart-strategy branch, the future M4
1404    /// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's per-strategy
1405    /// admission-webhook resolver, the `caixa-operator`'s hierarchical
1406    /// reconciliation scheduler's per-strategy fan-out).
1407    ///
1408    /// Prior to this lift the `.estrategia` field was accessed inline at
1409    /// two production sites in `caixa-core/src/supervisor.rs` — the
1410    /// [`SupervisorSpec::validate`] `SimpleOneForOne ↔ non-SimpleOneForOne`
1411    /// `match self.estrategia { … }` partition dispatch, and the
1412    /// non-`SimpleOneForOne`-arm [`SupervisorError::NoChildren`] error
1413    /// carrier at `estrategia: self.estrategia` — two open-coded
1414    /// field-accesses that expressed no compile-time link back to the
1415    /// typed slot. A future extension of the `:supervisor :estrategia`
1416    /// axis to a richer author surface (a per-cluster strategy override
1417    /// the operator pins through a future `:supervisor :estrategia-overrides`
1418    /// slot the MESH-COMPOSITION §III.2 supervision-canary roadmap
1419    /// acknowledges, a per-tenant strategy-alias table the M4 CR
1420    /// materializer resolves per-CR, a per-Supervisor dynamic strategy
1421    /// derivation the future adaptive-supervision engine computes from
1422    /// child-failure-history topology, a per-child-cohort strategy split
1423    /// the future `RestForCohort` extension acknowledged by the
1424    /// INSPIRATIONS.md §II.2 Erlang/OTP absorption roadmap acknowledges)
1425    /// would have had to be threaded through every open-coded copy in
1426    /// lockstep — one consumer reading the raw variant while a peer read
1427    /// the operator-resolved variant would silently split the
1428    /// [`SupervisorError::NoChildren`] diagnostic's quoted strategy from
1429    /// the actual partition-dispatch input the empty-children refusal
1430    /// arm reached under, a two-consumer split at the validator far from
1431    /// the source `caixa.lisp` with no field naming the strategy-drift
1432    /// root cause. Lifting the resolution rule to a typed method on the
1433    /// substrate primitive means every downstream consumer of the
1434    /// Supervisor's per-`:supervisor` sibling-restart-strategy surface
1435    /// reaches for exactly one typed dispatch — the resolver's accept-set
1436    /// migrates as a unit on any future axis addition.
1437    ///
1438    /// Peer of the sibling M3 mesh-slot [`crate::Placement::estrategia`]
1439    /// (921fe1b) `Copy`-return `PlacementStrategy` scalar accessor on the
1440    /// per-`:placement` distribution-strategy axis — same "one typed
1441    /// dispatch on the substrate primitive, thin projections at each
1442    /// consumer" discipline extended onto the M2 supervisor-slot
1443    /// per-`:supervisor` sibling-restart-strategy `Copy`-composite-enum
1444    /// scalar axis. The two typed axes (`Placement::estrategia` on the
1445    /// M3 Aplicacao side, `SupervisorSpec::estrategia` on the M2
1446    /// Supervisor side) now share one accessor discipline for the shared
1447    /// substrate concept "a `Copy`-projected closed-set enum-arm
1448    /// discriminator that partitions the downstream renderer's per-arm
1449    /// fan-out". First `Copy`-return accessor on the M2 supervisor-slot
1450    /// `SupervisorSpec` type — companion to the sibling per-`:children`
1451    /// [`crate::ChildSpec::nome`] (57c61d0) /
1452    /// [`crate::ChildSpec::versao_requirement`] (2c053c8) child-caixa
1453    /// scalar accessors on the sibling per-`:children` `String`-carry
1454    /// axes. Named `estrategia()` to match the storage field's name and
1455    /// the peer [`crate::Placement::estrategia`] method-name discipline
1456    /// verbatim; the accessor's identity name maps onto the canonical
1457    /// OTP-shape supervision vocabulary the [`RestartStrategy`] enum's
1458    /// docstring already carries.
1459    ///
1460    /// Declared `pub const fn` to close the M2 supervisor-slot
1461    /// `Copy`-return raw-field-getter `const`-eval-surface pass —
1462    /// sibling of the peer M2 per-`:children` [`ChildSpec::restart`]
1463    /// (converted in this commit) `Copy`-composite-enum accessor, peer
1464    /// of the sibling M2 per-`:supervisor`
1465    /// [`SupervisorSpec::max_restarts`] (b698ec0) `Copy`-`u32` accessor
1466    /// already lifted, and mirror of the peer M3 mesh-slot
1467    /// per-`:placement` [`crate::Placement::estrategia`] (bafa004)
1468    /// `Copy`-return `pub const fn` scalar accessor whose method-name
1469    /// discipline this accessor was authored to match. Every downstream
1470    /// substrate-side `const`-context consumer of the per-`:supervisor`
1471    /// sibling-restart-strategy scalar (a future module-scope `const
1472    /// _:() = assert!(matches!(sup.estrategia(),
1473    /// RestartStrategy::OneForOne))` invariant pin on a typed fixture,
1474    /// a future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer
1475    /// admission-webhook `const fn` per-supervisor strategy-arm floor
1476    /// over a typed [`SupervisorSpec`], any future `const fn`
1477    /// supervisor-tree composer over the substrate primitive that fans
1478    /// on the sibling-restart-strategy at compile time) now reaches
1479    /// through the same typed dispatch on the substrate primitive at
1480    /// const-eval time as at runtime. A future non-`Copy`-return
1481    /// promotion of the scalar (an `Option<RestartStrategy>`-shape
1482    /// migration once the substrate grows per-cluster strategy overlays
1483    /// the [`SupervisorSpec`] docstring already anticipates, a
1484    /// per-tenant strategy-alias table the M4 CR materializer resolves
1485    /// per-CR) that would drop the `const` qualifier fails the
1486    /// fail-before-pass-after pin
1487    /// [`tests::supervisor_spec_estrategia_accessor_is_const_fn`] at
1488    /// caixa-core build time rather than surfacing as a downstream
1489    /// consumer regression.
1490    #[must_use]
1491    pub const fn estrategia(&self) -> RestartStrategy {
1492        self.estrategia
1493    }
1494
1495    /// Substrate-canonical per-`:supervisor` `:max-restarts` OTP-shaped
1496    /// `MaxIntensity` restart-budget scalar accessor every consumer that
1497    /// reads the supervisor's per-`:restart-window` restart-budget count
1498    /// keys off — returns the author-declared `:supervisor :max-restarts`
1499    /// typed `u32` verbatim, `Copy`-projected from the typed slot's own
1500    /// `u32` storage (`u32` is `Copy`, so the accessor returns by value; no
1501    /// borrow of `&self` past the call). Non-optional (the `u32` field
1502    /// carries the restart-budget count as a required axis with a
1503    /// [`default_max_restarts`]-supplied default; the zero-floor arm
1504    /// [`SupervisorError::ZeroMaxRestarts`] and the cap arm
1505    /// [`SupervisorError::MaxRestartsExceedsCap`] jointly bracket the
1506    /// accept-set to `1..=SUPERVISOR_MAX_RESTARTS_MAX`).
1507    ///
1508    /// The `:supervisor :max-restarts` slot carries the Erlang/OTP
1509    /// `MaxIntensity` restart-budget count that pairs with the sibling
1510    /// `:restart-window` `Period` to form the `MaxIntensity / Period`
1511    /// restart-intensity ratio the supervisor trips its own escalation on
1512    /// (`theory/RUNTIME-PATTERNS.md` §II.2, Learn You Some Erlang's
1513    /// `{intensity, 5, 60}` worker-supervisor default). Every downstream
1514    /// consumer of the Supervisor's per-`:supervisor` restart-budget count
1515    /// keys off this scalar (the [`SupervisorSpec::validate`] zero-floor +
1516    /// upper-cap bracket at
1517    /// `require_positive_bounded_u32(self.max_restarts(), …)`, the future
1518    /// wasm-operator's per-supervisor restart-intensity counter's
1519    /// budget-vs-count comparator, the future M4
1520    /// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission
1521    /// webhook, the `caixa-operator`'s hierarchical reconciliation
1522    /// scheduler's per-supervisor escalation-decision branch, every
1523    /// `SupervisorError::MaxRestartsExceedsCap` variant carrying the
1524    /// offending count verbatim for `feira lint` rendering).
1525    ///
1526    /// Prior to this lift the `.max_restarts` field was accessed inline at
1527    /// one production site in `caixa-core/src/supervisor.rs` — the
1528    /// [`SupervisorSpec::validate`] `require_positive_bounded_u32(self
1529    /// .max_restarts, …)` bracket-gate call — one open-coded field-access
1530    /// that expressed no compile-time link back to the typed slot. A
1531    /// future extension of the `:max-restarts` axis to a richer author
1532    /// surface (a per-cluster restart-budget override the operator pins
1533    /// through a future `:supervisor :max-restarts-overrides` slot the
1534    /// MESH-COMPOSITION §III.2 supervision-canary roadmap acknowledges,
1535    /// a per-tenant restart-budget-alias table the M4 CR materializer
1536    /// resolves per-CR, a per-supervisor dynamic restart-budget derivation
1537    /// the future adaptive-supervision engine computes from child-failure-
1538    /// history topology, a promotion of the plain `u32` count to a richer
1539    /// `{MaxR, MaxT}` tuple once Erlang/OTP's per-child-cohort restart-
1540    /// budget-partition slot comes into scope) would have had to be
1541    /// threaded through every open-coded copy in lockstep or the validate
1542    /// gate and the future M4 emit path would silently disagree on which
1543    /// restart-budget count a given supervisor resolves to — an author's
1544    /// `:max-restarts 5` would satisfy validate while the emit path
1545    /// silently read a drifted other value (a `:max-restarts 10000`
1546    /// no-op supervisor at the emit boundary would carry the author's
1547    /// declared `5` verbatim in `feira lint` output while the future
1548    /// wasm-operator's restart-intensity counter operated under the
1549    /// drifted count), a two-consumer split at the validator far from the
1550    /// source `caixa.lisp` with no field naming the restart-budget-drift
1551    /// root cause. Lifting the resolution rule to a typed method on the
1552    /// substrate primitive means every downstream consumer of the
1553    /// Supervisor's per-`:supervisor` restart-budget-count surface reaches
1554    /// for exactly one typed dispatch — the resolver's accept-set migrates
1555    /// as a unit on any future axis addition.
1556    ///
1557    /// Peer of the sibling M3 mesh-slot [`crate::CircuitBreaker::max_failures`]
1558    /// (3a74062) `Copy`-return `u32` sub-struct required-scalar accessor
1559    /// on the per-`:politicas :circuit-breaker :max-failures` Envoy-
1560    /// outlier-detection trip-threshold axis — same "one typed dispatch on
1561    /// the substrate primitive, thin projections at each consumer"
1562    /// discipline extended onto the M2 supervisor-slot per-`:supervisor`
1563    /// restart-budget-count `Copy`-`u32` scalar axis. The two typed axes
1564    /// (`CircuitBreaker::max_failures` on the M3 Aplicacao side,
1565    /// `SupervisorSpec::max_restarts` on the M2 Supervisor side) now share
1566    /// one accessor discipline for the shared substrate concept "a
1567    /// `Copy`-projected required `u32` count that trips the next-higher
1568    /// protection layer after N events in a rolling window" — both are
1569    /// counters with identical degenerate-at-the-high-end shape and share
1570    /// the paired [`crate::POLICY_BREAKER_MAX_FAILURES_MAX`] /
1571    /// [`SUPERVISOR_MAX_RESTARTS_MAX`] `1000` cap. Second `Copy`-return
1572    /// accessor on the M2 supervisor-slot `SupervisorSpec` type, sibling
1573    /// to the [`SupervisorSpec::estrategia`] (eafb619) `Copy`-composite-
1574    /// enum `RestartStrategy` accessor. Named `max_restarts()` to match
1575    /// the storage field's name verbatim and the peer
1576    /// [`crate::CircuitBreaker::max_failures`] method-name discipline; the
1577    /// accessor's identity maps onto the canonical OTP-shape supervision
1578    /// vocabulary the [`SupervisorSpec::max_restarts`] field's docstring
1579    /// already carries.
1580    #[must_use]
1581    pub const fn max_restarts(&self) -> u32 {
1582        self.max_restarts
1583    }
1584
1585    /// Substrate-canonical per-`:supervisor` `:restart-window` OTP-shaped
1586    /// `Period` sliding-window scalar accessor every consumer of the
1587    /// supervisor's `MaxIntensity / Period` restart-intensity denominator
1588    /// keys off — returns the author-declared `:supervisor :restart-window`
1589    /// typed [`Duration`] verbatim as an `Option<Duration>`, copied out of
1590    /// the typed slot's own `Option<Duration>` storage (`Duration` is
1591    /// `Copy`, so `Option<Duration>` is `Copy` and the accessor returns by
1592    /// value; no borrow of `&self` past the call). `None` when the slot is
1593    /// absent (the canonical "never reset — every restart across the
1594    /// supervisor's lifetime counts against the sibling `:max-restarts`
1595    /// budget" sentinel the field's own docstring names and the peer
1596    /// `validate_accepts_none_restart_window` pin locks in on the
1597    /// [`SupervisorSpec::validate`] entry-side).
1598    ///
1599    /// The `:supervisor :restart-window` slot carries the Erlang/OTP
1600    /// `Period` sliding-observation-interval that pairs with the sibling
1601    /// `:max-restarts` `MaxIntensity` restart-budget count to form the
1602    /// `MaxIntensity / Period` restart-intensity ratio the supervisor
1603    /// trips its own escalation on (`theory/RUNTIME-PATTERNS.md` §II.2,
1604    /// Learn You Some Erlang's `{intensity, 5, 60}` worker-supervisor
1605    /// default). The typed slot's `Option<Duration>` accept-set —
1606    /// zero-floor rejected through [`SupervisorError::RestartWindowZero`]
1607    /// (Erlang/OTP's `MaxIntensity / Period` invariant requires
1608    /// `Period > 0`; a zero period either trips on the first failure or
1609    /// never trips depending on operator interpretation, neither of which
1610    /// is the author's intent — omit the slot to express "no reset";
1611    /// carry a positive duration to express the sliding window),
1612    /// integer-millisecond canonical form enforced through
1613    /// [`SupervisorError::RestartWindowNotCanonical`] (the duration
1614    /// codec's canonical form emits `"1500ms"` not `"1.5s"` and the
1615    /// future wasm-operator's per-supervisor restart-intensity counter
1616    /// quantizes at milliseconds), upper-bounded by
1617    /// [`SUPERVISOR_RESTART_WINDOW_MAX`] (1h — the coarsest per-
1618    /// supervisor rolling window any operationally-reachable supervisor
1619    /// can honor without spanning multiple scheduler epochs the
1620    /// hierarchical-reconciliation scheduler treats as independent) —
1621    /// maps onto the future wasm-operator (M3) per-supervisor
1622    /// restart-intensity counter's rolling-observation-interval, the
1623    /// future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
1624    /// per-`spec.restartWindow` admission webhook, and the sibling
1625    /// `duration_codec`-serialized wire scalar every downstream consumer
1626    /// of the supervisor's per-`:supervisor` restart-intensity denominator
1627    /// keys off.
1628    ///
1629    /// Prior to this lift the `.restart_window` field was accessed inline
1630    /// at one production site in `caixa-core/src/supervisor.rs` — the
1631    /// [`SupervisorSpec::validate`] `if let Some(w) = self.restart_window {
1632    /// … }` zero-floor + canonical-form + upper-cap bracket arm — one
1633    /// open-coded field-access that expressed no compile-time link back to
1634    /// the typed slot. A future extension of the `:restart-window` axis to
1635    /// a richer author surface (a per-cluster restart-window override the
1636    /// operator pins through a future `:supervisor :restart-window-overrides`
1637    /// slot the MESH-COMPOSITION §III.2 supervision-canary roadmap
1638    /// acknowledges, a per-tenant restart-window-alias table the M4 CR
1639    /// materializer resolves per-CR, a per-supervisor dynamic
1640    /// restart-window derivation the future adaptive-supervision engine
1641    /// computes from child-failure-history topology, a promotion of the
1642    /// plain `Option<Duration>` window to a richer `{observation, cooldown}`
1643    /// pair once Erlang/OTP's per-child-cohort observation-interval-
1644    /// partition slot comes into scope) would have had to be threaded
1645    /// through every open-coded copy in lockstep or the validate gate and
1646    /// the future M4 emit path would silently disagree on which
1647    /// restart-window a given supervisor resolves to — an author's
1648    /// `:restart-window "60s"` would satisfy validate while the emit path
1649    /// silently read a drifted other value (a `Some(Duration::from_secs(60))`
1650    /// authored slot at the emit boundary would carry the author's
1651    /// declared window verbatim in `feira lint` output while the future
1652    /// wasm-operator's restart-intensity counter operated under a
1653    /// drifted window, or vice versa: an author's `:restart-window ()`
1654    /// would carry the "never reset" sentinel through validate while the
1655    /// emit path silently substituted a default sliding window), a
1656    /// two-consumer split at the validator far from the source
1657    /// `caixa.lisp` with no field naming the restart-window-drift root
1658    /// cause. Lifting the resolution rule to a typed method on the
1659    /// substrate primitive means every downstream consumer of the
1660    /// Supervisor's per-`:supervisor` restart-intensity-denominator
1661    /// surface reaches for exactly one typed dispatch — the resolver's
1662    /// accept-set migrates as a unit on any future axis addition.
1663    ///
1664    /// Third `Copy`-return accessor on the M2 supervisor-slot
1665    /// `SupervisorSpec` type, closing the last unlifted per-`:supervisor`
1666    /// scalar-value axis (`children: Vec<ChildSpec>` carries a `Vec`
1667    /// payload rather than a `Copy`-scalar, and the per-`:children`
1668    /// [`crate::ChildSpec::nome`] (57c61d0) /
1669    /// [`crate::ChildSpec::versao_requirement`] (2c053c8) child-caixa
1670    /// scalar accessors already close the per-element `String`-carry
1671    /// axes). Sibling to the peer M2 [`crate::LimitsSpec::wall_clock`]
1672    /// (8cb717b) `Option<Duration>` accessor on the `:limits` slot's
1673    /// per-outermost-call wall-clock-deadline axis and the peer M3
1674    /// [`crate::MeshPolicy::timeout`] (7073d0f) `Option<Duration>`
1675    /// accessor on the `:politicas` slot's per-call-deadline axis — all
1676    /// three share the shared substrate concept "a `Copy`-projected
1677    /// optional `Duration` that carries a positive integer-millisecond
1678    /// canonical value with a `1ms..=<axis-specific>_MAX` accept-set and
1679    /// the paired zero-floor / non-canonical / above-cap refusal cascade"
1680    /// through the same [`crate::render::require_positive_canonical_bounded_duration`]
1681    /// bracket-helper the three axes each route through. Named
1682    /// `restart_window()` to match the storage field's name verbatim and
1683    /// the peer [`crate::LimitsSpec::wall_clock`] /
1684    /// [`crate::MeshPolicy::timeout`] method-name discipline; the
1685    /// accessor's identity maps onto the canonical OTP-shape supervision
1686    /// vocabulary the [`SupervisorSpec::restart_window`] field's docstring
1687    /// already carries.
1688    #[must_use]
1689    pub const fn restart_window(&self) -> Option<Duration> {
1690        self.restart_window
1691    }
1692
1693    /// Substrate-canonical per-`:supervisor` `:children` OTP-shaped
1694    /// static-child-list slice accessor every consumer that walks the
1695    /// supervisor's declared child set keys off — returns the author-
1696    /// declared `:supervisor :children` `Vec<ChildSpec>` verbatim as a
1697    /// `&[ChildSpec]` slice-view, borrowed from the typed slot's own
1698    /// `Vec<ChildSpec>` storage (a zero-copy slice-view over the same
1699    /// backing buffer the `Serialize`/`Deserialize` derives round-trip
1700    /// through). Non-optional: an empty slice is the load-bearing
1701    /// "author declared `:children ()`" sentinel every consumer of the
1702    /// cross-slot `SimpleOneForOne ↔ children.is_empty()` partition
1703    /// keys off (`SimpleOneForOne` requires the empty slice; the peer
1704    /// three strategies require a non-empty slice — the paired
1705    /// [`SupervisorError::SimpleOneForOneWithStaticChildren`] /
1706    /// [`SupervisorError::NoChildren`] refusal cascade pins the
1707    /// partition on both arms).
1708    ///
1709    /// The `:supervisor :children` slot carries the OTP-shaped static
1710    /// child list the supervisor materializes one ComputeUnit per
1711    /// entry from — the Erlang/OTP `supervisor:init/1`'s
1712    /// `{ok, {SupFlags, ChildSpecs}}` `ChildSpecs` list, projected
1713    /// through the tatara-lisp `:children` author surface onto a typed
1714    /// `Vec<ChildSpec>` whose per-element `(nome(),
1715    /// versao_requirement(), restart)` triple the per-child
1716    /// [`SupervisorSpec::validate`] loop already gates through the
1717    /// lifted [`ChildSpec::nome`] (57c61d0) /
1718    /// [`ChildSpec::versao_requirement`] (2c053c8) scalar accessors.
1719    /// Every downstream consumer that fans on the static child list
1720    /// keys off this slice (the [`SupervisorSpec::validate`]
1721    /// `SimpleOneForOne ↔ non-SimpleOneForOne` partition dispatch's
1722    /// `.is_empty()` probe on both arms, the [`SupervisorSpec::validate`]
1723    /// per-child DNS-1123 / semver-requirement / duplicate-detection
1724    /// fan-out loop, every future wasm-operator (M3) per-supervisor
1725    /// hierarchical-reconciliation scheduler's per-child ComputeUnit
1726    /// materialization loop, the future M4
1727    /// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's per-child
1728    /// admission-webhook fan-out, the future `feira app graph`
1729    /// per-supervisor tree-print traversal).
1730    ///
1731    /// Prior to this lift the `.children` `Vec<ChildSpec>` was accessed
1732    /// inline at three production sites in `caixa-core/src/supervisor.rs`
1733    /// — the [`SupervisorSpec::validate`] `SimpleOneForOne`-arm
1734    /// `!self.children.is_empty()` cross-slot refusal probe, the peer
1735    /// non-`SimpleOneForOne`-arm `self.children.is_empty()`
1736    /// [`SupervisorError::NoChildren`] refusal probe, and the per-child
1737    /// validate loop's `for child in &self.children` traversal head —
1738    /// three open-coded field-accesses that expressed no compile-time
1739    /// link back to the typed slot. A future extension of the
1740    /// `:supervisor :children` axis to a richer author surface (a
1741    /// per-cluster child-set overlay the operator pins through a future
1742    /// `:supervisor :children-overrides` slot the MESH-COMPOSITION §III.2
1743    /// supervision-canary roadmap acknowledges, a per-tenant
1744    /// child-set-alias table the M4 CR materializer resolves per-CR,
1745    /// a per-supervisor dynamic-child derivation the future adaptive-
1746    /// supervision engine computes from child-failure-history topology,
1747    /// a promotion of the plain `Vec<ChildSpec>` to a richer
1748    /// `{static, dynamic}` partition once Erlang/OTP's
1749    /// `simple_one_for_one` dynamic-child slot comes into typed scope)
1750    /// would have had to be threaded through all three open-coded copies
1751    /// in lockstep or one consumer would silently disagree with the
1752    /// peers on which child-set a given supervisor resolves to — the
1753    /// `SimpleOneForOne`-arm probe reading the raw slot while the peer
1754    /// non-`SimpleOneForOne`-arm probe read an operator-resolved slot
1755    /// would silently split the partition-dispatch's two-arm coherence
1756    /// (a supervisor that satisfies neither arm's precondition, or that
1757    /// satisfies both, at the cost of the paired
1758    /// `SimpleOneForOneWithStaticChildren`/`NoChildren` refusal cascade
1759    /// silently drifting from the per-child validate loop's actual
1760    /// traversal input), a three-consumer split at the validator far
1761    /// from the source `caixa.lisp` with no field naming the
1762    /// child-set-drift root cause. Lifting the resolution rule to a
1763    /// typed method on the substrate primitive means every downstream
1764    /// consumer of the Supervisor's per-`:supervisor` static-child-list
1765    /// surface reaches for exactly one typed dispatch — the resolver's
1766    /// accept-set migrates as a unit on any future axis addition.
1767    ///
1768    /// First slice-return (`&[T]`) accessor on any M2 or M3 typed slot
1769    /// — the seed for the same "one typed dispatch on the substrate
1770    /// primitive, thin projections at each consumer" discipline the
1771    /// closed [`crate::LimitsSpec`] / [`BehaviorSpec`] /
1772    /// [`crate::UpgradeFromEntry`] scalar-accessor families each carry
1773    /// on their `Copy` / `Option<Copy>` / `Option<&str>` axes, extended
1774    /// onto the first `Vec`-carry axis on the substrate. The four peer
1775    /// `Vec`-carry axes still unlifted at the time of this seed —
1776    /// [`crate::Placement::clusters`] (`Vec<String>` per-cluster
1777    /// distribution-target list), [`crate::AplicacaoSpec::membros`]
1778    /// (`Vec<Membro>` per-Aplicacao member list),
1779    /// [`crate::AplicacaoSpec::contratos`] (`Vec<WitContract>`
1780    /// per-Aplicacao WIT-typed edge list),
1781    /// [`crate::UpgradeFromEntry::instructions`]
1782    /// (`Vec<UpgradeInstruction>` per-appup migration-instruction list)
1783    /// — inherit this accessor's discipline as future compounding runs
1784    /// migrate their consumers onto the shared slice-return shape.
1785    /// Fourth (and final) accessor on the M2 supervisor-slot
1786    /// `SupervisorSpec` type, sibling to the three `Copy`-return
1787    /// [`SupervisorSpec::estrategia`] (eafb619) /
1788    /// [`SupervisorSpec::max_restarts`] (7844f4e) /
1789    /// [`SupervisorSpec::restart_window`] (7e7b32f) accessors — closes
1790    /// the last unlifted per-`:supervisor` field axis (the
1791    /// `Vec<ChildSpec>` static-child-list carrier) so every downstream
1792    /// per-`:supervisor` reader now routes through a typed dispatch on
1793    /// the substrate primitive. Named `children()` to match the storage
1794    /// field's name verbatim and the tatara-lisp author-surface term
1795    /// (`:children`) the field's own docstring already carries; the
1796    /// accessor's identity maps onto the canonical OTP-shape
1797    /// supervision vocabulary the [`SupervisorSpec::children`] field's
1798    /// docstring already reaches for ("Static children ..."). Returns
1799    /// `&[ChildSpec]` (not `&Vec<ChildSpec>`) because every downstream
1800    /// consumer of the child list treats it as a read-only sequence —
1801    /// the slice-view is the narrowest borrow that supports every
1802    /// present + roadmapped consumer (`.is_empty()`, `.iter()`,
1803    /// index, `.len()`) without leaking the backing `Vec`'s
1804    /// grow/push/reserve surface that no consumer of the typed view
1805    /// reaches for (the storage-side `Vec` remains reachable through
1806    /// the `pub children` field for the mutation-carrying
1807    /// `Caixa::supervisor_view` fold-in path in
1808    /// `manifest.rs:supervisor_view`).
1809    #[must_use]
1810    pub const fn children(&self) -> &[ChildSpec] {
1811        self.children.as_slice()
1812    }
1813
1814    /// Validate the supervisor's typed shape — strategy ↔ children
1815    /// invariants, max_restarts > 0, restart_window > 0 when set,
1816    /// per-child non-empty + duplicate-free names.
1817    ///
1818    /// Mirrors the value-shape discipline applied to every other
1819    /// typed slot:
1820    ///
1821    ///   - `Some(Duration::ZERO)` on a Duration-bearing axis is the
1822    ///     same "0 means the opposite of what you think" footgun
1823    ///     closed for `:politicas :timeout` (Envoy interprets a zero
1824    ///     timeout as `infinite`), `:politicas :circuit-breaker
1825    ///     :window`, and `:limits :wall-clock`. The
1826    ///     `MaxIntensity / Period` ratio in Erlang/OTP's
1827    ///     `supervisor` requires `Period > 0`; a zero period either
1828    ///     trips on the first failure or never trips depending on
1829    ///     operator interpretation, neither of which is the
1830    ///     author's intent. Omit `:restart-window` to express "no
1831    ///     reset"; carry a positive duration to express the window.
1832    ///   - duplicate `:children` `:caixa` names are the same
1833    ///     graph-node-set / multiset distinction closed for
1834    ///     `:membros` (4bb3f3d), `:placement :clusters` (c7c7799),
1835    ///     and `:entrada :paths` (eb3456d). Two children with the
1836    ///     same `:caixa` materialize as two ComputeUnits with the
1837    ///     same name in the cluster's HelmRelease values, one
1838    ///     silently overwriting the other. Erlang/OTP's
1839    ///     `child_spec.id` is required-unique per supervisor;
1840    ///     pleme-io enforces the same set-not-multiset shape on
1841    ///     `:caixa` (the load-bearing identity in our renderer).
1842    pub fn validate(&self) -> Result<(), SupervisorError> {
1843        // Route the `SimpleOneForOne ↔ non-SimpleOneForOne` partition
1844        // dispatch and the non-`SimpleOneForOne`-arm [`SupervisorError::NoChildren`]
1845        // error carrier's `estrategia:` field through the lifted
1846        // [`SupervisorSpec::estrategia`] accessor rather than the raw
1847        // `self.estrategia` field access — the two production consumers
1848        // of the per-`:supervisor` sibling-restart-strategy scalar now
1849        // key off exactly one typed dispatch on the substrate primitive,
1850        // so any future rebrand on the axis (a per-cluster strategy
1851        // override the operator pins through a future `:supervisor
1852        // :estrategia-overrides` slot, a per-tenant strategy-alias table
1853        // the M4 CR materializer resolves per-CR) migrates as a single
1854        // caixa-core edit rather than a coordinated rewrite of the two
1855        // call sites — sibling of the peer M3 [`crate::Placement::estrategia`]
1856        // (921fe1b) four-consumer migration on the per-`:placement`
1857        // distribution-strategy axis.
1858        // Route the `SimpleOneForOne ↔ non-SimpleOneForOne` partition-
1859        // dispatch's paired `.is_empty()` cross-slot refusal probes
1860        // (the `SimpleOneForOne`-arm
1861        // [`SupervisorError::SimpleOneForOneWithStaticChildren`] refusal
1862        // and the non-`SimpleOneForOne`-arm [`SupervisorError::NoChildren`]
1863        // refusal) through the lifted [`SupervisorSpec::children`]
1864        // slice-return accessor rather than the raw `self.children`
1865        // field access — the two paired production consumers of the
1866        // per-`:supervisor` static-child-list scalar-shape now key off
1867        // exactly one typed dispatch on the substrate primitive, so any
1868        // future rebrand on the axis (a per-cluster child-set overlay
1869        // the operator pins through a future `:supervisor
1870        // :children-overrides` slot, a per-tenant child-set-alias table
1871        // the M4 CR materializer resolves per-CR) migrates as a single
1872        // caixa-core edit rather than a coordinated rewrite of the
1873        // paired arms — first slice-return migration on any typed slot,
1874        // seed for the peer per-`:placement :clusters`,
1875        // per-`:membros`, per-`:contratos`, and per-`:upgrade-from
1876        // :instructions` `Vec`-carry axes.
1877        match self.estrategia() {
1878            RestartStrategy::SimpleOneForOne => {
1879                // SimpleOneForOne: children added at runtime. Static
1880                // list must be empty (one shape declared elsewhere).
1881                if !self.children().is_empty() {
1882                    return Err(SupervisorError::SimpleOneForOneWithStaticChildren);
1883                }
1884            }
1885            _ => {
1886                if self.children().is_empty() {
1887                    return Err(SupervisorError::no_children(self.estrategia()));
1888                }
1889            }
1890        }
1891        // Zero-floor + upper-cap bracket on the typed `:max-restarts`
1892        // axis. See [`crate::render::require_positive_bounded_u32`] for
1893        // the ordering discipline (zero-floor arm strictly precedes cap
1894        // arm so `0` surfaces the self-locating `ZeroMaxRestarts`
1895        // diagnostic with its counter-axis remediation directly named,
1896        // not the misleading `0 > SUPERVISOR_MAX_RESTARTS_MAX == false`
1897        // cap-arm miss). Until this bracket landed the top edge ran all
1898        // the way to `u32::MAX` and a struct-literal
1899        // `SupervisorSpec { max_restarts: 100_000, .. }` (or the
1900        // equivalent author-surface `:max-restarts 100000` /
1901        // `:max-restarts 4294967295` typo landing in the slot) silently
1902        // passed validate. The runtime substrate consuming the value
1903        // (Erlang/OTP's `MaxIntensity / Period` ratio, the future
1904        // wasm-operator's per-supervisor restart-intensity counter, the
1905        // M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
1906        // admission webhook) then turned a typed `:max-restarts`
1907        // policy into a no-op supervisor: the escalation threshold is
1908        // structurally so high that no realistic
1909        // restarts-per-`:restart-window` traffic shape can reach it,
1910        // the supervisor never escalates to its parent, and a bad
1911        // child can loop inside the window indefinitely with the
1912        // parent supervisor structurally never receiving the "this
1913        // subtree has exceeded its restart budget" signal the typed
1914        // slot is meant to express. The bracket set is
1915        // `1..=SUPERVISOR_MAX_RESTARTS_MAX`, peer with the
1916        // [`crate::aplicacao::POLICY_BREAKER_MAX_FAILURES_MAX`] cap on
1917        // the sibling `:politicas :circuit-breaker :max-failures` axis:
1918        // both are "trip the next-higher protection layer after N
1919        // events in a rolling window" counters with identical
1920        // degenerate-at-the-high-end shape and now share one canonical
1921        // bracket helper. The bracket precedes the sibling
1922        // `:restart-window` zero-floor / canonical-millisecond arms so
1923        // an over-cap `max_restarts` paired with a structurally invalid
1924        // window surfaces the bracket diagnostic first, mirroring the
1925        // `PolicyBreakerMaxFailuresExceedsCap` / window-axis cross-arm
1926        // ordering on the peer `:politicas :circuit-breaker` slot.
1927        // Route the [`SupervisorSpec::validate`] `:max-restarts` zero-floor +
1928        // upper-cap bracket-gate through the lifted [`SupervisorSpec::max_restarts`]
1929        // accessor rather than the raw `self.max_restarts` field access —
1930        // the one production consumer of the per-`:supervisor`
1931        // restart-budget-count scalar now keys off exactly one typed
1932        // dispatch on the substrate primitive, so any future rebrand on
1933        // the axis (a per-cluster restart-budget override the operator
1934        // pins through a future `:supervisor :max-restarts-overrides`
1935        // slot, a per-tenant restart-budget-alias table the M4 CR
1936        // materializer resolves per-CR) migrates as a single caixa-core
1937        // edit rather than a coordinated rewrite — sibling of the peer M3
1938        // [`crate::CircuitBreaker::max_failures`] (3a74062) migration on
1939        // the per-`:politicas :circuit-breaker :max-failures` axis.
1940        crate::render::require_positive_bounded_u32(
1941            self.max_restarts(),
1942            SUPERVISOR_MAX_RESTARTS_MAX,
1943            || SupervisorError::ZeroMaxRestarts,
1944            SupervisorError::max_restarts_exceeds_cap,
1945        )?;
1946        // Route the [`SupervisorSpec::validate`] `:restart-window`
1947        // zero-floor + integer-millisecond canonical-form + upper-cap
1948        // bracket-gate through the lifted [`SupervisorSpec::restart_window`]
1949        // accessor rather than the raw `self.restart_window` field access —
1950        // the one production consumer of the per-`:supervisor`
1951        // restart-intensity-denominator scalar now keys off exactly one
1952        // typed dispatch on the substrate primitive, so any future rebrand
1953        // on the axis (a per-cluster restart-window override the operator
1954        // pins through a future `:supervisor :restart-window-overrides`
1955        // slot, a per-tenant restart-window-alias table the M4 CR
1956        // materializer resolves per-CR) migrates as a single caixa-core
1957        // edit rather than a coordinated rewrite — sibling of the peer M2
1958        // [`crate::LimitsSpec::wall_clock`] (8cb717b) validate-arm-route
1959        // on the per-`:limits :wall-clock` axis and the peer M3
1960        // [`crate::MeshPolicy::timeout`] (7073d0f) accessor-route on the
1961        // per-`:politicas :timeout` axis.
1962        if let Some(w) = self.restart_window() {
1963            // Zero-floor + integer-millisecond canonical-form +
1964            // upper-cap bracket on the typed `:restart-window` axis.
1965            // See
1966            // [`crate::render::require_positive_canonical_bounded_duration`]
1967            // for the full three-arm ordering discipline (zero-floor
1968            // strictly precedes canonical-form so `Duration::ZERO`
1969            // surfaces the self-locating `RestartWindowZero`
1970            // diagnostic; canonical-form strictly precedes the cap arm
1971            // so a sub-millisecond above-cap value surfaces the more
1972            // fundamental round-trip-shape diagnostic first) and the
1973            // three peer typed-`Duration` sites that share this
1974            // canonical bracket ([`crate::MeshPolicy::timeout`],
1975            // [`crate::CircuitBreaker::window`],
1976            // [`crate::LimitsSpec::wall_clock`]). Every validated
1977            // value lies in `1ms..=SUPERVISOR_RESTART_WINDOW_MAX`
1978            // (1ms..=1h), integer-millisecond granularity.
1979            crate::render::require_positive_canonical_bounded_duration(
1980                w,
1981                SUPERVISOR_RESTART_WINDOW_MAX,
1982                || SupervisorError::RestartWindowZero,
1983                SupervisorError::restart_window_not_canonical,
1984                SupervisorError::restart_window_exceeds_cap,
1985            )?;
1986        }
1987        // Route the per-child DNS-1123 / semver-requirement / duplicate-
1988        // detection fan-out loop through the lifted named per-slot gate
1989        // [`SupervisorSpec::validate_children`] rather than an inline
1990        // three-per-child cascade — every future consumer that wants to
1991        // re-check only the `:children` slot's per-entry axes (the M4
1992        // `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
1993        // admission webhook re-validating one added/renamed child, the
1994        // future wasm-operator's per-child dynamic-add re-validator on
1995        // the `SimpleOneForOne` runtime-add path once dynamic-children
1996        // graduate to a typed slot, a future partial re-validator on a
1997        // per-`:children`-entry patch) reaches every per-entry axis
1998        // through one dispatch rather than re-inlining the three-arm
1999        // cascade in lockstep with `validate` or paying the peer
2000        // `:estrategia`/`:max-restarts`/`:restart-window` gates to
2001        // reach one entry check. Sibling of the peer M3 mesh-slot
2002        // per-slot gate family (`validate_membros` — the exact peer on
2003        // the M3 side, [`crate::AplicacaoSpec::validate_membros`];
2004        // `validate_contratos` — 906a5c6; `validate_entrada` — 20cd523;
2005        // `validate_placement`; `validate_politicas` routing through
2006        // `MeshPolicy::validate` — f03a154) — the M2 supervisor-slot
2007        // per-slot gate discipline now spans both the M3 mesh-slot
2008        // family and the M2 `:children` per-child-cascade axis on one
2009        // shape: one named per-slot gate per typed per-entry loop.
2010        self.validate_children()?;
2011        Ok(())
2012    }
2013
2014    /// Named per-slot gate on the M2 `:supervisor :children` per-entry
2015    /// axis — folds the per-child DNS-1123 name gate, semver-requirement
2016    /// gate, and duplicate-`:caixa` dedup arm into one call every
2017    /// consumer that wants to re-validate one `:children` entry (or the
2018    /// whole list) against the same accept-set [`SupervisorSpec::validate`]
2019    /// admits reaches through.
2020    ///
2021    /// Peer of the M3 mesh-slot [`crate::AplicacaoSpec::validate_membros`]
2022    /// per-slot gate on the analogous per-entry axis (`:membros`) — same
2023    /// three-per-entry shape (DNS-1123 name + semver-requirement +
2024    /// duplicate-`:caixa` dedup), lifted to one named substrate
2025    /// primitive per slot. The M4 `mesh.pleme.io/v1alpha1/Supervisor` CR
2026    /// materializer's admission webhook re-checking one added or renamed
2027    /// child, the future wasm-operator's per-child dynamic-add
2028    /// re-validator on the `SimpleOneForOne` runtime-add path once
2029    /// dynamic-children graduate to a typed slot, a future partial
2030    /// re-validator on a per-`:children`-entry patch — each reaches the
2031    /// three per-entry axes through this one dispatch rather than
2032    /// re-inlining the three-arm cascade in lockstep with `validate`
2033    /// (the duplication the PRIME DIRECTIVE names as a bug) or paying
2034    /// the peer `:estrategia`/`:max-restarts`/`:restart-window` gates to
2035    /// reach one entry check.
2036    ///
2037    /// Self-contained on `&self` — resolves its own dedup `HashSet`
2038    /// through [`SupervisorSpec::children`] rather than borrowing one
2039    /// threaded down from `validate`, the same posture the peer M3
2040    /// mesh-slot per-slot gates ([`crate::AplicacaoSpec::validate_membros`],
2041    /// [`crate::AplicacaoSpec::validate_contratos`],
2042    /// [`crate::AplicacaoSpec::validate_entrada`],
2043    /// [`crate::AplicacaoSpec::validate_placement`]) each carry, so a
2044    /// consumer that reaches this gate directly (without first calling
2045    /// `validate`) still runs the full per-child cascade — pinned by
2046    /// `validate_children_matches_gate_on_per_axis_refusal_shapes` +
2047    /// `validate_children_matches_gate_on_versao_invalid_and_clean_pass`
2048    /// + `validate_children_is_self_contained_on_children_slot`.
2049    ///
2050    /// The three per-entry arms run in the same canonical order the
2051    /// pre-lift inline cascade encoded (DNS-1123 → semver → dedup), so
2052    /// the diagnostic every author-declared per-`:children` entry surfaces
2053    /// through `validate` is byte-equal to the diagnostic this gate
2054    /// surfaces when called directly — the equivalence-pin pair
2055    /// `validate_children_matches_gate_on_per_axis_refusal_shapes` +
2056    /// `validate_children_matches_gate_on_versao_invalid_and_clean_pass`
2057    /// asserts the two altitudes discriminate the same set on every
2058    /// per-entry-covered input.
2059    pub fn validate_children(&self) -> Result<(), SupervisorError> {
2060        let mut seen = std::collections::HashSet::new();
2061        for child in self.children() {
2062            // Every emitted cluster artifact's `metadata.name` for a
2063            // supervised child derives from this `:children :caixa` value
2064            // verbatim — the rendered `wasm.pleme.io/v1alpha1/ComputeUnit
2065            // .metadata.name` per child, the [`crate::LABEL_PROGRAM`]
2066            // label value on every child's pod identity, and the per-
2067            // child K8s [`Service`][svc] `metadata.name` the future
2068            // wasm-operator (M3) provisions for inter-child supervision
2069            // tree wiring. Each apiserver-side schema on each landing
2070            // site enforces the DNS-1123 label rule on admission; a
2071            // structurally invalid child name (`"Worker"`, `"my_worker"`,
2072            // `"team.worker"`, `"-worker"`, `"worker-"`, the >63-byte
2073            // UUID-shaped mistaken-identity slug) silently passes the
2074            // prior empty-/duplicate-only gate and the failure surfaces
2075            // at `kubectl apply` time as a `metadata.name: Invalid value`
2076            // rejection, far from the source caixa.lisp, with no field
2077            // naming the offending `:children` entry. Lifting the gate
2078            // to caixa-build time mirrors the `:membros :caixa` value-
2079            // shape trajectory (3f9d7a0) and the `:placement :clusters`
2080            // trajectory (6cbb900) onto the third DNS-1123-label-shaped
2081            // identifier axis — the supervisor tree's child names —
2082            // through the lifted
2083            // [`crate::render::require_valid_dns_1123_label`] gate the
2084            // seven peer name axes (`:membros :caixa`, `:placement
2085            // :clusters`, `:placement :affinity`, `:contratos :de`/`:para`,
2086            // `:entrada :para`, `:nome`, `:upgrade-from :module`) each
2087            // route through, so drift between the eight axes' accepted
2088            // DNS-1123-label sets is structurally impossible.
2089            //
2090            // [svc]: https://kubernetes.io/docs/concepts/services-networking/service/
2091            crate::render::require_valid_dns_1123_label(
2092                child.nome(),
2093                || SupervisorError::EmptyChildName,
2094                |reason| SupervisorError::child_caixa_invalid(child.nome(), reason),
2095            )?;
2096            // The author surface for `:children :versao` is the same
2097            // Cargo-shaped semver requirement string `:deps :versao` and
2098            // `:membros :versao` carry — and the lacre pipeline resolves
2099            // all three axes through the same
2100            // [`crate::version::parse_requirement`] entry-point. The
2101            // shared [`crate::render::require_valid_versao_requirement`]
2102            // helper brackets the empty-first + parse cascade both peer
2103            // axes ([`crate::dep::Dep::validate`] on `:deps :versao`,
2104            // [`crate::AplicacaoSpec::validate_membros`] on `:membros
2105            // :versao`) route through, so drift between the three axes'
2106            // accepted requirement sets is structurally impossible and
2107            // the parse-side no-op the empty-first arm closes (semver's
2108            // empty parse yields an implicit `*`) lives in exactly one
2109            // predicate. Every `ChildSpec::versao` past validate is
2110            // round-trippable through [`crate::parse_requirement`]
2111            // without re-checking at the resolver layer, and the three
2112            // `:versao` typed surfaces (`:deps`, `:membros`, `:children`)
2113            // are now structurally equivalent by construction.
2114            crate::render::require_valid_versao_requirement(
2115                child.versao_requirement(),
2116                || SupervisorError::empty_child_version(child.nome()),
2117                |reason| {
2118                    SupervisorError::child_versao_invalid(
2119                        child.nome(),
2120                        child.versao_requirement(),
2121                        reason,
2122                    )
2123                },
2124            )?;
2125            crate::render::insert_first_seen(&mut seen, child.nome(), || {
2126                SupervisorError::duplicate_child_caixa(child.nome())
2127            })?;
2128        }
2129        Ok(())
2130    }
2131}
2132
2133/// Cross-slot coherence gate on the supervision tree: no
2134/// `:children :caixa` entry may name the supervisor's own `:nome`.
2135///
2136/// A supervisor that lists itself as a child is a degenerate self-parent
2137/// — the supervision tree is a DAG rooted at the supervisor (OTP child
2138/// specs reference *distinct* child processes; a supervisor is never its
2139/// own child), and the wasm-operator's hierarchical reconciliation would
2140/// otherwise be handed a node that is its own parent: a one-node cycle it
2141/// either rejects far from the source `caixa.lisp` or recurses on. Because
2142/// every `:nome` is a globally-unique substrate identity (DNS-1123 label +
2143/// lacre closure root), a child whose `:caixa` equals the supervisor's
2144/// `:nome` *is* the supervisor itself, not a coincidentally-named peer.
2145///
2146/// Lives outside [`SupervisorSpec::validate`] because the typed view
2147/// carries the children but not the parent `:nome`; mirrors the
2148/// cross-slot precedence gate `validate_upgrade_from_against_versao`
2149/// (which likewise reads one slot against another at the
2150/// [`crate::layout`] wire-up site) and the mesh self-edge gate
2151/// `AplicacaoSpec`'s `ContratoSelfLoop` — the same "an edge from a graph
2152/// node to itself is structurally not a tree/mesh edge" discipline, here
2153/// on the supervision-tree axis.
2154pub fn validate_no_self_supervision(
2155    children: &[ChildSpec],
2156    parent_nome: &str,
2157) -> Result<(), SupervisorError> {
2158    for child in children {
2159        if child.nome() == parent_nome {
2160            return Err(SupervisorError::child_supervises_self(parent_nome));
2161        }
2162    }
2163    Ok(())
2164}
2165
2166#[derive(Debug, Error, PartialEq, Eq)]
2167pub enum SupervisorError {
2168    #[error("supervisor :estrategia {estrategia:?} requires at least one :children entry")]
2169    NoChildren { estrategia: RestartStrategy },
2170    #[error(
2171        "SimpleOneForOne supervisors must declare zero static children (children spawn dynamically)"
2172    )]
2173    SimpleOneForOneWithStaticChildren,
2174    #[error(":max-restarts must be > 0")]
2175    ZeroMaxRestarts,
2176    #[error(
2177        ":supervisor :max-restarts ({max_restarts}) exceeds the supervisor-policy ceiling \
2178         (SUPERVISOR_MAX_RESTARTS_MAX = 1000) — a value above this cap turns the typed \
2179         restart-intensity policy into a no-op supervisor: the escalation threshold is \
2180         structurally so high that no realistic restarts-per-:restart-window traffic shape \
2181         can reach it, so the supervisor never escalates to its parent and a bad child can \
2182         loop inside the window indefinitely. Every typed-slot consumer (Erlang/OTP's \
2183         MaxIntensity/Period ratio, the future wasm-operator's per-supervisor \
2184         restart-intensity counter, the M4 mesh.pleme.io/v1alpha1/Supervisor CR \
2185         materializer's admission webhook) emits a `:max-restarts` declaration that is \
2186         structurally never reached. Pin a value in 1..=1000 (Erlang/OTP / Elixir / Riak \
2187         Core / RabbitMQ production playbooks recommend 3..=100; the OTP `supervisor` \
2188         callback module's `MaxR = 1` minimal-restart default sits at the bottom of the \
2189         band) or restructure the supervision tree (split the flaky child into its own \
2190         sub-supervisor with a tighter budget) if you need a higher restart tolerance."
2191    )]
2192    MaxRestartsExceedsCap { max_restarts: u32 },
2193    #[error(
2194        ":restart-window must be > 0 when set — Erlang/OTP's MaxIntensity/Period \
2195         requires Period > 0; a zero window either trips on the first failure or \
2196         never trips depending on operator interpretation. Omit :restart-window to \
2197         express `never reset`; carry a positive duration to express the window."
2198    )]
2199    RestartWindowZero,
2200    #[error(
2201        ":supervisor :restart-window ({window:?}) carries a sub-millisecond residue the shared `duration_codec` cannot round-trip — \
2202         the codec truncates to `as_millis()` before picking the canonical unit, so a value with `subsec_nanos() % 1_000_000 != 0` either \
2203         truncates on first serialize (e.g. `Duration::from_micros(1500)` → \"1ms\" → `Duration::from_millis(1)` ≠ original) or renders \
2204         as \"0s\" the `RestartWindowZero` arm then rejects on re-validate. Pin an integer-millisecond magnitude in the canonical authoring form \
2205         (`<integer><unit>` for unit ∈ {{ms, s, m, h}}, e.g. `\"500ms\"`, `\"30s\"`, `\"2m\"`, `\"1h\"`) or omit the field for `never reset`"
2206    )]
2207    RestartWindowNotCanonical { window: Duration },
2208    #[error(
2209        ":supervisor :restart-window ({window:?}) exceeds the supervisor-policy ceiling \
2210         (SUPERVISOR_RESTART_WINDOW_MAX = 1h = 3600s) — a value above this cap turns the typed \
2211         per-supervisor rolling-window restart-intensity counter into a lifetime counter: the \
2212         failure-counting window is structurally so long that transient restarts are never \
2213         forgotten, the MaxIntensity/Period ratio degenerates from `trip the parent supervisor \
2214         when the child has exceeded its restart budget within the recent window` to `trip the \
2215         parent when the child has exceeded its restart budget over its lifetime`, and the \
2216         supervisor's reset semantic never reaches the child — every typed-slot consumer \
2217         (Erlang/OTP's MaxIntensity/Period reconciler, the future wasm-operator's \
2218         per-supervisor restart-intensity counter, the M4 mesh.pleme.io/v1alpha1/Supervisor CR \
2219         materializer's admission webhook, the caixa-operator's hierarchical reconciliation \
2220         scheduler) emits a `:restart-window` declaration that is structurally a no-op rolling \
2221         window. Pin a value in 1ms..=1h (Learn You Some Erlang's `{{intensity, 5, 60}}` \
2222         worker-supervisor `Period = 60s` default, Elixir's `Supervisor` `max_seconds: 5` \
2223         default, OTP's `supervisor` callback module `MaxT = 5..=60` typical, Riak Core's \
2224         `MaxT ∈ 10s..=300s`, RabbitMQ broker-supervisor `MaxT = 5s` default — every Erlang/OTP \
2225         / Elixir production playbook sits in the 5s..=300s band; the longest documented \
2226         per-supervisor restart-window any pleme-io substrate playbook recommends maxes at \
2227         ~30m) or omit :restart-window to express `never reset` (the supervisor's restart \
2228         budget then becomes a strict lifetime counter by design, not a degenerate one — the \
2229         author surfaces the lifetime-counter semantic explicitly at the slot, rather than \
2230         hiding it behind a rolling-window declaration the cap arm rejects)"
2231    )]
2232    RestartWindowExceedsCap { window: Duration },
2233    #[error("child entry has empty :caixa name")]
2234    EmptyChildName,
2235    #[error(
2236        "child :caixa {caixa:?} is not a valid DNS-1123 label: {reason} \
2237         (the K8s apiserver enforces this rule on every `metadata.name` / Service \
2238         name / label value the child name lands in — the per-child \
2239         `wasm.pleme.io/v1alpha1/ComputeUnit.metadata.name`, the `LABEL_PROGRAM` \
2240         label value, and the future wasm-operator per-child Service `metadata.name` \
2241         — each apiserver-side schema rejects names that don't match; use a \
2242         lowercase alphanumeric + hyphen identifier like `\"worker\"` or `\"cache-v2\"`)"
2243    )]
2244    ChildCaixaInvalid { caixa: String, reason: String },
2245    #[error("child {caixa:?} has empty :versao constraint")]
2246    EmptyChildVersion { caixa: String },
2247    #[error(
2248        "child {caixa:?} :versao {versao:?} is not a valid semver requirement: \
2249         {reason} (use Cargo-shaped forms like `\"^0.1\"`, `\"~0.1.2\"`, \
2250         `\"0.1.0\"`, or `\"*\"` — the same shape `:deps :versao` and \
2251         `:membros :versao` carry; the lacre pipeline resolves all three \
2252         through the same parser)"
2253    )]
2254    ChildVersaoInvalid {
2255        caixa: String,
2256        versao: String,
2257        reason: String,
2258    },
2259    #[error(
2260        "child {caixa:?} appears more than once (Erlang/OTP requires unique \
2261         child_spec.id per supervisor; duplicate children materialize as duplicate \
2262         ComputeUnits in the rendered chart, one silently overwriting the other)"
2263    )]
2264    DuplicateChildCaixa { caixa: String },
2265    #[error(
2266        "supervisor {caixa:?} lists itself as a :children entry — a supervisor is \
2267         never its own child (the supervision tree is a DAG rooted at the supervisor; \
2268         OTP child specs reference distinct child processes). Since every :nome is a \
2269         globally-unique substrate identity, a child naming the supervisor's own :nome \
2270         is a one-node reconciliation cycle, not a coincidentally-named peer; drop the \
2271         self-referential :children entry or rename it to the actual child caixa."
2272    )]
2273    ChildSupervisesSelf { caixa: String },
2274}
2275
2276// Fold the three `SupervisorError::<Variant> { caixa: <&str>.to_string() }`
2277// caixa-only struct-variant wire-up sites at [`SupervisorSpec::validate_children`]
2278// and [`validate_no_self_supervision`] onto one substrate primitive per
2279// typed variant — the sibling on `SupervisorError` of the four uniform-shape
2280// `LayoutError`-envelope constructor families the peer
2281// [`crate::layout::layout_violation_ctors!`] macro closed (131ca0d, 16
2282// variants on `{ caixa, issue }`), the [`crate::layout::layout_slot_kind_ctors!`]
2283// macro closed (0419438, 4 variants on `{ caixa, kind, slots }`), the
2284// [`crate::LayoutError::missing_entry`] one-variant ctor closed (1b09f9d,
2285// on `{ kind, path }`), and the [`crate::layout::layout_nome_only_ctors!`]
2286// macro closed (3fe3dd7, 6 variants on `<Variant>(String)`), plus the
2287// [`crate::AplicacaoError::entrada_host_invalid`] one-variant ctor
2288// (17dd504, `{ host, reason }`), the [`crate::aplicacao::contrato_target_ctors!`]
2289// macro (14b81d5, 2 variants on `{ de, para, wit, expected }`), and the
2290// [`crate::aplicacao::contrato_empty_pair_ctors!`] macro (8580068, 4
2291// variants on `{ de, para }`) already at that discipline on the peer
2292// `AplicacaoError` envelopes.
2293//
2294// Each of the three wire-up sites on this shape (`EmptyChildVersion` at
2295// the per-`:children` semver-requirement empty-first arm, `DuplicateChildCaixa`
2296// at the per-`:children` dedup arm, `ChildSupervisesSelf` at the cross-slot
2297// self-supervision arm) opened the identical
2298// `SupervisorError::<Variant> { caixa: <&str>.to_string() }` struct-literal —
2299// the exact "same block re-inlined at every consumer" shape the PRIME
2300// DIRECTIVE names as a bug, on the same altitude the peer `LayoutError` /
2301// `AplicacaoError` families each closed on their sibling envelopes. The
2302// three variants share one `{ caixa: String }` shape, so the fold routes
2303// each wire-up site through one dispatch per typed variant.
2304//
2305// The macro below generates one static constructor per variant of shape
2306// `fn <slot>(caixa: &str) -> SupervisorError`, so every wire-up site
2307// collapses onto one dispatch:
2308// `SupervisorError::<slot>(<&str>)`, byte-equal to the pre-lift
2309// struct-literal on the same `&str` fixture. The uniform one-field
2310// construction (`caixa: caixa.to_string()`) is spelled once — inside the
2311// macro — rather than at every wire-up site. Every constructor is
2312// `#[must_use]` so a caller who mistakenly discards the constructed error
2313// trips a compile warning at the wire-up site.
2314//
2315// Every future consumer that wants to construct one of these three
2316// variants outside `SupervisorSpec::validate_children` /
2317// `validate_no_self_supervision` — a deferred
2318// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission
2319// webhook re-checking one added/renamed child, a future
2320// `feira validate --supervisor` per-caixa admission verb, a per-child
2321// dynamic-add re-validator on the `SimpleOneForOne` runtime-add path
2322// once dynamic-children graduate to a typed slot, a per-Supervisor
2323// overlay resolver rejecting a duplicate/self-supervising child against
2324// a cluster-local snapshot — now reaches each variant through one call
2325// rather than re-inlining the three-line struct-literal in lockstep
2326// with the three in-crate wire-up sites.
2327macro_rules! supervisor_caixa_only_ctors {
2328    ($($ctor:ident => $variant:ident),* $(,)?) => {
2329        impl SupervisorError {
2330            $(
2331                #[doc = concat!(
2332                    "Construct a [`SupervisorError::",
2333                    stringify!($variant),
2334                    "`] naming the offending `:children :caixa` (or ",
2335                    "supervisor `:nome`, on the self-supervision arm). ",
2336                    "Folds the uniform `Self::",
2337                    stringify!($variant),
2338                    " { caixa: caixa.to_string() }` one-field ",
2339                    "struct-literal onto one substrate primitive so ",
2340                    "every [`SupervisorSpec::validate_children`] / ",
2341                    "[`validate_no_self_supervision`] wire-up on this ",
2342                    "variant reads through one dispatch rather than the ",
2343                    "pre-lift open-coded struct-literal block."
2344                )]
2345                #[must_use]
2346                pub fn $ctor(caixa: &str) -> Self {
2347                    Self::$variant { caixa: caixa.to_string() }
2348                }
2349            )*
2350        }
2351    };
2352}
2353
2354supervisor_caixa_only_ctors! {
2355    empty_child_version => EmptyChildVersion,
2356    duplicate_child_caixa => DuplicateChildCaixa,
2357    child_supervises_self => ChildSupervisesSelf,
2358}
2359
2360// Fold the two `SupervisorError::{ChildCaixaInvalid, ChildVersaoInvalid}`
2361// struct-variant wire-up sites at [`SupervisorSpec::validate_children`] onto
2362// one substrate primitive per typed variant — the M2 supervisor-side siblings
2363// of the peer [`crate::AplicacaoError::membro_caixa_invalid`] two-slot ctor
2364// already lifted through the sibling
2365// [`crate::aplicacao::aplicacao_field_reason_ctors!`] macro (981060b) on the
2366// peer `AplicacaoError { caixa: String, reason: String }` envelope. The
2367// `ChildCaixaInvalid` variant carries the same `{ <name>: String, reason:
2368// String }` two-slot shape the peer seven-variant
2369// [`crate::aplicacao::aplicacao_field_reason_ctors!`] fold closed on the
2370// `AplicacaoError` envelope (`MembroCaixaInvalid`, `EntradaParaInvalid`,
2371// `EntradaHostInvalid`, `EntradaPathInvalid`, `PlacementClusterInvalid`,
2372// `PlacementAffinityInvalid`, `ShardKeyInvalid`); the `ChildVersaoInvalid`
2373// variant carries the `{ caixa: String, versao: String, reason: String }`
2374// three-slot shape the sibling `AplicacaoError::MembroVersaoInvalid` axis
2375// carries on the same `:versao` value-shape.
2376//
2377// Each of the two wire-up sites opened the same closure-shaped
2378// `|reason| SupervisorError::<Variant> { caixa: child.nome().to_string(),
2379// [versao: child.versao_requirement().to_string(),] reason }` block inside
2380// the paired [`crate::render::require_valid_dns_1123_label`] and
2381// [`crate::render::require_valid_versao_requirement`] callbacks — the exact
2382// "same block re-inlined at every consumer" shape the PRIME DIRECTIVE names
2383// as a bug, on the same altitude the peer `AplicacaoError` /
2384// `SupervisorError` / `LayoutError` / `DepError` / `LimitsError` ctor
2385// families already closed on their sibling envelopes.
2386//
2387// The two `#[must_use]` inherent constructors below fold each wire-up onto
2388// one dispatch: `SupervisorError::child_caixa_invalid(<name>, <reason>)`
2389// and `SupervisorError::child_versao_invalid(<name>, <versao>, <reason>)`,
2390// byte-equal to the pre-lift struct-literal on the same scalar fixtures.
2391// The uniform per-field `.to_string()` / `.into()` construction is spelled
2392// once — inside each ctor body — rather than at every wire-up site. The
2393// `reason: impl Into<String>` bound accepts both `&str` literals and
2394// `format!(…)` outputs verbatim so no wire-up site changes its per-arm
2395// diagnostic shape at the lift, matching the peer
2396// [`aplicacao_field_reason_ctors!`] and
2397// [`crate::aplicacao::contrato_pair_value_reason_ctors!`] bounds on the
2398// sibling envelopes.
2399//
2400// Every future consumer that wants to construct one of these two variants
2401// outside `SupervisorSpec::validate_children` — a deferred
2402// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission webhook
2403// re-checking one added/renamed child's `:caixa` or `:versao`, a future
2404// `feira validate --supervisor` per-caixa admission verb, a per-child
2405// dynamic-add re-validator on the `SimpleOneForOne` runtime-add path once
2406// dynamic-children graduate to a typed slot, a per-Supervisor overlay
2407// resolver rejecting a shape-invalid child `:caixa`/`:versao` against a
2408// cluster-local snapshot — now reaches each variant through one call rather
2409// than re-inlining the per-shape struct-literal block in lockstep with the
2410// two in-crate wire-up sites.
2411impl SupervisorError {
2412    /// Construct a [`SupervisorError::ChildCaixaInvalid`] naming the
2413    /// offending `:children :caixa` value under the given `reason`. Folds
2414    /// the uniform `Self::ChildCaixaInvalid { caixa: caixa.to_string(),
2415    /// reason: reason.into() }` two-slot struct-literal onto one substrate
2416    /// primitive so every wire-up on this variant reads through one
2417    /// dispatch, matching the peer
2418    /// [`crate::AplicacaoError::membro_caixa_invalid`] ctor's shape on the
2419    /// sibling `AplicacaoError { caixa: String, reason: String }`
2420    /// envelope. `reason` accepts both `&str` literals and `format!(…)`
2421    /// outputs through the `impl Into<String>` bound.
2422    #[must_use]
2423    pub fn child_caixa_invalid(caixa: &str, reason: impl Into<String>) -> Self {
2424        Self::ChildCaixaInvalid {
2425            caixa: caixa.to_string(),
2426            reason: reason.into(),
2427        }
2428    }
2429
2430    /// Construct a [`SupervisorError::ChildVersaoInvalid`] naming the
2431    /// offending `:children :caixa` and its `:versao` requirement under
2432    /// the given `reason`. Folds the uniform `Self::ChildVersaoInvalid {
2433    /// caixa: caixa.to_string(), versao: versao.to_string(), reason:
2434    /// reason.into() }` three-slot struct-literal onto one substrate
2435    /// primitive so every wire-up on this variant reads through one
2436    /// dispatch, matching the sibling `AplicacaoError::MembroVersaoInvalid
2437    /// { caixa, versao, reason }` three-slot axis on the peer
2438    /// `AplicacaoError` envelope. `reason` accepts both `&str` literals
2439    /// and `format!(…)` outputs through the `impl Into<String>` bound.
2440    #[must_use]
2441    pub fn child_versao_invalid(caixa: &str, versao: &str, reason: impl Into<String>) -> Self {
2442        Self::ChildVersaoInvalid {
2443            caixa: caixa.to_string(),
2444            versao: versao.to_string(),
2445            reason: reason.into(),
2446        }
2447    }
2448}
2449
2450// Fold the four `SupervisorError::<Variant> { <field>: <Copy> }` one-field
2451// Copy-scalar struct-variant wire-up sites at [`SupervisorSpec::validate`]'s
2452// three bracket-arms — one struct-literal at the `:children`-empty
2453// non-`SimpleOneForOne` refusal cascade (`NoChildren { estrategia }`) plus
2454// three `impl FnOnce(<ty>) -> SupervisorError` bracket-closures at the
2455// [`crate::render::require_positive_bounded_u32`] `:max-restarts` cap arm
2456// (`MaxRestartsExceedsCap { max_restarts }`) and the paired
2457// [`crate::render::require_positive_canonical_bounded_duration`]
2458// `:restart-window` canonical-form + cap arms (`RestartWindowNotCanonical
2459// { window }`, `RestartWindowExceedsCap { window }`) — onto one substrate
2460// primitive per typed variant, matching the sibling
2461// [`crate::aplicacao::aplicacao_policy_scalar_ctors!`] macro (7ef425e, 8
2462// variants on the same `{ <field>: Duration | u32 }` shape) at that
2463// discipline on the peer `AplicacaoError` envelope's per-`:politicas`
2464// scalar axis. Every variant is a one-field `Copy`-pass-through struct-
2465// literal — `RestartStrategy | u32 | Duration` — so the fold routes each
2466// wire-up site through one dispatch per typed variant without a runtime-
2467// work delta.
2468//
2469// Each of the four wire-up sites opened the identical
2470// `SupervisorError::<Variant> { <field>: <val> }` struct-literal — the
2471// exact "same block re-inlined at every consumer" shape the PRIME
2472// DIRECTIVE names as a bug, on the same altitude the peer
2473// `aplicacao_policy_scalar_ctors!` fold closed on the sibling
2474// `AplicacaoError` envelope's per-`:politicas` per-axis cap / canonical-
2475// form arms. The four variants share one `{ <field>: <Copy> }` shape, so
2476// the fold routes each wire-up site through one dispatch per typed
2477// variant.
2478//
2479// The macro below generates one static constructor per variant of shape
2480// `const fn <ctor>(<field>: <ty>) -> SupervisorError`, so every wire-up
2481// site collapses onto one dispatch: `SupervisorError::<ctor>(<val>)`,
2482// byte-equal to the pre-lift struct-literal on the same `Copy`-`<ty>`
2483// fixture — as a direct call at the [`SupervisorSpec::validate`]
2484// `:children`-empty refusal, or as a bare function pointer in the
2485// `impl FnOnce(<ty>) -> SupervisorError` bracket-closure slot every
2486// [`crate::render::require_positive_bounded_u32`] /
2487// [`crate::render::require_positive_canonical_bounded_duration`] gate
2488// carries — rather than the pre-lift open-coded one-line closure over
2489// the same one-field struct-literal. `const fn` preserves the `Copy`-
2490// pass-through's zero-runtime-work property verbatim. Every constructor
2491// is `#[must_use]` so a caller who mistakenly discards the constructed
2492// error trips a compile warning at the wire-up site.
2493//
2494// Every future consumer that wants to construct one of these four
2495// variants outside `SupervisorSpec::validate` — a deferred
2496// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission
2497// webhook re-checking one edited `:estrategia` / `:max-restarts` /
2498// `:restart-window` slot against the cap + canonical-form cascade, a
2499// future `feira validate --supervisor` per-caixa admission verb re-
2500// running the shape gates on demand, a per-Supervisor overlay resolver
2501// rejecting an author-supplied slot against a cluster-local snapshot —
2502// now reaches each variant through one call rather than re-inlining the
2503// per-shape struct-literal block in lockstep with the four in-crate
2504// wire-up sites.
2505macro_rules! supervisor_scalar_ctors {
2506    ($($ctor:ident => $variant:ident { $field:ident: $ty:ty }),* $(,)?) => {
2507        impl SupervisorError {
2508            $(
2509                #[doc = concat!(
2510                    "Construct a [`SupervisorError::",
2511                    stringify!($variant),
2512                    "`] naming the offending per-`:supervisor` `",
2513                    stringify!($field),
2514                    "` scalar. Folds the uniform `Self::",
2515                    stringify!($variant),
2516                    " { ",
2517                    stringify!($field),
2518                    " }` one-field `Copy`-pass-through struct-literal onto ",
2519                    "one substrate primitive so every per-axis wire-up on ",
2520                    "this variant reads through one dispatch — as a direct ",
2521                    "call (`SupervisorError::",
2522                    stringify!($ctor),
2523                    "(<val>)`, byte-equal to the pre-lift struct-literal on ",
2524                    "the same `Copy`-`",
2525                    stringify!($ty),
2526                    "` fixture) or as a bare function pointer in the ",
2527                    "`impl FnOnce(",
2528                    stringify!($ty),
2529                    ") -> SupervisorError` bracket-closure slot every ",
2530                    "`crate::render::require_positive_bounded_*` / ",
2531                    "`crate::render::require_positive_canonical_bounded_*` ",
2532                    "gate carries — rather than the pre-lift open-coded ",
2533                    "one-line closure over the same one-field struct-",
2534                    "literal. `const fn` preserves the `Copy`-pass-through's ",
2535                    "zero-runtime-work property verbatim."
2536                )]
2537                #[must_use]
2538                pub const fn $ctor($field: $ty) -> Self {
2539                    Self::$variant { $field }
2540                }
2541            )*
2542        }
2543    };
2544}
2545
2546supervisor_scalar_ctors! {
2547    no_children => NoChildren { estrategia: RestartStrategy },
2548    max_restarts_exceeds_cap => MaxRestartsExceedsCap { max_restarts: u32 },
2549    restart_window_not_canonical => RestartWindowNotCanonical { window: Duration },
2550    restart_window_exceeds_cap => RestartWindowExceedsCap { window: Duration },
2551}
2552
2553/// Shared duration string codec for the typed slots that take a
2554/// duration (`restart_window`, `MeshPolicy::timeout`,
2555/// `CircuitBreaker::window`, …). Public so [`crate::aplicacao`] can
2556/// reuse it without duplicating the parser.
2557pub mod duration_codec {
2558    use super::Duration;
2559    use serde::{Deserializer, Serializer};
2560
2561    pub fn serialize<S: Serializer>(v: &Option<Duration>, s: S) -> Result<S::Ok, S::Error> {
2562        // Route through the canonical [`crate::render::serialize_option_via_str`]
2563        // — the substrate-side single-owner primitive for the forward
2564        // arm of the typed-magnitude codec family. See its docstring
2565        // for the full sibling roster.
2566        crate::render::serialize_option_via_str(v, s, render)
2567    }
2568
2569    pub fn deserialize<'de, D: Deserializer<'de>>(d: D) -> Result<Option<Duration>, D::Error> {
2570        // Route through the canonical [`crate::render::deserialize_option_via_str`]
2571        // — the substrate-side single-owner primitive for the reverse
2572        // arm of the typed-magnitude codec family. See its docstring
2573        // for the full sibling roster.
2574        crate::render::deserialize_option_via_str(d, parse)
2575    }
2576
2577    pub(crate) fn parse(s: &str) -> Result<Duration, String> {
2578        // Paired whitespace-rejection arm — same canonical-form
2579        // render-determinism discipline as the peer
2580        // `limits::parse_byte_size` / `limits::parse_duration` /
2581        // `limits::parse_millicores` /
2582        // `aplicacao::rate_limit_codec::parse` sites: the ASCII
2583        // byte-scan closes the WhatWG-conformant whitespace bytes
2584        // (`0x20`, `0x09`, `0x0A`, `0x0C`, `0x0D`), the non-ASCII
2585        // `char::is_whitespace` scan closes the strictly-complementary
2586        // Unicode `White_Space` class (NBSP `\u{00A0}`, LINE SEPARATOR
2587        // `\u{2028}`, EM-SPACE `\u{2003}`, and the peer typography
2588        // codepoints) that `str::trim` at parse entry silently strips.
2589        // Either drift class would round-trip through `render` to a
2590        // *different* canonical form on next emit — breaking the
2591        // THEORY.md Part V render-determinism contract on three typed-
2592        // duration slots at once (`:supervisor :restart-window`,
2593        // `:politicas :timeout`, `:politicas :circuit-breaker :window`)
2594        // via the shared codec.
2595        //
2596        // Routed through the lifted [`crate::render::reject_whitespace`]
2597        // primitive — the substrate-side single-owner paired-arm gate
2598        // every typed-magnitude codec in caixa-core shares.
2599        crate::render::reject_whitespace::<String, _, _>(
2600            s,
2601            |b| {
2602                format!(
2603                    "duration: value {s:?} contains whitespace byte 0x{b:02x} — the canonical \
2604                 authoring form for the typed duration slots routed through this shared codec \
2605                 (`:supervisor :restart-window`, `:politicas :timeout`, \
2606                 `:politicas :circuit-breaker :window`) is `<integer><unit>` (e.g. \
2607                 `\"30s\"`, `\"500ms\"`, `\"2m\"`, `\"1h\"`) with no whitespace bytes \
2608                 anywhere. A whitespace-carrying shape (`\" 30s\"`, `\"30s \"`, `\"30 s\"`, \
2609                 `\"\\t30s\"`, `\"30s\\n\"`) round-trips through `render` to a *different* \
2610                 canonical form (`\"30s\"`) on first serialize — breaking the THEORY.md \
2611                 Part V render-determinism contract every typed slot carries. Strip every \
2612                 whitespace byte (write `\"30s\"` verbatim)"
2613                )
2614            },
2615            |ch| {
2616                format!(
2617                    "duration: value {s:?} contains non-ASCII Unicode whitespace character \
2618                 {ch:?} (U+{cp:04X}) — the canonical authoring form for the typed \
2619                 duration slots routed through this shared codec (`:supervisor \
2620                 :restart-window`, `:politicas :timeout`, `:politicas :circuit-breaker \
2621                 :window`) is `<integer><unit>` (e.g. `\"30s\"`, `\"500ms\"`, `\"2m\"`, \
2622                 `\"1h\"`) with no whitespace characters anywhere (ASCII or Unicode). A \
2623                 non-ASCII-whitespace-carrying shape (`\"\\u{{00A0}}30s\"`, \
2624                 `\"30s\\u{{2028}}\"`, `\"30\\u{{2003}}s\"`) survives the ASCII byte-scan \
2625                 but `str::trim` (which uses `char::is_whitespace` — the Unicode \
2626                 `White_Space` property, strictly wider than the ASCII byte set) silently \
2627                 strips it at parse entry, and the value round-trips through `render` to \
2628                 a *different* canonical form (`\"30s\"`) on first serialize — breaking \
2629                 the THEORY.md Part V render-determinism contract every typed slot \
2630                 carries. Strip every non-ASCII whitespace character (write `\"30s\"` \
2631                 verbatim with only ASCII bytes)",
2632                    cp = ch as u32
2633                )
2634            },
2635        )?;
2636        let s = s.trim();
2637        // Routed through the lifted
2638        // [`crate::render::split_magnitude_and_alpha_unit`] primitive —
2639        // the single-owner split every ASCII-alphabetic-unit typed-
2640        // magnitude codec in caixa-core (`limits::parse_byte_size` /
2641        // `limits::parse_duration` / this shared duration codec) shares.
2642        // See its docstring for the full sibling roster on the same
2643        // primitive altitude.
2644        let (num_part, unit) = crate::render::split_magnitude_and_alpha_unit(s);
2645        let num_trim = num_part.trim();
2646        // The canonical authoring form for every typed slot routed
2647        // through this shared codec — `:supervisor :restart-window`,
2648        // `:politicas :timeout`, `:politicas :circuit-breaker :window`
2649        // — is `<integer><unit>`. Every magnitude [`render`] emits is a
2650        // non-negative integer with no decimal point and no leading
2651        // sign, so the parser's accepted set must match for
2652        // serialize/deserialize to round-trip without canonical-form
2653        // drift. Until this gate landed the parser accepted any
2654        // `f64`-shaped magnitude (`"1.5s"` → 1500ms, `"1.0s"` → 1s,
2655        // `"0.5m"` → 30s, `"+30s"` → 30s) and serde silently round-
2656        // tripped the value to a *different* canonical string on the
2657        // next emit (`"1.5s"` → 1500ms → `"1500ms"`, `"1.0s"` → 1s →
2658        // `"1s"`, `"0.5m"` → 30s → `"30s"`, `"+30s"` → 30s → `"30s"`)
2659        // — breaking the THEORY.md Part V render-determinism contract
2660        // on three typed slots at once. Same canonical-form discipline
2661        // `crate::limits::parse_duration` (818dd38, the immediate
2662        // predecessor on the peer `:limits :wall-clock` codec) applies;
2663        // this gate lifts the discipline onto the shared codec that
2664        // backs the remaining three typed-duration slots in caixa-core.
2665        //
2666        // Strict canonical form: every byte of the magnitude is an
2667        // ASCII digit (no `.`, no `+`, no `-`). On non-digit-only
2668        // inputs the gate distinguishes "non-canonical-but-numeric"
2669        // (parses as f64 or i64 — surfaced with a self-locating
2670        // diagnostic naming the canonical authoring form, the
2671        // round-trip drift each rejected shape would produce on first
2672        // serialize, and the canonical-form remediation) from
2673        // "garbage" (parses as neither — surfaced with the existing
2674        // narrower "bad duration magnitude" wording so its diagnostic
2675        // shape remains stable for the parser-shape footgun case).
2676        // The pre-existing `num < 0.0` arm is now unreachable — the
2677        // digit-only gate strictly precedes magnitude parsing, and a
2678        // leading `-` is not an ASCII digit, so `"-30s"` lands on the
2679        // non-canonical-but-numeric branch with the `-30` named
2680        // verbatim in the diagnostic rather than the prior
2681        // value-laundered "negative duration in \"-30s\"" wording.
2682        //
2683        // Routed through the lifted
2684        // [`crate::render::is_digit_only_magnitude`] predicate — the
2685        // same source of truth the four peer typed-magnitude codec
2686        // sites share.
2687        let digit_only = crate::render::is_digit_only_magnitude(num_trim);
2688        if !digit_only {
2689            let numeric = num_trim.parse::<f64>().is_ok() || num_trim.parse::<i64>().is_ok();
2690            if numeric {
2691                return Err(format!(
2692                    "duration: magnitude {num_trim:?} is not a non-negative integer — the \
2693                     canonical authoring form for the typed duration slots routed through \
2694                     this shared codec (`:supervisor :restart-window`, `:politicas :timeout`, \
2695                     `:politicas :circuit-breaker :window`) is `<integer><unit>` (e.g. \
2696                     `\"30s\"`, `\"500ms\"`, `\"2m\"`, `\"1h\"`) with no decimal point and \
2697                     no leading `+` / `-` sign. A fractional / decimal-shaped magnitude \
2698                     (`\"1.5s\"`, `\"1.0s\"`, `\"0.5m\"`, `\"+30s\"`, `\"-30s\"`) round-trips \
2699                     through `render` to a *different* canonical form (`\"1500ms\"`, `\"1s\"`, \
2700                     `\"30s\"`, `\"30s\"`, `\"30s\"`) on first serialize — breaking the \
2701                     THEORY.md Part V render-determinism contract every typed slot carries. \
2702                     Pick an integer magnitude in the unit that divides cleanly (write \
2703                     `\"1500ms\"` instead of `\"1.5s\"`; `\"30s\"` instead of `\"0.5m\"`)"
2704                ));
2705            }
2706            return Err(format!("bad duration magnitude in {s:?}"));
2707        }
2708        // Leading-zero arm — peer with the `rate_limit_codec` leading-
2709        // zero arm (4f46830) on the same canonical-form render-
2710        // determinism axis. The digit-only gate accepts `"030s"`,
2711        // `"00s"`, `"01h"`, `"0500ms"` as `u64::from_str` parses them
2712        // losslessly (= 30, 0, 1, 500), but `render` emits the leading-
2713        // zero-stripped form (`"30s"`, `"0s"`, `"1h"`, `"500ms"`) — a
2714        // *different* canonical string on the next emit, breaking the
2715        // THEORY.md Part V render-determinism contract the same way
2716        // `"+30s"` did before the leading-`+` arm landed. The single-
2717        // byte magnitude `"0"` (or `"0s"` / `"0ms"`) round-trips
2718        // losslessly through `render` (`render(Duration::ZERO)` emits
2719        // `"0s"`) — the downstream semantic-zero gates (e.g.
2720        // `SupervisorError::ZeroRestartWindow` on
2721        // `:supervisor :restart-window`,
2722        // `AplicacaoError::PolicyTimeoutZero` /
2723        // `PolicyCircuitBreakerWindowZero` on the typed `:politicas`
2724        // duration slots) refuse zero-magnitude authoring at the typed-
2725        // validate layer above, so the single-byte `"0"` stays in the
2726        // accepted set at this codec layer and the diagnostic
2727        // partitioning between canonical-form drift (this arm) and
2728        // semantic-zero (the downstream gates) remains stable.
2729        // Peer with the future leading-zero arms on the two remaining
2730        // typed-magnitude codecs the trajectory acknowledges:
2731        // `limits::parse_duration` backing `:limits :wall-clock`,
2732        // `limits::parse_byte_size` backing `:limits :memory` — each
2733        // carries the same canonical-form-drift class today; this
2734        // gate lands the discipline on the shared duration codec
2735        // first because the `rate_limit_codec` predecessor on the
2736        // same canonical-form-drift axis is the closest peer on the
2737        // trajectory.
2738        //
2739        // Routed through the lifted
2740        // [`crate::render::is_leading_zero_padded_magnitude`]
2741        // predicate — the same source of truth the four peer
2742        // typed-magnitude codec sites share.
2743        if crate::render::is_leading_zero_padded_magnitude(num_trim) {
2744            return Err(format!(
2745                "duration: magnitude {num_trim:?} has a non-canonical leading zero — the \
2746                 canonical authoring form for the typed duration slots routed through \
2747                 this shared codec (`:supervisor :restart-window`, `:politicas :timeout`, \
2748                 `:politicas :circuit-breaker :window`) is `<integer><unit>` (e.g. \
2749                 `\"30s\"`, `\"500ms\"`, `\"2m\"`, `\"1h\"`) with no leading-zero padding \
2750                 on the magnitude. A leading-zero magnitude (`\"030s\"`, `\"00s\"`, \
2751                 `\"01h\"`, `\"0500ms\"`) round-trips through `render` to a *different* \
2752                 canonical form (`\"30s\"`, `\"0s\"`, `\"1h\"`, `\"500ms\"`) on first \
2753                 serialize — breaking the THEORY.md Part V render-determinism contract \
2754                 every typed slot carries. Strip the leading zeros (write \
2755                 `\"30s\"` instead of `\"030s\"`)"
2756            ));
2757        }
2758        // The digit-only gate guarantees every byte is `[0-9]`, and
2759        // the leading-zero arm above guarantees the magnitude is
2760        // either the single byte `"0"` or starts with `[1-9]`, so
2761        // the only way `u64::from_str` can fail here is overflow (the
2762        // magnitude exceeds `u64::MAX`). Surface that with an
2763        // overflow-shaped wording so the diagnostic names the offending
2764        // magnitude verbatim rather than collapsing onto the
2765        // non-canonical arm. The codec now operates on `u64` end-to-end
2766        // — every accepted magnitude is integer-exact; no f64 mantissa
2767        // drift between author-supplied magnitude and the consumer's
2768        // `Duration` value. Same shape `crate::limits::parse_duration`
2769        // (818dd38) carries on the peer `:limits :wall-clock` axis.
2770        let num: u64 = num_trim.parse::<u64>().map_err(|_| {
2771            format!("bad duration magnitude in {s:?} (digit-only magnitude overflows u64)")
2772        })?;
2773        // Route the `{"ms" | "s" | "" | "m" | "h"} → Duration`
2774        // unit-arm dispatch through the canonical
2775        // [`crate::render::duration_from_integer_magnitude_and_unit`]
2776        // primitive — the substrate-side single-owner unit-dispatch
2777        // table every typed-duration codec in caixa-core routes
2778        // through (peer: `crate::limits::parse_duration` backing
2779        // `:limits :wall-clock`). Every unit conversion is integer-
2780        // exact for an integer magnitude; overflow surfaces via the
2781        // typed `DurationUnitError::Overflow { multiplier }`
2782        // discriminant so this arm reconstructs the pre-lift
2783        // `"duration <num><unit> overflows u64 (magnitude × 60 …)"`
2784        // wording verbatim from `num` / `unit_trim` / the returned
2785        // `multiplier`, and the unknown-unit arm reconstructs the
2786        // pre-lift `"unknown duration unit \"<other>\""` wording from
2787        // the caller-scoped `unit_trim`. Load-bearing pinned by
2788        // `crate::render::tests::duration_from_integer_magnitude_and_unit_matches_pre_lift_unit_dispatch_table`.
2789        let unit_trim = unit.trim();
2790        let dur = crate::render::duration_from_integer_magnitude_and_unit(num, unit_trim).map_err(
2791            |e| match e {
2792                crate::render::DurationUnitError::Overflow { multiplier } => format!(
2793                    "duration {num}{unit_trim} overflows u64 (magnitude × {multiplier} > 2^64-1)"
2794                ),
2795                crate::render::DurationUnitError::UnknownUnit => {
2796                    format!("unknown duration unit {unit_trim:?}")
2797                }
2798            },
2799        )?;
2800        Ok(dur)
2801    }
2802
2803    /// Render a [`Duration`] in the canonical pleme-io duration string
2804    /// form (`"30s"`, `"1m"`, `"1h"`, `"500ms"`). The same form every
2805    /// caixa typed-duration slot serializes to and the same form K8s
2806    /// Gateway API HTTPRoute `timeouts` / `backendRequest` and Cilium
2807    /// EnvoyConfig per-route timeouts both expect (an integer
2808    /// followed by `s`/`m`/`h`/`ms`, no fractional values, no leading
2809    /// `+`). Lifted to `pub` so caixa-side renderers
2810    /// (`caixa-mesh::gateway_routes`'s :politicas :timeout overlay,
2811    /// the future per-:politicas `CiliumClusterwideEnvoyConfig`
2812    /// emitter, the future caixa-otel collector pipeline emitter) can
2813    /// consume the same canonical formatter without re-inlining the
2814    /// magnitude/unit decision tree (and inheriting the same drift
2815    /// footguns: a subtly different `300ms` vs `0.3s` rendering breaks
2816    /// downstream apply-time parsing in non-obvious ways).
2817    pub fn render(d: Duration) -> String {
2818        let total_ms = d.as_millis();
2819        if total_ms == 0 {
2820            return "0s".into();
2821        }
2822        if total_ms.is_multiple_of(3600 * 1000) {
2823            return format!("{}h", total_ms / (3600 * 1000));
2824        }
2825        if total_ms.is_multiple_of(60 * 1000) {
2826            return format!("{}m", total_ms / (60 * 1000));
2827        }
2828        if total_ms.is_multiple_of(1000) {
2829            return format!("{}s", total_ms / 1000);
2830        }
2831        format!("{total_ms}ms")
2832    }
2833
2834    /// True iff `d` round-trips losslessly through [`render`] + [`parse`].
2835    ///
2836    /// [`render`] truncates a `Duration` to `as_millis()` before picking the
2837    /// largest divisor unit, so any sub-millisecond residue
2838    /// (`d.subsec_nanos() % 1_000_000 != 0`) silently breaks the THEORY.md
2839    /// §V.2.7 render-determinism contract:
2840    ///
2841    ///   - `Duration::from_micros(1500)` (= `1_500_000` ns) → `as_millis() == 1`
2842    ///     → renders `"1ms"` → parses back to `Duration::from_millis(1)` =
2843    ///     `1_000_000` ns ≠ original `1_500_000` ns;
2844    ///   - `Duration::from_nanos(1)` (= 1 ns) → `as_millis() == 0` →
2845    ///     renders the literal `"0s"`, which the per-axis zero-floor gate
2846    ///     on every typed-`Duration` slot then rejects on re-validate.
2847    ///
2848    /// Lifted to a `pub` predicate next to the [`render`] / [`parse`] pair so
2849    /// the codec's round-trippable accepted set lives in exactly one place —
2850    /// every typed-`Duration` slot that routes through this shared codec
2851    /// (`SupervisorSpec::restart_window` via [`super::duration_codec`],
2852    /// [`crate::MeshPolicy::timeout`] / [`crate::CircuitBreaker::window`] via
2853    /// `supervisor::duration_codec` + [`super::duration_codec_required`]) and
2854    /// every typed-`Duration` slot whose own codec shares the same
2855    /// `as_millis()`-truncation shape ([`crate::LimitsSpec::wall_clock`] via
2856    /// [`crate::limits`]'s in-module `parse_duration` / `render_duration`
2857    /// pair) calls this predicate from its `validate()` to bracket the
2858    /// accepted set against the codec's accepted set, structurally. Drift
2859    /// between the codec's granularity and any typed slot's accepted set is
2860    /// then a single-source-of-truth edit at this predicate rather than a
2861    /// silent round-trip break the next consumer discovers at apply time.
2862    ///
2863    /// Peer of [`crate::aplicacao::POLICY_RETRIES_MAX`] /
2864    /// [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`] and the
2865    /// `is_dns_1123_label` / `is_canonical_rate_limit_window` predicate
2866    /// family — same "typed-slot's valid set matches its codec's accepted
2867    /// set, structurally" discipline carried at the codec layer.
2868    #[must_use]
2869    pub fn is_integer_millisecond_duration(d: Duration) -> bool {
2870        d.subsec_nanos().is_multiple_of(1_000_000)
2871    }
2872}
2873
2874/// Required-Duration variant for fields that aren't Option<Duration>.
2875pub mod duration_codec_required {
2876    use super::Duration;
2877    use serde::{Deserialize, Deserializer, Serializer};
2878
2879    pub fn serialize<S: Serializer>(v: &Duration, s: S) -> Result<S::Ok, S::Error> {
2880        s.serialize_str(&super::duration_codec::render(*v))
2881    }
2882
2883    pub fn deserialize<'de, D: Deserializer<'de>>(d: D) -> Result<Duration, D::Error> {
2884        let s = String::deserialize(d)?;
2885        super::duration_codec::parse(&s).map_err(serde::de::Error::custom)
2886    }
2887}
2888
2889#[cfg(test)]
2890mod tests {
2891    use super::*;
2892
2893    fn child(name: &str, ver: &str, restart: RestartPolicy) -> ChildSpec {
2894        ChildSpec {
2895            caixa: name.into(),
2896            versao: ver.into(),
2897            restart,
2898        }
2899    }
2900
2901    #[test]
2902    fn child_spec_string_scalar_accessor_pair_is_const_fn() {
2903        // Fail-before-pass-after pin on [`ChildSpec::nome`] +
2904        // [`ChildSpec::versao_requirement`]'s `const`-eval-surface
2905        // posture. Each accessor projects the per-`:children :caixa`
2906        // / per-`:children :versao` [`String`] storage through the
2907        // `pub const fn` [`String::as_str`] (const-stable since Rust
2908        // 1.87, well within the workspace MSRV) — any future
2909        // accidental downgrade to non-`const` fails the corresponding
2910        // `<name>_via_const_fn` wrapper at caixa-core build time with
2911        // E0015 (`cannot call non-const method`), strictly stronger
2912        // than a runtime `assert!`. Sibling of the peer
2913        // per-M2/M3/universal-axis `String → &str` scalar-accessor
2914        // family pins on the sibling `const`-eval-surface passes
2915        // ([`crate::Caixa::nome`] / [`crate::Caixa::versao`] at the
2916        // top-level manifest, [`crate::CaixaVersion::as_str`] at the
2917        // typed-newtype wrapper, [`crate::aplicacao::Membro::nome`] /
2918        // [`crate::aplicacao::Membro::versao_requirement`] at the M3
2919        // membership axis, [`crate::aplicacao::Entrada::hostname`] /
2920        // [`crate::aplicacao::Entrada::destination`] at the M3
2921        // ingress axis,
2922        // [`crate::upgrade::UpgradeFromEntry::prior_versao`] at the
2923        // M2 upgrade axis, [`crate::dep::Dep::nome`] /
2924        // [`crate::dep::Dep::versao_requirement`] at the dep-graph
2925        // axis, and the per-`:contratos`
2926        // [`crate::aplicacao::WitContract::source`] /
2927        // [`crate::aplicacao::WitContract::destination`] /
2928        // [`crate::aplicacao::WitContract::world_ref`] trio the
2929        // sibling pin at 279823b already anchors).
2930        const fn nome_via_const_fn(c: &ChildSpec) -> &str {
2931            c.nome()
2932        }
2933        const fn versao_via_const_fn(c: &ChildSpec) -> &str {
2934            c.versao_requirement()
2935        }
2936        for (caixa, versao) in [
2937            ("worker-a", "^0.1"),
2938            ("worker-b", "~0.2.3"),
2939            ("collector", "*"),
2940        ] {
2941            let c = child(caixa, versao, RestartPolicy::Permanent);
2942            assert_eq!(nome_via_const_fn(&c), c.nome());
2943            assert_eq!(versao_via_const_fn(&c), c.versao_requirement());
2944            assert_eq!(c.nome(), caixa);
2945            assert_eq!(c.versao_requirement(), versao);
2946        }
2947    }
2948
2949    #[test]
2950    fn supervisor_children_slice_return_accessor_is_const_fn() {
2951        // Fail-before-pass-after pin on [`SupervisorSpec::children`]'s
2952        // `const`-eval-surface posture. The accessor destructures the
2953        // per-`:children` `Vec<ChildSpec>` storage through the
2954        // `pub const fn` [`Vec::as_slice`] (const-stable since Rust
2955        // 1.66, well within the workspace MSRV) — any future
2956        // accidental downgrade to non-`const` fails
2957        // `children_via_const_fn` at caixa-core build time with E0015
2958        // (`cannot call non-const method`), strictly stronger than a
2959        // runtime `assert!`. Sibling of the peer per-M3-mesh-slot
2960        // `Vec → &[T]` slice-return accessor family pin
2961        // [`crate::aplicacao::tests::m3_reference_return_accessor_family_is_const_fn`]
2962        // on the M3 mesh-slot per-`:clusters` / per-`:paths` /
2963        // per-`:membros` / per-`:contratos` slice-return axes, and of
2964        // the peer M2 upgrade-appup axis pin
2965        // [`crate::upgrade::tests::upgrade_from_entry_instructions_slice_return_accessor_is_const_fn`]
2966        // on the per-`:upgrade-from :instructions` slice-return axis.
2967        const fn children_via_const_fn(s: &SupervisorSpec) -> &[ChildSpec] {
2968            s.children()
2969        }
2970        // Sweep both the empty-children (leaf-supervisor with no
2971        // static children — the `SimpleOneForOne` dynamic-child
2972        // arm's canonical shape) and the populated-children
2973        // (`OneForOne` / `OneForAll` / `RestForOne` static-child
2974        // arm's canonical shape) axes so the accessor carries a
2975        // const-dispatch pin on both arms.
2976        let s_empty = SupervisorSpec {
2977            estrategia: RestartStrategy::SimpleOneForOne,
2978            max_restarts: SUPERVISOR_MAX_RESTARTS_DEFAULT,
2979            restart_window: Some(SUPERVISOR_RESTART_WINDOW_DEFAULT),
2980            children: vec![],
2981        };
2982        assert!(children_via_const_fn(&s_empty).is_empty());
2983        assert_eq!(children_via_const_fn(&s_empty), s_empty.children());
2984        let s_full = SupervisorSpec {
2985            estrategia: RestartStrategy::OneForOne,
2986            max_restarts: SUPERVISOR_MAX_RESTARTS_DEFAULT,
2987            restart_window: Some(SUPERVISOR_RESTART_WINDOW_DEFAULT),
2988            children: vec![
2989                child("worker-a", "^0.1", RestartPolicy::Permanent),
2990                child("worker-b", "~0.2.3", RestartPolicy::Transient),
2991                child("collector", "*", RestartPolicy::Temporary),
2992            ],
2993        };
2994        assert_eq!(children_via_const_fn(&s_full).len(), 3);
2995        assert_eq!(children_via_const_fn(&s_full), s_full.children());
2996    }
2997
2998    #[test]
2999    fn default_has_one_for_one_and_5_restarts_in_60s() {
3000        let s = SupervisorSpec::default();
3001        assert_eq!(s.estrategia, RestartStrategy::OneForOne);
3002        assert_eq!(s.max_restarts, 5);
3003        assert_eq!(s.restart_window, Some(Duration::from_secs(60)));
3004        assert!(s.children.is_empty());
3005    }
3006
3007    #[test]
3008    fn validate_one_for_one_requires_children() {
3009        let mut s = SupervisorSpec::default();
3010        s.children = vec![];
3011        assert!(matches!(
3012            s.validate().unwrap_err(),
3013            SupervisorError::NoChildren { .. }
3014        ));
3015        s.children = vec![child("worker", "^0.1", RestartPolicy::Permanent)];
3016        s.validate().unwrap();
3017    }
3018
3019    #[test]
3020    fn validate_simple_one_for_one_forbids_static_children() {
3021        let mut s = SupervisorSpec {
3022            estrategia: RestartStrategy::SimpleOneForOne,
3023            ..SupervisorSpec::default()
3024        };
3025        s.children
3026            .push(child("w", "^0.1", RestartPolicy::Permanent));
3027        assert_eq!(
3028            s.validate().unwrap_err(),
3029            SupervisorError::SimpleOneForOneWithStaticChildren
3030        );
3031        s.children.clear();
3032        s.validate().unwrap();
3033    }
3034
3035    #[test]
3036    fn validate_rejects_zero_max_restarts() {
3037        let s = SupervisorSpec {
3038            max_restarts: 0,
3039            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3040            ..SupervisorSpec::default()
3041        };
3042        assert_eq!(s.validate().unwrap_err(), SupervisorError::ZeroMaxRestarts);
3043    }
3044
3045    // ── upper-cap: SUPERVISOR_MAX_RESTARTS_MAX brackets the typed slot ─────
3046    //
3047    // The cap arm lifts the `:politicas :circuit-breaker :max-failures` /
3048    // `POLICY_BREAKER_MAX_FAILURES_MAX` (2b51ace) discipline onto the peer
3049    // `:supervisor :max-restarts` axis — both fields are "trip the
3050    // next-higher protection layer after N events in a rolling window"
3051    // counters with identical degenerate-at-the-high-end shape, so the
3052    // typed-slot's accepted set lies in `1..=1000` on the supervisor side
3053    // exactly as it lies in `1..=1000` on the breaker side.
3054
3055    #[test]
3056    fn validate_rejects_max_restarts_above_cap() {
3057        // The fail-before-pass-after pin: `SUPERVISOR_MAX_RESTARTS_MAX +
3058        // 1` is structurally one past the cap and silently passed
3059        // validate on every pre-gate codebase because the typed slot's
3060        // only check was the zero-floor arm. The no-op-supervisor vector
3061        // only surfaced at the runtime substrate (Erlang/OTP
3062        // MaxIntensity/Period ratio, the future wasm-operator's
3063        // per-supervisor restart-intensity counter) far from the source
3064        // caixa.lisp with no field naming the offending supervisor.
3065        let s = SupervisorSpec {
3066            max_restarts: SUPERVISOR_MAX_RESTARTS_MAX + 1,
3067            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3068            ..SupervisorSpec::default()
3069        };
3070        assert_eq!(
3071            s.validate().unwrap_err(),
3072            SupervisorError::MaxRestartsExceedsCap {
3073                max_restarts: SUPERVISOR_MAX_RESTARTS_MAX + 1,
3074            }
3075        );
3076    }
3077
3078    #[test]
3079    fn validate_rejects_max_restarts_far_above_cap() {
3080        // The `u32::MAX` worst case — the four-billion-restart
3081        // threshold a typo (`:max-restarts 4294967295`) or a
3082        // struct-literal copy-paste lands in the slot. Pin the cap
3083        // arm's coverage explicitly across the full `u32` overflow so
3084        // a future relaxation that drops the upper bound surfaces
3085        // here. Same shape every other typed-cap arm on this surface
3086        // carries (POLICY_BREAKER_MAX_FAILURES_MAX,
3087        // POLICY_RETRIES_MAX, POLICY_RATE_LIMIT_MAX).
3088        let s = SupervisorSpec {
3089            max_restarts: u32::MAX,
3090            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3091            ..SupervisorSpec::default()
3092        };
3093        assert_eq!(
3094            s.validate().unwrap_err(),
3095            SupervisorError::MaxRestartsExceedsCap {
3096                max_restarts: u32::MAX,
3097            }
3098        );
3099    }
3100
3101    #[test]
3102    fn validate_accepts_max_restarts_at_cap() {
3103        // The boundary value — exactly SUPERVISOR_MAX_RESTARTS_MAX —
3104        // must validate. The cap is inclusive on the top edge,
3105        // matching the POLICY_BREAKER_MAX_FAILURES_MAX /
3106        // POLICY_RETRIES_MAX / LIMITS_MEMORY_WASM32_MAX_BYTES
3107        // discipline on the sibling capped axes. Pin the boundary
3108        // explicitly so a future off-by-one tightening
3109        // (`>= SUPERVISOR_MAX_RESTARTS_MAX` instead of `>`) surfaces
3110        // here as a test failure rather than a silent contract
3111        // narrowing.
3112        let s = SupervisorSpec {
3113            max_restarts: SUPERVISOR_MAX_RESTARTS_MAX,
3114            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3115            ..SupervisorSpec::default()
3116        };
3117        s.validate()
3118            .expect("max_restarts == SUPERVISOR_MAX_RESTARTS_MAX must validate");
3119    }
3120
3121    #[test]
3122    fn validate_accepts_max_restarts_typical_values() {
3123        // The documented production-playbook band positive-control
3124        // sweep — every value Erlang/OTP / Elixir / Riak Core /
3125        // RabbitMQ recommend (1..=100) must pass, plus a sweep
3126        // through the hyperscale band (200, 500, 1000) the cap
3127        // accepts. Pin the inclusive validated set explicitly so a
3128        // future tightening of the ceiling surfaces here.
3129        for n in [1u32, 3, 5, 10, 20, 50, 100, 200, 500, 1000] {
3130            let s = SupervisorSpec {
3131                max_restarts: n,
3132                children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3133                ..SupervisorSpec::default()
3134            };
3135            s.validate()
3136                .unwrap_or_else(|e| panic!("max_restarts={n} must validate; got {e:?}"));
3137        }
3138    }
3139
3140    #[test]
3141    fn zero_max_restarts_takes_precedence_over_cap() {
3142        // The cross-arm ordering pin: `0` is structurally outside
3143        // both `1..` (zero-floor) and `..=SUPERVISOR_MAX_RESTARTS_MAX`
3144        // (cap), but the zero-floor diagnostic is the more
3145        // self-locating one (it directly names the counter-axis
3146        // remediation), so the validate gate must fire on zero first.
3147        // Same shape every other zero-then-shape ordering on this
3148        // surface uses (PolicyRetriesZero then
3149        // PolicyRetriesExceedsCap; PolicyBreakerZeroFailures then
3150        // PolicyBreakerMaxFailuresExceedsCap).
3151        let s = SupervisorSpec {
3152            max_restarts: 0,
3153            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3154            ..SupervisorSpec::default()
3155        };
3156        assert_eq!(
3157            s.validate().unwrap_err(),
3158            SupervisorError::ZeroMaxRestarts,
3159            "max_restarts == 0 must surface the zero-floor diagnostic, not the cap diagnostic"
3160        );
3161    }
3162
3163    #[test]
3164    fn max_restarts_cap_takes_precedence_over_restart_window_gates() {
3165        // The cross-arm ordering pin between the cap and the sibling
3166        // `:restart-window` gates (zero-window, canonical-window). A
3167        // supervisor carrying both an over-cap `max_restarts` AND a
3168        // structurally invalid window (zero, sub-ms) must surface the
3169        // cap diagnostic first — the cap arm is wired immediately
3170        // after the zero-restart arm and strictly before the window
3171        // arms, so the offending value the diagnostic names matches
3172        // the order the author would discover the gates by reading
3173        // top-to-bottom through `SupervisorSpec::validate`. Pin the
3174        // order so a future refactor that reorders the arms surfaces
3175        // here as a test failure rather than a silent diagnostic
3176        // regression. Peer of
3177        // `circuit_breaker_max_failures_cap_takes_precedence_over_window_gates`
3178        // on the sibling `:politicas :circuit-breaker` slot.
3179        let s = SupervisorSpec {
3180            max_restarts: SUPERVISOR_MAX_RESTARTS_MAX + 1,
3181            restart_window: Some(Duration::ZERO),
3182            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3183            ..SupervisorSpec::default()
3184        };
3185        assert_eq!(
3186            s.validate().unwrap_err(),
3187            SupervisorError::MaxRestartsExceedsCap {
3188                max_restarts: SUPERVISOR_MAX_RESTARTS_MAX + 1,
3189            },
3190            "over-cap max_restarts must surface the cap diagnostic before any window-axis diagnostic"
3191        );
3192    }
3193
3194    #[test]
3195    fn max_restarts_cap_diagnostic_carries_offending_value() {
3196        // The diagnostic-shape pin: the offending `u32` is carried
3197        // verbatim into the `SupervisorError::MaxRestartsExceedsCap`
3198        // variant so the surfaced error message names the value the
3199        // author wrote (`":supervisor :max-restarts (50000) exceeds the
3200        // supervisor-policy ceiling …"`), not just the cap. Same
3201        // self-locating diagnostic shape every other typed-cap arm on
3202        // this surface carries
3203        // (`AplicacaoError::PolicyBreakerMaxFailuresExceedsCap` carries
3204        // the offending failure count verbatim,
3205        // `AplicacaoError::PolicyRetriesExceedsCap` carries the offending
3206        // retries count verbatim).
3207        let s = SupervisorSpec {
3208            max_restarts: 50_000,
3209            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
3210            ..SupervisorSpec::default()
3211        };
3212        let err = s.validate().unwrap_err();
3213        assert!(
3214            matches!(
3215                err,
3216                SupervisorError::MaxRestartsExceedsCap {
3217                    max_restarts: 50_000
3218                }
3219            ),
3220            "got {err:?}"
3221        );
3222        let msg = err.to_string();
3223        assert!(
3224            msg.contains("50000"),
3225            ":supervisor :max-restarts cap diagnostic must carry the offending value verbatim (got: {msg})"
3226        );
3227    }
3228
3229    #[test]
3230    fn supervisor_max_restarts_default_pins_otp_canonical_value() {
3231        // Pin [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] at `5` — the
3232        // Erlang/OTP-canonical `{intensity, 5, 60}` `MaxIntensity`
3233        // half of Learn You Some Erlang's worker-supervisor default,
3234        // sibling of the `60s` `Period` half that the paired
3235        // [`Default for SupervisorSpec`] impl already pins on the
3236        // sibling `restart_window` axis. Pinning the literal here
3237        // surfaces a future rebrand (a tightening to Elixir's `3`,
3238        // a widening to a per-cluster overlay the operator pins
3239        // through a future `:max-restarts-overrides` slot) as a
3240        // deliberate test edit, not a silent contract migration.
3241        // Peer of the sibling
3242        // [`supervisor_max_restarts_cap_pins_canonical_value`]
3243        // upper-bracket pin on the same axis.
3244        assert_eq!(SUPERVISOR_MAX_RESTARTS_DEFAULT, 5);
3245    }
3246
3247    #[test]
3248    fn default_max_restarts_helper_routes_through_lifted_default() {
3249        // Composition pin: the private `default_max_restarts()`
3250        // serde-`#[serde(default = "…")]` helper on
3251        // [`SupervisorSpec::max_restarts`] must route through the
3252        // substrate-canonical [`SUPERVISOR_MAX_RESTARTS_DEFAULT`]
3253        // typed `pub const` rather than a raw `5` literal. Prior to
3254        // the lift the helper carried an inline `5` with no compile-
3255        // time link back to the shared default, so the wire-format
3256        // author-omitted arm and the caixa-core
3257        // [`crate::manifest::Caixa::supervisor_view`] fold's `unwrap_or(5)`
3258        // arm could silently split on any future default rebrand.
3259        // Byte-parity against the lifted constant closes the split.
3260        assert_eq!(default_max_restarts(), SUPERVISOR_MAX_RESTARTS_DEFAULT);
3261    }
3262
3263    #[test]
3264    fn supervisor_spec_default_max_restarts_routes_through_lifted_default() {
3265        // Composition pin: the [`Default for SupervisorSpec`] impl's
3266        // struct-literal `max_restarts` field must route through the
3267        // substrate-canonical [`SUPERVISOR_MAX_RESTARTS_DEFAULT`]
3268        // typed `pub const` (via the private helper this test's
3269        // sibling `default_max_restarts_helper_routes_through_lifted_default`
3270        // already pins onto the constant). Structurally: every
3271        // `SupervisorSpec::default()` call must yield a
3272        // `max_restarts` field byte-equal to the lifted constant
3273        // (the two paired defaults — the serde-side wire-format arm
3274        // and the struct-literal default arm — cannot silently split
3275        // on any future default rebrand). Peer of the sibling
3276        // `default_has_one_for_one_and_5_restarts_in_60s` shape pin
3277        // — this pin closes the byte-parity arm on the two paired
3278        // altitude entry points onto the shared substrate constant.
3279        assert_eq!(
3280            SupervisorSpec::default().max_restarts(),
3281            SUPERVISOR_MAX_RESTARTS_DEFAULT,
3282        );
3283    }
3284
3285    #[test]
3286    fn supervisor_restart_window_default_pins_otp_canonical_value() {
3287        // Pin [`SUPERVISOR_RESTART_WINDOW_DEFAULT`] at `60s` — the
3288        // Erlang/OTP-canonical `{intensity, 5, 60}` `Period` half of
3289        // Learn You Some Erlang's worker-supervisor default, paired
3290        // with the sibling `SUPERVISOR_MAX_RESTARTS_DEFAULT` `5`
3291        // `MaxIntensity` half this constant is the sliding-window
3292        // denominator of on the same `MaxIntensity / Period`
3293        // restart-intensity ratio. Pinning the literal here surfaces a
3294        // future coherent rebrand of the paired default (Elixir's
3295        // `{max_restarts: 3, max_seconds: 5}`, a per-cluster overlay
3296        // the operator pins through a future
3297        // `:restart-window-overrides` slot) as a deliberate test edit,
3298        // not a silent contract migration. Peer of the sibling
3299        // [`supervisor_max_restarts_default_pins_otp_canonical_value`]
3300        // paired-half pin on the same OTP-canonical default and the
3301        // [`supervisor_restart_window_cap_pins_canonical_value`]
3302        // upper-bracket pin on the same axis.
3303        assert_eq!(SUPERVISOR_RESTART_WINDOW_DEFAULT, Duration::from_secs(60),);
3304    }
3305
3306    #[test]
3307    fn supervisor_spec_default_restart_window_routes_through_lifted_default() {
3308        // Composition pin: the [`Default for SupervisorSpec`] impl's
3309        // struct-literal `restart_window` field must route through the
3310        // substrate-canonical [`SUPERVISOR_RESTART_WINDOW_DEFAULT`]
3311        // typed `pub const` rather than a raw
3312        // `Duration::from_secs(60)` literal. Prior to this lift the
3313        // paired `{intensity, 5, 60}` OTP-canonical default was split
3314        // across two altitudes with no compile-time link between the
3315        // halves — the `MaxIntensity` half rode through the lifted
3316        // [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] constant while the
3317        // `Period` half rode as an open-coded literal at the
3318        // composition site, so a future coherent rebrand of the paired
3319        // canonical would have had to migrate one half through the
3320        // constant and the other through a raw literal in lockstep.
3321        // Byte-parity against the lifted constant on the `Period` half
3322        // closes the split — the paired OTP-canonical default now
3323        // migrates as one unit on any future axis change. Peer of the
3324        // sibling
3325        // [`supervisor_spec_default_max_restarts_routes_through_lifted_default`]
3326        // byte-parity pin on the paired `MaxIntensity` half.
3327        assert_eq!(
3328            SupervisorSpec::default().restart_window(),
3329            Some(SUPERVISOR_RESTART_WINDOW_DEFAULT),
3330        );
3331    }
3332
3333    #[test]
3334    fn supervisor_estrategia_default_pins_otp_canonical_value() {
3335        // Pin [`SUPERVISOR_ESTRATEGIA_DEFAULT`] at [`RestartStrategy::OneForOne`]
3336        // — the Erlang/OTP-canonical `one_for_one` half of Learn You Some
3337        // Erlang's `{one_for_one, intensity, 5, 60}` worker-supervisor
3338        // canonical default, paired with the sibling
3339        // `SUPERVISOR_MAX_RESTARTS_DEFAULT` `5` `MaxIntensity` half and the
3340        // sibling `SUPERVISOR_RESTART_WINDOW_DEFAULT` `60s` `Period` half
3341        // this constant is the strategy discriminator of on the same
3342        // OTP-canonical worker-supervisor default. Pinning the arm here
3343        // surfaces a future coherent rebrand of the paired triple (Elixir's
3344        // `{:one_for_one, max_restarts: 3, max_seconds: 5}` on the sibling
3345        // intensity/period axes leaving this strategy arm untouched, an OTP
3346        // `rest_for_one` widening once the substrate discovers startup-
3347        // order-coupled child cohorts as the more common worker-supervisor
3348        // shape, a per-cluster overlay the operator pins through a future
3349        // `:estrategia-overrides` slot the MESH-COMPOSITION §III.2
3350        // supervision-canary roadmap acknowledges) as a deliberate test
3351        // edit, not a silent contract migration. Peer of the sibling
3352        // [`supervisor_max_restarts_default_pins_otp_canonical_value`] +
3353        // [`supervisor_restart_window_default_pins_otp_canonical_value`]
3354        // paired-half pins on the same OTP-canonical default.
3355        assert_eq!(SUPERVISOR_ESTRATEGIA_DEFAULT, RestartStrategy::OneForOne);
3356    }
3357
3358    #[test]
3359    fn restart_strategy_default_routes_through_lifted_default() {
3360        // Composition pin: the [`Default for RestartStrategy`] impl's
3361        // return arm must route through the substrate-canonical
3362        // [`SUPERVISOR_ESTRATEGIA_DEFAULT`] typed `pub const` rather than
3363        // a raw `Self::OneForOne` arm. Prior to the lift the impl carried
3364        // an inline `Self::OneForOne` with no compile-time link back to
3365        // the shared OTP-canonical `one_for_one` strategy the paired
3366        // [`Default for SupervisorSpec`] impl's struct-literal `estrategia`
3367        // field and the [`crate::manifest::Caixa::supervisor_view`] fold's
3368        // `.unwrap_or_default()` (now
3369        // `.unwrap_or(SUPERVISOR_ESTRATEGIA_DEFAULT)`) arm both key off —
3370        // so a future rebrand of the OTP-canonical strategy default (an
3371        // OTP `rest_for_one` widening once the substrate discovers
3372        // startup-order-coupled child cohorts as the more common worker-
3373        // supervisor shape, a per-cluster overlay the operator pins
3374        // through a future `:estrategia-overrides` slot) would have had to
3375        // be threaded through the `Default` impl and the two peer routes
3376        // in lockstep or the three consumers would silently split. Byte-
3377        // parity against the lifted constant closes the split. Peer of
3378        // the sibling
3379        // [`default_max_restarts_helper_routes_through_lifted_default`] +
3380        // [`supervisor_spec_default_restart_window_routes_through_lifted_default`]
3381        // composition pins on the paired `MaxIntensity` + `Period` halves.
3382        assert_eq!(RestartStrategy::default(), SUPERVISOR_ESTRATEGIA_DEFAULT,);
3383    }
3384
3385    #[test]
3386    fn supervisor_spec_default_estrategia_routes_through_lifted_default() {
3387        // Composition pin: the [`Default for SupervisorSpec`] impl's
3388        // struct-literal `estrategia` field must route through the
3389        // substrate-canonical [`SUPERVISOR_ESTRATEGIA_DEFAULT`] typed
3390        // `pub const` (either directly, or via the
3391        // [`RestartStrategy::default`] impl that the sibling
3392        // `restart_strategy_default_routes_through_lifted_default` pin
3393        // already routes onto the constant). Structurally: every
3394        // `SupervisorSpec::default()` call must yield an `estrategia`
3395        // field byte-equal to the lifted constant (the three paired
3396        // defaults — the [`Default for RestartStrategy`] impl arm, the
3397        // struct-literal default arm here, and the
3398        // [`crate::manifest::Caixa::supervisor_view`] fold arm — cannot
3399        // silently split on any future default rebrand). Peer of the
3400        // sibling
3401        // [`supervisor_spec_default_max_restarts_routes_through_lifted_default`]
3402        // + [`supervisor_spec_default_restart_window_routes_through_lifted_default`]
3403        // byte-parity pins on the paired `MaxIntensity` + `Period` halves
3404        // of the same `SupervisorSpec::default()` composed altitude.
3405        assert_eq!(
3406            SupervisorSpec::default().estrategia(),
3407            SUPERVISOR_ESTRATEGIA_DEFAULT,
3408        );
3409    }
3410
3411    #[test]
3412    fn supervisor_child_restart_default_pins_otp_canonical_value() {
3413        // Pin [`SUPERVISOR_CHILD_RESTART_DEFAULT`] at
3414        // [`RestartPolicy::Permanent`] — Erlang/OTP's `permanent`
3415        // worker-child restart type (`{ChildId, StartFunc, permanent, …}`
3416        // in a `supervisor`'s `init/1` child-spec tuple), the per-child
3417        // half of the same OTP-shape supervisor-tree default set whose
3418        // per-`:supervisor` halves the sibling
3419        // [`SUPERVISOR_ESTRATEGIA_DEFAULT`] /
3420        // [`SUPERVISOR_MAX_RESTARTS_DEFAULT`] /
3421        // [`SUPERVISOR_RESTART_WINDOW_DEFAULT`] constants pin. Pinning the
3422        // arm here surfaces a future rebrand of the per-child default (an
3423        // OTP-`transient` widening once the substrate discovers clean-
3424        // completion-aware children as the more common child shape, a
3425        // per-cluster overlay the operator pins through a future
3426        // `:restart-overrides` slot the MESH-COMPOSITION §III.2
3427        // supervision-canary roadmap acknowledges) as a deliberate test
3428        // edit, not a silent contract migration. Peer of the sibling
3429        // [`supervisor_estrategia_default_pins_otp_canonical_value`] /
3430        // [`supervisor_max_restarts_default_pins_otp_canonical_value`] /
3431        // [`supervisor_restart_window_default_pins_otp_canonical_value`]
3432        // value pins on the per-`:supervisor` halves.
3433        assert_eq!(SUPERVISOR_CHILD_RESTART_DEFAULT, RestartPolicy::Permanent);
3434    }
3435
3436    #[test]
3437    fn restart_policy_default_routes_through_lifted_default() {
3438        // Composition pin: the [`Default for RestartPolicy`] impl's return
3439        // arm must route through the substrate-canonical
3440        // [`SUPERVISOR_CHILD_RESTART_DEFAULT`] typed `pub const` rather
3441        // than a raw `Self::Permanent` arm. Prior to the lift the impl
3442        // carried an inline `Self::Permanent` with no compile-time link
3443        // back to the OTP-shape supervisor-tree default set whose three
3444        // per-`:supervisor` halves already rode through lifted constants
3445        // — so a future coherent rebrand of the set would have had to
3446        // migrate three halves through typed constants and this fourth
3447        // through a raw enum arm in lockstep or the supervisor-level and
3448        // child-level defaults would silently drift apart. Byte-parity
3449        // against the lifted constant closes the split. Peer of the
3450        // sibling
3451        // [`restart_strategy_default_routes_through_lifted_default`]
3452        // composition pin on the per-`:supervisor` `:estrategia` axis.
3453        assert_eq!(RestartPolicy::default(), SUPERVISOR_CHILD_RESTART_DEFAULT);
3454    }
3455
3456    #[test]
3457    fn child_spec_serde_default_restart_routes_through_lifted_default() {
3458        // Composition pin: the serde-side `#[serde(default)]` on
3459        // [`ChildSpec::restart`] — the wire-format author-omitted
3460        // `:children :restart` arm — must resolve onto the substrate-
3461        // canonical [`SUPERVISOR_CHILD_RESTART_DEFAULT`] typed `pub const`
3462        // (via the [`Default for RestartPolicy`] impl the sibling
3463        // `restart_policy_default_routes_through_lifted_default` pin
3464        // already routes onto the constant). Structurally: a `ChildSpec`
3465        // deserialized from a payload that omits the `restart` key must
3466        // yield a `restart` field byte-equal to the lifted constant, so
3467        // the wire-format author-omitted arm and the
3468        // [`RestartPolicy::default`] impl arm cannot silently split on any
3469        // future default rebrand. Peer of the sibling
3470        // [`supervisor_spec_default_estrategia_routes_through_lifted_default`]
3471        // / [`supervisor_spec_default_max_restarts_routes_through_lifted_default`]
3472        // / [`supervisor_spec_default_restart_window_routes_through_lifted_default`]
3473        // byte-parity pins on the per-`:supervisor` halves of the same
3474        // author-omitted-slot resolution surface.
3475        let omitted: ChildSpec = serde_json::from_str(r#"{"caixa":"worker","versao":"^0.1"}"#)
3476            .expect("ChildSpec must deserialize with the restart key omitted");
3477        assert_eq!(
3478            omitted.restart(),
3479            SUPERVISOR_CHILD_RESTART_DEFAULT,
3480            "an author-omitted :children :restart slot must degrade onto \
3481             the SUPERVISOR_CHILD_RESTART_DEFAULT typed pub const (got \
3482             {:?}, expected {:?})",
3483            omitted.restart(),
3484            SUPERVISOR_CHILD_RESTART_DEFAULT,
3485        );
3486    }
3487
3488    #[test]
3489    fn supervisor_max_restarts_cap_pins_canonical_value() {
3490        // The SUPERVISOR_MAX_RESTARTS_MAX constant pins the value at
3491        // 1000 — the same ceiling the peer
3492        // POLICY_BREAKER_MAX_FAILURES_MAX cap carries on the
3493        // `:politicas :circuit-breaker :max-failures` axis (both are
3494        // "trip the next-higher protection layer after N events in a
3495        // rolling window" counters with identical
3496        // degenerate-at-the-high-end shape; uniform top edge so the
3497        // M4 CR materializers and the wasm-operator reconciler reach
3498        // for either field knowing the value is in `1..=1000`). Two
3499        // orders of magnitude above every documented Erlang/OTP /
3500        // Elixir / Riak Core / RabbitMQ production-playbook
3501        // recommendation band and below the clearly-pathological
3502        // "effectively no escalation" floor (10_000, 100_000,
3503        // u32::MAX). Pinning the literal value here surfaces a future
3504        // drift (a relaxation to 10_000, a tightening to 100) as a
3505        // deliberate test edit, not a silent contract narrowing.
3506        assert_eq!(SUPERVISOR_MAX_RESTARTS_MAX, 1000);
3507    }
3508
3509    #[test]
3510    fn validate_rejects_empty_child_name() {
3511        let s = SupervisorSpec {
3512            children: vec![child("", "^0.1", RestartPolicy::Permanent)],
3513            ..SupervisorSpec::default()
3514        };
3515        assert_eq!(s.validate().unwrap_err(), SupervisorError::EmptyChildName);
3516    }
3517
3518    #[test]
3519    fn validate_rejects_empty_child_version() {
3520        let s = SupervisorSpec {
3521            children: vec![child("w", "", RestartPolicy::Permanent)],
3522            ..SupervisorSpec::default()
3523        };
3524        assert!(matches!(
3525            s.validate().unwrap_err(),
3526            SupervisorError::EmptyChildVersion { .. }
3527        ));
3528    }
3529
3530    // ── value-shape: parse-as-VersionReq on :children :versao ─────────────
3531
3532    #[test]
3533    fn validate_rejects_invalid_child_versao_requirement() {
3534        // The fail-before-pass-after pin: a non-empty but malformed
3535        // semver requirement (`"^bad-version"`) silently passed
3536        // `validate()` on every pre-gate codebase because the prior
3537        // shape only refused the empty string. The parse failure
3538        // surfaced far downstream at lacre-resolve time with a
3539        // `semver::Error` that didn't name which `:children` entry
3540        // carried the typo. The new gate moves the check to caixa-build
3541        // time at the source caixa.lisp — the third `:versao` typed
3542        // axis (`:children`) joins `:deps` and `:membros` (9888b13) at
3543        // structural parity.
3544        let s = SupervisorSpec {
3545            children: vec![
3546                child("worker", "^0.1", RestartPolicy::Permanent),
3547                child("cache", "^bad-version", RestartPolicy::Transient),
3548            ],
3549            ..SupervisorSpec::default()
3550        };
3551        let err = s.validate().unwrap_err();
3552        assert!(
3553            matches!(
3554                err,
3555                SupervisorError::ChildVersaoInvalid { ref caixa, ref versao, .. }
3556                    if caixa == "cache" && versao == "^bad-version"
3557            ),
3558            "got {err:?}"
3559        );
3560    }
3561
3562    #[test]
3563    fn validate_rejects_child_versao_with_double_caret_typo() {
3564        // `"^^0.1"` is the canonical doubled-caret typo — looks
3565        // Cargo-shaped on first glance but fails the parser because
3566        // semver doesn't accept stacked operators. Pin this
3567        // adjacent-shape footgun explicitly so a future relaxation that
3568        // accepts "looks-canonical-but-isn't" forms surfaces here.
3569        let s = SupervisorSpec {
3570            children: vec![child("worker", "^^0.1", RestartPolicy::Permanent)],
3571            ..SupervisorSpec::default()
3572        };
3573        let err = s.validate().unwrap_err();
3574        assert!(
3575            matches!(
3576                err,
3577                SupervisorError::ChildVersaoInvalid { ref caixa, ref versao, .. }
3578                    if caixa == "worker" && versao == "^^0.1"
3579            ),
3580            "got {err:?}"
3581        );
3582    }
3583
3584    #[test]
3585    fn validate_rejects_child_versao_with_v_prefixed_tag() {
3586        // `"v0.1"` is the canonical "git-tag-shape leaking into the
3587        // semver requirement slot" typo — an author copies the
3588        // publish-side git-tag string verbatim into `:versao`, but
3589        // Cargo's semver parser rejects the leading `v`. Same
3590        // adjacent-shape footgun pinned for `:membros :versao`
3591        // (9888b13).
3592        let s = SupervisorSpec {
3593            children: vec![child("worker", "v0.1", RestartPolicy::Permanent)],
3594            ..SupervisorSpec::default()
3595        };
3596        let err = s.validate().unwrap_err();
3597        assert!(
3598            matches!(
3599                err,
3600                SupervisorError::ChildVersaoInvalid { ref caixa, ref versao, .. }
3601                    if caixa == "worker" && versao == "v0.1"
3602            ),
3603            "got {err:?}"
3604        );
3605    }
3606
3607    #[test]
3608    fn validate_accepts_canonical_child_versao_forms() {
3609        // The Cargo-shaped requirement forms `:deps :versao` and
3610        // `:membros :versao` already accept via
3611        // `crate::parse_requirement` must pass the children gate
3612        // without re-validating at the resolver layer. Pin every leg so
3613        // a future tightening of the canonical set surfaces here as a
3614        // test failure.
3615        for form in [
3616            "^0.1",      // caret — minor-range pin (the most common shape)
3617            "~0.1.2",    // tilde — patch-range pin
3618            "0.1.0",     // exact — single-version pin
3619            "*",         // wildcard — any version (semver::VersionReq::STAR)
3620            ">=0.1, <2", // multi-range — comma-separated comparators
3621        ] {
3622            let s = SupervisorSpec {
3623                children: vec![child("worker", form, RestartPolicy::Permanent)],
3624                ..SupervisorSpec::default()
3625            };
3626            s.validate()
3627                .unwrap_or_else(|e| panic!("canonical form {form:?} must validate, got {e:?}"));
3628        }
3629    }
3630
3631    #[test]
3632    fn child_versao_empty_takes_precedence_over_invalid() {
3633        // Order pin: the existing `EmptyChildVersion` diagnostic (which
3634        // doesn't try to parse) fires before the new
3635        // `ChildVersaoInvalid` parse-side diagnostic, so an empty
3636        // `:versao` keeps its narrower error message —
3637        // `parse_requirement` would also reject `""`, but the
3638        // empty-string arm is the more self-locating diagnostic for the
3639        // author. Same ordering discipline as
3640        // `membro_versao_empty_takes_precedence_over_invalid` in
3641        // aplicacao.rs.
3642        let s = SupervisorSpec {
3643            children: vec![child("worker", "", RestartPolicy::Permanent)],
3644            ..SupervisorSpec::default()
3645        };
3646        let err = s.validate().unwrap_err();
3647        assert!(
3648            matches!(err, SupervisorError::EmptyChildVersion { ref caixa } if caixa == "worker"),
3649            "got {err:?}"
3650        );
3651    }
3652
3653    #[test]
3654    fn child_versao_invalid_fires_before_duplicate_check() {
3655        // Order pin: a malformed requirement on a non-duplicate entry
3656        // surfaces *its own* diagnostic (which names the offending
3657        // `:versao` string), even when a later entry would otherwise
3658        // collapse onto an earlier name. The per-entry shape gate runs
3659        // inline before the duplicate-key insert — parallel to
3660        // `membro_versao_invalid_fires_before_duplicate_check` in
3661        // aplicacao.rs and the b0c8389 / c4213a4 ordering discipline.
3662        let s = SupervisorSpec {
3663            children: vec![
3664                child("worker", "^bad", RestartPolicy::Permanent),
3665                child("cache", "^0.1", RestartPolicy::Transient),
3666                child("worker", "^0.2", RestartPolicy::Permanent), // would otherwise raise DuplicateChildCaixa
3667            ],
3668            ..SupervisorSpec::default()
3669        };
3670        let err = s.validate().unwrap_err();
3671        assert!(
3672            matches!(
3673                err,
3674                SupervisorError::ChildVersaoInvalid { ref caixa, .. } if caixa == "worker"
3675            ),
3676            "got {err:?}"
3677        );
3678    }
3679
3680    #[test]
3681    fn child_versao_invalid_diagnostic_carries_offending_versao() {
3682        // The diagnostic-shape pin: the error names the offending
3683        // `:versao` value verbatim so the author can grep their
3684        // caixa.lisp without re-running the build, and carries a
3685        // non-empty `reason` from `semver::VersionReq::parse` so the
3686        // parser's own wording flows through to the diagnostic.
3687        let s = SupervisorSpec {
3688            children: vec![child("worker", "not-a-req", RestartPolicy::Permanent)],
3689            ..SupervisorSpec::default()
3690        };
3691        let err = s.validate().unwrap_err();
3692        let SupervisorError::ChildVersaoInvalid {
3693            caixa,
3694            versao,
3695            reason,
3696        } = err
3697        else {
3698            panic!("expected ChildVersaoInvalid, got other variant");
3699        };
3700        assert_eq!(caixa, "worker");
3701        assert_eq!(versao, "not-a-req");
3702        assert!(
3703            !reason.is_empty(),
3704            "ChildVersaoInvalid `reason` must carry the parser's wording verbatim"
3705        );
3706    }
3707
3708    // ── value-shape: DNS-1123 label rule on :children :caixa ──────────────
3709
3710    #[test]
3711    fn validate_rejects_child_caixa_with_uppercase() {
3712        // The canonical "I copied the Servico's display name verbatim"
3713        // typo — child caixa names are lowercase per K8s DNS-1123 label
3714        // rule. The diagnostic names the offending name and suggests the
3715        // lower-cased fix in one edit, mirroring the
3716        // `rejects_membro_caixa_with_uppercase` gate's shape (3f9d7a0).
3717        let s = SupervisorSpec {
3718            children: vec![child("Worker", "^0.1", RestartPolicy::Permanent)],
3719            ..SupervisorSpec::default()
3720        };
3721        let err = s.validate().unwrap_err();
3722        let SupervisorError::ChildCaixaInvalid { caixa, reason } = err else {
3723            panic!("expected ChildCaixaInvalid, got other variant");
3724        };
3725        assert_eq!(caixa, "Worker");
3726        assert!(
3727            reason.contains("uppercase"),
3728            "diagnostic must name the violation as `uppercase` (got: {reason:?})"
3729        );
3730        assert!(
3731            reason.contains("\"worker\""),
3732            "diagnostic must suggest the lower-cased fix verbatim (got: {reason:?})"
3733        );
3734    }
3735
3736    #[test]
3737    fn validate_rejects_child_caixa_with_underscore() {
3738        // The canonical "I'm thinking of a Python module / Postgres
3739        // table" leak — `_` is forbidden by every DNS-1123 / DNS-1035
3740        // label schema. K8s rejects `metadata.name: my_worker` at
3741        // admission time with an opaque `field is invalid` (no source-
3742        // citing diagnostic). The gate moves it to caixa-build time.
3743        let s = SupervisorSpec {
3744            children: vec![child("my_worker", "^0.1", RestartPolicy::Permanent)],
3745            ..SupervisorSpec::default()
3746        };
3747        let err = s.validate().unwrap_err();
3748        assert!(
3749            matches!(
3750                err,
3751                SupervisorError::ChildCaixaInvalid { ref caixa, ref reason }
3752                    if caixa == "my_worker" && reason.contains('_')
3753            ),
3754            "got {err:?}"
3755        );
3756    }
3757
3758    #[test]
3759    fn validate_rejects_child_caixa_with_dot() {
3760        // A `:children :caixa` entry is a single DNS-1123 label, not a
3761        // subdomain. The K8s Service / ComputeUnit `metadata.name` rules
3762        // forbid dots. Same shape as `rejects_membro_caixa_with_dot`
3763        // (3f9d7a0) on the peer name axis.
3764        let s = SupervisorSpec {
3765            children: vec![child("team.worker", "^0.1", RestartPolicy::Permanent)],
3766            ..SupervisorSpec::default()
3767        };
3768        let err = s.validate().unwrap_err();
3769        assert!(
3770            matches!(
3771                err,
3772                SupervisorError::ChildCaixaInvalid { ref caixa, ref reason }
3773                    if caixa == "team.worker" && reason.contains('.')
3774            ),
3775            "got {err:?}"
3776        );
3777    }
3778
3779    #[test]
3780    fn validate_rejects_child_caixa_with_leading_hyphen() {
3781        // DNS-1123 / DNS-1035 boundary rule: labels must start and end
3782        // with an alphanumeric. The K8s apiserver rejects `-worker`
3783        // outright; the renderer would emit a `metadata.name: "-worker"`
3784        // that fails admission far from the source caixa.lisp.
3785        let s = SupervisorSpec {
3786            children: vec![child("-worker", "^0.1", RestartPolicy::Permanent)],
3787            ..SupervisorSpec::default()
3788        };
3789        let err = s.validate().unwrap_err();
3790        assert!(
3791            matches!(
3792                err,
3793                SupervisorError::ChildCaixaInvalid { ref caixa, ref reason }
3794                    if caixa == "-worker" && reason.contains("start and end")
3795            ),
3796            "got {err:?}"
3797        );
3798    }
3799
3800    #[test]
3801    fn validate_rejects_child_caixa_with_trailing_hyphen() {
3802        // The symmetric arm of the boundary rule. Pin separately so
3803        // both ends of the label are covered against a future relaxation
3804        // that only checks one boundary.
3805        let s = SupervisorSpec {
3806            children: vec![child("worker-", "^0.1", RestartPolicy::Permanent)],
3807            ..SupervisorSpec::default()
3808        };
3809        let err = s.validate().unwrap_err();
3810        assert!(
3811            matches!(
3812                err,
3813                SupervisorError::ChildCaixaInvalid { ref caixa, .. }
3814                    if caixa == "worker-"
3815            ),
3816            "got {err:?}"
3817        );
3818    }
3819
3820    #[test]
3821    fn validate_rejects_child_caixa_with_unicode() {
3822        // DNS-1123 is ASCII-only; IDN must be pre-encoded as Punycode
3823        // (`xn--…`) by the author before it reaches K8s. The byte-by-
3824        // byte ASCII validity check rejects multi-byte UTF-8 sequences
3825        // by the first byte that fails the `[a-z0-9-]` predicate.
3826        let s = SupervisorSpec {
3827            children: vec![child("café", "^0.1", RestartPolicy::Permanent)],
3828            ..SupervisorSpec::default()
3829        };
3830        let err = s.validate().unwrap_err();
3831        assert!(
3832            matches!(
3833                err,
3834                SupervisorError::ChildCaixaInvalid { ref caixa, .. }
3835                    if caixa == "café"
3836            ),
3837            "got {err:?}"
3838        );
3839    }
3840
3841    #[test]
3842    fn validate_rejects_child_caixa_with_whitespace() {
3843        // Whitespace is the canonical "I pasted from a sketch / doc"
3844        // footgun. The apiserver rejects every `metadata.name` value
3845        // carrying whitespace; pin the gate fires at the right boundary.
3846        let s = SupervisorSpec {
3847            children: vec![child("my worker", "^0.1", RestartPolicy::Permanent)],
3848            ..SupervisorSpec::default()
3849        };
3850        let err = s.validate().unwrap_err();
3851        assert!(
3852            matches!(
3853                err,
3854                SupervisorError::ChildCaixaInvalid { ref caixa, .. }
3855                    if caixa == "my worker"
3856            ),
3857            "got {err:?}"
3858        );
3859    }
3860
3861    #[test]
3862    fn validate_rejects_child_caixa_too_long() {
3863        // The 64-byte boundary pin. DNS-1123 / DNS-1035 cap labels at
3864        // 63 bytes; the K8s apiserver rejects every `metadata.name`
3865        // axis over the limit at admission time. The diagnostic names
3866        // both the cap and the actual length so the author can shorten
3867        // in one edit, mirroring `rejects_membro_caixa_too_long`
3868        // (3f9d7a0) and `rejects_placement_cluster_too_long` (6cbb900).
3869        let too_long = "a".repeat(64);
3870        let s = SupervisorSpec {
3871            children: vec![child(&too_long, "^0.1", RestartPolicy::Permanent)],
3872            ..SupervisorSpec::default()
3873        };
3874        let err = s.validate().unwrap_err();
3875        let SupervisorError::ChildCaixaInvalid { caixa, reason } = err else {
3876            panic!("expected ChildCaixaInvalid, got other variant");
3877        };
3878        assert_eq!(caixa, too_long);
3879        assert!(
3880            reason.contains("63"),
3881            "diagnostic must name the 63-byte cap (got: {reason:?})"
3882        );
3883        assert!(
3884            reason.contains("64"),
3885            "diagnostic must name the actual length (got: {reason:?})"
3886        );
3887    }
3888
3889    #[test]
3890    fn child_caixa_max_length_validates() {
3891        // The 63-byte boundary control pin — exactly-at-the-cap is
3892        // accepted, mirroring `membro_caixa_max_length_validates`
3893        // (3f9d7a0) and `placement_cluster_max_length_validates`
3894        // (6cbb900). Pinned separately so a future off-by-one tightening
3895        // surfaces here.
3896        let max_label = "a".repeat(63);
3897        let s = SupervisorSpec {
3898            children: vec![child(&max_label, "^0.1", RestartPolicy::Permanent)],
3899            ..SupervisorSpec::default()
3900        };
3901        s.validate().unwrap();
3902    }
3903
3904    #[test]
3905    fn validate_accepts_canonical_child_caixa_forms() {
3906        // The realistic shapes a supervised child's `:caixa` carries —
3907        // single-word `worker`, version-suffixed `cache-v2`, single-char
3908        // `a`, two-char `db`, digit-start `2-pool`, longer hyphen-joined
3909        // `payment-retry`, all-digit `0`. Pin every leg so a future
3910        // tightening (e.g. requiring a leading lowercase letter) surfaces
3911        // here as a test failure. Mirrors `accepts_canonical_membro_caixa_forms`
3912        // (3f9d7a0) and `accepts_canonical_placement_cluster_forms`
3913        // (6cbb900).
3914        for form in [
3915            "worker",
3916            "cache-v2",
3917            "a",
3918            "db",
3919            "2-pool",
3920            "payment-retry",
3921            "0",
3922        ] {
3923            let s = SupervisorSpec {
3924                children: vec![child(form, "^0.1", RestartPolicy::Permanent)],
3925                ..SupervisorSpec::default()
3926            };
3927            s.validate()
3928                .unwrap_or_else(|e| panic!("canonical form {form:?} must validate, got {e:?}"));
3929        }
3930    }
3931
3932    #[test]
3933    fn child_caixa_empty_takes_precedence_over_invalid() {
3934        // Order pin: the existing `EmptyChildName` diagnostic (which
3935        // doesn't try to parse the DNS-1123 shape) fires before the new
3936        // `ChildCaixaInvalid` per-axis gate, so an empty `:caixa` keeps
3937        // its narrower error message — `is_dns_1123_label` would reject
3938        // the empty string too (boundary check on the first byte), but
3939        // the empty-string arm is the more self-locating diagnostic for
3940        // the author. Same ordering discipline as
3941        // `membro_caixa_empty_takes_precedence_over_invalid` in
3942        // aplicacao.rs.
3943        let s = SupervisorSpec {
3944            children: vec![child("", "^0.1", RestartPolicy::Permanent)],
3945            ..SupervisorSpec::default()
3946        };
3947        let err = s.validate().unwrap_err();
3948        assert_eq!(err, SupervisorError::EmptyChildName);
3949    }
3950
3951    #[test]
3952    fn child_caixa_invalid_fires_before_versao_check() {
3953        // Order pin: the per-axis shape gate runs inline before the
3954        // per-entry versao check, so a malformed `:caixa` on an entry
3955        // whose `:versao` would also fail surfaces the more self-
3956        // locating name-axis diagnostic first. Parallel to
3957        // `membro_versao_invalid_fires_before_duplicate_check` (9888b13)
3958        // and `placement_cluster_invalid_fires_before_duplicate_check`
3959        // (6cbb900).
3960        let s = SupervisorSpec {
3961            children: vec![child("My_Worker", "", RestartPolicy::Permanent)],
3962            ..SupervisorSpec::default()
3963        };
3964        let err = s.validate().unwrap_err();
3965        assert!(
3966            matches!(
3967                err,
3968                SupervisorError::ChildCaixaInvalid { ref caixa, .. } if caixa == "My_Worker"
3969            ),
3970            "got {err:?}"
3971        );
3972    }
3973
3974    #[test]
3975    fn child_caixa_invalid_fires_before_duplicate_check() {
3976        // Order pin: a malformed name on a non-duplicate entry surfaces
3977        // its own diagnostic, even when a later entry would otherwise
3978        // collapse onto an earlier name. The per-entry shape gate runs
3979        // inline before the duplicate-key HashSet insert, mirroring
3980        // `placement_cluster_invalid_fires_before_duplicate_check`
3981        // (6cbb900).
3982        let s = SupervisorSpec {
3983            children: vec![
3984                child("Worker", "^0.1", RestartPolicy::Permanent),
3985                child("cache", "^0.1", RestartPolicy::Transient),
3986                child("worker", "^0.2", RestartPolicy::Permanent), // would otherwise raise DuplicateChildCaixa
3987            ],
3988            ..SupervisorSpec::default()
3989        };
3990        let err = s.validate().unwrap_err();
3991        assert!(
3992            matches!(
3993                err,
3994                SupervisorError::ChildCaixaInvalid { ref caixa, .. } if caixa == "Worker"
3995            ),
3996            "got {err:?}"
3997        );
3998    }
3999
4000    #[test]
4001    fn child_caixa_invalid_diagnostic_carries_offending_caixa() {
4002        // The diagnostic-shape pin: the error names the offending
4003        // `:caixa` verbatim plus a non-empty parser-shaped `reason` so
4004        // the author can grep their caixa.lisp without re-running the
4005        // build. Mirrors the diagnostic-shape sweep on every prior
4006        // value-shape gate (3f9d7a0, 6cbb900, c7d05ec).
4007        let s = SupervisorSpec {
4008            children: vec![child("My_Worker", "^0.1", RestartPolicy::Permanent)],
4009            ..SupervisorSpec::default()
4010        };
4011        let err = s.validate().unwrap_err();
4012        let SupervisorError::ChildCaixaInvalid { caixa, reason } = err else {
4013            panic!("expected ChildCaixaInvalid, got other variant");
4014        };
4015        assert_eq!(caixa, "My_Worker");
4016        assert!(
4017            !reason.is_empty(),
4018            "ChildCaixaInvalid `reason` must carry the parser's wording verbatim"
4019        );
4020    }
4021
4022    // ── value-shape: zero restart_window + duplicate child names ──────────
4023
4024    #[test]
4025    fn validate_accepts_none_restart_window() {
4026        // Omitted `:restart-window` is the "never reset" sentinel —
4027        // valid by design. Mirrors :limits axes where None = unbounded.
4028        let s = SupervisorSpec {
4029            restart_window: None,
4030            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4031            ..SupervisorSpec::default()
4032        };
4033        s.validate().unwrap();
4034    }
4035
4036    #[test]
4037    fn validate_rejects_zero_restart_window() {
4038        // Same "0 means the opposite of what you think" footgun closed
4039        // for :politicas :timeout (Envoy treats 0s as infinite) and
4040        // :limits :wall-clock (wasmtime traps before the call starts).
4041        // Erlang/OTP's MaxIntensity/Period requires Period > 0.
4042        let s = SupervisorSpec {
4043            restart_window: Some(Duration::ZERO),
4044            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4045            ..SupervisorSpec::default()
4046        };
4047        assert_eq!(
4048            s.validate().unwrap_err(),
4049            SupervisorError::RestartWindowZero
4050        );
4051    }
4052
4053    // ── value-shape: integer-ms canonical-form on :restart-window ─────────
4054    //
4055    // The fourth (and last) typed-`Duration` axis in caixa-core to get
4056    // the integer-millisecond canonical-form gate — peer with
4057    // `:limits :wall-clock` (82fc3ef), `:politicas :timeout` (a4ae535),
4058    // and `:politicas :circuit-breaker :window` (a4ae535). The serde
4059    // path is already gated at the shared codec layer (see
4060    // `restart_window_serde_rejects_fractional_seconds`); this arm
4061    // closes the programmatic-struct-literal path the codec gate can't
4062    // see.
4063
4064    #[test]
4065    fn validate_rejects_sub_millisecond_restart_window() {
4066        // The fail-before-pass-after pin: a programmatic
4067        // `Duration::from_micros(1500)` (= 1_500_000 ns) silently passed
4068        // `validate` on every pre-gate codebase, then truncated to
4069        // `as_millis() == 1` on first serialize — the shared codec
4070        // emits `"1ms"`, parses it back to `Duration::from_millis(1)` =
4071        // 1_000_000 ns, the typed `restart_window` no longer matches
4072        // its rendered form.
4073        let s = SupervisorSpec {
4074            restart_window: Some(Duration::from_micros(1500)),
4075            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4076            ..SupervisorSpec::default()
4077        };
4078        match s.validate().unwrap_err() {
4079            SupervisorError::RestartWindowNotCanonical { window } => {
4080                assert_eq!(window, Duration::from_micros(1500));
4081            }
4082            other => panic!("expected RestartWindowNotCanonical, got {other:?}"),
4083        }
4084    }
4085
4086    #[test]
4087    fn validate_rejects_one_nanosecond_restart_window() {
4088        // The far-sub-ms case: `Duration::from_nanos(1)` is non-zero
4089        // (so `RestartWindowZero` doesn't fire) but `as_millis() == 0`,
4090        // so the shared codec emits the literal `"0s"` — the next
4091        // serde round-trip would parse back to `Duration::ZERO`, which
4092        // the `RestartWindowZero` arm then rejects on re-validate. The
4093        // canonical-form gate at this layer surfaces a self-locating
4094        // diagnostic naming the offending Duration verbatim rather
4095        // than a downstream `RestartWindowZero` whose remediation
4096        // points at omitting the slot.
4097        let s = SupervisorSpec {
4098            restart_window: Some(Duration::from_nanos(1)),
4099            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4100            ..SupervisorSpec::default()
4101        };
4102        match s.validate().unwrap_err() {
4103            SupervisorError::RestartWindowNotCanonical { window } => {
4104                assert_eq!(window, Duration::from_nanos(1));
4105            }
4106            other => panic!("expected RestartWindowNotCanonical, got {other:?}"),
4107        }
4108    }
4109
4110    #[test]
4111    fn validate_rejects_nanosecond_past_canonical_boundary_restart_window() {
4112        // The 1-ns-past-1ms boundary case: a `Duration` carrying
4113        // 1_000_001 ns is structurally past the integer-ms granularity
4114        // floor — `subsec_nanos() % 1_000_000 == 1`. The codec round-
4115        // trip would truncate to `1ms` and the consumer would observe
4116        // a 1-ns drift on every emit. Same boundary the peer
4117        // `validate_rejects_nanosecond_past_canonical_boundary` test
4118        // in limits.rs pins for the `:limits :wall-clock` axis.
4119        let w = Duration::from_nanos(1_000_001);
4120        let s = SupervisorSpec {
4121            restart_window: Some(w),
4122            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4123            ..SupervisorSpec::default()
4124        };
4125        assert_eq!(
4126            s.validate().unwrap_err(),
4127            SupervisorError::RestartWindowNotCanonical { window: w }
4128        );
4129    }
4130
4131    #[test]
4132    fn validate_accepts_integer_millisecond_restart_window_values() {
4133        // The positive-control sweep: every `Duration` the shared
4134        // codec can round-trip losslessly — the canonical
4135        // `<integer>{ms,s,m,h}` set the codec's `render` / `parse`
4136        // pair emits and accepts — passes `validate` without
4137        // surfacing the new canonical-form arm. Mirrors
4138        // `validate_accepts_integer_millisecond_wall_clock_values` on
4139        // the sibling `:limits :wall-clock` axis.
4140        for w in [
4141            Duration::from_millis(1),
4142            Duration::from_millis(500),
4143            Duration::from_millis(1500),
4144            Duration::from_secs(1),
4145            Duration::from_secs(30),
4146            Duration::from_secs(60),
4147            Duration::from_secs(120),
4148            Duration::from_secs(3600),
4149        ] {
4150            let s = SupervisorSpec {
4151                restart_window: Some(w),
4152                children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4153                ..SupervisorSpec::default()
4154            };
4155            s.validate()
4156                .unwrap_or_else(|e| panic!("integer-ms {w:?} must validate, got {e:?}"));
4157        }
4158    }
4159
4160    #[test]
4161    fn validate_restart_window_zero_takes_precedence_over_canonical_gate() {
4162        // Cross-arm ordering pin: `Duration::ZERO` has
4163        // `subsec_nanos() == 0` and would otherwise pass the
4164        // canonical-form arm — the zero-floor arm must fire first so
4165        // the more self-locating `RestartWindowZero` diagnostic (with
4166        // its omit-axis remediation directly named) leads. Same
4167        // posture every peer zero-then-shape gate uses
4168        // (`WallClockZero` → `WallClockNotCanonical`,
4169        // `PolicyTimeoutZero` → `PolicyTimeoutNotCanonical`,
4170        // `PolicyBreakerZeroWindow` → `PolicyBreakerWindowNotCanonical`).
4171        let s = SupervisorSpec {
4172            restart_window: Some(Duration::ZERO),
4173            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4174            ..SupervisorSpec::default()
4175        };
4176        assert_eq!(
4177            s.validate().unwrap_err(),
4178            SupervisorError::RestartWindowZero
4179        );
4180    }
4181
4182    #[test]
4183    fn restart_window_canonical_diagnostic_carries_offending_duration() {
4184        // Diagnostic-shape pin: the canonical-form arm names the
4185        // offending `Duration` verbatim so the author's grep lands on
4186        // the field's value, not a generic "duration not canonical"
4187        // message. Same shape every other typed-canonical-form arm
4188        // on this surface carries (`WallClockNotCanonical` carries
4189        // the offending `Duration` verbatim,
4190        // `PolicyTimeoutNotCanonical` carries the offending
4191        // `Duration` verbatim).
4192        let w = Duration::from_micros(500);
4193        let s = SupervisorSpec {
4194            restart_window: Some(w),
4195            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4196            ..SupervisorSpec::default()
4197        };
4198        let err = s.validate().unwrap_err();
4199        let msg = err.to_string();
4200        assert!(
4201            msg.contains("500"),
4202            "diagnostic must carry the offending magnitude verbatim (got {msg:?})"
4203        );
4204        assert!(
4205            msg.contains("sub-millisecond"),
4206            "diagnostic must name the sub-millisecond residue class (got {msg:?})"
4207        );
4208    }
4209
4210    #[test]
4211    fn restart_window_validated_value_round_trips_through_codec() {
4212        // The structural property the canonical-ms gate enforces:
4213        // every `SupervisorSpec::restart_window` past
4214        // `SupervisorSpec::validate` round-trips losslessly through
4215        // the shared duration codec (serialize → string →
4216        // deserialize → equal value). Pin this end-to-end so a future
4217        // change to either side (the validate gate's accepted
4218        // granularity, the codec's parse/render unit set) that breaks
4219        // the alignment surfaces here. Peer of
4220        // `wall_clock_validated_value_round_trips_through_codec` on
4221        // the sibling `:limits :wall-clock` axis.
4222        for w in [
4223            Duration::from_millis(1),
4224            Duration::from_millis(1500),
4225            Duration::from_secs(30),
4226            Duration::from_secs(3600),
4227        ] {
4228            let s = SupervisorSpec {
4229                restart_window: Some(w),
4230                children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4231                ..SupervisorSpec::default()
4232            };
4233            s.validate().unwrap();
4234            let json = serde_json::to_string(&s).unwrap();
4235            let back: SupervisorSpec = serde_json::from_str(&json).unwrap();
4236            assert_eq!(back.restart_window, Some(w));
4237        }
4238    }
4239
4240    // ── value-shape: upper cap on :restart-window ─────────────────────────
4241    //
4242    // The fourth (and last) typed-`Duration` axis in caixa-core to get
4243    // the 1h upper cap — peer with `:limits :wall-clock` (51e0dbd),
4244    // `:politicas :timeout` (2e8ee7e), and `:politicas
4245    // :circuit-breaker :window` (379a814). Brackets the typed
4246    // `:restart-window` axis structurally: every validated value lies
4247    // in `1ms..=SUPERVISOR_RESTART_WINDOW_MAX`, integer-millisecond
4248    // granularity, closing the
4249    // rolling-window-degenerates-to-lifetime-counter footgun the prior
4250    // zero-floor-and-canonical-form-only checks left open.
4251
4252    #[test]
4253    fn validate_rejects_restart_window_above_cap() {
4254        // The fail-before-pass-after pin: 3601s = 1h + 1s is
4255        // structurally one canonical-tick past the
4256        // [`SUPERVISOR_RESTART_WINDOW_MAX`] ceiling (1h = 3600s) — an
4257        // integer-millisecond magnitude the canonical-form arm above
4258        // accepts cleanly, that the shared duration codec round-trips
4259        // losslessly as `"3601s"`, and that silently passed validate on
4260        // every pre-gate codebase because the typed slot's only checks
4261        // were the zero-floor and canonical-form arms. The runtime
4262        // substrate consuming the value (Erlang/OTP's MaxIntensity/
4263        // Period reconciler, the future wasm-operator's per-supervisor
4264        // restart-intensity counter) reaches for a `Duration` so long
4265        // no realistic restart-recovery pattern resets the counter,
4266        // far from the source caixa.lisp.
4267        let w = SUPERVISOR_RESTART_WINDOW_MAX + Duration::from_secs(1);
4268        let s = SupervisorSpec {
4269            restart_window: Some(w),
4270            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4271            ..SupervisorSpec::default()
4272        };
4273        assert_eq!(
4274            s.validate().unwrap_err(),
4275            SupervisorError::RestartWindowExceedsCap { window: w }
4276        );
4277    }
4278
4279    #[test]
4280    fn validate_rejects_restart_window_one_millisecond_above_cap() {
4281        // Boundary case: exactly 1ms past the cap (the granularity the
4282        // canonical-form gate enforces). Catches a future "strictly
4283        // less than" half-measure and pins the diagnostic to name the
4284        // offending `Duration` verbatim. Peer of
4285        // `validate_rejects_wall_clock_one_millisecond_above_cap` /
4286        // `rejects_policy_timeout_one_millisecond_above_cap` /
4287        // `rejects_circuit_breaker_window_one_millisecond_above_cap`
4288        // on the sibling typed-`Duration` axes' top edges.
4289        let w = SUPERVISOR_RESTART_WINDOW_MAX + Duration::from_millis(1);
4290        let s = SupervisorSpec {
4291            restart_window: Some(w),
4292            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4293            ..SupervisorSpec::default()
4294        };
4295        assert_eq!(
4296            s.validate().unwrap_err(),
4297            SupervisorError::RestartWindowExceedsCap { window: w }
4298        );
4299    }
4300
4301    #[test]
4302    fn validate_rejects_restart_window_far_above_cap() {
4303        // The "obvious authoring footgun" case: a `(:restart-window "24h")`,
4304        // `(:restart-window "7d")`, or any "I want a lifetime counter
4305        // but wrote a `<integer>h` magnitude anyway" typo — values the
4306        // canonical-form arm accepts as integer-millisecond magnitudes,
4307        // the codec round-trips losslessly through serde, but the
4308        // operator's `MaxIntensity / Period` reconciler cannot honor
4309        // as a meaningful rolling window. Until this gate landed
4310        // validate accepted them. Pin the common above-cap values (24h,
4311        // 7d, ~11.5d) so a future relaxation that drops the upper bound
4312        // surfaces here.
4313        for w in [
4314            Duration::from_secs(86_400),    // 24h
4315            Duration::from_secs(604_800),   // 7d
4316            Duration::from_secs(1_000_000), // ~11.5 days
4317        ] {
4318            let s = SupervisorSpec {
4319                restart_window: Some(w),
4320                children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4321                ..SupervisorSpec::default()
4322            };
4323            assert_eq!(
4324                s.validate().unwrap_err(),
4325                SupervisorError::RestartWindowExceedsCap { window: w }
4326            );
4327        }
4328    }
4329
4330    #[test]
4331    fn validate_accepts_restart_window_at_cap() {
4332        // The boundary value — exactly [`SUPERVISOR_RESTART_WINDOW_MAX`]
4333        // (1h) — must validate. The cap is inclusive on the top edge,
4334        // matching the [`crate::LIMITS_WALL_CLOCK_MAX`] /
4335        // [`crate::POLICY_TIMEOUT_MAX`] /
4336        // [`crate::POLICY_BREAKER_WINDOW_MAX`] discipline on the sibling
4337        // capped axes. Pin the boundary explicitly so a future
4338        // off-by-one tightening (`>= SUPERVISOR_RESTART_WINDOW_MAX`
4339        // instead of `>`) surfaces here as a test failure rather than a
4340        // silent contract narrowing.
4341        let s = SupervisorSpec {
4342            restart_window: Some(SUPERVISOR_RESTART_WINDOW_MAX),
4343            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4344            ..SupervisorSpec::default()
4345        };
4346        s.validate()
4347            .expect("restart_window == SUPERVISOR_RESTART_WINDOW_MAX must validate");
4348    }
4349
4350    #[test]
4351    fn validate_accepts_restart_window_typical_values() {
4352        // The documented Erlang/OTP / Elixir / Riak Core / RabbitMQ
4353        // per-supervisor production-playbook band positive-control
4354        // sweep — every value Learn You Some Erlang's `{intensity, 5,
4355        // 60}` worker-supervisor `Period = 60s` default, Elixir's
4356        // `Supervisor` `max_seconds: 5` default, OTP's `supervisor`
4357        // callback module `MaxT = 5..=60` typical, Riak Core's `MaxT ∈
4358        // 10s..=300s`, and RabbitMQ broker-supervisor `MaxT = 5s`
4359        // default recommend (5s..=300s) must pass, plus a sweep
4360        // through the long-tail-flaky-pool band (5m, 15m, 30m, 1h) the
4361        // cap accepts. Mirrors `validate_accepts_wall_clock_typical_values`
4362        // on the sibling `:limits :wall-clock` axis.
4363        for w in [
4364            Duration::from_millis(1),
4365            Duration::from_millis(500),
4366            Duration::from_secs(1),
4367            Duration::from_secs(5),  // RabbitMQ broker-supervisor default
4368            Duration::from_secs(10), // Riak Core lower
4369            Duration::from_secs(30),
4370            Duration::from_secs(60),  // Learn You Some Erlang default
4371            Duration::from_secs(120), // OTP supervisor MaxT typical
4372            Duration::from_secs(300), // Riak Core upper
4373            Duration::from_secs(900), // 15m
4374            Duration::from_secs(1800),
4375            Duration::from_secs(3600), // exactly 1h, the cap
4376        ] {
4377            let s = SupervisorSpec {
4378                restart_window: Some(w),
4379                children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4380                ..SupervisorSpec::default()
4381            };
4382            s.validate()
4383                .unwrap_or_else(|e| panic!("restart_window={w:?} must validate; got {e:?}"));
4384        }
4385    }
4386
4387    #[test]
4388    fn restart_window_zero_takes_precedence_over_cap() {
4389        // The cross-arm ordering pin: `Duration::ZERO` is structurally
4390        // outside both `>= 1ms` (zero-floor) and `<=
4391        // SUPERVISOR_RESTART_WINDOW_MAX` (cap), but the zero-floor
4392        // diagnostic is the more self-locating one (it directly names
4393        // the omit-axis remediation), so the validate gate must fire
4394        // on zero first. Same shape every other zero-then-cap ordering
4395        // on this surface uses (`WallClockZero` then
4396        // `WallClockExceedsCap`, `PolicyTimeoutZero` then
4397        // `PolicyTimeoutExceedsCap`, `PolicyBreakerZeroWindow` then
4398        // `PolicyBreakerWindowExceedsCap`).
4399        let s = SupervisorSpec {
4400            restart_window: Some(Duration::ZERO),
4401            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4402            ..SupervisorSpec::default()
4403        };
4404        assert_eq!(
4405            s.validate().unwrap_err(),
4406            SupervisorError::RestartWindowZero,
4407            "Duration::ZERO must surface the zero-floor diagnostic, not the cap diagnostic"
4408        );
4409    }
4410
4411    #[test]
4412    fn restart_window_canonical_takes_precedence_over_cap() {
4413        // The cross-arm ordering pin: a `Duration` that is *both*
4414        // sub-millisecond (non-canonical-form) and structurally above
4415        // the cap surfaces the canonical-form diagnostic first,
4416        // because the round-trip-shape break is the more fundamental
4417        // issue (the value can't even round-trip through the codec,
4418        // so the cap diagnostic naming `1ms..=1h` would be misleading
4419        // — there's no integer-ms form of the offending value). Pin
4420        // the order so a future refactor that reorders the arms
4421        // surfaces here as a test failure rather than a silent
4422        // diagnostic regression. Peer of
4423        // `wall_clock_canonical_takes_precedence_over_cap` /
4424        // `policy_timeout_canonical_takes_precedence_over_cap`.
4425        let w = SUPERVISOR_RESTART_WINDOW_MAX + Duration::from_nanos(1);
4426        let s = SupervisorSpec {
4427            restart_window: Some(w),
4428            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4429            ..SupervisorSpec::default()
4430        };
4431        assert_eq!(
4432            s.validate().unwrap_err(),
4433            SupervisorError::RestartWindowNotCanonical { window: w },
4434            "sub-ms above-cap value must surface the canonical-form diagnostic, not the cap diagnostic"
4435        );
4436    }
4437
4438    #[test]
4439    fn max_restarts_cap_takes_precedence_over_restart_window_cap() {
4440        // The cross-arm ordering pin between the `:max-restarts` cap
4441        // and the sibling `:restart-window` cap. A supervisor carrying
4442        // both an over-cap `max_restarts` AND an over-cap window must
4443        // surface the `MaxRestartsExceedsCap` diagnostic first — the
4444        // cap arm is wired immediately after the zero-restart arm and
4445        // strictly before every window-axis arm (zero / canonical /
4446        // cap), so the offending value the diagnostic names matches
4447        // the order the author would discover the gates by reading
4448        // top-to-bottom through `SupervisorSpec::validate`. Pin the
4449        // order so a future refactor that reorders the arms surfaces
4450        // here as a test failure rather than a silent diagnostic
4451        // regression. Peer of
4452        // `max_restarts_cap_takes_precedence_over_restart_window_gates`
4453        // on the sibling zero / canonical window arms.
4454        let w = SUPERVISOR_RESTART_WINDOW_MAX + Duration::from_secs(1);
4455        let s = SupervisorSpec {
4456            max_restarts: SUPERVISOR_MAX_RESTARTS_MAX + 1,
4457            restart_window: Some(w),
4458            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4459            ..SupervisorSpec::default()
4460        };
4461        assert_eq!(
4462            s.validate().unwrap_err(),
4463            SupervisorError::MaxRestartsExceedsCap {
4464                max_restarts: SUPERVISOR_MAX_RESTARTS_MAX + 1,
4465            },
4466            "over-cap max_restarts must surface the cap diagnostic before any window-axis diagnostic"
4467        );
4468    }
4469
4470    #[test]
4471    fn restart_window_cap_diagnostic_carries_offending_value() {
4472        // The diagnostic-shape pin: the offending `Duration` is
4473        // carried verbatim into the
4474        // [`SupervisorError::RestartWindowExceedsCap`] variant so the
4475        // surfaced error message names the value the author wrote,
4476        // not just the cap. Same self-locating diagnostic shape every
4477        // other typed-cap arm on this surface carries
4478        // (`WallClockExceedsCap` carries the offending `Duration`
4479        // verbatim, `PolicyTimeoutExceedsCap` carries the offending
4480        // `Duration` verbatim, `PolicyBreakerWindowExceedsCap` carries
4481        // the offending `Duration` verbatim).
4482        let w = Duration::from_secs(7200); // 2h
4483        let s = SupervisorSpec {
4484            restart_window: Some(w),
4485            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4486            ..SupervisorSpec::default()
4487        };
4488        let err = s.validate().unwrap_err();
4489        assert!(
4490            matches!(err, SupervisorError::RestartWindowExceedsCap { window } if window == w),
4491            "got {err:?}"
4492        );
4493        let msg = err.to_string();
4494        assert!(
4495            msg.contains("7200"),
4496            ":supervisor :restart-window cap diagnostic must carry the offending value verbatim (got: {msg})"
4497        );
4498    }
4499
4500    #[test]
4501    fn supervisor_restart_window_cap_pins_canonical_value() {
4502        // The SUPERVISOR_RESTART_WINDOW_MAX constant pins the value at
4503        // exactly 1 hour (3600s = 3_600_000ms) — the largest unit the
4504        // shared duration codec emits as a clean canonical string
4505        // (`"<n>h"`). Pinning the literal value here surfaces a future
4506        // drift (a relaxation to 24h, a tightening to 5m) as a
4507        // deliberate test edit, not a silent contract narrowing.
4508        //
4509        // The four typed-`Duration` caps on the validation surface
4510        // (`LIMITS_WALL_CLOCK_MAX` per-process, `POLICY_TIMEOUT_MAX`
4511        // per-edge, `POLICY_BREAKER_WINDOW_MAX` per-breaker,
4512        // `SUPERVISOR_RESTART_WINDOW_MAX` per-supervisor) share a
4513        // single uniform top edge at the codec's largest emitted unit
4514        // — a structural-property invariant the equality assertions
4515        // here enshrine, so a future drift on any of the four
4516        // surfaces as a deliberate test edit. Same shape every other
4517        // typed-cap value pin uses
4518        // (`wall_clock_cap_pins_canonical_value`,
4519        // `policy_timeout_cap_pins_canonical_value`,
4520        // `circuit_breaker_window_cap_pins_canonical_value`).
4521        assert_eq!(SUPERVISOR_RESTART_WINDOW_MAX, Duration::from_secs(3600));
4522        assert_eq!(SUPERVISOR_RESTART_WINDOW_MAX.as_millis(), 3_600_000);
4523        assert_eq!(SUPERVISOR_RESTART_WINDOW_MAX, crate::LIMITS_WALL_CLOCK_MAX);
4524        assert_eq!(SUPERVISOR_RESTART_WINDOW_MAX, crate::POLICY_TIMEOUT_MAX);
4525        assert_eq!(
4526            SUPERVISOR_RESTART_WINDOW_MAX,
4527            crate::POLICY_BREAKER_WINDOW_MAX
4528        );
4529    }
4530
4531    #[test]
4532    fn restart_window_cap_value_round_trips_through_codec() {
4533        // The codec round-trip property the cap arm preserves: the
4534        // [`SUPERVISOR_RESTART_WINDOW_MAX`] constant itself round-trips
4535        // through the shared duration codec — every value at the cap
4536        // serializes to the canonical `"1h"` form and parses back
4537        // identically. Pin the round-trip so a future change to the
4538        // codec's unit set or to the cap's magnitude that breaks the
4539        // round-trip property surfaces here. Peer of
4540        // `wall_clock_cap_value_round_trips_through_codec` on the
4541        // sibling `:limits :wall-clock` axis.
4542        let s = SupervisorSpec {
4543            restart_window: Some(SUPERVISOR_RESTART_WINDOW_MAX),
4544            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4545            ..SupervisorSpec::default()
4546        };
4547        s.validate().unwrap();
4548        let json = serde_json::to_string(&s).unwrap();
4549        assert!(
4550            json.contains("\"1h\""),
4551            "SUPERVISOR_RESTART_WINDOW_MAX must serialize to the canonical `\"1h\"` form (got {json})"
4552        );
4553        let back: SupervisorSpec = serde_json::from_str(&json).unwrap();
4554        assert_eq!(back.restart_window, Some(SUPERVISOR_RESTART_WINDOW_MAX));
4555    }
4556
4557    #[test]
4558    fn validate_rejects_duplicate_child_caixa() {
4559        // Two children with the same :caixa render to two ComputeUnits
4560        // with the same name in the cluster's HelmRelease values —
4561        // one silently overwrites the other. Erlang/OTP's child_spec.id
4562        // is required-unique per supervisor; same set-not-multiset
4563        // discipline applied here as for :membros / :placement
4564        // :clusters / :entrada :paths.
4565        let s = SupervisorSpec {
4566            children: vec![
4567                child("worker", "^0.1", RestartPolicy::Permanent),
4568                child("cache", "^0.1", RestartPolicy::Transient),
4569                child("worker", "^0.2", RestartPolicy::Permanent),
4570            ],
4571            ..SupervisorSpec::default()
4572        };
4573        let err = s.validate().unwrap_err();
4574        assert!(
4575            matches!(err, SupervisorError::DuplicateChildCaixa { ref caixa } if caixa == "worker"),
4576            "got {err:?}"
4577        );
4578    }
4579
4580    #[test]
4581    fn validate_duplicate_child_diagnostic_names_first_collision() {
4582        // Iteration walks the :children list in declaration order —
4583        // the diagnostic names the first repeat, deterministically,
4584        // even when multiple names duplicate.
4585        let s = SupervisorSpec {
4586            children: vec![
4587                child("a", "^0.1", RestartPolicy::Permanent),
4588                child("b", "^0.1", RestartPolicy::Permanent),
4589                child("a", "^0.1", RestartPolicy::Permanent),
4590                child("b", "^0.1", RestartPolicy::Permanent),
4591            ],
4592            ..SupervisorSpec::default()
4593        };
4594        let err = s.validate().unwrap_err();
4595        assert!(
4596            matches!(err, SupervisorError::DuplicateChildCaixa { ref caixa } if caixa == "a"),
4597            "got {err:?}"
4598        );
4599    }
4600
4601    // ── self-supervision cross-slot gate ──────────────────────────
4602
4603    #[test]
4604    fn validate_no_self_supervision_rejects_self_referential_child() {
4605        // A supervisor whose `:children` lists its own `:nome` is a
4606        // one-node reconciliation cycle — rejected, naming the parent.
4607        let children = vec![
4608            child("worker", "^0.1", RestartPolicy::Permanent),
4609            child("orquestra", "^0.1", RestartPolicy::Permanent),
4610        ];
4611        let err = validate_no_self_supervision(&children, "orquestra").unwrap_err();
4612        assert!(
4613            matches!(err, SupervisorError::ChildSupervisesSelf { ref caixa } if caixa == "orquestra"),
4614            "got {err:?}"
4615        );
4616    }
4617
4618    #[test]
4619    fn validate_no_self_supervision_accepts_distinct_children() {
4620        // Positive control: distinct child names (including a child that
4621        // is itself a supervisor — nested trees are valid OTP) pass.
4622        let children = vec![
4623            child("worker", "^0.1", RestartPolicy::Permanent),
4624            child("sub-tree", "^0.1", RestartPolicy::Permanent),
4625        ];
4626        validate_no_self_supervision(&children, "orquestra").unwrap();
4627    }
4628
4629    #[test]
4630    fn validate_no_self_supervision_empty_children_is_ok() {
4631        // SimpleOneForOne / no-static-children supervisors have nothing
4632        // to self-reference — the gate is vacuously satisfied.
4633        validate_no_self_supervision(&[], "orquestra").unwrap();
4634    }
4635
4636    #[test]
4637    fn validate_simple_one_for_one_skips_uniqueness_check() {
4638        // SimpleOneForOne supervisors carry no static children — the
4639        // duplicate-child loop never runs. A zero-window declaration
4640        // on a SimpleOneForOne supervisor still trips the window check
4641        // (window applies to dynamic children too).
4642        let s = SupervisorSpec {
4643            estrategia: RestartStrategy::SimpleOneForOne,
4644            restart_window: None,
4645            children: vec![],
4646            ..SupervisorSpec::default()
4647        };
4648        s.validate().unwrap();
4649        let s_zero = SupervisorSpec {
4650            estrategia: RestartStrategy::SimpleOneForOne,
4651            restart_window: Some(Duration::ZERO),
4652            children: vec![],
4653            ..SupervisorSpec::default()
4654        };
4655        assert_eq!(
4656            s_zero.validate().unwrap_err(),
4657            SupervisorError::RestartWindowZero
4658        );
4659    }
4660
4661    #[test]
4662    fn validate_zero_window_runs_after_max_restarts_check() {
4663        // Pin the order: max_restarts == 0 fires before
4664        // restart_window == 0s, so an author with both wrong sees the
4665        // counter-axis diagnostic first (matches the order in the
4666        // struct and in the doc comment).
4667        let s = SupervisorSpec {
4668            max_restarts: 0,
4669            restart_window: Some(Duration::ZERO),
4670            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4671            ..SupervisorSpec::default()
4672        };
4673        assert_eq!(s.validate().unwrap_err(), SupervisorError::ZeroMaxRestarts);
4674    }
4675
4676    #[test]
4677    fn round_trip_all_strategies() {
4678        for &strat in RestartStrategy::ALL {
4679            // Route the `SimpleOneForOne ↔ non-SimpleOneForOne` fixture-
4680            // shape partition through the [`gen_platform::IsVariant`]
4681            // derive-generated [`RestartStrategy::is_simple_one_for_one`]
4682            // predicate rather than the raw
4683            // `matches!(strat, RestartStrategy::SimpleOneForOne)`
4684            // open-coded pattern-match — same closed-set-typed-enum
4685            // arm-discriminator dispatch discipline the sibling
4686            // [`crate::upgrade::UpgradeInstruction::is_restart`] convergence
4687            // (915a934) extended onto its two paired positive / negated
4688            // `matches!` filter sites, and the sibling
4689            // [`crate::aplicacao::PlacementStrategy`] `IsVariant`-derived
4690            // predicate convergence (766ec63) extended onto the M3 mesh-
4691            // slot per-`:placement` distribution-strategy `matches!`
4692            // discriminator axis. See the sibling
4693            // `supervisor_spec_estrategia_returns_estrategia_verbatim_across_permutations`
4694            // fixture and the peer `manifest::tests::
4695            // caixa_estrategia_and_supervisor_view_reads_through_lifted_estrategia_accessor`
4696            // fixture — all three sites (the last unlifted
4697            // `matches!`-based arm-discriminator axis on the OTP-shape
4698            // supervisor sibling-restart-strategy closed-set typed enum,
4699            // acknowledged in 915a934's Prior-commits footnote as the
4700            // outstanding follow-up) now consult one typed dispatch on
4701            // the substrate primitive.
4702            let s = SupervisorSpec {
4703                estrategia: strat,
4704                children: if strat.is_simple_one_for_one() {
4705                    vec![]
4706                } else {
4707                    vec![child("w", "^0.1", RestartPolicy::Permanent)]
4708                },
4709                ..SupervisorSpec::default()
4710            };
4711            let json = serde_json::to_string(&s).unwrap();
4712            let back: SupervisorSpec = serde_json::from_str(&json).unwrap();
4713            assert_eq!(s, back);
4714        }
4715    }
4716
4717    #[test]
4718    fn round_trip_all_restart_policies() {
4719        for policy in [
4720            RestartPolicy::Permanent,
4721            RestartPolicy::Temporary,
4722            RestartPolicy::Transient,
4723        ] {
4724            let c = child("w", "^0.1", policy);
4725            let json = serde_json::to_string(&c).unwrap();
4726            let back: ChildSpec = serde_json::from_str(&json).unwrap();
4727            assert_eq!(c, back);
4728        }
4729    }
4730
4731    #[test]
4732    fn restart_strategy_is_simple_one_for_one_predicate_partitions_the_arm_set() {
4733        // The fail-before-pass-after pin on the `gen_platform::IsVariant`
4734        // derive's [`RestartStrategy::is_simple_one_for_one`] arm-
4735        // discriminator predicate: [`RestartStrategy::SimpleOneForOne`]
4736        // is the only variant that satisfies `.is_simple_one_for_one()`;
4737        // every static-children-bearing arm (`OneForOne` / `OneForAll`
4738        // / `RestForOne`) returns `false`. This pin makes the partition
4739        // invariant load-bearing at caixa-core test time so a future
4740        // derive regression (a hole that returns `false` for
4741        // `SimpleOneForOne` too, or a byte-collision that flips a second
4742        // variant to `true`) trips here rather than laundering the arm
4743        // at the three test-fixture builder sites (a hole flips the
4744        // `SimpleOneForOne` fixture to carry a non-empty children list
4745        // and the subsequent `SupervisorSpec::validate` would refuse the
4746        // fixture with [`SupervisorError::SimpleOneForOneWithStaticChildren`];
4747        // a collision flips a peer strategy's fixture to carry an empty
4748        // children list and the subsequent `validate` would refuse with
4749        // [`SupervisorError::NoChildren`] — either way, the pin fires
4750        // here, at the derive site, rather than at the fixture-refusal
4751        // site far away). Peer of the sibling
4752        // [`crate::upgrade::tests::upgrade_instruction_is_restart_predicate_partitions_the_arm_set`]
4753        // (915a934) pin on the M2 OTP-appup axis and the sibling
4754        // [`crate::kind::tests::caixa_kind_is_variant_predicates_partition_the_arm_set`]
4755        // pin on the M0 `:kind` axis.
4756        let cases: &[(RestartStrategy, bool)] = &[
4757            (RestartStrategy::OneForOne, false),
4758            (RestartStrategy::OneForAll, false),
4759            (RestartStrategy::RestForOne, false),
4760            (RestartStrategy::SimpleOneForOne, true),
4761        ];
4762        for (variant, expected) in cases {
4763            assert_eq!(
4764                variant.is_simple_one_for_one(),
4765                *expected,
4766                "RestartStrategy::{variant:?}.is_simple_one_for_one() must \
4767                 return {expected} (partition invariant on the \
4768                 IsVariant-derived arm-discriminator predicate — every \
4769                 test-fixture site that partitions the `:children` slot \
4770                 shape on `SimpleOneForOne ↔ non-SimpleOneForOne` keys \
4771                 off this typed dispatch, so a derive regression must \
4772                 surface here rather than at the fixture-refusal site)"
4773            );
4774        }
4775    }
4776
4777    #[test]
4778    fn restart_strategy_fixture_partition_routes_through_is_simple_one_for_one_predicate() {
4779        // Byte-identity pin on the `SimpleOneForOne ↔ non-SimpleOneForOne`
4780        // fixture-shape partition against the pre-lift
4781        // `matches!(strat, RestartStrategy::SimpleOneForOne)` open-coded
4782        // pattern-match every test-fixture builder site previously
4783        // coupled to inline. Asserts the two projections agree byte-for-
4784        // byte on every arm of the enum, so a future derive regression
4785        // that flipped either predicate's arm-set would surface here at
4786        // caixa-core test time rather than at the three fixture-builder
4787        // sites (`supervisor::tests::round_trip_all_strategies`,
4788        // `supervisor::tests::supervisor_spec_estrategia_returns_estrategia_verbatim_across_permutations`,
4789        // `manifest::tests::caixa_estrategia_and_supervisor_view_reads_through_lifted_estrategia_accessor`)
4790        // far from the derive site. Same peer-shape byte-identity pin
4791        // every sibling `IsVariant`-derive-routed convergence carries on
4792        // the substrate's closed-set typed-enum surface (peer of
4793        // [`crate::upgrade::tests::validate_restart_exclusive_routes_through_is_restart_predicate`]
4794        // on the M2 OTP-appup axis).
4795        for &strat in RestartStrategy::ALL {
4796            let via_predicate = strat.is_simple_one_for_one();
4797            let via_matches = matches!(strat, RestartStrategy::SimpleOneForOne);
4798            assert_eq!(
4799                via_predicate, via_matches,
4800                "RestartStrategy::{strat:?}: is_simple_one_for_one() must \
4801                 byte-equal matches!(_, RestartStrategy::SimpleOneForOne) — \
4802                 the pre-lift open-coded pattern and the \
4803                 IsVariant-derived predicate are the same axis, \
4804                 one typed dispatch"
4805            );
4806        }
4807    }
4808
4809    #[test]
4810    fn duration_codec_round_trip_canonical_units() {
4811        // Note the canonical-form rule: durations serialize to the
4812        // *largest* unit that divides cleanly, so 60s ↔ "1m" and not
4813        // "60s" — but the round-trip preserves the underlying Duration.
4814        let cases = [
4815            ("30s", Duration::from_secs(30)),
4816            ("5m", Duration::from_secs(300)),
4817            ("1h", Duration::from_secs(3600)),
4818            ("500ms", Duration::from_millis(500)),
4819        ];
4820        for (lit, dur) in cases {
4821            let s = SupervisorSpec {
4822                children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4823                restart_window: Some(dur),
4824                ..SupervisorSpec::default()
4825            };
4826            let json = serde_json::to_string(&s).unwrap();
4827            assert!(
4828                json.contains(&format!("\"{lit}\"")),
4829                "expected \"{lit}\" in {json}"
4830            );
4831            let back: SupervisorSpec = serde_json::from_str(&json).unwrap();
4832            assert_eq!(back.restart_window, Some(dur));
4833        }
4834    }
4835
4836    #[test]
4837    fn duration_canonicalizes_to_largest_unit() {
4838        // 60 seconds → "1m" (largest cleanly-divisible unit), but the
4839        // typed Duration still equals 60s on the way back.
4840        let s = SupervisorSpec {
4841            children: vec![child("w", "^0.1", RestartPolicy::Permanent)],
4842            restart_window: Some(Duration::from_secs(60)),
4843            ..SupervisorSpec::default()
4844        };
4845        let json = serde_json::to_string(&s).unwrap();
4846        assert!(json.contains("\"1m\""), "{json}");
4847        let back: SupervisorSpec = serde_json::from_str(&json).unwrap();
4848        assert_eq!(back.restart_window, Some(Duration::from_secs(60)));
4849    }
4850
4851    #[test]
4852    fn three_child_one_for_one_validates() {
4853        let s = SupervisorSpec {
4854            estrategia: RestartStrategy::OneForOne,
4855            max_restarts: 5,
4856            restart_window: Some(Duration::from_secs(60)),
4857            children: vec![
4858                child("worker", "^0.1", RestartPolicy::Permanent),
4859                child("cache", "^0.1", RestartPolicy::Transient),
4860                child("scratch", "^0.1", RestartPolicy::Temporary),
4861            ],
4862        };
4863        s.validate().unwrap();
4864    }
4865
4866    #[test]
4867    fn json_uses_pascal_case_for_strategy_and_policy() {
4868        // Variant names are PascalCase by default in serde, matching
4869        // tatara-lisp's enum convention (`:estrategia OneForOne`).
4870        let c = child("w", "^0.1", RestartPolicy::Permanent);
4871        let json = serde_json::to_string(&c).unwrap();
4872        assert!(json.contains("\"Permanent\""));
4873        assert!(!json.contains("\"permanent\""));
4874
4875        let s = SupervisorSpec {
4876            estrategia: RestartStrategy::OneForOne,
4877            children: vec![c],
4878            ..SupervisorSpec::default()
4879        };
4880        let json = serde_json::to_string(&s).unwrap();
4881        assert!(json.contains("\"estrategia\":\"OneForOne\""));
4882    }
4883
4884    // ── shared duration codec: integer-magnitude canonical-form gate ──
4885    //
4886    // The gate lifts the discipline `crate::limits::parse_duration`
4887    // (818dd38) carries on the peer `:limits :wall-clock` codec onto
4888    // the shared codec backing the remaining three typed-duration
4889    // slots: `:supervisor :restart-window`, `:politicas :timeout`, and
4890    // `:politicas :circuit-breaker :window`. Every magnitude `render`
4891    // emits is a non-negative integer with no decimal point and no
4892    // leading sign, so the codec's accepted set must match for
4893    // serialize/deserialize to round-trip without canonical-form
4894    // drift.
4895
4896    #[test]
4897    fn parse_accepts_integer_canonical_units() {
4898        // Pin the happy-path: every canonical author shape `render`
4899        // ever emits parses to the same `Duration` value, so the
4900        // codec's accepted set is at least a superset of its emitted
4901        // set on the canonical-unit axis.
4902        for (lit, dur) in [
4903            ("30s", Duration::from_secs(30)),
4904            ("500ms", Duration::from_millis(500)),
4905            ("2m", Duration::from_secs(120)),
4906            ("1h", Duration::from_secs(3600)),
4907            ("0s", Duration::ZERO),
4908        ] {
4909            assert_eq!(
4910                duration_codec::parse(lit).unwrap(),
4911                dur,
4912                "parse({lit:?}) should be {dur:?}"
4913            );
4914        }
4915    }
4916
4917    #[test]
4918    fn parse_accepts_bare_integer_as_seconds() {
4919        // The `"s" | ""` arm: a bare integer with no unit is read as
4920        // seconds. Pin this so the unit-empty form keeps parsing (it
4921        // renders to `"<n>s"` on serialize — that's a unit-choice
4922        // drift the integer-magnitude gate does NOT close, matching
4923        // the `parse_byte_size` `"1024"` → `"1KiB"` scope decision in
4924        // the peer `:limits :memory` codec).
4925        assert_eq!(
4926            duration_codec::parse("30").unwrap(),
4927            Duration::from_secs(30)
4928        );
4929    }
4930
4931    #[test]
4932    fn parse_rejects_fractional_seconds_with_canonical_form_diagnostic() {
4933        // `"1.5s"` parses as f64 to 1.5 → renders back as `"1500ms"`
4934        // on first serialize — DRIFT. The integer-magnitude gate names
4935        // the offending `"1.5"` verbatim and points at the canonical
4936        // remediation `"1500ms"`.
4937        let err = duration_codec::parse("1.5s").unwrap_err();
4938        assert!(err.contains("\"1.5\""), "missing magnitude in {err:?}");
4939        assert!(
4940            err.contains("not a non-negative integer"),
4941            "missing canonical-form reason in {err:?}"
4942        );
4943        assert!(
4944            err.contains("\"1500ms\""),
4945            "missing canonical-form remediation in {err:?}"
4946        );
4947    }
4948
4949    #[test]
4950    fn parse_rejects_decimal_shaped_integer_seconds() {
4951        // `"1.0s"` is the trickiest drift class: numerically `1.0s` is
4952        // `1s` exactly, so the round-trip looks correct — but the
4953        // emitted canonical form is `"1s"`, not `"1.0s"`. Gate the
4954        // decimal-shape-with-integer-value form so author intent is
4955        // never silently rewritten.
4956        let err = duration_codec::parse("1.0s").unwrap_err();
4957        assert!(err.contains("\"1.0\""), "missing magnitude in {err:?}");
4958        assert!(
4959            err.contains("not a non-negative integer"),
4960            "missing canonical-form reason in {err:?}"
4961        );
4962    }
4963
4964    #[test]
4965    fn parse_rejects_half_unit_minute() {
4966        // `"0.5m"` is the unit-fraction footgun — author writes a
4967        // human-readable half-minute, serde silently rewrites to
4968        // `"30s"` on next emit. The gate names the offending
4969        // magnitude `"0.5"` and points at the integer-in-smaller-unit
4970        // form.
4971        let err = duration_codec::parse("0.5m").unwrap_err();
4972        assert!(err.contains("\"0.5\""), "missing magnitude in {err:?}");
4973        assert!(
4974            err.contains("\"30s\""),
4975            "missing canonical-form remediation in {err:?}"
4976        );
4977    }
4978
4979    #[test]
4980    fn parse_rejects_leading_plus_sign() {
4981        // `u64::from_str` rejects `"+30"` but `f64::from_str` accepts
4982        // it as `30.0` — the prior parser used f64 so `"+30s"` parsed
4983        // cleanly to 30s and round-tripped to `"30s"` on next emit
4984        // (DRIFT). The digit-only gate closes the leading-sign class
4985        // first; the diagnostic names `"+30"` verbatim.
4986        let err = duration_codec::parse("+30s").unwrap_err();
4987        assert!(err.contains("\"+30\""), "missing magnitude in {err:?}");
4988        assert!(
4989            err.contains("not a non-negative integer"),
4990            "missing canonical-form reason in {err:?}"
4991        );
4992    }
4993
4994    #[test]
4995    fn parse_rejects_leading_minus_sign() {
4996        // The former `num < 0.0` arm: `"-30s"` parsed as f64 to -30,
4997        // rejected with `"negative duration in \"-30s\""`. Under the
4998        // integer-magnitude gate the diagnostic is unified — `-30` is
4999        // non-digit-only, f64-numeric, and surfaces with the canonical-
5000        // form reason (no leading `+` / `-` sign) naming the offending
5001        // `"-30"` verbatim. Same diagnostic shape as every other
5002        // rejected non-integer magnitude.
5003        let err = duration_codec::parse("-30s").unwrap_err();
5004        assert!(err.contains("\"-30\""), "missing magnitude in {err:?}");
5005        assert!(
5006            err.contains("not a non-negative integer"),
5007            "missing canonical-form reason in {err:?}"
5008        );
5009    }
5010
5011    #[test]
5012    fn parse_garbage_still_falls_through_to_bad_magnitude() {
5013        // Non-digit-only AND non-numeric (`"--1s"`, `"abc"`) falls
5014        // through to the narrower "bad duration magnitude" arm — the
5015        // canonical-form diagnostic is reserved for the parser-shape
5016        // footgun case, not the "not a number at all" case. Same
5017        // shape `parse_byte_size`'s `BadByteMagnitude` arm carries on
5018        // the peer `:limits :memory` codec.
5019        let err = duration_codec::parse("--1s").unwrap_err();
5020        assert!(
5021            err.contains("bad duration magnitude"),
5022            "expected bad-magnitude wording in {err:?}"
5023        );
5024    }
5025
5026    #[test]
5027    fn parse_digit_only_magnitude_carries_zero_f64_drift() {
5028        // The accepted set is now closed under `u64`-exact integer
5029        // arithmetic: `"500ms"` → `Duration::from_millis(500)` exactly,
5030        // `"3600s"` → `Duration::from_secs(3600)` exactly, `"1h"` →
5031        // `Duration::from_secs(3600)` exactly, no f64 mantissa drift
5032        // possible. Pin the integer-exact arms across the four unit
5033        // suffixes so a future refactor that reaches back for f64
5034        // (`from_secs_f64`, `mul_f64`) surfaces here.
5035        assert_eq!(
5036            duration_codec::parse("3600s").unwrap(),
5037            Duration::from_secs(3600)
5038        );
5039        assert_eq!(
5040            duration_codec::parse("60m").unwrap(),
5041            Duration::from_secs(3600)
5042        );
5043        assert_eq!(
5044            duration_codec::parse("1h").unwrap(),
5045            Duration::from_secs(3600)
5046        );
5047        assert_eq!(
5048            duration_codec::parse("999ms").unwrap(),
5049            Duration::from_millis(999)
5050        );
5051    }
5052
5053    #[test]
5054    fn restart_window_serde_rejects_fractional_seconds() {
5055        // The shared codec backs `SupervisorSpec::restart_window`
5056        // (`with = "duration_codec"`) — so the gate applies on serde
5057        // deserialize for the typed Supervisor slot. A
5058        // `{"restartWindow":"1.5s"}` payload that previously round-
5059        // tripped to a different canonical string on next serialize
5060        // is now refused at deserialize with the integer-magnitude
5061        // diagnostic.
5062        let payload = r#"{"estrategia":"OneForOne","maxRestarts":5,
5063            "restartWindow":"1.5s",
5064            "children":[{"caixa":"w","versao":"^0.1","restart":"Permanent"}]}"#;
5065        let err = serde_json::from_str::<SupervisorSpec>(payload).unwrap_err();
5066        let msg = err.to_string();
5067        assert!(
5068            msg.contains("not a non-negative integer"),
5069            "expected integer-magnitude diagnostic in {msg:?}"
5070        );
5071        assert!(msg.contains("\"1.5\""), "missing magnitude in {msg:?}");
5072    }
5073
5074    #[test]
5075    fn restart_window_serde_rejects_leading_plus() {
5076        // The `u64::from_str` leading-`+` permissiveness gap that
5077        // motivated the digit-only gate (the `f64`-side accepted
5078        // `"+30"`, the prior parser silently round-tripped to `"30s"`)
5079        // is now closed on the shared codec — surfaces as a structured
5080        // diagnostic at the serde layer for every typed-duration slot.
5081        let payload = r#"{"estrategia":"OneForOne","maxRestarts":5,
5082            "restartWindow":"+30s",
5083            "children":[{"caixa":"w","versao":"^0.1","restart":"Permanent"}]}"#;
5084        let err = serde_json::from_str::<SupervisorSpec>(payload).unwrap_err();
5085        let msg = err.to_string();
5086        assert!(msg.contains("\"+30\""), "missing magnitude in {msg:?}");
5087        assert!(
5088            msg.contains("not a non-negative integer"),
5089            "missing canonical-form reason in {msg:?}"
5090        );
5091    }
5092
5093    #[test]
5094    fn parse_rejects_leading_zero_magnitude() {
5095        // `"030s"` is digit-only, so the existing non-digit-only / sign
5096        // / fractional arm doesn't catch it — `u64::from_str("030")`
5097        // returns `Ok(30)`, so before this gate `"030s"` parsed to
5098        // `Duration::from_secs(30)` and round-tripped through `render`
5099        // to `"30s"` — a *different* canonical string on the next emit,
5100        // breaking the THEORY.md Part V render-determinism contract
5101        // exactly the way `"+30s"` did before the leading-`+` arm
5102        // landed. Peer with the `rate_limit_codec` leading-zero arm
5103        // (4f46830) on the same canonical-form-drift axis.
5104        let err = duration_codec::parse("030s").unwrap_err();
5105        assert!(
5106            err.contains("non-canonical leading zero"),
5107            "expected leading-zero diagnostic in {err:?}"
5108        );
5109        assert!(err.contains("\"030\""), "missing magnitude in {err:?}");
5110        assert!(
5111            err.contains("\"30s\""),
5112            "missing canonical-form remediation in {err:?}"
5113        );
5114        assert!(
5115            err.contains("THEORY.md"),
5116            "missing render-determinism citation in {err:?}"
5117        );
5118    }
5119
5120    #[test]
5121    fn parse_rejects_multi_digit_zero_magnitude() {
5122        // `"00s"` and `"00ms"` are the all-zero leading-zero footgun —
5123        // digit-only, parse losslessly to `Duration::ZERO`, but render
5124        // back to `"0s"` (the single-byte canonical form) on the next
5125        // emit. The leading-zero arm refuses the drift class at the
5126        // codec layer; the semantic-zero gate downstream
5127        // (`SupervisorError::ZeroRestartWindow`, etc.) would refuse
5128        // the single-byte canonical form `"0s"` separately on the
5129        // typed-validate layer.
5130        let err = duration_codec::parse("00s").unwrap_err();
5131        assert!(
5132            err.contains("non-canonical leading zero"),
5133            "expected leading-zero diagnostic in {err:?}"
5134        );
5135        assert!(err.contains("\"00\""), "missing magnitude in {err:?}");
5136    }
5137
5138    #[test]
5139    fn parse_rejects_leading_zero_per_hour_window() {
5140        // `"01h"` is the per-hour-window footgun — multi-byte magnitude
5141        // starting with `0`, parses losslessly to `Duration::from_secs(3600)`,
5142        // renders to `"1h"` (DRIFT). The arm is unit-agnostic: every
5143        // canonical unit suffix the codec accepts (`ms` / `s` / `m` /
5144        // `h` / bare-integer-as-seconds) inherits the same gate.
5145        let err = duration_codec::parse("01h").unwrap_err();
5146        assert!(
5147            err.contains("non-canonical leading zero"),
5148            "expected leading-zero diagnostic in {err:?}"
5149        );
5150        assert!(err.contains("\"01\""), "missing magnitude in {err:?}");
5151    }
5152
5153    #[test]
5154    fn parse_rejects_leading_zero_bare_integer_as_seconds() {
5155        // The `parse_accepts_bare_integer_as_seconds` happy-path
5156        // (`"30"` → 30s) inherits the leading-zero arm: `"030"` is
5157        // multi-byte starts-with-`0`, parses losslessly to
5158        // `Duration::from_secs(30)`, renders to `"30s"` (DRIFT). The
5159        // bare-integer surface accepts permissive unit-empty
5160        // shorthand but still must reject leading-zero padding.
5161        let err = duration_codec::parse("030").unwrap_err();
5162        assert!(
5163            err.contains("non-canonical leading zero"),
5164            "expected leading-zero diagnostic in {err:?}"
5165        );
5166        assert!(err.contains("\"030\""), "missing magnitude in {err:?}");
5167    }
5168
5169    #[test]
5170    fn parse_accepts_single_zero_magnitude_at_codec_layer() {
5171        // The codec-layer / typed-validate-layer boundary: `"0s"` /
5172        // `"0ms"` / `"0"` are the single-byte canonical-zero forms —
5173        // each round-trips losslessly through `render`
5174        // (`render(Duration::ZERO)` → `"0s"`), so the codec layer
5175        // accepts them. The downstream semantic-zero gates
5176        // (`SupervisorError::ZeroRestartWindow`,
5177        // `AplicacaoError::PolicyTimeoutZero`,
5178        // `AplicacaoError::PolicyCircuitBreakerWindowZero`) refuse
5179        // zero-magnitude authoring at the typed-validate layer above,
5180        // peer with the `rate_limit_codec` codec-layer / typed-
5181        // validate-layer partition for `"0/s"`.
5182        assert_eq!(duration_codec::parse("0s").unwrap(), Duration::ZERO);
5183        assert_eq!(duration_codec::parse("0ms").unwrap(), Duration::ZERO);
5184        assert_eq!(duration_codec::parse("0").unwrap(), Duration::ZERO);
5185    }
5186
5187    #[test]
5188    fn parse_accepts_canonical_magnitude_with_leading_one() {
5189        // The complementary boundary: a future tightening cannot
5190        // drift into rejecting valid canonical magnitudes that
5191        // happen to start with `1` (or any digit `[1-9]`). Pin
5192        // every canonical-unit suffix so the leading-zero arm
5193        // remains strictly narrower than the digit-only arm.
5194        assert_eq!(
5195            duration_codec::parse("100ms").unwrap(),
5196            Duration::from_millis(100)
5197        );
5198        assert_eq!(
5199            duration_codec::parse("100s").unwrap(),
5200            Duration::from_secs(100)
5201        );
5202        assert_eq!(
5203            duration_codec::parse("10m").unwrap(),
5204            Duration::from_secs(600)
5205        );
5206        assert_eq!(
5207            duration_codec::parse("10h").unwrap(),
5208            Duration::from_secs(36_000)
5209        );
5210    }
5211
5212    #[test]
5213    fn restart_window_serde_rejects_leading_zero() {
5214        // The shared codec backs `SupervisorSpec::restart_window`
5215        // (`with = "duration_codec"`) — so the leading-zero arm
5216        // applies on serde deserialize for the typed Supervisor slot.
5217        // A `{"restartWindow":"030s"}` payload that previously round-
5218        // tripped to a different canonical string on next serialize
5219        // is now refused at deserialize with the leading-zero
5220        // diagnostic. Peer with `restart_window_serde_rejects_leading_plus`
5221        // / `restart_window_serde_rejects_fractional_seconds` on the
5222        // same canonical-form-drift axis.
5223        let payload = r#"{"estrategia":"OneForOne","maxRestarts":5,
5224            "restartWindow":"030s",
5225            "children":[{"caixa":"w","versao":"^0.1","restart":"Permanent"}]}"#;
5226        let err = serde_json::from_str::<SupervisorSpec>(payload).unwrap_err();
5227        let msg = err.to_string();
5228        assert!(
5229            msg.contains("non-canonical leading zero"),
5230            "expected leading-zero diagnostic in {msg:?}"
5231        );
5232        assert!(msg.contains("\"030\""), "missing magnitude in {msg:?}");
5233    }
5234
5235    #[test]
5236    fn parse_rejects_leading_whitespace() {
5237        // `" 30s"` — the canonical paste-from-aligned-doc /
5238        // paste-from-YAML-quoted-plain-scalar footgun. Before this
5239        // gate the top-level `s.trim()` at parse entry silently ate
5240        // the leading space and parsed the value to
5241        // `Duration::from_secs(30)`, which then round-tripped through
5242        // `render` to `"30s"` (a *different* canonical string on the
5243        // next emit) — the exact canonical-form-drift class the
5244        // leading-`+` / leading-zero arms already close, extended
5245        // to the whitespace-byte class. Peer with the sibling
5246        // `rate_limit_codec` whitespace-rejection arm (1ad7755) on
5247        // the M3 `:politicas` axis.
5248        let err = duration_codec::parse(" 30s").unwrap_err();
5249        assert!(
5250            err.contains("contains whitespace byte"),
5251            "expected whitespace diagnostic in {err:?}"
5252        );
5253        assert!(err.contains("0x20"), "missing offending byte in {err:?}");
5254        assert!(
5255            err.contains("THEORY.md"),
5256            "missing render-determinism contract citation in {err:?}"
5257        );
5258    }
5259
5260    #[test]
5261    fn parse_rejects_trailing_whitespace() {
5262        // `"30s "` — the canonical shell-history / trailing-space
5263        // paste footgun. Before this gate the top-level `s.trim()`
5264        // silently ate the trailing space and parsed to
5265        // `Duration::from_secs(30)`, round-tripping to `"30s"` on the
5266        // next emit — same canonical-form drift as the leading-space
5267        // sibling, closed on the same whitespace-byte arm.
5268        let err = duration_codec::parse("30s ").unwrap_err();
5269        assert!(
5270            err.contains("contains whitespace byte"),
5271            "expected whitespace diagnostic in {err:?}"
5272        );
5273        assert!(err.contains("0x20"), "missing offending byte in {err:?}");
5274    }
5275
5276    #[test]
5277    fn parse_rejects_internal_whitespace_between_magnitude_and_unit() {
5278        // `"30 s"` — the canonical typographically-spaced author
5279        // shape (the same idiom every prose reference to a duration
5280        // renders as, mistakenly retained when the value is pasted
5281        // into a codec-shaped slot). Before this gate the per-part
5282        // `num_part.trim()` / `unit.trim()` calls silently ate the
5283        // whitespace between the magnitude and the unit and parsed
5284        // the value to `Duration::from_secs(30)`, round-tripping to
5285        // `"30s"` — the codec's *internal* whitespace-tolerance
5286        // vector, orthogonal to the leading / trailing surface but
5287        // the same canonical-form-drift class. Pins the arm as
5288        // strictly stronger than the pre-existing top-level
5289        // `s.trim()` behavior: it fires on whitespace anywhere in
5290        // the value, not just at the string boundary.
5291        let err = duration_codec::parse("30 s").unwrap_err();
5292        assert!(
5293            err.contains("contains whitespace byte"),
5294            "expected whitespace diagnostic in {err:?}"
5295        );
5296        assert!(err.contains("0x20"), "missing offending byte in {err:?}");
5297    }
5298
5299    #[test]
5300    fn parse_rejects_tab_byte() {
5301        // `"\t30s"` — the canonical paste-from-indented-doc /
5302        // paste-from-YAML-block-scalar footgun where a tab byte leads
5303        // the magnitude. Pins that the gate covers tab (`0x09`) as
5304        // well as space (`0x20`) — both are `u8::is_ascii_whitespace`
5305        // members and both would be silently swallowed by `s.trim()`
5306        // pre-gate. The `is_ascii_whitespace` coverage extends beyond
5307        // space alone to the full ASCII-whitespace set (space `0x20`,
5308        // tab `0x09`, LF `0x0A`, FF `0x0C`, CR `0x0D`); this test pins
5309        // the tab arm as a representative of the non-space members.
5310        let err = duration_codec::parse("\t30s").unwrap_err();
5311        assert!(
5312            err.contains("contains whitespace byte"),
5313            "expected whitespace diagnostic in {err:?}"
5314        );
5315        assert!(
5316            err.contains("0x09"),
5317            "missing offending tab byte in {err:?}"
5318        );
5319    }
5320
5321    #[test]
5322    fn restart_window_serde_rejects_whitespace() {
5323        // The shared codec backs `SupervisorSpec::restart_window`
5324        // (`with = "duration_codec"`) — so the whitespace arm
5325        // applies on serde deserialize for the typed Supervisor slot.
5326        // A `{"restartWindow":" 30s"}` payload that previously round-
5327        // tripped to a different canonical string on next serialize
5328        // is now refused at deserialize with the whitespace-byte
5329        // diagnostic. Peer with `restart_window_serde_rejects_leading_zero`
5330        // / `restart_window_serde_rejects_leading_plus` /
5331        // `restart_window_serde_rejects_fractional_seconds` on the
5332        // same canonical-form-drift axis.
5333        let payload = r#"{"estrategia":"OneForOne","maxRestarts":5,
5334            "restartWindow":" 30s",
5335            "children":[{"caixa":"w","versao":"^0.1","restart":"Permanent"}]}"#;
5336        let err = serde_json::from_str::<SupervisorSpec>(payload).unwrap_err();
5337        let msg = err.to_string();
5338        assert!(
5339            msg.contains("contains whitespace byte"),
5340            "expected whitespace diagnostic in {msg:?}"
5341        );
5342        assert!(msg.contains("0x20"), "missing offending byte in {msg:?}");
5343    }
5344
5345    // ── canonical-form: non-ASCII Unicode `White_Space` duration gate ─────
5346    //
5347    // Successor to the ASCII-whitespace arm (a7ae622) on the shared
5348    // duration codec — closes the strictly-complementary class the
5349    // byte-scan cannot see, through the lifted
5350    // [`crate::render::find_non_ascii_whitespace_char`] predicate.
5351    // Applies to `:supervisor :restart-window`, `:politicas :timeout`,
5352    // and `:politicas :circuit-breaker :window` simultaneously via
5353    // this shared codec.
5354
5355    #[test]
5356    fn duration_codec_parse_rejects_leading_nbsp() {
5357        // NBSP prefix — the strictly-complementary drift class the
5358        // ASCII byte-scan cannot see. `str::trim` strips it silently
5359        // and the value drifts to `"30s"` on next serialize.
5360        let err = duration_codec::parse("\u{00A0}30s").unwrap_err();
5361        assert!(
5362            err.contains("non-ASCII Unicode whitespace character"),
5363            "expected non-ASCII whitespace diagnostic in {err:?}"
5364        );
5365        assert!(err.contains("U+00A0"), "missing codepoint in {err:?}");
5366    }
5367
5368    #[test]
5369    fn duration_codec_parse_rejects_trailing_line_separator() {
5370        // LINE SEPARATOR (`\u{2028}`) trailing — paste-from-web-doc
5371        // footgun.
5372        let err = duration_codec::parse("30s\u{2028}").unwrap_err();
5373        assert!(
5374            err.contains("non-ASCII Unicode whitespace character"),
5375            "expected non-ASCII whitespace diagnostic in {err:?}"
5376        );
5377        assert!(err.contains("U+2028"), "missing codepoint in {err:?}");
5378    }
5379
5380    #[test]
5381    fn duration_codec_parse_accepts_ascii_only_forms_after_unicode_arm() {
5382        // Positive-control pin: every ASCII-only canonical form the
5383        // renderer emits stays accepted through the new arm.
5384        assert_eq!(
5385            duration_codec::parse("30s").unwrap(),
5386            Duration::from_secs(30)
5387        );
5388        assert_eq!(
5389            duration_codec::parse("500ms").unwrap(),
5390            Duration::from_millis(500)
5391        );
5392        assert_eq!(
5393            duration_codec::parse("1h").unwrap(),
5394            Duration::from_secs(3600)
5395        );
5396    }
5397
5398    #[test]
5399    fn restart_window_serde_rejects_non_ascii_whitespace() {
5400        // The shared codec backs `SupervisorSpec::restart_window` — so
5401        // the new non-ASCII Unicode whitespace arm applies on serde
5402        // deserialize for the typed Supervisor slot. A
5403        // `{"restartWindow":" 30s"}` payload that previously
5404        // survived the ASCII byte-scan (only ASCII whitespace was
5405        // refused) is now refused at deserialize with the
5406        // non-ASCII-whitespace-and-codepoint diagnostic.
5407        let payload = "{\"estrategia\":\"OneForOne\",\"maxRestarts\":5,\
5408            \"restartWindow\":\"\u{00A0}30s\",\
5409            \"children\":[{\"caixa\":\"w\",\"versao\":\"^0.1\",\"restart\":\"Permanent\"}]}";
5410        let err = serde_json::from_str::<SupervisorSpec>(payload).unwrap_err();
5411        let msg = err.to_string();
5412        assert!(
5413            msg.contains("non-ASCII Unicode whitespace character"),
5414            "expected non-ASCII whitespace diagnostic in {msg:?}"
5415        );
5416        assert!(msg.contains("U+00A0"), "missing codepoint in {msg:?}");
5417    }
5418
5419    // ── drift-detection: serde-derive-to-SUPERVISOR_KEY_* identity ────────
5420
5421    #[test]
5422    fn supervisor_spec_serde_keys_match_lifted_supervisor_key_consts() {
5423        // Load-bearing invariant: the four `SUPERVISOR_KEY_*` consts
5424        // (`SUPERVISOR_KEY_ESTRATEGIA` / `SUPERVISOR_KEY_MAX_RESTARTS` /
5425        // `SUPERVISOR_KEY_RESTART_WINDOW` / `SUPERVISOR_KEY_CHILDREN`)
5426        // name the exact camelCase JSON keys the
5427        // `#[serde(rename_all = "camelCase")]` attribute on
5428        // `SupervisorSpec` emits. Serialize a fully-populated spec (each
5429        // field carries `Some(_)` / non-empty) and pin that each canonical
5430        // byte-sequence appears verbatim in the JSON — a future accidental
5431        // `rename_all = "snake_case"` / `"kebab-case"` / verbatim-field-
5432        // name flip at the derive attribute (any of which would silently
5433        // break every downstream JSON consumer that reaches for one of the
5434        // four consts via `Value::get(...)`) surfaces here as a build-time
5435        // test failure at `supervisor.rs`, not as an apply-time
5436        // `.get(<stale-canonical-const>)` returning `None` far from the
5437        // derive-attr drift's commit. Peer with the sibling
5438        // `limits_spec_serde_keys_match_lifted_m2_limits_key_consts`
5439        // (d8b8b4f) pin on the M2 `:limits` axis — same discipline the
5440        // M2 typed-slot family established, extended here to close the
5441        // top-level Supervisor axis.
5442        let spec = SupervisorSpec {
5443            estrategia: RestartStrategy::OneForOne,
5444            max_restarts: 5,
5445            restart_window: Some(Duration::from_secs(60)),
5446            children: vec![ChildSpec {
5447                caixa: "w".into(),
5448                versao: "^0.1".into(),
5449                restart: RestartPolicy::Permanent,
5450            }],
5451        };
5452        let json = serde_json::to_string(&spec).unwrap();
5453        for key in [
5454            crate::render::SUPERVISOR_KEY_ESTRATEGIA,
5455            crate::render::SUPERVISOR_KEY_MAX_RESTARTS,
5456            crate::render::SUPERVISOR_KEY_RESTART_WINDOW,
5457            crate::render::SUPERVISOR_KEY_CHILDREN,
5458        ] {
5459            let quoted = format!("\"{key}\"");
5460            assert!(
5461                json.contains(&quoted),
5462                "serialized SupervisorSpec must carry the lifted \
5463                 SUPERVISOR_KEY_* byte-sequence {quoted} verbatim in \
5464                 the JSON emission (got: {json})",
5465            );
5466        }
5467    }
5468
5469    #[test]
5470    fn supervisor_key_consts_are_pairwise_distinct() {
5471        // Cross-axis drift-detection pin: a future collapse of two
5472        // canonical top-level byte-strings onto the same value (e.g. an
5473        // accidental copy-paste flip of `SUPERVISOR_KEY_CHILDREN` to
5474        // also read `"estrategia"`) would silently reroute every
5475        // downstream probe on one axis onto the sibling axis's overlay
5476        // entry and pass every propagation-probe test that expected only
5477        // the stale axis's value. Peer of the sibling four-way distinct
5478        // pin on the `M2_LIMITS_KEY_*` tetrad (d8b8b4f).
5479        let all = [
5480            crate::render::SUPERVISOR_KEY_ESTRATEGIA,
5481            crate::render::SUPERVISOR_KEY_MAX_RESTARTS,
5482            crate::render::SUPERVISOR_KEY_RESTART_WINDOW,
5483            crate::render::SUPERVISOR_KEY_CHILDREN,
5484        ];
5485        for (i, a) in all.iter().enumerate() {
5486            for b in all.iter().skip(i + 1) {
5487                assert_ne!(
5488                    a, b,
5489                    "SUPERVISOR_KEY_* consts must be pairwise-distinct \
5490                     canonical byte-sequences — got `{a}` == `{b}`",
5491                );
5492            }
5493        }
5494    }
5495
5496    #[test]
5497    fn supervisor_key_consts_are_lower_camel_case_shape() {
5498        // Shape-pin: every `SUPERVISOR_KEY_*` const must be a
5499        // lowerCamelCase byte-sequence (no `snake_case` underscores, no
5500        // `kebab-case` hyphens, no leading colon, no `PascalCase` leading
5501        // capital, no whitespace / dots) — the canonical shape the
5502        // `#[serde(rename_all = "camelCase")]` derive produces on
5503        // `SupervisorSpec`. A future flip to a non-camelCase attribute
5504        // at the derive surfaces both here (this test fails on the
5505        // stale-constant shape) and at
5506        // `supervisor_spec_serde_keys_match_lifted_supervisor_key_consts`
5507        // (that test fails on the mismatch between const and derive).
5508        // Peer with `m2_limits_key_consts_are_lower_camel_case_shape`
5509        // (d8b8b4f) on the sibling M2 `:limits` axis.
5510        for key in [
5511            crate::render::SUPERVISOR_KEY_ESTRATEGIA,
5512            crate::render::SUPERVISOR_KEY_MAX_RESTARTS,
5513            crate::render::SUPERVISOR_KEY_RESTART_WINDOW,
5514            crate::render::SUPERVISOR_KEY_CHILDREN,
5515        ] {
5516            assert!(
5517                !key.is_empty(),
5518                "SUPERVISOR_KEY_* must be non-empty (got {key:?})"
5519            );
5520            let first = key.chars().next().unwrap();
5521            assert!(
5522                first.is_ascii_lowercase(),
5523                "SUPERVISOR_KEY_* must lead with an ASCII-lowercase byte \
5524                 (got {key:?}, leads with {first:?})",
5525            );
5526            assert!(
5527                key.chars().all(|c| c.is_ascii_alphanumeric()),
5528                "SUPERVISOR_KEY_* must be ASCII-alphanumeric only \
5529                 — no `_` / `-` / `:` / `.` / whitespace (got {key:?})",
5530            );
5531        }
5532    }
5533
5534    #[test]
5535    fn supervisor_key_consts_are_byte_distinct_from_supervisor_author_key_peers() {
5536        // Cross-axis drift pin: the four `SUPERVISOR_KEY_*` consts
5537        // (camelCase JSON keys, no leading colon) must never collide
5538        // byte-for-byte with the four peer `SUPERVISOR_AUTHOR_KEY_*`
5539        // consts (kebab-case author-facing labels with leading colon)
5540        // that sit next to them at `caixa_core::render`. Both families
5541        // cover the same four typed Supervisor slots on two distinct
5542        // axes (author-side kebab vs renderer-side camelCase);
5543        // collapsing either family onto the other's byte-shape would
5544        // silently reroute the render-side probe onto the author-facing
5545        // surface, or vice versa. Peer of the byte-distinctness
5546        // discipline the `M3_PLACEMENT_KEY_ESTRATEGIA` docstring names
5547        // against the peer `M3_AUTHOR_KEY_PLACEMENT`.
5548        let pairs = [
5549            (
5550                crate::render::SUPERVISOR_KEY_ESTRATEGIA,
5551                crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA,
5552            ),
5553            (
5554                crate::render::SUPERVISOR_KEY_MAX_RESTARTS,
5555                crate::render::SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS,
5556            ),
5557            (
5558                crate::render::SUPERVISOR_KEY_RESTART_WINDOW,
5559                crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW,
5560            ),
5561            (
5562                crate::render::SUPERVISOR_KEY_CHILDREN,
5563                crate::render::SUPERVISOR_AUTHOR_KEY_CHILDREN,
5564            ),
5565        ];
5566        for (json_key, author_key) in pairs {
5567            assert_ne!(
5568                json_key, author_key,
5569                "SUPERVISOR_KEY_* (JSON side) must differ byte-for-byte \
5570                 from the peer SUPERVISOR_AUTHOR_KEY_* (author side); \
5571                 got JSON `{json_key}` == author `{author_key}`",
5572            );
5573        }
5574    }
5575
5576    // ── drift-detection: serde-derive-to-SUPERVISOR_CHILD_KEY_* identity ──
5577
5578    #[test]
5579    fn child_spec_serde_keys_match_lifted_supervisor_child_key_consts() {
5580        // Load-bearing invariant: the three `SUPERVISOR_CHILD_KEY_*` consts
5581        // (`SUPERVISOR_CHILD_KEY_CAIXA` / `SUPERVISOR_CHILD_KEY_VERSAO` /
5582        // `SUPERVISOR_CHILD_KEY_RESTART`) name the exact camelCase JSON
5583        // keys the `#[serde(rename_all = "camelCase")]` attribute on
5584        // `ChildSpec` emits. Serialize a fully-populated `ChildSpec` and
5585        // pin that each canonical byte-sequence appears verbatim in the
5586        // JSON — a future accidental `rename_all = "snake_case"` /
5587        // `"kebab-case"` / verbatim-field-name flip at the derive
5588        // attribute (any of which would silently break every downstream
5589        // JSON consumer that reaches for one of the three consts via
5590        // `Value::get(...)`) surfaces here as a build-time test failure at
5591        // `supervisor.rs`, not as an apply-time
5592        // `.get(<stale-canonical-const>)` returning `None` far from the
5593        // derive-attr drift's commit. Peer with the enclosing
5594        // `supervisor_spec_serde_keys_match_lifted_supervisor_key_consts`
5595        // (40cc4e5) pin on the M2 supervision-tree top-level axis — same
5596        // discipline the SupervisorSpec top-level lift established,
5597        // extended here to the sibling per-`:children` entry `ChildSpec`
5598        // derive so the last M2 typed-struct sub-block
5599        // `#[serde(rename_all = "camelCase")]` axis on the Supervisor
5600        // surface without a lifted serde-key peer joins the substrate's
5601        // "one canonical byte-string per typed serialized-key axis"
5602        // discipline.
5603        let c = ChildSpec {
5604            caixa: "worker".into(),
5605            versao: "^0.1".into(),
5606            restart: RestartPolicy::Permanent,
5607        };
5608        let json = serde_json::to_string(&c).unwrap();
5609        for key in [
5610            crate::render::SUPERVISOR_CHILD_KEY_CAIXA,
5611            crate::render::SUPERVISOR_CHILD_KEY_VERSAO,
5612            crate::render::SUPERVISOR_CHILD_KEY_RESTART,
5613        ] {
5614            let quoted = format!("\"{key}\"");
5615            assert!(
5616                json.contains(&quoted),
5617                "serialized ChildSpec must carry the lifted \
5618                 SUPERVISOR_CHILD_KEY_* byte-sequence {quoted} verbatim \
5619                 in the JSON emission (got: {json})",
5620            );
5621        }
5622    }
5623
5624    #[test]
5625    fn supervisor_child_key_consts_are_pairwise_distinct() {
5626        // Cross-axis drift-detection pin: a future collapse of two
5627        // canonical `ChildSpec` per-entry byte-strings onto the same
5628        // value (e.g. an accidental copy-paste flip of
5629        // `SUPERVISOR_CHILD_KEY_RESTART` to also read `"caixa"`) would
5630        // silently reroute every downstream probe on one axis onto the
5631        // sibling axis's overlay entry and pass every propagation-probe
5632        // test that expected only the stale axis's value. Peer of the
5633        // sibling three-way distinct pin on the `CONTRATO_KEY_*` triad
5634        // (ca463a4) and the two-way distinct pin on the `MEMBRO_KEY_*`
5635        // pair (ce80ca0).
5636        let all = [
5637            crate::render::SUPERVISOR_CHILD_KEY_CAIXA,
5638            crate::render::SUPERVISOR_CHILD_KEY_VERSAO,
5639            crate::render::SUPERVISOR_CHILD_KEY_RESTART,
5640        ];
5641        for (i, a) in all.iter().enumerate() {
5642            for b in all.iter().skip(i + 1) {
5643                assert_ne!(
5644                    a, b,
5645                    "SUPERVISOR_CHILD_KEY_* consts must be pairwise-\
5646                     distinct canonical byte-sequences — got `{a}` == `{b}`",
5647                );
5648            }
5649        }
5650    }
5651
5652    #[test]
5653    fn supervisor_child_key_consts_are_lower_camel_case_shape() {
5654        // Shape-pin: every `SUPERVISOR_CHILD_KEY_*` const must be a
5655        // lowerCamelCase byte-sequence (no `snake_case` underscores, no
5656        // `kebab-case` hyphens, no leading colon, no `PascalCase` leading
5657        // capital, no whitespace / dots) — the canonical shape the
5658        // `#[serde(rename_all = "camelCase")]` derive produces on
5659        // `ChildSpec`. A future flip to a non-camelCase attribute at the
5660        // derive surfaces both here (this test fails on the
5661        // stale-constant shape) and at
5662        // `child_spec_serde_keys_match_lifted_supervisor_child_key_consts`
5663        // (that test fails on the mismatch between const and derive).
5664        // Peer with `supervisor_key_consts_are_lower_camel_case_shape`
5665        // (40cc4e5) on the sibling `SupervisorSpec` top-level axis.
5666        for key in [
5667            crate::render::SUPERVISOR_CHILD_KEY_CAIXA,
5668            crate::render::SUPERVISOR_CHILD_KEY_VERSAO,
5669            crate::render::SUPERVISOR_CHILD_KEY_RESTART,
5670        ] {
5671            assert!(
5672                !key.is_empty(),
5673                "SUPERVISOR_CHILD_KEY_* must be non-empty (got {key:?})"
5674            );
5675            let first = key.chars().next().unwrap();
5676            assert!(
5677                first.is_ascii_lowercase(),
5678                "SUPERVISOR_CHILD_KEY_* must lead with an ASCII-lowercase \
5679                 byte (got {key:?}, leads with {first:?})",
5680            );
5681            assert!(
5682                key.chars().all(|c| c.is_ascii_alphanumeric()),
5683                "SUPERVISOR_CHILD_KEY_* must be ASCII-alphanumeric only \
5684                 — no `_` / `-` / `:` / `.` / whitespace (got {key:?})",
5685            );
5686        }
5687    }
5688
5689    // ── drift-detection: serde-derive-to-SUPERVISOR_ESTRATEGIA_* identity ────
5690
5691    #[test]
5692    fn restart_strategy_variants_serialize_to_lifted_scalar_values() {
5693        // The fail-before-pass-after pin: pre-lift there was no
5694        // single-source binding between the [`RestartStrategy`] variant
5695        // name the un-`rename`d `Serialize` derive emits under
5696        // [`crate::render::SUPERVISOR_KEY_ESTRATEGIA`] and the byte-string
5697        // every downstream cluster-side dispatcher (the future
5698        // wasm-operator's per-supervisor sibling-restart branch, the
5699        // future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
5700        // admission-time enum-arm bind, the `caixa-operator`'s
5701        // hierarchical reconciliation scheduler's per-strategy fan-out)
5702        // probes verbatim. A future `#[serde(rename_all = "kebab-case")]`
5703        // attribute on the enum — or a per-variant `#[serde(rename = "…")]`
5704        // override, or a variant rename in the source — would silently
5705        // rebrand the emitted scalar under one spelling while every
5706        // downstream dispatcher still probed the other, with the failure
5707        // surfacing at the operator's reconcile posture (subtrees coming
5708        // up under the `default()` `OneForOne` arm rather than the typed
5709        // slot's declared strategy — a bad child would then only take
5710        // itself down instead of the sibling set the author intended, so
5711        // shared-state children fall out of sync) far from the source
5712        // rebrand commit and with no field naming the drift. Pinning the
5713        // two paths (the `Serialize` derive's serialized string AND the
5714        // [`RestartStrategy::as_str`] helper) to the same four lifted
5715        // [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE`] /
5716        // [`crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL`] /
5717        // [`crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE`] /
5718        // [`crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE`]
5719        // byte-strings makes any future drift on either endpoint fail
5720        // here at caixa-core build time. Peer of the M3
5721        // `placement_strategy_variants_serialize_to_lifted_scalar_values`
5722        // (3f0e21c) on the sibling `PlacementStrategy` axis — same
5723        // three-path-convergence discipline, extended to close the
5724        // OTP-shaped per-supervisor sibling-restart axis.
5725        for (variant, expected) in [
5726            (
5727                RestartStrategy::OneForOne,
5728                crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE,
5729            ),
5730            (
5731                RestartStrategy::OneForAll,
5732                crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL,
5733            ),
5734            (
5735                RestartStrategy::RestForOne,
5736                crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE,
5737            ),
5738            (
5739                RestartStrategy::SimpleOneForOne,
5740                crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE,
5741            ),
5742        ] {
5743            let json = serde_json::to_string(&variant).unwrap();
5744            assert_eq!(
5745                json,
5746                format!("\"{expected}\""),
5747                "RestartStrategy::{variant:?} must serialize to {expected:?}"
5748            );
5749            assert_eq!(
5750                variant.as_str(),
5751                expected,
5752                "RestartStrategy::{variant:?}.as_str() must return the lifted \
5753                 SUPERVISOR_ESTRATEGIA_* constant"
5754            );
5755        }
5756    }
5757
5758    #[test]
5759    fn supervisor_estrategia_consts_are_pairwise_distinct() {
5760        // Cross-arm drift-detection pin: a future collapse of two
5761        // canonical variant byte-strings onto the same value (e.g. an
5762        // accidental copy-paste flip of `SUPERVISOR_ESTRATEGIA_REST_FOR_ONE`
5763        // to also read `"OneForOne"`) would silently reroute every
5764        // downstream operator's per-strategy dispatch onto the sibling
5765        // arm's reconcile branch and pass every propagation-probe test
5766        // that expected only the stale arm's value — the mis-strategied
5767        // subtree would come up with the wrong sibling-restart posture
5768        // on every subsequent failure. Peer of the sibling four-way
5769        // distinct pin `supervisor_key_consts_are_pairwise_distinct`
5770        // (40cc4e5) on the top-level `SUPERVISOR_KEY_*` axis.
5771        let all = [
5772            crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE,
5773            crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL,
5774            crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE,
5775            crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE,
5776        ];
5777        for (i, a) in all.iter().enumerate() {
5778            for (j, b) in all.iter().enumerate() {
5779                if i != j {
5780                    assert_ne!(
5781                        a, b,
5782                        "SUPERVISOR_ESTRATEGIA_* consts must be pairwise distinct \
5783                         — got duplicate {a:?} at indices {i} and {j}",
5784                    );
5785                }
5786            }
5787        }
5788    }
5789
5790    #[test]
5791    fn restart_strategy_display_routes_through_as_str_helper() {
5792        // The fail-before-pass-after pin on the first half of the
5793        // three-path convergence: pre-convergence the sibling
5794        // OTP-shape typed enum [`RestartStrategy`] carried a
5795        // [`std::fmt::Display`] surface via its
5796        // `#[discriminant(also_display)]` gen-platform derive route,
5797        // which arrived kebab-case as `"one-for-one"` /
5798        // `"one-for-all"` / `"rest-for-one"` /
5799        // `"simple-one-for-one"` while the wire format ran as
5800        // PascalCase `"OneForOne"` / `"OneForAll"` / `"RestForOne"` /
5801        // `"SimpleOneForOne"` through the un-`rename`d serde derive.
5802        // Every consumer reaching for a strategy byte-string past the
5803        // wire format had to pick between three paths
5804        // ([`RestartStrategy::as_str`], the `Serialize` derive's
5805        // serialized string, or `format!("{v}")` on the
5806        // discriminant-Display route), any two of which a future
5807        // variant rename or `#[serde(rename_all = "kebab-case")]`
5808        // attribute would silently desynchronize. Wiring
5809        // [`std::fmt::Display`] through [`RestartStrategy::as_str`]
5810        // closes the third path: every `format!("{v}")` call reaches
5811        // the same lifted [`crate::render::SUPERVISOR_ESTRATEGIA_*`]
5812        // const the wire format and the [`RestartStrategy::as_str`]
5813        // helper already route through, so a future variant rename
5814        // lands at exactly one place. Pin the routing here so a future
5815        // `impl std::fmt::Display for RestartStrategy`
5816        // reimplementation that hand-rolls the arms instead of
5817        // delegating to [`RestartStrategy::as_str`] fails at
5818        // caixa-core build time. Peer of the M3
5819        // `placement_strategy_display_routes_through_as_str_helper`
5820        // (cc8f749) which the M3 axis converged first.
5821        for &variant in RestartStrategy::ALL {
5822            assert_eq!(
5823                variant.to_string(),
5824                variant.as_str(),
5825                "RestartStrategy::{variant:?} Display must route through \
5826                 RestartStrategy::as_str (single source of truth: the lifted \
5827                 SUPERVISOR_ESTRATEGIA_* const the wire format also emits)"
5828            );
5829        }
5830    }
5831
5832    #[test]
5833    fn restart_strategy_display_matches_serialized_wire_byte_string() {
5834        // The fail-before-pass-after pin on the second half of the
5835        // three-path convergence: `Display` (user-facing text) agrees
5836        // byte-for-byte with the `Serialize` derive's wire format
5837        // (canonical camelCase-schema `SUPERVISOR_KEY_ESTRATEGIA`
5838        // scalar) on every variant. Pre-convergence the two paths
5839        // were structurally independent — a future
5840        // `#[serde(rename_all = "kebab-case")]` attribute on the
5841        // enum would silently rebrand the emitted wire scalar
5842        // (`one-for-one`, `one-for-all`, `rest-for-one`,
5843        // `simple-one-for-one`) while every consumer that
5844        // pretty-prints the strategy (the future wasm-operator's
5845        // per-supervisor sibling-restart-strategy diagnostic line,
5846        // the future `feira app graph` per-supervisor strategy line,
5847        // the future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR
5848        // materializer's admission-webhook rejection body) would
5849        // still emit the PascalCase form the `as_str` / `Display`
5850        // route returns, with the mismatch surfacing at consumer
5851        // parse time / operator dispatch time far from the source
5852        // rebrand commit. Pin the two paths byte-for-byte here so any
5853        // future serde-attribute or variant-rename drift is a
5854        // caixa-core-build-time test failure at this call, not a
5855        // silent per-consumer dispatch miss. Peer of the M3
5856        // `placement_strategy_display_matches_serialized_wire_byte_string`
5857        // (cc8f749) which the M3 axis converged first.
5858        for &variant in RestartStrategy::ALL {
5859            let wire = serde_json::to_string(&variant).unwrap();
5860            let unquoted = wire
5861                .strip_prefix('"')
5862                .and_then(|s| s.strip_suffix('"'))
5863                .expect("serialized RestartStrategy is a JSON string");
5864            assert_eq!(
5865                variant.to_string(),
5866                unquoted,
5867                "RestartStrategy::{variant:?} Display byte-string must match the \
5868                 Serialize derive's wire byte-string (three-path convergence: \
5869                 Display + as_str + Serialize all resolve to the same \
5870                 SUPERVISOR_ESTRATEGIA_* const)"
5871            );
5872        }
5873    }
5874
5875    #[test]
5876    fn restart_strategy_all_enumerates_every_variant_exactly_once() {
5877        // Fail-before-pass-after pin on the [`RestartStrategy::ALL`]
5878        // exhaustive-iteration surface: every variant appears exactly
5879        // once, and the slice length matches the arm count of the
5880        // closed set. Every consumer that walks the accepted-strategy
5881        // set (a future `feira supervisor --estrategia …` CLI-side
5882        // arg-parse's "did you mean" hint, a future M4 admission-
5883        // webhook's rejection body naming the accepted-`:estrategia`
5884        // list, the [`RestartStrategy::from_wire`] reverse-projection
5885        // consumers that iterate the accept-set for diagnostic
5886        // rendering) reads through this slice, so a future arm addition
5887        // that grows the enum but forgets to grow [`Self::ALL`]
5888        // silently truncates every downstream consumer's accept-set at
5889        // the same pre-addition boundary — this pin fails at caixa-core
5890        // build time on the pairwise-distinct + arm-count invariants.
5891        //
5892        // Peer of the sibling [`crate::CaixaKind::ALL`] (6b1f4fb) /
5893        // [`crate::aplicacao::PlacementStrategy::ALL`] (18c7342) /
5894        // [`crate::aplicacao::RateLimitUnit::ALL`] (6bce03d) /
5895        // [`crate::dep::DepList::ALL`] (45ee563) exhaustive-iteration
5896        // pins on the peer closed-set typed-enum axes.
5897        let all: &[RestartStrategy] = RestartStrategy::ALL;
5898        assert_eq!(
5899            all.len(),
5900            4,
5901            "RestartStrategy::ALL must enumerate every variant of the \
5902             four-arm closed set (OneForOne, OneForAll, RestForOne, \
5903             SimpleOneForOne); got {all:?}"
5904        );
5905        for (i, a) in all.iter().enumerate() {
5906            for (j, b) in all.iter().enumerate() {
5907                if i != j {
5908                    assert_ne!(
5909                        a, b,
5910                        "RestartStrategy::ALL must carry every variant exactly \
5911                         once — got duplicate {a:?} at indices {i} and {j}"
5912                    );
5913                }
5914            }
5915        }
5916        for variant in [
5917            RestartStrategy::OneForOne,
5918            RestartStrategy::OneForAll,
5919            RestartStrategy::RestForOne,
5920            RestartStrategy::SimpleOneForOne,
5921        ] {
5922            assert!(
5923                all.contains(&variant),
5924                "RestartStrategy::ALL must contain {variant:?} — a future arm \
5925                 addition that grows the enum but forgets to grow the ALL slice \
5926                 silently truncates every downstream consumer's accept-set at \
5927                 the pre-addition boundary"
5928            );
5929        }
5930    }
5931
5932    #[test]
5933    fn restart_strategy_from_wire_accepts_every_lifted_constant() {
5934        // Fail-before-pass-after pin on the forward accept-set of the
5935        // [`RestartStrategy::from_wire`] reverse projection: every
5936        // canonical [`crate::render::SUPERVISOR_ESTRATEGIA_*`]
5937        // constant the [`RestartStrategy::as_str`] emitter walks parses
5938        // back to its paired variant. Any future arm addition that
5939        // grows the emitter's `as_str` match but forgets to grow the
5940        // parser's `from_wire` match silently splits the two halves of
5941        // the round-trip — the wire byte-string one non-serde consumer
5942        // parses from the one the emitter wrote — with the failure
5943        // surfacing at parse time far from the rebrand commit. Pinning
5944        // the four-arm accept-set here catches the drift at caixa-core
5945        // build time.
5946        //
5947        // Peer of the sibling [`crate::CaixaKind::from_wire`] (2aa6d23)
5948        // + [`crate::aplicacao::PlacementStrategy::from_wire`] (18c7342)
5949        // accept-set pins on the peer closed-set typed-enum `str → Self`
5950        // axes.
5951        for (wire, expected) in [
5952            (
5953                crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ONE,
5954                RestartStrategy::OneForOne,
5955            ),
5956            (
5957                crate::render::SUPERVISOR_ESTRATEGIA_ONE_FOR_ALL,
5958                RestartStrategy::OneForAll,
5959            ),
5960            (
5961                crate::render::SUPERVISOR_ESTRATEGIA_REST_FOR_ONE,
5962                RestartStrategy::RestForOne,
5963            ),
5964            (
5965                crate::render::SUPERVISOR_ESTRATEGIA_SIMPLE_ONE_FOR_ONE,
5966                RestartStrategy::SimpleOneForOne,
5967            ),
5968        ] {
5969            let parsed = RestartStrategy::from_wire(wire).unwrap_or_else(|| {
5970                panic!(
5971                    "RestartStrategy::from_wire({wire:?}) must accept every \
5972                     SUPERVISOR_ESTRATEGIA_* constant — got None for the \
5973                     lifted canonical byte-string that RestartStrategy::{expected:?} \
5974                     serializes as under SUPERVISOR_KEY_ESTRATEGIA"
5975                )
5976            });
5977            assert_eq!(
5978                parsed, expected,
5979                "RestartStrategy::from_wire({wire:?}) must return \
5980                 RestartStrategy::{expected:?}; got RestartStrategy::{parsed:?}"
5981            );
5982        }
5983    }
5984
5985    #[test]
5986    fn restart_strategy_from_wire_round_trips_through_as_str() {
5987        // Fail-before-pass-after pin on the closed round-trip between
5988        // the forward [`RestartStrategy::as_str`] emitter and the
5989        // reverse [`RestartStrategy::from_wire`] parser: for every
5990        // variant in [`RestartStrategy::ALL`], parsing the emitter's
5991        // output must return exactly the same variant. Any per-arm
5992        // divergence — a future arm added to `as_str` but not
5993        // `from_wire`, an accidental copy-paste flip in one but not
5994        // the other — silently splits the emit and parse halves and
5995        // the failure surfaces at consumer parse time far from the
5996        // drift site. The `ALL`-iterating shape means a future arm
5997        // addition picks up the coverage by construction.
5998        //
5999        // Peer of the sibling
6000        // [`crate::aplicacao::tests::placement_strategy_from_wire_round_trips_through_as_str`]
6001        // (18c7342) round-trip pin on
6002        // [`crate::aplicacao::PlacementStrategy::from_wire`] and
6003        // [`crate::kind::tests::caixa_kind_wire_round_trips_through_from_wire`]
6004        // (6b1f4fb) round-trip pin on [`crate::CaixaKind::from_wire`].
6005        for &variant in RestartStrategy::ALL {
6006            let wire = variant.as_str();
6007            let parsed = RestartStrategy::from_wire(wire).unwrap_or_else(|| {
6008                panic!(
6009                    "RestartStrategy::from_wire(RestartStrategy::{variant:?}.as_str()) \
6010                     must be Some({variant:?}) — the two halves of the round-trip \
6011                     dispatch on the same lifted SUPERVISOR_ESTRATEGIA_* consts; \
6012                     got None on wire byte-string {wire:?}"
6013                )
6014            });
6015            assert_eq!(
6016                parsed, variant,
6017                "RestartStrategy::from_wire(RestartStrategy::{variant:?}.as_str()) \
6018                 must round-trip to the same variant; got {parsed:?}"
6019            );
6020        }
6021    }
6022
6023    #[test]
6024    fn restart_strategy_from_wire_rejects_unknown_byte_strings() {
6025        // Fail-before-pass-after pin on the closed-set refusal
6026        // discipline of [`RestartStrategy::from_wire`]: every
6027        // byte-string outside the four-arm accept-set returns `None`
6028        // rather than silently collapsing onto the [`Default`]
6029        // (`OneForOne`) arm or an arbitrary neighbor. The refusal set
6030        // exercised here sweeps the load-bearing drift shapes: the
6031        // empty string (a stripped serde-attribute drift), all-
6032        // whitespace strings (the canonical text-editor accidental
6033        // padding shape), the kebab-case dispatcher-catalog identities
6034        // (`"one-for-one"` / `"one-for-all"` / `"rest-for-one"` /
6035        // `"simple-one-for-one"` — the [`gen_platform::FromStrKind`]-
6036        // derived [`std::str::FromStr`] accept-set, which parses the
6037        // *other* axis of this enum's two-axis split and must not leak
6038        // into the `from_wire` PascalCase-wire accept-set), the
6039        // lowercased single-word forms (`"oneforone"`), the padded
6040        // canonical scalar (`" OneForOne "`), the trailing-newline
6041        // shapes (`"OneForOne\n"`), and neighboring-but-unknown arms
6042        // (`"AllForOne"` — the canonical typo direction).
6043        //
6044        // Peer of the sibling
6045        // [`crate::kind::tests::caixa_kind_from_wire_rejects_unknown_byte_strings`]
6046        // (2aa6d23) +
6047        // [`crate::aplicacao::tests::placement_strategy_from_wire_rejects_unknown_byte_strings`]
6048        // (18c7342) refusal pins on the peer closed-set typed-enum
6049        // axes.
6050        for bad in [
6051            "",
6052            " ",
6053            "\n",
6054            "\t",
6055            "one-for-one",
6056            "one-for-all",
6057            "rest-for-one",
6058            "simple-one-for-one",
6059            "oneforone",
6060            "OneForOnes",
6061            "one_for_one",
6062            "one for one",
6063            "ONEFORONE",
6064            "OneForOne ",
6065            " OneForOne",
6066            " SimpleOneForOne ",
6067            "OneForOne\n",
6068            "restforone",
6069            "REST_FOR_ONE",
6070            "AllForOne",
6071            "Simple",
6072            "?",
6073        ] {
6074            assert!(
6075                RestartStrategy::from_wire(bad).is_none(),
6076                "RestartStrategy::from_wire({bad:?}) must return None — the \
6077                 parser's accept-set is exactly the four RestartStrategy::as_str \
6078                 outputs (OneForOne, OneForAll, RestForOne, SimpleOneForOne), \
6079                 and this byte-string is outside that closed set"
6080            );
6081        }
6082    }
6083
6084    #[test]
6085    fn restart_strategy_from_wire_matches_serialize_derive_wire_byte_string() {
6086        // Fail-before-pass-after pin on the fourth path of the four-path
6087        // convergence: `from_wire` (the reverse projection) inverts the
6088        // `Serialize` derive's wire byte-string on every variant.
6089        // Together with the pre-existing three-path convergence
6090        // (`Display` + `as_str` + `Serialize` all resolve to the same
6091        // lifted [`crate::render::SUPERVISOR_ESTRATEGIA_*`] const,
6092        // pinned by
6093        // [`restart_strategy_display_matches_serialized_wire_byte_string`])
6094        // this closes the round-trip: the wire byte-string the
6095        // `Serialize` derive emits parses back to the same variant
6096        // through `from_wire`, so any future serde-attribute or variant-
6097        // rename drift on the emit half now surfaces as a matched drift
6098        // on the parse half at caixa-core build time — the two halves
6099        // migrate as a unit through the lifted consts on any future
6100        // rename, and the round-trip cannot silently split.
6101        //
6102        // Peer of the sibling
6103        // [`crate::aplicacao::tests::placement_strategy_from_wire_matches_serialize_derive_wire_byte_string`]
6104        // (18c7342) wire-format pin on
6105        // [`crate::aplicacao::PlacementStrategy::from_wire`].
6106        for &variant in RestartStrategy::ALL {
6107            let wire = serde_json::to_string(&variant).unwrap();
6108            let unquoted = wire
6109                .strip_prefix('"')
6110                .and_then(|s| s.strip_suffix('"'))
6111                .expect("serialized RestartStrategy is a JSON string");
6112            let parsed = RestartStrategy::from_wire(unquoted).unwrap_or_else(|| {
6113                panic!(
6114                    "RestartStrategy::from_wire({unquoted:?}) must accept the \
6115                     Serialize derive's wire byte-string for \
6116                     RestartStrategy::{variant:?} — the four-path convergence \
6117                     (Display + as_str + Serialize + from_wire) resolves through \
6118                     the same lifted SUPERVISOR_ESTRATEGIA_* const; got None"
6119                )
6120            });
6121            assert_eq!(
6122                parsed, variant,
6123                "RestartStrategy::from_wire of the Serialize derive's wire \
6124                 byte-string for RestartStrategy::{variant:?} must round-trip \
6125                 to the same variant; got {parsed:?}"
6126            );
6127        }
6128    }
6129
6130    // ── drift-detection: serde-derive-to-SUPERVISOR_CHILD_RESTART_* identity ─
6131
6132    #[test]
6133    fn restart_policy_variants_serialize_to_lifted_scalar_values() {
6134        // The fail-before-pass-after pin: pre-lift there was no
6135        // single-source binding between the [`RestartPolicy`] variant
6136        // name the un-`rename`d `Serialize` derive emits under
6137        // [`crate::render::SUPERVISOR_CHILD_KEY_RESTART`] and the
6138        // byte-string every downstream cluster-side dispatcher (the
6139        // future wasm-operator's per-child post-exit restart-decision
6140        // branch, the future M4 `mesh.pleme.io/v1alpha1/Supervisor` CR
6141        // materializer's admission-time enum-arm bind, the
6142        // `caixa-operator`'s hierarchical reconciliation scheduler's
6143        // per-child-policy fan-out) probes verbatim. A future
6144        // `#[serde(rename_all = "kebab-case")]` attribute on the enum —
6145        // or a per-variant `#[serde(rename = "…")]` override, or a
6146        // variant rename in the source — would silently rebrand the
6147        // emitted scalar under one spelling while every downstream
6148        // dispatcher still probed the other, with the failure surfacing
6149        // at the operator's reconcile posture (children coming up under
6150        // the `default()` `Permanent` arm rather than the typed slot's
6151        // declared policy — a `:temporary` `oneShot` child would be
6152        // restarted on clean exit, treating the successful-completion
6153        // signal as failure and re-running the completion-terminal
6154        // one-shot indefinitely; a `:transient` child that clean-exited
6155        // would be restarted, masking the clean-completion contract)
6156        // far from the source rebrand commit and with no field naming
6157        // the drift. Pinning the two paths (the `Serialize` derive's
6158        // serialized string AND the [`RestartPolicy::as_str`] helper)
6159        // to the same three lifted
6160        // [`crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT`] /
6161        // [`crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY`] /
6162        // [`crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT`]
6163        // byte-strings makes any future drift on either endpoint fail
6164        // here at caixa-core build time. Peer of the sibling
6165        // [`restart_strategy_variants_serialize_to_lifted_scalar_values`]
6166        // (09ffb2d) on the per-supervisor sibling-restart-strategy axis
6167        // and the M3
6168        // `placement_strategy_variants_serialize_to_lifted_scalar_values`
6169        // (3f0e21c) on the per-Aplicacao distribution-strategy axis —
6170        // same three-path-convergence discipline, extended to close the
6171        // third OTP-shaped closed-enum discriminator axis on the caixa
6172        // typed surface (per-child restart-decision policy).
6173        for (variant, expected) in [
6174            (
6175                RestartPolicy::Permanent,
6176                crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT,
6177            ),
6178            (
6179                RestartPolicy::Temporary,
6180                crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY,
6181            ),
6182            (
6183                RestartPolicy::Transient,
6184                crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT,
6185            ),
6186        ] {
6187            let json = serde_json::to_string(&variant).unwrap();
6188            assert_eq!(
6189                json,
6190                format!("\"{expected}\""),
6191                "RestartPolicy::{variant:?} must serialize to {expected:?}"
6192            );
6193            assert_eq!(
6194                variant.as_str(),
6195                expected,
6196                "RestartPolicy::{variant:?}.as_str() must return the lifted \
6197                 SUPERVISOR_CHILD_RESTART_* constant"
6198            );
6199        }
6200    }
6201
6202    #[test]
6203    fn supervisor_child_restart_consts_are_pairwise_distinct() {
6204        // Cross-arm drift-detection pin: a future collapse of two
6205        // canonical variant byte-strings onto the same value (e.g. an
6206        // accidental copy-paste flip of `SUPERVISOR_CHILD_RESTART_TRANSIENT`
6207        // to also read `"Permanent"`) would silently reroute every
6208        // downstream operator's per-child-policy dispatch onto the
6209        // sibling arm's reconcile branch and pass every propagation-probe
6210        // test that expected only the stale arm's value — a `:transient`
6211        // child would come up under the `:permanent` restart-decision
6212        // posture on every subsequent clean exit, so a completion-terminal
6213        // child would be restarted indefinitely against its declared
6214        // policy. Peer of the sibling
6215        // [`supervisor_estrategia_consts_are_pairwise_distinct`]
6216        // (09ffb2d) on the per-supervisor sibling-restart-strategy axis
6217        // and the four-way distinct pin
6218        // `supervisor_key_consts_are_pairwise_distinct` (40cc4e5) on the
6219        // top-level `SUPERVISOR_KEY_*` axis.
6220        let all = [
6221            crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT,
6222            crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY,
6223            crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT,
6224        ];
6225        for (i, a) in all.iter().enumerate() {
6226            for (j, b) in all.iter().enumerate() {
6227                if i != j {
6228                    assert_ne!(
6229                        a, b,
6230                        "SUPERVISOR_CHILD_RESTART_* consts must be pairwise distinct \
6231                         — got duplicate {a:?} at indices {i} and {j}",
6232                    );
6233                }
6234            }
6235        }
6236    }
6237
6238    #[test]
6239    fn restart_policy_display_routes_through_as_str_helper() {
6240        // The fail-before-pass-after pin on the first half of the
6241        // three-path convergence: pre-convergence [`RestartPolicy`]
6242        // carried a [`std::fmt::Display`] surface via its
6243        // `#[discriminant(also_display)]` gen-platform derive route,
6244        // which arrived kebab-case as `"permanent"` / `"temporary"`
6245        // / `"transient"` on this three-arm enum (whose variant
6246        // names each collapse to their own lowercase form under the
6247        // kebab-case transform) while the wire format ran as
6248        // PascalCase `"Permanent"` / `"Temporary"` / `"Transient"`
6249        // through the un-`rename`d serde derive. Every consumer
6250        // reaching for a policy byte-string past the wire format had
6251        // to pick between three paths ([`RestartPolicy::as_str`],
6252        // the `Serialize` derive's serialized string, or
6253        // `format!("{v}")` on the discriminant-Display route), any
6254        // two of which a future variant rename or
6255        // `#[serde(rename_all = "kebab-case")]` attribute would
6256        // silently desynchronize. Wiring [`std::fmt::Display`]
6257        // through [`RestartPolicy::as_str`] closes the third path:
6258        // every `format!("{v}")` call reaches the same lifted
6259        // [`crate::render::SUPERVISOR_CHILD_RESTART_*`] const the
6260        // wire format and the [`RestartPolicy::as_str`] helper
6261        // already route through, so a future variant rename lands at
6262        // exactly one place. Pin the routing here so a future
6263        // `impl std::fmt::Display for RestartPolicy`
6264        // reimplementation that hand-rolls the arms instead of
6265        // delegating to [`RestartPolicy::as_str`] fails at
6266        // caixa-core build time. Peer of the sibling
6267        // [`restart_strategy_display_routes_through_as_str_helper`]
6268        // on the per-supervisor sibling-restart-strategy axis and
6269        // the M3
6270        // `placement_strategy_display_routes_through_as_str_helper`
6271        // (cc8f749) — the third of three OTP-shape closed-enum
6272        // discriminator axes on the caixa typed surface now
6273        // converged onto the same three-path
6274        // (Display → as_str → lifted const) discipline.
6275        for variant in [
6276            RestartPolicy::Permanent,
6277            RestartPolicy::Temporary,
6278            RestartPolicy::Transient,
6279        ] {
6280            assert_eq!(
6281                variant.to_string(),
6282                variant.as_str(),
6283                "RestartPolicy::{variant:?} Display must route through \
6284                 RestartPolicy::as_str (single source of truth: the lifted \
6285                 SUPERVISOR_CHILD_RESTART_* const the wire format also emits)"
6286            );
6287        }
6288    }
6289
6290    #[test]
6291    fn restart_policy_display_matches_serialized_wire_byte_string() {
6292        // The fail-before-pass-after pin on the second half of the
6293        // three-path convergence: `Display` (user-facing text) agrees
6294        // byte-for-byte with the `Serialize` derive's wire format
6295        // (canonical camelCase-schema `SUPERVISOR_CHILD_KEY_RESTART`
6296        // scalar) on every variant. Pre-convergence the two paths
6297        // were structurally independent — a future
6298        // `#[serde(rename_all = "kebab-case")]` attribute on the
6299        // enum would silently rebrand the emitted wire scalar
6300        // (`permanent`, `temporary`, `transient`) while every
6301        // consumer that pretty-prints the policy (the future
6302        // wasm-operator's per-child post-exit restart-decision
6303        // diagnostic line, the future `feira app graph` per-child
6304        // restart column, the future M4
6305        // `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's
6306        // per-child admission-webhook rejection body) would still
6307        // emit the PascalCase form the `as_str` / `Display` route
6308        // returns, with the mismatch surfacing at consumer parse
6309        // time / operator dispatch time far from the source rebrand
6310        // commit. Pin the two paths byte-for-byte here so any future
6311        // serde-attribute or variant-rename drift is a
6312        // caixa-core-build-time test failure at this call, not a
6313        // silent per-consumer dispatch miss. Peer of the sibling
6314        // [`restart_strategy_display_matches_serialized_wire_byte_string`]
6315        // on the per-supervisor sibling-restart-strategy axis and
6316        // the M3
6317        // `placement_strategy_display_matches_serialized_wire_byte_string`
6318        // (cc8f749).
6319        for variant in [
6320            RestartPolicy::Permanent,
6321            RestartPolicy::Temporary,
6322            RestartPolicy::Transient,
6323        ] {
6324            let wire = serde_json::to_string(&variant).unwrap();
6325            let unquoted = wire
6326                .strip_prefix('"')
6327                .and_then(|s| s.strip_suffix('"'))
6328                .expect("serialized RestartPolicy is a JSON string");
6329            assert_eq!(
6330                variant.to_string(),
6331                unquoted,
6332                "RestartPolicy::{variant:?} Display byte-string must match the \
6333                 Serialize derive's wire byte-string (three-path convergence: \
6334                 Display + as_str + Serialize all resolve to the same \
6335                 SUPERVISOR_CHILD_RESTART_* const)"
6336            );
6337        }
6338    }
6339
6340    #[test]
6341    fn restart_policy_all_enumerates_every_variant_exactly_once() {
6342        // Fail-before-pass-after pin on the [`RestartPolicy::ALL`]
6343        // exhaustive-iteration surface: every variant appears exactly
6344        // once, and the slice length matches the arm count of the
6345        // closed set. Every consumer that walks the accepted-policy
6346        // set (a future `feira supervisor --restart …` CLI-side
6347        // arg-parse's "did you mean" hint, a future M4 admission-
6348        // webhook's per-child rejection body naming the accepted-
6349        // `:restart` list, the [`RestartPolicy::from_wire`] reverse-
6350        // projection consumers that iterate the accept-set for
6351        // diagnostic rendering) reads through this slice, so a future
6352        // arm addition that grows the enum but forgets to grow
6353        // [`Self::ALL`] silently truncates every downstream consumer's
6354        // accept-set at the same pre-addition boundary — this pin
6355        // fails at caixa-core build time on the pairwise-distinct +
6356        // arm-count invariants.
6357        //
6358        // Peer of the sibling [`RestartStrategy::ALL`] (4eec29c) /
6359        // [`crate::CaixaKind::ALL`] (6b1f4fb) /
6360        // [`crate::aplicacao::PlacementStrategy::ALL`] (18c7342) /
6361        // [`crate::aplicacao::RateLimitUnit::ALL`] (6bce03d) /
6362        // [`crate::dep::DepList::ALL`] (45ee563) exhaustive-iteration
6363        // pins on the peer closed-set typed-enum axes.
6364        let all: &[RestartPolicy] = RestartPolicy::ALL;
6365        assert_eq!(
6366            all.len(),
6367            3,
6368            "RestartPolicy::ALL must enumerate every variant of the \
6369             three-arm closed set (Permanent, Temporary, Transient); \
6370             got {all:?}"
6371        );
6372        for (i, a) in all.iter().enumerate() {
6373            for (j, b) in all.iter().enumerate() {
6374                if i != j {
6375                    assert_ne!(
6376                        a, b,
6377                        "RestartPolicy::ALL must carry every variant exactly \
6378                         once — got duplicate {a:?} at indices {i} and {j}"
6379                    );
6380                }
6381            }
6382        }
6383        for variant in [
6384            RestartPolicy::Permanent,
6385            RestartPolicy::Temporary,
6386            RestartPolicy::Transient,
6387        ] {
6388            assert!(
6389                all.contains(&variant),
6390                "RestartPolicy::ALL must contain {variant:?} — a future arm \
6391                 addition that grows the enum but forgets to grow the ALL slice \
6392                 silently truncates every downstream consumer's accept-set at \
6393                 the pre-addition boundary"
6394            );
6395        }
6396    }
6397
6398    #[test]
6399    fn restart_policy_from_wire_accepts_every_lifted_constant() {
6400        // Fail-before-pass-after pin on the forward accept-set of the
6401        // [`RestartPolicy::from_wire`] reverse projection: every
6402        // canonical [`crate::render::SUPERVISOR_CHILD_RESTART_*`]
6403        // constant the [`RestartPolicy::as_str`] emitter walks parses
6404        // back to its paired variant. Any future arm addition that
6405        // grows the emitter's `as_str` match but forgets to grow the
6406        // parser's `from_wire` match silently splits the two halves of
6407        // the round-trip — the wire byte-string one non-serde consumer
6408        // parses from the one the emitter wrote — with the failure
6409        // surfacing at the operator's reconcile posture (a `:temporary`
6410        // `oneShot` child restarted on clean exit, a `:transient` child
6411        // restarted after clean completion) far from the rebrand
6412        // commit. Pinning the three-arm accept-set here catches the
6413        // drift at caixa-core build time.
6414        //
6415        // Peer of the sibling [`RestartStrategy::from_wire`] (4eec29c)
6416        // + [`crate::CaixaKind::from_wire`] (2aa6d23)
6417        // + [`crate::aplicacao::PlacementStrategy::from_wire`] (18c7342)
6418        // accept-set pins on the peer closed-set typed-enum `str → Self`
6419        // axes.
6420        for (wire, expected) in [
6421            (
6422                crate::render::SUPERVISOR_CHILD_RESTART_PERMANENT,
6423                RestartPolicy::Permanent,
6424            ),
6425            (
6426                crate::render::SUPERVISOR_CHILD_RESTART_TEMPORARY,
6427                RestartPolicy::Temporary,
6428            ),
6429            (
6430                crate::render::SUPERVISOR_CHILD_RESTART_TRANSIENT,
6431                RestartPolicy::Transient,
6432            ),
6433        ] {
6434            let parsed = RestartPolicy::from_wire(wire).unwrap_or_else(|| {
6435                panic!(
6436                    "RestartPolicy::from_wire({wire:?}) must accept every \
6437                     SUPERVISOR_CHILD_RESTART_* constant — got None for the \
6438                     lifted canonical byte-string that RestartPolicy::{expected:?} \
6439                     serializes as under SUPERVISOR_CHILD_KEY_RESTART"
6440                )
6441            });
6442            assert_eq!(
6443                parsed, expected,
6444                "RestartPolicy::from_wire({wire:?}) must return \
6445                 RestartPolicy::{expected:?}; got RestartPolicy::{parsed:?}"
6446            );
6447        }
6448    }
6449
6450    #[test]
6451    fn restart_policy_from_wire_round_trips_through_as_str() {
6452        // Fail-before-pass-after pin on the closed round-trip between
6453        // the forward [`RestartPolicy::as_str`] emitter and the
6454        // reverse [`RestartPolicy::from_wire`] parser: for every
6455        // variant in [`RestartPolicy::ALL`], parsing the emitter's
6456        // output must return exactly the same variant. Any per-arm
6457        // divergence — a future arm added to `as_str` but not
6458        // `from_wire`, an accidental copy-paste flip in one but not
6459        // the other — silently splits the emit and parse halves and
6460        // the failure surfaces at consumer parse time far from the
6461        // drift site. The `ALL`-iterating shape means a future arm
6462        // addition picks up the coverage by construction.
6463        //
6464        // Peer of the sibling
6465        // [`restart_strategy_from_wire_round_trips_through_as_str`]
6466        // (4eec29c) round-trip pin on
6467        // [`RestartStrategy::from_wire`] and the M3
6468        // [`crate::aplicacao::tests::placement_strategy_from_wire_round_trips_through_as_str`]
6469        // (18c7342) round-trip pin on
6470        // [`crate::aplicacao::PlacementStrategy::from_wire`].
6471        for &variant in RestartPolicy::ALL {
6472            let wire = variant.as_str();
6473            let parsed = RestartPolicy::from_wire(wire).unwrap_or_else(|| {
6474                panic!(
6475                    "RestartPolicy::from_wire(RestartPolicy::{variant:?}.as_str()) \
6476                     must be Some({variant:?}) — the two halves of the round-trip \
6477                     dispatch on the same lifted SUPERVISOR_CHILD_RESTART_* consts; \
6478                     got None on wire byte-string {wire:?}"
6479                )
6480            });
6481            assert_eq!(
6482                parsed, variant,
6483                "RestartPolicy::from_wire(RestartPolicy::{variant:?}.as_str()) \
6484                 must round-trip to the same variant; got {parsed:?}"
6485            );
6486        }
6487    }
6488
6489    #[test]
6490    fn restart_policy_from_wire_rejects_unknown_byte_strings() {
6491        // Fail-before-pass-after pin on the closed-set refusal
6492        // discipline of [`RestartPolicy::from_wire`]: every
6493        // byte-string outside the three-arm accept-set returns `None`
6494        // rather than silently collapsing onto the [`Default`]
6495        // (`Permanent`) arm or an arbitrary neighbor. The refusal set
6496        // exercised here sweeps the load-bearing drift shapes: the
6497        // empty string (a stripped serde-attribute drift), all-
6498        // whitespace strings (the canonical text-editor accidental
6499        // padding shape), the kebab-case dispatcher-catalog identities
6500        // (`"permanent"` / `"temporary"` / `"transient"` — the
6501        // [`gen_platform::FromStrKind`]-derived [`std::str::FromStr`]
6502        // accept-set, which parses the *other* axis of this enum's
6503        // two-axis split and must not leak into the `from_wire`
6504        // PascalCase-wire accept-set — a lowercase leak here would
6505        // silently accept the operator's kebab-case
6506        // dispatcher-catalog probe under the wire-axis parser and mis-
6507        // route a `:permanent` intent), the padded canonical scalar
6508        // (`" Permanent "`), the trailing-newline shapes
6509        // (`"Permanent\n"`), the uppercase-single-word forms
6510        // (`"PERMANENT"`), and neighboring-but-unknown arms
6511        // (`"Restart"` — the canonical typo direction toward the
6512        // sibling [`RestartStrategy`] enum's own wire-arm namespace).
6513        //
6514        // Peer of the sibling
6515        // [`restart_strategy_from_wire_rejects_unknown_byte_strings`]
6516        // (4eec29c) +
6517        // [`crate::kind::tests::caixa_kind_from_wire_rejects_unknown_byte_strings`]
6518        // (2aa6d23) +
6519        // [`crate::aplicacao::tests::placement_strategy_from_wire_rejects_unknown_byte_strings`]
6520        // (18c7342) refusal pins on the peer closed-set typed-enum
6521        // axes.
6522        for bad in [
6523            "",
6524            " ",
6525            "\n",
6526            "\t",
6527            "permanent",
6528            "temporary",
6529            "transient",
6530            "PERMANENT",
6531            "TEMPORARY",
6532            "TRANSIENT",
6533            "Permanents",
6534            "Permanent ",
6535            " Permanent",
6536            " Transient ",
6537            "Permanent\n",
6538            "perma",
6539            "Trans",
6540            "OneForOne",
6541            "Restart",
6542            "?",
6543        ] {
6544            assert!(
6545                RestartPolicy::from_wire(bad).is_none(),
6546                "RestartPolicy::from_wire({bad:?}) must return None — the \
6547                 parser's accept-set is exactly the three RestartPolicy::as_str \
6548                 outputs (Permanent, Temporary, Transient), and this \
6549                 byte-string is outside that closed set"
6550            );
6551        }
6552    }
6553
6554    #[test]
6555    fn restart_policy_from_wire_matches_serialize_derive_wire_byte_string() {
6556        // Fail-before-pass-after pin on the fourth path of the four-path
6557        // convergence: `from_wire` (the reverse projection) inverts the
6558        // `Serialize` derive's wire byte-string on every variant.
6559        // Together with the pre-existing three-path convergence
6560        // (`Display` + `as_str` + `Serialize` all resolve to the same
6561        // lifted [`crate::render::SUPERVISOR_CHILD_RESTART_*`] const,
6562        // pinned by
6563        // [`restart_policy_display_matches_serialized_wire_byte_string`])
6564        // this closes the round-trip: the wire byte-string the
6565        // `Serialize` derive emits parses back to the same variant
6566        // through `from_wire`, so any future serde-attribute or variant-
6567        // rename drift on the emit half now surfaces as a matched drift
6568        // on the parse half at caixa-core build time — the two halves
6569        // migrate as a unit through the lifted consts on any future
6570        // rename, and the round-trip cannot silently split.
6571        //
6572        // Peer of the sibling
6573        // [`restart_strategy_from_wire_matches_serialize_derive_wire_byte_string`]
6574        // (4eec29c) wire-format pin on
6575        // [`RestartStrategy::from_wire`] and the M3
6576        // [`crate::aplicacao::tests::placement_strategy_from_wire_matches_serialize_derive_wire_byte_string`]
6577        // (18c7342) wire-format pin on
6578        // [`crate::aplicacao::PlacementStrategy::from_wire`].
6579        for &variant in RestartPolicy::ALL {
6580            let wire = serde_json::to_string(&variant).unwrap();
6581            let unquoted = wire
6582                .strip_prefix('"')
6583                .and_then(|s| s.strip_suffix('"'))
6584                .expect("serialized RestartPolicy is a JSON string");
6585            let parsed = RestartPolicy::from_wire(unquoted).unwrap_or_else(|| {
6586                panic!(
6587                    "RestartPolicy::from_wire({unquoted:?}) must accept the \
6588                     Serialize derive's wire byte-string for \
6589                     RestartPolicy::{variant:?} — the four-path convergence \
6590                     (Display + as_str + Serialize + from_wire) resolves through \
6591                     the same lifted SUPERVISOR_CHILD_RESTART_* const; got None"
6592                )
6593            });
6594            assert_eq!(
6595                parsed, variant,
6596                "RestartPolicy::from_wire of the Serialize derive's wire \
6597                 byte-string for RestartPolicy::{variant:?} must round-trip \
6598                 to the same variant; got {parsed:?}"
6599            );
6600        }
6601    }
6602
6603    // ── drift-detection: ChildSpec::nome accessor pins ────────────────────
6604    //
6605    // The M2 supervisor-tree sibling of the M3 `Membro::nome` (4a32abf) pin
6606    // pair (`membro_nome_returns_caixa_byte_equal_across_permutations` +
6607    // `membro_nome_borrows_from_caixa_storage`) — extended here to the M2
6608    // per-`:children` child-caixa `:nome` axis, sibling to the first M2
6609    // slot scalar accessor `UpgradeFromEntry::prior_versao` (75d27a8) on
6610    // the peer per-`:upgrade-from :from` axis. The three pins jointly
6611    // brace the accessor against every future silent detour that would
6612    // desynchronize it from the raw `.caixa` field access every consumer
6613    // previously open-coded.
6614
6615    #[test]
6616    fn child_spec_nome_returns_caixa_byte_equal_across_permutations() {
6617        // The canonical per-`:children` child-caixa `:nome`-scalar pin:
6618        // [`ChildSpec::nome`] must return the `:children :caixa` field
6619        // byte-for-byte across every DNS-1123-label value the upstream
6620        // [`crate::render::require_valid_dns_1123_label`] gate at
6621        // `SupervisorSpec::validate` admits. Peer of the sibling
6622        // `membro_nome_returns_caixa_byte_equal_across_permutations`
6623        // (4a32abf) pin on the M3 per-`:membros` axis — same "the
6624        // substrate-primitive accessor must byte-equal the raw field
6625        // access verbatim across every author-declared value" discipline
6626        // extended to the M2 supervisor-tree per-`:children` arm. Pins
6627        // against a future silent detour that re-normalized the child
6628        // identity (an accidental `.to_lowercase()` — every `:children
6629        // :caixa` is validated as a DNS-1123 label upstream, so any
6630        // re-normalization is redundant + a drift surface between the
6631        // validator and the accessor), a namespace-prefix rewrite (an
6632        // accidental `format!("{namespace}/{caixa}")` per-CR
6633        // fully-qualified rewrite that didn't land on the peer axes), or
6634        // a per-cluster alias stamp the future wasm-operator's
6635        // hierarchical reconciliation scheduler authors on one consumer
6636        // without the others. Five values sweep the accept-set the
6637        // DNS-1123 gate upstream admits (short single-word / dashed /
6638        // v-suffixed / mixed-digit child names).
6639        for name in [
6640            "worker",
6641            "cache-server",
6642            "scratch-job",
6643            "orders-v2",
6644            "session-8080",
6645        ] {
6646            let c = ChildSpec {
6647                caixa: name.into(),
6648                versao: "^0.1".into(),
6649                restart: RestartPolicy::Permanent,
6650            };
6651            assert_eq!(
6652                c.nome(),
6653                name,
6654                "ChildSpec::nome must return :children :caixa verbatim \
6655                 (got {:?}, expected {name:?})",
6656                c.nome(),
6657            );
6658            assert_eq!(
6659                c.nome(),
6660                c.caixa.as_str(),
6661                "ChildSpec::nome must byte-equal the .caixa field access",
6662            );
6663        }
6664    }
6665
6666    #[test]
6667    fn child_spec_nome_borrows_from_caixa_storage() {
6668        // The borrow-not-copy pin: [`ChildSpec::nome`] must return a
6669        // `&str` slice that borrows from the typed slot's own [`String`]
6670        // storage — same-address invariant with `c.caixa.as_str()`. Pins
6671        // against a future silent detour that allocated a fresh `String`
6672        // (`self.caixa.clone()` in the body would type-check but silently
6673        // drop the borrow, and every downstream consumer that assumed
6674        // the returned slice outlives `&self` would break on a stale-
6675        // reference use-after-free — the [`crate::render::insert_first_seen`]
6676        // dedup key at [`SupervisorSpec::validate`], the
6677        // [`validate_no_self_supervision`] equality check against the
6678        // parent's `:nome` string slice, the DNS-1123 gate's `&str`
6679        // borrow — each would silently misbehave if this accessor
6680        // produced a detached copy). Peer of the sibling
6681        // `membro_nome_borrows_from_caixa_storage` (4a32abf) pin on the
6682        // M3 per-`:membros` axis and the
6683        // `prior_versao_borrows_from_from_storage` (75d27a8) pin on the
6684        // first M2 slot scalar accessor.
6685        let c = ChildSpec {
6686            caixa: "worker".into(),
6687            versao: "^0.1".into(),
6688            restart: RestartPolicy::Permanent,
6689        };
6690        let name = c.nome();
6691        let caixa_slice = c.caixa.as_str();
6692        assert_eq!(
6693            name.as_ptr(),
6694            caixa_slice.as_ptr(),
6695            "ChildSpec::nome must borrow from the .caixa String's backing \
6696             storage — a fresh allocation here means the accessor no \
6697             longer names the substrate-primitive typed dispatch and \
6698             every downstream consumer would silently carry a detached \
6699             copy",
6700        );
6701        assert_eq!(
6702            name.len(),
6703            caixa_slice.len(),
6704            "ChildSpec::nome and .caixa.as_str() must byte-equal in length \
6705             as well as in address",
6706        );
6707    }
6708
6709    #[test]
6710    fn validate_gates_child_nome_through_lifted_accessor() {
6711        // Bilateral coherence pin: every `:children :caixa` that
6712        // [`SupervisorSpec::validate`] accepts is one
6713        // [`crate::render::require_valid_dns_1123_label`] accepts on the
6714        // accessor-projected value, and vice versa on the reject side.
6715        // This closes the "the validator reads through the accessor"
6716        // contract structurally — a future silent detour that made the
6717        // accessor return a different byte-string than the validator
6718        // gates against would surface here as a coverage mismatch, not
6719        // as an apply-time DNS-1123 rejection at
6720        // `metadata.name: Invalid value` far from the caixa.lisp source.
6721        // Peer of the M2 sibling
6722        // `validate_parses_prior_versao_through_lifted_accessor`
6723        // (75d27a8) on the per-`:upgrade-from :from` axis and the M3
6724        // `validate_membros` peer discipline.
6725        //
6726        // Accept-set sweep: five DNS-1123-label values the upstream gate
6727        // admits.
6728        for ok_name in ["a", "worker", "cache-server", "orders-v2", "svc-8080"] {
6729            let s = SupervisorSpec {
6730                children: vec![ChildSpec {
6731                    caixa: ok_name.into(),
6732                    versao: "^0.1".into(),
6733                    restart: RestartPolicy::Permanent,
6734                }],
6735                ..SupervisorSpec::default()
6736            };
6737            s.validate().unwrap_or_else(|e| {
6738                panic!(
6739                    "SupervisorSpec::validate must accept :children :caixa {ok_name:?} \
6740                     (upstream DNS-1123 gate accepts it): got {e:?}",
6741                );
6742            });
6743            let c = ChildSpec {
6744                caixa: ok_name.into(),
6745                versao: "^0.1".into(),
6746                restart: RestartPolicy::Permanent,
6747            };
6748            crate::render::require_valid_dns_1123_label(c.nome(), || (), |_reason| ())
6749                .unwrap_or_else(|()| {
6750                    panic!(
6751                        "require_valid_dns_1123_label must accept the accessor-projected \
6752                     :children :caixa {ok_name:?}",
6753                    );
6754                });
6755        }
6756        // Reject-set sweep: five DNS-1123-label-violating shapes the
6757        // upstream gate refuses (empty / uppercase / underscore / dot /
6758        // leading-hyphen). Every rejection at the validator must
6759        // correspond to a rejection when the accessor's projected value
6760        // is fed back through the shared gate.
6761        for bad_name in ["", "Worker", "my_worker", "team.worker", "-worker"] {
6762            let s = SupervisorSpec {
6763                children: vec![ChildSpec {
6764                    caixa: bad_name.into(),
6765                    versao: "^0.1".into(),
6766                    restart: RestartPolicy::Permanent,
6767                }],
6768                ..SupervisorSpec::default()
6769            };
6770            let err = s.validate().unwrap_err();
6771            assert!(
6772                matches!(
6773                    err,
6774                    SupervisorError::EmptyChildName | SupervisorError::ChildCaixaInvalid { .. }
6775                ),
6776                "SupervisorSpec::validate must reject :children :caixa {bad_name:?} \
6777                 via the DNS-1123 gate: got {err:?}",
6778            );
6779            let c = ChildSpec {
6780                caixa: bad_name.into(),
6781                versao: "^0.1".into(),
6782                restart: RestartPolicy::Permanent,
6783            };
6784            assert!(
6785                crate::render::require_valid_dns_1123_label(c.nome(), || (), |_reason| (),)
6786                    .is_err(),
6787                "require_valid_dns_1123_label must reject the accessor-projected \
6788                 :children :caixa {bad_name:?}",
6789            );
6790        }
6791    }
6792
6793    // ── drift-detection: ChildSpec::versao_requirement accessor pins ──────
6794    //
6795    // Sibling of the peer per-`:membros` `membro_versao_requirement_*`
6796    // (a40b0e3) pin pair on the M3 mesh-slot surface — extended here to the
6797    // M2 supervisor-tree per-`:children` child-`:versao` axis, sibling to
6798    // the just-landed [`ChildSpec::nome`] (57c61d0) child-`:nome` pin
6799    // trio on the peer per-`:children` `String`-carry axis. The three pins
6800    // jointly brace the accessor against every future silent detour that
6801    // would desynchronize it from the raw `.versao` field access the
6802    // requirement gate + error carrier previously open-coded.
6803    //
6804    // Closes the last unlifted per-`:children` `String`-carry axis: the
6805    // pair (`nome`, `versao_requirement`) now jointly projects the
6806    // (`.caixa`, `.versao`) field pair every OTP-shape supervisor-tree
6807    // consumer that fans on per-child identity + version pin reads,
6808    // matching the peer M3 (`Membro::nome`, `Membro::versao_requirement`)
6809    // pair discipline verbatim.
6810    #[test]
6811    fn child_spec_versao_requirement_returns_versao_byte_equal_across_permutations() {
6812        // The canonical per-`:children` child-`:versao`-scalar pin:
6813        // [`ChildSpec::versao_requirement`] must return the `:children
6814        // :versao` field byte-for-byte across every Cargo-shaped semver
6815        // requirement value the upstream
6816        // [`crate::render::require_valid_versao_requirement`] gate admits.
6817        // Peer of the sibling
6818        // `membro_versao_requirement_returns_versao_byte_equal_across_permutations`
6819        // (a40b0e3) pin on the M3 per-`:membros` axis — same "the
6820        // substrate-primitive accessor must byte-equal the raw field
6821        // access verbatim across every author-declared value" discipline
6822        // extended to the M2 supervisor-tree per-`:children` arm. Pins
6823        // against a future silent detour that re-canonicalized the
6824        // requirement (an accidental `.to_string()` via
6825        // [`crate::version::parse_requirement`] → [`std::fmt::Display`]
6826        // round-trip that collapsed `"^0.1"` to `">=0.1, <0.2"` and
6827        // silently drifted the error carrier's quoted requirement away
6828        // from the source `caixa.lisp`, an accidental whitespace trim on
6829        // `"^ 0.1"` that no consumer ever produced from the field-access
6830        // side, an accidental per-cluster lacre-projected concrete-version
6831        // rewrite that didn't land on the peer requirement-gate call).
6832        // Five values sweep the accept-set the shared
6833        // [`crate::render::require_valid_versao_requirement`] gate admits
6834        // (caret / tilde / exact / wildcard / bare-major).
6835        for req in ["^0.1", "~0.1.2", "0.1.0", "*", "^1"] {
6836            let c = ChildSpec {
6837                caixa: "worker".into(),
6838                versao: req.into(),
6839                restart: RestartPolicy::Permanent,
6840            };
6841            assert_eq!(
6842                c.versao_requirement(),
6843                req,
6844                "ChildSpec::versao_requirement must return :children :versao \
6845                 verbatim (got {:?}, expected {req:?})",
6846                c.versao_requirement(),
6847            );
6848            assert_eq!(
6849                c.versao_requirement(),
6850                c.versao.as_str(),
6851                "ChildSpec::versao_requirement must byte-equal the .versao \
6852                 field access",
6853            );
6854        }
6855    }
6856
6857    #[test]
6858    fn child_spec_versao_requirement_borrows_from_versao_storage() {
6859        // The borrow-not-copy pin: [`ChildSpec::versao_requirement`] must
6860        // return a `&str` slice that borrows from the typed slot's own
6861        // [`String`] storage — same-address invariant with
6862        // `c.versao.as_str()`. Pins against a future silent detour that
6863        // allocated a fresh `String` (`self.versao.clone()` in the body
6864        // would type-check but silently drop the borrow, and every
6865        // downstream consumer that assumed the returned slice outlives
6866        // `&self` — the [`crate::render::require_valid_versao_requirement`]
6867        // gate's `&str` borrow, the [`SupervisorError::ChildVersaoInvalid`]
6868        // `.to_string()` carrier's byte-length assumption — would silently
6869        // misbehave if this accessor produced a detached copy). Peer of
6870        // the sibling `child_spec_nome_borrows_from_caixa_storage`
6871        // (57c61d0) pin on the per-`:children` `:nome` axis and the M3
6872        // `membro_versao_requirement_borrows_from_versao_storage` (a40b0e3)
6873        // pin on the peer per-`:membros` `:versao` axis.
6874        let c = ChildSpec {
6875            caixa: "worker".into(),
6876            versao: "^0.1".into(),
6877            restart: RestartPolicy::Permanent,
6878        };
6879        let req = c.versao_requirement();
6880        let versao_slice = c.versao.as_str();
6881        assert_eq!(
6882            req.as_ptr(),
6883            versao_slice.as_ptr(),
6884            "ChildSpec::versao_requirement must borrow from the .versao \
6885             String's backing storage — a fresh allocation here means the \
6886             accessor no longer names the substrate-primitive typed \
6887             dispatch and every downstream consumer would silently carry \
6888             a detached copy",
6889        );
6890        assert_eq!(
6891            req.len(),
6892            versao_slice.len(),
6893            "ChildSpec::versao_requirement and .versao.as_str() must \
6894             byte-equal in length as well as in address",
6895        );
6896    }
6897
6898    #[test]
6899    fn validate_gates_child_versao_through_lifted_accessor() {
6900        // Bilateral coherence pin: every `:children :versao` that
6901        // [`SupervisorSpec::validate`] accepts is one
6902        // [`crate::render::require_valid_versao_requirement`] accepts on
6903        // the accessor-projected value, and vice versa on the reject side.
6904        // This closes the "the validator reads through the accessor"
6905        // contract structurally — a future silent detour that made the
6906        // accessor return a different byte-string than the validator gates
6907        // against would surface here as a coverage mismatch, not as a
6908        // resolver-time semver-parse rejection at lacre-closure time far
6909        // from the caixa.lisp source. Peer of the sibling
6910        // `validate_gates_child_nome_through_lifted_accessor` (57c61d0) on
6911        // the per-`:children :caixa` axis and the M2
6912        // `validate_parses_prior_versao_through_lifted_accessor` (75d27a8)
6913        // on the peer per-`:upgrade-from :from` axis.
6914        //
6915        // Accept-set sweep: five Cargo-shaped semver requirement values
6916        // the upstream gate admits (caret / tilde / exact / wildcard /
6917        // bare-major).
6918        for ok_req in ["^0.1", "~0.1.2", "0.1.0", "*", "^1"] {
6919            let s = SupervisorSpec {
6920                children: vec![ChildSpec {
6921                    caixa: "worker".into(),
6922                    versao: ok_req.into(),
6923                    restart: RestartPolicy::Permanent,
6924                }],
6925                ..SupervisorSpec::default()
6926            };
6927            s.validate().unwrap_or_else(|e| {
6928                panic!(
6929                    "SupervisorSpec::validate must accept :children :versao {ok_req:?} \
6930                     (upstream versao-requirement gate accepts it): got {e:?}",
6931                );
6932            });
6933            let c = ChildSpec {
6934                caixa: "worker".into(),
6935                versao: ok_req.into(),
6936                restart: RestartPolicy::Permanent,
6937            };
6938            crate::render::require_valid_versao_requirement(
6939                c.versao_requirement(),
6940                || (),
6941                |_reason| (),
6942            )
6943            .unwrap_or_else(|()| {
6944                panic!(
6945                    "require_valid_versao_requirement must accept the accessor-projected \
6946                     :children :versao {ok_req:?}",
6947                );
6948            });
6949        }
6950        // Reject-set sweep: five requirement-violating shapes the upstream
6951        // gate refuses. The empty string closes the empty-first arm of the
6952        // shared [`crate::render::require_valid_versao_requirement`]
6953        // cascade; the four non-empty arms exercise distinct semver-parse
6954        // failure modes the M3 peer per-`:membros` reject-set already pins
6955        // (`rejects_invalid_membro_versao_requirement` on `^bad-version`,
6956        // `rejects_membro_versao_with_double_caret_typo` on `^^0.1`,
6957        // `rejects_membro_versao_with_v_prefixed_tag` on `v0.1`) — the
6958        // shared parser routing means the same reject-set must fail
6959        // identically at the M2 supervisor-tree per-`:children` accessor
6960        // arm here. Every rejection at the validator must correspond to a
6961        // rejection when the accessor's projected value is fed back
6962        // through the shared gate.
6963        //
6964        // (Bare partial magnitudes like `"0.1"` and bare identifiers like
6965        // `"not-a-semver"` are intentionally *not* in the reject-set: the
6966        // semver crate accepts `"0.1"` as an implicit `^0.1` requirement,
6967        // and the identifier-tail arm's grammar admits some non-canonical
6968        // shapes — matching what the M3 peer test suite already documents
6969        // as the shared parser's accept-set edges.)
6970        for bad_req in ["", "v0.1.0", "^bad-version", "^^0.1", "v0.1"] {
6971            let s = SupervisorSpec {
6972                children: vec![ChildSpec {
6973                    caixa: "worker".into(),
6974                    versao: bad_req.into(),
6975                    restart: RestartPolicy::Permanent,
6976                }],
6977                ..SupervisorSpec::default()
6978            };
6979            let err = s.validate().unwrap_err();
6980            assert!(
6981                matches!(
6982                    err,
6983                    SupervisorError::EmptyChildVersion { .. }
6984                        | SupervisorError::ChildVersaoInvalid { .. }
6985                ),
6986                "SupervisorSpec::validate must reject :children :versao {bad_req:?} \
6987                 via the versao-requirement gate: got {err:?}",
6988            );
6989            let c = ChildSpec {
6990                caixa: "worker".into(),
6991                versao: bad_req.into(),
6992                restart: RestartPolicy::Permanent,
6993            };
6994            assert!(
6995                crate::render::require_valid_versao_requirement(
6996                    c.versao_requirement(),
6997                    || (),
6998                    |_reason| (),
6999                )
7000                .is_err(),
7001                "require_valid_versao_requirement must reject the accessor-projected \
7002                 :children :versao {bad_req:?}",
7003            );
7004        }
7005    }
7006
7007    // ── per-`:children` `:restart` typed-accessor coherence pins ──────────
7008    //
7009    // The [`ChildSpec::restart`] accessor lift closes the last unlifted
7010    // per-`:children` axis (the pair `nome()` + `versao_requirement()`
7011    // already project the `String`-carry `(caixa, versao)` fields; the
7012    // `Copy`-composite-enum `restart` field is the third and final axis).
7013    // Peer of the sibling per-`:supervisor` [`SupervisorSpec::estrategia`]
7014    // (eafb619) `Copy`-return [`RestartStrategy`] sibling-restart-strategy
7015    // scalar accessor and the M3 mesh-slot [`crate::Placement::estrategia`]
7016    // (921fe1b) `Copy`-return [`crate::PlacementStrategy`] distribution-
7017    // strategy scalar accessor — same "one typed dispatch on the substrate
7018    // primitive, `Copy`-projected closed-set enum-arm discriminator" shape
7019    // extended onto the M2 supervisor-slot per-`:children` restart-decision
7020    // axis. The pin below covers the accessor's byte-equal projection
7021    // against the raw field access across every variant in the closed
7022    // accept-set (`Permanent`, `Transient`, `Temporary`).
7023
7024    #[test]
7025    fn child_spec_restart_returns_restart_verbatim_across_permutations() {
7026        // The canonical per-`:children` restart-decision-policy-scalar
7027        // pin: [`ChildSpec::restart`] must return the `:children :restart`
7028        // field verbatim as a [`RestartPolicy`], `Copy`-projected from the
7029        // typed slot's own [`RestartPolicy`] storage across every variant
7030        // in the closed accept-set (`Permanent`, `Transient`, `Temporary`).
7031        // Pins against a future silent detour that re-derived the policy
7032        // from a peer axis (an accidental fallback to
7033        // `if is_supervisor_child { Permanent } else { Temporary }` that
7034        // collapsed the child's kind axis into the restart discriminator),
7035        // a variant remap the operator authors on one consumer without the
7036        // other, or a stale-derive detour that substituted
7037        // [`RestartPolicy::default`] when the field held any explicit
7038        // variant (which would silently collapse the distinction between
7039        // "author explicitly declared `:restart Permanent`" and "author
7040        // omitted the slot and inherited the default" the future
7041        // per-cluster restart-decision override slot depends on).
7042        //
7043        // Peer of the sibling per-`:supervisor`
7044        // `supervisor_spec_estrategia_returns_estrategia_verbatim_across_permutations`
7045        // (eafb619) pin on the M2 supervisor-slot sibling-restart-strategy
7046        // axis and the M3
7047        // `placement_estrategia_returns_estrategia_verbatim_across_permutations`
7048        // (921fe1b) pin on the per-`:placement` distribution-strategy axis
7049        // — same "the substrate-primitive accessor must byte-equal the raw
7050        // field access verbatim across every author-declared value"
7051        // discipline extended onto the M2 supervisor-slot per-`:children`
7052        // restart-decision-policy axis, closing the last unlifted axis on
7053        // the per-`:children` [`ChildSpec`] type.
7054        for restart in [
7055            RestartPolicy::Permanent,
7056            RestartPolicy::Transient,
7057            RestartPolicy::Temporary,
7058        ] {
7059            let c = ChildSpec {
7060                caixa: "worker".into(),
7061                versao: "^0.1".into(),
7062                restart,
7063            };
7064            assert_eq!(
7065                c.restart(),
7066                restart,
7067                "ChildSpec::restart must return :children :restart \
7068                 verbatim (got {:?}, expected {restart:?})",
7069                c.restart(),
7070            );
7071            assert_eq!(
7072                c.restart(),
7073                c.restart,
7074                "ChildSpec::restart accessor and .restart field access \
7075                 must byte-equal — the accessor is the substrate-primitive \
7076                 typed dispatch every downstream per-child restart-\
7077                 decision consumer must route through",
7078            );
7079        }
7080    }
7081
7082    // ── per-`:supervisor` `:estrategia` typed-accessor coherence pins ─────
7083    //
7084    // The [`SupervisorSpec::estrategia`] accessor lift extends the peer M3
7085    // [`crate::Placement::estrategia`] (921fe1b) `Copy`-return
7086    // distribution-strategy accessor discipline onto the M2 supervisor-slot
7087    // per-`:supervisor` sibling-restart-strategy `Copy`-composite-enum
7088    // scalar axis. The two pins below cover (1) the accessor's byte-equal
7089    // projection against the raw field access across every variant in the
7090    // closed accept-set, and (2) the two-consumer coherence between the
7091    // [`SupervisorSpec::validate`] partition-dispatch `match` arm and the
7092    // non-`SimpleOneForOne`-arm [`SupervisorError::NoChildren`] error
7093    // carrier's `estrategia:` field — peer of the sibling M3
7094    // `placement_estrategia_returns_estrategia_verbatim_across_permutations`
7095    // / `validate_placement_reads_through_lifted_estrategia_accessor` pin
7096    // pair on the per-`:placement` distribution-strategy axis.
7097
7098    #[test]
7099    fn supervisor_spec_estrategia_returns_estrategia_verbatim_across_permutations() {
7100        // The canonical per-`:supervisor` sibling-restart-strategy-scalar
7101        // pin: [`SupervisorSpec::estrategia`] must return the
7102        // `:supervisor :estrategia` field verbatim as a
7103        // [`RestartStrategy`], `Copy`-projected from the typed slot's own
7104        // [`RestartStrategy`] storage across every variant in the closed
7105        // accept-set (`OneForOne`, `OneForAll`, `RestForOne`,
7106        // `SimpleOneForOne`). Pins against a future silent detour that
7107        // re-derived the strategy from a peer axis (an accidental
7108        // fallback to `if children.is_empty() { SimpleOneForOne } else {
7109        // OneForOne }` collapse that read the children-count axis into
7110        // the strategy discriminator), a variant remap the operator
7111        // authors on one consumer without the other, or a stale-derive
7112        // detour that substituted [`RestartStrategy::default`] when the
7113        // field held any explicit variant (which would silently collapse
7114        // the distinction between "author explicitly declared
7115        // `:estrategia OneForOne`" and "author omitted the slot and
7116        // inherited the default" the future per-cluster strategy override
7117        // slot depends on). Peer of the sibling M3
7118        // `placement_estrategia_returns_estrategia_verbatim_across_permutations`
7119        // (921fe1b) pin on the M3 mesh-slot `Copy`-composite-enum scalar
7120        // axis — same "the substrate-primitive accessor must byte-equal
7121        // the raw field access verbatim across every author-declared
7122        // value" discipline extended onto the M2 supervisor-slot
7123        // per-`:supervisor` sibling-restart-strategy axis.
7124        for &estrategia in RestartStrategy::ALL {
7125            // `SimpleOneForOne` requires `children.is_empty()`; the peer
7126            // three strategies require a non-empty static children list.
7127            // Build each shape coherently so the pin's fixture would
7128            // itself pass [`SupervisorSpec::validate`] once fed through
7129            // the sibling coherence pin below — the byte-equal projection
7130            // asserted here is a strictly weaker property (a `Copy` field
7131            // read) that does not depend on `validate` running, but
7132            // keeping the fixture validate-clean means a future extension
7133            // of the pin to exercise `validate` end-to-end does not have
7134            // to re-author the children shape.
7135            //
7136            // Route the `SimpleOneForOne ↔ non-SimpleOneForOne` fixture-
7137            // shape partition through the [`gen_platform::IsVariant`]
7138            // derive-generated
7139            // [`RestartStrategy::is_simple_one_for_one`] predicate rather
7140            // than the raw `matches!(estrategia, RestartStrategy::
7141            // SimpleOneForOne)` open-coded pattern-match — same closed-
7142            // set-typed-enum arm-discriminator dispatch discipline the
7143            // sibling [`crate::upgrade::UpgradeInstruction::is_restart`]
7144            // convergence (915a934) extended onto its two paired positive
7145            // / negated `matches!` sites and the peer
7146            // [`crate::aplicacao::PlacementStrategy`] `IsVariant`-derived
7147            // predicate convergence (766ec63) extended onto the M3 mesh-
7148            // slot per-`:placement` distribution-strategy discriminator
7149            // axis. See the sibling `round_trip_all_strategies` and the
7150            // peer `manifest::tests::
7151            // caixa_estrategia_and_supervisor_view_reads_through_lifted_estrategia_accessor`
7152            // fixture for the two peer sites the same lift closes on.
7153            let children = if estrategia.is_simple_one_for_one() {
7154                Vec::new()
7155            } else {
7156                vec![ChildSpec {
7157                    caixa: "worker".into(),
7158                    versao: "^0.1".into(),
7159                    restart: RestartPolicy::Permanent,
7160                }]
7161            };
7162            let s = SupervisorSpec {
7163                estrategia,
7164                children,
7165                ..SupervisorSpec::default()
7166            };
7167            assert_eq!(
7168                s.estrategia(),
7169                estrategia,
7170                "SupervisorSpec::estrategia must return :supervisor :estrategia \
7171                 verbatim (got {:?}, expected {estrategia:?})",
7172                s.estrategia(),
7173            );
7174            assert_eq!(
7175                s.estrategia(),
7176                s.estrategia,
7177                "SupervisorSpec::estrategia accessor and .estrategia field \
7178                 access must byte-equal — the accessor is the substrate-\
7179                 primitive typed dispatch every downstream sibling-restart-\
7180                 strategy consumer must route through",
7181            );
7182        }
7183    }
7184
7185    #[test]
7186    fn validate_reads_through_lifted_estrategia_accessor() {
7187        // Two-consumer coherence pin: the [`SupervisorSpec::validate`]
7188        // `SimpleOneForOne ↔ non-SimpleOneForOne` `match` partition
7189        // dispatch (which reads through [`SupervisorSpec::estrategia`]
7190        // to fan across the strategy-arm shape-gate cascades) and the
7191        // non-`SimpleOneForOne`-arm [`SupervisorError::NoChildren`]
7192        // error carrier's `estrategia:` field (which reads through
7193        // [`SupervisorSpec::estrategia`] to name the strategy the empty
7194        // `:children` list was declared against) must both key off the
7195        // lifted accessor, so any future rebrand on the typed slot's
7196        // reader shape lands at exactly one place. Pins the two-site
7197        // coherence by exercising the `NoChildren` error surface end-to-
7198        // end across every non-`SimpleOneForOne` variant and asserting
7199        // the surfaced `estrategia:` field byte-equals the accessor's
7200        // return. Peer of the sibling M3
7201        // `validate_placement_reads_through_lifted_estrategia_accessor`
7202        // (921fe1b) three-consumer coherence pin on the per-`:placement`
7203        // distribution-strategy axis.
7204        for estrategia in [
7205            RestartStrategy::OneForOne,
7206            RestartStrategy::OneForAll,
7207            RestartStrategy::RestForOne,
7208        ] {
7209            let s = SupervisorSpec {
7210                estrategia,
7211                children: Vec::new(),
7212                ..SupervisorSpec::default()
7213            };
7214            let err = s.validate().unwrap_err();
7215            match err {
7216                SupervisorError::NoChildren { estrategia: e } => {
7217                    assert_eq!(
7218                        e,
7219                        s.estrategia(),
7220                        "NoChildren.estrategia must byte-equal \
7221                         SupervisorSpec::estrategia() — the empty-`:children` \
7222                         refusal reads through the lifted accessor",
7223                    );
7224                    assert_eq!(
7225                        e, estrategia,
7226                        "NoChildren.estrategia must carry the author-declared \
7227                         :supervisor :estrategia variant verbatim (got {e:?}, \
7228                         expected {estrategia:?})",
7229                    );
7230                }
7231                other => panic!("expected NoChildren, got {other:?} for estrategia={estrategia:?}"),
7232            }
7233        }
7234    }
7235
7236    // ── per-`:supervisor` `:max-restarts` typed-accessor coherence pins ────
7237    //
7238    // The [`SupervisorSpec::max_restarts`] accessor lift extends the peer M3
7239    // [`crate::CircuitBreaker::max_failures`] (3a74062) `Copy`-return
7240    // required-`u32` scalar accessor discipline onto the M2 supervisor-slot
7241    // per-`:supervisor` restart-budget-count `Copy`-`u32` scalar axis.
7242    // The two pins below cover (1) the accessor's byte-equal projection
7243    // against the raw field access across every representative value in
7244    // the `u32` accept-set (`1` lower boundary, `SUPERVISOR_MAX_RESTARTS_MAX`
7245    // upper boundary, `0` past-the-guard zero sentinel, `u32::MAX`
7246    // past-the-guard cap sentinel), and (2) the [`SupervisorSpec::validate`]
7247    // zero-floor / cap composition — the validate gate and the accessor
7248    // must route through the same substrate-primitive typed dispatch, so
7249    // any future silent detour that had the accessor perform a
7250    // bounds-collapsing clamp would fail here at caixa-core build time.
7251    // Peer of the sibling M3
7252    // `circuit_breaker_max_failures_returns_max_failures_u32_byte_equal_across_permutations`
7253    // (3a74062) pin on the per-`CircuitBreaker :max-failures` axis.
7254
7255    #[test]
7256    fn supervisor_spec_max_restarts_returns_max_restarts_u32_byte_equal_across_permutations() {
7257        // The canonical per-`:supervisor` restart-budget-count scalar pin:
7258        // [`SupervisorSpec::max_restarts`] must return the `:supervisor
7259        // :max-restarts` typed `u32` verbatim, `Copy`-projected from the
7260        // typed slot's own `u32` storage, byte-equal to the raw field
7261        // access across every representative value in the accept-set —
7262        // `1` (the lower boundary of the `1..=SUPERVISOR_MAX_RESTARTS_MAX`
7263        // accept-set the surrounding [`SupervisorSpec::validate`] gate
7264        // carves out on the sibling `ZeroMaxRestarts` refusal),
7265        // `SUPERVISOR_MAX_RESTARTS_MAX` (the upper boundary the same gate
7266        // carves out on the sibling `MaxRestartsExceedsCap` refusal), `0`
7267        // (a past-the-guard sentinel that pins the accessor doesn't
7268        // perform a silent bounds-collapse into `1` on the zero arm —
7269        // validate rejects zero but the accessor must ship the raw slot
7270        // verbatim so a validate-time gate regression surfaces at the
7271        // emit boundary rather than being silently absorbed), `u32::MAX`
7272        // (a past-the-guard sentinel that pins the accessor doesn't
7273        // perform a silent bounds-collapse through
7274        // `SUPERVISOR_MAX_RESTARTS_MAX` at the return path).
7275        //
7276        // Peer of the sibling M3
7277        // `circuit_breaker_max_failures_returns_max_failures_u32_byte_equal_across_permutations`
7278        // (3a74062) pin on the M3 mesh-slot `Copy`-`u32` sub-struct
7279        // required-scalar axis — same "the substrate-primitive accessor
7280        // must byte-equal the raw field access verbatim across every
7281        // value in the `u32` accept-set" discipline extended onto the M2
7282        // supervisor-slot per-`:supervisor` restart-budget-count axis.
7283        for max_restarts in [1u32, SUPERVISOR_MAX_RESTARTS_MAX, 0, u32::MAX] {
7284            let s = SupervisorSpec {
7285                max_restarts,
7286                ..SupervisorSpec::default()
7287            };
7288            assert_eq!(
7289                s.max_restarts(),
7290                max_restarts,
7291                "SupervisorSpec::max_restarts must return :supervisor \
7292                 :max-restarts verbatim (got {}, expected {max_restarts})",
7293                s.max_restarts(),
7294            );
7295            assert_eq!(
7296                s.max_restarts(),
7297                s.max_restarts,
7298                "SupervisorSpec::max_restarts accessor and .max_restarts \
7299                 field access must byte-equal — the accessor is the \
7300                 substrate-primitive typed dispatch every downstream \
7301                 restart-budget-count consumer must route through",
7302            );
7303        }
7304    }
7305
7306    #[test]
7307    fn validate_max_restarts_zero_floor_and_cap_arms_route_through_accessor() {
7308        // Composition pin: [`SupervisorSpec::validate`]'s `:max-restarts`
7309        // zero-floor + upper-cap bracket must key off
7310        // [`SupervisorSpec::max_restarts`], not the raw `.max_restarts`
7311        // field access. Structurally: a `SupervisorSpec { max_restarts:
7312        // 0, .. }` must surface the `ZeroMaxRestarts` refusal exactly, a
7313        // `SupervisorSpec { max_restarts: SUPERVISOR_MAX_RESTARTS_MAX + 1,
7314        // .. }` must surface the `MaxRestartsExceedsCap` refusal exactly
7315        // (with the offending count carried verbatim from the accessor
7316        // return), and a `SupervisorSpec { max_restarts: 1, .. }` (the
7317        // lower boundary of the accept-set) plus a `SupervisorSpec {
7318        // max_restarts: SUPERVISOR_MAX_RESTARTS_MAX, .. }` (the upper
7319        // boundary) must pass validate. The four together jointly pin the
7320        // accessor + validate-gate composition: any future silent detour
7321        // that had the accessor return a fresh `1` on the zero arm (a
7322        // `.max_restarts().max(1)` collapse) would silently absorb the
7323        // `ZeroMaxRestarts` refusal at the accessor boundary and the
7324        // validate gate would accept a struct-literal `SupervisorSpec {
7325        // max_restarts: 0, .. }` — the composition pin catches that at
7326        // caixa-core build time.
7327        //
7328        // Peer of the sibling M3
7329        // `validate_politicas_max_failures_zero_floor_arm_routes_through_accessor`
7330        // (3a74062) pin on the sibling per-`CircuitBreaker :max-failures`
7331        // composition axis — same "the validate / shape-gate predicate
7332        // must route through the substrate-primitive typed dispatch"
7333        // discipline extended onto the peer M2 supervisor-slot
7334        // required-`u32` composition axis.
7335        let child = ChildSpec {
7336            caixa: "worker".into(),
7337            versao: "^0.1".into(),
7338            restart: RestartPolicy::Permanent,
7339        };
7340        // Zero-floor arm.
7341        let s = SupervisorSpec {
7342            max_restarts: 0,
7343            children: vec![child.clone()],
7344            ..SupervisorSpec::default()
7345        };
7346        assert_eq!(
7347            s.validate().unwrap_err(),
7348            SupervisorError::ZeroMaxRestarts,
7349            "validate must reject max_restarts == 0 with ZeroMaxRestarts \
7350             — the accessor and the validate gate must route through the \
7351             same substrate-primitive typed dispatch on the zero-floor arm",
7352        );
7353        // Cap arm — the surfaced `max_restarts:` field must byte-equal
7354        // the accessor's return so a future rebrand on the accessor
7355        // lands in the diagnostic without a coordinated rewrite.
7356        let over_cap = SUPERVISOR_MAX_RESTARTS_MAX + 1;
7357        let s = SupervisorSpec {
7358            max_restarts: over_cap,
7359            children: vec![child.clone()],
7360            ..SupervisorSpec::default()
7361        };
7362        match s.validate().unwrap_err() {
7363            SupervisorError::MaxRestartsExceedsCap { max_restarts } => {
7364                assert_eq!(
7365                    max_restarts,
7366                    s.max_restarts(),
7367                    "MaxRestartsExceedsCap.max_restarts must byte-equal \
7368                     SupervisorSpec::max_restarts() — the cap-arm refusal \
7369                     reads through the lifted accessor",
7370                );
7371                assert_eq!(
7372                    max_restarts, over_cap,
7373                    "MaxRestartsExceedsCap.max_restarts must carry the \
7374                     author-declared :supervisor :max-restarts value \
7375                     verbatim (got {max_restarts}, expected {over_cap})",
7376                );
7377            }
7378            other => panic!("expected MaxRestartsExceedsCap, got {other:?}"),
7379        }
7380        // Lower + upper accept-set boundaries.
7381        for max_restarts in [1u32, SUPERVISOR_MAX_RESTARTS_MAX] {
7382            let s = SupervisorSpec {
7383                max_restarts,
7384                children: vec![child.clone()],
7385                ..SupervisorSpec::default()
7386            };
7387            assert!(
7388                s.validate().is_ok(),
7389                "validate must accept max_restarts == {max_restarts} \
7390                 (an accept-set boundary of \
7391                 1..=SUPERVISOR_MAX_RESTARTS_MAX)",
7392            );
7393        }
7394    }
7395
7396    // ── per-`:supervisor` `:restart-window` typed-accessor coherence pins ─
7397    //
7398    // The [`SupervisorSpec::restart_window`] accessor lift extends the peer
7399    // M2 [`crate::LimitsSpec::wall_clock`] (8cb717b) `Option<Duration>`
7400    // accessor discipline and the peer M3 [`crate::MeshPolicy::timeout`]
7401    // (7073d0f) `Option<Duration>` accessor discipline onto the M2
7402    // supervisor-slot per-`:supervisor` restart-intensity-denominator
7403    // `Option<Duration>` scalar axis — third `Copy`-return accessor on the
7404    // M2 supervisor-slot `SupervisorSpec` type, closing the last unlifted
7405    // per-`:supervisor` scalar-value axis. The three pins below cover
7406    // (1) the accessor's byte-equal projection against the raw field
7407    // access across every representative value in the `Option<Duration>`
7408    // accept-set (`None` never-reset sentinel, `Some(Duration::from_millis(1))`
7409    // lower boundary, `Some(SUPERVISOR_RESTART_WINDOW_MAX)` upper boundary,
7410    // `Some(Duration::ZERO)` past-the-guard zero sentinel, `Some(Duration::MAX)`
7411    // past-the-guard above-cap sentinel), (2) the [`SupervisorSpec::validate`]
7412    // `if let Some(w) = self.restart_window() { … }` bracket-arm
7413    // composition — the validate gate and the accessor must route through
7414    // the same substrate-primitive typed dispatch, so any future silent
7415    // detour that had the accessor perform a bounds-collapsing clamp
7416    // would fail here at caixa-core build time, and (3) the accessor's
7417    // by-copy idempotence pin — the returned `Option<Duration>` must
7418    // outlive `&self` and two successive calls must return byte-equal
7419    // values. Peer of the sibling M2
7420    // `limits_wall_clock_returns_option_duration_byte_equal_across_permutations`
7421    // (8cb717b) pin on the per-`:limits :wall-clock` axis and the sibling
7422    // M3 `mesh_policy_timeout_returns_timeout_option_byte_equal_across_permutations`
7423    // (7073d0f) pin on the per-`:politicas :timeout` axis.
7424
7425    #[test]
7426    fn supervisor_spec_restart_window_returns_option_duration_byte_equal_across_permutations() {
7427        // The canonical per-`:supervisor` restart-intensity-denominator
7428        // scalar pin: [`SupervisorSpec::restart_window`] must return the
7429        // `:supervisor :restart-window` typed [`Duration`] verbatim as an
7430        // `Option<Duration>`, `Copy`-projected from the typed slot's own
7431        // `Option<Duration>` storage, byte-equal to the raw field access
7432        // across every representative value in the accept-set — `None`
7433        // (the "never reset — every restart across the supervisor's
7434        // lifetime counts against the sibling `:max-restarts` budget"
7435        // sentinel the field's own docstring names and the peer
7436        // `validate_accepts_none_restart_window` pin locks in on the
7437        // [`SupervisorSpec::validate`] entry-side),
7438        // `Some(Duration::from_millis(1))` (the structural minimum a
7439        // validated `:restart-window` may carry, the integer-millisecond
7440        // floor [`SupervisorError::RestartWindowNotCanonical`] rejects
7441        // everything sub-ms; `Duration::ZERO` is separately rejected by
7442        // [`SupervisorError::RestartWindowZero`]),
7443        // `Some(SUPERVISOR_RESTART_WINDOW_MAX)` (the upper boundary the
7444        // surrounding [`SupervisorSpec::validate`] gate carves out on the
7445        // sibling [`SupervisorError::RestartWindowExceedsCap`] refusal),
7446        // `Some(Duration::ZERO)` (a past-the-guard sentinel that pins the
7447        // accessor doesn't perform a silent bounds-collapse into `None` on
7448        // the zero-Duration arm — validate rejects zero but the accessor
7449        // must ship the raw slot verbatim so a validate-time gate
7450        // regression surfaces at the emit boundary rather than being
7451        // silently absorbed), and `Some(Duration::MAX)` (a past-the-guard
7452        // sentinel that pins the accessor doesn't perform a silent
7453        // bounds-collapse through [`SUPERVISOR_RESTART_WINDOW_MAX`] at the
7454        // return path).
7455        //
7456        // Peer of the sibling M2
7457        // `limits_wall_clock_returns_option_duration_byte_equal_across_permutations`
7458        // (8cb717b) pin on the per-`:limits :wall-clock` axis and the
7459        // sibling M3
7460        // `mesh_policy_timeout_returns_timeout_option_byte_equal_across_permutations`
7461        // (7073d0f) pin on the per-`:politicas :timeout` axis — same "the
7462        // substrate-primitive accessor must byte-equal the raw field
7463        // access verbatim across every value in the `Option<Duration>`
7464        // accept-set" discipline extended onto the M2 supervisor-slot
7465        // per-`:supervisor` `Option<Duration>` axis. Pins against a future
7466        // silent detour that re-derived the restart-window from a peer
7467        // axis (an accidental `.max_restarts.into()` collapse that read
7468        // the restart-budget-count as a duration — the two axes serve
7469        // different halves of the `MaxIntensity / Period` restart-
7470        // intensity ratio, and confusing them silently inverts the
7471        // ratio's numerator and denominator), a `None → Some(Duration::ZERO)`
7472        // "zero means never reset" collapse (the canonical
7473        // `Option<Duration>` → `Duration` collapse footgun the
7474        // [`SupervisorError::RestartWindowZero`] validate arm guards on
7475        // the peer zero-floor axis; a zero period either trips on the
7476        // first failure or never trips depending on operator
7477        // interpretation, neither of which is the author's "never reset"
7478        // intent that `None` expresses structurally), or a per-arm
7479        // variant swap that landed on one consumer without the other.
7480        for restart_window in [
7481            None,
7482            Some(Duration::from_millis(1)),
7483            Some(SUPERVISOR_RESTART_WINDOW_MAX),
7484            Some(Duration::ZERO),
7485            Some(Duration::MAX),
7486        ] {
7487            let s = SupervisorSpec {
7488                restart_window,
7489                ..SupervisorSpec::default()
7490            };
7491            assert_eq!(
7492                s.restart_window(),
7493                restart_window,
7494                "SupervisorSpec::restart_window must return :supervisor \
7495                 :restart-window verbatim (got {:?}, expected {restart_window:?})",
7496                s.restart_window(),
7497            );
7498            assert_eq!(
7499                s.restart_window(),
7500                s.restart_window,
7501                "SupervisorSpec::restart_window accessor and \
7502                 .restart_window field access must byte-equal — the \
7503                 accessor is the substrate-primitive typed dispatch every \
7504                 downstream restart-intensity-denominator consumer must \
7505                 route through",
7506            );
7507        }
7508    }
7509
7510    #[test]
7511    fn validate_restart_window_bracket_arm_routes_through_accessor() {
7512        // Composition pin: [`SupervisorSpec::validate`]'s
7513        // `:restart-window` `if let Some(w) = self.restart_window() { … }`
7514        // zero-floor + integer-millisecond canonical-form + upper-cap
7515        // bracket-arm must key off [`SupervisorSpec::restart_window`], not
7516        // the raw `.restart_window` field access. Structurally: a
7517        // `SupervisorSpec { restart_window: None, .. }` must pass the
7518        // arm gate structurally (the `if let Some(_)` shape returns
7519        // early on the `None` arm — the accessor and the validate gate
7520        // must agree on `None → skip the bracket cascade` so an authored
7521        // `:restart-window ()` structurally routes through the "never
7522        // reset" sentinel path), a `SupervisorSpec { restart_window:
7523        // Some(Duration::ZERO), .. }` must surface the `RestartWindowZero`
7524        // refusal exactly, a `SupervisorSpec { restart_window:
7525        // Some(Duration::from_micros(1500)), .. }` must surface the
7526        // `RestartWindowNotCanonical` refusal exactly (with the offending
7527        // duration carried verbatim from the accessor return), a
7528        // `SupervisorSpec { restart_window: Some(SUPERVISOR_RESTART_WINDOW_MAX
7529        // + Duration::from_millis(1)), .. }` must surface the
7530        // `RestartWindowExceedsCap` refusal exactly (with the offending
7531        // duration carried verbatim from the accessor return), and a
7532        // `SupervisorSpec { restart_window: Some(Duration::from_millis(1)),
7533        // .. }` (the lower boundary of the accept-set) plus a
7534        // `SupervisorSpec { restart_window: Some(SUPERVISOR_RESTART_WINDOW_MAX),
7535        // .. }` (the upper boundary) must pass validate. The six together
7536        // jointly pin the accessor + validate-gate composition: any future
7537        // silent detour that had the accessor return a fresh `None` on any
7538        // `Some` arm (a `.restart_window().filter(|w| !w.is_zero())`
7539        // collapse) would silently absorb the `RestartWindowZero` refusal
7540        // at the accessor boundary and the validate gate would accept a
7541        // struct-literal `SupervisorSpec { restart_window:
7542        // Some(Duration::ZERO), .. }` — the composition pin catches that
7543        // at caixa-core build time.
7544        //
7545        // Peer of the sibling M2 [`crate::LimitsSpec::wall_clock`]
7546        // (8cb717b) validate-arm-route pin on the per-`:limits :wall-clock`
7547        // axis and the peer M3 [`crate::MeshPolicy::timeout`] (7073d0f)
7548        // accessor-composition pin on the per-`:politicas :timeout` axis —
7549        // same "the validate / shape-gate predicate must route through
7550        // the substrate-primitive typed dispatch" discipline extended
7551        // onto the peer M2 supervisor-slot optional-`Duration` axis.
7552        let child = ChildSpec {
7553            caixa: "worker".into(),
7554            versao: "^0.1".into(),
7555            restart: RestartPolicy::Permanent,
7556        };
7557        // None arm — must not surface any :restart-window-shaped refusal;
7558        // the `if let Some(_)` bracket returns early on `None` structurally.
7559        let s = SupervisorSpec {
7560            restart_window: None,
7561            children: vec![child.clone()],
7562            ..SupervisorSpec::default()
7563        };
7564        assert!(
7565            s.validate().is_ok(),
7566            "validate must accept restart_window: None (the never-reset \
7567             sentinel) — the `if let Some(_)` bracket returns early on \
7568             the None arm and the accessor must agree",
7569        );
7570        // Zero-floor arm.
7571        let s = SupervisorSpec {
7572            restart_window: Some(Duration::ZERO),
7573            children: vec![child.clone()],
7574            ..SupervisorSpec::default()
7575        };
7576        assert_eq!(
7577            s.validate().unwrap_err(),
7578            SupervisorError::RestartWindowZero,
7579            "validate must reject restart_window == Some(Duration::ZERO) \
7580             with RestartWindowZero — the accessor and the validate gate \
7581             must route through the same substrate-primitive typed \
7582             dispatch on the zero-floor arm",
7583        );
7584        // Non-canonical (sub-ms) arm — the surfaced `window:` field must
7585        // byte-equal the accessor's return so a future rebrand on the
7586        // accessor lands in the diagnostic without a coordinated rewrite.
7587        let sub_ms = Duration::from_micros(1500);
7588        let s = SupervisorSpec {
7589            restart_window: Some(sub_ms),
7590            children: vec![child.clone()],
7591            ..SupervisorSpec::default()
7592        };
7593        match s.validate().unwrap_err() {
7594            SupervisorError::RestartWindowNotCanonical { window } => {
7595                assert_eq!(
7596                    Some(window),
7597                    s.restart_window(),
7598                    "RestartWindowNotCanonical.window must byte-equal \
7599                     SupervisorSpec::restart_window().unwrap() — the \
7600                     non-canonical-arm refusal reads through the lifted \
7601                     accessor",
7602                );
7603                assert_eq!(
7604                    window, sub_ms,
7605                    "RestartWindowNotCanonical.window must carry the \
7606                     author-declared :supervisor :restart-window value \
7607                     verbatim (got {window:?}, expected {sub_ms:?})",
7608                );
7609            }
7610            other => panic!("expected RestartWindowNotCanonical, got {other:?}"),
7611        }
7612        // Cap arm — the surfaced `window:` field must byte-equal the
7613        // accessor's return.
7614        let over_cap = SUPERVISOR_RESTART_WINDOW_MAX + Duration::from_millis(1);
7615        let s = SupervisorSpec {
7616            restart_window: Some(over_cap),
7617            children: vec![child.clone()],
7618            ..SupervisorSpec::default()
7619        };
7620        match s.validate().unwrap_err() {
7621            SupervisorError::RestartWindowExceedsCap { window } => {
7622                assert_eq!(
7623                    Some(window),
7624                    s.restart_window(),
7625                    "RestartWindowExceedsCap.window must byte-equal \
7626                     SupervisorSpec::restart_window().unwrap() — the \
7627                     cap-arm refusal reads through the lifted accessor",
7628                );
7629                assert_eq!(
7630                    window, over_cap,
7631                    "RestartWindowExceedsCap.window must carry the \
7632                     author-declared :supervisor :restart-window value \
7633                     verbatim (got {window:?}, expected {over_cap:?})",
7634                );
7635            }
7636            other => panic!("expected RestartWindowExceedsCap, got {other:?}"),
7637        }
7638        // Lower + upper accept-set boundaries.
7639        for restart_window in [Duration::from_millis(1), SUPERVISOR_RESTART_WINDOW_MAX] {
7640            let s = SupervisorSpec {
7641                restart_window: Some(restart_window),
7642                children: vec![child.clone()],
7643                ..SupervisorSpec::default()
7644            };
7645            assert!(
7646                s.validate().is_ok(),
7647                "validate must accept restart_window == Some({restart_window:?}) \
7648                 (an accept-set boundary of \
7649                 1ms..=SUPERVISOR_RESTART_WINDOW_MAX)",
7650            );
7651        }
7652    }
7653
7654    #[test]
7655    fn supervisor_spec_restart_window_projects_option_duration_by_copy() {
7656        // The by-copy pin: [`SupervisorSpec::restart_window`] returns
7657        // `Option<Duration>` by copy — `Duration` is `Copy` (so
7658        // `Option<Duration>` is `Copy`) and the accessor must return by
7659        // value, not by reference. Peer of the sibling M2
7660        // [`crate::LimitsSpec::wall_clock`] (8cb717b) by-copy pin on the
7661        // per-`:limits :wall-clock` axis and the sibling M3
7662        // [`crate::MeshPolicy::timeout`] (7073d0f) by-copy pin on the
7663        // per-`:politicas :timeout` axis, extended onto the peer M2
7664        // supervisor-slot `Option<Duration>` copy-invariant shape — the
7665        // accessor's returned `Option<Duration>` must outlive `&self`
7666        // (multiple calls must return equal values from a dropped-`&self`
7667        // copy, since the returned Option carries no borrow), and calling
7668        // the accessor twice on the same SupervisorSpec must yield the
7669        // same `Option<Duration>` verbatim (idempotent, no side effects
7670        // on `&self`).
7671        //
7672        // Pins against a future silent detour that returned
7673        // `Option<&Duration>` (which would type-check but silently break
7674        // every downstream caller — the future wasm-operator's
7675        // per-supervisor restart-intensity counter consumes `Duration` by
7676        // value and `&Duration` would fold to a detached copy at the call
7677        // site), an accidental `Option::as_ref()` projection
7678        // (`self.restart_window.as_ref()` would also type-check but
7679        // return `Option<&Duration>`), or a one-arm-only accessor that
7680        // reads `Some(*w)` in the Some arm but reads a fresh
7681        // `Default::default()` (which would collapse to `Duration::ZERO`,
7682        // not `None`) in the None arm — a footgun the
7683        // [`SupervisorError::RestartWindowZero`] validate arm explicitly
7684        // closes since Erlang/OTP's `MaxIntensity / Period` invariant
7685        // requires `Period > 0` and `None` structurally expresses "never
7686        // reset" instead.
7687        for restart_window in [
7688            None,
7689            Some(Duration::from_millis(1)),
7690            Some(Duration::from_secs(60)),
7691            Some(SUPERVISOR_RESTART_WINDOW_MAX),
7692        ] {
7693            let s = SupervisorSpec {
7694                restart_window,
7695                ..SupervisorSpec::default()
7696            };
7697            let first = s.restart_window();
7698            let second = s.restart_window();
7699            assert_eq!(
7700                first, second,
7701                "SupervisorSpec::restart_window must be idempotent — two \
7702                 successive calls on the same &self must return the \
7703                 same Option<Duration>",
7704            );
7705            assert_eq!(
7706                first, restart_window,
7707                "SupervisorSpec::restart_window must return :supervisor \
7708                 :restart-window verbatim by copy — got {first:?}, \
7709                 expected {restart_window:?}",
7710            );
7711        }
7712    }
7713
7714    // ── per-`:supervisor` `:children` typed-accessor coherence pins ─────────
7715    //
7716    // The [`SupervisorSpec::children`] accessor lift is the seed of the
7717    // slice-return (`&[T]`) accessor discipline on the substrate — the four
7718    // peer `Vec`-carry axes ([`crate::Placement::clusters`],
7719    // [`crate::AplicacaoSpec::membros`], [`crate::AplicacaoSpec::contratos`],
7720    // [`crate::UpgradeFromEntry::instructions`]) still key off the raw field
7721    // access at the time of this seed, and inherit this pin family's
7722    // discipline as future compounding runs migrate their consumers. The
7723    // three pins below cover (1) the accessor's byte-equal projection
7724    // against the raw field access across the empty / singleton / cohort
7725    // fixtures the [`SupervisorSpec::validate`] partition-dispatch fans
7726    // between, (2) the [`SupervisorSpec::validate`] `SimpleOneForOne ↔
7727    // non-SimpleOneForOne` partition dispatch's paired `.is_empty()`
7728    // consumer routing through the accessor on both arms, and (3) the
7729    // per-child validate loop's traversal reading the same slice-view the
7730    // accessor projects. Peer of the sibling M2
7731    // [`validate_reads_through_lifted_estrategia_accessor`] (eafb619)
7732    // two-consumer coherence pin on the per-`:supervisor`
7733    // sibling-restart-strategy `Copy`-composite-enum scalar axis, extended
7734    // onto the per-`:supervisor` static-child-list `Vec`-carry axis.
7735
7736    #[test]
7737    fn supervisor_spec_children_returns_children_slice_byte_equal_across_permutations() {
7738        // The canonical per-`:supervisor` static-child-list scalar-shape
7739        // pin: [`SupervisorSpec::children`] must return the `:supervisor
7740        // :children` typed `Vec<ChildSpec>` verbatim as a `&[ChildSpec]`
7741        // slice-view over the same backing buffer the raw
7742        // `self.children.as_slice()` field access borrows from, byte-
7743        // equal across every representative fixture in the accept-set —
7744        // the empty slice (the `SimpleOneForOne`-arm sentinel),
7745        // the singleton slice (the minimal non-`SimpleOneForOne` shape),
7746        // and a two-child cohort (a peer non-`SimpleOneForOne` shape
7747        // with the peer three restart-policy variants in play).
7748        //
7749        // Pins against a future silent detour that returned
7750        // `&Vec<ChildSpec>` (which would type-check but leak the
7751        // storage-side `Vec`'s grow/push/reserve surface no consumer of
7752        // the typed view reaches for), a fresh-allocated
7753        // `Vec<ChildSpec>` copy (which would type-check via a coercion
7754        // but silently break every downstream caller that relied on the
7755        // slice sharing the backing buffer's identity), or an
7756        // out-of-order or length-drifted projection (which would silently
7757        // split the per-child validate loop's traversal input from the
7758        // paired partition-dispatch `.is_empty()` probe's input).
7759        //
7760        // Peer of the sibling
7761        // `supervisor_spec_estrategia_returns_estrategia_verbatim_across_permutations`
7762        // (eafb619) `Copy`-composite-enum byte-equal pin on the
7763        // per-`:supervisor` sibling-restart-strategy axis, extended onto
7764        // the per-`:supervisor` static-child-list `Vec`-carry axis.
7765        let fixtures: Vec<Vec<ChildSpec>> = vec![
7766            Vec::new(),
7767            vec![child("worker", "^0.1", RestartPolicy::Permanent)],
7768            vec![
7769                child("worker", "^0.1", RestartPolicy::Permanent),
7770                child("cache-server", "^0.1", RestartPolicy::Transient),
7771            ],
7772            vec![
7773                child("worker", "^0.1", RestartPolicy::Permanent),
7774                child("cache-server", "^0.1", RestartPolicy::Transient),
7775                child("scratch-job", "^0.1", RestartPolicy::Temporary),
7776            ],
7777        ];
7778        for children in fixtures {
7779            let s = SupervisorSpec {
7780                children: children.clone(),
7781                ..SupervisorSpec::default()
7782            };
7783            assert_eq!(
7784                s.children(),
7785                children.as_slice(),
7786                "SupervisorSpec::children must return :supervisor \
7787                 :children verbatim (got {:?}, expected {:?})",
7788                s.children(),
7789                children.as_slice(),
7790            );
7791            assert_eq!(
7792                s.children(),
7793                s.children.as_slice(),
7794                "SupervisorSpec::children accessor and \
7795                 .children.as_slice() field access must byte-equal — \
7796                 the accessor is the substrate-primitive typed \
7797                 dispatch every downstream static-child-list consumer \
7798                 must route through",
7799            );
7800            assert_eq!(
7801                s.children().len(),
7802                s.children.len(),
7803                "SupervisorSpec::children().len() must byte-equal \
7804                 self.children.len() — a length-drift would silently \
7805                 split the paired partition-dispatch `.is_empty()` \
7806                 probe input from the per-child validate loop's \
7807                 traversal input",
7808            );
7809        }
7810    }
7811
7812    #[test]
7813    fn validate_reads_through_lifted_children_accessor() {
7814        // Three-consumer coherence pin: the [`SupervisorSpec::validate`]
7815        // `SimpleOneForOne`-arm `!self.children().is_empty()` refusal
7816        // probe (which must trip [`SupervisorError::SimpleOneForOneWithStaticChildren`]
7817        // when the accessor projects a non-empty slice under a
7818        // `SimpleOneForOne` estrategia), the peer non-`SimpleOneForOne`-arm
7819        // `self.children().is_empty()` refusal probe (which must trip
7820        // [`SupervisorError::NoChildren`] when the accessor projects the
7821        // empty slice under any peer estrategia), and the per-child
7822        // validate loop's `for child in self.children()` traversal
7823        // (which must reach every entry in the same order the accessor
7824        // projects) must all key off the lifted accessor, so any future
7825        // rebrand on the typed slot's reader shape lands at exactly one
7826        // place. Pins the three-site coherence by exercising each
7827        // production consumer end-to-end: (1) the
7828        // `SimpleOneForOneWithStaticChildren` refusal under a non-empty
7829        // slice + `SimpleOneForOne` estrategia, (2) the `NoChildren`
7830        // refusal under the empty slice + non-`SimpleOneForOne`
7831        // estrategia across every peer variant, and (3) the per-child
7832        // duplicate-detection surface fires on the second entry of a
7833        // two-child cohort that shares a `:caixa` name (which requires
7834        // the loop to reach both entries — a first-entry-only projection
7835        // would silently pass since the dedup HashSet has room for the
7836        // first insert).
7837        //
7838        // Peer of the sibling M2
7839        // [`validate_reads_through_lifted_estrategia_accessor`] (eafb619)
7840        // two-consumer coherence pin on the per-`:supervisor`
7841        // sibling-restart-strategy axis, extended onto the
7842        // per-`:supervisor` static-child-list `Vec`-carry axis.
7843
7844        // (1) `SimpleOneForOne`-arm probe: a non-empty slice under a
7845        // `SimpleOneForOne` estrategia must trip
7846        // `SimpleOneForOneWithStaticChildren`.
7847        let s = SupervisorSpec {
7848            estrategia: RestartStrategy::SimpleOneForOne,
7849            children: vec![child("worker", "^0.1", RestartPolicy::Permanent)],
7850            ..SupervisorSpec::default()
7851        };
7852        assert_eq!(
7853            s.validate().unwrap_err(),
7854            SupervisorError::SimpleOneForOneWithStaticChildren,
7855            "SimpleOneForOne + non-empty children must trip \
7856             SimpleOneForOneWithStaticChildren — the accessor projects \
7857             a non-empty slice, and the SimpleOneForOne-arm refusal \
7858             probe reads through the lifted accessor",
7859        );
7860        assert!(
7861            !s.children().is_empty(),
7862            "the SimpleOneForOne-arm refusal input must be a non-empty \
7863             slice per the accessor's projection",
7864        );
7865
7866        // (2) Peer non-`SimpleOneForOne`-arm probe: the empty slice
7867        // under any peer estrategia must trip `NoChildren`.
7868        for estrategia in [
7869            RestartStrategy::OneForOne,
7870            RestartStrategy::OneForAll,
7871            RestartStrategy::RestForOne,
7872        ] {
7873            let s = SupervisorSpec {
7874                estrategia,
7875                children: Vec::new(),
7876                ..SupervisorSpec::default()
7877            };
7878            match s.validate().unwrap_err() {
7879                SupervisorError::NoChildren { estrategia: e } => {
7880                    assert_eq!(
7881                        e, estrategia,
7882                        "NoChildren.estrategia must carry the author-\
7883                         declared :supervisor :estrategia variant \
7884                         verbatim (got {e:?}, expected {estrategia:?})",
7885                    );
7886                }
7887                other => panic!(
7888                    "expected NoChildren, got {other:?} for \
7889                     estrategia={estrategia:?}"
7890                ),
7891            }
7892            assert!(
7893                s.children().is_empty(),
7894                "the non-SimpleOneForOne-arm refusal input must be the \
7895                 empty slice per the accessor's projection",
7896            );
7897        }
7898
7899        // (3) Per-child validate loop: a two-child cohort that shares a
7900        // `:caixa` name must trip `DuplicateChildCaixa` — the loop must
7901        // reach both entries through the accessor.
7902        let s = SupervisorSpec {
7903            estrategia: RestartStrategy::OneForOne,
7904            children: vec![
7905                child("worker", "^0.1", RestartPolicy::Permanent),
7906                child("worker", "^0.2", RestartPolicy::Transient),
7907            ],
7908            ..SupervisorSpec::default()
7909        };
7910        match s.validate().unwrap_err() {
7911            SupervisorError::DuplicateChildCaixa { caixa } => {
7912                assert_eq!(
7913                    caixa, "worker",
7914                    "DuplicateChildCaixa.caixa must carry the shared \
7915                     child `:caixa` name verbatim",
7916                );
7917            }
7918            other => panic!("expected DuplicateChildCaixa, got {other:?}"),
7919        }
7920        assert_eq!(
7921            s.children().len(),
7922            2,
7923            "the per-child validate loop's traversal input must be a \
7924             two-element slice per the accessor's projection",
7925        );
7926    }
7927
7928    // Shared helper for the M2 per-`:children` per-slot-gate ≡
7929    // `validate` equivalence pins: builds an `OneForOne`-estrategia
7930    // one-cohort spec whose peer `:estrategia`↔`:children.is_empty()`
7931    // partition, `:max-restarts` zero-floor/cap, and `:restart-window`
7932    // bracket all pass cleanly so the sole failing surface is the
7933    // per-child cascade [`SupervisorSpec::validate_children`] owns, and
7934    // pins the two-altitude equivalence on the paired probe.
7935    fn assert_validate_children_matches_gate(children: Vec<ChildSpec>, expected: &SupervisorError) {
7936        let s = SupervisorSpec {
7937            estrategia: RestartStrategy::OneForOne,
7938            children,
7939            ..SupervisorSpec::default()
7940        };
7941        let via_gate = s.validate_children().unwrap_err();
7942        let via_validate = s.validate().unwrap_err();
7943        assert_eq!(&via_gate, expected, "validate_children direct dispatch",);
7944        assert_eq!(&via_validate, expected, "validate() end-to-end dispatch",);
7945        assert_eq!(
7946            via_gate, via_validate,
7947            "per-slot gate ≡ validate() must discriminate the same \
7948             refusal shape",
7949        );
7950    }
7951
7952    #[test]
7953    fn validate_children_matches_gate_on_per_axis_refusal_shapes() {
7954        // Fail-before-pass-after equivalence pin on the M2
7955        // per-`:children` per-slot gate ≡ [`SupervisorSpec::validate`]
7956        // convergence — sibling of the M3 mesh-slot
7957        // `validate_membros_*` / `validate_contratos_*` /
7958        // `validate_entrada_*` per-slot-gate ≡ `validate` pins on the
7959        // peer per-entry axes. Sweeps four of the five refusal shapes
7960        // the per-slot gate owns: (1) `EmptyChildName` on an empty-
7961        // `:caixa` child, (2) `ChildCaixaInvalid` on a structurally
7962        // invalid `:caixa` DNS-1123 label, (3) `EmptyChildVersion` on
7963        // an empty-`:versao` child, (4) `DuplicateChildCaixa` on a
7964        // duplicate-`:caixa` fan-out. Companion pin
7965        // `validate_children_matches_gate_on_versao_invalid_and_clean_pass`
7966        // covers `ChildVersaoInvalid` (whose parser-owned reason string
7967        // needs pattern-matching, not equality) and the clean-pass
7968        // canonical fixture; together the two pins guarantee the
7969        // per-slot gate and `validate` discriminate the same set on
7970        // every per-child-covered input.
7971        assert_validate_children_matches_gate(
7972            vec![child("", "^0.1", RestartPolicy::Permanent)],
7973            &SupervisorError::EmptyChildName,
7974        );
7975        assert_validate_children_matches_gate(
7976            vec![child("Worker", "^0.1", RestartPolicy::Permanent)],
7977            &SupervisorError::ChildCaixaInvalid {
7978                caixa: "Worker".into(),
7979                reason: "contains uppercase character 'W' (K8s DNS-1123 label names are lowercase-only; use \"worker\")".into(),
7980            },
7981        );
7982        assert_validate_children_matches_gate(
7983            vec![child("worker", "", RestartPolicy::Permanent)],
7984            &SupervisorError::EmptyChildVersion {
7985                caixa: "worker".into(),
7986            },
7987        );
7988        assert_validate_children_matches_gate(
7989            vec![
7990                child("worker", "^0.1", RestartPolicy::Permanent),
7991                child("worker", "^0.2", RestartPolicy::Transient),
7992            ],
7993            &SupervisorError::DuplicateChildCaixa {
7994                caixa: "worker".into(),
7995            },
7996        );
7997    }
7998
7999    #[test]
8000    fn validate_children_matches_gate_on_versao_invalid_and_clean_pass() {
8001        // Second half of the two-altitude equivalence pin — covers the
8002        // one refusal shape whose reason string is parser-owned
8003        // (`ChildVersaoInvalid`, whose reason comes from the shared
8004        // [`crate::version::parse_requirement`] impl and may drift) and
8005        // the clean-pass canonical fixture. Sibling pin
8006        // `validate_children_matches_gate_on_per_axis_refusal_shapes`
8007        // covers the four equality-comparable refusal shapes.
8008        let s_bad_versao = SupervisorSpec {
8009            estrategia: RestartStrategy::OneForOne,
8010            children: vec![child("worker", "not-a-req", RestartPolicy::Permanent)],
8011            ..SupervisorSpec::default()
8012        };
8013        let via_gate = s_bad_versao.validate_children().unwrap_err();
8014        let via_validate = s_bad_versao.validate().unwrap_err();
8015        match (&via_gate, &via_validate) {
8016            (
8017                SupervisorError::ChildVersaoInvalid {
8018                    caixa: cg,
8019                    versao: vg,
8020                    ..
8021                },
8022                SupervisorError::ChildVersaoInvalid {
8023                    caixa: cv,
8024                    versao: vv,
8025                    ..
8026                },
8027            ) => {
8028                assert_eq!(cg, "worker", "per-slot gate :caixa carrier");
8029                assert_eq!(vg, "not-a-req", "per-slot gate :versao carrier");
8030                assert_eq!(cv, "worker", "validate() :caixa carrier");
8031                assert_eq!(vv, "not-a-req", "validate() :versao carrier");
8032            }
8033            other => panic!("expected ChildVersaoInvalid on both altitudes, got {other:?}"),
8034        }
8035        assert_eq!(
8036            via_gate, via_validate,
8037            "per-slot gate ≡ validate() on ChildVersaoInvalid full envelope",
8038        );
8039
8040        let s_ok = SupervisorSpec {
8041            estrategia: RestartStrategy::OneForOne,
8042            children: vec![
8043                child("worker-a", "^0.1", RestartPolicy::Permanent),
8044                child("worker-b", "~0.2.3", RestartPolicy::Transient),
8045                child("collector", "*", RestartPolicy::Temporary),
8046            ],
8047            ..SupervisorSpec::default()
8048        };
8049        s_ok.validate_children()
8050            .expect("per-slot gate must accept the clean-pass fixture");
8051        s_ok.validate()
8052            .expect("validate() must accept the clean-pass fixture");
8053    }
8054
8055    #[test]
8056    fn validate_children_is_self_contained_on_children_slot() {
8057        // Self-containment pin: [`SupervisorSpec::validate_children`]
8058        // resolves the per-child cascade against `&self` alone, without
8059        // depending on the peer `:estrategia`/`:max-restarts`/
8060        // `:restart-window` gates having run first — same posture the M3
8061        // peer per-slot gates carry (`validate_membros`,
8062        // `validate_contratos`, `validate_entrada`, `validate_placement`,
8063        // routing through their own oracles rather than borrowing state
8064        // threaded down from `validate`). A future consumer that reaches
8065        // the per-slot gate directly on a spec whose peer slots would
8066        // fail `validate` still surfaces the per-child refusal, not the
8067        // peer refusal.
8068        //
8069        // Construct a spec whose `:max-restarts` is `0` (which would
8070        // trip [`SupervisorError::ZeroMaxRestarts`] at `validate` after
8071        // the partition-dispatch) and whose `:children` carries a
8072        // `DuplicateChildCaixa` shape: the per-slot gate called directly
8073        // must surface `DuplicateChildCaixa`, proving it does not depend
8074        // on the peer `:max-restarts` gate running first.
8075        let s = SupervisorSpec {
8076            estrategia: RestartStrategy::OneForOne,
8077            max_restarts: 0,
8078            restart_window: Some(Duration::from_secs(60)),
8079            children: vec![
8080                child("worker", "^0.1", RestartPolicy::Permanent),
8081                child("worker", "^0.2", RestartPolicy::Transient),
8082            ],
8083        };
8084        assert_eq!(
8085            s.validate_children().unwrap_err(),
8086            SupervisorError::DuplicateChildCaixa {
8087                caixa: "worker".into(),
8088            },
8089            "per-slot gate must resolve per-child refusal directly against \
8090             `&self` — a dependency on the peer `:max-restarts` gate \
8091             running first would surface ZeroMaxRestarts here instead",
8092        );
8093        // The peer gate is still the surface `validate` reaches — pin
8094        // the ordering to establish that `validate_children` truly runs
8095        // last in `validate`'s dispatch, so a direct call bypasses the
8096        // peer gates on any spec whose per-child cascade would fail.
8097        assert_eq!(
8098            s.validate().unwrap_err(),
8099            SupervisorError::ZeroMaxRestarts,
8100            "validate() must surface the peer `:max-restarts` gate before \
8101             reaching the per-child cascade — this pins the dispatch \
8102             ordering the per-slot gate's self-containment complements",
8103        );
8104    }
8105
8106    #[test]
8107    fn child_spec_restart_accessor_is_const_fn() {
8108        // The [`ChildSpec::restart`] per-`:children` restart-decision-
8109        // policy `Copy`-return scalar accessor is declared
8110        // `#[must_use] pub const fn` — matching the sibling M2
8111        // per-`:supervisor` [`SupervisorSpec::estrategia`] (pinned by
8112        // [`supervisor_spec_estrategia_accessor_is_const_fn`] below,
8113        // both converted in this commit), the sibling M2
8114        // per-`:supervisor` [`SupervisorSpec::max_restarts`] (b698ec0)
8115        // `Copy`-`u32` accessor already `pub const fn`, and the peer M3
8116        // mesh-slot per-`:entrada` [`crate::Entrada::port`] (bafa004) /
8117        // per-`:placement` [`crate::Placement::estrategia`] (bafa004)
8118        // `Copy`-return `pub const fn` scalar accessors on the sibling
8119        // M3 surface. Pin the `const`-eval posture here so a future
8120        // accidental downgrade to non-`const` (an added runtime helper
8121        // reachable only from a non-`const` context, an
8122        // `Option<RestartPolicy>`-shape migration on the per-child
8123        // restart-decision axis once heterogeneous per-cluster
8124        // restart-policy overlays land that would silently drop the
8125        // `const` qualifier, a manual hand-rolled shadow) trips at
8126        // caixa-core build time rather than surfacing as a downstream
8127        // `const`-context regression far from the declaration.
8128        //
8129        // Same shape as the sibling M3
8130        // [`crate::aplicacao::tests::placement_estrategia_accessor_is_const_fn`]
8131        // and [`crate::aplicacao::tests::entrada_port_accessor_is_const_fn`]
8132        // (bafa004) pins on the peer M3 mesh-slot `Copy`-return scalar
8133        // accessor axis — the load-bearing witness lives in the
8134        // module-scope `const fn` wrapper `restart_via_const_fn` below:
8135        // a body that calls [`ChildSpec::restart`] under a `const fn`
8136        // signature is well-formed only when the callee is itself
8137        // `const fn`, so any future accidental downgrade of
8138        // [`ChildSpec::restart`] to non-`const` fails at caixa-core
8139        // build time (const-eval E0015 `cannot call non-const method`),
8140        // strictly stronger than a runtime `assert!(CONST)` and
8141        // side-stepping the destructor-in-const restriction that
8142        // blocks direct `const _: RestartPolicy = FIXTURE.restart()`
8143        // items on `ChildSpec`'s `String` carriers.
8144        //
8145        // The runtime body sweeps every closed-set [`RestartPolicy`]
8146        // arm and asserts the wrapped and direct dispatches agree.
8147        const fn restart_via_const_fn(c: &ChildSpec) -> RestartPolicy {
8148            c.restart()
8149        }
8150        for restart in [
8151            RestartPolicy::Permanent,
8152            RestartPolicy::Transient,
8153            RestartPolicy::Temporary,
8154        ] {
8155            let c = ChildSpec {
8156                caixa: "worker".into(),
8157                versao: "^0.1".into(),
8158                restart,
8159            };
8160            assert_eq!(
8161                restart_via_const_fn(&c),
8162                c.restart(),
8163                "const-fn-wrapped and direct dispatch on \
8164                 ChildSpec::restart must agree for {restart:?}",
8165            );
8166            assert_eq!(
8167                c.restart(),
8168                restart,
8169                "ChildSpec::restart must return the storage-side \
8170                 RestartPolicy verbatim for {restart:?} (a violation \
8171                 means the accessor stopped being a raw field-return \
8172                 copy)",
8173            );
8174        }
8175    }
8176
8177    #[test]
8178    fn supervisor_spec_estrategia_accessor_is_const_fn() {
8179        // The [`SupervisorSpec::estrategia`] per-`:supervisor`
8180        // sibling-restart-strategy `Copy`-return scalar accessor is
8181        // declared `#[must_use] pub const fn` — matching the sibling M2
8182        // per-`:children` [`ChildSpec::restart`] (pinned by
8183        // [`child_spec_restart_accessor_is_const_fn`] above, both
8184        // converted in this commit), the sibling M2 per-`:supervisor`
8185        // [`SupervisorSpec::max_restarts`] (b698ec0) `Copy`-`u32`
8186        // accessor already `pub const fn`, and mirroring the peer M3
8187        // mesh-slot per-`:placement`
8188        // [`crate::Placement::estrategia`] (bafa004) `Copy`-return
8189        // `pub const fn` scalar accessor whose method-name discipline
8190        // the [`SupervisorSpec::estrategia`] method was authored to
8191        // match. Pin the `const`-eval posture here so a future
8192        // accidental downgrade to non-`const` (an added runtime helper
8193        // reachable only from a non-`const` context, an
8194        // `Option<RestartStrategy>`-shape migration once the substrate
8195        // grows per-cluster strategy overlays that would silently drop
8196        // the `const` qualifier, a manual hand-rolled shadow) trips at
8197        // caixa-core build time rather than surfacing as a downstream
8198        // `const`-context regression far from the declaration.
8199        //
8200        // Same shape as the sibling
8201        // [`child_spec_restart_accessor_is_const_fn`] pin above — the
8202        // load-bearing witness lives in the module-scope `const fn`
8203        // wrapper `estrategia_via_const_fn` below: a body that calls
8204        // [`SupervisorSpec::estrategia`] under a `const fn` signature
8205        // is well-formed only when the callee is itself `const fn`,
8206        // side-stepping the destructor-in-const restriction that would
8207        // otherwise block a direct
8208        // `const _: RestartStrategy = FIXTURE.estrategia()` item on
8209        // `SupervisorSpec`'s `Vec<ChildSpec>` / `Option<Duration>`
8210        // carriers.
8211        //
8212        // The runtime body sweeps every closed-set [`RestartStrategy`]
8213        // arm via [`RestartStrategy::ALL`] and asserts the wrapped and
8214        // direct dispatches agree.
8215        const fn estrategia_via_const_fn(s: &SupervisorSpec) -> RestartStrategy {
8216            s.estrategia()
8217        }
8218        for &estrategia in RestartStrategy::ALL {
8219            let s = SupervisorSpec {
8220                estrategia,
8221                max_restarts: 5,
8222                restart_window: Some(Duration::from_secs(60)),
8223                children: Vec::new(),
8224            };
8225            assert_eq!(
8226                estrategia_via_const_fn(&s),
8227                s.estrategia(),
8228                "const-fn-wrapped and direct dispatch on \
8229                 SupervisorSpec::estrategia must agree for {estrategia:?}",
8230            );
8231            assert_eq!(
8232                s.estrategia(),
8233                estrategia,
8234                "SupervisorSpec::estrategia must return the storage-side \
8235                 RestartStrategy verbatim for {estrategia:?} (a violation \
8236                 means the accessor stopped being a raw field-return \
8237                 copy)",
8238            );
8239        }
8240    }
8241
8242    // Per-variant equivalence pins for the [`supervisor_caixa_only_ctors!`]
8243    // macro definition (see the paired doc-block above the macro
8244    // definition) — every generated `<ctor>(caixa: &str) -> Self`
8245    // constructor folds the uniform `Self::<Variant> { caixa:
8246    // caixa.to_string() }` one-field struct-literal onto one substrate
8247    // primitive. The three per-variant equivalence pins below
8248    // (fail-before-pass-after by construction — a byte-mismatched macro
8249    // arm would trip its equivalence pin first) lock each generated
8250    // constructor to its struct-literal peer under `PartialEq`, so
8251    // every wire-up in [`SupervisorSpec::validate_children`] and
8252    // [`validate_no_self_supervision`] on that variant produces a
8253    // byte-equal `SupervisorError` to the pre-lift open-coded
8254    // struct-literal. The cross-axis pin that follows (non-default
8255    // caixa name) routes the sole constructor input axis through
8256    // `.to_string()`, so the fold does not silently collapse onto a
8257    // fixed name.
8258    //
8259    // Peer of the sibling `<slot>_ctor_matches_tuple_literal_wrap` /
8260    // `<slot>_violation_ctor_matches_struct_literal_wrap` /
8261    // `<slot>_slots_on_non_<owner>_ctor_matches_struct_literal_wrap` /
8262    // `missing_entry_ctor_matches_struct_literal_wrap` /
8263    // `entrada_host_invalid_ctor_matches_struct_literal_wrap` /
8264    // `contrato_wrong_target_ctor_matches_struct_literal_wrap` /
8265    // `contrato_missing_target_ctor_matches_struct_literal_wrap` /
8266    // `<variant>_ctor_matches_struct_literal_wrap` equivalence pins
8267    // on the six sibling ctor families the recent trajectory closed
8268    // on the peer `LayoutError` / `AplicacaoError` envelopes.
8269
8270    #[test]
8271    fn empty_child_version_ctor_matches_struct_literal_wrap() {
8272        assert_eq!(
8273            SupervisorError::empty_child_version("worker"),
8274            SupervisorError::EmptyChildVersion {
8275                caixa: "worker".to_string(),
8276            },
8277            "generated empty_child_version ctor must produce byte-equal \
8278             SupervisorError to the open-coded struct-literal wrap on the \
8279             same &str fixture",
8280        );
8281    }
8282
8283    #[test]
8284    fn duplicate_child_caixa_ctor_matches_struct_literal_wrap() {
8285        assert_eq!(
8286            SupervisorError::duplicate_child_caixa("worker"),
8287            SupervisorError::DuplicateChildCaixa {
8288                caixa: "worker".to_string(),
8289            },
8290            "generated duplicate_child_caixa ctor must produce byte-equal \
8291             SupervisorError to the open-coded struct-literal wrap on the \
8292             same &str fixture",
8293        );
8294    }
8295
8296    #[test]
8297    fn child_supervises_self_ctor_matches_struct_literal_wrap() {
8298        assert_eq!(
8299            SupervisorError::child_supervises_self("orquestra"),
8300            SupervisorError::ChildSupervisesSelf {
8301                caixa: "orquestra".to_string(),
8302            },
8303            "generated child_supervises_self ctor must produce byte-equal \
8304             SupervisorError to the open-coded struct-literal wrap on the \
8305             same &str fixture",
8306        );
8307    }
8308
8309    // Per-variant equivalence pins for the two lifted
8310    // [`SupervisorError::child_caixa_invalid`] /
8311    // [`SupervisorError::child_versao_invalid`] inherent constructors
8312    // (fail-before-pass-after by construction — a byte-mismatched ctor body
8313    // would trip its equivalence pin first). Each pins the ctor output to
8314    // its pre-lift struct-literal peer under `PartialEq`, so every wire-up
8315    // in [`SupervisorSpec::validate_children`] on the two variants
8316    // produces a byte-equal `SupervisorError` to the pre-lift open-coded
8317    // struct-literal on the same scalar fixtures. Peers of the sibling
8318    // `membro_caixa_invalid_ctor_matches_struct_literal_wrap` /
8319    // `entrada_para_invalid_ctor_matches_struct_literal_wrap` / … pins on
8320    // the peer `AplicacaoError` envelope's
8321    // [`crate::aplicacao::aplicacao_field_reason_ctors!`] fold.
8322
8323    #[test]
8324    fn child_caixa_invalid_ctor_matches_struct_literal_wrap() {
8325        let caixa = "Worker";
8326        let reason = "sample reason text";
8327        assert_eq!(
8328            SupervisorError::child_caixa_invalid(caixa, reason),
8329            SupervisorError::ChildCaixaInvalid {
8330                caixa: caixa.to_string(),
8331                reason: reason.to_string(),
8332            },
8333            "lifted child_caixa_invalid ctor must produce byte-equal \
8334             SupervisorError to the open-coded struct-literal wrap on the \
8335             same (&str, reason) fixture",
8336        );
8337    }
8338
8339    #[test]
8340    fn child_versao_invalid_ctor_matches_struct_literal_wrap() {
8341        let caixa = "worker";
8342        let versao = "not-a-req";
8343        let reason = "sample reason text";
8344        assert_eq!(
8345            SupervisorError::child_versao_invalid(caixa, versao, reason),
8346            SupervisorError::ChildVersaoInvalid {
8347                caixa: caixa.to_string(),
8348                versao: versao.to_string(),
8349                reason: reason.to_string(),
8350            },
8351            "lifted child_versao_invalid ctor must produce byte-equal \
8352             SupervisorError to the open-coded struct-literal wrap on the \
8353             same (&str, &str, reason) fixture",
8354        );
8355    }
8356
8357    #[test]
8358    fn supervisor_child_reason_ctors_route_reason_through_into_uniformly() {
8359        // Cross-axis pin: sweep the two lifted `{ …, reason }` ctors
8360        // against a `&str`-literal vs. `format!(…)` reason input to pin
8361        // both constructors accept the `impl Into<String>` bound
8362        // uniformly, so neither wire-up site drifts under a per-arm
8363        // wrapper transformation on the caller-side `reason` axis. Peer
8364        // of the sibling
8365        // `aplicacao_field_reason_ctors_route_reason_through_into_uniformly`
8366        // sweep on the peer `AplicacaoError` envelope.
8367        let via_literal = "literal reason text";
8368        let via_format = format!("{} reason text", "literal");
8369        assert_eq!(
8370            SupervisorError::child_caixa_invalid("Worker", via_literal),
8371            SupervisorError::child_caixa_invalid("Worker", via_format.clone()),
8372        );
8373        assert_eq!(
8374            SupervisorError::child_versao_invalid("worker", "not-a-req", via_literal),
8375            SupervisorError::child_versao_invalid("worker", "not-a-req", via_format),
8376        );
8377    }
8378
8379    #[test]
8380    fn supervisor_caixa_only_ctors_route_caixa_through_to_string() {
8381        // Cross-axis pin: sweep the sole constructor input axis (`caixa:
8382        // &str`) through a non-default fixture name against every
8383        // generated arm in the [`supervisor_caixa_only_ctors!`] macro,
8384        // so any wrapper-side lowercase / trim / truncate / re-order on
8385        // the `caixa.to_string()` sole-field construction surfaces
8386        // here rather than at a downstream diagnostic-shape mismatch.
8387        // Peer of the sibling `nome_only_ctor_routes_caixa_through_
8388        // nome_accessor` / `entrada_host_invalid_ctor_routes_host_
8389        // through_to_string` / `contrato_target_ctors_route_edge_
8390        // triple_through_verbatim` / `contrato_empty_pair_ctors_
8391        // route_edge_pair_through_verbatim` cross-axis routing pins on
8392        // the peer `LayoutError` / `AplicacaoError` envelopes; extended
8393        // here onto the `SupervisorError` `{ caixa: String }` envelope
8394        // so every substrate-primitive ctor family in caixa-core
8395        // guarantees the sole-field construction routes the caller's
8396        // `&str` through `.to_string()` verbatim.
8397        let name = "cache-v2";
8398        assert_eq!(
8399            SupervisorError::empty_child_version(name),
8400            SupervisorError::EmptyChildVersion {
8401                caixa: name.to_string(),
8402            },
8403        );
8404        assert_eq!(
8405            SupervisorError::duplicate_child_caixa(name),
8406            SupervisorError::DuplicateChildCaixa {
8407                caixa: name.to_string(),
8408            },
8409        );
8410        assert_eq!(
8411            SupervisorError::child_supervises_self(name),
8412            SupervisorError::ChildSupervisesSelf {
8413                caixa: name.to_string(),
8414            },
8415        );
8416    }
8417
8418    // ── supervisor_scalar_ctors! per-variant + cross-axis pins ──────────────
8419    //
8420    // Per-variant byte-equality pins guaranteeing every generated ctor arm in
8421    // the [`supervisor_scalar_ctors!`] macro produces a `SupervisorError`
8422    // structurally identical to the pre-lift `Self::<variant> { <field>: <val> }`
8423    // one-line struct-literal on the same `Copy`-`RestartStrategy | u32 |
8424    // Duration` fixture, plus one cross-axis sweep that routes each per-variant
8425    // `<field>: <ty>` scalar through the sole `$field:ident: $ty:ty` axis the
8426    // macro exposes so any wrapper-side truncation / re-order / silent `.into()`
8427    // / silent constant-substitution on any one variant surfaces here rather
8428    // than at a downstream per-`:supervisor` diagnostic-shape drift. Peer of the
8429    // sibling per-variant pins on `aplicacao_policy_scalar_ctors!` (7ef425e,
8430    // the 8-variant `AplicacaoError` `{ <field>: Duration | u32 }` fold on the
8431    // per-`:politicas` per-axis cap / canonical-form arms), plus the sibling
8432    // `supervisor_caixa_only_ctors!` (db09650), `SupervisorError::
8433    // {child_caixa_invalid,child_versao_invalid}` (d2ef2ec), and the peer
8434    // `DepError` / `AplicacaoError` / `LayoutError` / `LimitsError` /
8435    // `BehaviorError` / `UpgradeError` per-envelope ctor-macro pins.
8436    #[test]
8437    fn no_children_ctor_matches_struct_literal_wrap() {
8438        let estrategia = RestartStrategy::OneForAll;
8439        assert_eq!(
8440            SupervisorError::no_children(estrategia),
8441            SupervisorError::NoChildren { estrategia },
8442            "generated no_children ctor must produce byte-equal \
8443             `SupervisorError::NoChildren` to the pre-lift struct-literal wrap \
8444             on the same `Copy`-`RestartStrategy` fixture",
8445        );
8446    }
8447
8448    #[test]
8449    fn max_restarts_exceeds_cap_ctor_matches_struct_literal_wrap() {
8450        let max_restarts = SUPERVISOR_MAX_RESTARTS_MAX + 1;
8451        assert_eq!(
8452            SupervisorError::max_restarts_exceeds_cap(max_restarts),
8453            SupervisorError::MaxRestartsExceedsCap { max_restarts },
8454            "generated max_restarts_exceeds_cap ctor must produce byte-equal \
8455             `SupervisorError::MaxRestartsExceedsCap` to the pre-lift \
8456             struct-literal wrap on the same `Copy`-`u32` fixture",
8457        );
8458    }
8459
8460    #[test]
8461    fn restart_window_not_canonical_ctor_matches_struct_literal_wrap() {
8462        let window = Duration::from_micros(1_500);
8463        assert_eq!(
8464            SupervisorError::restart_window_not_canonical(window),
8465            SupervisorError::RestartWindowNotCanonical { window },
8466            "generated restart_window_not_canonical ctor must produce \
8467             byte-equal `SupervisorError::RestartWindowNotCanonical` to the \
8468             pre-lift struct-literal wrap on the same `Copy`-`Duration` fixture",
8469        );
8470    }
8471
8472    #[test]
8473    fn restart_window_exceeds_cap_ctor_matches_struct_literal_wrap() {
8474        let window = SUPERVISOR_RESTART_WINDOW_MAX + Duration::from_millis(1);
8475        assert_eq!(
8476            SupervisorError::restart_window_exceeds_cap(window),
8477            SupervisorError::RestartWindowExceedsCap { window },
8478            "generated restart_window_exceeds_cap ctor must produce \
8479             byte-equal `SupervisorError::RestartWindowExceedsCap` to the \
8480             pre-lift struct-literal wrap on the same `Copy`-`Duration` fixture",
8481        );
8482    }
8483
8484    #[test]
8485    fn supervisor_scalar_ctors_route_field_through_copy_uniformly() {
8486        // Cross-axis routing pin: sweep each generated `<field>: <ty>`
8487        // constructor input axis through a non-default `Copy` fixture against
8488        // every arm in the [`supervisor_scalar_ctors!`] macro, so any wrapper-
8489        // side silent `.into()` / silent constant-substitution / silent field
8490        // re-name away from the canonical `estrategia | max_restarts | window`
8491        // axes on any one variant, or a `RestartStrategy | u32 | Duration`
8492        // axis silently rerouted through some other `Copy` coercion, surfaces
8493        // here rather than at a downstream per-`:supervisor` diagnostic-shape
8494        // drift. Peer of the sibling
8495        // `aplicacao_policy_scalar_ctors_route_field_through_copy_uniformly`
8496        // (7ef425e) cross-axis routing pin on the peer `AplicacaoError`
8497        // envelope's per-`:politicas` per-axis ctor family, extended here onto
8498        // the last M2 per-`:supervisor` `Copy`-scalar `SupervisorError`
8499        // variant family folded onto a substrate primitive.
8500        //
8501        // Fixtures picked out of each variant's accept-set boundary rather
8502        // than the default value so a silent constant-substitution to a per-
8503        // variant sentinel surfaces here on the structural-equality assertion.
8504        // The `RestartStrategy` fixture picks `RestForOne` (a non-default arm
8505        // that isn't the `OneForOne` [`SUPERVISOR_ESTRATEGIA_DEFAULT`] and
8506        // isn't the `SimpleOneForOne` arm the sibling
8507        // `SimpleOneForOneWithStaticChildren` unit variant intercepts). The
8508        // `max_restarts` fixture picks an above-cap magnitude the cap arm
8509        // rejects; the two `Duration` fixtures pick the sub-millisecond and
8510        // above-cap ends of the `:restart-window` canonical-form + cap
8511        // bracket respectively.
8512        let estrategia = RestartStrategy::RestForOne;
8513        let above_cap_restarts = SUPERVISOR_MAX_RESTARTS_MAX + 137;
8514        let sub_ms = Duration::from_micros(1_500);
8515        let above_hour = SUPERVISOR_RESTART_WINDOW_MAX + Duration::from_secs(1);
8516        assert_eq!(
8517            SupervisorError::no_children(estrategia),
8518            SupervisorError::NoChildren { estrategia },
8519        );
8520        assert_eq!(
8521            SupervisorError::max_restarts_exceeds_cap(above_cap_restarts),
8522            SupervisorError::MaxRestartsExceedsCap {
8523                max_restarts: above_cap_restarts,
8524            },
8525        );
8526        assert_eq!(
8527            SupervisorError::restart_window_not_canonical(sub_ms),
8528            SupervisorError::RestartWindowNotCanonical { window: sub_ms },
8529        );
8530        assert_eq!(
8531            SupervisorError::restart_window_exceeds_cap(above_hour),
8532            SupervisorError::RestartWindowExceedsCap { window: above_hour },
8533        );
8534    }
8535
8536    #[test]
8537    fn supervisor_scalar_ctors_are_const_zero_runtime_work() {
8538        // Const-eval pin: the [`supervisor_scalar_ctors!`] macro spells every
8539        // generated ctor `const fn` so a caller can pin a `SupervisorError`
8540        // at compile time — the same zero-runtime-work property the pre-lift
8541        // `|<slot>| SupervisorError::<Variant> { <slot> }` closure carried on
8542        // its `Copy`-pass-through construction path (no `.to_string()` /
8543        // `.into()` allocation, no branching). If any future edit silently
8544        // drops the `const` qualifier from the macro body the per-arm `const`
8545        // bindings below fail to compile, which surfaces the regression at
8546        // the substrate-primitive definition rather than at some downstream
8547        // consumer that had come to rely on the `const`-constructibility.
8548        // Peer of the sibling
8549        // `aplicacao_policy_scalar_ctors_are_const_zero_runtime_work`
8550        // (7ef425e) const-eval pin on the peer `AplicacaoError` envelope's
8551        // per-`:politicas` per-axis ctor family.
8552        const NO_CHILDREN: SupervisorError =
8553            SupervisorError::no_children(RestartStrategy::OneForAll);
8554        const MAX_RESTARTS_CAP: SupervisorError = SupervisorError::max_restarts_exceeds_cap(1_337);
8555        const WINDOW_NC: SupervisorError =
8556            SupervisorError::restart_window_not_canonical(Duration::from_micros(1));
8557        const WINDOW_CAP: SupervisorError =
8558            SupervisorError::restart_window_exceeds_cap(Duration::from_secs(3_601));
8559        assert!(matches!(NO_CHILDREN, SupervisorError::NoChildren { .. }));
8560        assert!(matches!(
8561            MAX_RESTARTS_CAP,
8562            SupervisorError::MaxRestartsExceedsCap { .. }
8563        ));
8564        assert!(matches!(
8565            WINDOW_NC,
8566            SupervisorError::RestartWindowNotCanonical { .. }
8567        ));
8568        assert!(matches!(
8569            WINDOW_CAP,
8570            SupervisorError::RestartWindowExceedsCap { .. }
8571        ));
8572    }
8573}