caixa_core/manifest.rs
1use std::path::{Path, PathBuf};
2
3use serde::{Deserialize, Serialize};
4use tatara_lisp::DeriveTataraDomain;
5
6use thiserror::Error;
7
8use crate::{
9 CaixaKind, Dep,
10 behavior::BehaviorSpec,
11 dep::DepError,
12 limits::LimitsSpec,
13 render::{
14 PathShapeViolation, is_computeunit_yaml_extension, is_git_repo_url, is_lisp_extension,
15 is_sandboxed_relative_path,
16 },
17 supervisor::SupervisorSpec,
18 upgrade::UpgradeFromEntry,
19};
20
21/// Top-level manifest for a caixa (a tatara-lisp package).
22///
23/// Authored as `caixa.lisp`:
24///
25/// ```lisp
26/// (defcaixa
27/// :nome "pangea-tatara-aws"
28/// :versao "0.1.0"
29/// :kind Biblioteca
30/// :edicao "2026"
31/// :descricao "AWS provider caixa for tatara-lisp"
32/// :repositorio "github:pleme-io/pangea-tatara-aws"
33/// :licenca "MIT"
34/// :autores ("pleme-io")
35/// :etiquetas ("iac" "aws" "pangea")
36/// :deps ((:nome "caixa-teia" :versao "^0.1")
37/// (:nome "iac-forge-ir" :versao "^0.5"))
38/// :deps-dev ((:nome "tatara-check" :versao "*"))
39/// :bibliotecas ("lib/pangea-tatara-aws.lisp"))
40/// ```
41///
42/// Because `Caixa` derives [`tatara_lisp::domain::TataraDomain`], the manifest
43/// is parsed directly by the tatara-lisp compiler — an ill-formed manifest is
44/// a compile error, not a runtime error.
45#[derive(DeriveTataraDomain, Serialize, Deserialize, Debug, Clone, PartialEq)]
46#[serde(rename_all = "camelCase")]
47#[tatara(keyword = "defcaixa")]
48pub struct Caixa {
49 /// Package name — the canonical string used in `:deps`, the registry, and
50 /// the default lib/exe entry names.
51 pub nome: String,
52
53 /// Package version — a semver literal like `"0.1.0"`. Parsed lazily via
54 /// [`crate::CaixaVersion::parse`].
55 pub versao: String,
56
57 /// What this caixa produces. See [`CaixaKind`].
58 pub kind: CaixaKind,
59
60 /// Language edition — determines macro surface + compatibility flags.
61 #[serde(default, skip_serializing_if = "Option::is_none")]
62 pub edicao: Option<String>,
63
64 /// Free-form description shown in the registry listing.
65 #[serde(default, skip_serializing_if = "Option::is_none")]
66 pub descricao: Option<String>,
67
68 /// Homepage or repo URL.
69 #[serde(default, skip_serializing_if = "Option::is_none")]
70 pub repositorio: Option<String>,
71
72 /// SPDX license expression — `"MIT"`, `"Apache-2.0 OR MIT"`, etc.
73 #[serde(default, skip_serializing_if = "Option::is_none")]
74 pub licenca: Option<String>,
75
76 /// Authors — free-form strings.
77 #[serde(default)]
78 pub autores: Vec<String>,
79
80 /// Topical tags used for registry search.
81 #[serde(default)]
82 pub etiquetas: Vec<String>,
83
84 /// Runtime dependencies.
85 #[serde(default)]
86 pub deps: Vec<Dep>,
87
88 /// Development-only dependencies (tests, lint, bench).
89 #[serde(default)]
90 pub deps_dev: Vec<Dep>,
91
92 /// Paths to executable entry points (relative to the package root).
93 /// Required when `:kind Binario`.
94 #[serde(default)]
95 pub exe: Vec<String>,
96
97 /// Paths to library entry points (relative to the package root).
98 /// First entry is the canonical `lib/<nome>.lisp`; when omitted under
99 /// `:kind Biblioteca`, the layout check expects `lib/<nome>.lisp`.
100 #[serde(default)]
101 pub bibliotecas: Vec<String>,
102
103 /// Paths to service manifests (relative to the package root).
104 /// Required when `:kind Servico`.
105 #[serde(default)]
106 pub servicos: Vec<String>,
107
108 // ── M2 typed-substrate extensions per theory/ABSORPTION-ROADMAP.md ──
109 //
110 // All four are optional + default to "absent"; existing caixas
111 // round-trip unchanged. Each maps onto a prior-art primitive named
112 // in theory/INSPIRATIONS.md:
113 //
114 // :limits — Lunatic per-process limits (§III.1)
115 // :behavior — OTP gen_server callbacks (§II.3)
116 // :upgrade-from — OTP appup migration (§II.4)
117 // :estrategia — OTP supervisor strategy (§II.2 + §III.2)
118 // :children — OTP supervisor children (§II.2 + §III.2)
119 //
120 // The supervisor slots are flat on Caixa (vs nested under a
121 // SupervisorSpec sub-form) to keep tatara-lisp authoring at one
122 // level of nesting; SupervisorSpec exists for validation +
123 // composition convenience (`Caixa::supervisor_view()`).
124 /// Lunatic-style per-process resource limits. None = unbounded.
125 #[serde(default, skip_serializing_if = "Option::is_none")]
126 pub limits: Option<LimitsSpec>,
127
128 /// OTP-shaped behavior callbacks for Servico-kind caixas.
129 /// Authored as `(:on-init "..." :on-call "..." …)`.
130 #[serde(default, skip_serializing_if = "Option::is_none")]
131 pub behavior: Option<BehaviorSpec>,
132
133 /// OTP appup — declarative upgrade instructions per prior version.
134 /// Empty list = no hot-upgrade path declared (caller falls back to
135 /// `:Restart` strategy).
136 #[serde(default)]
137 pub upgrade_from: Vec<UpgradeFromEntry>,
138
139 /// OTP supervisor strategy. Required when `:kind Supervisor`;
140 /// ignored otherwise.
141 #[serde(default, skip_serializing_if = "Option::is_none")]
142 pub estrategia: Option<crate::supervisor::RestartStrategy>,
143
144 /// Max restarts before the supervisor itself fails. Defaults via
145 /// SupervisorSpec at validation time.
146 #[serde(default, skip_serializing_if = "Option::is_none")]
147 pub max_restarts: Option<u32>,
148
149 /// Sliding window for `max_restarts`. Authored as a duration
150 /// string (`"60s"`, `"5m"`).
151 #[serde(default, skip_serializing_if = "Option::is_none")]
152 pub restart_window: Option<String>,
153
154 /// Static children of a supervisor. Required for OneForOne /
155 /// OneForAll / RestForOne; must be empty for SimpleOneForOne.
156 #[serde(default)]
157 pub children: Vec<crate::supervisor::ChildSpec>,
158
159 // ── M3 Aplicacao slots (theory/MESH-COMPOSITION.md) ─────────────────
160 //
161 // Required when :kind Aplicacao; ignored otherwise.
162 // Composed into a typed AplicacaoSpec via Caixa::aplicacao_view().
163 /// Member Servicos that make up this Aplicacao. Each is a
164 /// caixa-name + version-constraint pair. Required for Aplicacao.
165 #[serde(default)]
166 pub membros: Vec<crate::aplicacao::Membro>,
167
168 /// WIT-typed inter-Servico contracts. Each `:de` and `:para`
169 /// must reference a name in `:membros`.
170 #[serde(default)]
171 pub contratos: Vec<crate::aplicacao::WitContract>,
172
173 /// Mesh-level policies (timeout, retries, circuit-breaker, mTLS,
174 /// rate-limit). Apply to every contrato unless overridden per-edge
175 /// in M4.
176 #[serde(default, skip_serializing_if = "Option::is_none")]
177 pub politicas: Option<crate::aplicacao::MeshPolicy>,
178
179 /// Placement strategy across the cluster fleet
180 /// (single-node | replicated | sharded).
181 #[serde(default, skip_serializing_if = "Option::is_none")]
182 pub placement: Option<crate::aplicacao::Placement>,
183
184 /// External entry point — gateway / ingress shape. Optional;
185 /// only for public Aplicacaos.
186 #[serde(default, skip_serializing_if = "Option::is_none")]
187 pub entrada: Option<crate::aplicacao::Entrada>,
188
189 // ── Acao slot (CANTEIRO §7.1-C) ──────────────────────────────────────
190 //
191 // Required when :kind Acao; ignored otherwise (mirrors the M2/
192 // supervisor-tree/M3 slot triads above — a declared-but-foreign `:ci`
193 // is a `LayoutError::CiOnNonAcao` build error, not a silent drop).
194 /// Typed CI run — a repo's CI run as a set of typed nodes + their
195 /// dependency edges. Required for `:kind Acao`; validated (not
196 /// rendered) by the `caixa-actions` renderer via
197 /// `canteiro_types::decompose`. See `caixa-actions`' crate docs for
198 /// the M0 validate-only contract.
199 #[serde(default, skip_serializing_if = "Option::is_none")]
200 pub ci: Option<canteiro_types::CiRun>,
201}
202
203/// Why reading a manifest into a [`Caixa`] failed.
204///
205/// Split from [`ManifestError`] (which reports a *parsed* manifest that is
206/// semantically wrong) because the two answer different questions, and the
207/// distinction is the whole point of this type: `ManifestError` means "your
208/// caixa is wrong", `LeituraError::DialetoEstrangeiro` means "this file is not
209/// a caixa".
210#[derive(Debug, thiserror::Error)]
211pub enum LeituraError {
212 /// The source is not readable as a `(defcaixa …)` package manifest — bad
213 /// syntax, a wrong head symbol, an unknown or mistyped slot.
214 ///
215 /// `#[source]`, not `#[error(transparent)]`. Transparent delegates
216 /// `source()` past the inner error to ITS source, which drops the
217 /// `LispError` off the cause chain — and `feira`'s
218 /// `load_caixa_parse_error_preserves_underlying_lisp_error_on_chain`
219 /// pins that a caller can `downcast_ref::<tatara_lisp::LispError>()`
220 /// through an anyhow context to read the typed payload. That pin caught
221 /// this exact regression when the variant first landed transparent.
222 #[error("{0}")]
223 Leitura(
224 #[source]
225 #[from]
226 tatara_lisp::LispError,
227 ),
228
229 /// The source IS a well-formed `(defcaixa …)` form, but of a different
230 /// declaration than this crate's.
231 ///
232 /// The variant that did not exist before, and whose absence is the defect.
233 /// A `(defcaixa :name "x" :ecosystem :go …)` used to reach the derive's
234 /// `parse_kwargs_strict` and come back as an unknown-keyword rejection —
235 /// byte-identical in shape to a typo in a real manifest. Measured over the
236 /// org checkout on 2026-07-31, that shape is the MAJORITY of the corpus, so
237 /// the confusing error was also the common one.
238 ///
239 /// Carrying the dialect means a consumer can branch on "not mine" without
240 /// re-parsing, and a census can count it. Every user-facing byte-string
241 /// (canonical keyword, one-line description, consuming crate) is a
242 /// projection of [`crate::dialeto::CaixaDialeto`] — the variant stores the
243 /// typed dialect and the `#[error]` template calls
244 /// [`CaixaDialeto::palavra_canonica`] /
245 /// [`CaixaDialeto::descricao`] / [`CaixaDialeto::consumidor`] on it, so
246 /// the three axes cannot silently diverge from the classification. Prior
247 /// to this closure the variant carried each accessor's return value as a
248 /// stored `&'static str` snapshot alongside `dialeto`, and the sole
249 /// constructor at [`Caixa::from_lisp`] filled all four fields — a caller
250 /// could construct `DialetoEstrangeiro { dialeto: Molde,
251 /// palavra_canonica: "defcaixa", … }` and every downstream consumer
252 /// (Display, ad-hoc audit, future JSON serialization) would silently
253 /// disagree with `dialeto.palavra_canonica() == "defmolde"`. The typed
254 /// enum owns the projections; the variant only carries the axis.
255 #[error(
256 "this is a `{palavra}` declaration ({desc}), read by \
257 {cons} — not a caixa-core package manifest. `defcaixa` is the \
258 tatara-lisp package manifest (`:nome :versao :kind :deps …`); the two \
259 are different declarations that shared one keyword until 2026-07-31",
260 palavra = dialeto.palavra_canonica(),
261 desc = dialeto.descricao(),
262 cons = dialeto.consumidor()
263 )]
264 DialetoEstrangeiro {
265 /// Which declaration this actually is. Sole authoritative axis;
266 /// every user-facing projection routes through
267 /// [`crate::dialeto::CaixaDialeto`]'s typed accessors so the four
268 /// axes cannot silently disagree.
269 dialeto: crate::dialeto::CaixaDialeto,
270 },
271
272 /// Not a manifest declaration at all.
273 #[error(transparent)]
274 Dialeto(#[from] crate::dialeto::DialetoError),
275}
276
277/// Substrate-canonical universal-axis per-[`Caixa`] `:licenca` SPDX-shaped
278/// license-expression fallback for the `Option<String>` `:licenca` slot —
279/// the `"MIT"` SPDX identifier every [`caixa-helm`]-rendered
280/// `lareira-<nome>` Helm chart's `README.md` `## License` section folds an
281/// author-omitted (`None`) `:licenca` slot through, extracted as a typed
282/// `pub const` so every substrate-side consumer that resolves "what license
283/// scalar does an author-omitted `:licenca` degrade onto?" reaches for
284/// exactly one substrate-primitive `&'static str`.
285///
286/// The `:licenca` fallback axis has one production consumer today — the
287/// [`caixa-helm`] `build_readme` fold at `caixa-helm/src/lib.rs`'s
288/// `caixa.licenca().unwrap_or(CAIXA_LICENCA_DEFAULT)` `README.md`
289/// `## License` section body — with three sibling caixa-core sites that
290/// cite the `"MIT"` fallback in prose (this crate's [`Caixa::licenca`]
291/// accessor's docstring, [`Self::validate_licenca`]'s docstring, and the
292/// [`ManifestError::LicencaEmpty`] `#[error]` template's user-facing text)
293/// all quoting the exact byte-string a future substrate-side rebrand of the
294/// fallback (a tightening to `"Apache-2.0"` as the substrate absorbs the
295/// wasm-component-model conventions the `wasi:*` WIT worlds already carry,
296/// a per-cluster license-default overlay the M4 CR materializer resolves
297/// per-CR, a promotion to the plain `Option<String>` byte-string into a
298/// richer `SpdxExpression` enum once the SPDX-expression parser lands per
299/// [`Self::validate_licenca`]'s docstring roadmap) would silently split
300/// against — the caixa-helm renderer would emit the new byte, the
301/// docstrings would still cite the prior byte, and every author who reads
302/// the accessor docstring before authoring would file a fresh
303/// `:licenca "MIT"` verbatim rather than defer to the substrate default,
304/// with the drift surfacing at chart-README-audit time far from the
305/// substrate rebrand commit.
306///
307/// Prior to this lift the sole production emitter (`build_readme`) carried
308/// an inline `"MIT"` byte literal at
309/// `caixa-helm/src/lib.rs:1018`'s `.unwrap_or("MIT")` fallback arm — one
310/// occurrence of the same load-bearing per-`Caixa` universal-axis
311/// SPDX-shaped license-expression convention as the four sibling caixa-core
312/// docstring citations, drift-prone by construction ahead of the second
313/// occurrence the future M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
314/// materializer's per-Aplicacao registry-annotation synthesis (the
315/// [`Self::validate_licenca`] roadmap already names the `Chart.yaml
316/// annotations["artifacthub.io/license"]` axis every registry-facing chart
317/// carries as the second consumer) will surface.
318///
319/// The `"MIT"` value pins the canonical CAIXA-SDLC §I license scaffold
320/// every `feira init`-emitted [`Self::template`] carries verbatim
321/// (`:licenca "MIT"`) and every substrate-side renderer fixture
322/// ([`caixa-helm`]'s `sample_caixa`, [`caixa-flux`]'s renderer fixtures,
323/// [`caixa-mesh`]'s renderer fixtures) seeds by construction, matching the
324/// pleme-io repo `LICENSE` header this workspace itself ships under. The
325/// alternatives an author declares explicitly (compound SPDX expressions
326/// like `"Apache-2.0 OR MIT"`, permissive-family peers like
327/// `"Apache-2.0"` / `"BSD-3-Clause"`, license-with-exception forms like
328/// `"Apache-2.0 WITH LLVM-exception"`) express deliberate license postures
329/// an author declares explicitly, never a posture an author-omitted slot
330/// should silently assume by default.
331///
332/// Lifted as a typed `pub const` so the substrate's chosen license
333/// fallback has exactly one source of truth on the `:licenca` fallback
334/// axis, on the same substrate-primitive lift discipline the peer
335/// per-`Caixa` load-bearing-scalar constants
336/// ([`crate::version::DEFAULT_PUBLISH_TAG_PREFIX`],
337/// [`crate::version::DEFAULT_GIT_REMOTE`],
338/// [`crate::version::DEFAULT_PLEME_GIT_ORG`]) already carry on the sibling
339/// per-`Caixa` universal-axis publish-side convention surface, and the
340/// same discipline the sibling M2 per-supervisor default set carries
341/// end-to-end ([`crate::supervisor::SUPERVISOR_ESTRATEGIA_DEFAULT`],
342/// [`crate::supervisor::SUPERVISOR_MAX_RESTARTS_DEFAULT`],
343/// [`crate::supervisor::SUPERVISOR_RESTART_WINDOW_DEFAULT`],
344/// [`crate::supervisor::SUPERVISOR_CHILD_RESTART_DEFAULT`]) and the M3
345/// per-`:placement` default set already carries
346/// ([`crate::aplicacao::PLACEMENT_ESTRATEGIA_DEFAULT`]) on the paired
347/// M2 / M3 typed-slot-default axes. First typed default on the outer
348/// top-level [`Caixa`] universal-axis surface to converge onto the
349/// substrate-primitive-lift discipline the M2 / M3 typed-slot families
350/// already carry.
351pub const CAIXA_LICENCA_DEFAULT: &str = "MIT";
352
353impl Caixa {
354 /// Parse a `caixa.lisp` source string to a typed `Caixa`.
355 ///
356 /// Classifies the dialect **before** parsing. A `(defcaixa …)` of another
357 /// declaration is [`LeituraError::DialetoEstrangeiro`], naming what it is
358 /// and who reads it, instead of an unknown-keyword rejection that reads as
359 /// "your manifest is broken".
360 ///
361 /// The ordering is load-bearing. Handing a foreign dialect to the derive
362 /// first and interpreting the failure afterwards would mean guessing from
363 /// an error message, and the guess would be wrong for every file whose
364 /// first unknown slot happens to be one both schemas could plausibly carry.
365 pub fn from_lisp(src: &str) -> Result<Self, LeituraError> {
366 use tatara_lisp::domain::TataraDomain;
367 let forms = tatara_lisp::read(src).map_err(LeituraError::Leitura)?;
368 let first = forms.first().ok_or(crate::dialeto::DialetoError::Vazio)?;
369
370 // Route the foreign-dialect rejection gate through the lifted
371 // [`crate::dialeto::CaixaDialeto::is_molde_family`] (e9d2315)
372 // typed predicate rather than the pre-lift hand-rolled three-arm
373 // `match { Pacote => {}, Desconhecido => {}, foreign => Err(…) }`
374 // literal — the `defmolde` declaration-family partition (the two-
375 // arity closure of [`crate::dialeto::CaixaDialeto::Molde`] and
376 // [`crate::dialeto::CaixaDialeto::MoldePosicional`], the two arms
377 // whose sibling [`crate::dialeto::CaixaDialeto::palavra_canonica`]
378 // projection already collapses onto `"defmolde"` and whose sibling
379 // [`crate::dialeto::CaixaDialeto::consumidor`] projection already
380 // collapses onto `"pleme-doc-gen"`) resolves through one dispatch
381 // on the substrate primitive. `Pacote` (the tatara-lisp package
382 // manifest this derive can parse) and `Desconhecido` (deliberately
383 // falls through to the derive rather than short-circuiting: a
384 // `(defcaixa …)` matching neither schema is most likely a genuine
385 // package manifest with a typo in `:nome`, and the derive's
386 // diagnostic — which names the offending keyword and suggests the
387 // nearest slot — is far better than anything this classifier
388 // could say) both return `false` from `is_molde_family()` and fall
389 // through to the derive. Only the typed dialect flows into the
390 // error — the three user-facing projections (canonical keyword,
391 // description, consumer) are read at Display time through
392 // [`crate::dialeto::CaixaDialeto`]'s own accessors, so the
393 // variant cannot carry a snapshot that drifts from
394 // [`crate::dialeto::CaixaDialeto::palavra_canonica`] /
395 // `descricao` / `consumidor`. A future fifth dialect the
396 // [`crate::dialeto`] module doc's "third dialect" hazard
397 // actualises that belongs to the `defmolde` family lands one
398 // match arm at [`crate::dialeto::CaixaDialeto::is_molde_family`]
399 // and this gate picks up the new arm by construction — the pre-
400 // lift wildcard `foreign =>` was compile-time-anonymous and would
401 // silently absorb any hypothetical fifth `defcaixa`-family arm as
402 // foreign; routing the partition through the typed predicate
403 // closes both drift surfaces.
404 let dialeto = crate::dialeto::classify_form(first)?;
405 if dialeto.is_molde_family() {
406 return Err(LeituraError::DialetoEstrangeiro { dialeto });
407 }
408
409 Self::compile_from_sexp(first).map_err(LeituraError::Leitura)
410 }
411
412 /// Register `Caixa` with the global tatara-lisp domain registry so
413 /// `defcaixa` is dispatchable from any tatara-lisp binary that seeds
414 /// the registry (e.g. `tatara-check`).
415 ///
416 /// Returns the typed [`tatara_lisp::KeywordCollision`] on the second
417 /// (and every subsequent) call in the same process — one keyword,
418 /// one type, per process is a hard invariant of the upstream
419 /// registry, and a caller that hits it must fix its crate graph
420 /// rather than swallowing the error. Peer of the sibling per-crate
421 /// `register()` entry points at `caixa-flake/src/flake.rs`,
422 /// `caixa-fmt/src/lisp_config.rs`, `caixa-lacre/src/lock.rs`,
423 /// `caixa-lint/src/lisp_config.rs`, `caixa-resolver/src/lisp_config.rs`
424 /// — every substrate crate that owns a tatara-lisp keyword now
425 /// propagates the same typed error verbatim, so a downstream binary
426 /// that seeds the registry (`tatara-check`, the future LSP) reaches
427 /// for one shape at every call site.
428 ///
429 /// # Errors
430 ///
431 /// [`tatara_lisp::KeywordCollision`] when a peer type has already
432 /// claimed the `defcaixa` keyword in this process.
433 pub fn register() -> Result<(), tatara_lisp::KeywordCollision> {
434 tatara_lisp::domain::register::<Self>()
435 }
436
437 /// Substrate-canonical per-`Caixa` `:licenca` SPDX-expression scalar
438 /// accessor every consumer of the top-level manifest's license axis
439 /// keys off — returns the author-declared `:licenca` byte-string
440 /// verbatim as an `Option<&str>`, borrowed from the typed slot's own
441 /// `Option<String>` storage. `None` when the slot is absent (the
442 /// canonical "omit to defer to the caixa-helm renderer's `MIT`
443 /// fallback" shape [`Self::validate_licenca`] documents at
444 /// caixa-core/src/manifest.rs:1560; the peer [`caixa-helm`]
445 /// `build_readme` fold at caixa-helm/src/lib.rs:962 reads this
446 /// predicate too, so an authored-but-unset `:licenca` round-trips to
447 /// a rendered `lareira-<nome>` chart's `README.md` `## License`
448 /// section structurally identical to one that omits the slot).
449 ///
450 /// The `:licenca` slot carries the universal-axis SPDX-expression
451 /// license identifier every kind of caixa emits under (CAIXA-SDLC
452 /// §I — the author-facing surface every `defcaixa` form supplies) —
453 /// the typed slot's `Option<String>` accept-set (empty-string
454 /// rejected through [`ManifestError::LicencaEmpty`], SPDX-alphabet-
455 /// invalid rejected through [`ManifestError::LicencaInvalid`]) maps
456 /// onto the `lareira-<nome>` Helm chart's `README.md` `## License`
457 /// section (caixa-helm/src/lib.rs:962) and (through future
458 /// tightening documented at [`Self::validate_licenca`]) the
459 /// Chart.yaml `annotations["artifacthub.io/license"]` axis every
460 /// registry-facing chart carries. Every downstream consumer that
461 /// reads the license byte-string keys off this scalar (the
462 /// [`Self::validate_licenca`] empty-arm + SPDX-shape gate that
463 /// routes through `self.licenca.as_deref()`, the caixa-helm
464 /// `build_readme` `unwrap_or_else(|| "MIT".into())` fold that keys
465 /// the fallback off the `Option::is_none()` arm, every future
466 /// per-`Caixa` registry-facing renderer the CAIXA-SDLC §I roadmap
467 /// acknowledges).
468 ///
469 /// Prior to this lift the `.licenca` field was accessed inline at
470 /// two production sites — [`Self::validate_licenca`]'s
471 /// `self.licenca.as_deref()` empty-and-shape gate binding and the
472 /// caixa-helm `build_readme` `caixa.licenca.clone().unwrap_or_else(||
473 /// "MIT".into())` `README.md` `## License` fold — two open-coded
474 /// field-accesses that expressed no compile-time link back to the
475 /// typed slot. A future extension of the `:licenca` axis to a
476 /// richer author surface — a per-`:licenca` structured SPDX
477 /// expression parser + license-id allowlist (the future tightening
478 /// [`Self::validate_licenca`]'s docstring acknowledges), a
479 /// per-cluster license-default overlay the M4 CR materializer
480 /// resolves per-CR (the "cluster policy pins `Apache-2.0` for every
481 /// unlisted caixa" arm), a promotion of the plain
482 /// `Option<String>` byte-string to a richer `SpdxExpression` enum
483 /// once the SPDX-expression parser lands — would have had to be
484 /// threaded through both open-coded copies in lockstep or the
485 /// validate gate and the caixa-helm emit path would silently
486 /// disagree on which license a given [`Caixa`] resolves to (an
487 /// author's `:licenca "MIT OR Apache-2.0"` would satisfy validate
488 /// while the emit path silently rendered a stale `MIT` fallback,
489 /// or vice versa). Lifting the resolution to a typed method on the
490 /// substrate primitive means every downstream consumer of the
491 /// caixa's per-`Caixa` license surface reaches for exactly one
492 /// typed dispatch — the resolver's accept-set migrates as a unit
493 /// on any future axis addition.
494 ///
495 /// First `Option<&str>`-return top-level [`Caixa`] scalar accessor —
496 /// opens the "outer [`Caixa`] `Option<&str>` scalar" projection
497 /// pattern the sibling per-`Caixa` `:descricao` / `:repositorio` /
498 /// `:edicao` future lifts fold on. Same "one typed dispatch on the
499 /// substrate primitive, thin projections at each consumer"
500 /// discipline the peer per-`:placement` [`crate::aplicacao::Placement::shard_key`]
501 /// (7cd2a28) / [`crate::aplicacao::Placement::affinity`] (74ec2d3)
502 /// / per-`:contratos` [`crate::aplicacao::WitContract::endpoint`]
503 /// (7020470) / [`crate::aplicacao::WitContract::subject`] (90de675)
504 /// / [`crate::aplicacao::WitContract::slot`] (ed22b66)
505 /// `Option<&str>`-return accessors carry on the sibling M2 / M3
506 /// typed-slot atom axes, extended here to the outer top-level
507 /// `Caixa` universal-axis surface. Named `licenca()` to match the
508 /// storage field's name; the accessor's identity maps onto the
509 /// canonical CAIXA-SDLC §I vocabulary the slot's docstring already
510 /// carries.
511 #[must_use]
512 pub const fn licenca(&self) -> Option<&str> {
513 match &self.licenca {
514 Some(s) => Some(s.as_str()),
515 None => None,
516 }
517 }
518
519 /// Substrate-canonical per-`Caixa` `:repositorio` git-repo-URL scalar
520 /// accessor every consumer of the top-level manifest's homepage /
521 /// source-of-truth axis keys off — returns the author-declared
522 /// `:repositorio` byte-string verbatim as an `Option<&str>`, borrowed
523 /// from the typed slot's own `Option<String>` storage. `None` when
524 /// the slot is absent (the canonical "omit to defer to the renderer's
525 /// per-target placeholder" shape — [`caixa-helm`]'s `ChartYaml.home`
526 /// carries the `Option<String>` through verbatim so an author-omitted
527 /// `:repositorio` renders a `Chart.yaml` without a `home:` field
528 /// (`skip_serializing_if = "Option::is_none"`), while [`caixa-flux`]'s
529 /// `ClusterBundleOpts::for_caixa` folds the omitted slot through a
530 /// `format!("https://github.com/{DEFAULT_PLEME_GIT_ORG}/{nome}")`
531 /// fallback derived from `caixa.nome`).
532 ///
533 /// The `:repositorio` slot carries the universal-axis git-repo-URL
534 /// homepage identifier every kind of caixa emits under (CAIXA-SDLC
535 /// §I — the author-facing surface every `defcaixa` form supplies) —
536 /// the typed slot's `Option<String>` accept-set (empty-string
537 /// rejected through [`ManifestError::RepositorioEmpty`], git-repo-URL-
538 /// shape-invalid rejected through [`ManifestError::RepositorioInvalid`]
539 /// past the shared [`crate::render::is_git_repo_url`] predicate the
540 /// peer per-`:deps :fonte :repo` axis also routes through) maps onto
541 /// four load-bearing downstream consumers:
542 ///
543 /// - [`Self::validate_repositorio`]'s empty-arm + shape-predicate
544 /// gate binding at caixa-core/src/manifest.rs:1456 — the
545 /// universal-axis identity gate wired at caixa-build time.
546 /// - [`caixa-helm`]'s `build_chart_yaml` `ChartYaml.home` fold at
547 /// caixa-helm/src/lib.rs:840 — the rendered `lareira-<nome>`
548 /// Helm chart's `Chart.yaml` `home:` field, which every registry
549 /// that ingests the chart (ArtifactHub, chartmuseum,
550 /// `helm search repo`) surfaces as the chart's canonical source-
551 /// of-truth link.
552 /// - [`caixa-helm`]'s `build_readme` `## Source` fold at
553 /// caixa-helm/src/lib.rs:957 — the rendered `lareira-<nome>`
554 /// chart's `README.md` header link back to the source repo,
555 /// which every author who inspects the rendered chart bundle
556 /// lands at.
557 /// - [`caixa-flux`]'s `ClusterBundleOpts::for_caixa`
558 /// `GitRepository.spec.url` fold at caixa-flux/src/lib.rs:2006 —
559 /// the rendered `GitRepository` CR's `spec.url` field, which
560 /// FluxCD's `source-controller` polls to reconcile the caixa's
561 /// manifest bundle from git.
562 ///
563 /// Prior to this lift the `.repositorio` field was accessed inline
564 /// at four production sites — [`Self::validate_repositorio`]'s
565 /// `self.repositorio.as_deref()` empty-and-shape gate binding, the
566 /// caixa-helm `build_chart_yaml` `caixa.repositorio.clone()`
567 /// `Chart.yaml` `home:` field fold, the caixa-helm `build_readme`
568 /// `caixa.repositorio.clone().unwrap_or_else(|| caixa.nome.clone())`
569 /// `README.md` `## Source` fold, and the caixa-flux
570 /// `ClusterBundleOpts::for_caixa`
571 /// `caixa.repositorio.clone().unwrap_or_else(|| format!(...))`
572 /// `GitRepository.spec.url` fold — four open-coded field-accesses
573 /// that expressed no compile-time link back to the typed slot. A
574 /// future extension of the `:repositorio` axis to a richer author
575 /// surface — a per-`:repositorio` structured
576 /// [`crate::render::GitRepoUrl`]-shaped scheme+host+path parse
577 /// (the future tightening [`Self::validate_repositorio`]'s
578 /// docstring anticipates alongside the peer per-`:deps :fonte
579 /// :repo` axis), a per-cluster repo-mirror overlay the M4 CR
580 /// materializer resolves per-CR (the "cluster policy rewrites
581 /// `github:pleme-io/...` to `git.internal/mirror/pleme-io/...`"
582 /// arm the private-registry story acknowledges), a promotion of
583 /// the plain `Option<String>` byte-string to a richer
584 /// `RepoUrl` enum discriminated on scheme — would have had to be
585 /// threaded through all four open-coded copies in lockstep or the
586 /// validate gate and the three emit paths would silently disagree
587 /// on which URL a given [`Caixa`] resolves to (an author's
588 /// `:repositorio "github:pleme-io/checkout"` would satisfy validate
589 /// while one of the emit paths silently rendered a stale URL, or
590 /// vice versa). Lifting the resolution to a typed method on the
591 /// substrate primitive means every downstream consumer of the
592 /// caixa's per-`Caixa` repo-URL surface reaches for exactly one
593 /// typed dispatch — the resolver's accept-set migrates as a unit on
594 /// any future axis addition.
595 ///
596 /// Second outer top-level [`Caixa`] `Option<&str>`-return scalar
597 /// accessor — sibling of [`Self::licenca`] (6d5bc28), the accessor
598 /// that opened the "outer [`Caixa`] `Option<&str>` scalar"
599 /// projection pattern this lift folds on. Same "one typed dispatch
600 /// on the substrate primitive, thin projections at each consumer"
601 /// discipline the peer per-`:placement`
602 /// [`crate::aplicacao::Placement::shard_key`] (7cd2a28) /
603 /// [`crate::aplicacao::Placement::affinity`] (74ec2d3) /
604 /// per-`:contratos` [`crate::aplicacao::WitContract::endpoint`]
605 /// (7020470) / [`crate::aplicacao::WitContract::subject`] (90de675)
606 /// / [`crate::aplicacao::WitContract::slot`] (ed22b66)
607 /// `Option<&str>`-return accessors carry on the sibling M2 / M3
608 /// typed-slot atom axes, extended here to the second outer top-level
609 /// `Caixa` universal-axis surface. Named `repositorio()` to match
610 /// the storage field's name; the accessor's identity maps onto the
611 /// canonical CAIXA-SDLC §I vocabulary the slot's docstring already
612 /// carries.
613 #[must_use]
614 pub const fn repositorio(&self) -> Option<&str> {
615 match &self.repositorio {
616 Some(s) => Some(s.as_str()),
617 None => None,
618 }
619 }
620
621 /// Substrate-canonical per-`Caixa` **resolved-git-repo-URL** composer —
622 /// returns the caixa's canonical git-source-of-truth URL as an owned
623 /// [`String`], author-declared `:repositorio` byte-string verbatim on
624 /// the `Some` arm and the substrate's canonical pleme-org github URL
625 /// fallback ([`crate::DEFAULT_PLEME_GIT_ORG`] and [`Self::nome`]
626 /// interpolated into `https://github.com/<org>/<nome>`) on the
627 /// `None` arm. Every substrate-side consumer that resolves
628 /// "which git URL does this caixa's source live at?" reaches for
629 /// exactly one typed dispatch on the substrate primitive — the raw
630 /// `caixa.repositorio().map(str::to_owned).unwrap_or_else(|| format!(
631 /// "https://github.com/{org}/{nome}", org = DEFAULT_PLEME_GIT_ORG,
632 /// nome = caixa.nome()))` open-coded composition every prior caller
633 /// re-derived collapses onto one canonical arm.
634 ///
635 /// Distinct from [`Self::repositorio`] (`Option<&str>`, exposes the
636 /// author-omitted / author-declared partition to the caller) — this
637 /// accessor is the **resolved** URL surface, folding the fallback in
638 /// at the substrate-primitive boundary. Every consumer that keys off
639 /// the `Option::is_none()` discriminator (a [`Chart.yaml`] `home:`
640 /// field emit that must omit the field entirely on an author-omitted
641 /// `:repositorio`, per the [`Self::repositorio`] docstring's
642 /// documented four-consumer list) reaches through the raw
643 /// [`Self::repositorio`] `Option<&str>` accessor by construction — the
644 /// resolved-URL composer sits alongside it as the second projection
645 /// on the same underlying `:repositorio` slot rather than replacing
646 /// the raw accessor.
647 ///
648 /// The fallback branch is the exact byte-image of the prior inline
649 /// [`caixa-flux::ClusterBundleOpts::for_caixa`] `git_url` composer at
650 /// caixa-flux/src/lib.rs:2080 — pinned by the sibling caixa-flux
651 /// byte-parity test
652 /// `cluster_bundle_opts_for_caixa_git_url_routes_through_canonical_git_url_accessor`
653 /// against a future implementation of this method that reordered the
654 /// `format!` template arguments, migrated the `<org>` segment to a
655 /// different constant (the [`crate::DEFAULT_PLEME_GIT_ORG`] axis a
656 /// future substrate-side git-org migration may split off), or
657 /// silently absorbed the empty-string arm (a hypothetical
658 /// `Some("") → fallback` collapse the raw [`Self::repositorio`]
659 /// accessor's docstring explicitly rejects on the sibling raw
660 /// accessor).
661 ///
662 /// Peer of the sibling per-`&Caixa`-axis composed helpers
663 /// [`caixa-flux::cluster_bundle_for_caixa`] (06d52d7) on the sibling
664 /// substrate-side renderer surface — same "close the composed
665 /// substrate-primitive at one canonical arm on the single-`&Caixa`
666 /// dispatch, converge every prior open-coded caller onto the arm"
667 /// discipline extended onto the resolved-git-URL projection of the
668 /// per-`Caixa` `:repositorio` axis. Owns per-call [`String`]
669 /// allocation on both arms (the `Some` arm's `str::to_owned` and the
670 /// `None` arm's `format!`) — the by-value return matches every
671 /// downstream consumer's field-fill shape (the caixa-flux
672 /// `ClusterBundleOpts::git_url: String` field, every future
673 /// `Chart.yaml` `home:` fold's `Option<String>` field-fill on the
674 /// `Some` arm).
675 #[must_use]
676 pub fn canonical_git_url(&self) -> String {
677 self.repositorio().map_or_else(
678 || {
679 format!(
680 "https://github.com/{org}/{nome}",
681 org = crate::DEFAULT_PLEME_GIT_ORG,
682 nome = self.nome(),
683 )
684 },
685 str::to_owned,
686 )
687 }
688
689 /// Substrate-canonical per-`Caixa` **resolved-publish-tag** composer —
690 /// returns the caixa's canonical Zig-style git-publish-tag as an owned
691 /// [`String`], derived by concatenating
692 /// [`crate::DEFAULT_PUBLISH_TAG_PREFIX`] with the typed
693 /// [`Self::versao`] byte-string on a single `format!` template.
694 /// Every substrate-side consumer that resolves "which git tag does this
695 /// caixa publish under?" reaches for exactly one typed dispatch on the
696 /// substrate primitive — the raw `format!("{prefix}{versao}", prefix =
697 /// caixa_core::DEFAULT_PUBLISH_TAG_PREFIX, versao = caixa.versao())`
698 /// open-coded composition every prior caller re-derived collapses onto
699 /// one canonical arm.
700 ///
701 /// Peer of the sibling [`Self::canonical_git_url`] (124f864) resolved-
702 /// git-URL composer on the paired per-`Caixa` git-remote axis — same
703 /// "close the composed substrate-primitive at one canonical arm on the
704 /// single-`&Caixa` dispatch, converge every prior open-coded caller
705 /// onto the arm" discipline extended from the resolved-URL projection
706 /// of the per-`Caixa` `:repositorio` axis onto the resolved-tag
707 /// projection of the per-`Caixa` `:versao` axis. The two accessors
708 /// jointly close the pair of scalars every `FluxCD` `GitRepository` CR
709 /// keys off (`spec.url` via [`Self::canonical_git_url`],
710 /// `spec.ref.tag` via [`Self::publish_tag`]) at the substrate primitive
711 /// — a downstream consumer that reaches through both accessors reads
712 /// the complete published-git-identity of a caixa through two typed
713 /// dispatches, not four open-coded field accesses.
714 ///
715 /// The reader-side (`caixa-flux::cluster_bundle` /
716 /// `ClusterBundleOpts::for_caixa`'s `git_ref` field, every future
717 /// per-cluster snapshot bundle emitter, the future M4
718 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's tag-carrier
719 /// slot on the tatara `Process` intent) always resolves the tag under
720 /// the canonical [`crate::DEFAULT_PUBLISH_TAG_PREFIX`] prefix — this
721 /// method encodes that reader-side convention. The writer-side
722 /// (`caixa-feira`'s `feira publish` `--prefix` clap flag) allows the
723 /// operator to override the prefix at publish time; the two surfaces
724 /// intentionally sit on the "canonical default + operator override"
725 /// pair the sibling [`crate::DEFAULT_PUBLISH_TAG_PREFIX`] constant's
726 /// own docstring documents — a `feira publish --prefix release/`
727 /// override is the operator's explicit opt-out from the substrate
728 /// default, not a supported drift axis.
729 ///
730 /// The composition body is the exact byte-image of the prior inline
731 /// [`caixa-flux::ClusterBundleOpts::for_caixa`] `git_ref` composer at
732 /// caixa-flux/src/lib.rs:2105 — pinned by the sibling caixa-flux
733 /// byte-parity test
734 /// `cluster_bundle_opts_for_caixa_git_ref_routes_through_publish_tag_accessor`
735 /// against a future implementation of this method that reordered the
736 /// `format!` template arguments, migrated the `<prefix>` segment to a
737 /// different constant (the [`crate::DEFAULT_PUBLISH_TAG_PREFIX`] axis
738 /// a future Zig-style-tag rebrand may split off — the constant's own
739 /// docstring anticipates a substrate-side move to `release/<versao>`
740 /// or bare `<versao>` shapes once a sibling forge convention adopts a
741 /// slash-namespaced or bare-scalar form), interposed a canonicalization
742 /// pass on the `:versao` axis (a SemVer-2 build-metadata strip an OCI-
743 /// tag normalizer might apply once the M4 registry-alignment slot
744 /// lands), or silently absorbed an empty `:versao` arm (which cannot
745 /// occur past the [`Self::validate_versao`] gate but which a
746 /// hypothetical bypass on the accessor path must not silently paper
747 /// over).
748 ///
749 /// Owns per-call [`String`] allocation via the single `format!`
750 /// invocation — the by-value return matches every downstream
751 /// consumer's field-fill shape (the caixa-flux `GitRefSpec::Tag(String)`
752 /// variant's owned payload, every future `intent.aplicacao.tag: String`
753 /// field-fill on the M4 CR materializer's tag-carrier slot).
754 #[must_use]
755 pub fn publish_tag(&self) -> String {
756 format!(
757 "{prefix}{versao}",
758 prefix = crate::DEFAULT_PUBLISH_TAG_PREFIX,
759 versao = self.versao(),
760 )
761 }
762
763 /// Substrate-canonical per-`Caixa` **resolved-Helm-chart-name** composer
764 /// — returns the caixa's canonical `lareira-<nome>` per-Servico Helm
765 /// chart identity as an owned [`String`], derived by dispatching through
766 /// the substrate-canonical [`crate::lareira_chart_name`] helper against
767 /// the typed [`Self::nome`] byte-string. Every substrate-side consumer
768 /// that resolves "which Helm chart identity does this caixa render
769 /// under?" reaches for exactly one typed dispatch on the substrate
770 /// primitive — the raw `caixa_core::lareira_chart_name(caixa.nome())`
771 /// two-step compose every prior caller re-derived collapses onto one
772 /// canonical arm on the single-`&Caixa` dispatch.
773 ///
774 /// Peer of the sibling [`Self::canonical_git_url`] (124f864) resolved-
775 /// git-URL composer + [`Self::publish_tag`] (07e05b8) resolved-publish-
776 /// tag composer on the paired per-`Caixa` published-artifact-identity
777 /// axis — same "close the composed substrate-primitive at one canonical
778 /// arm on the single-`&Caixa` dispatch, converge every prior open-coded
779 /// caller onto the arm" discipline extended from the resolved-URL /
780 /// resolved-tag projections of the `:repositorio` / `:versao` axes onto
781 /// the resolved-chart-name projection of the `:nome` axis. The three
782 /// accessors jointly close the triple of scalars every per-Servico
783 /// deploy artifact keys off (git source URL via
784 /// [`Self::canonical_git_url`], git source tag via
785 /// [`Self::publish_tag`], per-Servico Helm chart identity via
786 /// [`Self::lareira_chart_name`]) at the substrate primitive — a
787 /// downstream consumer that reaches through all three reads the
788 /// complete deploy-artifact identity of a caixa through three typed
789 /// dispatches, not six open-coded compositions across three renderer
790 /// crates.
791 ///
792 /// The reader-side (three production sites at the time of the lift —
793 /// [`caixa-helm::render_chart_for_servico_with`]'s `ChartDir.name`
794 /// composer at caixa-helm/src/lib.rs:778, the peer
795 /// [`caixa-flux::cluster_bundle`]'s per-CR `chart_name` binding at
796 /// caixa-flux/src/lib.rs:2219, and
797 /// [`caixa-tatara::process_for_aplicacao`]'s `release_name`
798 /// composer at caixa-tatara/src/lib.rs:227, plus every future
799 /// per-Servico OCI publish emitter the CAIXA-SDLC §II
800 /// `caixa-publish.yml` reusable workflow's `skopeo push` step keys
801 /// off, the future per-cluster snapshot bundle emitter, the future
802 /// M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
803 /// per-member chart-carrier slot on the tatara `Process` intent) —
804 /// always resolves the chart name under the canonical
805 /// [`crate::LAREIRA_CHART_NAME_PREFIX`] prefix; this method encodes
806 /// that reader-side convention. The joint-length invariant the peer
807 /// [`Self::validate_nome_chart_name_budget`] gate enforces at
808 /// caixa-build time (author-declared `:nome` + fixed prefix ≤
809 /// [`crate::DNS_1123_LABEL_MAX_LEN`]) is verified on the input to
810 /// this composer by construction, so the produced `lareira-<nome>`
811 /// string is a valid Helm chart-name segment on every accept-set
812 /// input.
813 ///
814 /// The composition body is the exact byte-image of the prior inline
815 /// `caixa_core::lareira_chart_name(caixa.nome())` two-step form every
816 /// prior caller re-derived — pinned by the sibling caixa-helm /
817 /// caixa-flux / caixa-tatara byte-parity tests
818 /// `<crate>_lareira_chart_name_routes_through_caixa_accessor` against
819 /// a future implementation of this method that reordered the
820 /// composition arguments, migrated the `<prefix>` segment to a
821 /// different constant (the [`crate::LAREIRA_CHART_NAME_PREFIX`] axis a
822 /// future substrate-side chart-family rebrand may split off — the
823 /// constant's own docstring anticipates a substrate-side move once
824 /// the `lareira-` scoping intent outlives the family it names),
825 /// interposed a canonicalization pass on the `:nome` axis (a per-
826 /// registry namespace-qualification an M4 CR materializer might apply
827 /// per-CR — the "`pleme-io/checkout` vs `partner-org/checkout`
828 /// collision" arm the multi-tenant-registry story acknowledges), or
829 /// silently absorbed an empty `:nome` arm (which cannot occur past
830 /// the [`Self::validate_nome`] gate but which a hypothetical bypass
831 /// on the accessor path must not silently paper over).
832 ///
833 /// Owns per-call [`String`] allocation via the single
834 /// [`crate::lareira_chart_name`] `format!` invocation — the by-value
835 /// return matches every downstream consumer's field-fill shape (the
836 /// caixa-helm `ChartDir.name: String` field, the caixa-flux per-CR
837 /// `chart_name: String` binding, the caixa-tatara
838 /// `AplicacaoIntent.release_name: Option<String>` field-fill on the
839 /// `Some` arm).
840 #[must_use]
841 pub fn lareira_chart_name(&self) -> String {
842 crate::lareira_chart_name(self.nome())
843 }
844
845 /// Substrate-canonical per-`Caixa` **resolved-OCI-chart-ref** composer
846 /// — returns the caixa's canonical `oci://<registry>/lareira-<nome>`
847 /// per-Servico Helm chart OCI artifact reference as an owned
848 /// [`String`], derived by dispatching through the substrate-canonical
849 /// [`crate::oci_chart_ref`] helper (which itself composes
850 /// [`crate::OCI_SCHEME_PREFIX`] + the caller-supplied `registry` +
851 /// [`crate::lareira_chart_name`]-of-[`Self::nome`]) against the
852 /// caller-supplied `registry` and the typed [`Self::nome`] byte-string.
853 /// Every substrate-side consumer that resolves "which OCI chart
854 /// artifact does this caixa publish under, in this registry?" reaches
855 /// for exactly one typed dispatch on the substrate primitive — the raw
856 /// `caixa_core::oci_chart_ref(registry, caixa.nome())` two-step compose
857 /// every prior caller re-derived collapses onto one canonical arm on
858 /// the single-`(&Caixa, &str)` dispatch.
859 ///
860 /// Fourth member of the paired per-`Caixa` published-artifact-identity
861 /// axis alongside [`Self::canonical_git_url`] (124f864) /
862 /// [`Self::publish_tag`] (07e05b8) / [`Self::lareira_chart_name`]
863 /// (a8f0bee) — same "close the composed substrate-primitive at one
864 /// canonical arm on the single-`&Caixa` dispatch, converge every
865 /// prior open-coded caller onto the arm" discipline extended from the
866 /// resolved-URL / resolved-tag / resolved-chart-name projections of
867 /// the `:repositorio` / `:versao` / `:nome` axes onto the resolved-
868 /// OCI-ref projection over the paired `(registry, :nome)` inputs. The
869 /// four accessors jointly close the per-`Caixa` published-artifact-
870 /// identity surface every downstream consumer of a caixa's published
871 /// deploy artifacts keys off (git source URL via
872 /// [`Self::canonical_git_url`], git source tag via
873 /// [`Self::publish_tag`], per-Servico Helm chart identity via
874 /// [`Self::lareira_chart_name`], per-registry OCI chart artifact
875 /// reference via [`Self::oci_chart_ref`]) at the substrate primitive
876 /// — a downstream consumer that reaches through all four reads the
877 /// complete deploy-artifact identity of a caixa through four typed
878 /// dispatches, not eight open-coded compositions across four renderer
879 /// crates. The unique-signature dispatch (`(&Caixa, &str)` on this
880 /// method vs. `&Caixa` on the sibling three) reflects the extra input
881 /// axis this composer folds in: unlike the git-URL / git-tag / chart-
882 /// name axes (each derived purely from a `&Caixa`), the OCI-ref axis
883 /// pairs the caixa's per-`:nome` chart identity with the caller-
884 /// supplied per-registry authority segment, so the accessor threads
885 /// the registry byte-string through as a positional `&str`.
886 ///
887 /// The reader-side (one production site at the time of the lift —
888 /// [`caixa-tatara::process_for_aplicacao`]'s `derive_chart_ref` helper
889 /// at caixa-tatara/src/lib.rs:333 that composes the emitted
890 /// `AplicacaoIntent.chart_ref` scalar the tatara-reconciler feeds into
891 /// `helm install`, plus every future per-Servico OCI publish emitter
892 /// the CAIXA-SDLC §II `caixa-publish.yml` reusable workflow's
893 /// `skopeo push` step keys off, the future per-cluster snapshot bundle
894 /// emitter's per-CR `oci://…` field-fill on the M4 registry-alignment
895 /// slot, the future M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
896 /// materializer's per-member `chart_ref` slot on the tatara `Process`
897 /// intent, the `FluxCD` `HelmRelease` `spec.chart.spec.chart` field-fill
898 /// on the OCI-source path an M4 per-cluster registry-rewrite overlay
899 /// applies per-CR) — always resolves the OCI ref under the canonical
900 /// [`crate::OCI_SCHEME_PREFIX`] scheme prefix + the canonical
901 /// [`Self::lareira_chart_name`] chart-name segment; this method
902 /// encodes that reader-side convention.
903 ///
904 /// The composition body is the exact byte-image of the prior inline
905 /// `caixa_core::oci_chart_ref(registry, caixa.nome())` two-step form
906 /// every prior caller re-derived — pinned by the sibling caixa-tatara
907 /// byte-parity test
908 /// `derive_chart_ref_routes_through_caixa_oci_chart_ref_accessor`
909 /// against a future implementation of this method that reordered the
910 /// composition arguments, migrated the `<scheme>` segment to a
911 /// different constant (the [`crate::OCI_SCHEME_PREFIX`] axis a future
912 /// substrate-side registry-protocol rebrand may split off — the
913 /// constant's own docstring anticipates a substrate-side move once
914 /// Helm 3 / `FluxCD` introduce a successor scheme past `oci://`),
915 /// migrated the `<chart>` segment off the paired
916 /// [`crate::lareira_chart_name`] composer (a per-registry
917 /// namespace-qualification an M4 CR materializer might apply per-CR),
918 /// interposed a canonicalization pass on the `registry` axis (an OCI-
919 /// authority normalization once the M4 registry-alignment slot lands),
920 /// or silently absorbed an empty `:nome` arm (which cannot occur past
921 /// the [`Self::validate_nome`] gate but which a hypothetical bypass
922 /// on the accessor path must not silently paper over).
923 ///
924 /// Owns per-call [`String`] allocation via the single
925 /// [`crate::oci_chart_ref`] `format!` invocation — the by-value return
926 /// matches every downstream consumer's field-fill shape (the caixa-
927 /// tatara `AplicacaoIntent.chart_ref: String` field-fill, every
928 /// future `intent.aplicacao.chart_ref: String` field-fill on the M4
929 /// CR materializer's chart-ref-carrier slot, every future
930 /// `HelmRelease.spec.chart.spec.chart: String` field-fill on the OCI-
931 /// source path).
932 #[must_use]
933 pub fn oci_chart_ref(&self, registry: &str) -> String {
934 crate::oci_chart_ref(registry, self.nome())
935 }
936
937 /// Substrate-canonical per-`Caixa` `:descricao` free-form-prose
938 /// chart-description scalar accessor every consumer of the top-level
939 /// manifest's Chart.yaml `description:` axis keys off — returns the
940 /// author-declared `:descricao` byte-string verbatim as an
941 /// `Option<&str>`, borrowed from the typed slot's own
942 /// `Option<String>` storage. `None` when the slot is absent (the
943 /// canonical "omit to defer to the per-renderer `caixa.nome`-derived
944 /// fallback" shape — [`caixa-helm`]'s `build_chart_yaml` folds the
945 /// omitted slot through a `format!("Generated chart for caixa Servico
946 /// {}", caixa.nome)` fallback, [`caixa-helm`]'s `build_readme` folds
947 /// it through a `format!("caixa Servico {}", caixa.nome)` fallback,
948 /// and [`caixa-feira`]'s `render_flake` folds it through a
949 /// `format!("caixa {}", c.nome)` `flake.nix` `description = ""`
950 /// fallback — each derived from `caixa.nome` on the null-carrier arm).
951 ///
952 /// The `:descricao` slot carries the universal-axis free-form-prose
953 /// chart-description identifier every kind of caixa emits under
954 /// (CAIXA-SDLC §I — the author-facing surface every `defcaixa` form
955 /// supplies) — the typed slot's `Option<String>` accept-set
956 /// (empty-string rejected through [`ManifestError::DescricaoEmpty`],
957 /// chart-description-shape-invalid rejected through
958 /// [`ManifestError::DescricaoInvalid`] past the shared
959 /// [`crate::render::is_chart_description_shape`] predicate the peer
960 /// per-`Caixa` `:descricao` axis also routes through) maps onto four
961 /// load-bearing downstream consumers:
962 ///
963 /// - [`Self::validate_descricao`]'s empty-arm + shape-predicate
964 /// gate binding — the universal-axis identity gate wired at
965 /// caixa-build time.
966 /// - [`caixa-helm`]'s `build_chart_yaml` `ChartYaml.description`
967 /// `Chart.yaml` field fold — the rendered `lareira-<nome>` Helm
968 /// chart's `Chart.yaml` `description:` field, which
969 /// `apiVersion: v2` charts require non-empty (`helm lint` fires
970 /// `WARNING [chart.metadata.description]: description is required`
971 /// when absent) and which every registry that ingests the chart
972 /// (ArtifactHub, chartmuseum, `helm search repo`) surfaces as the
973 /// chart's canonical one-line prose descriptor.
974 /// - [`caixa-helm`]'s `build_readme` chart-`README.md` header fold
975 /// — the rendered `lareira-<nome>` chart's `README.md` prose
976 /// header directly beneath the `# <chart-name>` title, which
977 /// every author who inspects the rendered chart bundle lands at.
978 /// - [`caixa-feira`]'s `render_flake` `flake.nix` `description = ""`
979 /// top-level fold — the emitted `flake.nix`'s `description`
980 /// field, which every Nix consumer (`nix flake show`,
981 /// `nix flake metadata`, downstream flake-registry ingestors)
982 /// surfaces as the flake's canonical descriptor.
983 ///
984 /// Prior to this lift the `.descricao` field was accessed inline at
985 /// four production sites — [`Self::validate_descricao`]'s
986 /// `self.descricao.as_deref()` empty-and-shape gate binding, the
987 /// caixa-helm `build_chart_yaml`
988 /// `caixa.descricao.clone().unwrap_or_else(|| format!(...))`
989 /// `Chart.yaml` `description:` fold, the caixa-helm `build_readme`
990 /// `caixa.descricao.clone().unwrap_or_else(|| format!(...))`
991 /// `README.md` header fold, and the caixa-feira `render_flake`
992 /// `c.descricao.clone().unwrap_or_else(|| format!(...))` `flake.nix`
993 /// `description = ""` fold — four open-coded field-accesses that
994 /// expressed no compile-time link back to the typed slot. A future
995 /// extension of the `:descricao` axis to a richer author surface —
996 /// a per-`:descricao` locale-tagged multi-language descriptor map
997 /// (the "one caixa, N language-tagged prose descriptions" arm
998 /// author-tooling internationalization anticipates), a
999 /// per-registry-target length-and-shape overlay the M4 CR
1000 /// materializer resolves per-CR (the "ArtifactHub caps description
1001 /// at 512 bytes but the internal registry caps at 256" arm), a
1002 /// promotion of the plain `Option<String>` byte-string to a richer
1003 /// `ChartDescription` newtype guaranteeing the
1004 /// `is_chart_description_shape` predicate at the type level — would
1005 /// have had to be threaded through all four open-coded copies in
1006 /// lockstep or the validate gate and the three emit paths would
1007 /// silently disagree on which prose string a given [`Caixa`]
1008 /// resolves to (an author's
1009 /// `:descricao "Checkout flow orchestration."` would satisfy
1010 /// validate while one of the emit paths silently rendered a stale
1011 /// `caixa.nome`-derived fallback, or vice versa). Lifting the
1012 /// resolution to a typed method on the substrate primitive means
1013 /// every downstream consumer of the caixa's per-`Caixa`
1014 /// chart-description surface reaches for exactly one typed dispatch
1015 /// — the resolver's accept-set migrates as a unit on any future
1016 /// axis addition.
1017 ///
1018 /// Third outer top-level [`Caixa`] `Option<&str>`-return scalar
1019 /// accessor — sibling of [`Self::licenca`] (6d5bc28) and
1020 /// [`Self::repositorio`] (cc7332d), the accessors that opened the
1021 /// "outer [`Caixa`] `Option<&str>` scalar" projection pattern this
1022 /// lift folds on. Same "one typed dispatch on the substrate
1023 /// primitive, thin projections at each consumer" discipline the
1024 /// peer per-`:placement`
1025 /// [`crate::aplicacao::Placement::shard_key`] (7cd2a28) /
1026 /// [`crate::aplicacao::Placement::affinity`] (74ec2d3) /
1027 /// per-`:contratos` [`crate::aplicacao::WitContract::endpoint`]
1028 /// (7020470) / [`crate::aplicacao::WitContract::subject`] (90de675)
1029 /// / [`crate::aplicacao::WitContract::slot`] (ed22b66)
1030 /// `Option<&str>`-return accessors carry on the sibling M2 / M3
1031 /// typed-slot atom axes, extended here to the third outer top-level
1032 /// `Caixa` universal-axis surface. Named `descricao()` to match the
1033 /// storage field's name; the accessor's identity maps onto the
1034 /// canonical CAIXA-SDLC §I vocabulary the slot's docstring already
1035 /// carries. The one remaining universal `Option<String>` slot
1036 /// (`:edicao`) folds on this pattern next.
1037 #[must_use]
1038 pub const fn descricao(&self) -> Option<&str> {
1039 match &self.descricao {
1040 Some(s) => Some(s.as_str()),
1041 None => None,
1042 }
1043 }
1044
1045 /// Substrate-canonical per-`Caixa` `:edicao` language-edition scalar
1046 /// accessor every consumer of the top-level manifest's tatara-lisp
1047 /// edition-selector axis keys off — returns the author-declared
1048 /// `:edicao` byte-string verbatim as an `Option<&str>`, borrowed from
1049 /// the typed slot's own `Option<String>` storage. `None` when the
1050 /// slot is absent (the canonical "omit the slot to defer to the
1051 /// substrate's default edition" shape every existing
1052 /// [`caixa-resolver`] integration test fixture carries via
1053 /// `edicao: None` — see `caixa-resolver/tests/git_integration.rs`;
1054 /// the peer [`Self::validate_edicao`] gate is a no-op on the omitted
1055 /// arm by construction, so an author-omitted `:edicao` round-trips
1056 /// to a build without triggering the year-shape predicate).
1057 ///
1058 /// The `:edicao` slot carries the universal-axis 4-digit-ASCII-
1059 /// decimal-year language-edition identifier every kind of caixa
1060 /// emits under (CAIXA-SDLC §I — the author-facing surface every
1061 /// `defcaixa` form supplies) — the typed slot's `Option<String>`
1062 /// accept-set (empty-string rejected through
1063 /// [`ManifestError::EdicaoEmpty`], year-shape-invalid rejected
1064 /// through [`ManifestError::EdicaoInvalid`] past the 4-digit-ASCII-
1065 /// decimal-year predicate [`Self::validate_edicao`] enforces) maps
1066 /// onto one load-bearing downstream consumer today
1067 /// ([`Self::validate_edicao`]'s empty-arm + year-shape-predicate
1068 /// gate binding at caixa-core/src/manifest.rs:1959) plus every
1069 /// future edition-aware substrate consumer the CAIXA-SDLC §I
1070 /// roadmap anticipates (the tatara-lisp compiler's macro-surface
1071 /// selector every edition-aware build step keys off, the future
1072 /// per-edition compatibility-flag overlay the M4 CR materializer
1073 /// resolves per-CR, the peer [`Caixa::template`] canonical
1074 /// `:edicao "2026"` scaffold every `feira init` emits verbatim,
1075 /// and the renderer-side fixtures at `caixa-helm/src/lib.rs:978` /
1076 /// `caixa-flux/src/lib.rs:2319` / `caixa-mesh/src/lib.rs:3208` that
1077 /// carry `edicao: Some("2026".into())` by construction).
1078 ///
1079 /// Prior to this lift the `.edicao` field was accessed inline at
1080 /// one production site — [`Self::validate_edicao`]'s
1081 /// `self.edicao.as_deref()` empty-and-shape gate binding — one
1082 /// open-coded field-access that expressed no compile-time link
1083 /// back to the typed slot. A future extension of the `:edicao`
1084 /// axis to a richer author surface — a per-`:edicao` known-
1085 /// edition allowlist (the future tightening
1086 /// [`Self::validate_edicao`]'s docstring acknowledges past the
1087 /// structural year-shape floor, rejecting year-shaped values that
1088 /// don't name a tatara-lisp edition the substrate actually
1089 /// understands — `"1999"` is year-shaped but no `1999` edition
1090 /// exists), a per-edition compatibility-flag overlay the M4 CR
1091 /// materializer resolves per-CR (the "edition `"2026"` enables
1092 /// macro-surface features the sibling `"2018"` gates behind a
1093 /// feature flag" arm the edition-selector story anticipates), a
1094 /// promotion of the plain `Option<String>` byte-string to a
1095 /// richer `CaixaEdition` enum discriminated on year once a sibling
1096 /// edition to `"2026"` lands — would have had to be threaded
1097 /// through the open-coded copy in lockstep with every future
1098 /// edition-aware consumer, or the validate gate and the future
1099 /// edition-aware consumer path would silently disagree on which
1100 /// edition a given [`Caixa`] resolves to (an author's
1101 /// `:edicao "2026"` would satisfy validate while a future
1102 /// edition-aware consumer silently defaulted to a stale edition,
1103 /// or vice versa). Lifting the resolution to a typed method on
1104 /// the substrate primitive means every downstream consumer of the
1105 /// caixa's per-`Caixa` edition surface reaches for exactly one
1106 /// typed dispatch — the resolver's accept-set migrates as a unit
1107 /// on any future axis addition.
1108 ///
1109 /// Fourth and final outer top-level [`Caixa`] `Option<&str>`-return
1110 /// scalar accessor — sibling of [`Self::licenca`] (6d5bc28),
1111 /// [`Self::repositorio`] (cc7332d), and [`Self::descricao`]
1112 /// (3f16e2f), the accessors that opened the "outer [`Caixa`]
1113 /// `Option<&str>` scalar" projection pattern this lift folds on.
1114 /// Same "one typed dispatch on the substrate primitive, thin
1115 /// projections at each consumer" discipline the peer per-`:placement`
1116 /// [`crate::aplicacao::Placement::shard_key`] (7cd2a28) /
1117 /// [`crate::aplicacao::Placement::affinity`] (74ec2d3) /
1118 /// per-`:contratos` [`crate::aplicacao::WitContract::endpoint`]
1119 /// (7020470) / [`crate::aplicacao::WitContract::subject`] (90de675)
1120 /// / [`crate::aplicacao::WitContract::slot`] (ed22b66)
1121 /// `Option<&str>`-return accessors carry on the sibling M2 / M3
1122 /// typed-slot atom axes, extended here to close the outer top-level
1123 /// `Caixa` universal-axis surface's last unlifted `Option<String>`
1124 /// slot. Named `edicao()` to match the storage field's name; the
1125 /// accessor's identity maps onto the canonical CAIXA-SDLC §I
1126 /// vocabulary the slot's docstring already carries.
1127 #[must_use]
1128 pub const fn edicao(&self) -> Option<&str> {
1129 match &self.edicao {
1130 Some(s) => Some(s.as_str()),
1131 None => None,
1132 }
1133 }
1134
1135 /// Substrate-canonical per-`Caixa` `:nome` universal-axis DNS-1123-
1136 /// label caixa-identity scalar accessor every consumer of the top-
1137 /// level manifest's identity axis keys off — returns the author-
1138 /// declared `:nome` byte-string verbatim as an `&str`, borrowed from
1139 /// the typed slot's own `String` storage. Non-optional (`:nome` is
1140 /// a required-axis scalar every `defcaixa` form must supply; the
1141 /// [`Self::from_lisp`] derive rejects an omitted / non-string
1142 /// `:nome` at parse time, so a `Caixa` past parse definitionally
1143 /// carries a non-`None` `:nome`).
1144 ///
1145 /// The `:nome` slot carries the universal-axis DNS-1123-label
1146 /// caixa-identity every kind of caixa emits under (CAIXA-SDLC §I —
1147 /// the primary identity axis every `defcaixa` form supplies
1148 /// alongside `:versao` / `:kind`; the substrate-wide identity every
1149 /// other typed surface that names a caixa reaches through — `:deps`
1150 /// entries, `:membros` entries, `:children` entries, the
1151 /// `lareira-<nome>` Helm chart name every per-Servico renderer
1152 /// derives, the `pleme-program-<nome>` label every per-Aplicacao
1153 /// renderer emits) — the typed slot's `String` accept-set (empty
1154 /// rejected through [`ManifestError::NomeEmpty`], DNS-1123-shape-
1155 /// invalid rejected through [`ManifestError::NomeInvalid`] past
1156 /// the shared [`crate::render::require_valid_dns_1123_label`] gate
1157 /// the peer name axes each land on, joint-length-with-`lareira-`-
1158 /// prefix rejected through
1159 /// [`ManifestError::NomeChartNameBudgetExceeded`] past
1160 /// [`crate::render::is_lareira_chart_name_shape`]) maps onto every
1161 /// load-bearing downstream consumer the substrate carries — the
1162 /// two universal-axis validate gates at caixa-build time
1163 /// ([`Self::validate_nome`] + [`Self::validate_nome_chart_name_budget`]),
1164 /// [`crate::lareira_chart_name`]'s `lareira-<nome>` Helm chart-name
1165 /// derivation every per-Servico renderer keys off, the caixa-helm
1166 /// `Chart.yaml`'s `name:` axis, caixa-flux's `programs.yaml` entry
1167 /// `name:` axis, caixa-mesh's Cilium `CiliumNetworkPolicy` /
1168 /// `HTTPRoute` per-Aplicacao name axes at
1169 /// caixa-mesh/src/lib.rs:{2650, 2797, 2919, 2925},
1170 /// [`crate::pleme_program_selector`] /
1171 /// [`crate::pleme_program_in_aplicacao_selector`] label-selector
1172 /// derivations, and every future substrate renderer that emits an
1173 /// artifact keyed by the caixa's identity.
1174 ///
1175 /// Prior to this lift the `.nome` field was accessed inline at a
1176 /// dozen production sites across `caixa-core` (the two universal-
1177 /// axis validate gates + [`Dep::validate`]-adjacent duplicate
1178 /// tracking), `caixa-helm` (the `lareira_chart_name` fold, the
1179 /// `ChartYaml.name` / `ChartYaml.description` / `Chart.yaml`
1180 /// `keywords` fallback), `caixa-flux` (the `programs.yaml`
1181 /// entry `name:` fold, the `flux_kustomization_source_subtree`
1182 /// per-cluster subpath derivation), and `caixa-mesh` (the
1183 /// `pleme_program_in_aplicacao_selector` label-selector fold, the
1184 /// `cilium_network_policy_name` / `gateway_api_http_route_name`
1185 /// per-CR name derivations, the `LABEL_APLICACAO` labels-map
1186 /// insert) — a dozen open-coded field-accesses that expressed no
1187 /// compile-time link back to the typed slot. A future extension of
1188 /// the `:nome` axis to a richer author surface — a per-`:nome`
1189 /// structured `CaixaIdentity` newtype that carries the joint-
1190 /// length-with-prefix invariant [`Self::validate_nome_chart_name_budget`]
1191 /// enforces at the type level (rather than as a validate-time
1192 /// gate), a per-registry `:nome` namespacing overlay the M4 CR
1193 /// materializer resolves per-CR (the "`pleme-io/checkout` vs
1194 /// `partner-org/checkout` collision" arm the multi-tenant-registry
1195 /// story acknowledges), a promotion of the plain `String` byte-
1196 /// string to a richer `CaixaNome` newtype discriminated on
1197 /// namespace prefix — would have had to be threaded through every
1198 /// open-coded copy in lockstep or the two validate gates and the
1199 /// dozen emit paths would silently disagree on which identity a
1200 /// given [`Caixa`] resolves to (an author's `:nome "checkout"`
1201 /// would satisfy validate while one of the emit paths silently
1202 /// rendered a drifted other identity, or vice versa). Lifting the
1203 /// resolution to a typed method on the substrate primitive means
1204 /// every downstream consumer of the caixa's per-`Caixa` identity
1205 /// surface reaches for exactly one typed dispatch — the resolver's
1206 /// accept-set migrates as a unit on any future axis addition.
1207 ///
1208 /// First outer top-level [`Caixa`] `&str`-return required-scalar
1209 /// accessor — opens the "outer [`Caixa`] `&str` required-scalar"
1210 /// projection pattern the sibling per-`Caixa` `:versao` future lift
1211 /// folds on. Sibling in shape to the peer per-`:membros`
1212 /// [`crate::aplicacao::Membro::nome`] (4a32abf) / per-`:contratos`
1213 /// [`crate::aplicacao::WitContract::source`] /
1214 /// [`crate::aplicacao::WitContract::destination`] (7f0fd43),
1215 /// [`crate::aplicacao::WitContract::world_ref`] (0804823),
1216 /// [`crate::aplicacao::Membro::versao_requirement`] (a40b0e3),
1217 /// [`crate::aplicacao::Entrada::destination`] (6db982c),
1218 /// [`crate::aplicacao::CircuitBreaker::max_failures`] (3a74062),
1219 /// per-sub-struct required-axis accessors carry on the sibling M3
1220 /// mesh-slot-atom scalar-value axes, extended here to open the
1221 /// outer top-level [`Caixa`] `&str`-return required-scalar surface.
1222 /// Named `nome()` to match the storage field's name; the accessor's
1223 /// identity maps onto the canonical CAIXA-SDLC §I vocabulary the
1224 /// slot's docstring already carries.
1225 #[must_use]
1226 pub const fn nome(&self) -> &str {
1227 self.nome.as_str()
1228 }
1229
1230 /// Substrate-canonical per-`Caixa` `:versao` universal-axis SemVer-2
1231 /// pinned-version scalar accessor every consumer of the top-level
1232 /// manifest's version axis keys off — returns the author-declared
1233 /// `:versao` byte-string verbatim as an `&str`, borrowed from the
1234 /// typed slot's own `String` storage. Non-optional (`:versao` is a
1235 /// required-axis scalar every `defcaixa` form must supply alongside
1236 /// `:nome` / `:kind`; the [`Self::from_lisp`] derive rejects an
1237 /// omitted / non-string `:versao` at parse time, so a `Caixa` past
1238 /// parse definitionally carries a non-`None` `:versao`).
1239 ///
1240 /// The `:versao` slot carries the universal-axis SemVer-2
1241 /// concrete-version body every kind of caixa emits under
1242 /// (CAIXA-SDLC §I — the required-scalar every `defcaixa` form
1243 /// supplies alongside `:nome` / `:kind`; the substrate-wide
1244 /// pinned-version every downstream artifact-emitting consumer
1245 /// composes under — the `lareira-<nome>` Helm chart's `Chart.yaml`
1246 /// `version:` + `appVersion:` axes, the `feira publish` Zig-style
1247 /// `v<versao>` git tag the [`crate::DEFAULT_PUBLISH_TAG_PREFIX`]
1248 /// prefix composes on top of, the programs.yaml entry's `versao:`
1249 /// value the `lareira-fleet-programs` aggregator carries onto each
1250 /// rendered `ComputeUnit`, the OCI image's `:v<versao>` / `:latest`
1251 /// tags every substrate-side `skopeo push` writes, the lacre
1252 /// closure's pinned `concrete_versao`, and the `:upgrade-from :from`
1253 /// prior-version references peers in the exact same SemVer-2 shape).
1254 /// The typed slot's `String` accept-set (empty rejected through
1255 /// [`ManifestError::VersaoEmpty`], SemVer-2-shape-invalid rejected
1256 /// through [`ManifestError::VersaoInvalid`] past
1257 /// [`semver::Version::parse`]) maps onto every load-bearing
1258 /// downstream consumer the substrate carries — the [`Self::validate_versao`]
1259 /// universal-axis validate gate at caixa-build time, the
1260 /// [`crate::CaixaVersion::parse`] typed-wrapper resolver,
1261 /// [`caixa-helm`]'s `Chart.yaml` `version:` / `appVersion:` fold,
1262 /// [`caixa-flux`]'s `programs.yaml` entry `versao:` fold + the
1263 /// `cluster_bundle` `GitRepository` `ref: { tag: v<versao> }`
1264 /// derivation, [`caixa-mesh`]'s per-Aplicacao `programs.yaml` fan-
1265 /// out entry `versao:` fold, [`caixa-feira`]'s `feira publish` git-
1266 /// tag derivation (`format!("{prefix}{versao}")`), and every future
1267 /// substrate renderer that emits an artifact keyed by the caixa's
1268 /// pinned version.
1269 ///
1270 /// Prior to this lift the `.versao` field was accessed inline at a
1271 /// dozen production sites across `caixa-core` (the universal-axis
1272 /// [`Self::validate_versao`] gate + [`Dep::validate`]-adjacent
1273 /// version-shape gates), `caixa-helm` (the `ChartYaml.version` /
1274 /// `ChartYaml.app_version` folds), `caixa-flux` (the `programs.yaml`
1275 /// entry `versao:` fold, the `cluster_bundle` `GitRepository` `ref:
1276 /// { tag: v<versao> }` derivation), `caixa-mesh` (the per-Aplicacao
1277 /// `programs.yaml` fan-out entry `versao:` fold), and `caixa-feira`
1278 /// (the `feira publish` git-tag derivation + the `feira app graph` /
1279 /// `feira app deploy` diagnostic renderers) — a dozen open-coded
1280 /// field-accesses that expressed no compile-time link back to the
1281 /// typed slot. A future extension of the `:versao` axis to a richer
1282 /// author surface — a per-`:versao` structured `CaixaVersion` at the
1283 /// storage layer (the substrate already carries a `CaixaVersion`
1284 /// newtype at [`crate::version::CaixaVersion`], deferred until the
1285 /// serde-transparent-newtype-through-DeriveTataraDomain path lands),
1286 /// a per-registry `:versao` immutability overlay the M4 CR
1287 /// materializer enforces per-CR, a promotion of the plain `String`
1288 /// byte-string to a richer `PinnedVersao` newtype discriminated on
1289 /// SemVer-2 pre-release / build-metadata presence — would have had
1290 /// to be threaded through every open-coded copy in lockstep or the
1291 /// validate gate and the dozen emit paths would silently disagree
1292 /// on which version a given [`Caixa`] resolves to (an author's
1293 /// `:versao "0.1.0"` would satisfy validate while one of the emit
1294 /// paths silently rendered a drifted other version, or vice versa).
1295 /// Lifting the resolution to a typed method on the substrate
1296 /// primitive means every downstream consumer of the caixa's
1297 /// per-`Caixa` pinned-version surface reaches for exactly one typed
1298 /// dispatch — the resolver's accept-set migrates as a unit on any
1299 /// future axis addition.
1300 ///
1301 /// Second outer top-level [`Caixa`] `&str`-return required-scalar
1302 /// accessor — folds on the "outer [`Caixa`] `&str` required-scalar"
1303 /// projection pattern the sibling per-`Caixa` [`Self::nome`]
1304 /// (e6b7d97) opened. Sibling in shape to the peer per-`:membros`
1305 /// [`crate::aplicacao::Membro::versao_requirement`] (4127bb6) /
1306 /// per-`:children` [`crate::supervisor::ChildSpec::versao_requirement`]
1307 /// (2c053c8) / per-`:upgrade-from` [`crate::UpgradeFromEntry::prior_versao`]
1308 /// (75d27a8) per-sub-struct `:versao`-shaped `&str`-return accessors
1309 /// on the sibling per-typed-slot version-carrier axes, extended here
1310 /// to close the second outer top-level [`Caixa`] required-`&str`-
1311 /// carrying axis so the two universal-axis identity-carrying
1312 /// scalars every `defcaixa` form supplies (`:nome` + `:versao`)
1313 /// share the same "one typed dispatch per axis" discipline. Named
1314 /// `versao()` to match the storage field's name; the accessor's
1315 /// identity maps onto the canonical CAIXA-SDLC §I vocabulary the
1316 /// slot's docstring already carries.
1317 #[must_use]
1318 pub const fn versao(&self) -> &str {
1319 self.versao.as_str()
1320 }
1321
1322 /// Substrate-canonical per-`Caixa` `:kind` universal-axis
1323 /// closed-set-enum discriminant accessor every consumer of the top-
1324 /// level manifest's kind axis keys off — returns the author-declared
1325 /// `:kind` variant verbatim as a [`CaixaKind`], `Copy`-projected
1326 /// from the typed slot's own [`CaixaKind`] storage. Non-optional
1327 /// (`:kind` is a required-axis discriminant every `defcaixa` form
1328 /// must supply alongside `:nome` / `:versao`; the [`Self::from_lisp`]
1329 /// derive rejects an omitted / non-symbol `:kind` at parse time, so
1330 /// a `Caixa` past parse definitionally carries a valid [`CaixaKind`]
1331 /// variant).
1332 ///
1333 /// The `:kind` slot carries the universal-axis closed-set typed-
1334 /// discriminant every substrate-side dispatch keys off (CAIXA-SDLC
1335 /// §I — the primary shape gate every renderer / verifier /
1336 /// operator branches on; the five variants `Biblioteca` /
1337 /// `Binario` / `Servico` / `Supervisor` / `Aplicacao` partition
1338 /// the caixa surface into disjoint runtime contracts) — the typed
1339 /// slot's [`CaixaKind`] accept-set (parse-time-rejected non-symbol
1340 /// values through the derive-macro's symbol-arm gate, exhaustively
1341 /// matched at every downstream dispatch site) maps onto every
1342 /// load-bearing downstream consumer the substrate carries:
1343 ///
1344 /// - [`crate::render::require_kind`]'s per-renderer entry-gate
1345 /// predicate — the canonical two-line
1346 /// `require_kind(caixa, Servico)?` prelude every per-Servico
1347 /// renderer (`caixa-helm`, `caixa-flux`, the future `caixa-otel`
1348 /// / per-Servico OCI packager / M4 `wasm.pleme.io/v1alpha1/
1349 /// ComputeUnit` CR materializer) runs at its entry-point,
1350 /// alongside the [`crate::render::KindMismatch`] error carrier's
1351 /// `actual:` field the diagnostic surfaces to name the offending
1352 /// caixa's variant.
1353 /// - [`Self::aplicacao_view`]'s + [`Self::supervisor_view`]'s
1354 /// per-view kind-gate binding — the two `Option<TypedSpec>`
1355 /// `_view` composers that fold the flat mesh-slot / supervisor-
1356 /// slot columns into their typed sub-spec only when the kind
1357 /// matches (returns `None` otherwise); the future per-Servico
1358 /// M2-view composer (`servico_view`) will follow the same shape.
1359 /// - [`Self::declared_foreign_code_slots`]'s per-slot kind-
1360 /// coherence gate — the `!self.kind.requires_exe()` /
1361 /// `!self.kind.requires_servicos()` predicates that fence
1362 /// each code-surface slot from the wrong owning kind.
1363 /// - [`crate::LayoutInvariants::verify`]'s kind ↔ code-surface
1364 /// coherence gates — the six `caixa.kind == CaixaKind::X` /
1365 /// `caixa.kind != CaixaKind::X` predicates and the four kind-
1366 /// coherence error carriers (`SupervisorOwnsCode` /
1367 /// `AplicacaoOwnsCode` / `MeshSlotsOnNonAplicacao` /
1368 /// `SupervisorSlotsOnNonSupervisor` / `ServicoSlotsOnNonServico`
1369 /// / `ForeignCodeSlot`) which each name the offending caixa's
1370 /// variant in their `kind:` field.
1371 ///
1372 /// Prior to this lift the `.kind` field was accessed inline at
1373 /// twenty-plus production sites across `caixa-core` (the
1374 /// [`crate::render::require_kind`] entry-gate predicate + the
1375 /// [`crate::render::KindMismatch`] `actual:` field, the two `_view`
1376 /// composers, the `declared_foreign_code_slots` per-slot kind-
1377 /// coherence gate, and the six [`crate::LayoutInvariants::verify`]
1378 /// kind ↔ code-surface predicates + four error carriers) — a score
1379 /// of open-coded field-accesses that expressed no compile-time link
1380 /// back to the typed slot. A future extension of the `:kind` axis
1381 /// to a richer author surface — a per-`:kind` sub-variant discriminant
1382 /// (e.g. `Servico(ServicoRuntime)` splitting the current single
1383 /// variant across the wasm-component / legacy-container / native-
1384 /// binary runtime axes the M5 roadmap acknowledges), a per-cluster
1385 /// kind-overlay the M4 CR materializer resolves per-CR (the
1386 /// "cluster policy demotes `Aplicacao` to `Servico` on a single-
1387 /// tenant cluster" arm), a promotion of the plain [`CaixaKind`]
1388 /// enum to a richer `KindWithRuntime` discriminated on the
1389 /// component-model world axis — would have had to be threaded
1390 /// through every open-coded copy in lockstep or the entry gate,
1391 /// the view composers, and the layout invariants would silently
1392 /// disagree on which kind a given [`Caixa`] resolves to. Lifting
1393 /// the resolution to a typed method on the substrate primitive
1394 /// means every downstream consumer of the caixa's per-`Caixa`
1395 /// kind surface reaches for exactly one typed dispatch — the
1396 /// resolver's accept-set migrates as a unit on any future axis
1397 /// addition.
1398 ///
1399 /// First outer top-level [`Caixa`] `Copy`-return required-enum-
1400 /// discriminant accessor — opens the "outer [`Caixa`] `Copy`-return
1401 /// required-discriminant" projection pattern. Sibling in shape to
1402 /// the peer per-`:supervisor` [`crate::supervisor::SupervisorSpec::estrategia`]
1403 /// (eafb619), per-`:placement` [`crate::aplicacao::Placement::estrategia`]
1404 /// (921fe1b), and per-`:children` [`crate::supervisor::ChildSpec::restart`]
1405 /// (dfb4a81) `Copy`-return closed-set-enum discriminant accessors
1406 /// on the sibling nested-spec typed-slot discriminator axes,
1407 /// extended here to the outer top-level [`Caixa`] universal-axis
1408 /// surface. Named `kind()` to match the storage field's name;
1409 /// the accessor's identity maps onto the canonical CAIXA-SDLC §I
1410 /// vocabulary the slot's docstring already carries.
1411 #[must_use]
1412 pub const fn kind(&self) -> CaixaKind {
1413 self.kind
1414 }
1415
1416 /// Substrate-canonical per-`Caixa` `:autores` universal-axis
1417 /// maintainer-name-list slice-accessor every consumer of the top-
1418 /// level manifest's maintainer axis keys off — returns the author-
1419 /// declared `:autores` list verbatim as a `&[String]` slice-view over
1420 /// the same backing buffer the raw `self.autores.as_slice()` field
1421 /// access borrows from. Empty-list-carrying (`:autores` is a default-
1422 /// empty axis every `defcaixa` form supplies with an empty `()` when
1423 /// unset; the [`Self::from_lisp`] derive folds an omitted `:autores`
1424 /// through `#[serde(default)]` to `Vec::new()`, so a `Caixa` past
1425 /// parse definitionally carries a `Vec<String>` slot — possibly
1426 /// empty — and the returned `&[String]` degenerates to an empty
1427 /// slice on that arm without any silent `None` collapse).
1428 ///
1429 /// The `:autores` slot carries the universal-axis maintainer-name
1430 /// list every kind of caixa emits under (CAIXA-SDLC §I — the author-
1431 /// facing surface every `defcaixa` form supplies alongside `:nome` /
1432 /// `:versao` / `:kind`; the substrate-wide contact-carrying axis
1433 /// every downstream registry-facing artifact emits under) — the
1434 /// typed slot's `Vec<String>` accept-set (empty-per-entry rejected
1435 /// through [`ManifestError::AutorEmpty`], non-chart-maintainer-shape
1436 /// rejected through [`ManifestError::AutorInvalid`], cross-entry
1437 /// duplicate rejected through [`ManifestError::AutorDuplicate`]) maps
1438 /// onto every load-bearing downstream consumer the substrate carries
1439 /// — the [`Self::validate_autores`] universal-axis empty-per-entry +
1440 /// shape + duplicate gate at caixa-core/src/manifest.rs, the
1441 /// caixa-helm `build_chart_yaml` `maintainers:` fold at
1442 /// caixa-helm/src/lib.rs that walks each entry into a `Maintainer {
1443 /// name, email: None }` record, every future per-`Caixa` registry-
1444 /// facing renderer the CAIXA-SDLC §I roadmap acknowledges (the
1445 /// future `artifacthub.io/maintainers` `Chart.yaml` annotation the
1446 /// caixa-helm docstring alludes to at [`Self::validate_licenca`],
1447 /// the future per-cluster author-notification overlay the M4 CR
1448 /// materializer resolves per-CR).
1449 ///
1450 /// Prior to this lift the `.autores` field was accessed inline at
1451 /// two production sites — [`Self::validate_autores`]'s `for autor
1452 /// in &self.autores` walk that gates every entry through
1453 /// [`ManifestError::AutorEmpty`] / `AutorInvalid` / `AutorDuplicate`,
1454 /// and the caixa-helm `build_chart_yaml` `caixa.autores.iter().map(|a|
1455 /// Maintainer { name: a.clone(), email: None }).collect()` fold that
1456 /// materializes every entry into a `Chart.yaml` `maintainers:` row —
1457 /// two open-coded field-accesses that expressed no compile-time link
1458 /// back to the typed slot. A future extension of the `:autores` axis
1459 /// to a richer author surface — a per-`:autores` structured
1460 /// `Maintainer { name, email, url }` at the storage layer once the
1461 /// substrate absorbs `artifacthub.io/maintainers`' name+email+url
1462 /// tuple, a per-registry `:autores` allowlist the M4 CR materializer
1463 /// enforces per-CR (the "cluster policy demands every author declare
1464 /// an on-file `mailto:` contact" arm), a promotion of the plain
1465 /// `Vec<String>` byte-string list to a richer
1466 /// `Vec<ChartMaintainer>` newtype discriminated on the RFC-5322
1467 /// `<name> [<email>]` grammar the `is_chart_maintainer_name_shape`
1468 /// predicate already resolves through — would have had to be
1469 /// threaded through both open-coded copies in lockstep or the
1470 /// validate gate and the caixa-helm emit path would silently
1471 /// disagree on which authors a given [`Caixa`] resolves to (an
1472 /// author's `:autores ("alice" "bob")` would satisfy validate while
1473 /// the caixa-helm emit path silently rendered a drifted other
1474 /// maintainer list, or vice versa). Lifting the resolution to a
1475 /// typed method on the substrate primitive means every downstream
1476 /// consumer of the caixa's per-`Caixa` maintainer surface reaches
1477 /// for exactly one typed dispatch — the resolver's accept-set
1478 /// migrates as a unit on any future axis addition.
1479 ///
1480 /// First outer top-level [`Caixa`] `&[T]`-return slice-accessor —
1481 /// opens the "outer [`Caixa`] `&[T]` slice" projection pattern the
1482 /// sibling per-`Caixa` `:etiquetas` / `:deps` / `:deps-dev` / `:exe`
1483 /// / `:bibliotecas` / `:servicos` / `:upgrade-from` / `:children`
1484 /// future lifts fold on. Sibling in shape to the peer per-`:supervisor`
1485 /// [`crate::supervisor::SupervisorSpec::children`] (bc92bce), per-`:placement`
1486 /// [`crate::aplicacao::Placement::clusters`] (a6e18d7), per-`:membros`
1487 /// [`crate::aplicacao::AplicacaoSpec::membros`] (6c77e36), per-`:contratos`
1488 /// [`crate::aplicacao::AplicacaoSpec::contratos`] (0dcc926), and
1489 /// per-`:upgrade-from :instructions` [`crate::upgrade::UpgradeFromEntry::instructions`]
1490 /// (0137e5a) `&[T]`-return slice accessors on the sibling per-M2 /
1491 /// per-M3 typed-slot list axes, extended here to the outer top-level
1492 /// [`Caixa`] universal-axis surface. Returns `&[String]` (not
1493 /// `&Vec<String>`) because every downstream consumer of the author
1494 /// list treats it as a read-only sequence — the slice-view is the
1495 /// narrowest borrow that supports every present + roadmapped consumer
1496 /// (`.iter()`, `.len()`, `.is_empty()`) without leaking the backing
1497 /// `Vec`'s grow/push/reserve surface no consumer of the typed view
1498 /// reaches for (the storage-side `Vec` remains reachable through the
1499 /// `pub autores` field for the mutation-carrying serde round-trip and
1500 /// per-test fixture-mutation paths). Named `autores()` to match the
1501 /// storage field's name; the accessor's identity maps onto the
1502 /// canonical CAIXA-SDLC §I vocabulary the slot's docstring already
1503 /// carries.
1504 #[must_use]
1505 pub const fn autores(&self) -> &[String] {
1506 self.autores.as_slice()
1507 }
1508
1509 /// Substrate-canonical per-`Caixa` `:etiquetas` universal-axis
1510 /// registry-search-tag-list slice-accessor every consumer of the
1511 /// top-level manifest's topical-tag axis keys off — returns the
1512 /// author-declared `:etiquetas` list verbatim as a `&[String]`
1513 /// slice-view over the same backing buffer the raw
1514 /// `self.etiquetas.as_slice()` field access borrows from. Empty-
1515 /// list-carrying (`:etiquetas` is a default-empty axis every
1516 /// `defcaixa` form supplies with an empty `()` when unset; the
1517 /// [`Self::from_lisp`] derive folds an omitted `:etiquetas` through
1518 /// `#[serde(default)]` to `Vec::new()`, so a `Caixa` past parse
1519 /// definitionally carries a `Vec<String>` slot — possibly empty —
1520 /// and the returned `&[String]` degenerates to an empty slice on
1521 /// that arm without any silent `None` collapse).
1522 ///
1523 /// The `:etiquetas` slot carries the universal-axis topical-tag
1524 /// list every kind of caixa emits under (CAIXA-SDLC §I — the
1525 /// author-facing surface every `defcaixa` form supplies alongside
1526 /// `:nome` / `:versao` / `:kind`; the substrate-wide registry-
1527 /// search-facing axis every downstream registry-facing artifact
1528 /// emits under) — the typed slot's `Vec<String>` accept-set
1529 /// (empty-per-entry rejected through [`ManifestError::EtiquetaEmpty`],
1530 /// non-chart-keyword-shape rejected through
1531 /// [`ManifestError::EtiquetaInvalid`], cross-entry duplicate
1532 /// rejected through [`ManifestError::EtiquetaDuplicate`]) maps onto
1533 /// every load-bearing downstream consumer the substrate carries —
1534 /// the [`Self::validate_etiquetas`] universal-axis empty-per-entry
1535 /// + shape + duplicate gate at caixa-core/src/manifest.rs, the
1536 /// caixa-helm `build_chart_yaml` `keywords:` fold at
1537 /// caixa-helm/src/lib.rs that walks each entry into the rendered
1538 /// `Chart.yaml` `keywords:` array (chained with the
1539 /// [`crate::LAREIRA_CHART_KEYWORDS`] substrate-wide floor set and
1540 /// dedup'd through a `BTreeSet` at emit time), every future per-
1541 /// `Caixa` registry-facing renderer the CAIXA-SDLC §I roadmap
1542 /// acknowledges (the future `artifacthub.io/keywords` `Chart.yaml`
1543 /// annotation, the future per-cluster tag-notification overlay the
1544 /// M4 CR materializer resolves per-CR).
1545 ///
1546 /// Prior to this lift the `.etiquetas` field was accessed inline at
1547 /// two production sites — [`Self::validate_etiquetas`]'s `for
1548 /// etiqueta in &self.etiquetas` walk that gates every entry through
1549 /// [`ManifestError::EtiquetaEmpty`] / `EtiquetaInvalid` /
1550 /// `EtiquetaDuplicate`, and the caixa-helm `build_chart_yaml`
1551 /// `caixa.etiquetas.iter().cloned().chain(...)` fold that
1552 /// materializes every entry into a `Chart.yaml` `keywords:` row —
1553 /// two open-coded field-accesses that expressed no compile-time
1554 /// link back to the typed slot. A future extension of the
1555 /// `:etiquetas` axis to a richer tag surface — a per-`:etiquetas`
1556 /// structured `ChartKeyword { name, uri, category }` at the storage
1557 /// layer once the substrate absorbs `artifacthub.io/keywords`
1558 /// richer tag tuple, a per-registry `:etiquetas` allowlist the M4
1559 /// CR materializer enforces per-CR (the "cluster policy demands
1560 /// every tag come from a substrate-approved taxonomy" arm), a
1561 /// promotion of the plain `Vec<String>` byte-string list to a
1562 /// richer `Vec<ChartKeyword>` newtype discriminated on the DNS-
1563 /// 1123-label-shaped grammar the `is_chart_keyword_shape` predicate
1564 /// already resolves through — would have had to be threaded through
1565 /// both open-coded copies in lockstep or the validate gate and the
1566 /// caixa-helm emit path would silently disagree on which tags a
1567 /// given [`Caixa`] resolves to (an author's `:etiquetas ("demo"
1568 /// "aplicacao")` would satisfy validate while the caixa-helm emit
1569 /// path silently rendered a drifted other keyword list, or vice
1570 /// versa). Lifting the resolution to a typed method on the
1571 /// substrate primitive means every downstream consumer of the
1572 /// caixa's per-`Caixa` topical-tag surface reaches for exactly one
1573 /// typed dispatch — the resolver's accept-set migrates as a unit
1574 /// on any future axis addition.
1575 ///
1576 /// Second outer top-level [`Caixa`] `&[T]`-return slice-accessor —
1577 /// folds on the "outer [`Caixa`] `&[T]` slice" projection pattern
1578 /// [`Self::autores`] (b5d813f) opened, sibling in shape and
1579 /// idiom. The remaining unlifted outer-`Caixa` slice-carrying axes
1580 /// (`:deps` / `:deps-dev` / `:exe` / `:bibliotecas` / `:servicos`
1581 /// / `:upgrade-from` / `:children` / `:membros` / `:contratos`)
1582 /// fold onto the same pattern in future lifts. Sibling in shape to
1583 /// the peer per-`:supervisor`
1584 /// [`crate::supervisor::SupervisorSpec::children`] (bc92bce),
1585 /// per-`:placement` [`crate::aplicacao::Placement::clusters`]
1586 /// (a6e18d7), per-`:membros`
1587 /// [`crate::aplicacao::AplicacaoSpec::membros`] (6c77e36),
1588 /// per-`:contratos` [`crate::aplicacao::AplicacaoSpec::contratos`]
1589 /// (0dcc926), and per-`:upgrade-from :instructions`
1590 /// [`crate::upgrade::UpgradeFromEntry::instructions`] (0137e5a)
1591 /// `&[T]`-return slice accessors on the sibling per-M2 / per-M3
1592 /// typed-slot list axes, extended here to the outer top-level
1593 /// [`Caixa`] universal-axis surface. Returns `&[String]` (not
1594 /// `&Vec<String>`) because every downstream consumer of the tag
1595 /// list treats it as a read-only sequence — the slice-view is the
1596 /// narrowest borrow that supports every present + roadmapped
1597 /// consumer (`.iter()`, `.len()`, `.is_empty()`) without leaking
1598 /// the backing `Vec`'s grow/push/reserve surface no consumer of
1599 /// the typed view reaches for (the storage-side `Vec` remains
1600 /// reachable through the `pub etiquetas` field for the mutation-
1601 /// carrying serde round-trip and per-test fixture-mutation paths).
1602 /// Named `etiquetas()` to match the storage field's name; the
1603 /// accessor's identity maps onto the canonical CAIXA-SDLC §I
1604 /// vocabulary the slot's docstring already carries.
1605 #[must_use]
1606 pub const fn etiquetas(&self) -> &[String] {
1607 self.etiquetas.as_slice()
1608 }
1609
1610 /// Substrate-canonical per-`Caixa` `:bibliotecas` universal-axis
1611 /// library-source-path-list slice-accessor every consumer of the
1612 /// top-level manifest's Biblioteca-source axis keys off — returns
1613 /// the author-declared `:bibliotecas` list verbatim as a
1614 /// `&[String]` slice-view over the same backing buffer the raw
1615 /// `self.bibliotecas.as_slice()` field access borrows from. Empty-
1616 /// list-carrying (`:bibliotecas` is a default-empty axis every
1617 /// `defcaixa` form supplies with an empty `()` when unset; the
1618 /// [`Self::from_lisp`] derive folds an omitted `:bibliotecas`
1619 /// through `#[serde(default)]` to `Vec::new()`, so a `Caixa` past
1620 /// parse definitionally carries a `Vec<String>` slot — possibly
1621 /// empty — and the returned `&[String]` degenerates to an empty
1622 /// slice on that arm without any silent `None` collapse).
1623 ///
1624 /// The `:bibliotecas` slot carries the universal-axis lisp-library
1625 /// entry-path list every `:kind Biblioteca` caixa emits under
1626 /// (CAIXA-SDLC §I — the author-facing surface every `defcaixa`
1627 /// form supplies alongside `:nome` / `:versao` / `:kind`; the
1628 /// substrate-wide library-carrier axis every downstream
1629 /// authoring-facing consumer keys off) — the typed slot's
1630 /// `Vec<String>` accept-set (empty-per-entry rejected through
1631 /// [`ManifestError::CodePathEmpty { slot: ":bibliotecas" }`],
1632 /// non-sandboxed-relative-shape rejected through
1633 /// [`ManifestError::CodePathShape`], non-`.lisp`-extension rejected
1634 /// through [`ManifestError::CodePathNonLispExtension`], cross-entry
1635 /// duplicate rejected through [`ManifestError::CodePathDuplicate`])
1636 /// maps onto every load-bearing downstream consumer the substrate
1637 /// carries — the [`crate::LayoutInvariants`] Biblioteca-arm
1638 /// empty-check + per-entry file-exists loop at
1639 /// caixa-core/src/layout.rs that gates each entry through
1640 /// [`crate::LayoutError::MissingLib`] / `MissingEntry`, the
1641 /// [`Self::validate_code_paths`] per-slot shape gate at
1642 /// caixa-core/src/manifest.rs that walks each entry through the
1643 /// sandbox-relative / `.lisp`-extension / cross-entry duplicate
1644 /// gates, the `feira build` per-entry `tatara_lisp::read` parse
1645 /// walk at caixa-feira/src/cmd/build.rs that phase-1-checks each
1646 /// declared library file for lexical / structural errors before
1647 /// downstream `importar` resolution, every future per-`Caixa`
1648 /// library-facing renderer the CAIXA-SDLC §I roadmap acknowledges
1649 /// (the future `tatara-lispc` compilation entry the docstring at
1650 /// caixa-feira/src/cmd/build.rs alludes to, the future per-cluster
1651 /// bytecode-caching overlay the M4 CR materializer resolves per-CR,
1652 /// the future `caixa-lsp` per-library semantic-token stream the
1653 /// caixa-lsp docstring roadmaps).
1654 ///
1655 /// Prior to this lift the `.bibliotecas` field was accessed inline
1656 /// at three production sites — [`crate::LayoutInvariants`]'s
1657 /// `caixa.bibliotecas.is_empty()` `MissingLib`-arm gate + `for p
1658 /// in &caixa.bibliotecas` `MissingEntry` walk that gates each
1659 /// declared library path through the on-disk-existence check,
1660 /// the compound-code-path `has_code = !caixa.bibliotecas.is_empty()
1661 /// || !caixa.exe.is_empty() || !caixa.servicos.is_empty()` OR-fold
1662 /// on the [`crate::LayoutError::SupervisorOwnsCode`] /
1663 /// `AplicacaoOwnsCode` kind-coherence gate, and the `feira build`
1664 /// per-entry `for entry in &caixa.bibliotecas` + `caixa.bibliotecas.
1665 /// len()` phase-1 tatara-lispc-precursor parse walk — three open-
1666 /// coded field-accesses that expressed no compile-time link back
1667 /// to the typed slot. A future extension of the `:bibliotecas`
1668 /// axis to a richer library surface — a per-`:bibliotecas`
1669 /// structured `BibliotecaEntry { path, edition, exports }` at the
1670 /// storage layer once the substrate absorbs the per-library
1671 /// language-edition + explicit-exports tuple the tatara-lisp
1672 /// module-system roadmap acknowledges, a per-registry
1673 /// `:bibliotecas` allowlist the M4 CR materializer enforces
1674 /// per-CR (the "cluster policy demands every biblioteca declare
1675 /// its own :edicao" arm), a promotion of the plain `Vec<String>`
1676 /// byte-string list to a richer `Vec<LibraryPath>` newtype
1677 /// discriminated on the `lib/<nome>.lisp`-shape grammar the
1678 /// [`crate::render::is_sandboxed_relative_path`] +
1679 /// [`crate::render::is_lisp_extension`] predicates already resolve
1680 /// through — would have had to be threaded through all three
1681 /// open-coded copies in lockstep or the layout gate, the shape
1682 /// validator, and the `feira build` phase-1 parse walk would
1683 /// silently disagree on which library paths a given [`Caixa`]
1684 /// resolves to (an author's `:bibliotecas ("lib/foo.lisp"
1685 /// "lib/bar.lisp")` would satisfy layout while `feira build`
1686 /// silently parsed a drifted other list, or vice versa). Lifting
1687 /// the resolution to a typed method on the substrate primitive
1688 /// means every downstream consumer of the caixa's per-`Caixa`
1689 /// library-source surface reaches for exactly one typed dispatch
1690 /// — the resolver's accept-set migrates as a unit on any future
1691 /// axis addition.
1692 ///
1693 /// Third outer top-level [`Caixa`] `&[T]`-return slice-accessor —
1694 /// folds on the "outer [`Caixa`] `&[T]` slice" projection pattern
1695 /// [`Self::autores`] (b5d813f) opened and [`Self::etiquetas`]
1696 /// (78c7d3c) folded on, sibling in shape and idiom. The remaining
1697 /// unlifted outer-`Caixa` slice-carrying axes (`:deps` /
1698 /// `:deps-dev` / `:exe` / `:servicos` / `:upgrade-from` /
1699 /// `:children` / `:membros` / `:contratos`) fold onto the same
1700 /// pattern in future lifts. Sibling in shape to the peer
1701 /// per-`:supervisor`
1702 /// [`crate::supervisor::SupervisorSpec::children`] (bc92bce),
1703 /// per-`:placement` [`crate::aplicacao::Placement::clusters`]
1704 /// (a6e18d7), per-`:membros`
1705 /// [`crate::aplicacao::AplicacaoSpec::membros`] (6c77e36),
1706 /// per-`:contratos` [`crate::aplicacao::AplicacaoSpec::contratos`]
1707 /// (0dcc926), and per-`:upgrade-from :instructions`
1708 /// [`crate::upgrade::UpgradeFromEntry::instructions`] (0137e5a)
1709 /// `&[T]`-return slice accessors on the sibling per-M2 / per-M3
1710 /// typed-slot list axes, extended here to the outer top-level
1711 /// [`Caixa`] universal-axis surface. Returns `&[String]` (not
1712 /// `&Vec<String>`) because every downstream consumer of the
1713 /// library-source list treats it as a read-only sequence — the
1714 /// slice-view is the narrowest borrow that supports every
1715 /// present + roadmapped consumer (`.iter()`, `.len()`,
1716 /// `.is_empty()`) without leaking the backing `Vec`'s
1717 /// grow/push/reserve surface no consumer of the typed view
1718 /// reaches for (the storage-side `Vec` remains reachable through
1719 /// the `pub bibliotecas` field for the mutation-carrying serde
1720 /// round-trip and per-test fixture-mutation paths). Named
1721 /// `bibliotecas()` to match the storage field's name; the
1722 /// accessor's identity maps onto the canonical CAIXA-SDLC §I
1723 /// vocabulary the slot's docstring already carries.
1724 #[must_use]
1725 pub const fn bibliotecas(&self) -> &[String] {
1726 self.bibliotecas.as_slice()
1727 }
1728
1729 /// Substrate-canonical per-`Caixa` `:exe` universal-axis
1730 /// nix-built-executable-entry-path-list slice-accessor every consumer
1731 /// of the top-level manifest's Binario-executable axis keys off —
1732 /// returns the author-declared `:exe` list verbatim as a `&[String]`
1733 /// slice-view over the same backing buffer the raw
1734 /// `self.exe.as_slice()` field access borrows from. Empty-list-
1735 /// carrying (`:exe` is a default-empty axis every `defcaixa` form
1736 /// supplies with an empty `()` when unset; the [`Self::from_lisp`]
1737 /// derive folds an omitted `:exe` through `#[serde(default)]` to
1738 /// `Vec::new()`, so a `Caixa` past parse definitionally carries a
1739 /// `Vec<String>` slot — possibly empty — and the returned `&[String]`
1740 /// degenerates to an empty slice on that arm without any silent
1741 /// `None` collapse).
1742 ///
1743 /// The `:exe` slot carries the universal-axis nix-built executable
1744 /// entry-path list every `:kind Binario` caixa emits under
1745 /// (CAIXA-SDLC §I — the author-facing surface every `defcaixa`
1746 /// form supplies alongside `:nome` / `:versao` / `:kind`; the
1747 /// substrate-wide `exe/`-directory-fenced entry-carrier axis every
1748 /// downstream flake-build-facing consumer keys off) — the typed
1749 /// slot's `Vec<String>` accept-set (empty-per-entry rejected
1750 /// through [`ManifestError::CodePathEmpty { slot: ":exe" }`],
1751 /// non-sandboxed-relative-shape rejected through
1752 /// [`ManifestError::CodePathShape`], cross-entry duplicate rejected
1753 /// through [`ManifestError::CodePathDuplicate`], out-of-`exe/`-
1754 /// directory paths rejected past the layout's
1755 /// [`crate::LayoutError::ExeOutsideDir`] `starts_with` fence) maps
1756 /// onto every load-bearing downstream consumer the substrate carries
1757 /// — the [`crate::LayoutInvariants`] Binario-arm empty-check +
1758 /// per-entry file-exists + `exe/`-directory-fence loop at
1759 /// caixa-core/src/layout.rs that gates each entry through
1760 /// [`crate::LayoutError::BinarioWithoutExe`] / `MissingEntry` /
1761 /// `ExeOutsideDir`, the compound `has_code` OR-fold on the
1762 /// [`crate::LayoutError::SupervisorOwnsCode`] /
1763 /// [`crate::LayoutError::AplicacaoOwnsCode`] kind-coherence gate
1764 /// that fences code-surface slots off from the two no-code kinds,
1765 /// [`Self::declared_foreign_code_slots`]'s `!self.exe.is_empty()`
1766 /// arm on the [`crate::LayoutError::ForeignCodeSlot`] gate that
1767 /// fences the `:exe` code surface off from every non-Binario code-
1768 /// running kind, [`Self::validate_code_paths`]'s per-slot shape gate
1769 /// that walks each entry through the sandbox-relative / cross-entry
1770 /// duplicate gates, every future per-`Caixa` executable-facing
1771 /// renderer the CAIXA-SDLC §I roadmap acknowledges (the future
1772 /// `caixa-flake` per-Binario `packages.<system>.<nome>` derivation
1773 /// entry the caixa-flake docstring roadmaps, the future per-cluster
1774 /// `nix-store` overlay the M4 CR materializer resolves per-CR, the
1775 /// future `feira nix` per-executable Binario-target emit path).
1776 ///
1777 /// Prior to this lift the `.exe` field was accessed inline at three
1778 /// production sites — the compound-code-path `has_code =
1779 /// !caixa.bibliotecas().is_empty() || !caixa.exe.is_empty() ||
1780 /// !caixa.servicos.is_empty()` OR-fold on the
1781 /// [`crate::LayoutError::SupervisorOwnsCode`] /
1782 /// `AplicacaoOwnsCode` kind-coherence gate, the Binario-arm
1783 /// `caixa.exe.is_empty()` [`crate::LayoutError::BinarioWithoutExe`]
1784 /// gate, the per-entry `for p in &caixa.exe`
1785 /// `MissingEntry`/`ExeOutsideDir` walk, and the
1786 /// [`Self::declared_foreign_code_slots`]'s
1787 /// `!self.exe.is_empty()` arm on the `ForeignCodeSlot` gate — four
1788 /// open-coded field-accesses that expressed no compile-time link
1789 /// back to the typed slot. A future extension of the `:exe` axis
1790 /// to a richer executable surface — a per-`:exe` structured
1791 /// `BinarioEntry { path, wrapper, capabilities }` at the storage
1792 /// layer once the substrate absorbs the per-executable
1793 /// nix-wrapper + linux-capabilities tuple the CAIXA-SDLC §I
1794 /// executable roadmap acknowledges, a per-registry `:exe` allowlist
1795 /// the M4 CR materializer enforces per-CR (the "cluster policy
1796 /// demands every Binario declare an explicit `:wrapper`" arm), a
1797 /// promotion of the plain `Vec<String>` byte-string list to a
1798 /// richer `Vec<ExecutablePath>` newtype discriminated on the
1799 /// `exe/<nome>`-shape grammar the layout's `starts_with(exe_dir)`
1800 /// fence already resolves through — would have had to be threaded
1801 /// through all four open-coded copies in lockstep or the layout
1802 /// gate, the shape validator, and the `feira nix` emit path would
1803 /// silently disagree on which executable paths a given [`Caixa`]
1804 /// resolves to (an author's `:exe ("exe/cli" "exe/serve")` would
1805 /// satisfy layout while `feira nix` silently packaged a drifted
1806 /// other list, or vice versa). Lifting the resolution to a typed
1807 /// method on the substrate primitive means every downstream
1808 /// consumer of the caixa's per-`Caixa` executable-source surface
1809 /// reaches for exactly one typed dispatch — the resolver's accept-
1810 /// set migrates as a unit on any future axis addition.
1811 ///
1812 /// Fourth outer top-level [`Caixa`] `&[T]`-return slice-accessor —
1813 /// folds on the "outer [`Caixa`] `&[T]` slice" projection pattern
1814 /// [`Self::autores`] (b5d813f) opened, [`Self::etiquetas`]
1815 /// (78c7d3c) folded on, and [`Self::bibliotecas`] (8a36c23) closed
1816 /// the universal-axis text-tag family of. Opens the outer-`Caixa`
1817 /// foreign-code-slot `&[T]` sub-family the sibling `:servicos`
1818 /// future lift closes onto (per the trio of code-surface list slots
1819 /// the [`Self::validate_code_paths`] per-slot dispatch tuple
1820 /// already carries — `:bibliotecas` + `:exe` + `:servicos`, of which
1821 /// `:bibliotecas` landed at 8a36c23 and `:servicos` remains as the
1822 /// last unlifted code-surface slot). Sibling in shape to the peer
1823 /// per-`:supervisor` [`crate::supervisor::SupervisorSpec::children`]
1824 /// (bc92bce), per-`:placement`
1825 /// [`crate::aplicacao::Placement::clusters`] (a6e18d7),
1826 /// per-`:membros` [`crate::aplicacao::AplicacaoSpec::membros`]
1827 /// (6c77e36), per-`:contratos`
1828 /// [`crate::aplicacao::AplicacaoSpec::contratos`] (0dcc926), and
1829 /// per-`:upgrade-from :instructions`
1830 /// [`crate::upgrade::UpgradeFromEntry::instructions`] (0137e5a)
1831 /// `&[T]`-return slice accessors on the sibling per-M2 / per-M3
1832 /// typed-slot list axes, extended here to the outer top-level
1833 /// [`Caixa`] universal-axis surface. Returns `&[String]` (not
1834 /// `&Vec<String>`) because every downstream consumer of the
1835 /// executable-source list treats it as a read-only sequence — the
1836 /// slice-view is the narrowest borrow that supports every
1837 /// present + roadmapped consumer (`.iter()`, `.len()`,
1838 /// `.is_empty()`) without leaking the backing `Vec`'s
1839 /// grow/push/reserve surface no consumer of the typed view
1840 /// reaches for (the storage-side `Vec` remains reachable through
1841 /// the `pub exe` field for the mutation-carrying serde
1842 /// round-trip and per-test fixture-mutation paths). Named `exe()`
1843 /// to match the storage field's name; the accessor's identity
1844 /// maps onto the canonical CAIXA-SDLC §I vocabulary the slot's
1845 /// docstring already carries.
1846 #[must_use]
1847 pub const fn exe(&self) -> &[String] {
1848 self.exe.as_slice()
1849 }
1850
1851 /// Substrate-canonical per-`Caixa` `:servicos` universal-axis
1852 /// ComputeUnit-CR-YAML-entry-path-list slice-accessor every consumer
1853 /// of the top-level manifest's Servico-component axis keys off —
1854 /// returns the author-declared `:servicos` list verbatim as a
1855 /// `&[String]` slice-view over the same backing buffer the raw
1856 /// `self.servicos.as_slice()` field access borrows from. Empty-list-
1857 /// carrying (`:servicos` is a default-empty axis every `defcaixa`
1858 /// form supplies with an empty `()` when unset; the
1859 /// [`Self::from_lisp`] derive folds an omitted `:servicos` through
1860 /// `#[serde(default)]` to `Vec::new()`, so a `Caixa` past parse
1861 /// definitionally carries a `Vec<String>` slot — possibly empty —
1862 /// and the returned `&[String]` degenerates to an empty slice on
1863 /// that arm without any silent `None` collapse).
1864 ///
1865 /// The `:servicos` slot carries the universal-axis
1866 /// `.computeunit.yaml` ComputeUnit-CR entry-path list every
1867 /// `:kind Servico` caixa emits under (CAIXA-SDLC §I — the
1868 /// author-facing surface every `defcaixa` form supplies alongside
1869 /// `:nome` / `:versao` / `:kind`; the substrate-wide
1870 /// `servicos/`-directory-fenced entry-carrier axis every downstream
1871 /// Servico-facing renderer keys off) — the typed slot's
1872 /// `Vec<String>` accept-set (empty-per-entry rejected through
1873 /// [`ManifestError::CodePathEmpty { slot: ":servicos" }`],
1874 /// non-sandboxed-relative-shape rejected through
1875 /// [`ManifestError::CodePathShape`], non-`.computeunit.yaml`
1876 /// extension rejected through
1877 /// [`ManifestError::CodePathNonComputeUnitYamlExtension`], cross-
1878 /// entry duplicate rejected through
1879 /// [`ManifestError::CodePathDuplicate`], `len != 1` rejected by the
1880 /// V0 [`crate::ServicoCountMismatch`] gate on the per-Servico
1881 /// renderer entry-points, out-of-`servicos/`-directory paths
1882 /// rejected past the layout's [`crate::LayoutError::ServicoOutsideDir`]
1883 /// `starts_with` fence) maps onto every load-bearing downstream
1884 /// consumer the substrate carries — the [`crate::LayoutInvariants`]
1885 /// Servico-arm empty-check + per-entry file-exists + `servicos/`-
1886 /// directory-fence loop at caixa-core/src/layout.rs that gates each
1887 /// entry through [`crate::LayoutError::ServicoWithoutServicos`] /
1888 /// `MissingEntry` / `ServicoOutsideDir`, the compound `has_code`
1889 /// OR-fold on the [`crate::LayoutError::SupervisorOwnsCode`] /
1890 /// [`crate::LayoutError::AplicacaoOwnsCode`] kind-coherence gate
1891 /// that fences code-surface slots off from the two no-code kinds,
1892 /// [`Self::declared_foreign_code_slots`]'s
1893 /// `!self.servicos.is_empty()` arm on the
1894 /// [`crate::LayoutError::ForeignCodeSlot`] gate that fences the
1895 /// `:servicos` code surface off from every non-Servico code-running
1896 /// kind, [`Self::validate_code_paths`]'s per-slot shape gate that
1897 /// walks each entry through the sandbox-relative / `.computeunit.
1898 /// yaml`-extension / cross-entry duplicate gates, the
1899 /// [`crate::require_single_servico`] V0 singularity gate every
1900 /// per-Servico renderer entry-point runs through
1901 /// [`crate::require_v0_servico_shape`], the `feira chart` /
1902 /// `feira deploy` per-verb `first_servico_path` walk at
1903 /// caixa-feira/src/cmd/chart.rs that resolves the singleton
1904 /// ComputeUnit-CR file, every future per-`Caixa` Servico-facing
1905 /// renderer the CAIXA-SDLC §I roadmap acknowledges (the future
1906 /// per-Servico OCI packager, the future M4
1907 /// `wasm.pleme.io/v1alpha1/ComputeUnit` CR materializer, the future
1908 /// per-Servico OTel collector-config emit).
1909 ///
1910 /// Prior to this lift the `.servicos` field was accessed inline at
1911 /// five production sites — the compound-code-path `has_code =
1912 /// !caixa.bibliotecas().is_empty() || !caixa.exe().is_empty() ||
1913 /// !caixa.servicos.is_empty()` OR-fold on the
1914 /// [`crate::LayoutError::SupervisorOwnsCode`] /
1915 /// `AplicacaoOwnsCode` kind-coherence gate, the Servico-arm
1916 /// `caixa.servicos.is_empty()`
1917 /// [`crate::LayoutError::ServicoWithoutServicos`] gate, the
1918 /// per-entry `for p in &caixa.servicos`
1919 /// `MissingEntry`/`ServicoOutsideDir` walk, the
1920 /// [`Self::declared_foreign_code_slots`]'s
1921 /// `!self.servicos.is_empty()` arm on the `ForeignCodeSlot` gate,
1922 /// and the [`crate::require_single_servico`] V0 count gate's
1923 /// `caixa.servicos.len() == 1` / `caixa.servicos.len()` count
1924 /// projection (both the accept-arm predicate and the
1925 /// diagnostic-carrying `ServicoCountMismatch { count }`
1926 /// projection) — five open-coded field-accesses across three
1927 /// crates that expressed no compile-time link back to the typed
1928 /// slot. A future extension of the `:servicos` axis to a richer
1929 /// component surface — a per-`:servicos` structured
1930 /// `ServicoEntry { path, world, capabilities }` at the storage
1931 /// layer once the substrate absorbs the per-component WIT-world +
1932 /// capability-set tuple the CAIXA-SDLC §I Servico roadmap
1933 /// acknowledges, a per-registry `:servicos` allowlist the M4 CR
1934 /// materializer enforces per-CR (the "cluster policy demands every
1935 /// Servico declare an explicit `:world`" arm), a promotion of the
1936 /// plain `Vec<String>` byte-string list to a richer
1937 /// `Vec<ComputeUnitPath>` newtype discriminated on the
1938 /// `servicos/<nome>.computeunit.yaml`-shape grammar the layout's
1939 /// `starts_with(servicos_dir)` fence and the
1940 /// [`crate::render::is_computeunit_yaml_extension`] predicate
1941 /// already resolve through, a promotion of the V0 singleton
1942 /// contract to a multi-component `Vec<ComputeUnitPath>` past the M5
1943 /// component-model multi-world boundary — would have had to be
1944 /// threaded through all five open-coded copies in lockstep or the
1945 /// layout gate, the shape validator, the V0 count gate, and the
1946 /// `feira chart` / `feira deploy` entry-point walks would silently
1947 /// disagree on which ComputeUnit-CR paths a given [`Caixa`]
1948 /// resolves to (an author's `:servicos ("servicos/foo.computeunit.
1949 /// yaml")` would satisfy layout while `feira chart` silently
1950 /// packaged a drifted other list, or vice versa). Lifting the
1951 /// resolution to a typed method on the substrate primitive means
1952 /// every downstream consumer of the caixa's per-`Caixa`
1953 /// ComputeUnit-CR-source surface reaches for exactly one typed
1954 /// dispatch — the resolver's accept-set migrates as a unit on any
1955 /// future axis addition.
1956 ///
1957 /// Fifth and final outer top-level [`Caixa`] `&[T]`-return slice-
1958 /// accessor — folds on the "outer [`Caixa`] `&[T]` slice"
1959 /// projection pattern [`Self::autores`] (b5d813f) opened,
1960 /// [`Self::etiquetas`] (78c7d3c) folded on, [`Self::bibliotecas`]
1961 /// (8a36c23) closed the universal-axis text-tag family of, and
1962 /// [`Self::exe`] (65d9527) opened the foreign-code-slot sub-family
1963 /// of. Closes the outer-`Caixa` foreign-code-slot `&[T]` sub-family
1964 /// — with `:bibliotecas`, `:exe`, and `:servicos` now each carrying
1965 /// a substrate-canonical slice accessor, the trio of code-surface
1966 /// list slots the [`Self::validate_code_paths`] per-slot dispatch
1967 /// tuple carries is complete on the typed dispatch surface (the
1968 /// internal `[(":bibliotecas", &self.bibliotecas, ..), (":exe",
1969 /// &self.exe, ..), (":servicos", &self.servicos, ..)]` per-slot
1970 /// dispatch tuple's homogeneous `&Vec<String>`-typed shape blocks a
1971 /// per-element accessor swap in isolation — a future companion lift
1972 /// promotes the tuple's element type to `&[String]` and threads the
1973 /// triple of typed dispatches through as a unit). Sibling in shape
1974 /// to the peer per-`:supervisor`
1975 /// [`crate::supervisor::SupervisorSpec::children`] (bc92bce),
1976 /// per-`:placement` [`crate::aplicacao::Placement::clusters`]
1977 /// (a6e18d7), per-`:membros`
1978 /// [`crate::aplicacao::AplicacaoSpec::membros`] (6c77e36),
1979 /// per-`:contratos`
1980 /// [`crate::aplicacao::AplicacaoSpec::contratos`] (0dcc926), and
1981 /// per-`:upgrade-from :instructions`
1982 /// [`crate::upgrade::UpgradeFromEntry::instructions`] (0137e5a)
1983 /// `&[T]`-return slice accessors on the sibling per-M2 / per-M3
1984 /// typed-slot list axes, extended here to the outer top-level
1985 /// [`Caixa`] universal-axis surface. Returns `&[String]` (not
1986 /// `&Vec<String>`) because every downstream consumer of the
1987 /// ComputeUnit-CR-source list treats it as a read-only sequence —
1988 /// the slice-view is the narrowest borrow that supports every
1989 /// present + roadmapped consumer (`.iter()`, `.len()`,
1990 /// `.is_empty()`, `.first()`) without leaking the backing `Vec`'s
1991 /// grow/push/reserve surface no consumer of the typed view reaches
1992 /// for (the storage-side `Vec` remains reachable through the
1993 /// `pub servicos` field for the mutation-carrying serde round-trip
1994 /// and per-test fixture-mutation paths, and for the
1995 /// [`Self::validate_code_paths`] per-slot dispatch tuple whose
1996 /// homogeneous-element-type shape carries the raw field access
1997 /// until the trio-closure lift promotes the tuple as a unit).
1998 /// Named `servicos()` to match the storage field's name; the
1999 /// accessor's identity maps onto the canonical CAIXA-SDLC §I
2000 /// vocabulary the slot's docstring already carries.
2001 #[must_use]
2002 pub const fn servicos(&self) -> &[String] {
2003 self.servicos.as_slice()
2004 }
2005
2006 /// Substrate-canonical per-`Caixa` `:deps` universal-axis
2007 /// runtime-dependency-declaration-list slice-accessor every consumer
2008 /// of the top-level manifest's runtime-dep-graph axis keys off —
2009 /// returns the author-declared `:deps` list verbatim as a `&[Dep]`
2010 /// slice-view over the same backing buffer the raw
2011 /// `self.deps.as_slice()` field access borrows from. Empty-list-
2012 /// carrying (`:deps` is a default-empty axis every `defcaixa` form
2013 /// supplies with an empty `()` when unset; the [`Self::from_lisp`]
2014 /// derive folds an omitted `:deps` through `#[serde(default)]` to
2015 /// `Vec::new()`, so a `Caixa` past parse definitionally carries a
2016 /// `Vec<Dep>` slot — possibly empty — and the returned `&[Dep]`
2017 /// degenerates to an empty slice on that arm without any silent
2018 /// `None` collapse).
2019 ///
2020 /// The `:deps` slot carries the universal-axis runtime dependency
2021 /// list every kind of caixa emits under (CAIXA-SDLC §I — the author-
2022 /// facing surface every `defcaixa` form supplies alongside `:nome` /
2023 /// `:versao` / `:kind`; the substrate-wide runtime-closure-input axis
2024 /// every downstream resolver-facing artifact emits under) — the
2025 /// typed slot's `Vec<Dep>` accept-set (empty-`:nome` rejected through
2026 /// [`DepError::NomeEmpty`], non-DNS-1123-label `:nome` rejected
2027 /// through [`DepError::NomeInvalid`], malformed `:versao` rejected
2028 /// through [`DepError::VersaoInvalid`], empty `:fonte.repo` rejected
2029 /// through [`DepError::FonteRepoEmpty`], within-list duplicate `:nome`
2030 /// rejected through [`DepError::DuplicateNome { list: ":deps" }`])
2031 /// maps onto every load-bearing downstream consumer the substrate
2032 /// carries — the [`Self::validate_deps`] per-entry
2033 /// [`Dep::validate`] + within-list dedup walk at
2034 /// caixa-core/src/manifest.rs, the [`crate::dep::validate_no_self_dep`]
2035 /// cross-list self-reference gate at caixa-core/src/layout.rs that
2036 /// checks each entry against the caixa's own `:nome`, the
2037 /// caixa-resolver `for dep in &root.deps` closure walk at
2038 /// caixa-resolver/src/resolve.rs that seeds every git-clone target
2039 /// through the resolver's [`crate::Dep`]-keyed pipeline, the
2040 /// caixa-crd `caixa.deps.iter().map(dep_into_ref).collect()` fold at
2041 /// caixa-crd/src/conversion.rs that materializes each entry into the
2042 /// K8s `Caixa` CR's `spec.deps` field, every future per-`Caixa`
2043 /// resolver-facing renderer the CAIXA-SDLC §I roadmap acknowledges
2044 /// (the future per-cluster runtime-closure-audit overlay the M4 CR
2045 /// materializer resolves per-CR, the future `lacre.lisp` BLAKE3-
2046 /// closure emit walk the caixa-resolver docstring roadmaps).
2047 ///
2048 /// First outer top-level [`Caixa`] `&[Dep]`-return slice-accessor —
2049 /// opens the outer-`Caixa` dependency-slot `&[Dep]` sub-family the
2050 /// sibling `:deps-dev` future lift closes on. Peer of the closed
2051 /// outer-`Caixa` foreign-code-slot `&[String]` sub-family
2052 /// ([`Self::bibliotecas`] 8a36c23, [`Self::exe`] 65d9527,
2053 /// [`Self::servicos`] 611f78b) and the outer-`Caixa` universal-axis
2054 /// text-tag family ([`Self::autores`] b5d813f, [`Self::etiquetas`]
2055 /// 78c7d3c) — extends the "outer [`Caixa`] `&[T]` slice" projection
2056 /// pattern onto a novel element-type axis (`Dep` composite vs the
2057 /// prior sibling family's `String` scalar). Sibling in shape to the
2058 /// peer per-`:supervisor`
2059 /// [`crate::supervisor::SupervisorSpec::children`] (bc92bce),
2060 /// per-`:placement` [`crate::aplicacao::Placement::clusters`]
2061 /// (a6e18d7), per-`:membros`
2062 /// [`crate::aplicacao::AplicacaoSpec::membros`] (6c77e36),
2063 /// per-`:contratos` [`crate::aplicacao::AplicacaoSpec::contratos`]
2064 /// (0dcc926), and per-`:upgrade-from :instructions`
2065 /// [`crate::upgrade::UpgradeFromEntry::instructions`] (0137e5a)
2066 /// `&[T]`-return slice accessors on the sibling per-M2 / per-M3
2067 /// typed-slot list axes, extended here to the outer top-level
2068 /// [`Caixa`] universal-axis dep-graph surface. Returns `&[Dep]`
2069 /// (not `&Vec<Dep>`) because every downstream consumer of the
2070 /// runtime-dep list treats it as a read-only sequence — the slice-
2071 /// view is the narrowest borrow that supports every present +
2072 /// roadmapped consumer (`.iter()`, `.len()`, `.is_empty()`) without
2073 /// leaking the backing `Vec`'s grow/push/reserve surface no consumer
2074 /// of the typed view reaches for (the storage-side `Vec` remains
2075 /// reachable through the `pub deps` field for the mutation-carrying
2076 /// serde round-trip and per-test fixture-mutation paths). Named
2077 /// `deps()` to match the storage field's name; the accessor's
2078 /// identity maps onto the canonical CAIXA-SDLC §I vocabulary the
2079 /// slot's docstring already carries.
2080 #[must_use]
2081 pub const fn deps(&self) -> &[Dep] {
2082 self.deps.as_slice()
2083 }
2084
2085 /// Substrate-canonical per-`Caixa` `:deps-dev` universal-axis
2086 /// development-only-dependency-declaration-list slice-accessor every
2087 /// consumer of the top-level manifest's dev-dep-graph axis keys off —
2088 /// returns the author-declared `:deps-dev` list verbatim as a `&[Dep]`
2089 /// slice-view over the same backing buffer the raw
2090 /// `self.deps_dev.as_slice()` field access borrows from. Empty-list-
2091 /// carrying (`:deps-dev` is a default-empty axis every `defcaixa`
2092 /// form supplies with an empty `()` when unset; the
2093 /// [`Self::from_lisp`] derive folds an omitted `:deps-dev` through
2094 /// `#[serde(default)]` to `Vec::new()`, so a `Caixa` past parse
2095 /// definitionally carries a `Vec<Dep>` slot — possibly empty — and
2096 /// the returned `&[Dep]` degenerates to an empty slice on that arm
2097 /// without any silent `None` collapse).
2098 ///
2099 /// The `:deps-dev` slot carries the universal-axis dev-only
2100 /// dependency list every kind of caixa emits under (CAIXA-SDLC §I —
2101 /// the author-facing sibling of `:deps` that every `defcaixa` form
2102 /// supplies to declare tests / lint / bench closures the runtime
2103 /// `:deps` axis does not carry; the substrate-wide dev-closure-input
2104 /// axis every downstream test-facing artifact emits under, matching
2105 /// Cargo's `[dev-dependencies]` table's dev-time-only visibility
2106 /// contract) — the typed slot's `Vec<Dep>` accept-set (empty-`:nome`
2107 /// rejected through [`DepError::NomeEmpty`], non-DNS-1123-label
2108 /// `:nome` rejected through [`DepError::NomeInvalid`], malformed
2109 /// `:versao` rejected through [`DepError::VersaoInvalid`], empty
2110 /// `:fonte.repo` rejected through [`DepError::FonteRepoEmpty`],
2111 /// within-list duplicate `:nome` rejected through
2112 /// [`DepError::DuplicateNome { list: ":deps-dev" }`]) maps onto every
2113 /// load-bearing downstream consumer the substrate carries — the
2114 /// [`Self::validate_deps`] per-entry [`Dep::validate`] + within-list
2115 /// dedup walk at caixa-core/src/manifest.rs, the
2116 /// [`crate::dep::validate_no_self_dep`] cross-list self-reference
2117 /// gate at caixa-core/src/layout.rs that checks each entry against
2118 /// the caixa's own `:nome`, the caixa-resolver
2119 /// `for dep in &root.deps_dev` closure walk at
2120 /// caixa-resolver/src/resolve.rs that seeds every dev-only git-clone
2121 /// target through the resolver's [`crate::Dep`]-keyed pipeline, and
2122 /// every future per-`Caixa` resolver-facing renderer the CAIXA-SDLC
2123 /// §I roadmap acknowledges (the future per-cluster dev-closure-audit
2124 /// overlay the M4 CR materializer resolves per-CR, the future
2125 /// `lacre.lisp` BLAKE3-closure emit walk the caixa-resolver docstring
2126 /// roadmaps).
2127 ///
2128 /// Second outer top-level [`Caixa`] `&[Dep]`-return slice-accessor —
2129 /// closes the outer-`Caixa` dependency-slot `&[Dep]` sub-family the
2130 /// sibling [`Self::deps`] (ad34b4e) opened on. The two accessors
2131 /// jointly close the two-list dep-graph surface every downstream
2132 /// resolver-facing consumer keys off (runtime `:deps` +
2133 /// dev-only `:deps-dev`, the canonical Cargo-shaped dependency-table
2134 /// pair the [`Self::validate_deps`] gate already walks in canonical
2135 /// order). Peer of the closed outer-`Caixa` foreign-code-slot
2136 /// `&[String]` sub-family ([`Self::bibliotecas`] 8a36c23,
2137 /// [`Self::exe`] 65d9527, [`Self::servicos`] 611f78b) and the outer-
2138 /// `Caixa` universal-axis text-tag family ([`Self::autores`]
2139 /// b5d813f, [`Self::etiquetas`] 78c7d3c) — folds the "outer
2140 /// [`Caixa`] `&[T]` slice" projection pattern onto the sibling
2141 /// dev-dep composite-element axis (`Dep` composite, matching the
2142 /// [`Self::deps`] element type). Sibling in shape to the peer
2143 /// per-`:supervisor` [`crate::supervisor::SupervisorSpec::children`]
2144 /// (bc92bce), per-`:placement`
2145 /// [`crate::aplicacao::Placement::clusters`] (a6e18d7),
2146 /// per-`:membros` [`crate::aplicacao::AplicacaoSpec::membros`]
2147 /// (6c77e36), per-`:contratos`
2148 /// [`crate::aplicacao::AplicacaoSpec::contratos`] (0dcc926), and
2149 /// per-`:upgrade-from :instructions`
2150 /// [`crate::upgrade::UpgradeFromEntry::instructions`] (0137e5a)
2151 /// `&[T]`-return slice accessors on the sibling per-M2 / per-M3
2152 /// typed-slot list axes, folded here to the outer top-level
2153 /// [`Caixa`] universal-axis dev-dep-graph surface. Returns `&[Dep]`
2154 /// (not `&Vec<Dep>`) because every downstream consumer of the
2155 /// dev-dep list treats it as a read-only sequence — the slice-view
2156 /// is the narrowest borrow that supports every present +
2157 /// roadmapped consumer (`.iter()`, `.len()`, `.is_empty()`) without
2158 /// leaking the backing `Vec`'s grow/push/reserve surface no consumer
2159 /// of the typed view reaches for (the storage-side `Vec` remains
2160 /// reachable through the `pub deps_dev` field for the mutation-
2161 /// carrying serde round-trip and per-test fixture-mutation paths).
2162 /// Named `deps_dev()` to match the storage field's `snake_case` name;
2163 /// the kebab-case author-surface tag `:deps-dev` is the same axis
2164 /// after tatara-lisp's kebab↔snake fold and the accessor's identity
2165 /// maps onto the canonical CAIXA-SDLC §I vocabulary the slot's
2166 /// docstring already carries.
2167 #[must_use]
2168 pub const fn deps_dev(&self) -> &[Dep] {
2169 self.deps_dev.as_slice()
2170 }
2171
2172 /// Substrate-canonical per-[`Caixa`] typed-dispatch read accessor
2173 /// every consumer that walks one of the two dep-list axes keyed on a
2174 /// [`crate::dep::DepList`] discriminant reaches for — routes the
2175 /// `(list: DepList) -> &[Dep]` projection through one typed method on
2176 /// the substrate primitive rather than the prior open-coded
2177 /// `match list { Prod => caixa.deps(), Dev => caixa.deps_dev() }`
2178 /// inline dispatch every per-axis walker would otherwise carry.
2179 /// Returns the author-declared per-list `Vec<Dep>` verbatim as a
2180 /// `&[Dep]` slice-view over the same backing buffer the sibling
2181 /// [`Self::deps`] (`Prod`) / [`Self::deps_dev`] (`Dev`) per-slot
2182 /// accessors borrow from, preserving the empty-list-carrying invariant
2183 /// each per-slot accessor already establishes (`:deps` / `:deps-dev`
2184 /// are default-empty axes every `defcaixa` form supplies with an empty
2185 /// `()` when unset; the [`Self::from_lisp`] derive folds an omitted
2186 /// list through `#[serde(default)]` to `Vec::new()`, so both arms
2187 /// definitionally carry a `Vec<Dep>` slot — possibly empty — and the
2188 /// returned `&[Dep]` degenerates to an empty slice on either arm
2189 /// without any silent `None` collapse).
2190 ///
2191 /// The [`crate::dep::DepList`] closed-set typed enum is the
2192 /// substrate's canonical discriminator for the "runtime-closure
2193 /// `:deps` vs dev-only-closure `:deps-dev`" axis every dep-list
2194 /// consumer dispatches on — the compiler-checked exhaustiveness on
2195 /// the enum's `match` arms is the build-time guarantee that no future
2196 /// per-list read-site regresses to a bare-`bool`-flag inline dispatch
2197 /// that a future third dep-list axis (a `:deps-build` build-only
2198 /// closure once the substrate grows cross-artifact heterogeneous
2199 /// dep-graphs, per CAIXA-SDLC §I) would silently split at every
2200 /// consumer. Prior to this the read side carried two per-slot
2201 /// accessors ([`Self::deps`] ad34b4e, [`Self::deps_dev`]) and no
2202 /// typed dispatch that a per-axis walker could parametrise on, so
2203 /// every per-list walker (the [`Self::validate_deps`] per-list
2204 /// [`crate::render::insert_first_seen`] dedup walk, a future
2205 /// `feira app graph` per-list dep summary, a future M4 per-cluster
2206 /// dev-closure-audit overlay the CR materializer resolves per-CR)
2207 /// open-coded the same two-block "run over `:deps`, then run over
2208 /// `:deps-dev`" pattern — a silent duplication that a future third
2209 /// dep-list axis would have had to grow a third block at every site.
2210 ///
2211 /// Peer of the sibling [`Self::push_dep`] typed-mutation dispatch
2212 /// (359fba5) — closes the two-side dispatch symmetry on the outer
2213 /// [`Caixa`] two-list dep-graph surface: `push_dep` on the mutation
2214 /// side, `deps_of` on the read side, both keyed on the same
2215 /// [`crate::dep::DepList`] discriminator. Same "one typed dispatch on
2216 /// the substrate primitive, thin projections at each consumer"
2217 /// discipline the sibling per-slot read accessors ([`Self::nome`]
2218 /// e6b7d97, [`Self::versao`], [`Self::kind`]) carry — extended onto
2219 /// the outer-[`Caixa`] typed-dispatch read surface.
2220 #[must_use]
2221 pub fn deps_of(&self, list: crate::dep::DepList) -> &[Dep] {
2222 match list {
2223 crate::dep::DepList::Prod => self.deps(),
2224 crate::dep::DepList::Dev => self.deps_dev(),
2225 }
2226 }
2227
2228 /// Substrate-canonical per-[`Caixa`] typed-mutation dispatch every
2229 /// consumer that appends to one of the two dep-list axes keys off
2230 /// — routes the `(list: DepList, dep: Dep)` tuple through one typed
2231 /// method on the substrate primitive rather than the prior
2232 /// `feira add`-side open-coded `if self.dev { &mut caixa.deps_dev }
2233 /// else { &mut caixa.deps }` inline dispatch + open-coded
2234 /// `.iter().any(|d| d.nome == …)` dup-check cascade. Refuses the
2235 /// mutation with the canonical typed [`DepError::DuplicateNome`] on
2236 /// a within-list name collision — the same `list: &'static str`
2237 /// diagnostic shape [`Self::validate_deps`]'s per-list
2238 /// [`crate::render::insert_first_seen`] walk raises on the peer
2239 /// parse-time within-list dedup axis, so a future author reading a
2240 /// `feira add` refusal and a `feira build` refusal reaches for the
2241 /// same corrective surface without switching diagnostic idioms.
2242 ///
2243 /// The two-arm [`crate::dep::DepList`] enum is the substrate's
2244 /// closed-set typed carrier for the "runtime-closure `:deps` vs
2245 /// dev-only-closure `:deps-dev`" axis every dep-list consumer
2246 /// dispatches on — the compiler-checked exhaustiveness on the
2247 /// enum's `match` arms is the build-time guarantee that no future
2248 /// per-list mutation-site regresses to a bare-`bool`-flag
2249 /// (`is_dev: bool`) inline dispatch that a future third
2250 /// dep-list axis (a `:deps-build` build-only closure once the
2251 /// substrate grows cross-artifact heterogeneous dep-graphs, per
2252 /// CAIXA-SDLC §I) would silently split at every consumer.
2253 ///
2254 /// Same "one typed dispatch on the substrate primitive, thin
2255 /// projections at each consumer" discipline the sibling per-slot
2256 /// read accessors ([`Self::deps`] ad34b4e, [`Self::deps_dev`],
2257 /// [`Self::nome`] e6b7d97, [`Self::versao`], [`Self::kind`])
2258 /// carry — extended onto the outer-[`Caixa`] typed-mutation surface,
2259 /// the substrate's first typed-mutation dispatch on the top-level
2260 /// manifest. The prior `feira add` open-coded `&mut caixa.deps` /
2261 /// `&mut caixa.deps_dev` inline field-access + `bail!` string-
2262 /// diagnostic path routed no through-line back to the typed slot,
2263 /// so a future extension of either dep-list axis to a richer author
2264 /// surface (a per-cluster override the operator pins through a
2265 /// future `:placement`-scoped dep-list slot the CAIXA-SDLC §I
2266 /// roadmap acknowledges, an M4
2267 /// `mesh.pleme.io/v1alpha1/Caixa` CR materializer's per-CR
2268 /// admission-webhook that normalized the list at admission time)
2269 /// would have had to be threaded through the `feira add` mutation
2270 /// site in lockstep with every read consumer or one path would
2271 /// silently disagree with the other on which list a given dep lands
2272 /// in. Lifting the resolution rule to a typed method on the
2273 /// substrate primitive means every downstream dep-list-mutating
2274 /// consumer of the top-level manifest reaches for exactly one typed
2275 /// dispatch — the resolver's accept-set migrates as a unit on any
2276 /// future axis addition.
2277 ///
2278 /// # Errors
2279 ///
2280 /// Returns [`DepError::DuplicateNome`] with `list = list.as_str()`
2281 /// when another entry in the same list already carries the same
2282 /// `:nome` — the mutation is refused and the caller can surface the
2283 /// typed diagnostic to the author (the `feira add` verb routes the
2284 /// error through `anyhow::Error::from`, which preserves the
2285 /// canonical `#[error(...)]`-templated diagnostic body).
2286 pub fn push_dep(&mut self, list: crate::dep::DepList, dep: Dep) -> Result<(), DepError> {
2287 let target = match list {
2288 crate::dep::DepList::Prod => &mut self.deps,
2289 crate::dep::DepList::Dev => &mut self.deps_dev,
2290 };
2291 if target.iter().any(|d| d.nome() == dep.nome()) {
2292 return Err(DepError::DuplicateNome {
2293 nome: dep.nome().to_string(),
2294 list: list.as_str(),
2295 });
2296 }
2297 target.push(dep);
2298 Ok(())
2299 }
2300
2301 /// Substrate-canonical per-`Caixa` `:limits` M2 typed-slot outer-
2302 /// composite Lunatic-per-process wasm32-sandboxing-composite optional-
2303 /// composite-reference accessor every consumer of the top-level
2304 /// manifest's per-Servico [`LimitsSpec`] outer-composite reader keys
2305 /// off — returns the author-declared `:limits` typed composite
2306 /// verbatim as an `Option<&LimitsSpec>` reference over the same
2307 /// backing storage the raw `self.limits.as_ref()` field access
2308 /// borrows from, with `None` naming the "no `:limits` block
2309 /// authored — every per-axis Lunatic-sandbox cap defers to the
2310 /// wasm-engine-default arm named on the per-axis
2311 /// [`LimitsSpec::memory`] / [`LimitsSpec::fuel`] /
2312 /// [`LimitsSpec::wall_clock`] / [`LimitsSpec::cpu`] scalar-accessor
2313 /// docstrings" partition every downstream Servico-M2-overlay
2314 /// emitter treats as "emit nothing" and the sibling
2315 /// [`crate::StandardLayout::verify`] per-`:limits` shape gate
2316 /// treats as "skip the per-axis
2317 /// [`crate::LimitsError::MemoryZero`] / `MemoryBelowWasm32Page` /
2318 /// `FuelZero` / `WallClockZero` / `CpuZero` refusal cascade".
2319 ///
2320 /// The outer `:limits` slot carries the M2 Servico-runtime typed
2321 /// composite — the load-bearing container of every Lunatic-shaped
2322 /// per-process wasm32-sandbox cap axis every long-running wasm
2323 /// component's runtime dispatches on (INSPIRATIONS §III.1 —
2324 /// Lunatic per-process linear-memory / fuel / wall-clock /
2325 /// millicore cap primitives translated onto pleme-io's typed
2326 /// `:limits :memory` / `:limits :fuel` / `:limits :wall-clock` /
2327 /// `:limits :cpu` sub-slot axes; CAIXA-SDLC §II — the typed-M2
2328 /// slot algebra the wasm-engine + `pleme-computeunit` Helm-library
2329 /// chart both fan on). Every per-`:limits` axis threads through a
2330 /// lifted per-slot accessor on the [`LimitsSpec`] type: the
2331 /// [`LimitsSpec::memory`] wasm32 linear-memory byte-cap scalar
2332 /// accessor, the [`LimitsSpec::fuel`] wasmtime fuel-cap scalar
2333 /// accessor, the [`LimitsSpec::wall_clock`] per-call wall-clock
2334 /// deadline scalar accessor, and the [`LimitsSpec::cpu`]
2335 /// K8s-millicore soft-CPU-share scalar accessor. Every downstream
2336 /// consumer that reaches for a limits axis first passes through
2337 /// this outer accessor onto the composite and then dispatches
2338 /// onto the per-axis accessor — the two-level dispatch means
2339 /// every per-`:limits` reader now routes through a typed dispatch
2340 /// on the substrate primitive at both altitudes.
2341 ///
2342 /// Prior to this lift the `.limits` `Option<LimitsSpec>` composite
2343 /// was accessed inline at three production sites — the
2344 /// [`crate::StandardLayout::verify`] per-`:limits` shape gate's
2345 /// `if let Some(l) = &caixa.limits { … }` traversal head
2346 /// (caixa-core/src/layout.rs:882, which drives the per-axis
2347 /// refusal cascade on the composite: the `LimitsError::MemoryZero`
2348 /// / `MemoryBelowWasm32Page` / `MemoryExceedsWasm32Max` /
2349 /// `FuelZero` / `FuelExceedsMax` / `WallClockZero` /
2350 /// `WallClockExceedsMax` / `CpuZero` / `CpuExceedsMax` refusals
2351 /// [`LimitsSpec::validate`] fans onto), the
2352 /// [`crate::render::servico_m2_overlay`] per-Servico M2 overlay
2353 /// emitter's `if let Some(limits) = &caixa.limits { … }` traversal
2354 /// head (caixa-core/src/render.rs:18504, which drives the
2355 /// `M2_KEY_LIMITS`-keyed `limits.is_empty()`-gated `serde_yaml`
2356 /// projection every `caixa-helm` / `caixa-flux` Servico values-
2357 /// block emitter fans on), and the
2358 /// [`Self::declared_servico_slots`] per-Servico M2 declared-slot-
2359 /// set enumerator's `self.limits.is_some()` presence probe
2360 /// (caixa-core/src/manifest.rs:1788, which drives the
2361 /// `M2_AUTHOR_KEY_LIMITS` kebab-case author-label push every
2362 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] kind-coherence
2363 /// gate reads) — three open-coded outer-field accesses that
2364 /// expressed no compile-time link back to the typed slot at the
2365 /// [`Caixa`] altitude. A future extension of the `:limits` outer
2366 /// axis to a richer author surface (a multi-`:limits` list the M4
2367 /// CR materializer resolves per-CR at admission time so a Servico
2368 /// can expose a compute-heavy + IO-heavy limits pair, a per-
2369 /// cluster `:limits-overrides` slot the operator pins so a
2370 /// cluster-specific policy can tighten a caixa-declared cap
2371 /// without re-authoring the `caixa.lisp`, a promotion of the
2372 /// plain `Option<LimitsSpec>` to a richer
2373 /// `{static, dynamic}` partition once the wasm-engine's runtime-
2374 /// resolved dynamic-cap surface lands) would have had to be
2375 /// threaded through all three open-coded copies in lockstep or
2376 /// one consumer would silently disagree with the peers on which
2377 /// limits composite a given Caixa resolves to — the layout gate's
2378 /// per-axis bracket-dispatch seed reading the raw slot while the
2379 /// peer `servico_m2_overlay` emitter read an operator-resolved
2380 /// slot would silently split the build-time sandbox-shape gate
2381 /// from the runtime `ComputeUnit` CR emission gate, a three-
2382 /// consumer split at the layout gate, the M2 overlay emitter, and
2383 /// the declared-slot enumerator far from the source `caixa.lisp`
2384 /// with no field naming the limits-drift root cause. Lifting the
2385 /// resolution rule to a typed method on the substrate primitive
2386 /// means every downstream consumer of the caixa's per-`Caixa`
2387 /// Lunatic-sandboxing outer-composite surface reaches for exactly
2388 /// one typed dispatch — the resolver's accept-set migrates as a
2389 /// unit on any future axis addition.
2390 ///
2391 /// First outer top-level [`Caixa`] `Option<&Composite>`-return
2392 /// composite-reference accessor — opens the outer-`Caixa`
2393 /// `Option<&Composite>` composite-reference projection pattern the
2394 /// sibling per-`Caixa` `:behavior` [`crate::BehaviorSpec`] /
2395 /// `:politicas` [`crate::aplicacao::MeshPolicy`] / `:placement`
2396 /// [`crate::aplicacao::Placement`] / `:entrada`
2397 /// [`crate::aplicacao::Entrada`] future outer-composite lifts
2398 /// fold on. Peer of the M3 mesh-slot outer-composite family the
2399 /// sibling [`crate::AplicacaoSpec::politicas`] (534dc21) /
2400 /// [`crate::AplicacaoSpec::placement`] (9abb8f0) /
2401 /// [`crate::AplicacaoSpec::entrada`] (d32111c) composite-reference
2402 /// accessors already close on the outer [`crate::AplicacaoSpec`]
2403 /// altitude — extends that "one typed dispatch on the substrate
2404 /// primitive, thin projections at each consumer" discipline onto
2405 /// the outer top-level [`Caixa`] altitude, opening the M2 Servico-
2406 /// runtime slot family's outer-composite axis. Returns
2407 /// `Option<&LimitsSpec>` (not the owning composite by copy or
2408 /// clone) because every downstream consumer of the limits
2409 /// composite treats it as a read-only per-axis dispatch source —
2410 /// the reference-view is the narrowest borrow that supports every
2411 /// present + roadmapped consumer (per-axis accessor dispatch,
2412 /// `.is_empty()`-gated overlay projection, presence-probe early
2413 /// return on the "author-omitted `:limits` ⇒ engine-default
2414 /// applies" partition) without cloning the composite through
2415 /// every consumer's fast path. The `Option` half of the return-
2416 /// type preserves the load-bearing "author-omitted `:limits` ⇒
2417 /// engine-default applies" partition (not a default composite the
2418 /// downstream must reject on emptiness) — the accessor projects
2419 /// the raw `Option<LimitsSpec>` slot's presence bit through the
2420 /// reference-return unchanged. Named `limits()` to match the
2421 /// storage field's name verbatim and the tatara-lisp author-
2422 /// surface term (`:limits`) the field's own docstring already
2423 /// carries.
2424 #[must_use]
2425 pub fn limits(&self) -> Option<&LimitsSpec> {
2426 self.limits.as_ref()
2427 }
2428
2429 /// Substrate-canonical per-`Caixa` `:behavior` M2 typed-slot outer-
2430 /// composite OTP-`gen_server`-shaped callback-table optional-
2431 /// composite-reference accessor every consumer of the top-level
2432 /// manifest's per-Servico [`BehaviorSpec`] outer-composite reader
2433 /// keys off — returns the author-declared `:behavior` typed
2434 /// composite verbatim as an `Option<&BehaviorSpec>` reference over
2435 /// the same backing storage the raw `self.behavior.as_ref()` field
2436 /// access borrows from, with `None` naming the "no `:behavior`
2437 /// block authored — every per-callback OTP-shaped hook defers to
2438 /// the wasm-engine's runtime default arm named on the per-axis
2439 /// [`BehaviorSpec::on_init`] / [`BehaviorSpec::on_call`] /
2440 /// [`BehaviorSpec::on_cast`] / [`BehaviorSpec::on_info`] /
2441 /// [`BehaviorSpec::on_state_change`] /
2442 /// [`BehaviorSpec::on_terminate`] scalar-accessor docstrings"
2443 /// partition every downstream Servico-M2-overlay emitter treats as
2444 /// "emit nothing" and the sibling [`crate::StandardLayout::verify`]
2445 /// per-`:behavior` shape gate treats as "skip the per-arm
2446 /// [`crate::behavior::BehaviorError`] refusal cascade + the
2447 /// per-callback on-disk `MissingEntry` existence check".
2448 ///
2449 /// The outer `:behavior` slot carries the M2 Servico-runtime typed
2450 /// composite — the load-bearing container of every OTP-shaped
2451 /// per-Servico lifecycle-callback path axis every long-running wasm
2452 /// component's runtime dispatches on (INSPIRATIONS §II.3 — Erlang/
2453 /// OTP `gen_server:init/1` / `handle_call/3` / `handle_cast/2` /
2454 /// `handle_info/2` / `code_change/3` / `terminate/2` primitives
2455 /// translated onto pleme-io's typed `:behavior :on-init` /
2456 /// `:on-call` / `:on-cast` / `:on-info` / `:on-state-change` /
2457 /// `:on-terminate` sub-slot axes; CAIXA-SDLC §II — the typed-M2
2458 /// slot algebra the wasm-engine + `pleme-computeunit` Helm-library
2459 /// chart both fan on). Every per-`:behavior` axis threads through a
2460 /// lifted per-callback accessor on the [`BehaviorSpec`] type
2461 /// (9b4ecde / d66c702 / 156ddbe / 99616ac / 4846cef / 701add7).
2462 /// Every downstream consumer that reaches for a behavior axis
2463 /// first passes through this outer accessor onto the composite
2464 /// and then dispatches onto the per-callback accessor — the
2465 /// two-level dispatch means every per-`:behavior` reader now
2466 /// routes through a typed dispatch on the substrate primitive at
2467 /// both altitudes.
2468 ///
2469 /// Composes cross-slot with the M2 `:upgrade-from` gate: the
2470 /// [`crate::upgrade::validate_upgrade_from_against_behavior`]
2471 /// cross-slot composition gate at [`crate::StandardLayout::verify`]
2472 /// keys the "per-version `:state-change` instruction must have a
2473 /// `:on-state-change` callback" precondition off this accessor's
2474 /// composite (the callback-side counterpart to the
2475 /// `:upgrade-from :instructions :state-change :script` refusal at
2476 /// the appup-side). Threading that gate's traversal input through
2477 /// this accessor closes the cross-slot invariant on the substrate
2478 /// primitive, not on the raw field.
2479 ///
2480 /// Prior to this lift the `.behavior` `Option<BehaviorSpec>`
2481 /// composite was accessed inline at four production sites — the
2482 /// [`crate::StandardLayout::verify`] per-`:behavior` shape gate's
2483 /// `if let Some(b) = &caixa.behavior { … }` traversal head
2484 /// (caixa-core/src/layout.rs:896, which drives the per-arm
2485 /// `BehaviorError` refusal cascade + the per-callback on-disk
2486 /// [`crate::LayoutError::MissingEntry`] existence check under
2487 /// [`crate::render::LAYOUT_MISSING_ENTRY_KIND_BEHAVIOR_CALLBACK`]),
2488 /// the [`crate::upgrade::validate_upgrade_from_against_behavior`]
2489 /// cross-slot composition gate's `caixa.behavior.as_ref()`
2490 /// traversal-input feed (caixa-core/src/layout.rs:1008, which
2491 /// drives the `:state-change` ↔ `:on-state-change` precondition
2492 /// refusal), the [`crate::render::servico_m2_overlay`] per-Servico
2493 /// M2 overlay emitter's `if let Some(behavior) = &caixa.behavior
2494 /// { … }` traversal head (caixa-core/src/render.rs:18513, which
2495 /// drives the `M2_KEY_BEHAVIOR`-keyed `behavior.is_empty()`-gated
2496 /// `serde_yaml` projection every `caixa-helm` / `caixa-flux`
2497 /// Servico values-block emitter fans on), and the
2498 /// [`Self::declared_servico_slots`] per-Servico M2 declared-slot-
2499 /// set enumerator's `self.behavior.is_some()` presence probe
2500 /// (caixa-core/src/manifest.rs:1919, which drives the
2501 /// `M2_AUTHOR_KEY_BEHAVIOR` kebab-case author-label push every
2502 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] kind-coherence
2503 /// gate reads) — four open-coded outer-field accesses that
2504 /// expressed no compile-time link back to the typed slot at the
2505 /// [`Caixa`] altitude. A future extension of the `:behavior`
2506 /// outer axis to a richer author surface (a per-callback overlay
2507 /// resolver the operator materializes at admission time so a
2508 /// cluster-specific policy can inject a per-callback tracing
2509 /// interceptor without re-authoring the `caixa.lisp`, a promotion
2510 /// of the plain `Option<BehaviorSpec>` to a richer `{static,
2511 /// dynamic}` partition once a runtime-resolved behavior-swap
2512 /// surface lands, the M4 per-callback middleware chain the
2513 /// caixa-operator's per-Servico admission webhook keys off) would
2514 /// have had to be threaded through all four open-coded copies in
2515 /// lockstep or one consumer would silently disagree with the
2516 /// peers on which behavior composite a given Caixa resolves to —
2517 /// the layout gate's per-callback existence-check seed reading
2518 /// the raw slot while the peer `servico_m2_overlay` emitter read
2519 /// an operator-resolved slot would silently split the build-time
2520 /// callback-shape gate from the runtime `ComputeUnit` CR emission
2521 /// gate from the cross-slot `:state-change` composition gate from
2522 /// the M2 declared-slot enumerator, a four-consumer split far
2523 /// from the source `caixa.lisp` with no field naming the
2524 /// behavior-drift root cause. Lifting the resolution rule to a
2525 /// typed method on the substrate primitive means every downstream
2526 /// consumer of the caixa's per-`Caixa` OTP-callback-table outer-
2527 /// composite surface reaches for exactly one typed dispatch — the
2528 /// resolver's accept-set migrates as a unit on any future axis
2529 /// addition.
2530 ///
2531 /// Second outer top-level [`Caixa`] `Option<&Composite>`-return
2532 /// composite-reference accessor — sibling to the opening
2533 /// [`Self::limits`] (b2bd9d7) accessor on the outer-`Caixa`
2534 /// `Option<&Composite>` composite-reference sub-family, extends
2535 /// the "one typed dispatch on the substrate primitive, thin
2536 /// projections at each consumer" discipline onto the second of
2537 /// the three M2 Servico-runtime slots. The remaining
2538 /// `Option<&Composite>` axes at the outer top-level [`Caixa`]
2539 /// altitude — the M3 mesh-slot family (`:politicas`,
2540 /// `:placement`, `:entrada` — already closed on the inner
2541 /// [`crate::AplicacaoSpec`] altitude via 534dc21 / 9abb8f0 /
2542 /// d32111c) — remain the future sibling lifts on the outer
2543 /// top-level projection. Returns `Option<&BehaviorSpec>` (not
2544 /// the owning composite by copy or clone) because every
2545 /// downstream consumer of the behavior composite treats it as a
2546 /// read-only per-callback dispatch source — the reference-view is
2547 /// the narrowest borrow that supports every present + roadmapped
2548 /// consumer (per-callback accessor dispatch, `.is_empty()`-gated
2549 /// overlay projection, presence-probe early return on the
2550 /// "author-omitted `:behavior` ⇒ runtime-default applies"
2551 /// partition, cross-slot `:state-change` composition input)
2552 /// without cloning the composite through every consumer's fast
2553 /// path. The `Option` half of the return-type preserves the
2554 /// load-bearing "author-omitted `:behavior` ⇒ runtime-default
2555 /// applies" partition (not a default composite the downstream
2556 /// must reject on emptiness) — the accessor projects the raw
2557 /// `Option<BehaviorSpec>` slot's presence bit through the
2558 /// reference-return unchanged. Named `behavior()` to match the
2559 /// storage field's name verbatim and the tatara-lisp author-
2560 /// surface term (`:behavior`) the field's own docstring already
2561 /// carries.
2562 #[must_use]
2563 pub fn behavior(&self) -> Option<&crate::BehaviorSpec> {
2564 self.behavior.as_ref()
2565 }
2566
2567 /// Substrate-canonical per-`Caixa` `:politicas` M3 mesh-slot outer-
2568 /// composite MESH-COMPOSITION-shaped mesh-policy optional-composite-
2569 /// reference accessor every consumer of the top-level manifest's
2570 /// per-Aplicacao [`crate::aplicacao::MeshPolicy`] outer-composite
2571 /// reader keys off — returns the author-declared `:politicas` typed
2572 /// composite verbatim as an `Option<&MeshPolicy>` reference over the
2573 /// same backing storage the raw `self.politicas.as_ref()` field
2574 /// access borrows from, with `None` naming the "no `:politicas`
2575 /// block authored — every per-axis mesh-policy scalar defers to the
2576 /// cluster-default arm named on the per-axis
2577 /// [`crate::aplicacao::MeshPolicy::timeout`] /
2578 /// [`crate::aplicacao::MeshPolicy::retries`] /
2579 /// [`crate::aplicacao::MeshPolicy::circuit_breaker`] /
2580 /// [`crate::aplicacao::MeshPolicy::mtls_required`] /
2581 /// [`crate::aplicacao::MeshPolicy::rate_limit`] scalar-accessor
2582 /// docstrings" partition every downstream caixa-mesh /
2583 /// caixa-flux / caixa-helm Aplicacao-artifact emitter treats as
2584 /// "emit no per-`:politicas` overlay" and the sibling
2585 /// [`Self::aplicacao_view`] Aplicacao-composition seed folds through
2586 /// the [`crate::aplicacao::MeshPolicy::default`] cluster-default
2587 /// arm.
2588 ///
2589 /// The outer `:politicas` slot carries the M3 mesh-slot per-
2590 /// Aplicacao typed composite — the load-bearing container of every
2591 /// mesh-level policy axis every Cilium NetworkPolicy / Gateway API
2592 /// v1.x HTTPRoute / future M4 per-edge policy overlay emitter fans
2593 /// on (MESH-COMPOSITION §III.2 — the Aplicacao's typed mesh-policy
2594 /// composite; §V — the "no infinite blocking" per-call deadline +
2595 /// "sandboxing-by-default" mTLS-enforcement CSE invariants; §III.3
2596 /// — the typed inter-Servico contrato-edge overlay the per-`(:de,
2597 /// :para)` mesh renderer keys off). Every per-`:politicas` axis
2598 /// threads through a lifted per-slot accessor on the
2599 /// [`crate::aplicacao::MeshPolicy`] type: the
2600 /// [`crate::aplicacao::MeshPolicy::mtls_required`] (c0110f1) Cilium
2601 /// mTLS-enforcement toggle, the
2602 /// [`crate::aplicacao::MeshPolicy::retries`] (bdfb399) transient-
2603 /// failure retry budget, the [`crate::aplicacao::MeshPolicy::timeout`]
2604 /// (7073d0f) Gateway-API per-call deadline, the
2605 /// [`crate::aplicacao::MeshPolicy::circuit_breaker`] (b0e741a)
2606 /// Envoy-outlier-detection composite. Every downstream consumer
2607 /// that reaches for a mesh-policy axis first passes through this
2608 /// outer accessor onto the composite and then dispatches onto the
2609 /// per-axis accessor — the two-level dispatch means every per-
2610 /// `:politicas` reader now routes through a typed dispatch on the
2611 /// substrate primitive at both altitudes.
2612 ///
2613 /// Composes through [`Self::aplicacao_view`]'s Aplicacao-composition
2614 /// seed: the Aplicacao-view builder folds the outer `Option`'s
2615 /// author-omitted arm onto the [`crate::aplicacao::MeshPolicy::default`]
2616 /// cluster-default, so the peer inner [`crate::AplicacaoSpec::politicas`]
2617 /// (534dc21) `&MeshPolicy`-return accessor observes a typed
2618 /// composite whether or not the author declared the outer slot.
2619 /// The outer accessor preserves the "author-omitted vs authored-
2620 /// empty" partition the inner accessor's `is_empty()`-gated
2621 /// renderer overlay collapses — routing the presence bit through
2622 /// this accessor keeps the [`Self::declared_mesh_slots`] M3 kind-
2623 /// coherence enumerator's `M3_AUTHOR_KEY_POLITICAS` push separate
2624 /// from the inner `MeshPolicy::is_empty()`-gated overlay elision.
2625 ///
2626 /// Prior to this lift the `.politicas` `Option<MeshPolicy>`
2627 /// composite was accessed inline at two production sites — the
2628 /// [`Self::aplicacao_view`] Aplicacao-composition seed's
2629 /// `self.politicas.clone().unwrap_or_default()` traversal head
2630 /// (caixa-core/src/manifest.rs:1899, which drives the fold onto
2631 /// the [`crate::aplicacao::MeshPolicy::default`] cluster-default
2632 /// arm the inner [`crate::AplicacaoSpec::politicas`] accessor
2633 /// then observes), and the [`Self::declared_mesh_slots`] M3
2634 /// declared-slot-set enumerator's `self.politicas.is_some()`
2635 /// presence probe (caixa-core/src/manifest.rs:1961, which drives
2636 /// the `M3_AUTHOR_KEY_POLITICAS` kebab-case author-label push
2637 /// every [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-
2638 /// coherence gate reads) — two open-coded outer-field accesses
2639 /// that expressed no compile-time link back to the typed slot at
2640 /// the [`Caixa`] altitude. A future extension of the `:politicas`
2641 /// outer axis to a richer author surface (a per-cluster
2642 /// `:politicas-overrides` slot the operator materializes at
2643 /// admission time so a cluster-specific policy can tighten the
2644 /// caixa-declared bound without re-authoring the `caixa.lisp`, a
2645 /// promotion of the plain `Option<MeshPolicy>` to a richer
2646 /// `{static, dynamic}` partition once the M4 per-edge
2647 /// contrato-scoped policy-override surface lands, the M5 traffic-
2648 /// shaping composition the caixa-operator's per-Aplicacao mesh
2649 /// admission webhook keys off) would have had to be threaded
2650 /// through both open-coded copies in lockstep or the Aplicacao-
2651 /// composition seed's default-fold arm would silently disagree
2652 /// with the M3 declared-slot enumerator on which policy composite
2653 /// a given Caixa resolves to — the seed reading an operator-
2654 /// resolved slot while the enumerator's presence probe read the
2655 /// raw slot would silently split the build-time mesh-artifact
2656 /// emission gate from the M3 declared-slot enumerator's kind-
2657 /// coherence gate, a two-consumer split far from the source
2658 /// `caixa.lisp` with no field naming the policy-drift root cause.
2659 /// Lifting the resolution rule to a typed method on the substrate
2660 /// primitive means every downstream consumer of the caixa's per-
2661 /// `Caixa` MESH-COMPOSITION mesh-policy outer-composite surface
2662 /// reaches for exactly one typed dispatch — the resolver's
2663 /// accept-set migrates as a unit on any future axis addition.
2664 ///
2665 /// Third outer top-level [`Caixa`] `Option<&Composite>`-return
2666 /// composite-reference accessor — sibling to the opening
2667 /// [`Self::limits`] (b2bd9d7) and [`Self::behavior`] (35d8b52)
2668 /// accessors on the outer-`Caixa` `Option<&Composite>` composite-
2669 /// reference sub-family, extends the "one typed dispatch on the
2670 /// substrate primitive, thin projections at each consumer"
2671 /// discipline onto the first of the three M3 mesh-slot axes.
2672 /// Peer of the closed inner mesh-slot outer-composite family the
2673 /// sibling [`crate::AplicacaoSpec::politicas`] (534dc21) /
2674 /// [`crate::AplicacaoSpec::placement`] (9abb8f0) /
2675 /// [`crate::AplicacaoSpec::entrada`] (d32111c) composite-reference
2676 /// accessor pins already close on the inner [`crate::AplicacaoSpec`]
2677 /// altitude — opens the outer top-level [`Caixa`] altitude's M3
2678 /// mesh-slot arm of the composite-reference family the remaining
2679 /// two axes (`:placement`, `:entrada`) fold onto in future
2680 /// sibling lifts. Returns `Option<&MeshPolicy>` (not the owning
2681 /// composite by copy or clone) because every downstream consumer
2682 /// of the mesh-policy composite treats it as a read-only per-axis
2683 /// dispatch source — the reference-view is the narrowest borrow
2684 /// that supports every present + roadmapped consumer (per-axis
2685 /// accessor dispatch, `.is_empty()`-gated overlay projection,
2686 /// presence-probe early return on the "author-omitted `:politicas`
2687 /// ⇒ cluster-default applies" partition, `Aplicacao`-composition
2688 /// seed's default-fold arm) without cloning the composite through
2689 /// every consumer's fast path. The `Option` half of the return-
2690 /// type preserves the load-bearing "author-omitted `:politicas` ⇒
2691 /// cluster-default applies" partition (not a default composite
2692 /// the downstream must reject on emptiness) — the accessor
2693 /// projects the raw `Option<MeshPolicy>` slot's presence bit
2694 /// through the reference-return unchanged. Named `politicas()` to
2695 /// match the storage field's name verbatim and the tatara-lisp
2696 /// author-surface term (`:politicas`) the field's own docstring
2697 /// already carries.
2698 #[must_use]
2699 pub fn politicas(&self) -> Option<&crate::aplicacao::MeshPolicy> {
2700 self.politicas.as_ref()
2701 }
2702
2703 /// Substrate-canonical per-`Caixa` `:placement` M3 mesh-slot outer-
2704 /// composite MESH-COMPOSITION-shaped distribution optional-composite-
2705 /// reference accessor every consumer of the top-level manifest's
2706 /// per-Aplicacao [`crate::aplicacao::Placement`] outer-composite
2707 /// reader keys off — returns the author-declared `:placement` typed
2708 /// composite verbatim as an `Option<&Placement>` reference over the
2709 /// same backing storage the raw `self.placement.as_ref()` field
2710 /// access borrows from, with `None` naming the "no `:placement`
2711 /// block authored — every per-axis placement scalar defers to the
2712 /// cluster-default arm named on the per-axis
2713 /// [`crate::aplicacao::Placement::estrategia`] /
2714 /// [`crate::aplicacao::Placement::clusters`] /
2715 /// [`crate::aplicacao::Placement::affinity`] /
2716 /// [`crate::aplicacao::Placement::shard_key`] scalar-accessor
2717 /// docstrings" partition every downstream caixa-mesh /
2718 /// caixa-flux / caixa-helm Aplicacao-artifact emitter treats as
2719 /// "emit no per-`:placement` overlay" and the sibling
2720 /// [`Self::aplicacao_view`] Aplicacao-composition seed folds through
2721 /// the [`crate::aplicacao::Placement::default`] cluster-default arm.
2722 ///
2723 /// The outer `:placement` slot carries the M3 mesh-slot per-
2724 /// Aplicacao typed distribution composite — the load-bearing
2725 /// container of every where-does-this-Aplicacao-run axis every
2726 /// caixa-mesh programs.yaml per-cluster distribution overlay /
2727 /// caixa-flux per-Aplicacao GitRepository/HelmRelease fan-out /
2728 /// future M4 per-Aplicacao Akka-style cluster-sharding entity-id
2729 /// resolver emitter fans on (MESH-COMPOSITION §II.4 — the
2730 /// Aplicacao's typed distribution composite; §V CSE invariants —
2731 /// "distribution is a first-class typed composite, not a runtime
2732 /// scheduler hint" the per-axis scalars enforce; §III.3 — the
2733 /// typed inter-Servico contrato-edge overlay the per-cluster
2734 /// mesh renderer keys off). Every per-`:placement` axis threads
2735 /// through a lifted per-slot accessor on the
2736 /// [`crate::aplicacao::Placement`] type: the
2737 /// [`crate::aplicacao::Placement::estrategia`] (921fe1b)
2738 /// MESH-COMPOSITION distribution-strategy scalar, the
2739 /// [`crate::aplicacao::Placement::clusters`] (a6e18d7) per-cluster
2740 /// distribution-target slice, the [`crate::aplicacao::Placement::affinity`]
2741 /// M3-Adaptive-compression-hint optional-scalar, and the
2742 /// [`crate::aplicacao::Placement::shard_key`] (7cd2a28) Akka-cluster-
2743 /// sharding extractor-expression optional-scalar. Every downstream
2744 /// consumer that reaches for a placement axis first passes through
2745 /// this outer accessor onto the composite and then dispatches onto
2746 /// the per-axis accessor — the two-level dispatch means every per-
2747 /// `:placement` reader now routes through a typed dispatch on the
2748 /// substrate primitive at both altitudes.
2749 ///
2750 /// Composes through [`Self::aplicacao_view`]'s Aplicacao-composition
2751 /// seed: the Aplicacao-view builder folds the outer `Option`'s
2752 /// author-omitted arm onto the [`crate::aplicacao::Placement::default`]
2753 /// cluster-default, so the peer inner [`crate::AplicacaoSpec::placement`]
2754 /// (9abb8f0) `&Placement`-return accessor observes a typed composite
2755 /// whether or not the author declared the outer slot. The outer
2756 /// accessor preserves the "author-omitted vs authored-empty" partition
2757 /// the inner accessor collapses at the cluster-default fold —
2758 /// routing the presence bit through this accessor keeps the
2759 /// [`Self::declared_mesh_slots`] M3 kind-coherence enumerator's
2760 /// `M3_AUTHOR_KEY_PLACEMENT` push separate from the inner
2761 /// [`crate::AplicacaoSpec::validate_placement`]-gated overlay
2762 /// dispatch.
2763 ///
2764 /// Prior to this lift the `.placement` `Option<Placement>`
2765 /// composite was accessed inline at two production sites — the
2766 /// [`Self::aplicacao_view`] Aplicacao-composition seed's
2767 /// `self.placement.clone().unwrap_or_default()` traversal head
2768 /// (caixa-core/src/manifest.rs:2036, which drives the fold onto
2769 /// the [`crate::aplicacao::Placement::default`] cluster-default
2770 /// arm the inner [`crate::AplicacaoSpec::placement`] accessor
2771 /// then observes), and the [`Self::declared_mesh_slots`] M3
2772 /// declared-slot-set enumerator's `self.placement.is_some()`
2773 /// presence probe (caixa-core/src/manifest.rs:2100, which drives
2774 /// the `M3_AUTHOR_KEY_PLACEMENT` kebab-case author-label push
2775 /// every [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-
2776 /// coherence gate reads) — two open-coded outer-field accesses
2777 /// that expressed no compile-time link back to the typed slot at
2778 /// the [`Caixa`] altitude. A future extension of the `:placement`
2779 /// outer axis to a richer author surface (a per-cluster
2780 /// `:placement-overrides` slot the operator materializes at
2781 /// admission time so a cluster-specific placement can tighten the
2782 /// caixa-declared bound without re-authoring the `caixa.lisp`, a
2783 /// per-tenant placement-alias table the M4
2784 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer resolves
2785 /// per-CR at admission time, a promotion of the plain
2786 /// `Option<Placement>` to a richer `{static, dynamic}` partition
2787 /// once Orleans-style virtual-actor dynamic placement comes into
2788 /// typed scope) would have had to be threaded through both open-
2789 /// coded copies in lockstep or the Aplicacao-composition seed's
2790 /// default-fold arm would silently disagree with the M3 declared-
2791 /// slot enumerator on which distribution composite a given Caixa
2792 /// resolves to — the seed reading an operator-resolved slot while
2793 /// the enumerator's presence probe read the raw slot would
2794 /// silently split the build-time distribution-artifact emission
2795 /// gate from the M3 declared-slot enumerator's kind-coherence
2796 /// gate, a two-consumer split far from the source `caixa.lisp`
2797 /// with no field naming the distribution-drift root cause.
2798 /// Lifting the resolution rule to a typed method on the substrate
2799 /// primitive means every downstream consumer of the caixa's per-
2800 /// `Caixa` MESH-COMPOSITION distribution outer-composite surface
2801 /// reaches for exactly one typed dispatch — the resolver's
2802 /// accept-set migrates as a unit on any future axis addition.
2803 ///
2804 /// Fourth outer top-level [`Caixa`] `Option<&Composite>`-return
2805 /// composite-reference accessor — sibling to the opening
2806 /// [`Self::limits`] (b2bd9d7) / [`Self::behavior`] (35d8b52) M2-
2807 /// Servico-runtime pair and the peer [`Self::politicas`] (5d23d29)
2808 /// M3-mesh-slot arm on the outer-`Caixa` `Option<&Composite>`
2809 /// composite-reference sub-family, folds on the "one typed
2810 /// dispatch on the substrate primitive, thin projections at each
2811 /// consumer" discipline extended onto the second of the three M3
2812 /// mesh-slot axes. Peer of the closed inner mesh-slot outer-
2813 /// composite family the sibling
2814 /// [`crate::AplicacaoSpec::politicas`] (534dc21) /
2815 /// [`crate::AplicacaoSpec::placement`] (9abb8f0) /
2816 /// [`crate::AplicacaoSpec::entrada`] (d32111c) composite-reference
2817 /// accessor pins already close on the inner
2818 /// [`crate::AplicacaoSpec`] altitude — folds on the outer top-
2819 /// level [`Caixa`] altitude's M3 mesh-slot arm the sibling
2820 /// [`Self::politicas`] opened, extending the discipline onto the
2821 /// second of the three M3 mesh-slot axes. The remaining M3
2822 /// mesh-slot axis (`:entrada`) folds onto this accessor's
2823 /// discipline in the final sibling lift, closing the outer top-
2824 /// level [`Caixa`] `Option<&Composite>` M3 mesh-slot sub-family.
2825 /// Returns `Option<&Placement>` (not the owning composite by copy
2826 /// or clone) because every downstream consumer of the placement
2827 /// composite treats it as a read-only per-axis dispatch source —
2828 /// the reference-view is the narrowest borrow that supports every
2829 /// present + roadmapped consumer (per-axis accessor dispatch,
2830 /// serde composite-serialization on the programs.yaml overlay,
2831 /// presence-probe early return on the "author-omitted `:placement`
2832 /// ⇒ cluster-default applies" partition, `Aplicacao`-composition
2833 /// seed's default-fold arm) without cloning the composite through
2834 /// every consumer's fast path. The `Option` half of the return-
2835 /// type preserves the load-bearing "author-omitted `:placement` ⇒
2836 /// cluster-default applies" partition (not a default composite
2837 /// the downstream must reject on emptiness) — the accessor
2838 /// projects the raw `Option<Placement>` slot's presence bit
2839 /// through the reference-return unchanged. Named `placement()` to
2840 /// match the storage field's name verbatim and the tatara-lisp
2841 /// author-surface term (`:placement`) the field's own docstring
2842 /// already carries.
2843 #[must_use]
2844 pub fn placement(&self) -> Option<&crate::aplicacao::Placement> {
2845 self.placement.as_ref()
2846 }
2847
2848 /// Substrate-canonical per-`Caixa` `:entrada` M3 mesh-slot outer-
2849 /// composite MESH-COMPOSITION-shaped external-gateway optional-
2850 /// composite-reference accessor every consumer of the top-level
2851 /// manifest's per-Aplicacao [`crate::aplicacao::Entrada`] outer-
2852 /// composite reader keys off — returns the author-declared
2853 /// `:entrada` typed composite verbatim as an `Option<&Entrada>`
2854 /// reference over the same backing storage the raw
2855 /// `self.entrada.as_ref()` field access borrows from, with `None`
2856 /// naming the "no `:entrada` block authored — this Aplicacao is
2857 /// cluster-internal, no `Gateway`/`HTTPRoute` fan-out emitted"
2858 /// partition every downstream caixa-mesh Gateway-API artifact
2859 /// emitter treats as "emit no gateway-listener + no `HTTPRoute`
2860 /// backend for this Aplicacao" and the sibling
2861 /// [`Self::aplicacao_view`] Aplicacao-composition seed forwards
2862 /// verbatim (unlike the peer `:politicas` / `:placement` arms,
2863 /// `:entrada` has no cluster-default fold — an omitted `:entrada`
2864 /// stays `None` on the projected [`crate::AplicacaoSpec`] and the
2865 /// peer inner [`crate::AplicacaoSpec::entrada`] accessor observes
2866 /// the same `Option<&Entrada>` presence bit unchanged).
2867 ///
2868 /// The outer `:entrada` slot carries the M3 mesh-slot per-
2869 /// Aplicacao typed external-gateway composite — the load-bearing
2870 /// container of every how-does-the-outside-world-reach-this-
2871 /// Aplicacao axis every caixa-mesh `Gateway`/`HTTPRoute` fan-out
2872 /// emitter fans on (MESH-COMPOSITION §II.5 — the Aplicacao's typed
2873 /// external-entry composite; §V CSE invariants — "the external
2874 /// gateway is a first-class typed composite, not a per-Servico
2875 /// ingress annotation" the per-axis scalars enforce; §III.4 — the
2876 /// typed hostname + backend-Servico pair the per-cluster Gateway-
2877 /// API renderer keys off). Every per-`:entrada` axis threads
2878 /// through a lifted per-slot accessor on the
2879 /// [`crate::aplicacao::Entrada`] type: the
2880 /// [`crate::aplicacao::Entrada::host`] Gateway-API `Listener.hostname`
2881 /// scalar, the [`crate::aplicacao::Entrada::para`] backend-Servico
2882 /// caixa-name scalar, the [`crate::aplicacao::Entrada::paths`]
2883 /// per-rule `HTTPPathMatch` list, the [`crate::aplicacao::Entrada::port`]
2884 /// backend `trigger.service.port` scalar, and the
2885 /// [`crate::aplicacao::Entrada::resolved_paths`] URL-path fallback
2886 /// resolver every HTTPRoute-aware renderer consumes. Every
2887 /// downstream consumer that reaches for an entry axis first passes
2888 /// through this outer accessor onto the composite and then
2889 /// dispatches onto the per-axis accessor — the two-level dispatch
2890 /// means every per-`:entrada` reader now routes through a typed
2891 /// dispatch on the substrate primitive at both altitudes.
2892 ///
2893 /// Composes through [`Self::aplicacao_view`]'s Aplicacao-composition
2894 /// seed: the Aplicacao-view builder forwards the outer `Option`
2895 /// arm verbatim (no default fold — `:entrada` is inherently
2896 /// optional; a cluster-internal Aplicacao has no external gateway
2897 /// at all, not "an external gateway that defaults to nothing"), so
2898 /// the peer inner [`crate::AplicacaoSpec::entrada`] (d32111c)
2899 /// `Option<&Entrada>`-return accessor observes the same presence
2900 /// bit whether or not the author declared the outer slot. Routing
2901 /// the presence bit through this accessor keeps the
2902 /// [`Self::declared_mesh_slots`] M3 kind-coherence enumerator's
2903 /// `M3_AUTHOR_KEY_ENTRADA` push separate from the inner
2904 /// [`crate::AplicacaoSpec::validate_entrada`]-gated
2905 /// hostname/backend/path emission dispatch.
2906 ///
2907 /// Prior to this lift the `.entrada` `Option<Entrada>` composite
2908 /// was accessed inline at two production sites — the
2909 /// [`Self::aplicacao_view`] Aplicacao-composition seed's
2910 /// `self.entrada.clone()` traversal head (caixa-core/src/manifest.rs:2182,
2911 /// which drives the forward onto the peer inner
2912 /// [`crate::AplicacaoSpec::entrada`] accessor the caixa-mesh
2913 /// Gateway-API fan-out then observes), and the
2914 /// [`Self::declared_mesh_slots`] M3 declared-slot-set enumerator's
2915 /// `self.entrada.is_some()` presence probe (caixa-core/src/manifest.rs:2248,
2916 /// which drives the `M3_AUTHOR_KEY_ENTRADA` kebab-case author-
2917 /// label push every [`crate::LayoutError::MeshSlotsOnNonAplicacao`]
2918 /// kind-coherence gate reads) — two open-coded outer-field
2919 /// accesses that expressed no compile-time link back to the typed
2920 /// slot at the [`Caixa`] altitude. A future extension of the
2921 /// `:entrada` outer axis to a richer author surface (a per-cluster
2922 /// `:entrada-overrides` slot the operator materializes at admission
2923 /// time so a cluster-specific hostname can pin the caixa-declared
2924 /// bound without re-authoring the `caixa.lisp`, a per-tenant
2925 /// gateway-alias table the M4 `mesh.pleme.io/v1alpha1/Aplicacao`
2926 /// CR materializer resolves per-CR at admission time, a promotion
2927 /// of the plain `Option<Entrada>` to a richer
2928 /// `{public, private, internal}` partition once Cilium-identity-
2929 /// scoped internal gateways come into typed scope) would have had
2930 /// to be threaded through both open-coded copies in lockstep or the
2931 /// Aplicacao-composition seed's forward arm would silently
2932 /// disagree with the M3 declared-slot enumerator on which external-
2933 /// gateway composite a given Caixa resolves to — the seed reading
2934 /// an operator-resolved slot while the enumerator's presence probe
2935 /// read the raw slot would silently split the build-time gateway-
2936 /// artifact emission gate from the M3 declared-slot enumerator's
2937 /// kind-coherence gate, a two-consumer split far from the source
2938 /// `caixa.lisp` with no field naming the entry-drift root cause.
2939 /// Lifting the resolution rule to a typed method on the substrate
2940 /// primitive means every downstream consumer of the caixa's per-
2941 /// `Caixa` MESH-COMPOSITION external-gateway outer-composite
2942 /// surface reaches for exactly one typed dispatch — the resolver's
2943 /// accept-set migrates as a unit on any future axis addition.
2944 ///
2945 /// Fifth and final outer top-level [`Caixa`] `Option<&Composite>`-
2946 /// return composite-reference accessor — closes the outer-`Caixa`
2947 /// `Option<&Composite>` composite-reference sub-family opened by
2948 /// [`Self::limits`] (b2bd9d7) / [`Self::behavior`] (35d8b52) on the
2949 /// M2 Servico-runtime arm and extended onto the M3 mesh-slot arm
2950 /// by [`Self::politicas`] (5d23d29) / [`Self::placement`] (4fb8074),
2951 /// folds on the "one typed dispatch on the substrate primitive,
2952 /// thin projections at each consumer" discipline extended onto the
2953 /// third and final M3 mesh-slot axis. Peer of the closed inner
2954 /// mesh-slot outer-composite family the sibling
2955 /// [`crate::AplicacaoSpec::politicas`] (534dc21) /
2956 /// [`crate::AplicacaoSpec::placement`] (9abb8f0) /
2957 /// [`crate::AplicacaoSpec::entrada`] (d32111c) composite-reference
2958 /// accessor pins already close on the inner
2959 /// [`crate::AplicacaoSpec`] altitude — this lift closes the mirror
2960 /// sub-family on the outer top-level [`Caixa`] altitude, so both
2961 /// altitudes of the outer-composite reference-return discipline
2962 /// (per-`Caixa` outer-slot presence + per-`AplicacaoSpec` inner-
2963 /// slot presence) now carry the full five-arm accept-set behind a
2964 /// typed dispatch on the substrate primitive. Returns
2965 /// `Option<&Entrada>` (not the owning composite by copy or clone)
2966 /// because every downstream consumer of the entrada composite
2967 /// treats it as a read-only per-axis dispatch source — the
2968 /// reference-view is the narrowest borrow that supports every
2969 /// present + roadmapped consumer (per-axis accessor dispatch,
2970 /// serde composite-serialization on the programs.yaml overlay,
2971 /// presence-probe early return on the "author-omitted `:entrada`
2972 /// ⇒ cluster-internal Aplicacao" partition, `Aplicacao`-composition
2973 /// seed's forward arm) without cloning the composite through every
2974 /// consumer's fast path. The `Option` half of the return-type
2975 /// preserves the load-bearing "author-omitted `:entrada` ⇒
2976 /// cluster-internal Aplicacao" partition (not a default composite
2977 /// the downstream must reject on emptiness — a cluster-internal
2978 /// Aplicacao has no external gateway at all, not "a default gateway
2979 /// that emits nothing"); the accessor projects the raw
2980 /// `Option<Entrada>` slot's presence bit through the reference-
2981 /// return unchanged. Named `entrada()` to match the storage field's
2982 /// name verbatim and the tatara-lisp author-surface term
2983 /// (`:entrada`) the field's own docstring already carries.
2984 #[must_use]
2985 pub fn entrada(&self) -> Option<&crate::aplicacao::Entrada> {
2986 self.entrada.as_ref()
2987 }
2988
2989 /// Substrate-canonical per-`Caixa` `:ci` slot accessor — returns the
2990 /// author-declared typed CI run (`canteiro_types::CiRun`) verbatim as
2991 /// an `Option<&CiRun>`, borrowed from the typed slot's own
2992 /// `Option<CiRun>` storage. `None` when the slot is absent (every
2993 /// non-`Acao` kind, and an `Acao` caixa that hasn't declared `:ci`
2994 /// yet — the latter is caught by [`crate::LayoutError::MissingCi`],
2995 /// not silently accepted).
2996 ///
2997 /// Named `ci()` to match the storage field's name and the
2998 /// tatara-lisp author surface (`:ci`); mirrors the sibling
2999 /// `Option<&Composite>` accessors on this same `Caixa` altitude
3000 /// ([`Self::limits`], [`Self::behavior`], [`Self::politicas`],
3001 /// [`Self::placement`], [`Self::entrada`]) — one typed dispatch on
3002 /// the substrate primitive rather than an open-coded `self.ci.as_ref()`
3003 /// at every consumer.
3004 #[must_use]
3005 pub fn ci(&self) -> Option<&canteiro_types::CiRun> {
3006 self.ci.as_ref()
3007 }
3008
3009 /// Substrate-canonical per-`Caixa` `:estrategia` M2 supervisor-tree-
3010 /// slot flat-spread OTP-shaped sibling-restart-strategy discriminant
3011 /// accessor every consumer of the top-level manifest's per-Supervisor
3012 /// restart-strategy axis keys off — returns the author-declared
3013 /// `:estrategia` variant verbatim as an `Option<RestartStrategy>`,
3014 /// `Copy`-projected from the typed slot's own
3015 /// `Option<crate::supervisor::RestartStrategy>` storage. Optional
3016 /// (`:estrategia` is a flat-spread supervisor-only slot every
3017 /// non-`Supervisor`-kind `defcaixa` carries as `None` by
3018 /// `#[serde(default)]`, and every `Supervisor`-kind `defcaixa` may
3019 /// still omit to defer to [`RestartStrategy::default`] —
3020 /// [`RestartStrategy::OneForOne`] — through the [`Self::supervisor_view`]
3021 /// `unwrap_or_default()` fold; a returned `None` degenerates to the
3022 /// [`SupervisorSpec::default`]-inherited strategy without any silent
3023 /// promotion to a fresh explicit variant at the accessor boundary).
3024 ///
3025 /// The `:estrategia` slot carries the M2 typed OTP-shaped sibling-
3026 /// restart-strategy discriminant every substrate-side per-Supervisor
3027 /// dispatch fans on (INSPIRATIONS §II.2 — OTP `supervisor:strategy`
3028 /// closed-set `one_for_one | one_for_all | rest_for_one |
3029 /// simple_one_for_one` algebra translated onto pleme-io's typed
3030 /// [`RestartStrategy`] enum; CAIXA-SDLC §II — the M2 supervisor-tree
3031 /// slot algebra the operator's hierarchical reconciliation scheduler
3032 /// fans on). The slot is *flat-spread* on the outer top-level `Caixa`
3033 /// (per the field-shape docstring at caixa-core/src/manifest.rs — "The
3034 /// supervisor slots are flat on Caixa (vs nested under a
3035 /// `SupervisorSpec` sub-form) to keep tatara-lisp authoring at one
3036 /// level of nesting"), so the accessor's altitude is the outer
3037 /// [`Caixa`] surface rather than the composed [`SupervisorSpec`]
3038 /// altitude the sibling [`crate::supervisor::SupervisorSpec::estrategia`]
3039 /// (eafb619) accessor keys off. The two typed axes — the outer
3040 /// author-surface `Option<RestartStrategy>` on the [`Caixa`] altitude
3041 /// (author-omitted arm carried as `None`) and the inner post-
3042 /// composition `RestartStrategy` on the [`SupervisorSpec`] altitude
3043 /// (`Option` collapsed through the [`Self::supervisor_view`]
3044 /// `unwrap_or_default()` fold) — now share one accessor discipline for
3045 /// the shared substrate concept "the author-declared OTP-shaped
3046 /// sibling-restart-strategy variant that partitions the downstream
3047 /// per-Supervisor renderer's per-arm fan-out"; the outer-altitude
3048 /// `None` arm is the pre-composition presence bit every declared-slot
3049 /// enumerator ([`Self::declared_supervisor_slots`]) reads, and the
3050 /// inner-altitude non-`Option` `RestartStrategy` is the post-
3051 /// composition partition-dispatch input every strategy-arm consumer
3052 /// ([`SupervisorSpec::validate`], the future wasm-operator's per-
3053 /// Supervisor sibling-restart branch, the future M4
3054 /// `mesh.pleme.io/v1alpha1/Supervisor` CR materializer's admission
3055 /// webhook) fans on.
3056 ///
3057 /// Prior to this lift the `.estrategia` field was accessed inline at
3058 /// two production sites in `caixa-core/src/manifest.rs` — the
3059 /// [`Self::declared_supervisor_slots`] `SUPERVISOR_AUTHOR_KEY_ESTRATEGIA`
3060 /// presence-probe arm at `if self.estrategia.is_some()` (which drives
3061 /// the [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] kind-
3062 /// coherence gate's per-slot label push) and the [`Self::supervisor_view`]
3063 /// `SupervisorSpec` construction site at `estrategia:
3064 /// self.estrategia.unwrap_or_default()` (which composes the flat-
3065 /// spread outer author-surface `Option<RestartStrategy>` onto the
3066 /// inner post-composition [`SupervisorSpec`] `RestartStrategy` field
3067 /// the [`SupervisorSpec::estrategia`] accessor keys off) — two open-
3068 /// coded field-accesses that expressed no compile-time link back to
3069 /// the typed slot. A future extension of the outer `:estrategia` axis
3070 /// to a richer author surface (a per-cluster strategy override the
3071 /// operator pins through a future `:estrategia-overrides` overlay the
3072 /// MESH-COMPOSITION §III.2 supervision-canary roadmap acknowledges,
3073 /// a per-tenant strategy-alias table the M4 CR materializer resolves
3074 /// per-CR, a per-Supervisor dynamic strategy derivation the future
3075 /// adaptive-supervision engine computes from child-failure-history
3076 /// topology, a per-child-cohort strategy split the future
3077 /// `RestForCohort` extension the INSPIRATIONS.md §II.2 Erlang/OTP
3078 /// absorption roadmap acknowledges, a promotion of the plain
3079 /// `Option<RestartStrategy>` to a richer
3080 /// `AuthorDeclaredStrategy { declared, overlay }` newtype once the
3081 /// operator-resolved overlay lands) would have had to be threaded
3082 /// through both open-coded copies in lockstep or the enumerator's
3083 /// presence probe and the composition site's `unwrap_or_default()`
3084 /// fold would silently disagree on which strategy a given [`Caixa`]
3085 /// resolves to (an author's `:estrategia OneForAll` would satisfy
3086 /// the enumerator's presence probe while the composition site
3087 /// silently rendered a stale `OneForOne`, or vice versa). Lifting
3088 /// the resolution rule to a typed method on the substrate primitive
3089 /// means every downstream consumer of the caixa's per-`Caixa` outer-
3090 /// altitude sibling-restart-strategy surface reaches for exactly one
3091 /// typed dispatch — the resolver's accept-set migrates as a unit on
3092 /// any future axis addition.
3093 ///
3094 /// First outer top-level [`Caixa`] `Option<Copy>`-return supervisor-
3095 /// tree-slot flat-spread accessor for M2 supervisor-slot Copy-carry
3096 /// axes — opens the outer-`Caixa` `Option<Copy>` flat-spread
3097 /// projection pattern the sibling per-`Caixa` `:max-restarts`
3098 /// `Option<u32>` and (through the future duration-newtype landing)
3099 /// `:restart-window` `Option<Duration>` future outer-scalar lifts
3100 /// fold on. Peer of the inner-altitude [`crate::supervisor::SupervisorSpec::estrategia`]
3101 /// (eafb619) `Copy`-return sibling-restart-strategy scalar accessor on
3102 /// the post-composition [`SupervisorSpec`] altitude — same "one
3103 /// typed dispatch on the substrate primitive, thin projections at
3104 /// each consumer" discipline extended onto the pre-composition outer
3105 /// author-surface [`Caixa`] altitude for the same OTP-shaped
3106 /// sibling-restart-strategy axis. Peer of the closed outer-`Caixa`
3107 /// `Option<&Composite>` composite-reference family the sibling
3108 /// [`Self::limits`] (b2bd9d7) / [`Self::behavior`] (35d8b52) /
3109 /// [`Self::politicas`] (5d23d29) / [`Self::placement`] (4fb8074) /
3110 /// [`Self::entrada`] (e4128e4) accessor pins already carry on the
3111 /// outer `Option<&Composite>` altitude — extends the outer-`Caixa`
3112 /// typed-slot accessor discipline onto the flat-spread M2 supervisor-
3113 /// tree `Option<Copy>`-discriminant sub-family the sibling M3
3114 /// [`crate::aplicacao::Placement::estrategia`] (921fe1b)
3115 /// `PlacementStrategy` `Copy`-composite-enum scalar accessor already
3116 /// pins on the inner-altitude per-`:placement` composite. Named
3117 /// `estrategia()` to match the storage field's name and the
3118 /// per-[`SupervisorSpec`] peer [`crate::supervisor::SupervisorSpec::estrategia`]
3119 /// / per-[`crate::aplicacao::Placement`] peer
3120 /// [`crate::aplicacao::Placement::estrategia`] method-name discipline
3121 /// verbatim; the accessor's identity name maps onto the canonical
3122 /// OTP-shape supervision vocabulary the [`RestartStrategy`] enum's
3123 /// docstring already carries.
3124 #[must_use]
3125 pub const fn estrategia(&self) -> Option<crate::supervisor::RestartStrategy> {
3126 self.estrategia
3127 }
3128
3129 /// Substrate-canonical per-`Caixa` `:max-restarts` M2 supervisor-tree-
3130 /// slot flat-spread OTP-`MaxIntensity`-shaped restart-budget-count
3131 /// scalar accessor every consumer of the top-level manifest's per-
3132 /// Supervisor `:max-restarts` restart-budget-count axis keys off —
3133 /// returns the author-declared `:max-restarts` typed `Option<u32>`
3134 /// verbatim, `Copy`-projected from the typed slot's own `Option<u32>`
3135 /// storage (`u32` is `Copy`, so `Option<u32>` is `Copy` and the
3136 /// accessor returns by value; no borrow of `&self` past the call).
3137 /// Optional (`:max-restarts` is a flat-spread supervisor-only slot
3138 /// every non-`Supervisor`-kind `defcaixa` carries as `None` by
3139 /// `#[serde(default)]`, and every `Supervisor`-kind `defcaixa` may
3140 /// still omit to defer to the [`Self::supervisor_view`]
3141 /// `unwrap_or(5)` fold's OTP-canonical `{intensity, 5, 60}` default).
3142 ///
3143 /// The `:max-restarts` slot carries the M2 typed Erlang/OTP-shaped
3144 /// `MaxIntensity` restart-budget count that pairs with the sibling
3145 /// `:restart-window` `Period` to form the `MaxIntensity / Period`
3146 /// restart-intensity ratio the supervisor trips its own escalation on
3147 /// (INSPIRATIONS §II.2 — Erlang/OTP `supervisor` `{intensity, 5, 60}`
3148 /// worker-supervisor default; RUNTIME-PATTERNS §II.2; CAIXA-SDLC §II
3149 /// — the M2 supervisor-tree slot algebra the operator's hierarchical
3150 /// reconciliation scheduler fans on). The slot is *flat-spread* on
3151 /// the outer top-level `Caixa` (per the field-shape docstring at
3152 /// caixa-core/src/manifest.rs — "The supervisor slots are flat on
3153 /// Caixa (vs nested under a `SupervisorSpec` sub-form)"), so the
3154 /// accessor's altitude is the outer [`Caixa`] surface rather than the
3155 /// composed [`SupervisorSpec`] altitude the sibling
3156 /// [`crate::supervisor::SupervisorSpec::max_restarts`] accessor keys
3157 /// off. The two typed axes — the outer author-surface `Option<u32>`
3158 /// on the [`Caixa`] altitude (author-omitted arm carried as `None`)
3159 /// and the inner post-composition `u32` on the [`SupervisorSpec`]
3160 /// altitude (`Option` collapsed through the [`Self::supervisor_view`]
3161 /// `unwrap_or(5)` fold) — now share one accessor discipline for the
3162 /// shared substrate concept "the author-declared OTP-shaped
3163 /// restart-budget count every downstream per-Supervisor consumer's
3164 /// restart-intensity budget-vs-count comparator fans on".
3165 ///
3166 /// Prior to this lift the `.max_restarts` field was accessed inline
3167 /// at two production sites in `caixa-core/src/manifest.rs` — the
3168 /// [`Self::declared_supervisor_slots`] `SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS`
3169 /// presence-probe arm at `if self.max_restarts.is_some()` (which
3170 /// drives the [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`]
3171 /// kind-coherence gate's per-slot label push) and the
3172 /// [`Self::supervisor_view`] `SupervisorSpec` construction site at
3173 /// `max_restarts: self.max_restarts.unwrap_or(5)` (which composes the
3174 /// flat-spread outer author-surface `Option<u32>` onto the inner
3175 /// post-composition [`SupervisorSpec`] `u32` field the
3176 /// [`SupervisorSpec::max_restarts`] accessor keys off) — two open-
3177 /// coded field-accesses that expressed no compile-time link back to
3178 /// the typed slot. A future extension of the outer `:max-restarts`
3179 /// axis to a richer author surface (a per-cluster restart-budget
3180 /// override the operator pins through a future `:max-restarts-overrides`
3181 /// overlay the MESH-COMPOSITION §III.2 supervision-canary roadmap
3182 /// acknowledges, a per-tenant restart-budget-alias table the M4 CR
3183 /// materializer resolves per-CR, a per-Supervisor dynamic restart-
3184 /// budget derivation the future adaptive-supervision engine computes
3185 /// from child-failure-history topology, a promotion of the plain
3186 /// `Option<u32>` count to a richer `{MaxR, MaxT}` per-child-cohort
3187 /// restart-budget-partition once the INSPIRATIONS §II.2 Erlang/OTP
3188 /// per-child-cohort roadmap lands) would have had to be threaded
3189 /// through both open-coded copies in lockstep or the enumerator's
3190 /// presence probe and the composition site's `unwrap_or(5)` fold
3191 /// would silently disagree on which restart-budget a given [`Caixa`]
3192 /// resolves to (an author's `:max-restarts 10` would satisfy the
3193 /// enumerator's presence probe while the composition site silently
3194 /// composed the OTP-canonical `5`, or vice versa). Lifting the
3195 /// resolution rule to a typed method on the substrate primitive means
3196 /// every downstream consumer of the caixa's per-`Caixa` outer-altitude
3197 /// restart-budget-count surface reaches for exactly one typed dispatch
3198 /// — the resolver's accept-set migrates as a unit on any future axis
3199 /// addition.
3200 ///
3201 /// Second outer top-level [`Caixa`] `Option<Copy>`-return supervisor-
3202 /// tree-slot flat-spread accessor for M2 supervisor-slot Copy-carry
3203 /// axes — folds on the outer-`Caixa` `Option<Copy>` flat-spread
3204 /// projection pattern the sibling per-`Caixa`
3205 /// [`Self::estrategia`] (ed04d3c) accessor opened, extends the
3206 /// sub-family onto the sibling `Option<u32>` restart-budget-count arm.
3207 /// Peer of the inner-altitude
3208 /// [`crate::supervisor::SupervisorSpec::max_restarts`] `u32` accessor
3209 /// on the post-composition [`SupervisorSpec`] altitude — same "one
3210 /// typed dispatch on the substrate primitive, thin projections at
3211 /// each consumer" discipline extended onto the pre-composition outer
3212 /// author-surface [`Caixa`] altitude for the same OTP-`MaxIntensity`-
3213 /// shaped restart-budget-count axis. Named `max_restarts()` to match
3214 /// the storage field's name and the per-[`SupervisorSpec`] peer
3215 /// [`crate::supervisor::SupervisorSpec::max_restarts`] method-name
3216 /// discipline verbatim; the accessor's identity maps onto the
3217 /// canonical OTP-shape supervision vocabulary the `:max-restarts`
3218 /// field's docstring already carries.
3219 #[must_use]
3220 pub const fn max_restarts(&self) -> Option<u32> {
3221 self.max_restarts
3222 }
3223
3224 /// Substrate-canonical per-`Caixa` `:restart-window` M2 supervisor-
3225 /// tree-slot flat-spread OTP-`Period`-shaped restart-intensity-
3226 /// denominator raw-duration-string scalar accessor every consumer of
3227 /// the top-level manifest's per-Supervisor `:restart-window` sliding-
3228 /// window axis keys off — returns the author-declared `:restart-window`
3229 /// typed `Option<String>` verbatim as an `Option<&str>`, borrowed
3230 /// from the typed slot's own `Option<String>` storage. `None` when
3231 /// the slot is absent (the canonical "never reset — every restart
3232 /// across the supervisor's lifetime counts against the sibling
3233 /// `:max-restarts` budget" sentinel every non-`Supervisor`-kind
3234 /// `defcaixa` carries by `#[serde(default)]` and every
3235 /// `Supervisor`-kind `defcaixa` may still omit to defer to the
3236 /// [`Self::supervisor_view`] `restart_window: None` composition
3237 /// through the [`crate::supervisor::duration_codec::parse`] soft-
3238 /// swallow `.and_then(|s| … .ok())` fold).
3239 ///
3240 /// The `:restart-window` slot carries the raw M2 typed Erlang/OTP-
3241 /// shaped `Period` sliding-observation-interval duration string that
3242 /// pairs with the sibling `:max-restarts` `MaxIntensity` restart-
3243 /// budget count to form the `MaxIntensity / Period` restart-intensity
3244 /// ratio the supervisor trips its own escalation on (INSPIRATIONS
3245 /// §II.2 — Erlang/OTP `supervisor` `{intensity, 5, 60}` worker-
3246 /// supervisor default; RUNTIME-PATTERNS §II.2). The outer-`Caixa`
3247 /// slot stores the raw duration string (`"60s"`, `"5m"`, `"500ms"`)
3248 /// authored under `:restart-window` — the typed [`SupervisorSpec`]
3249 /// holds an `Option<Duration>` routed through the shared
3250 /// [`crate::supervisor::duration_codec`] via `with = "duration_codec"`
3251 /// — so the outer altitude's accessor returns `Option<&str>` (raw
3252 /// authoring surface) while the inner altitude's
3253 /// [`crate::supervisor::SupervisorSpec::restart_window`] returns
3254 /// `Option<Duration>` (parsed typed surface). The parse-refusal arm
3255 /// is closed by the sibling [`Self::validate_restart_window`] gate
3256 /// that surfaces [`ManifestError::RestartWindowMalformed`] naming
3257 /// the offending value; the view-construction path
3258 /// [`Self::supervisor_view`] soft-swallows the same parse error to
3259 /// `None` to keep the view best-effort.
3260 ///
3261 /// Prior to this lift the `.restart_window` field was accessed inline
3262 /// at three production sites in `caixa-core/src/manifest.rs` — the
3263 /// [`Self::declared_supervisor_slots`]
3264 /// `SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW` presence-probe arm at
3265 /// `if self.restart_window.is_some()` (which drives the
3266 /// [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] kind-
3267 /// coherence gate's per-slot label push), the
3268 /// [`Self::validate_restart_window`] `let Some(s) =
3269 /// self.restart_window.as_deref()` empty-and-shape gate binding
3270 /// (which folds the raw string through the shared
3271 /// [`crate::supervisor::duration_codec::parse`] to surface
3272 /// [`ManifestError::RestartWindowMalformed`] naming the offending
3273 /// value), and the [`Self::supervisor_view`] `self.restart_window
3274 /// .as_deref().and_then(…)` view-construction fold (which composes
3275 /// the flat-spread outer author-surface `Option<String>` onto the
3276 /// inner post-composition [`SupervisorSpec`] `Option<Duration>`
3277 /// field the [`SupervisorSpec::restart_window`] accessor keys off) —
3278 /// three open-coded field-accesses that expressed no compile-time
3279 /// link back to the typed slot. A future extension of the outer
3280 /// `:restart-window` axis to a richer author surface (a per-cluster
3281 /// window override, a per-tenant window-alias table, a per-Supervisor
3282 /// dynamic window derivation the future adaptive-supervision engine
3283 /// computes from child-failure-history topology, a promotion of the
3284 /// plain `Option<String>` raw duration to a typed `Option<Duration>`
3285 /// once the future author-surface parser lands at the [`Caixa`]
3286 /// altitude and the raw-string form is retired) would have had to be
3287 /// threaded through every open-coded copy in lockstep or the three
3288 /// consumers would silently disagree on which raw string a given
3289 /// [`Caixa`] resolves to. Lifting the resolution rule to a typed
3290 /// method on the substrate primitive means every downstream consumer
3291 /// of the caixa's per-`Caixa` outer-altitude restart-window raw-
3292 /// string surface reaches for exactly one typed dispatch — the
3293 /// resolver's accept-set migrates as a unit on any future axis
3294 /// addition.
3295 ///
3296 /// Third outer top-level [`Caixa`] supervisor-tree-slot flat-spread
3297 /// accessor — folds on the outer-`Caixa` M2 supervisor-tree flat-
3298 /// spread projection pattern the sibling per-`Caixa`
3299 /// [`Self::estrategia`] (ed04d3c) `Option<Copy>` and
3300 /// [`Self::max_restarts`] `Option<Copy>` accessors opened, extends
3301 /// the sub-family onto the sibling `Option<&str>` raw-duration-
3302 /// string arm (the outer altitude's raw-string form; the inner
3303 /// altitude's parsed [`Duration`] form is the peer
3304 /// [`crate::supervisor::SupervisorSpec::restart_window`] accessor).
3305 /// Peer of the sibling per-`Caixa` `Option<&str>`-return scalar
3306 /// accessors ([`Self::licenca`] / [`Self::repositorio`] /
3307 /// [`Self::descricao`] / [`Self::edicao`]) on the universal-axis
3308 /// outer scalar-projection family the outer-`Caixa` `Option<&str>`
3309 /// sub-family already carries — same "one typed dispatch on the
3310 /// substrate primitive, thin projections at each consumer"
3311 /// discipline extended onto the M2 supervisor-tree flat-spread
3312 /// `Option<&str>` raw-duration-string arm. Named `restart_window()`
3313 /// to match the storage field's name and the per-[`SupervisorSpec`]
3314 /// peer [`crate::supervisor::SupervisorSpec::restart_window`]
3315 /// method-name discipline verbatim; the accessor's identity maps
3316 /// onto the canonical OTP-shape supervision vocabulary the
3317 /// `:restart-window` field's docstring already carries.
3318 #[must_use]
3319 pub const fn restart_window(&self) -> Option<&str> {
3320 match &self.restart_window {
3321 Some(s) => Some(s.as_str()),
3322 None => None,
3323 }
3324 }
3325
3326 /// Substrate-canonical per-`Caixa` `:upgrade-from` M2 typed-slot
3327 /// outer-composite OTP-appup-shaped per-prior-version migration-
3328 /// entry-list slice accessor every consumer of the top-level
3329 /// manifest's per-Servico hot-upgrade-block `&[UpgradeFromEntry]`
3330 /// slice-view keys off — returns the author-declared `:upgrade-from`
3331 /// typed `Vec<UpgradeFromEntry>` verbatim as a
3332 /// `&[UpgradeFromEntry]` slice-view over the same backing buffer
3333 /// the raw `self.upgrade_from.as_slice()` field access borrows
3334 /// from. Empty-slice-carrying (the "no hot-upgrade path declared"
3335 /// arm every `defcaixa` without an `:upgrade-from` block carries;
3336 /// the [`Self::from_lisp`] derive folds an omitted `:upgrade-from`
3337 /// through `#[serde(default)]` to `Vec::new()`, so a `Caixa` past
3338 /// parse definitionally carries a `Vec<UpgradeFromEntry>` slot —
3339 /// possibly empty — and the returned `&[UpgradeFromEntry]`
3340 /// degenerates to an empty slice on that arm without any silent
3341 /// `None` collapse).
3342 ///
3343 /// The outer `:upgrade-from` slot carries the M2 typed OTP-appup
3344 /// migration block — the load-bearing container of every per-
3345 /// prior-`:versao` migration-instruction list the wasm-operator
3346 /// dispatches on at hot-upgrade time (INSPIRATIONS §II.4 — OTP
3347 /// `.appup` per-prior-version `LoadModule | StateChange |
3348 /// SoftPurge | Purge | Restart` instruction algebra translated
3349 /// onto pleme-io's typed `:upgrade-from :from` + `:instructions`
3350 /// entry list; CAIXA-SDLC §II — the typed-M2 slot algebra the
3351 /// operator's hot-upgrade dispatch fans on). Every per-entry axis
3352 /// threads through a lifted per-entry accessor on the
3353 /// [`UpgradeFromEntry`] type: the
3354 /// [`UpgradeFromEntry::prior_versao`] SemVer-shaped previous-
3355 /// version scalar accessor and the
3356 /// [`UpgradeFromEntry::instructions`] `&[UpgradeInstruction]`-
3357 /// return per-entry instruction-list accessor (0137e5a). Every
3358 /// downstream consumer of the hot-upgrade path first passes
3359 /// through this outer accessor onto the slice and then dispatches
3360 /// per-entry through the inner accessors — the two-level dispatch
3361 /// means every per-`:upgrade-from` reader now routes through a
3362 /// typed dispatch on the substrate primitive at both altitudes.
3363 ///
3364 /// Prior to this lift the `.upgrade_from` `Vec<UpgradeFromEntry>`
3365 /// slot was accessed inline at production sites across three
3366 /// files — the [`Self::declared_servico_slots`] M2 declared-slot
3367 /// enumerator's `self.upgrade_from.is_empty()` presence probe
3368 /// (caixa-core/src/manifest.rs, which drives the
3369 /// `M2_AUTHOR_KEY_UPGRADE_FROM` kebab-case author-label push every
3370 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] kind-coherence
3371 /// gate reads), the [`crate::StandardLayout::verify`] per-
3372 /// `:upgrade-from` three-stage validation pass (caixa-core/src/
3373 /// layout.rs, which fans onto the
3374 /// [`crate::upgrade::validate_upgrade_from`] per-entry shape +
3375 /// cross-entry duplicate gate, the
3376 /// [`crate::upgrade::validate_upgrade_from_against_versao`]
3377 /// SemVer-precedence cross-slot gate, the
3378 /// [`crate::upgrade::validate_upgrade_from_against_behavior`]
3379 /// `:state-change` ↔ `:on-state-change` cross-slot composition
3380 /// gate, and the per-instruction script-path existence-probe walk
3381 /// that reads each entry's [`UpgradeFromEntry::instructions`] to
3382 /// resolve every declared migration script against the layout
3383 /// root), and the [`crate::render::servico_m2_overlay`] per-
3384 /// Servico M2 overlay emitter's `!caixa.upgrade_from.is_empty()`
3385 /// presence gate + `serde_yaml::to_value(&caixa.upgrade_from)`
3386 /// projection (caixa-core/src/render.rs, which drives the
3387 /// `M2_KEY_UPGRADE_FROM`-keyed `serde_yaml` projection every
3388 /// `caixa-helm` / `caixa-flux` Servico values-block emitter fans
3389 /// on and lands as the ComputeUnit CR's `spec.upgradeFrom` field).
3390 /// A future extension of the outer `:upgrade-from` axis (a per-
3391 /// cluster `:upgrade-overrides` overlay the wasm-engine operator
3392 /// resolves at admission time so a cluster-specific migration
3393 /// policy can tighten a caixa-declared step without re-authoring
3394 /// the `caixa.lisp`, promotion of the plain
3395 /// `Vec<UpgradeFromEntry>` to a richer `{static, dynamic}`
3396 /// partition once runtime-resolved hot-upgrade instructions land,
3397 /// per-entry priority annotation once multi-strategy fan-out
3398 /// lands) would have had to be threaded through all six open-
3399 /// coded copies in lockstep or one consumer would silently
3400 /// disagree with the peers on which upgrade slice a given Caixa
3401 /// resolves to — a six-consumer split at the enumerator, the
3402 /// three-stage validate pass, the script-path probe walk, and the
3403 /// M2 overlay emitter, far from the source `caixa.lisp` with no
3404 /// field naming the upgrade-drift root cause. Lifting the
3405 /// resolution rule to a typed method on the substrate primitive
3406 /// means every downstream consumer of the caixa's per-`Caixa`
3407 /// OTP-appup outer-slice surface reaches for exactly one typed
3408 /// dispatch — the resolver's accept-set migrates as a unit on any
3409 /// future axis addition.
3410 ///
3411 /// First outer top-level [`Caixa`] `&[Composite]`-return slice
3412 /// accessor for M2 / M3 typed-slot vec-carry axes — opens the
3413 /// outer-`Caixa` `&[Composite]` composite-slice projection
3414 /// pattern the sibling `:children`
3415 /// [`crate::supervisor::ChildSpec`] / `:membros`
3416 /// [`crate::aplicacao::Membro`] / `:contratos`
3417 /// [`crate::aplicacao::WitContract`] future outer-composite-slice
3418 /// lifts fold on. Peer of the closed outer-`Caixa` scalar
3419 /// `Option<&Composite>` composite-reference family the sibling
3420 /// [`Self::limits`] (b2bd9d7) / [`Self::behavior`] (35d8b52) /
3421 /// [`Self::politicas`] (5d23d29) / [`Self::placement`] (4fb8074) /
3422 /// [`Self::entrada`] (e4128e4) accessors closed on the outer
3423 /// `Option<&Composite>` altitude, extended here to the outer-
3424 /// `Caixa` `&[Composite]` vec-carry altitude. Peer at the inner
3425 /// altitude of [`crate::upgrade::UpgradeFromEntry::instructions`]
3426 /// (0137e5a) — same "one typed dispatch on the substrate
3427 /// primitive, thin projections at each consumer" discipline
3428 /// folded onto the outer top-level [`Caixa`] altitude, opening the
3429 /// M2 vec-carry slot family's outer-composite-slice axis. Sibling
3430 /// in shape to the peer outer-`Caixa` `&[Dep]`-return
3431 /// [`Self::deps`] (ad34b4e) / [`Self::deps_dev`] (f7fd81e) and
3432 /// `&[String]`-return [`Self::autores`] (b5d813f) /
3433 /// [`Self::etiquetas`] (78c7d3c) / [`Self::bibliotecas`]
3434 /// (8a36c23) / [`Self::exe`] (65d9527) / [`Self::servicos`]
3435 /// (611f78b) slice-accessors on the sibling outer-`Caixa` scalar-
3436 /// element vec-carry axes — folds the "outer [`Caixa`] `&[T]`
3437 /// slice" projection pattern onto the sibling M2 typed-composite-
3438 /// element axis (`UpgradeFromEntry` composite, matching the
3439 /// per-inner [`UpgradeFromEntry::instructions`] element type at a
3440 /// different altitude).
3441 ///
3442 /// Returns `&[UpgradeFromEntry]` (not `&Vec<UpgradeFromEntry>`)
3443 /// because every downstream consumer of the hot-upgrade list
3444 /// treats it as a read-only sequence — the slice-view is the
3445 /// narrowest borrow that supports every present + roadmapped
3446 /// consumer (`.iter()`, `.len()`, `.is_empty()`, `serde` slice-
3447 /// serialization through
3448 /// `serde_yaml::to_value(&[UpgradeFromEntry])`) without leaking
3449 /// the backing `Vec`'s grow/push/reserve surface no consumer of
3450 /// the typed view reaches for (the storage-side `Vec` remains
3451 /// reachable through the `pub upgrade_from` field for the
3452 /// mutation-carrying serde round-trip and per-test fixture-
3453 /// mutation paths). Named `upgrade_from()` to match the storage
3454 /// field's `snake_case` name; the kebab-case author-surface tag
3455 /// `:upgrade-from` is the same axis after tatara-lisp's
3456 /// kebab↔snake fold and the accessor's identity maps onto the
3457 /// canonical CAIXA-SDLC §II vocabulary the slot's docstring
3458 /// already carries.
3459 #[must_use]
3460 pub const fn upgrade_from(&self) -> &[UpgradeFromEntry] {
3461 self.upgrade_from.as_slice()
3462 }
3463
3464 /// Substrate-canonical per-`Caixa` `:children` M2 supervisor-tree-
3465 /// slot outer-composite OTP-shaped per-supervisor static-child-list
3466 /// slice accessor every consumer of the top-level manifest's per-
3467 /// Supervisor `&[ChildSpec]` slice-view keys off — returns the
3468 /// author-declared `:children` typed `Vec<crate::supervisor::ChildSpec>`
3469 /// verbatim as a `&[crate::supervisor::ChildSpec]` slice-view over
3470 /// the same backing buffer the raw `self.children.as_slice()` field
3471 /// access borrows from. Empty-slice-carrying (the "no static children
3472 /// declared" arm every non-`Supervisor`-kind `defcaixa` carries by
3473 /// #[serde(default)] and every `SimpleOneForOne` supervisor carries
3474 /// by [`crate::supervisor::SupervisorError::SimpleOneForOneWithStaticChildren`]
3475 /// gate; the returned `&[ChildSpec]` degenerates to an empty slice
3476 /// on those arms without any silent `None` collapse).
3477 ///
3478 /// The outer `:children` slot carries the M2 typed OTP-supervisor
3479 /// static-child list — the load-bearing container of every per-
3480 /// child `{caixa, versao, restart}` triple the wasm-operator's
3481 /// hierarchical reconciler dispatches on at supervisor-tree
3482 /// materialization time (INSPIRATIONS §II.2 — OTP `supervisor:init/1`
3483 /// static-child list translated onto pleme-io's typed
3484 /// [`crate::supervisor::ChildSpec`] entry list; CAIXA-SDLC §II —
3485 /// the typed-M2 slot algebra the operator's per-supervisor fan-out
3486 /// dispatch fans on). Every per-child axis threads through a lifted
3487 /// per-entry accessor on the [`crate::supervisor::ChildSpec`] type:
3488 /// the [`crate::supervisor::ChildSpec::nome`] DNS-1123-label
3489 /// child-caixa-identity scalar accessor, the peer versao SemVer-2
3490 /// version-requirement scalar accessor, and the
3491 /// [`crate::supervisor::ChildSpec::restart`] `Copy`-composite-enum
3492 /// per-child post-exit restart-decision-policy discriminant
3493 /// accessor (dfb4a81). Every downstream consumer of the supervisor-
3494 /// tree path first passes through this outer accessor onto the
3495 /// slice and then dispatches per-child through the inner accessors
3496 /// — the two-level dispatch means every per-`:children` reader now
3497 /// routes through a typed dispatch on the substrate primitive at
3498 /// both altitudes.
3499 ///
3500 /// Prior to this lift the `.children` `Vec<ChildSpec>` slot was
3501 /// accessed inline at three production sites across two files —
3502 /// the [`Self::declared_supervisor_slots`] supervisor-tree
3503 /// declared-slot enumerator's `!self.children.is_empty()` presence
3504 /// probe (caixa-core/src/manifest.rs, which drives the
3505 /// `SUPERVISOR_AUTHOR_KEY_CHILDREN` kebab-case author-label push
3506 /// every [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`]
3507 /// kind-coherence gate reads), the [`Self::supervisor_view`]
3508 /// per-supervisor typed-view composer's `self.children.clone()`
3509 /// per-child fold-in path (caixa-core/src/manifest.rs, which
3510 /// materializes the typed [`crate::supervisor::SupervisorSpec`]
3511 /// view every [`crate::StandardLayout::verify`] Supervisor-arm gate
3512 /// dispatches on), and the [`crate::StandardLayout::verify`] per-
3513 /// `:children :caixa` self-parent refusal probe's
3514 /// `&caixa.children`-borrowed
3515 /// [`crate::supervisor::validate_no_self_supervision`] input
3516 /// (caixa-core/src/layout.rs, which pins the "no child names the
3517 /// supervisor's own `:nome`" cross-slot coherence gate). A future
3518 /// extension of the outer `:children` axis (a per-cluster
3519 /// `:children-overrides` overlay the wasm-engine operator resolves
3520 /// at admission time so a cluster-specific child-set can tighten
3521 /// a caixa-declared list without re-authoring the `caixa.lisp`,
3522 /// promotion of the plain `Vec<ChildSpec>` to a richer
3523 /// `{static, dynamic}` partition once Erlang/OTP's
3524 /// `simple_one_for_one`-shaped dynamic-child slot lands as a typed
3525 /// axis, per-child priority annotation once multi-strategy fan-out
3526 /// lands) would have had to be threaded through all three open-
3527 /// coded copies in lockstep or one consumer would silently
3528 /// disagree with the peers on which child slice a given Caixa
3529 /// resolves to — the enumerator's presence probe reading the raw
3530 /// slot while the peer view-composer's fold-in path read an
3531 /// operator-resolved slot would silently split the paired
3532 /// declared-slot enumerator and typed-view composition, and the
3533 /// [`crate::supervisor::validate_no_self_supervision`] self-parent
3534 /// refusal probe reading a third borrow would silently drift the
3535 /// cross-slot coherence gate's traversal input from the two peers,
3536 /// a three-consumer split at the enumerator, the view composer,
3537 /// and the self-parent gate far from the source `caixa.lisp` with
3538 /// no field naming the child-set-drift root cause. Lifting the
3539 /// resolution rule to a typed method on the substrate primitive
3540 /// means every downstream consumer of the caixa's per-`Caixa`
3541 /// OTP-supervisor outer-slice surface reaches for exactly one
3542 /// typed dispatch — the resolver's accept-set migrates as a unit
3543 /// on any future axis addition.
3544 ///
3545 /// Second outer top-level [`Caixa`] `&[Composite]`-return slice
3546 /// accessor for M2 / M3 typed-slot vec-carry axes — folds on the
3547 /// outer-`Caixa` `&[Composite]` composite-slice sub-family the
3548 /// sibling [`Self::upgrade_from`] (2a1f907) accessor opened, peer
3549 /// at the outer altitude of the closed inner-`SupervisorSpec`
3550 /// [`crate::SupervisorSpec::children`] (bc92bce) accessor on the
3551 /// same OTP-supervisor static-child-list axis — same "byte-equal,
3552 /// borrow-shared" outer-accessor discipline extended onto the
3553 /// second outer-`Caixa` `&[Composite]` vec-carry axis. Sibling in
3554 /// shape to the peer outer-`Caixa` `&[Dep]`-return [`Self::deps`]
3555 /// (ad34b4e) / [`Self::deps_dev`] (f7fd81e) and `&[String]`-return
3556 /// [`Self::autores`] (b5d813f) / [`Self::etiquetas`] (78c7d3c) /
3557 /// [`Self::bibliotecas`] (8a36c23) / [`Self::exe`] (65d9527) /
3558 /// [`Self::servicos`] (611f78b) slice-accessors on the sibling
3559 /// outer-`Caixa` scalar-element vec-carry axes — folds the "outer
3560 /// [`Caixa`] `&[T]` slice" projection pattern onto the sibling
3561 /// M2 typed-composite-element axis
3562 /// ([`crate::supervisor::ChildSpec`] composite, matching the
3563 /// per-inner [`crate::SupervisorSpec::children`] element type at a
3564 /// different altitude).
3565 ///
3566 /// Returns `&[crate::supervisor::ChildSpec]` (not
3567 /// `&Vec<ChildSpec>`) because every downstream consumer of the
3568 /// child list treats it as a read-only sequence — the slice-view
3569 /// is the narrowest borrow that supports every present +
3570 /// roadmapped consumer (`.iter()`, `.len()`, `.is_empty()`, the
3571 /// [`crate::supervisor::validate_no_self_supervision`] `&[ChildSpec]`
3572 /// input, `serde` slice-serialization) without leaking the backing
3573 /// `Vec`'s grow/push/reserve surface no consumer of the typed view
3574 /// reaches for (the storage-side `Vec` remains reachable through
3575 /// the `pub children` field for the mutation-carrying serde round-
3576 /// trip and per-test fixture-mutation paths, including the
3577 /// [`Self::supervisor_view`] fold-in path that clones the slot
3578 /// into the typed view). Named `children()` to match the storage
3579 /// field's name verbatim and the tatara-lisp author-surface term
3580 /// (`:children`) the field's own docstring already carries; the
3581 /// accessor's identity maps onto the canonical OTP supervision
3582 /// vocabulary the [`Caixa::children`] field's docstring already
3583 /// reaches for ("Static children of a supervisor").
3584 #[must_use]
3585 pub const fn children(&self) -> &[crate::supervisor::ChildSpec] {
3586 self.children.as_slice()
3587 }
3588
3589 /// Substrate-canonical per-`Caixa` `:membros` M3 mesh-slot outer-
3590 /// composite MESH-COMPOSITION-shaped per-Aplicacao member-list slice
3591 /// accessor every consumer of the top-level manifest's per-Aplicacao
3592 /// `&[crate::aplicacao::Membro]` slice-view keys off — returns the
3593 /// author-declared `:membros` typed `Vec<crate::aplicacao::Membro>`
3594 /// verbatim as a `&[crate::aplicacao::Membro]` slice-view over the
3595 /// same backing buffer the raw `self.membros.as_slice()` field access
3596 /// borrows from. Empty-slice-carrying (the "no members declared" arm
3597 /// every non-`Aplicacao`-kind `defcaixa` carries by `#[serde(default)]`
3598 /// and every partially-authored Aplicacao carries before the
3599 /// [`crate::AplicacaoError::MembrosEmpty`] gate fires; the returned
3600 /// `&[Membro]` degenerates to an empty slice on those arms without any
3601 /// silent `None` collapse).
3602 ///
3603 /// The outer `:membros` slot carries the M3 typed MESH-COMPOSITION
3604 /// per-Aplicacao member list — the load-bearing container of every
3605 /// per-member `{caixa, versao}` pair the caixa-mesh renderer's
3606 /// per-Aplicacao program-emission dispatch fans on at mesh-artifact
3607 /// materialization time (MESH-COMPOSITION §III.1 — the typed graph's
3608 /// vertex set the `:contratos` `:de`/`:para` edges resolve against and
3609 /// the `:entrada :para` external-gateway destination validates
3610 /// against; CAIXA-SDLC §II — the typed-M3 slot algebra the operator's
3611 /// per-Aplicacao fan-out dispatch fans on). Every per-member axis
3612 /// threads through a lifted per-entry accessor on the
3613 /// [`crate::aplicacao::Membro`] type: the
3614 /// [`crate::aplicacao::Membro::nome`] DNS-1123-label member-caixa-
3615 /// identity scalar accessor (4a32abf) and the peer
3616 /// [`crate::aplicacao::Membro::versao_requirement`] SemVer-2
3617 /// version-requirement scalar accessor (a40b0e3). Every downstream
3618 /// consumer of the mesh-graph path first passes through this outer
3619 /// accessor onto the slice and then dispatches per-member through
3620 /// the inner accessors — the two-level dispatch means every per-
3621 /// `:membros` reader now routes through a typed dispatch on the
3622 /// substrate primitive at both altitudes.
3623 ///
3624 /// Prior to this lift the `.membros` `Vec<Membro>` slot was accessed
3625 /// inline at three production sites across two files — the
3626 /// [`Self::declared_mesh_slots`] mesh-slot declared-slot
3627 /// enumerator's `!self.membros.is_empty()` presence probe
3628 /// (caixa-core/src/manifest.rs, which drives the
3629 /// `M3_AUTHOR_KEY_MEMBROS` kebab-case author-label push every
3630 /// [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-coherence
3631 /// gate reads), the [`Self::aplicacao_view`] per-Aplicacao typed-view
3632 /// composer's `self.membros.clone()` per-member fold-in path
3633 /// (caixa-core/src/manifest.rs, which materializes the typed
3634 /// [`crate::aplicacao::AplicacaoSpec`] view every
3635 /// [`crate::StandardLayout::verify`] Aplicacao-arm gate dispatches
3636 /// on), and the [`crate::StandardLayout::verify`] per-`:membros
3637 /// :caixa` self-membership refusal probe's `&caixa.membros`-borrowed
3638 /// [`crate::aplicacao::validate_no_self_membership`] input
3639 /// (caixa-core/src/layout.rs, which pins the "no member names the
3640 /// Aplicacao's own `:nome`" cross-slot coherence gate). A future
3641 /// extension of the outer `:membros` axis (a per-cluster
3642 /// `:membros-overrides` overlay the wasm-engine operator resolves at
3643 /// admission time so a cluster-specific member-set can tighten a
3644 /// caixa-declared list without re-authoring the `caixa.lisp`,
3645 /// promotion of the plain `Vec<Membro>` to a richer
3646 /// `{static, dynamic}` partition once runtime-resolved Aplicacao
3647 /// members land as a typed axis, per-member priority annotation once
3648 /// multi-strategy fan-out lands) would have had to be threaded
3649 /// through all three open-coded copies in lockstep or one consumer
3650 /// would silently disagree with the peers on which member slice a
3651 /// given Caixa resolves to — the enumerator's presence probe reading
3652 /// the raw slot while the peer view-composer's fold-in path read an
3653 /// operator-resolved slot would silently split the paired
3654 /// declared-slot enumerator and typed-view composition, and the
3655 /// [`crate::aplicacao::validate_no_self_membership`] self-membership
3656 /// refusal probe reading a third borrow would silently drift the
3657 /// cross-slot coherence gate's traversal input from the two peers, a
3658 /// three-consumer split at the enumerator, the view composer, and
3659 /// the self-membership gate far from the source `caixa.lisp` with no
3660 /// field naming the member-set-drift root cause. Lifting the
3661 /// resolution rule to a typed method on the substrate primitive
3662 /// means every downstream consumer of the caixa's per-`Caixa`
3663 /// MESH-COMPOSITION outer-slice surface reaches for exactly one
3664 /// typed dispatch — the resolver's accept-set migrates as a unit on
3665 /// any future axis addition.
3666 ///
3667 /// Third outer top-level [`Caixa`] `&[Composite]`-return slice
3668 /// accessor for M2 / M3 typed-slot vec-carry axes — opens the outer-
3669 /// `Caixa` M3 mesh-slot arm of the `&[Composite]` composite-slice
3670 /// sub-family the sibling M2 [`Self::upgrade_from`] (2a1f907) /
3671 /// [`Self::children`] (c17b51e) accessors opened for the M2 vec-carry
3672 /// altitude. Peer at the outer altitude of the closed inner-
3673 /// [`crate::AplicacaoSpec::membros`] (6c77e36) accessor on the same
3674 /// MESH-COMPOSITION per-Aplicacao member-list axis — the two
3675 /// altitudes now share the same "byte-equal, borrow-shared" outer-
3676 /// accessor discipline. Sibling in shape to the peer outer-`Caixa`
3677 /// `&[Dep]`-return [`Self::deps`] (ad34b4e) / [`Self::deps_dev`]
3678 /// (f7fd81e) and `&[String]`-return [`Self::autores`] (b5d813f) /
3679 /// [`Self::etiquetas`] (78c7d3c) / [`Self::bibliotecas`] (8a36c23) /
3680 /// [`Self::exe`] (65d9527) / [`Self::servicos`] (611f78b) slice-
3681 /// accessors on the sibling outer-`Caixa` scalar-element vec-carry
3682 /// axes — folds the "outer [`Caixa`] `&[T]` slice" projection
3683 /// pattern onto the sibling M3 typed-composite-element axis
3684 /// ([`crate::aplicacao::Membro`] composite, matching the per-inner
3685 /// [`crate::AplicacaoSpec::membros`] element type at a different
3686 /// altitude).
3687 ///
3688 /// Returns `&[crate::aplicacao::Membro]` (not `&Vec<Membro>`)
3689 /// because every downstream consumer of the member list treats it
3690 /// as a read-only sequence — the slice-view is the narrowest borrow
3691 /// that supports every present + roadmapped consumer (`.iter()`,
3692 /// `.len()`, `.is_empty()`, the
3693 /// [`crate::aplicacao::validate_no_self_membership`] `&[Membro]`
3694 /// input, `serde` slice-serialization) without leaking the backing
3695 /// `Vec`'s grow/push/reserve surface no consumer of the typed view
3696 /// reaches for (the storage-side `Vec` remains reachable through the
3697 /// `pub membros` field for the mutation-carrying serde round-trip
3698 /// and per-test fixture-mutation paths, including the
3699 /// [`Self::aplicacao_view`] fold-in path that clones the slot into
3700 /// the typed view). Named `membros()` to match the storage field's
3701 /// name verbatim and the tatara-lisp author-surface term
3702 /// (`:membros`) the field's own docstring already carries; the
3703 /// accessor's identity maps onto the canonical MESH-COMPOSITION
3704 /// vocabulary the [`Caixa::membros`] field's docstring already
3705 /// reaches for ("Member Servicos that make up this Aplicacao").
3706 #[must_use]
3707 pub const fn membros(&self) -> &[crate::aplicacao::Membro] {
3708 self.membros.as_slice()
3709 }
3710
3711 /// Substrate-canonical per-`Caixa` `:contratos` M3 mesh-slot outer-
3712 /// composite MESH-COMPOSITION-shaped per-Aplicacao WIT-typed
3713 /// inter-Servico contract-list slice accessor every consumer of the
3714 /// top-level manifest's per-Aplicacao `&[crate::aplicacao::WitContract]`
3715 /// slice-view keys off — returns the author-declared `:contratos`
3716 /// typed `Vec<crate::aplicacao::WitContract>` verbatim as a
3717 /// `&[crate::aplicacao::WitContract]` slice-view over the same
3718 /// backing buffer the raw `self.contratos.as_slice()` field access
3719 /// borrows from. Empty-slice-carrying (the "no contracts declared"
3720 /// arm every non-`Aplicacao`-kind `defcaixa` carries by
3721 /// `#[serde(default)]` and every leaf Aplicacao carrying only a
3722 /// single member with no inter-Servico edge carries; the returned
3723 /// `&[WitContract]` degenerates to an empty slice on those arms
3724 /// without any silent `None` collapse).
3725 ///
3726 /// The outer `:contratos` slot carries the M3 typed MESH-COMPOSITION
3727 /// per-Aplicacao WIT-typed inter-Servico edge list — the load-bearing
3728 /// container of every per-edge `{de, para, wit, endpoint | subject |
3729 /// slot}` quadruple the caixa-mesh renderer's per-Aplicacao
3730 /// `CiliumNetworkPolicy` fan-out (one L7 policy per edge —
3731 /// MESH-COMPOSITION §III.2 point 2) and per-`(:de, :para)`
3732 /// adjacency-list seed dispatch on at mesh-artifact materialization
3733 /// time (MESH-COMPOSITION §III.1 — the typed graph's edge set the
3734 /// `:membros` vertex set resolves against, closed by the
3735 /// [`crate::AplicacaoError::ContractoUnknownMember`] / cycle-refusal
3736 /// gates in §III.3; CAIXA-SDLC §II — the typed-M3 slot algebra the
3737 /// operator's per-Aplicacao fan-out dispatch fans on). Every
3738 /// per-edge axis threads through a lifted per-entry accessor on the
3739 /// [`crate::aplicacao::WitContract`] type: the peer `de` / `para`
3740 /// DNS-1123-label member-caixa-name endpoint scalar accessors, the
3741 /// [`crate::aplicacao::WitContract::endpoint`] (7020470) HTTP-shape
3742 /// / [`crate::aplicacao::WitContract::subject`] (90de675)
3743 /// NATS-pub-sub-shape / [`crate::aplicacao::WitContract::slot`]
3744 /// (ed22b66) `wasi:keyvalue/store`-shape payload-carrier accessors,
3745 /// and the WIT-world discriminant. Every downstream consumer of the
3746 /// mesh-graph edge path first passes through this outer accessor
3747 /// onto the slice and then dispatches per-contract through the
3748 /// inner accessors — the two-level dispatch means every
3749 /// per-`:contratos` reader now routes through a typed dispatch on
3750 /// the substrate primitive at both altitudes.
3751 ///
3752 /// Prior to this lift the `.contratos` `Vec<WitContract>` slot was
3753 /// accessed inline at two production sites in
3754 /// caixa-core/src/manifest.rs — the [`Self::declared_mesh_slots`]
3755 /// mesh-slot declared-slot enumerator's
3756 /// `!self.contratos.is_empty()` presence probe (which drives the
3757 /// `M3_AUTHOR_KEY_CONTRATOS` kebab-case author-label push every
3758 /// [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-coherence
3759 /// gate reads) and the [`Self::aplicacao_view`] per-Aplicacao
3760 /// typed-view composer's `self.contratos.clone()` per-contract
3761 /// fold-in path (which materializes the typed
3762 /// [`crate::aplicacao::AplicacaoSpec`] view every
3763 /// [`crate::StandardLayout::verify`] Aplicacao-arm gate and every
3764 /// downstream `caixa-mesh` renderer dispatches on). A future
3765 /// extension of the outer `:contratos` axis (a per-cluster
3766 /// `:contratos-overrides` overlay the wasm-engine operator resolves
3767 /// at admission time so a cluster-specific edge-set can tighten a
3768 /// caixa-declared list without re-authoring the `caixa.lisp`,
3769 /// promotion of the plain `Vec<WitContract>` to a richer
3770 /// `{static, dynamic}` partition once runtime-resolved contract
3771 /// edges land, per-edge policy annotation once the M4 per-edge
3772 /// policy overlay axis lands) would have had to be threaded through
3773 /// both open-coded copies in lockstep or one consumer would
3774 /// silently disagree with the peer on which edge slice a given
3775 /// Caixa resolves to — the enumerator's presence probe reading the
3776 /// raw slot while the peer view-composer's fold-in path read an
3777 /// operator-resolved slot would silently split the paired
3778 /// declared-slot enumerator and typed-view composition, a
3779 /// two-consumer split at the enumerator and the view composer far
3780 /// from the source `caixa.lisp` with no field naming the edge-set-
3781 /// drift root cause. Lifting the resolution rule to a typed method
3782 /// on the substrate primitive means every downstream consumer of
3783 /// the caixa's per-`Caixa` MESH-COMPOSITION outer-slice surface
3784 /// reaches for exactly one typed dispatch — the resolver's
3785 /// accept-set migrates as a unit on any future axis addition.
3786 ///
3787 /// Fourth and final outer top-level [`Caixa`] `&[Composite]`-return
3788 /// slice accessor for M2 / M3 typed-slot vec-carry axes — closes
3789 /// the outer-`Caixa` `&[Composite]` composite-slice sub-family the
3790 /// sibling M2 [`Self::upgrade_from`] (2a1f907) / [`Self::children`]
3791 /// (c17b51e) accessors opened and the M3 [`Self::membros`]
3792 /// (0f26987) accessor folded on, and closes the outer-`Caixa` M3
3793 /// mesh-slot arm of the composite-slice sub-family the sibling
3794 /// [`Self::membros`] accessor opened for the M3 vec-carry altitude.
3795 /// Peer at the outer altitude of the closed inner-
3796 /// [`crate::AplicacaoSpec::contratos`] (0dcc926) accessor on the
3797 /// same MESH-COMPOSITION per-Aplicacao contract-list axis — the two
3798 /// altitudes now share the same "byte-equal, borrow-shared" outer-
3799 /// accessor discipline. Sibling in shape to the peer outer-`Caixa`
3800 /// `&[Dep]`-return [`Self::deps`] (ad34b4e) / [`Self::deps_dev`]
3801 /// (f7fd81e) and `&[String]`-return [`Self::autores`] (b5d813f) /
3802 /// [`Self::etiquetas`] (78c7d3c) / [`Self::bibliotecas`] (8a36c23) /
3803 /// [`Self::exe`] (65d9527) / [`Self::servicos`] (611f78b) slice-
3804 /// accessors on the sibling outer-`Caixa` scalar-element vec-carry
3805 /// axes — folds the "outer [`Caixa`] `&[T]` slice" projection
3806 /// pattern onto the sibling M3 typed-composite-element axis
3807 /// ([`crate::aplicacao::WitContract`] composite, matching the
3808 /// per-inner [`crate::AplicacaoSpec::contratos`] element type at a
3809 /// different altitude).
3810 ///
3811 /// Returns `&[crate::aplicacao::WitContract]` (not
3812 /// `&Vec<WitContract>`) because every downstream consumer of the
3813 /// contract list treats it as a read-only sequence — the slice-view
3814 /// is the narrowest borrow that supports every present + roadmapped
3815 /// consumer (`.iter()`, `.len()`, `.is_empty()`, per-edge WIT-world
3816 /// discriminant dispatch, `serde` slice-serialization) without
3817 /// leaking the backing `Vec`'s grow/push/reserve surface no
3818 /// consumer of the typed view reaches for (the storage-side `Vec`
3819 /// remains reachable through the `pub contratos` field for the
3820 /// mutation-carrying serde round-trip and per-test fixture-mutation
3821 /// paths, including the [`Self::aplicacao_view`] fold-in path that
3822 /// clones the slot into the typed view). Named `contratos()` to
3823 /// match the storage field's name verbatim and the tatara-lisp
3824 /// author-surface term (`:contratos`) the field's own docstring
3825 /// already carries; the accessor's identity maps onto the canonical
3826 /// MESH-COMPOSITION vocabulary the [`Caixa::contratos`] field's
3827 /// docstring already reaches for ("WIT-typed inter-Servico
3828 /// contracts").
3829 #[must_use]
3830 pub const fn contratos(&self) -> &[crate::aplicacao::WitContract] {
3831 self.contratos.as_slice()
3832 }
3833
3834 /// Compose the Aplicacao-related flat slots into a single typed
3835 /// [`crate::aplicacao::AplicacaoSpec`] for validation +
3836 /// downstream renderer consumption. Returns `None` when the
3837 /// caixa isn't a `:kind Aplicacao`.
3838 #[must_use]
3839 pub fn aplicacao_view(&self) -> Option<crate::aplicacao::AplicacaoSpec> {
3840 if !self.kind().is_aplicacao() {
3841 return None;
3842 }
3843 Some(crate::aplicacao::AplicacaoSpec {
3844 membros: self.membros().to_vec(),
3845 contratos: self.contratos().to_vec(),
3846 politicas: self.politicas().cloned().unwrap_or_default(),
3847 placement: self.placement().cloned().unwrap_or_default(),
3848 entrada: self.entrada().cloned(),
3849 })
3850 }
3851
3852 /// The kebab-case `:slot` tags of every M3 mesh slot this caixa
3853 /// *declares* a value on, in canonical declaration order
3854 /// (`:membros` → `:contratos` → `:politicas` → `:placement` →
3855 /// `:entrada`). A slot counts as declared when its backing field
3856 /// carries a value — a non-empty `Vec`, or a `Some(...)`.
3857 ///
3858 /// The M3 mesh slots compose the typed graph of a `:kind Aplicacao`
3859 /// (MESH-COMPOSITION §III.1). [`Self::aplicacao_view`] only folds
3860 /// them into a validatable [`crate::aplicacao::AplicacaoSpec`] when
3861 /// the kind matches (returns `None` otherwise), and the caixa-mesh /
3862 /// caixa-flux / caixa-helm renderers only emit them for an
3863 /// Aplicacao. On any *other* kind a declared mesh slot is the
3864 /// manifest field's documented "ignored otherwise" (see the
3865 /// `:membros` … `:entrada` field docs): it silently passes
3866 /// [`Caixa::from_lisp`] and then vanishes — never validated, never
3867 /// rendered — far from the source caixa.lisp.
3868 /// [`crate::StandardLayout::verify`] consults this to reject that
3869 /// silent-drop at caixa-build time
3870 /// ([`crate::LayoutError::MeshSlotsOnNonAplicacao`]), mirroring the
3871 /// `SupervisorOwnsCode` / `AplicacaoOwnsCode` kind-coherence gates:
3872 /// a slot foreign to the kind is a build error, not a silent drop.
3873 ///
3874 /// Lifted as a typed method (rather than an inline disjunction at
3875 /// the verify call site) so the mesh-slot set lives in one place —
3876 /// a future M4 axis added to the Aplicacao surface (per-edge policy
3877 /// overlay, distributed-app takeover config) is one push here, and
3878 /// every consumer reaching for "which mesh slots are set" (the
3879 /// verify gate, a future `feira lint` kind-coherence advisory)
3880 /// inherits the canonical order without rolling its own.
3881 ///
3882 /// Each per-arm kebab-case label is routed through the peer
3883 /// [`crate::M3_AUTHOR_KEY_MEMBROS`] /
3884 /// [`crate::M3_AUTHOR_KEY_CONTRATOS`] /
3885 /// [`crate::M3_AUTHOR_KEY_POLITICAS`] /
3886 /// [`crate::M3_AUTHOR_KEY_PLACEMENT`] /
3887 /// [`crate::M3_AUTHOR_KEY_ENTRADA`] consts declared next to the
3888 /// [`crate::M3_KEY_PLACEMENT`] renderer-side wire-key peer, so both
3889 /// halves of every M3 top-level mesh slot's dual axis (author-facing
3890 /// kebab-case label + renderer-side artifact key) route through one
3891 /// canonical declaration per arm — same discipline the peer
3892 /// [`crate::M2_AUTHOR_KEY_LIMITS`] / [`crate::M2_AUTHOR_KEY_BEHAVIOR`]
3893 /// / [`crate::M2_AUTHOR_KEY_UPGRADE_FROM`] top-level M2 slot consts
3894 /// (f49c8b0) establish on the sibling per-Servico M2 top-level slot
3895 /// axis, extended here to close the M3 mesh-slot author-facing-label
3896 /// axis so both altitudes of the typed-slot algebra
3897 /// (per-Servico M2 + per-Aplicacao M3) share the same
3898 /// "one canonical byte-string per arm, next to the axis" discipline.
3899 #[must_use]
3900 pub fn declared_mesh_slots(&self) -> Vec<&'static str> {
3901 let mut slots = Vec::new();
3902 if !self.membros().is_empty() {
3903 slots.push(crate::render::M3_AUTHOR_KEY_MEMBROS);
3904 }
3905 if !self.contratos().is_empty() {
3906 slots.push(crate::render::M3_AUTHOR_KEY_CONTRATOS);
3907 }
3908 if self.politicas().is_some() {
3909 slots.push(crate::render::M3_AUTHOR_KEY_POLITICAS);
3910 }
3911 if self.placement().is_some() {
3912 slots.push(crate::render::M3_AUTHOR_KEY_PLACEMENT);
3913 }
3914 if self.entrada().is_some() {
3915 slots.push(crate::render::M3_AUTHOR_KEY_ENTRADA);
3916 }
3917 slots
3918 }
3919
3920 /// The kebab-case `:slot` tags of every supervisor-tree slot this
3921 /// caixa *declares* a value on, in canonical declaration order
3922 /// (`:estrategia` → `:max-restarts` → `:restart-window` →
3923 /// `:children`). A slot counts as declared when its backing field
3924 /// carries a value — a `Some(...)`, or a non-empty `Vec`.
3925 ///
3926 /// The supervisor-tree slots compose the typed OTP supervisor of a
3927 /// `:kind Supervisor` (INSPIRATIONS §II.2; the `:estrategia` +
3928 /// `:children` field docs above). [`Self::supervisor_view`] only
3929 /// folds them into a validatable [`SupervisorSpec`] when the kind
3930 /// matches (returns `None` otherwise), and the wasm-operator's
3931 /// hierarchical reconciler only consumes them for a Supervisor. On
3932 /// any *other* kind a declared supervisor slot is the manifest
3933 /// field's documented "ignored otherwise" (see the `:estrategia` …
3934 /// `:children` field docs): it silently passes [`Caixa::from_lisp`]
3935 /// and then vanishes — never validated, never reconciled — far from
3936 /// the source caixa.lisp. [`crate::StandardLayout::verify`] consults
3937 /// this to reject that silent-drop at caixa-build time
3938 /// ([`crate::LayoutError::SupervisorSlotsOnNonSupervisor`]), the
3939 /// exact mirror of the [`Self::declared_mesh_slots`] /
3940 /// [`crate::LayoutError::MeshSlotsOnNonAplicacao`] gate on the
3941 /// Aplicacao-only slot set: a slot foreign to the kind is a build
3942 /// error, not a silent drop.
3943 #[must_use]
3944 pub fn declared_supervisor_slots(&self) -> Vec<&'static str> {
3945 let mut slots = Vec::new();
3946 if self.estrategia().is_some() {
3947 slots.push(crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA);
3948 }
3949 if self.max_restarts().is_some() {
3950 slots.push(crate::render::SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS);
3951 }
3952 if self.restart_window().is_some() {
3953 slots.push(crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW);
3954 }
3955 if !self.children().is_empty() {
3956 slots.push(crate::render::SUPERVISOR_AUTHOR_KEY_CHILDREN);
3957 }
3958 slots
3959 }
3960
3961 /// The kebab-case `:slot` tags of every M2 Servico-runtime slot this
3962 /// caixa *declares* a value on, in canonical declaration order
3963 /// (`:limits` → `:behavior` → `:upgrade-from`). A slot counts as
3964 /// declared when its backing field carries a value — a `Some(...)`,
3965 /// or a non-empty `Vec`.
3966 ///
3967 /// The M2 slots configure the runtime of a long-running wasm
3968 /// component, i.e. a `:kind Servico`: `:limits` is Lunatic
3969 /// per-process sandboxing (INSPIRATIONS §III.1), `:behavior` is the
3970 /// OTP `gen_server` callback set (§II.3), `:upgrade-from` is the OTP
3971 /// appup hot-code-reload table (§II.4). The caixa-helm / caixa-flux
3972 /// renderers gate on [`crate::require_kind`]`(_, Servico)` and only
3973 /// emit these slots for a Servico; on any *other* kind a declared M2
3974 /// slot is the manifest field's documented "ignored otherwise": its
3975 /// well-formedness is checked by [`crate::StandardLayout::verify`]
3976 /// but the value is never rendered into a chart / programs.yaml entry
3977 /// — it silently passes [`Caixa::from_lisp`] + `feira build` and then
3978 /// vanishes, far from the source caixa.lisp.
3979 /// [`crate::StandardLayout::verify`] consults this to reject that
3980 /// silent-drop at caixa-build time
3981 /// ([`crate::LayoutError::ServicoSlotsOnNonServico`]), the exact
3982 /// mirror of the [`Self::declared_mesh_slots`] /
3983 /// [`Self::declared_supervisor_slots`] gates on the peer
3984 /// kind-exclusive slot sets: a slot foreign to the kind is a build
3985 /// error, not a silent drop.
3986 ///
3987 /// Each per-arm kebab-case label is routed through the peer
3988 /// [`crate::M2_AUTHOR_KEY_LIMITS`] / [`crate::M2_AUTHOR_KEY_BEHAVIOR`] /
3989 /// [`crate::M2_AUTHOR_KEY_UPGRADE_FROM`] consts declared next to the
3990 /// [`crate::M2_KEY_LIMITS`] / [`crate::M2_KEY_BEHAVIOR`] /
3991 /// [`crate::M2_KEY_UPGRADE_FROM`] renderer-side wire-key peers, so
3992 /// both halves of the M2 top-level slot's dual axis (author-facing
3993 /// kebab-case label + renderer-side camelCase overlay-container wire
3994 /// key) route through one canonical declaration per arm — same
3995 /// discipline the peer [`crate::M2_BEHAVIOR_AUTHOR_KEY_ON_*`] sub-slot
3996 /// author-label consts (889dc18) establish on the sibling
3997 /// per-callback axis inside the `:behavior` overlay block.
3998 #[must_use]
3999 pub fn declared_servico_slots(&self) -> Vec<&'static str> {
4000 let mut slots = Vec::new();
4001 if self.limits().is_some() {
4002 slots.push(crate::render::M2_AUTHOR_KEY_LIMITS);
4003 }
4004 if self.behavior().is_some() {
4005 slots.push(crate::render::M2_AUTHOR_KEY_BEHAVIOR);
4006 }
4007 if !self.upgrade_from().is_empty() {
4008 slots.push(crate::render::M2_AUTHOR_KEY_UPGRADE_FROM);
4009 }
4010 slots
4011 }
4012
4013 /// The kebab-case `:slot` tags of every code-surface slot this caixa
4014 /// declares a value on that its [`CaixaKind`] doesn't natively own,
4015 /// in canonical declaration order (`:exe` → `:servicos`). A
4016 /// code-surface slot is owned by exactly one kind: `:exe` by
4017 /// [`CaixaKind::Binario`] (the nix-built executable surface), and
4018 /// `:servicos` by [`CaixaKind::Servico`] (the wasm component +
4019 /// `ComputeUnit` daemon surface).
4020 ///
4021 /// Each is silently ignored when declared on the wrong kind: the
4022 /// caixa-helm / caixa-flux / caixa-flake renderers gate on
4023 /// [`crate::require_kind`]`(_, <owning-kind>)`, so on any *other*
4024 /// code-running kind a declared `:exe` / `:servicos` is the manifest
4025 /// field's documented "ignored otherwise" — its path is checked for
4026 /// existence by the layout's `bibliotecas`/`exe`/`servicos` loops
4027 /// (which run after [`Caixa::from_lisp`]), but the value is never
4028 /// rendered into a build target or programs.yaml entry. It silently
4029 /// passes [`Caixa::from_lisp`] + `feira build`, far from the source
4030 /// caixa.lisp, with no field naming which slot is foreign.
4031 ///
4032 /// [`crate::StandardLayout::verify`] consults this to reject that
4033 /// silent-drop at caixa-build time
4034 /// ([`crate::LayoutError::ForeignCodeSlot`]), beside the M2
4035 /// servico-runtime, supervisor-tree, and M3 mesh kind-coherence
4036 /// gates ([`Self::declared_servico_slots`] /
4037 /// [`Self::declared_supervisor_slots`] /
4038 /// [`Self::declared_mesh_slots`]): the fourth kind ↔ slot algebra
4039 /// axis to be closed on the typed surface. The Supervisor /
4040 /// Aplicacao "no code at all" cases ([`crate::LayoutError::SupervisorOwnsCode`]
4041 /// / [`crate::LayoutError::AplicacaoOwnsCode`]) keep their dedicated
4042 /// diagnostics — they fire ahead of this gate on the same `verify`
4043 /// pass, so for Supervisor / Aplicacao the `OwnCode` arm always wins
4044 /// and this method is moot. For Biblioteca / Binario / Servico, this
4045 /// gate fires when a code-running kind declares another code-running
4046 /// kind's exclusive code surface.
4047 ///
4048 /// `:bibliotecas` is deliberately excluded — a Binario or Servico
4049 /// may legitimately ship a `lib/` helper that the underlying
4050 /// substrate (the nix flake for Binario, the wasm component build
4051 /// for Servico) bundles into its build, so the slot's
4052 /// declared-on-wrong-kind cardinality isn't a structural error on
4053 /// either code-running kind. A Biblioteca declaring `:bibliotecas`
4054 /// is the native case (the slot's owning kind). Supervisor /
4055 /// Aplicacao declaring `:bibliotecas` is gated upstream by
4056 /// [`crate::LayoutError::SupervisorOwnsCode`] /
4057 /// [`crate::LayoutError::AplicacaoOwnsCode`].
4058 ///
4059 /// Lifted as a typed method (rather than an inline disjunction at
4060 /// the verify call site) so the foreign-code-slot set lives in one
4061 /// place — a future kind that gains its own code-surface slot is
4062 /// one push here, and every consumer reaching for "which code
4063 /// surfaces are foreign to this kind" (the verify gate, a future
4064 /// `feira lint` kind-coherence advisory, the future `app-operator`'s
4065 /// per-caixa build-target classifier) inherits the canonical order
4066 /// without rolling its own.
4067 #[must_use]
4068 pub fn declared_foreign_code_slots(&self) -> Vec<&'static str> {
4069 let mut slots = Vec::new();
4070 if !self.exe().is_empty() && !self.kind().requires_exe() {
4071 slots.push(":exe");
4072 }
4073 if !self.servicos().is_empty() && !self.kind().requires_servicos() {
4074 slots.push(":servicos");
4075 }
4076 slots
4077 }
4078
4079 /// Validate every entry of `:deps` and `:deps-dev` through
4080 /// [`Dep::validate`] — closing the parity loop with the per-axis
4081 /// `:versao` gates already wired into the typed-graph
4082 /// ([`crate::AplicacaoSpec::validate_membros`] for `:membros`,
4083 /// 9888b13) and typed supervisor tree
4084 /// ([`crate::SupervisorSpec::validate`] for `:children`, b38ff3a).
4085 ///
4086 /// Until this gate landed `:deps :versao` and `:deps-dev :versao`
4087 /// were the only `:versao` axes still untyped past
4088 /// [`Caixa::from_lisp`]: the derive macro stored the requirement
4089 /// as a String without parsing it, so a malformed-but-non-empty
4090 /// requirement (`"^bad-version"`, `"^^0.1"`, `"v0.1"`, `"not-a-req"`)
4091 /// silently passed parse and the `semver::Error` surfaced at
4092 /// lacre-resolve time, far from the source caixa.lisp, with no
4093 /// field naming which `:deps` entry carried the typo. Lifting the
4094 /// gate here makes the four `:versao` typed surfaces (`:deps`,
4095 /// `:deps-dev`, `:membros`, `:children`) structurally equivalent —
4096 /// every requirement string past `validate_deps` is round-trippable
4097 /// through [`crate::parse_requirement`] without re-checking at the
4098 /// resolver layer.
4099 ///
4100 /// Both lists run through the same per-entry validator so a typo
4101 /// in `:deps-dev` surfaces with the same diagnostic as one in
4102 /// `:deps` — neither axis is a second-class citizen of the typed
4103 /// surface.
4104 ///
4105 /// Within each list, [`DepError::DuplicateNome`] closes the
4106 /// set-not-multiset discipline on the `:nome` axis: two entries
4107 /// naming the same caixa carry two `:versao` / `:fonte` / feature
4108 /// triples that the caixa-resolver's lacre pipeline collapses to one
4109 /// via its `HashMap`-keyed-by-`:nome` consumption — the second entry
4110 /// silently overwrites the first at `concrete_versao`-resolve time
4111 /// (the same "second wins / one silently overwrites the other"
4112 /// shape the peer typed-graph duplicate gates already close on every
4113 /// other Vec-shaped authoring surface that keys by name). The
4114 /// duplicate check fires per-list and runs *after* each per-entry
4115 /// [`Dep::validate`] call so a malformed-and-duplicated entry
4116 /// surfaces its narrower per-entry diagnostic
4117 /// ([`DepError::NomeInvalid`], [`DepError::VersaoInvalid`],
4118 /// [`DepError::FonteRepoEmpty`], …) before the cross-entry duplicate
4119 /// diagnostic — the canonical "per-entry shape before cross-entry
4120 /// uniqueness" precedence the peer `:children :caixa`
4121 /// ([`crate::SupervisorSpec::validate`]), `:membros :caixa`
4122 /// ([`crate::AplicacaoSpec::validate_membros`]), `:contratos`
4123 /// ([`crate::AplicacaoSpec::validate`]), `:placement :clusters`
4124 /// ([`crate::AplicacaoSpec::validate_placement`]),
4125 /// `:entrada :paths` ([`crate::AplicacaoSpec::validate`]),
4126 /// `:upgrade-from :from` ([`crate::upgrade::validate_upgrade_from`]),
4127 /// and the within-`:upgrade-from`-entry per-instruction-class
4128 /// singularity gates ([`crate::UpgradeError::DuplicateLoadModule`],
4129 /// [`crate::UpgradeError::DuplicateStateChange`],
4130 /// [`crate::UpgradeError::DuplicateCleanup`]) all establish.
4131 ///
4132 /// Cross-list (`:deps` ↔ `:deps-dev`) coincidence is *not* gated
4133 /// here: Cargo's `[dependencies]` + `[dev-dependencies]` accept the
4134 /// same name in both tables (the dev table's pin overrides the
4135 /// runtime table's pin in test/dev contexts), and caixa's surface
4136 /// mirrors that convention until a deliberate choice retires the
4137 /// override pattern. Only within-list duplicates are structurally
4138 /// incoherent — those are what this gate closes.
4139 pub fn validate_deps(&self) -> Result<(), DepError> {
4140 for &list in crate::dep::DepList::ALL {
4141 let mut seen = std::collections::HashSet::new();
4142 for dep in self.deps_of(list) {
4143 dep.validate()?;
4144 crate::render::insert_first_seen(&mut seen, dep.nome(), || {
4145 DepError::DuplicateNome {
4146 nome: dep.nome().to_string(),
4147 list: list.as_str(),
4148 }
4149 })?;
4150 }
4151 }
4152 Ok(())
4153 }
4154
4155 /// Reject `:nome` values the K8s apiserver would refuse at admission
4156 /// time. The top-level Caixa identity flows directly into every
4157 /// substrate-side artifact's `metadata.name` axis: the
4158 /// `lareira-<nome>` Helm chart name ([`caixa-helm::lib::chart_name`]),
4159 /// the programs.yaml `name:` entry the `lareira-fleet-programs`
4160 /// aggregator keys ComputeUnit derivation off
4161 /// ([`caixa-flux::lib::programs_yaml_entry`]), the
4162 /// `LABEL_APLICACAO` label value carried on every Aplicacao-owned
4163 /// pod and the per-`:contratos` CiliumNetworkPolicy `metadata.name`
4164 /// (`<aplicacao>-<de>-to-<para>`) and the per-`:entrada`
4165 /// `<aplicacao>-<para>` HTTPRoute `metadata.name`
4166 /// ([`caixa-mesh::lib::cilium_network_policies`],
4167 /// [`caixa-mesh::lib::gateway_routes`]), and the default
4168 /// `lib/<nome>.lisp` / `exe/<nome>` layout paths
4169 /// ([`crate::StandardLayout::verify`]). Each K8s apiserver-side
4170 /// schema enforces the DNS-1123 label rule on admission; a
4171 /// structurally invalid `:nome` (`"MyApp"` — the canonical
4172 /// "I copied the display name verbatim" footgun, `"my_app"` — the
4173 /// Python-/Postgres-leak, `"team.app"` — `:nome` is a single label
4174 /// not a subdomain, `"-app"` / `"app-"` — DNS-1123 boundary
4175 /// violations, `"my app"` — the paste-from-doc footgun, `"café"` —
4176 /// IDN must be pre-encoded as Punycode, the 64-byte UUID-shaped
4177 /// over-cap slug) silently passed [`Caixa::from_lisp`] and the
4178 /// failure surfaced at `kubectl apply` time as a `metadata.name:
4179 /// Invalid value` rejection on whichever derived artifact admitted
4180 /// first, far from the source `caixa.lisp` and without any field
4181 /// naming the offending `:nome`.
4182 ///
4183 /// Thin wrapper around [`crate::render::is_dns_1123_label`] (the
4184 /// substrate-side predicate the per-axis name gates already share:
4185 /// `:membros :caixa` 3f9d7a0, `:placement :clusters` 6cbb900,
4186 /// `:children :caixa` 31bfa43) that maps the shared parser-shaped
4187 /// reason into the [`ManifestError::NomeInvalid`] variant, so the
4188 /// diagnostic is self-locating (the offending `:nome` is named
4189 /// verbatim) and the author can grep their `caixa.lisp` for
4190 /// `:nome "<value>"` and fix it in one edit. Same diagnostic shape
4191 /// every per-axis sibling gate already exposes
4192 /// ([`crate::AplicacaoError::MembroCaixaInvalid`],
4193 /// [`crate::AplicacaoError::PlacementClusterInvalid`],
4194 /// [`crate::SupervisorError::ChildCaixaInvalid`]).
4195 ///
4196 /// Empty `:nome` (which [`Caixa::from_lisp`] does not reject — the
4197 /// derive macro stores the raw String) is gated by the narrower
4198 /// [`ManifestError::NomeEmpty`] arm before the predicate is
4199 /// consulted, mirroring the empty-first cascade every per-axis
4200 /// name gate already uses (e.g. `MembroCaixaEmpty` before
4201 /// `MembroCaixaInvalid`, `EmptyChildName` before `ChildCaixaInvalid`).
4202 pub fn validate_nome(&self) -> Result<(), ManifestError> {
4203 // Routes through the shared
4204 // [`crate::render::require_valid_dns_1123_label`] gate the peer
4205 // name axes each land on so drift between the eight axes'
4206 // accepted DNS-1123-label sets is structurally impossible.
4207 let nome = self.nome();
4208 crate::render::require_valid_dns_1123_label(
4209 nome,
4210 || ManifestError::NomeEmpty,
4211 |reason| ManifestError::NomeInvalid {
4212 nome: nome.to_string(),
4213 reason,
4214 },
4215 )
4216 }
4217
4218 /// Reject `:nome` values whose joint length with the canonical
4219 /// [`crate::LAREIRA_CHART_NAME_PREFIX`] (`"lareira-"`) overflows
4220 /// the K8s DNS-1123 label cap [`crate::DNS_1123_LABEL_MAX_LEN`]
4221 /// (63 bytes). Every per-Servico / per-Aplicacao renderer the
4222 /// substrate carries materializes the caixa's `:nome` through the
4223 /// canonical [`crate::lareira_chart_name`] helper (f7320d7) into a
4224 /// `lareira-<nome>` artifact that lands as a K8s `metadata.name` /
4225 /// Helm chart name / `HelmRelease` `release_name`: `caixa-helm`'s
4226 /// `ChartDir.name` + `Chart.yaml::name`
4227 /// (caixa-helm/src/lib.rs:207), `caixa-flux`'s `cluster_bundle`
4228 /// `HelmRelease` `chart:` slot (caixa-flux/src/lib.rs:329),
4229 /// `caixa-tatara`'s `process_for_aplicacao` `release_name` +
4230 /// `oci://<registry>/lareira-<nome>` chart ref
4231 /// (caixa-tatara/src/lib.rs:124,178). Helm's own `Chart.yaml::name`
4232 /// admission rule strict-parses against DNS-1123-label, the Helm
4233 /// operator's tracking-secret name is derived from `release_name`
4234 /// and is itself DNS-1123-label-bounded, and the rendered chart's
4235 /// K8s object `metadata.name` axes embed the chart name as a
4236 /// prefix — every one fails admission on a > 63-byte chart name.
4237 ///
4238 /// The per-axis [`Self::validate_nome`] gate (6c992f8) already
4239 /// caps `:nome` itself at 63 bytes via [`is_dns_1123_label`], so a
4240 /// `:nome` of 56–63 bytes silently passed validate (the inner
4241 /// DNS-1123 check accepts the bare `:nome`) but produced a
4242 /// `lareira-<nome>` of 64–71 bytes that the apiserver / `helm lint`
4243 /// rejected at admission — far from the source `caixa.lisp`, with
4244 /// no field naming the overflow root cause. The
4245 /// [`lareira_chart_name`] helper's own doc comment
4246 /// (caixa-core/src/render.rs:3198) explicitly deferred the fix:
4247 /// "the M4 admission webhook will pin the joint-length invariant
4248 /// when it lands". This gate lands the invariant at the
4249 /// manifest-validate layer rather than waiting for the apiserver
4250 /// — the same fail-at-the-source posture every peer per-axis
4251 /// value-shape gate (DNS-1123 on `:nome`, SemVer-2 on `:versao`,
4252 /// SPDX-expression-shape on `:licenca`, 4-digit decimal year on
4253 /// `:edicao`, etc.) takes.
4254 ///
4255 /// Thin wrapper around
4256 /// [`crate::render::is_lareira_chart_name_shape`] (the
4257 /// substrate-side predicate that composes [`lareira_chart_name`] +
4258 /// [`is_dns_1123_label`] via the lifted
4259 /// [`crate::LAREIRA_CHART_NAME_NOME_MAX_LEN`] budget); maps the
4260 /// shared parser-shaped reason into the
4261 /// [`ManifestError::NomeChartNameBudgetExceeded`] variant so the
4262 /// diagnostic is self-locating (the offending `:nome` is named
4263 /// verbatim alongside the rendered chart name and the budget) and
4264 /// the author can shorten in one edit. The gate runs across every
4265 /// `:kind` — `:nome` is the substrate-wide identity axis any
4266 /// future renderer the substrate adds can derive a
4267 /// `lareira-<nome>` artifact from, and uniform enforcement closes
4268 /// the drift footgun where a future kind grows a chart-emitting
4269 /// render path while the validate cascade doesn't catch it.
4270 ///
4271 /// Runs *after* [`Self::validate_nome`] so the narrower
4272 /// `NomeEmpty` / `NomeInvalid` shape diagnostics fire first — a
4273 /// structurally-malformed `:nome` (empty, uppercase, underscore,
4274 /// dot, leading/trailing hyphen, Unicode, > 63 bytes) surfaces its
4275 /// specific shape error rather than the chart-name-budget error,
4276 /// preserving the legitimate "well-shaped `:nome` that happens to
4277 /// overflow the joint cap" arm for this gate.
4278 pub fn validate_nome_chart_name_budget(&self) -> Result<(), ManifestError> {
4279 let nome = self.nome();
4280 crate::render::is_lareira_chart_name_shape(nome).map_err(|reason| {
4281 ManifestError::NomeChartNameBudgetExceeded {
4282 nome: nome.to_string(),
4283 reason,
4284 }
4285 })
4286 }
4287
4288 /// Reject `:versao` values that don't parse as [`semver::Version`].
4289 /// The top-level Caixa version flows directly into every
4290 /// substrate-side artifact that carries a "this is which version of
4291 /// the caixa" axis: the `lareira-<nome>` Helm chart's `Chart.yaml`
4292 /// `version:` + `appVersion:` axes ([`caixa-helm::lib`] —
4293 /// SemVer-2-strict at `helm template` / `helm install` time per
4294 /// https://helm.sh/docs/topics/charts/#charts-and-versioning), the
4295 /// `feira publish` Zig-style `v<versao>` git tag
4296 /// ([`caixa-flux::lib::programs_yaml_entry`] / the
4297 /// `caixa-publish.yml` reusable workflow), the programs.yaml entry's
4298 /// `versao:` value the `lareira-fleet-programs` aggregator carries
4299 /// onto each rendered ComputeUnit, the OCI image's `:v<versao>` /
4300 /// `:latest` tags the substrate's `wasi-service-flake` builds with
4301 /// `skopeo push`, the lacre closure's pinned versions
4302 /// ([`caixa-resolver`] keys `concrete_versao`), and the
4303 /// `:upgrade-from :from` references peers in this exact `versao`
4304 /// shape (`semver::Version`, not `VersionReq`). Each consumer
4305 /// expects a strict three-part `MAJOR.MINOR.PATCH` (optionally
4306 /// `-prerelease` and/or `+build`); a structurally invalid `:versao`
4307 /// (`"0.1"` — missing patch, the canonical "I shortened it" footgun;
4308 /// `"v0.1.0"` — the git-tag-shape-leaking-into-versao typo;
4309 /// `"latest"` / `"main"` — the "I confused it with a docker tag"
4310 /// footgun; `"^0.1"` / `"~0.1.2"` — the requirement-shape leaking
4311 /// into the version field a peer `:deps :versao` accepts;
4312 /// `"0.1.0.0"` — the four-part Java/Microsoft convention DNS
4313 /// SemVer-2 forbids) silently passed [`Caixa::from_lisp`] (the
4314 /// derive macro stores the raw String) and the failure surfaced at
4315 /// the *first* downstream consumer that strict-parses it: at
4316 /// `helm install` time as a chart-version rejection, at
4317 /// `feira publish` time as a malformed git tag, at lacre-resolve
4318 /// time as a `semver::Error` not naming the offending caixa, at
4319 /// `feira upgrade --to <versao>` time as an unresolvable
4320 /// `:upgrade-from :from` match — far from the source `caixa.lisp`
4321 /// and without any field naming the offending `:versao`.
4322 ///
4323 /// Thin wrapper around [`semver::Version::parse`] — the same parser
4324 /// [`crate::CaixaVersion::parse`] (the typed `:versao` accessor)
4325 /// and [`crate::UpgradeFromEntry::validate`] (the peer
4326 /// `:upgrade-from :from` axis, 26da2c7) consume. Maps the
4327 /// `semver::Error` reason into the [`ManifestError::VersaoInvalid`]
4328 /// variant, carrying the offending `:versao` verbatim + a
4329 /// parser-shaped reason naming the specific violation, so the
4330 /// diagnostic is self-locating (the author can grep their
4331 /// `caixa.lisp` for `:versao "<value>"` and fix it in one edit).
4332 /// Same diagnostic shape as [`ManifestError::NomeInvalid`]
4333 /// (6c992f8) and [`crate::UpgradeError::FromInvalid`]
4334 /// (b0c8389) on the peer axes. With this gate, the typed `:versao`
4335 /// surfaces — top-level `:versao`, `:upgrade-from :from` — are
4336 /// now structurally equivalent (every value past validate is
4337 /// round-trippable through [`semver::Version::parse`] without
4338 /// re-checking at the renderer, resolver, or operator hot-upgrade
4339 /// layer), peer with the four `:versao` requirement axes (`:deps`,
4340 /// `:deps-dev`, `:membros`, `:children`) the prior commits
4341 /// (2420c44, 9888b13, b38ff3a) wired through `parse_requirement`.
4342 ///
4343 /// Empty `:versao` (which [`Caixa::from_lisp`] does not reject —
4344 /// the derive macro stores the raw String) is gated by the
4345 /// narrower [`ManifestError::VersaoEmpty`] arm before the parser is
4346 /// consulted, mirroring the empty-first cascade every per-axis
4347 /// version gate already uses (e.g. `MembroVersaoEmpty` before
4348 /// `MembroVersaoInvalid`, `EmptyChildVersion` before
4349 /// `ChildVersaoInvalid`, `NomeEmpty` before `NomeInvalid`).
4350 pub fn validate_versao(&self) -> Result<(), ManifestError> {
4351 let versao = self.versao();
4352 if versao.is_empty() {
4353 return Err(ManifestError::VersaoEmpty);
4354 }
4355 semver::Version::parse(versao).map_err(|e| ManifestError::VersaoInvalid {
4356 versao: versao.to_string(),
4357 reason: e.to_string(),
4358 })?;
4359 Ok(())
4360 }
4361
4362 /// Reject `:restart-window` values the shared
4363 /// [`crate::supervisor::duration_codec::parse`] refuses. The flat
4364 /// `restart_window: Option<String>` slot on [`Caixa`] is stored
4365 /// raw by the derive macro (the typed [`SupervisorSpec`] holds an
4366 /// `Option<Duration>` routed through the shared codec via `with =
4367 /// "duration_codec"`); the inline `Caixa → SupervisorSpec`
4368 /// view-construction path ([`Self::supervisor_view`]) folds the
4369 /// raw string through the same shared codec and soft-swallows the
4370 /// parse error as `None` to keep the view best-effort. Without
4371 /// this gate a malformed `:restart-window` (`"1.5s"` — the
4372 /// fractional-seconds drift class; `"1.0s"` — the decimal-shaped
4373 /// integer drift; `"0.5m"` — the unit-fraction drift; `"+30s"` /
4374 /// `"-30s"` — the leading-sign drift; `"30x"` — the unknown-unit
4375 /// footgun; `"abc"` — pure garbage; `""` — the empty-after-trim
4376 /// edge case) silently produced a `SupervisorSpec` with
4377 /// `restart_window: None`, indistinguishable from the canonical
4378 /// "omit the slot to express no reset" authoring shape — Erlang/OTP's
4379 /// `MaxIntensity / Period` invariant turns into a never-reset
4380 /// supervisor far from the source `caixa.lisp`, with no field
4381 /// naming the offending `:restart-window`. Lifting the gate to a
4382 /// Caixa-level validator mirrors the trajectory of the peer
4383 /// per-axis identity gates ([`Self::validate_nome`] 6c992f8,
4384 /// [`Self::validate_versao`] 1fdaa02, [`Self::validate_deps`]
4385 /// a7f0d8c) and the ABSORPTION-ROADMAP.md M2.2 test pin
4386 /// (line 196: "reject invalid `:restart-window` (non-duration)").
4387 ///
4388 /// Thin wrapper around [`crate::supervisor::duration_codec::parse`]
4389 /// (the shared codec backing `:supervisor :restart-window` as
4390 /// serde-routed on [`SupervisorSpec`], `:politicas :timeout`, and
4391 /// `:politicas :circuit-breaker :window` — all three covered by
4392 /// the integer-magnitude gate 1c55a2a). Maps the codec's parse
4393 /// error verbatim into the [`ManifestError::RestartWindowMalformed`]
4394 /// variant, carrying the offending raw string + a parser-shaped
4395 /// reason naming the canonical authoring form, so the diagnostic
4396 /// is self-locating (the author can grep their `caixa.lisp` for
4397 /// `:restart-window "<value>"` and fix it in one edit) and
4398 /// uniform with every other manifest-level validate diagnostic.
4399 /// With this gate the four `:restart-window`-shaped surfaces (the
4400 /// flat raw string on [`Caixa`], the typed `Option<Duration>` on
4401 /// [`SupervisorSpec`], the two `MeshPolicy` peer durations) are
4402 /// now structurally equivalent — every value past the codec is in
4403 /// one accepted set, by construction.
4404 ///
4405 /// `None` (the canonical "omit the slot to express no reset"
4406 /// shape) is accepted trivially — the gate is a no-op when the
4407 /// author didn't author a window. The empty string is rejected by
4408 /// the shared codec (its digit-only gate refuses an empty
4409 /// magnitude), surfacing the same `RestartWindowMalformed`
4410 /// diagnostic as every other rejected non-canonical shape.
4411 pub fn validate_restart_window(&self) -> Result<(), ManifestError> {
4412 let Some(s) = self.restart_window() else {
4413 return Ok(());
4414 };
4415 crate::supervisor::duration_codec::parse(s)
4416 .map(|_| ())
4417 .map_err(|reason| ManifestError::RestartWindowMalformed {
4418 restart_window: s.to_string(),
4419 reason,
4420 })
4421 }
4422
4423 /// Reject per-entry values on the three Caixa-level code-surface
4424 /// path lists (`:bibliotecas`, `:exe`, `:servicos`) that the
4425 /// layout checker's `root.join(p)` sandbox would silently subvert.
4426 /// Same three structural footguns the peer
4427 /// [`BehaviorSpec::validate`] (b0c8389) and
4428 /// [`crate::UpgradeInstruction::validate`] `StateChange` arm
4429 /// (26da2c7) already close on the M2 `:behavior :on-*` and
4430 /// `:upgrade-from :state-change :script` axes, here lifted onto
4431 /// the three top-level code-path axes through the shared
4432 /// [`is_sandboxed_relative_path`] predicate:
4433 ///
4434 /// - empty entry (`(:bibliotecas (""))` / `(:exe (""))` /
4435 /// `(:servicos (""))`): `PathBuf::new()` round-trips through
4436 /// [`Path::join`] as the base itself — `root.join("")` ==
4437 /// `root`, so the existence check (`self.exists(&root)`)
4438 /// trivially passes (the project root exists), and the layout
4439 /// silently treats the project root as a biblioteca / exe /
4440 /// servico entry. The `:bibliotecas` loop then hands the root
4441 /// to `tatara_lisp::read` at `feira build` time as if the root
4442 /// directory itself were a Lisp source file — a parse error
4443 /// far from the source `caixa.lisp` with no field naming the
4444 /// offending entry.
4445 /// - absolute path (`(:bibliotecas ("/etc/passwd"))`):
4446 /// [`Path::join`] *replaces* the base when the right-hand side
4447 /// is absolute, so `root.join("/etc/passwd")` resolves to
4448 /// `"/etc/passwd"` and escapes the project sandbox entirely.
4449 /// The existence check then silently consults whatever the
4450 /// escaped path resolves to — for `:bibliotecas`, the layout
4451 /// has no `starts_with`-fence (only `:exe` is fenced under
4452 /// `exe/` and `:servicos` under `servicos/`), so an absolute
4453 /// `:bibliotecas` entry that happens to resolve on disk
4454 /// silently passes. For `:exe` / `:servicos` the fence catches
4455 /// the absolute case downstream as `ExeOutsideDir` /
4456 /// `ServicoOutsideDir` (or `MissingEntry` if the absolute path
4457 /// doesn't exist), but with a downstream-shaped diagnostic
4458 /// that names the resolved escape path rather than the
4459 /// authoring footgun at the source.
4460 /// - parent-escape (`(:bibliotecas ("../sibling/x.lisp"))` /
4461 /// `(:exe ("exe/../../escape.lisp"))`): a [`PathBuf`] with any
4462 /// [`std::path::Component::ParentDir`] anywhere round-trips
4463 /// through [`Path::join`] as a traversal above the caixa root.
4464 /// The `:exe` / `:servicos` `starts_with(<dir>)` fence is
4465 /// *component-aware* (not canonical-path-aware), so
4466 /// `root.join("exe/../../escape.lisp")` `starts_with(exe_dir)`
4467 /// is **true** even though the canonical resolution
4468 /// `{parent of root}/escape.lisp` lives outside the caixa root
4469 /// — the fence silently lets the parent-escape through, and
4470 /// the existence check passes if that escape-target happens
4471 /// to exist. Caught regardless of where the `..` sits
4472 /// (leading, mid-path, trailing) so the gate matches the peer
4473 /// predicate's full coverage.
4474 ///
4475 /// Same `Empty` → `Absolute` → `ParentEscape` arm-ordering every peer
4476 /// `is_sandboxed_relative_path` consumer follows (b0c8389 / 26da2c7);
4477 /// same per-slot diagnostic shape every peer per-axis path-gate
4478 /// exposes (`*Empty { slot }` / `*Absolute { slot, path }` /
4479 /// `*ParentEscape { slot, path }`). Cross-slot precedence is
4480 /// `:bibliotecas` → `:exe` → `:servicos` — the same declaration
4481 /// order [`Caixa::declared_foreign_code_slots`] uses for its
4482 /// canonical foreign-code-slot diagnostic, so a manifest with
4483 /// multiple malformed slots surfaces the lexicographically-earliest
4484 /// slot's diagnostic deterministically.
4485 ///
4486 /// Lifted to the typed surface as a Caixa-level validator (peer
4487 /// of [`Self::validate_nome`] / [`Self::validate_versao`] /
4488 /// [`Self::validate_deps`] / [`Self::validate_restart_window`])
4489 /// and wired into [`crate::StandardLayout::verify`] before the
4490 /// existence-check loops so the diagnostic names the offending
4491 /// slot at the source caixa.lisp rather than reporting a
4492 /// downstream `MissingEntry` / `ExeOutsideDir` /
4493 /// `ServicoOutsideDir` against the resolved sandbox-escape path.
4494 /// The fourth typed code-path surface — every author-supplied
4495 /// path on the manifest — is now structurally accept-shaped
4496 /// past validate, peer with `:behavior :on-*` and
4497 /// `:upgrade-from :state-change :script`.
4498 pub fn validate_code_paths(&self) -> Result<(), ManifestError> {
4499 /// Per-slot file-type contract for the three Caixa-level
4500 /// code-path surfaces (`:bibliotecas`, `:exe`, `:servicos`).
4501 /// Each variant names the predicate the per-entry file-type
4502 /// gate consults; [`Self::None`] opts the slot out of any
4503 /// file-type contract. Lifted as a typed local enum so the
4504 /// per-slot dispatch is exhaustive at the `match` — adding a
4505 /// future axis to the typed-substrate `:` slot set (the
4506 /// future `:assets` resource axis the M5 roadmap names, the
4507 /// future `:nix-flake` derivation axis the caixa-flake
4508 /// emitter consults) lands as one variant + one `match` arm,
4509 /// not a coordinated rewrite of every per-slot bool flag.
4510 ///
4511 /// Peer of the typed-substrate per-slot variant disciplines
4512 /// already established on this surface
4513 /// ([`crate::supervisor::RestartStrategy`] +
4514 /// [`crate::supervisor::RestartPolicy`] on the OTP-shape
4515 /// supervision-tree axis,
4516 /// [`crate::aplicacao::PlacementStrategy`] on the §III.1
4517 /// placement axis, [`crate::aplicacao::WitTarget`] on the
4518 /// `:contratos` payload-target axis): the typed `enum` is
4519 /// the substrate's single source of truth for the per-axis
4520 /// dispatch, and every consumer (the per-arm body here, the
4521 /// future feira-lint per-slot diagnostic renderer, the M4
4522 /// per-axis admission webhook) reaches for the same typed
4523 /// surface rather than re-deriving the partition from inline
4524 /// flag combinations.
4525 enum CodePathFileType {
4526 /// `:exe` — nix-build derivation output, no terminating-
4527 /// extension contract (the canonical `"exe/<name>"`
4528 /// fixtures the layout's `ExeOutsideDir` error message
4529 /// documents carry no extension by convention).
4530 None,
4531 /// `:bibliotecas` — tatara-lisp source files the
4532 /// `feira build` loop reads through `tatara_lisp::read`
4533 /// at parse time. Routes to [`is_lisp_extension`].
4534 LispSource,
4535 /// `:servicos` — ComputeUnit-CR YAML files the
4536 /// caixa-helm / caixa-flux renderers consume through
4537 /// `serde_yaml::from_str`. Routes to
4538 /// [`is_computeunit_yaml_extension`].
4539 ComputeUnitYaml,
4540 }
4541
4542 // The per-slot [`CodePathFileType`] selects which axes carry the
4543 // lifted file-type predicate. `:bibliotecas` is the tatara-lisp
4544 // source axis (the `feira build` loop at
4545 // `caixa-feira/src/cmd/build.rs:33` reads each entry through
4546 // `tatara_lisp::read` at parse time) — the lifted
4547 // [`is_lisp_extension`] predicate gates the `.lisp` extension.
4548 // `:exe` is the nix-built executable surface (per the canonical
4549 // `"exe/<name>"`-shaped fixtures the layout's `ExeOutsideDir`
4550 // error message documents and every in-tree
4551 // `caixa_with_code_paths` positive control uses) — its file-type
4552 // contract is "nix-build derivation output", not a typed source
4553 // file, so [`CodePathFileType::None`] opts the slot out of any
4554 // file-type gate. `:servicos` is the `.computeunit.yaml`
4555 // ComputeUnit-CR axis (the peer caixa-helm / caixa-flux
4556 // renderers consume each entry through `serde_yaml::from_str` as
4557 // a typed `ComputeUnit` CR) — the lifted
4558 // [`is_computeunit_yaml_extension`] predicate gates the compound
4559 // `.computeunit.yaml` suffix. All three axes are surfaced through
4560 // the same iteration so the sandbox-shape + duplicate gates
4561 // apply uniformly; the typed file-type dispatch fires per-slot
4562 // exactly where the downstream consumer's accepted set demands
4563 // it. The third file-type variant ([`ComputeUnitYaml`]) is the
4564 // compounding lift on the peer 64772a9 `:bibliotecas`
4565 // `.lisp`-gate trajectory — the second of the three code-path
4566 // axes to land on a typed compound-suffix gate, with the same
4567 // self-locating per-slot diagnostic shape every peer per-axis
4568 // file-type lift uses (`*NonLispExtension { slot, path }` /
4569 // `*NonComputeUnitYamlExtension { slot, path }`).
4570 for (slot, list, file_type) in [
4571 (
4572 ":bibliotecas",
4573 &self.bibliotecas,
4574 CodePathFileType::LispSource,
4575 ),
4576 (":exe", &self.exe, CodePathFileType::None),
4577 (
4578 ":servicos",
4579 &self.servicos,
4580 CodePathFileType::ComputeUnitYaml,
4581 ),
4582 ] {
4583 // Per-slot set-not-multiset gate on the typed code-path axis.
4584 // Every peer Vec-shaped author-supplied list past validate is
4585 // a set, not a multiset: `:membros :caixa`
4586 // ([`crate::AplicacaoError::MembroDuplicate`]), `:placement
4587 // :clusters` ([`crate::AplicacaoError::PlacementClusterDuplicate`]),
4588 // `:entrada :paths` ([`crate::AplicacaoError::EntradaPathDuplicate`]),
4589 // `:contratos` ([`crate::AplicacaoError::ContratoDuplicate`]),
4590 // `:children :caixa` ([`crate::SupervisorError::DuplicateChild`]),
4591 // `:deps` / `:deps-dev` `:nome` ([`crate::DepError::DuplicateNome`]
4592 // per 359fba5), `:upgrade-from :from` ([`crate::UpgradeError::DuplicateFrom`]),
4593 // `:etiquetas` ([`ManifestError::EtiquetaDuplicate`] per 360a499),
4594 // `:autores` ([`ManifestError::AutorDuplicate`] per 86c769b) —
4595 // the three code-path lists are the last Vec-shaped author-
4596 // supplied slots on the typed Caixa surface still admitting a
4597 // duplicate entry silently. Scope is per-list (`:bibliotecas`
4598 // duplicates are flagged within `:bibliotecas`, not across
4599 // `:bibliotecas` ↔ `:exe`) — the same per-list scope `:deps`
4600 // ↔ `:deps-dev` use (a `:nome` present in both lists is a
4601 // legitimate dev-vs-runtime shape on the dep axis, fenced
4602 // separately by [`crate::dep::validate_no_self_dep`]). On the
4603 // code-path axis a cross-slot collision is structurally
4604 // impossible by the layout's `starts_with(<exe|servicos>_dir)`
4605 // fence — `:exe` and `:servicos` entries are confined to their
4606 // own directory trees, so the only way a string could appear
4607 // on two code-path lists is the (rare, structurally invalid)
4608 // case where `:bibliotecas` carries an `"exe/<x>"` or
4609 // `"servicos/<x>.yaml"`-shaped path.
4610 //
4611 // Without the gate three authoring footguns silently passed:
4612 //
4613 // - `:bibliotecas ("lib/foo.lisp" "lib/foo.lisp")` — the
4614 // canonical copy-paste-the-wrong-file footgun. `feira
4615 // build` (`caixa-feira/src/cmd/build.rs:33`) walks the
4616 // list and re-parses the same file twice, wasting work
4617 // and silently masking the author's intent to declare a
4618 // *second* biblioteca.
4619 // - `:exe ("exe/cli" "exe/cli")` — the same footgun on the
4620 // Binario surface. The future `caixa-flake` `nix flake`
4621 // emitter that materializes each `:exe` entry as a flake
4622 // `packages.<exe-name>` derivation would collide on the
4623 // duplicate package name and surface a flake-eval error
4624 // far from the source `caixa.lisp`.
4625 // - `:servicos ("servicos/x.computeunit.yaml"
4626 // "servicos/x.computeunit.yaml")` — the same footgun on
4627 // the Servico surface. The peer `caixa-helm` / `caixa-flux`
4628 // renderers already refuse `:servicos.len() != 1` with
4629 // the narrower [`UnsupportedServicoCount`] diagnostic, but
4630 // that diagnostic surfaces "too many servicos" without
4631 // naming "duplicate entry" — the typed self-locating
4632 // "which entry is the duplicate" framing only lands at
4633 // this gate.
4634 //
4635 // Same `seen.insert(entry.as_str())` shape every peer per-list
4636 // duplicate gate uses (`:etiquetas` 360a499, `:autores`
4637 // 86c769b, `:deps` 359fba5) and the same "structural shape
4638 // checks fire before the duplicate check on the same entry"
4639 // ordering (a `(:bibliotecas ("" "lib/x.lisp" "lib/x.lisp"))`
4640 // shape surfaces the narrower [`Self::CodePathEmpty`] for the
4641 // empty entry first, not the duplicate on the later pair).
4642 let mut seen = std::collections::HashSet::new();
4643 for entry in list {
4644 let path = Path::new(entry);
4645 match is_sandboxed_relative_path(path) {
4646 Ok(()) => {}
4647 Err(PathShapeViolation::Empty) => {
4648 return Err(ManifestError::CodePathEmpty { slot });
4649 }
4650 Err(PathShapeViolation::Absolute) => {
4651 return Err(ManifestError::CodePathAbsolute {
4652 slot,
4653 path: path.to_path_buf(),
4654 });
4655 }
4656 Err(PathShapeViolation::ParentEscape) => {
4657 return Err(ManifestError::CodePathParentEscape {
4658 slot,
4659 path: path.to_path_buf(),
4660 });
4661 }
4662 }
4663 // The per-slot file-type gate dispatched through the
4664 // typed [`CodePathFileType`] selector above. Each variant
4665 // routes to the lifted predicate the downstream consumer
4666 // demands:
4667 //
4668 // - [`LispSource`] → [`is_lisp_extension`] for
4669 // `:bibliotecas` (the `feira build` loop's
4670 // `tatara_lisp::read` consumer);
4671 // - [`ComputeUnitYaml`] → [`is_computeunit_yaml_extension`]
4672 // for `:servicos` (the caixa-helm / caixa-flux
4673 // `serde_yaml::from_str` consumer's `ComputeUnit` CR
4674 // accepted set);
4675 // - [`None`] for `:exe` — the nix-build derivation-
4676 // output axis has no terminating-extension contract.
4677 //
4678 // Fires after the sandbox-shape arms so a path that is
4679 // *both* sandbox-escaping and wrong-extension surfaces
4680 // the more fundamental sandbox-shape diagnostic first
4681 // (mirrors the peer `EmptyPath` → `AbsolutePath` →
4682 // `ParentEscape` → `NonLispExtension` arm-ordering on
4683 // `:behavior :on-*` c97815a, and `EmptyScript` →
4684 // `AbsoluteScript` → `ParentEscapeScript` →
4685 // `NonLispExtensionScript` on
4686 // `:upgrade-from :state-change :script` 33cc830), and
4687 // before the duplicate gate so the narrower per-entry
4688 // file-type shape dominates the cross-entry uniqueness
4689 // diagnostic (a
4690 // `("servicos/x.yaml" "servicos/x.yaml")` shape on
4691 // `:servicos` surfaces
4692 // `CodePathNonComputeUnitYamlExtension` on the first
4693 // entry rather than `CodePathDuplicate` on the pair —
4694 // peer with the 64772a9 `:bibliotecas`
4695 // `("lib/x.txt" "lib/x.txt")` ordering).
4696 match file_type {
4697 CodePathFileType::None => {}
4698 CodePathFileType::LispSource => {
4699 if !is_lisp_extension(path) {
4700 return Err(ManifestError::CodePathNonLispExtension {
4701 slot,
4702 path: path.to_path_buf(),
4703 });
4704 }
4705 }
4706 CodePathFileType::ComputeUnitYaml => {
4707 if !is_computeunit_yaml_extension(path) {
4708 return Err(ManifestError::CodePathNonComputeUnitYamlExtension {
4709 slot,
4710 path: path.to_path_buf(),
4711 });
4712 }
4713 }
4714 }
4715 crate::render::insert_first_seen(&mut seen, entry.as_str(), || {
4716 ManifestError::CodePathDuplicate {
4717 slot,
4718 path: path.to_path_buf(),
4719 }
4720 })?;
4721 }
4722 }
4723 Ok(())
4724 }
4725
4726 /// Reject `:etiquetas` lists with an empty entry or with two entries
4727 /// agreeing on the same string. `:etiquetas` is the universal
4728 /// registry-search-tag axis on [`Caixa`] (every kind carries the
4729 /// `Vec<String>` slot) and lands verbatim as the Helm chart
4730 /// `Chart.yaml` `keywords:` array on every Servico (caixa-helm's
4731 /// `build_chart_yaml` at `caixa-helm/src/lib.rs:236` folds it through
4732 /// a [`std::collections::BTreeSet`] alongside the four substrate-
4733 /// fixed tags `lareira` / `wasm` / `tatara-lisp` / `caixa-servico`).
4734 /// Two authoring footguns silently passed validate without this gate:
4735 ///
4736 /// - Empty entry (`(:etiquetas (""))` — the canonical paste-from-
4737 /// blank-doc footgun) rendered as `keywords: ["", "caixa-servico",
4738 /// "lareira", "tatara-lisp", "wasm"]` in `Chart.yaml`. Helm's
4739 /// `chart.metadata.keywords` admits the value without a strict
4740 /// parser-side gate, but the empty keyword has no operational
4741 /// meaning — it indexes nothing in the future caixa-registry
4742 /// search axis and clutters the rendered chart with a no-op tag.
4743 /// - Duplicate entries (`(:etiquetas ("demo" "demo"))` — the
4744 /// copy-paste-the-wrong-tag footgun) silently passed validate
4745 /// and were silently dedup'd by caixa-helm's `BTreeSet` collect
4746 /// at chart render — a "second wins / one silently disappears"
4747 /// shape divergent from every peer typed-graph set gate
4748 /// ([`crate::AplicacaoError::MembroDuplicate`] on `:membros`,
4749 /// [`crate::AplicacaoError::PlacementClusterDuplicate`] on
4750 /// `:placement :clusters`, [`crate::AplicacaoError::EntradaPathDuplicate`]
4751 /// on `:entrada :paths`, [`crate::AplicacaoError::ContratoDuplicate`]
4752 /// on `:contratos`, [`crate::DepError::DuplicateNome`] on
4753 /// `:deps` / `:deps-dev` per 359fba5, [`crate::UpgradeError::DuplicateFrom`]
4754 /// on `:upgrade-from`, the per-instruction-class singularity
4755 /// gates [`crate::UpgradeError::DuplicateLoadModule`] /
4756 /// [`crate::UpgradeError::DuplicateStateChange`] /
4757 /// [`crate::UpgradeError::DuplicateCleanup`]). The typed-graph
4758 /// discipline is uniform: every Vec-shaped author-supplied list
4759 /// past validate is set-not-multiset, by construction.
4760 ///
4761 /// Past the empty arm the gate enforces the chart-keyword shape
4762 /// predicate via [`crate::render::is_chart_keyword_shape`]: Cargo's
4763 /// crates.io `[package] keywords` grammar — 1..=20 bytes, starts
4764 /// with an ASCII letter, ASCII alphanumeric / `_` / `-`
4765 /// continuation. Closes the canonical paste-from-doc footguns the
4766 /// bare empty + duplicate arms left open: paste-from-aligned-doc
4767 /// whitespace (`" mesh"`, `"mesh "`), paste-from-multiline-doc
4768 /// newline (`"mesh\nhttp"` — the author pasted a multi-tag block
4769 /// into one entry instead of splitting), paste-from-Windows-CRLF-doc
4770 /// carriage return, CSV-list-separator confusion (`"mesh,http,grpc"`
4771 /// — the author meant three separate list entries), path-separator
4772 /// confusion (`"caixa/servico"`), namespace-suffix (`"http.1"`),
4773 /// leading-digit (`"1foo"`), kebab-leak (`"-foo"`), snake-leak
4774 /// (`"_foo"`), non-ASCII (`"café"`), and paste-from-binary-blob
4775 /// control bytes that would silently land as malformed search tags
4776 /// in the rendered Chart.yaml `keywords:` array and break the
4777 /// Artifact Hub keyword index lookup far from the source caixa.lisp.
4778 /// Mirrors the [`Self::validate_autores`] shape-predicate cascade
4779 /// established on the sibling universal-axis `Vec<String>` surface
4780 /// — the second universal-axis Vec<String> surface to land the
4781 /// empty-first-then-shape-then-duplicate per-entry cascade.
4782 ///
4783 /// Same empty-first cascade discipline every peer per-axis gate
4784 /// uses: the per-entry empty arm fires before the per-entry shape
4785 /// arm fires before the cross-entry duplicate arm, so an
4786 /// `("" "mesh" "mesh")` authoring shape surfaces the narrower
4787 /// [`ManifestError::EtiquetaEmpty`] (the structural "this entry
4788 /// has no value" defect) before either the shape or the duplicate
4789 /// diagnostic. Walks the list in declaration order so the
4790 /// first-collision diagnostic surfaces the lexicographically-
4791 /// earliest offending position, peer with every other duplicate
4792 /// gate on this surface.
4793 ///
4794 /// Universal-axis (every kind carries `:etiquetas`), so wired at the
4795 /// caixa-build gate alongside the peer universal gates
4796 /// [`Self::validate_nome`] / [`Self::validate_versao`] /
4797 /// [`Self::validate_deps`] / [`Self::validate_code_paths`] — before
4798 /// the kind-coherence gates ([`crate::LayoutError::MeshSlotsOnNonAplicacao`]
4799 /// / [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] /
4800 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] /
4801 /// [`crate::LayoutError::ForeignCodeSlot`]) which fence kind-specific
4802 /// slot sets. The future caixa-registry search axis can reach for
4803 /// `caixa.etiquetas` knowing every entry is a non-empty distinct
4804 /// chart-keyword-shaped string without re-deriving the precondition.
4805 pub fn validate_etiquetas(&self) -> Result<(), ManifestError> {
4806 let mut seen = std::collections::HashSet::new();
4807 for etiqueta in self.etiquetas() {
4808 if etiqueta.is_empty() {
4809 return Err(ManifestError::EtiquetaEmpty);
4810 }
4811 crate::render::is_chart_keyword_shape(etiqueta).map_err(|reason| {
4812 ManifestError::EtiquetaInvalid {
4813 etiqueta: etiqueta.clone(),
4814 reason,
4815 }
4816 })?;
4817 crate::render::insert_first_seen(&mut seen, etiqueta.as_str(), || {
4818 ManifestError::EtiquetaDuplicate {
4819 etiqueta: etiqueta.clone(),
4820 }
4821 })?;
4822 }
4823 Ok(())
4824 }
4825
4826 /// Reject `:autores` lists with an empty entry or with two entries
4827 /// agreeing on the same string. `:autores` is the universal
4828 /// maintainer-axis on [`Caixa`] (every kind carries the
4829 /// `Vec<String>` slot) and lands verbatim as the Helm chart
4830 /// `Chart.yaml` `maintainers:` array on every Servico (caixa-helm's
4831 /// `build_chart_yaml` at `caixa-helm/src/lib.rs:251` maps each entry
4832 /// to a `Maintainer { name, email: None }` without dedup). Two
4833 /// authoring footguns silently passed validate without this gate:
4834 ///
4835 /// - Empty entry (`(:autores (""))` — the canonical paste-from-
4836 /// blank-doc footgun) rendered as
4837 /// `maintainers: [{name: "", email: null}]` in `Chart.yaml`. The
4838 /// empty maintainer name has no operational meaning — it
4839 /// identifies no one in the substrate's authorship index and
4840 /// clutters the rendered chart with a no-op maintainer.
4841 /// - Duplicate entries (`(:autores ("pleme-io" "pleme-io"))` —
4842 /// the copy-paste-the-wrong-author footgun) silently passed
4843 /// validate and rendered as two identical maintainer entries.
4844 /// Unlike the [`Self::validate_etiquetas`] peer (caixa-helm's
4845 /// `BTreeSet`-collect on `:etiquetas` silently dedups the
4846 /// rendered `keywords:` array at chart-render time), the
4847 /// `maintainers:` rendering has *no* dedup — duplicate `:autores`
4848 /// entries stack verbatim in the chart, divergent from every
4849 /// peer typed-graph set gate ([`crate::AplicacaoError::MembroDuplicate`]
4850 /// on `:membros`, [`crate::AplicacaoError::PlacementClusterDuplicate`]
4851 /// on `:placement :clusters`, [`crate::AplicacaoError::EntradaPathDuplicate`]
4852 /// on `:entrada :paths`, [`crate::AplicacaoError::ContratoDuplicate`]
4853 /// on `:contratos`, [`crate::DepError::DuplicateNome`] on
4854 /// `:deps` / `:deps-dev`, [`crate::UpgradeError::DuplicateFrom`]
4855 /// on `:upgrade-from`, [`ManifestError::EtiquetaDuplicate`] on
4856 /// `:etiquetas`).
4857 ///
4858 /// Past the empty arm the gate enforces the chart-maintainer-name
4859 /// shape predicate via [`crate::render::is_chart_maintainer_name_shape`]:
4860 /// the structural single-line printable-UTF-8 floor every realistic
4861 /// Helm chart maintainer name carries — 1..=128 bytes, no leading
4862 /// or trailing whitespace, no ASCII control characters anywhere,
4863 /// Unicode bytes accepted. Closes the canonical paste-from-doc
4864 /// footguns the bare empty + duplicate arms left open:
4865 /// paste-from-aligned-doc whitespace (`" pleme-io"`, `"pleme-io "`),
4866 /// paste-from-multiline-doc newline (`"alice\nbob"` — the author
4867 /// pasted a multi-line block of author records into one `:autores`
4868 /// entry instead of splitting into one entry per author),
4869 /// paste-from-Windows-CRLF-doc carriage return, tab-from-aligned-doc,
4870 /// and the paste-from-binary-blob control bytes that would silently
4871 /// land as YAML-illegal byte sequences in the rendered Chart.yaml
4872 /// `maintainers:` array. Mirrors the shape-predicate cascade
4873 /// [`Self::validate_descricao`] / [`Self::validate_licenca`] /
4874 /// [`Self::validate_edicao`] / [`Self::validate_repositorio`]
4875 /// establish past their own empty arms on the sibling universal-axis
4876 /// `Option<String>` surfaces — the first universal-axis Vec<String>
4877 /// surface to land the empty-first-then-shape-then-duplicate per-entry
4878 /// cascade.
4879 ///
4880 /// Same empty-first cascade discipline every peer per-axis gate
4881 /// uses: the per-entry empty arm fires before the per-entry shape
4882 /// arm before the cross-entry duplicate arm. Walks the list in
4883 /// declaration order so the first-collision diagnostic surfaces the
4884 /// lexicographically-earliest offending position, peer with every
4885 /// other duplicate gate on this surface.
4886 ///
4887 /// Universal-axis (every kind carries `:autores`), so wired at the
4888 /// caixa-build gate alongside the peer universal gates
4889 /// [`Self::validate_nome`] / [`Self::validate_versao`] /
4890 /// [`Self::validate_deps`] / [`Self::validate_etiquetas`] /
4891 /// [`Self::validate_code_paths`] — before the kind-coherence gates
4892 /// ([`crate::LayoutError::MeshSlotsOnNonAplicacao`] /
4893 /// [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] /
4894 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] /
4895 /// [`crate::LayoutError::ForeignCodeSlot`]) which fence kind-specific
4896 /// slot sets.
4897 pub fn validate_autores(&self) -> Result<(), ManifestError> {
4898 let mut seen = std::collections::HashSet::new();
4899 for autor in self.autores() {
4900 if autor.is_empty() {
4901 return Err(ManifestError::AutorEmpty);
4902 }
4903 crate::render::is_chart_maintainer_name_shape(autor).map_err(|reason| {
4904 ManifestError::AutorInvalid {
4905 autor: autor.clone(),
4906 reason,
4907 }
4908 })?;
4909 crate::render::insert_first_seen(&mut seen, autor.as_str(), || {
4910 ManifestError::AutorDuplicate {
4911 autor: autor.clone(),
4912 }
4913 })?;
4914 }
4915 Ok(())
4916 }
4917
4918 /// Reject `:repositorio` values whose shape the shared
4919 /// [`crate::render::is_git_repo_url`] predicate refuses. The flat
4920 /// `repositorio: Option<String>` slot on [`Caixa`] is the
4921 /// universal git-shaped homepage axis every kind carries — the
4922 /// substrate routes the same string through two load-bearing
4923 /// consumers:
4924 ///
4925 /// - [`caixa-helm`] folds it verbatim into the rendered
4926 /// `lareira-<nome>` Helm chart's `Chart.yaml` `home:` field
4927 /// (`build_chart_yaml` at `caixa-helm/src/lib.rs:268`) and into
4928 /// the chart `README.md` `repo = …` interpolation
4929 /// (`caixa-helm/src/lib.rs:359`).
4930 /// - [`caixa-flux`] folds it verbatim into the standalone
4931 /// `ClusterBundleOpts::for_caixa` `git_url:` field
4932 /// (`caixa-flux/src/lib.rs:293`), which becomes the `FluxCD`
4933 /// `GitRepository.spec.url` the cluster's source-controller
4934 /// polls — the load-bearing deploy-time axis.
4935 ///
4936 /// Both consumers use `Option::unwrap_or_else(|| <fallback>)` to
4937 /// substitute a placeholder when the slot is absent (`None` → the
4938 /// fallback fires); a `Some("")` *skips the fallback* and silently
4939 /// passes the empty string through to `Chart.yaml home: ""` /
4940 /// `GitRepository url: ""` — Helm's chart lint and `FluxCD`'s source
4941 /// controller both reject the empty URL far from the source
4942 /// `caixa.lisp`, with no field naming the offending `:repositorio`.
4943 /// Similarly a malformed `:repositorio` (whitespace, control char,
4944 /// missing `:` separator, leading `-`) silently lands in the
4945 /// rendered artifacts and breaks at `git clone` / `helm template`
4946 /// / `flux reconcile` time.
4947 ///
4948 /// Thin wrapper around [`crate::render::is_git_repo_url`] — the
4949 /// same shared predicate the peer [`crate::DepSource::validate`]
4950 /// routes the `:fonte (:tipo git :repo …)` axis through. With this
4951 /// gate the two `git URL`-shaped surfaces on the typed Caixa
4952 /// (`:repositorio` here, `:deps :fonte :repo` peer) are
4953 /// structurally equivalent: every value past validate is
4954 /// guaranteed-acceptable by the predicate's union of constraints
4955 /// (non-empty, length-bounded, no leading `-`, no whitespace, no
4956 /// control chars, ASCII only, no leading `:`, contains a `:`
4957 /// separator). The predicate accepts every documented authoring
4958 /// shape — `github:org/repo` shorthand, `https://host/path`,
4959 /// `ssh://[user@]host/path`, `git://host/path`, `git@host:path`
4960 /// scp-style SSH, `file:///path` — and refuses the canonical
4961 /// paste-from-blank-doc / paste-from-multiline-doc / CLI-arg-
4962 /// injection footguns at validate time. Maps the predicate's
4963 /// `String` reason verbatim into the
4964 /// [`ManifestError::RepositorioInvalid`] variant, carrying the
4965 /// offending value + parser-shaped reason so the diagnostic is
4966 /// self-locating (the author can grep their `caixa.lisp` for
4967 /// `:repositorio "<value>"` and fix it in one edit).
4968 ///
4969 /// `None` (the canonical "omit the slot to express no published
4970 /// homepage" shape) is accepted trivially — the gate is a no-op
4971 /// when the author didn't declare a value. `Some("")` is gated by
4972 /// the narrower [`ManifestError::RepositorioEmpty`] arm before the
4973 /// shape predicate is consulted, mirroring the empty-first cascade
4974 /// every peer per-axis identity gate uses
4975 /// ([`ManifestError::NomeEmpty`] → [`ManifestError::NomeInvalid`],
4976 /// [`ManifestError::VersaoEmpty`] → [`ManifestError::VersaoInvalid`],
4977 /// [`crate::DepError::FonteRepoEmpty`] →
4978 /// [`crate::DepError::FonteRepoInvalid`]).
4979 ///
4980 /// Universal-axis (every kind carries `:repositorio`), so wired at
4981 /// the caixa-build gate alongside the peer universal gates
4982 /// [`Self::validate_nome`] / [`Self::validate_versao`] /
4983 /// [`Self::validate_deps`] / [`Self::validate_etiquetas`] /
4984 /// [`Self::validate_autores`] / [`Self::validate_code_paths`] —
4985 /// before the kind-coherence gates
4986 /// ([`crate::LayoutError::MeshSlotsOnNonAplicacao`] /
4987 /// [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] /
4988 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] /
4989 /// [`crate::LayoutError::ForeignCodeSlot`]) which fence kind-
4990 /// specific slot sets.
4991 pub fn validate_repositorio(&self) -> Result<(), ManifestError> {
4992 let Some(s) = self.repositorio() else {
4993 return Ok(());
4994 };
4995 if s.is_empty() {
4996 return Err(ManifestError::RepositorioEmpty);
4997 }
4998 is_git_repo_url(s).map_err(|reason| ManifestError::RepositorioInvalid {
4999 repositorio: s.to_string(),
5000 reason,
5001 })
5002 }
5003
5004 /// Reject `:descricao` values that are the empty string. The flat
5005 /// `descricao: Option<String>` slot on [`Caixa`] is the universal
5006 /// free-form-prose homepage axis every kind carries — the
5007 /// substrate routes the same string through two load-bearing
5008 /// consumers in the [`caixa-helm`] renderer:
5009 ///
5010 /// - `build_chart_yaml` folds it verbatim into the rendered
5011 /// `lareira-<nome>` Helm chart's `Chart.yaml` `description:`
5012 /// field (`caixa-helm/src/lib.rs:232-235`).
5013 /// - `build_readme` folds it verbatim into the rendered chart
5014 /// `README.md` header (`caixa-helm/src/lib.rs:333-336`).
5015 ///
5016 /// Both consumers use `Option::unwrap_or_else(|| <fallback>)` to
5017 /// substitute a `caixa.nome`-derived placeholder when the slot is
5018 /// absent (`None` → the fallback fires); a `Some("")` *skips the
5019 /// fallback* and silently passes the empty string through to
5020 /// `Chart.yaml description: ""` / a blank chart `README.md`
5021 /// header. Helm's chart spec requires a non-empty `description:`
5022 /// field on `apiVersion: v2` charts (`helm lint` surfaces it as
5023 /// `WARNING [chart.metadata.description]: description is required`),
5024 /// so the empty `Some("")` silently lands in the rendered
5025 /// artifacts and breaks at `helm lint` / `helm install` time far
5026 /// from the source `caixa.lisp`, with no field naming the
5027 /// offending `:descricao`.
5028 ///
5029 /// `None` (the canonical "omit the slot to defer to the renderer's
5030 /// `caixa.nome`-derived fallback" shape) is accepted trivially —
5031 /// the gate is a no-op when the author didn't declare a value.
5032 /// `Some("")` is gated by the narrower
5033 /// [`ManifestError::DescricaoEmpty`] arm, mirroring the empty-arm
5034 /// shape every peer per-axis empty gate uses
5035 /// ([`ManifestError::NomeEmpty`], [`ManifestError::VersaoEmpty`],
5036 /// [`ManifestError::EtiquetaEmpty`], [`ManifestError::AutorEmpty`],
5037 /// [`ManifestError::RepositorioEmpty`]).
5038 ///
5039 /// Universal-axis (every kind carries `:descricao`), so wired at
5040 /// the caixa-build gate alongside the peer universal gates
5041 /// [`Self::validate_nome`] / [`Self::validate_versao`] /
5042 /// [`Self::validate_deps`] / [`Self::validate_etiquetas`] /
5043 /// [`Self::validate_autores`] / [`Self::validate_repositorio`] /
5044 /// [`Self::validate_code_paths`] — before the kind-coherence
5045 /// gates ([`crate::LayoutError::MeshSlotsOnNonAplicacao`] /
5046 /// [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] /
5047 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] /
5048 /// [`crate::LayoutError::ForeignCodeSlot`]) which fence kind-
5049 /// specific slot sets.
5050 ///
5051 /// Past the empty arm the gate enforces the chart-description
5052 /// shape predicate via [`crate::render::is_chart_description_shape`]:
5053 /// the structural single-line UTF-8 floor every realistic chart
5054 /// description in the wild matches — 1..=512 bytes, no leading
5055 /// or trailing whitespace, no ASCII control characters anywhere
5056 /// (`0x00..=0x1F` plus `0x7F` DEL — banning tab, newline,
5057 /// carriage return, and every other control byte), Unicode
5058 /// continuation bytes accepted (the canonical fixtures carry
5059 /// `→` and `—`). Closes the canonical paste-from-doc footguns
5060 /// the bare empty-arm gate left open: paste-from-aligned-doc
5061 /// leading / trailing whitespace (`" Checkout flow."`,
5062 /// `"Checkout flow. "`), paste-from-multiline-doc newline
5063 /// (`"Checkout\nflow."`), paste-from-Windows-CRLF-doc CR
5064 /// (`"Checkout\rflow."`), tab-from-aligned-doc
5065 /// (`"Checkout\tflow."`), and paste-from-binary-blob NUL / BEL /
5066 /// ESC / DEL bytes. Mirrors the shape-predicate cascade
5067 /// [`Self::validate_repositorio`] / [`Self::validate_licenca`] /
5068 /// [`Self::validate_edicao`] establish past their own empty arms
5069 /// on the sibling universal-axis `Option<String>` Caixa-level
5070 /// value-shape surfaces.
5071 ///
5072 /// The empty-first cascade discipline mirrors every peer per-axis
5073 /// identity gate: [`ManifestError::DescricaoEmpty`] runs before
5074 /// [`ManifestError::DescricaoInvalid`], so the narrower empty
5075 /// diagnostic surfaces on `Some("")` rather than the broader
5076 /// shape-predicate diagnostic — peer with how
5077 /// [`ManifestError::LicencaEmpty`] runs before
5078 /// [`ManifestError::LicencaInvalid`],
5079 /// [`ManifestError::EdicaoEmpty`] runs before
5080 /// [`ManifestError::EdicaoInvalid`],
5081 /// [`ManifestError::RepositorioEmpty`] runs before
5082 /// [`ManifestError::RepositorioInvalid`].
5083 pub fn validate_descricao(&self) -> Result<(), ManifestError> {
5084 let Some(s) = self.descricao() else {
5085 return Ok(());
5086 };
5087 if s.is_empty() {
5088 return Err(ManifestError::DescricaoEmpty);
5089 }
5090 crate::render::is_chart_description_shape(s).map_err(|reason| {
5091 ManifestError::DescricaoInvalid {
5092 descricao: s.to_string(),
5093 reason,
5094 }
5095 })?;
5096 Ok(())
5097 }
5098
5099 /// Reject `:licenca` values that are the empty string. The flat
5100 /// `licenca: Option<String>` slot on [`Caixa`] is the universal
5101 /// SPDX-shaped license-expression axis every kind carries — the
5102 /// substrate routes the same string through the [`caixa-helm`]
5103 /// renderer's `build_readme` which folds it verbatim into the
5104 /// rendered `lareira-<nome>` Helm chart's `README.md` `## License`
5105 /// section (`caixa-helm/src/lib.rs:361`) via
5106 /// `caixa.licenca.clone().unwrap_or_else(|| "MIT".into())`. The
5107 /// fallback only fires on `None`; a `Some("")` *skips the
5108 /// fallback* and silently passes the empty string through to a
5109 /// chart `README.md` whose `License` section renders as the bare
5110 /// trailing period (`.\n`) — peer footgun with the
5111 /// `Some("")`-skips-`unwrap_or_else` shape the
5112 /// [`Self::validate_descricao`] and [`Self::validate_repositorio`]
5113 /// gates close on the sibling free-form-prose and git-URL axes.
5114 ///
5115 /// `None` (the canonical "omit the slot to defer to the
5116 /// renderer's `MIT` fallback" shape every existing fixture
5117 /// carries) is accepted trivially — the gate is a no-op when the
5118 /// author didn't declare a value. `Some("")` is gated by the
5119 /// narrower [`ManifestError::LicencaEmpty`] arm, mirroring the
5120 /// empty-arm shape every peer per-axis empty gate uses
5121 /// ([`ManifestError::NomeEmpty`], [`ManifestError::VersaoEmpty`],
5122 /// [`ManifestError::EtiquetaEmpty`], [`ManifestError::AutorEmpty`],
5123 /// [`ManifestError::RepositorioEmpty`],
5124 /// [`ManifestError::DescricaoEmpty`]).
5125 ///
5126 /// Universal-axis (every kind carries `:licenca`), so wired at
5127 /// the caixa-build gate alongside the peer universal gates
5128 /// [`Self::validate_nome`] / [`Self::validate_versao`] /
5129 /// [`Self::validate_deps`] / [`Self::validate_etiquetas`] /
5130 /// [`Self::validate_autores`] / [`Self::validate_repositorio`] /
5131 /// [`Self::validate_descricao`] / [`Self::validate_code_paths`]
5132 /// — before the kind-coherence gates
5133 /// ([`crate::LayoutError::MeshSlotsOnNonAplicacao`] /
5134 /// [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] /
5135 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] /
5136 /// [`crate::LayoutError::ForeignCodeSlot`]) which fence kind-
5137 /// specific slot sets.
5138 ///
5139 /// Past the empty arm the gate enforces the SPDX-expression shape
5140 /// predicate via [`crate::render::is_spdx_expression_shape`]: the
5141 /// structural alphabet floor every realistic SPDX expression in
5142 /// the wild uses — ASCII alphanumeric plus `.`, `-`, `+`, `(`,
5143 /// `)`, `:` (the `DocumentRef-…:LicenseRef-…` separator), and a
5144 /// single ASCII space (token separator). Closes the canonical
5145 /// paste-from-doc footguns the bare empty-arm gate left open:
5146 /// paste-from-doc whitespace (`"MIT "`, `" MIT"`), paste-from-
5147 /// multiline-doc CRLF (`"MIT\n"`), tab-from-aligned-doc
5148 /// (`"MIT\tOR Apache-2.0"`), non-ASCII smart-quote paste,
5149 /// underscore-instead-of-hyphen typo (`"Apache_2.0"`),
5150 /// comma-instead-of-`OR`-keyword colloquial idiom (`"MIT,
5151 /// Apache-2.0"`), slash-dual-license colloquial idiom (`"MIT/
5152 /// Apache-2.0"`), and semicolon-list-separator confusion
5153 /// (`"MIT; Apache-2.0"`). Mirrors the shape-predicate cascade
5154 /// [`Self::validate_repositorio`] / [`Self::validate_edicao`]
5155 /// establish past their own empty arms.
5156 ///
5157 /// The empty-first cascade discipline mirrors every peer per-axis
5158 /// identity gate: [`ManifestError::LicencaEmpty`] runs before
5159 /// [`ManifestError::LicencaInvalid`], so the narrower empty
5160 /// diagnostic surfaces on `Some("")` rather than the broader
5161 /// shape-predicate diagnostic — peer with how
5162 /// [`ManifestError::EdicaoEmpty`] runs before
5163 /// [`ManifestError::EdicaoInvalid`],
5164 /// [`ManifestError::RepositorioEmpty`] runs before
5165 /// [`ManifestError::RepositorioInvalid`].
5166 ///
5167 /// A future tightening on this axis can extend the alphabet
5168 /// floor into a full SPDX expression parser + license-id
5169 /// allowlist (rejecting alphabet-valid values that don't name a
5170 /// real SPDX license identifier — e.g., `"NotAReal"` is
5171 /// alphabet-valid but no `NotAReal` license-id exists). That
5172 /// parser only becomes meaningful past a real SPDX-spec
5173 /// dependency; this gate establishes the structural floor by
5174 /// refusing every non-SPDX-alphabet value at validate time.
5175 pub fn validate_licenca(&self) -> Result<(), ManifestError> {
5176 let Some(s) = self.licenca() else {
5177 return Ok(());
5178 };
5179 if s.is_empty() {
5180 return Err(ManifestError::LicencaEmpty);
5181 }
5182 crate::render::is_spdx_expression_shape(s).map_err(|reason| {
5183 ManifestError::LicencaInvalid {
5184 licenca: s.to_string(),
5185 reason,
5186 }
5187 })?;
5188 Ok(())
5189 }
5190
5191 /// Reject `:edicao` values that are the empty string. The flat
5192 /// `edicao: Option<String>` slot on [`Caixa`] is the universal
5193 /// language-edition axis every kind carries — it determines the
5194 /// tatara-lisp macro surface + compatibility flags the substrate
5195 /// applies when building a caixa, and lands verbatim in the
5196 /// `Caixa::template` author-time scaffold (the canonical
5197 /// `:edicao "2026"` line every `feira init` emits via
5198 /// [`Caixa::template`] at `caixa-core/src/manifest.rs:1193`) and
5199 /// in every renderer-side fixture (`caixa-helm/src/lib.rs:375`,
5200 /// `caixa-flux/src/lib.rs:445`, `caixa-mesh/src/lib.rs:629`,
5201 /// `caixa-core/src/render.rs:2510`) via
5202 /// `edicao: Some("2026".into())`.
5203 ///
5204 /// `None` (the canonical "omit the slot to defer to the
5205 /// substrate's default edition" shape every existing
5206 /// [`caixa-resolver`] integration test fixture carries via
5207 /// `edicao: None` — see `caixa-resolver/tests/git_integration.rs`)
5208 /// is accepted trivially — the gate is a no-op when the author
5209 /// didn't declare a value. `Some("")` is gated by the narrower
5210 /// [`ManifestError::EdicaoEmpty`] arm, mirroring the empty-arm
5211 /// shape every peer per-axis empty gate uses
5212 /// ([`ManifestError::NomeEmpty`], [`ManifestError::VersaoEmpty`],
5213 /// [`ManifestError::EtiquetaEmpty`], [`ManifestError::AutorEmpty`],
5214 /// [`ManifestError::RepositorioEmpty`],
5215 /// [`ManifestError::DescricaoEmpty`], [`ManifestError::LicencaEmpty`]).
5216 ///
5217 /// Universal-axis (every kind carries `:edicao`), so wired at
5218 /// the caixa-build gate alongside the peer universal gates
5219 /// [`Self::validate_nome`] / [`Self::validate_versao`] /
5220 /// [`Self::validate_deps`] / [`Self::validate_etiquetas`] /
5221 /// [`Self::validate_autores`] / [`Self::validate_repositorio`] /
5222 /// [`Self::validate_descricao`] / [`Self::validate_licenca`] /
5223 /// [`Self::validate_code_paths`] — before the kind-coherence
5224 /// gates ([`crate::LayoutError::MeshSlotsOnNonAplicacao`] /
5225 /// [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] /
5226 /// [`crate::LayoutError::ServicoSlotsOnNonServico`] /
5227 /// [`crate::LayoutError::ForeignCodeSlot`]) which fence kind-
5228 /// specific slot sets.
5229 ///
5230 /// Past the empty arm the gate enforces the canonical year-shape
5231 /// predicate: every documented tatara-lisp edition is a 4-digit
5232 /// ASCII decimal year (`"2026"` is the only edition currently
5233 /// minted; future-introduced siblings will follow the same
5234 /// shape, peer with Cargo's `[package] edition` grammar which
5235 /// every value Cargo has ever accepted matches — `"2015"`,
5236 /// `"2018"`, `"2021"`, `"2024"`). Any value that's not exactly
5237 /// 4 ASCII decimal bytes is rejected with the narrower
5238 /// [`ManifestError::EdicaoInvalid`] arm, mirroring the
5239 /// shape-predicate cascade [`Self::validate_repositorio`]
5240 /// establishes past its own empty arm
5241 /// ([`ManifestError::RepositorioEmpty`] →
5242 /// [`ManifestError::RepositorioInvalid`]). Closes the canonical
5243 /// paste-from-doc footguns the bare empty-arm gate left open:
5244 ///
5245 /// - leading / trailing whitespace from a paste-from-doc
5246 /// (`"2026 "`, `" 2026"`)
5247 /// - control characters / CRLF from a paste-from-multiline-doc
5248 /// (`"2026\n"`)
5249 /// - non-ASCII look-alikes from a fullwidth keyboard
5250 /// (`"2026"`) which would silently land as a non-ASCII
5251 /// string in the rendered caixa.lisp
5252 /// - free-form non-year values (`"x"`, `"latest"`,
5253 /// `"nightly"`) that have no operational meaning on the
5254 /// substrate's build-time edition selector
5255 /// - leading non-digit prefixes (`"v2026"`, `"e2026"`,
5256 /// `"r2026"`) — common version-tag idioms that don't apply
5257 /// to the year-shaped edition axis
5258 /// - decimal-shaped values (`"2026.1"`, `"2026.0"`) — every
5259 /// edition is a year, not a fractional version
5260 /// - wrong-length numeric values (`"26"`, `"202"`, `"20260"`,
5261 /// `"00026"`) that don't name a year
5262 ///
5263 /// `None` (the canonical "omit the slot to defer to the
5264 /// substrate's default edition" shape every existing
5265 /// [`caixa-resolver`] integration test fixture carries via
5266 /// `edicao: None` — see `caixa-resolver/tests/git_integration.rs`)
5267 /// is accepted trivially — the gate is a no-op when the author
5268 /// didn't declare a value. The empty-first cascade discipline
5269 /// mirrors every peer per-axis identity gate:
5270 /// [`ManifestError::EdicaoEmpty`] runs before
5271 /// [`ManifestError::EdicaoInvalid`], so the narrower empty
5272 /// diagnostic surfaces on `Some("")` rather than the broader
5273 /// shape-predicate diagnostic — peer with how
5274 /// [`ManifestError::NomeEmpty`] runs before
5275 /// [`ManifestError::NomeInvalid`],
5276 /// [`ManifestError::VersaoEmpty`] runs before
5277 /// [`ManifestError::VersaoInvalid`],
5278 /// [`ManifestError::RepositorioEmpty`] runs before
5279 /// [`ManifestError::RepositorioInvalid`].
5280 ///
5281 /// A future tightening on this axis can extend the shape
5282 /// predicate into a known-edition allowlist (rejecting
5283 /// year-shaped values that don't name a tatara-lisp edition
5284 /// the substrate actually understands — e.g., `"1999"` is
5285 /// year-shaped but no `1999` edition exists). That allowlist
5286 /// only becomes meaningful past the introduction of a sibling
5287 /// edition to `"2026"`; this gate establishes the structural
5288 /// floor by refusing every non-year-shaped value at validate
5289 /// time.
5290 pub fn validate_edicao(&self) -> Result<(), ManifestError> {
5291 let Some(s) = self.edicao() else {
5292 return Ok(());
5293 };
5294 if s.is_empty() {
5295 return Err(ManifestError::EdicaoEmpty);
5296 }
5297 if s.len() != 4 || !s.bytes().all(|b| b.is_ascii_digit()) {
5298 return Err(ManifestError::EdicaoInvalid {
5299 edicao: s.to_string(),
5300 reason: "must be a 4-digit ASCII decimal year (canonical \"2026\")".to_string(),
5301 });
5302 }
5303 Ok(())
5304 }
5305
5306 /// Compose the supervisor-related flat slots into a single
5307 /// [`SupervisorSpec`] for validation. Returns `None` when the
5308 /// caixa isn't a `:kind Supervisor`.
5309 ///
5310 /// The flat representation in [`Caixa`] keeps tatara-lisp authoring
5311 /// simple (one form, no nested `:supervisor (…)` block); this view
5312 /// is the "typed shape" the operator + supervisor reconciler
5313 /// consume.
5314 #[must_use]
5315 pub fn supervisor_view(&self) -> Option<SupervisorSpec> {
5316 if !self.kind().is_supervisor() {
5317 return None;
5318 }
5319 // Fold through the shared `supervisor::duration_codec::parse`
5320 // — the same parser the serde-routed `with = "duration_codec"`
5321 // on `SupervisorSpec::restart_window`, the `:politicas
5322 // :timeout` codec, and the `:politicas :circuit-breaker
5323 // :window` codec all consume. The prior inline f64-shaped
5324 // duplicate (`parse_window_inline`) admitted every magnitude
5325 // the integer-magnitude gate (1c55a2a) rejects on the three
5326 // serde-routed siblings — `"1.5s"`, `"1.0s"`, `"0.5m"`,
5327 // `"+30s"`, `"-30s"` — and silently dropped malformed input as
5328 // `None` (i.e. "no reset"), divergent from the shared codec's
5329 // integer-magnitude discipline by construction. The fold
5330 // closes the divergence: every value the typed
5331 // `SupervisorSpec` carries past `supervisor_view` is in the
5332 // shared codec's accepted set. The `.ok()` here preserves the
5333 // existing soft-swallow shape on this view-construction path;
5334 // the new [`Caixa::validate_restart_window`] (sibling of
5335 // [`Self::validate_nome`] / [`Self::validate_versao`]) names
5336 // the offending raw string at build time so authoring tools
5337 // (`feira lint`, the future layout-side wire-up) surface a
5338 // self-locating diagnostic instead of a silently dropped
5339 // window.
5340 let restart_window = self
5341 .restart_window()
5342 .and_then(|s| crate::supervisor::duration_codec::parse(s).ok());
5343 Some(SupervisorSpec {
5344 // Route the author-omitted `:estrategia` arm through the
5345 // substrate-canonical
5346 // [`crate::supervisor::SUPERVISOR_ESTRATEGIA_DEFAULT`] typed
5347 // `pub const` rather than the transitively-derived
5348 // [`RestartStrategy::default`] route the prior
5349 // `.unwrap_or_default()` fold reached for — one source of
5350 // truth for the Erlang/OTP `one_for_one` half of Learn You
5351 // Some Erlang's `{one_for_one, intensity, 5, 60}` worker-
5352 // supervisor canonical default that also backs the
5353 // [`crate::supervisor::Default for RestartStrategy`] impl
5354 // and the [`crate::supervisor::Default for SupervisorSpec`]
5355 // impl's struct-literal `estrategia` field, all now routed
5356 // through the same lifted constant. Prior to the lift the
5357 // composition site carried `.unwrap_or_default()` with no
5358 // compile-time link back to the shared OTP-canonical
5359 // default that the peer paired
5360 // `.unwrap_or(SUPERVISOR_MAX_RESTARTS_DEFAULT)` (b698ec0)
5361 // arm on the sibling `:max-restarts` axis routes through —
5362 // so a future rebrand of the OTP-canonical strategy default
5363 // (a widening to `rest_for_one` once the substrate
5364 // discovers startup-order-coupled child cohorts as the more
5365 // common shape, a per-cluster overlay the operator pins
5366 // through the MESH-COMPOSITION §III.2 supervision-canary
5367 // `:estrategia-overrides` roadmap slot) would have had to
5368 // migrate the paired `MaxIntensity` + `Period` halves
5369 // through the lifted constants and the `one_for_one` half
5370 // through a `RestartStrategy::default()` route in lockstep
5371 // or the three halves of the same OTP-canonical default
5372 // would silently drift out of pairing. Byte-parity against
5373 // the lifted constant closes the split. Pinned by
5374 // [`supervisor_view_estrategia_fallback_routes_through_lifted_default`]
5375 // in the tests module.
5376 estrategia: self
5377 .estrategia()
5378 .unwrap_or(crate::supervisor::SUPERVISOR_ESTRATEGIA_DEFAULT),
5379 // Route the author-omitted `:max-restarts` arm through the
5380 // substrate-canonical [`crate::supervisor::SUPERVISOR_MAX_RESTARTS_DEFAULT`]
5381 // typed `pub const` rather than the raw `5` literal — one
5382 // source of truth for the Erlang/OTP-canonical
5383 // `{intensity, 5, 60}` `MaxIntensity` default that also
5384 // backs the serde-side wire-format author-omitted arm on
5385 // [`crate::supervisor::SupervisorSpec::max_restarts`] via
5386 // `#[serde(default = "default_max_restarts")]` and the
5387 // [`Default for SupervisorSpec`] impl's struct-literal
5388 // default field. Prior to the lift the composition site
5389 // carried a raw `5` with no compile-time link back to the
5390 // serde-side default, so a future rebrand of the OTP-
5391 // canonical default (a tightening to Elixir's `3`, a
5392 // widening to a per-cluster overlay the operator pins
5393 // through the MESH-COMPOSITION §III.2 supervision-canary
5394 // `:supervisor :max-restarts-overrides` roadmap slot)
5395 // would have had to be threaded through both open-coded
5396 // copies in lockstep or the wire-format author-omitted arm
5397 // and this view-construction author-omitted arm would
5398 // silently disagree on which restart-budget an omitted
5399 // `:max-restarts` resolves to. Pinned by
5400 // [`supervisor_view_max_restarts_fallback_routes_through_lifted_default`]
5401 // in the tests module.
5402 max_restarts: self
5403 .max_restarts()
5404 .unwrap_or(crate::supervisor::SUPERVISOR_MAX_RESTARTS_DEFAULT),
5405 restart_window,
5406 children: self.children().to_vec(),
5407 })
5408 }
5409
5410 /// A minimal starter manifest emitted by `feira init`.
5411 #[must_use]
5412 pub fn template(nome: &str) -> String {
5413 format!(
5414 "(defcaixa\n \
5415 :nome {nome:?}\n \
5416 :versao \"0.1.0\"\n \
5417 :kind Biblioteca\n \
5418 :edicao \"2026\"\n \
5419 :descricao \"FIXME — describe this caixa\"\n \
5420 :autores ()\n \
5421 :etiquetas ()\n \
5422 :deps ()\n \
5423 :deps-dev ()\n \
5424 :bibliotecas (\"lib/{nome}.lisp\"))\n"
5425 )
5426 }
5427
5428 /// Serialize to a canonical `caixa.lisp` source — suitable for writing
5429 /// back after mutation (e.g. `feira add`).
5430 ///
5431 /// Goes through serde JSON → canonical Sexp → per-field pretty print.
5432 /// The derive-macro `compile_from_sexp` path is the inverse, so any
5433 /// `Caixa` round-trips through `to_lisp` + `from_lisp`.
5434 #[must_use]
5435 pub fn to_lisp(&self) -> String {
5436 let json = serde_json::to_value(self).expect("Caixa serialize");
5437 let sexp = tatara_lisp::domain::json_to_sexp(&json);
5438 let tatara_lisp::Sexp::List(items) = sexp else {
5439 return format!("(defcaixa {sexp})\n");
5440 };
5441 let mut out = String::from("(defcaixa");
5442 let mut i = 0;
5443 while i + 1 < items.len() {
5444 out.push_str("\n ");
5445 out.push_str(&items[i].to_string());
5446 out.push(' ');
5447 out.push_str(&items[i + 1].to_string());
5448 i += 2;
5449 }
5450 out.push_str(")\n");
5451 out
5452 }
5453}
5454
5455/// Errors raised by top-level [`Caixa`] validators that don't fit
5456/// the per-axis [`DepError`] / [`crate::AplicacaoError`] /
5457/// [`crate::SupervisorError`] / [`crate::LayoutError`] families —
5458/// the Caixa's own identity axes (`:nome`, `:versao`) that flow
5459/// through every substrate-side artifact's `metadata.name` /
5460/// version derivation.
5461///
5462/// A future top-level sum (the M4 `CaixaError` the [`DepError`]
5463/// doc-comment anticipates) can hold one of each per-axis error
5464/// family without reshaping individual diagnostics; this enum is
5465/// the first such per-Caixa-identity family.
5466#[derive(Debug, Error, PartialEq, Eq)]
5467pub enum ManifestError {
5468 #[error(
5469 ":nome is empty (every caixa must name itself; the value flows \
5470 into every K8s artifact's `metadata.name` derivation and into \
5471 the default `lib/<nome>.lisp` / `exe/<nome>` layout paths)"
5472 )]
5473 NomeEmpty,
5474 #[error(
5475 ":nome {nome:?} is not a valid DNS-1123 label: {reason} (the K8s \
5476 apiserver enforces this rule on every `metadata.name` the \
5477 caixa's substrate-side renderers derive from `:nome` — the \
5478 `lareira-<nome>` Helm chart name, the programs.yaml entry \
5479 name, the `LABEL_APLICACAO` label value, the `<aplicacao>-<de>-to-<para>` \
5480 CiliumNetworkPolicy name, the `<aplicacao>-<para>` HTTPRoute \
5481 name; use a lowercase alphanumeric + hyphen identifier like \
5482 `\"checkout\"` or `\"cart-v2\"`)"
5483 )]
5484 NomeInvalid { nome: String, reason: String },
5485 #[error(
5486 ":nome {nome:?} overflows the joint-length budget on the canonical \
5487 `lareira-<nome>` chart-name shape: {reason} (every per-Servico / \
5488 per-Aplicacao renderer the substrate carries — `caixa-helm`'s \
5489 `Chart.yaml::name`, `caixa-flux`'s `cluster_bundle` HelmRelease \
5490 `chart:` slot, `caixa-tatara`'s `release_name` + \
5491 `oci://<registry>/lareira-<nome>` chart ref — derives the same \
5492 joint name through the canonical `lareira_chart_name` helper, and \
5493 Helm's `Chart.yaml::name` admission rule + the K8s apiserver's \
5494 DNS-1123 label cap on every chart-name-derived `metadata.name` \
5495 reject any joint name exceeding 63 bytes; the narrower \
5496 `:nome` shape (`NomeInvalid`) gates the bare-`:nome` budget, this \
5497 arm gates the chart-name budget downstream renderers inherit)"
5498 )]
5499 NomeChartNameBudgetExceeded { nome: String, reason: String },
5500 #[error(
5501 ":versao is empty (every caixa must pin its own version; the value flows \
5502 into the `lareira-<nome>` Helm chart's `Chart.yaml` version + appVersion, \
5503 the `feira publish` `v<versao>` git tag, the OCI image's `:v<versao>` / \
5504 `:latest` tags, the lacre closure's `concrete_versao`, and the \
5505 `:upgrade-from :from` peers — use a SemVer-2 literal like `\"0.1.0\"`)"
5506 )]
5507 VersaoEmpty,
5508 #[error(
5509 ":versao {versao:?} is not a valid SemVer-2 version: {reason} (the substrate \
5510 consumes this string as `semver::Version` — three-part `MAJOR.MINOR.PATCH` \
5511 with optional `-prerelease` and `+build` — across every artifact derived \
5512 from `:versao`: the `lareira-<nome>` Helm chart's `Chart.yaml` version + \
5513 appVersion (Helm SemVer-2-strict), the `feira publish` `v<versao>` git tag, \
5514 the OCI image's `:v<versao>` tag, the lacre closure's `concrete_versao`, \
5515 and the `:upgrade-from :from` peers that match against this exact shape; \
5516 use a literal like `\"0.1.0\"`, `\"0.2.0-rc.1\"`, or `\"1.0.0+build.42\"` — \
5517 not a git-tag-shape like `\"v0.1.0\"`, a docker-tag-shape like `\"latest\"`, \
5518 a requirement-shape like `\"^0.1\"`, or a four-part `\"0.1.0.0\"`)"
5519 )]
5520 VersaoInvalid { versao: String, reason: String },
5521 #[error(
5522 ":restart-window {restart_window:?} is not a valid duration: {reason} (the \
5523 substrate consumes this string through the shared \
5524 `supervisor::duration_codec` — the same parser routed via `with = \
5525 \"duration_codec\"` onto the typed `SupervisorSpec::restart_window`, \
5526 `:politicas :timeout`, and `:politicas :circuit-breaker :window` slots; \
5527 the canonical authoring form is `<integer><unit>` where the unit is one \
5528 of `ms` / `s` / `m` / `h` and the magnitude has no decimal point and no \
5529 leading `+` / `-` sign — e.g. `\"60s\"`, `\"5m\"`, `\"1h\"`, `\"500ms\"`. \
5530 Without this gate a malformed `:restart-window` silently produced a \
5531 supervisor with `restart_window: None` (\"never reset\"), turning OTP's \
5532 `MaxIntensity / Period` invariant into a never-reset supervisor far from \
5533 the source `caixa.lisp`; the gate moves the diagnostic to the manifest \
5534 layer with the offending value named verbatim. Omit the slot entirely to \
5535 express \"no reset\"; carry a positive integer duration to express the \
5536 sliding window)"
5537 )]
5538 RestartWindowMalformed {
5539 restart_window: String,
5540 reason: String,
5541 },
5542 #[error(
5543 "{slot} entry is an empty path string — every {slot} entry must name \
5544 a file relative to the caixa root; omit the entry to omit the file \
5545 (the layout checker's `root.join(\"\")` resolves to the caixa root \
5546 itself, so an empty entry silently aliases the project root as a \
5547 declared {slot} file, then fails downstream at parse / existence \
5548 time with a diagnostic that names the root rather than the offending \
5549 entry)"
5550 )]
5551 CodePathEmpty { slot: &'static str },
5552 #[error(
5553 "{slot} entry {} is an absolute path — entries must be relative to \
5554 the caixa root, since `Path::join` replaces the base with an absolute \
5555 right-hand side and `root.join(\"/abs/...\")` resolves to \"/abs/...\" \
5556 outside the caixa root sandbox; rewrite the entry as a relative path \
5557 under the caixa root (e.g. `\"lib/<name>.lisp\"`, `\"exe/<name>\"`, \
5558 `\"servicos/<name>.computeunit.yaml\"`)",
5559 path.display()
5560 )]
5561 CodePathAbsolute { slot: &'static str, path: PathBuf },
5562 #[error(
5563 "{slot} entry {} contains a `..` component — entries must not traverse \
5564 above the caixa root (the layout's `starts_with(<dir>)` fence on \
5565 `:exe` / `:servicos` is component-aware, not canonical-path-aware, \
5566 so a mid-path `..` silently traverses the sandbox; `:bibliotecas` \
5567 has no such fence, so a leading `..` escapes unconditionally if the \
5568 resolved target happens to exist)",
5569 path.display()
5570 )]
5571 CodePathParentEscape { slot: &'static str, path: PathBuf },
5572 #[error(
5573 "{slot} entry {} does not terminate in the `.lisp` extension — every \
5574 `:bibliotecas` entry is a tatara-lisp source file the `feira build` \
5575 loop reads through `tatara_lisp::read` at parse time, so any other \
5576 extension (`.rs`, `.txt`, `.lisp.bak`) or no-extension shape is \
5577 structurally a parser error far from the source caixa.lisp, with \
5578 no field naming the offending `:bibliotecas` entry. Pin a relative \
5579 path under the caixa root whose terminating extension is \
5580 lowercase-`.lisp` (e.g. `\"lib/<name>.lisp\"`, \
5581 `\"lib/handlers.lisp\"`) — the same file-type contract the peer \
5582 `:behavior :on-*` (c97815a) and `:upgrade-from :state-change :script` \
5583 (33cc830) axes already carry through the same lifted \
5584 `is_lisp_extension` predicate",
5585 path.display()
5586 )]
5587 CodePathNonLispExtension { slot: &'static str, path: PathBuf },
5588 #[error(
5589 "{slot} entry {} does not terminate in the `.computeunit.yaml` \
5590 compound suffix — every `:servicos` entry is a typed `ComputeUnit` \
5591 CR YAML file the peer caixa-helm / caixa-flux renderers consume \
5592 through `serde_yaml::from_str` at chart / FluxCD bundle render \
5593 time, so any other extension (`.yaml`, `.yml`, `.json`, the \
5594 off-by-one-segment `.computeunit-yaml`, the editor-backup \
5595 `.computeunit.yaml.bak`) or no-extension shape is structurally a \
5596 YAML-parser error / `ComputeUnit` schema-mismatch far from the \
5597 source caixa.lisp, with no field naming the offending `:servicos` \
5598 entry. Pin a relative path under the caixa root whose terminating \
5599 compound suffix is lowercase-`.computeunit.yaml` (e.g. \
5600 `\"servicos/<name>.computeunit.yaml\"`, \
5601 `\"servicos/hello-rio.computeunit.yaml\"`) — the same file-type \
5602 contract the sibling `:bibliotecas` axis (64772a9) already carries \
5603 on the tatara-lisp-source axis through the peer lifted \
5604 `is_lisp_extension` predicate, here on the compound-suffix axis \
5605 `Path::extension` can't express on its own through the lifted \
5606 `is_computeunit_yaml_extension` predicate",
5607 path.display()
5608 )]
5609 CodePathNonComputeUnitYamlExtension { slot: &'static str, path: PathBuf },
5610 #[error(
5611 "{slot} entry {} appears more than once (the code-path list is \
5612 a set, not a multiset; every peer Vec-shaped author-supplied \
5613 list past validate is set-not-multiset — `:membros :caixa`, \
5614 `:placement :clusters`, `:entrada :paths`, `:contratos`, \
5615 `:children :caixa`, `:deps` / `:deps-dev` `:nome`, \
5616 `:upgrade-from :from`, `:etiquetas`, `:autores` — and the three \
5617 code-path lists are the last Vec-shaped author-supplied slots on \
5618 the typed Caixa surface still admitting a duplicate entry. \
5619 `:bibliotecas` duplicates re-parse the same file at \
5620 `feira build` time and silently mask the author's intent to \
5621 declare a *second* biblioteca; `:exe` duplicates collide on the \
5622 flake `packages.<name>` derivation key at the future \
5623 `caixa-flake` materializer; `:servicos` duplicates surface as the \
5624 narrower [`caixa-helm`] / [`caixa-flux`] `UnsupportedServicoCount` \
5625 rejection far from the source `caixa.lisp`. Drop the duplicate \
5626 or rename it to the actual second file intended)",
5627 path.display()
5628 )]
5629 CodePathDuplicate { slot: &'static str, path: PathBuf },
5630 #[error(
5631 ":etiquetas entry is empty (every tag must carry a non-empty \
5632 registry-search identifier; the empty entry has no operational \
5633 meaning — it indexes nothing in the future caixa-registry search \
5634 axis and clutters the rendered Helm `Chart.yaml` `keywords:` array \
5635 with a no-op tag; omit the entry to express \"no tag on this \
5636 position\")"
5637 )]
5638 EtiquetaEmpty,
5639 #[error(
5640 ":etiquetas entry {etiqueta:?} appears more than once (the \
5641 registry-search tag set is a set, not a multiset; duplicate \
5642 entries are silently dedup'd by caixa-helm's `BTreeSet` collect \
5643 at chart render — a \"second wins / one silently disappears\" \
5644 shape divergent from every peer typed-graph set gate \
5645 (`:membros :caixa`, `:placement :clusters`, `:entrada :paths`, \
5646 `:contratos`, `:deps :nome`, `:upgrade-from :from`); drop the \
5647 duplicate or rename it to the actual tag intended)"
5648 )]
5649 EtiquetaDuplicate { etiqueta: String },
5650 #[error(
5651 ":etiquetas entry {etiqueta:?} is not a valid chart-keyword shape: \
5652 {reason} (the substrate consumes this string through the shared \
5653 `crate::render::is_chart_keyword_shape` predicate — the same \
5654 Cargo crates.io `[package] keywords` grammar entry shape: 1..=20 \
5655 bytes, starts with an ASCII letter, ASCII alphanumeric / `_` / `-` \
5656 continuation. The canonical authoring shapes are short kebab-case \
5657 identifiers like `\"mesh\"`, `\"wasm\"`, `\"tatara-lisp\"`, \
5658 `\"hello-world\"`, `\"caixa-servico\"`, `\"infrastructure\"`. \
5659 Without this gate a malformed `:etiquetas` entry (paste-from-doc \
5660 leading / trailing whitespace `\" mesh\"` / `\"mesh \"`; \
5661 paste-from-multiline-doc newline `\"mesh\\nhttp\"`; \
5662 paste-from-Windows-CRLF-doc CR; CSV-list-separator confusion \
5663 `\"mesh,http,grpc\"` — the author meant to author three separate \
5664 list entries; path-separator confusion `\"caixa/servico\"`; \
5665 namespace-suffix `\"http.1\"`; leading-digit `\"1foo\"`; \
5666 kebab-leak `\"-foo\"`; snake-leak `\"_foo\"`; non-ASCII \
5667 `\"café\"` — every legitimate search tag is strict ASCII; \
5668 paste-from-binary-blob NUL / BEL / ESC / DEL byte) silently \
5669 passed `from_lisp` + `validate_etiquetas` + \
5670 `StandardLayout::verify` and landed in the rendered \
5671 `lareira-<nome>` Helm chart's `Chart.yaml keywords:` array as a \
5672 malformed search tag — Artifact Hub's keyword index + the future \
5673 caixa-registry's keyword index would either silently drop the \
5674 tag or fail to index it far from the source caixa.lisp; the gate \
5675 moves the diagnostic to the manifest layer with the offending \
5676 value named verbatim)"
5677 )]
5678 EtiquetaInvalid { etiqueta: String, reason: String },
5679 #[error(
5680 ":autores entry is empty (every maintainer must carry a non-empty \
5681 identifier; the empty entry has no operational meaning — it \
5682 identifies no one in the substrate's authorship index and renders \
5683 as `maintainers: [{{name: \"\", email: null}}]` in the Helm chart's \
5684 `Chart.yaml`, a no-op maintainer the substrate cannot route to; \
5685 omit the entry to express \"no maintainer on this position\")"
5686 )]
5687 AutorEmpty,
5688 #[error(
5689 ":autores entry {autor:?} appears more than once (the maintainer \
5690 set is a set, not a multiset; unlike `:etiquetas`, caixa-helm's \
5691 `maintainers:` rendering does *no* dedup — duplicate entries \
5692 stack verbatim in `Chart.yaml` as two identical \
5693 `Maintainer {{ name, email: None }}` records, divergent from every \
5694 peer typed-graph set gate (`:etiquetas`, `:membros :caixa`, \
5695 `:placement :clusters`, `:entrada :paths`, `:contratos`, \
5696 `:deps :nome`, `:upgrade-from :from`); drop the duplicate or \
5697 rename it to the actual author intended)"
5698 )]
5699 AutorDuplicate { autor: String },
5700 #[error(
5701 ":autores entry {autor:?} is not a valid chart-maintainer-name shape: \
5702 {reason} (the substrate consumes this string through the shared \
5703 `crate::render::is_chart_maintainer_name_shape` predicate — the same \
5704 single-line-UTF-8 floor every realistic chart maintainer name carries: \
5705 1..=128 bytes, no leading or trailing whitespace, no ASCII control \
5706 characters anywhere, Unicode bytes accepted. The canonical authoring \
5707 shapes are short single-line identifiers like `\"pleme-io\"`, \
5708 `\"Pleme Contributors\"`, `\"alice <alice@example.com>\"`, \
5709 `\"François Dupont\"`. Without this gate a malformed `:autores` entry \
5710 (paste-from-aligned-doc leading whitespace `\" pleme-io\"` / trailing \
5711 whitespace `\"pleme-io \"`; paste-from-multiline-doc newline \
5712 `\"alice\\nbob\"` — the author pasted a multi-line block of author \
5713 records into one entry instead of splitting into one entry per author; \
5714 paste-from-Windows-CRLF-doc carriage return `\"alice\\rbob\"`; \
5715 tab-from-aligned-doc `\"Pleme\\tContributors\"`; paste-from-binary-blob \
5716 NUL / BEL / ESC / DEL byte) silently passed `from_lisp` + \
5717 `validate_autores` + `StandardLayout::verify` and landed in the \
5718 rendered `lareira-<nome>` Helm chart's `Chart.yaml maintainers:` array \
5719 as a YAML-illegal multi-line scalar or a silently-trimmed whitespace \
5720 round-trip — every chart-aware UI (`helm list`, `helm search`, \
5721 Artifact Hub maintainer index) would render the maintainer name in a \
5722 single-line column far from the source caixa.lisp; the gate moves the \
5723 diagnostic to the manifest layer with the offending value named \
5724 verbatim)"
5725 )]
5726 AutorInvalid { autor: String, reason: String },
5727 #[error(
5728 ":repositorio is the empty string (every published caixa names its \
5729 git source via a non-empty `:repositorio` locator — the value \
5730 flows verbatim into the rendered `lareira-<nome>` Helm chart's \
5731 `Chart.yaml` `home:` field via `caixa-helm` and into the FluxCD \
5732 `GitRepository.spec.url` via `caixa-flux`'s \
5733 `ClusterBundleOpts::for_caixa`; both consumers' \
5734 `Option::unwrap_or_else` fallbacks only fire when the slot is \
5735 `None`, so an empty `Some(\"\")` silently lands as `home: \"\"` / \
5736 `url: \"\"` in the rendered artifacts and breaks at `helm \
5737 template` / FluxCD source-controller reconcile time far from the \
5738 source caixa.lisp; omit the slot entirely to defer to the \
5739 renderer's `https://github.com/pleme-io/<nome>` / \
5740 `caixa.nome`-derived fallback, or carry a canonical authoring \
5741 shape like `\"github:org/repo\"`, `\"https://host/path\"`, \
5742 `\"ssh://[user@]host/path\"`, `\"git@host:path\"`, or \
5743 `\"file:///path\"`)"
5744 )]
5745 RepositorioEmpty,
5746 #[error(
5747 ":repositorio {repositorio:?} is not a valid git repo URL: {reason} \
5748 (the substrate consumes this string through the shared \
5749 `crate::render::is_git_repo_url` predicate — the same parser the \
5750 peer `:deps :fonte (:tipo git :repo …)` axis routes its `:repo` \
5751 value through via `DepSource::validate`; the canonical authoring \
5752 shapes are `\"github:org/repo\"` shorthand, `\"https://host/path\"` \
5753 / `\"ssh://[user@]host/path\"` / `\"git://host/path\"` / \
5754 `\"file:///path\"` URL schemes, or the `\"git@host:path\"` \
5755 scp-style SSH form. Without this gate a malformed `:repositorio` \
5756 (whitespace from a paste-from-doc; control characters / CRLF \
5757 from a paste-from-multiline-doc; a leading `-` from a \
5758 CLI-argument-injection footgun; a missing `:` separator from a \
5759 bare `org/repo` shape git treats as a relative filesystem path) \
5760 silently landed in the rendered `Chart.yaml home:` and the \
5761 FluxCD `GitRepository.spec.url` and broke at `git clone` / \
5762 FluxCD reconcile time far from the source caixa.lisp; the gate \
5763 moves the diagnostic to the manifest layer with the offending \
5764 value named verbatim)"
5765 )]
5766 RepositorioInvalid { repositorio: String, reason: String },
5767 #[error(
5768 ":descricao is the empty string (every published caixa names \
5769 its purpose via a non-empty `:descricao` summary — the value \
5770 flows verbatim into the rendered `lareira-<nome>` Helm \
5771 chart's `Chart.yaml` `description:` field via `caixa-helm`'s \
5772 `build_chart_yaml` and into the chart `README.md` header via \
5773 `build_readme`; both consumers' `Option::unwrap_or_else` \
5774 `caixa.nome`-derived fallbacks only fire when the slot is \
5775 `None`, so an empty `Some(\"\")` silently lands as \
5776 `description: \"\"` / a blank `README.md` header in the \
5777 rendered artifacts and breaks at `helm lint` time \
5778 (`WARNING [chart.metadata.description]: description is \
5779 required` on `apiVersion: v2` charts) far from the source \
5780 caixa.lisp; omit the slot entirely to defer to the \
5781 renderer's `\"Generated chart for caixa Servico <nome>\"` / \
5782 `\"caixa Servico <nome>\"` fallbacks, or carry a non-empty \
5783 summary like `\"Canonical Rust→wasm32-wasip2 caixa \
5784 Servico.\"`)"
5785 )]
5786 DescricaoEmpty,
5787 #[error(
5788 ":descricao {descricao:?} is not a valid chart-description shape: \
5789 {reason} (the substrate consumes this string through the shared \
5790 `crate::render::is_chart_description_shape` predicate — the same \
5791 single-line-UTF-8 floor every realistic chart description carries: \
5792 1..=512 bytes, no leading or trailing whitespace, no ASCII control \
5793 characters anywhere, Unicode prose bytes accepted. The canonical \
5794 authoring shapes are short single-line summaries like `\"Canonical \
5795 Rust→wasm32-wasip2 caixa Servico.\"`, `\"Checkout flow.\"`, \
5796 `\"AWS provider caixa for tatara-lisp\"`. Without this gate a \
5797 malformed `:descricao` (paste-from-aligned-doc leading whitespace \
5798 `\" Checkout flow.\"` / trailing whitespace `\"Checkout flow. \"`; \
5799 paste-from-multiline-doc newline `\"Checkout\\nflow.\"`; \
5800 paste-from-Windows-CRLF-doc carriage return `\"Checkout\\rflow.\"`; \
5801 tab-from-aligned-doc `\"Checkout\\tflow.\"`; paste-from-binary-blob \
5802 NUL / BEL / ESC / DEL byte) silently passed `from_lisp` + \
5803 `validate_descricao` + `StandardLayout::verify` and landed in the \
5804 rendered `lareira-<nome>` Helm chart's `Chart.yaml description:` \
5805 field + `README.md` header paragraph as a YAML-illegal multi-line \
5806 scalar or a silently-trimmed whitespace round-trip — every \
5807 chart-aware UI (`helm list`, `helm search`, Artifact Hub) would \
5808 render the description in a single-line column far from the source \
5809 caixa.lisp; the gate moves the diagnostic to the manifest layer \
5810 with the offending value named verbatim)"
5811 )]
5812 DescricaoInvalid { descricao: String, reason: String },
5813 #[error(
5814 ":licenca is the empty string (every published caixa names \
5815 its license via a non-empty `:licenca` SPDX expression — the \
5816 value flows verbatim into the rendered `lareira-<nome>` Helm \
5817 chart's `README.md` `## License` section via `caixa-helm`'s \
5818 `build_readme` at `caixa-helm/src/lib.rs:361`; the consumer's \
5819 `Option::unwrap_or_else(|| \"MIT\".into())` `MIT` fallback \
5820 only fires when the slot is `None`, so an empty `Some(\"\")` \
5821 silently lands as a bare trailing period in the rendered \
5822 chart `README.md` `License` section far from the source \
5823 caixa.lisp; omit the slot entirely to defer to the \
5824 renderer's `MIT` fallback, or carry a canonical SPDX \
5825 expression like `\"MIT\"`, `\"Apache-2.0\"`, \
5826 `\"Apache-2.0 OR MIT\"`)"
5827 )]
5828 LicencaEmpty,
5829 #[error(
5830 ":licenca {licenca:?} is not a valid SPDX expression shape: {reason} \
5831 (the substrate consumes this string through the shared \
5832 `crate::render::is_spdx_expression_shape` predicate — the same \
5833 alphabet-floor parser every peer per-axis value-shape gate routes \
5834 its value through; the canonical authoring shapes are single \
5835 license identifiers like `\"MIT\"`, `\"Apache-2.0\"`, `\"BSD-3-Clause\"`, \
5836 compound expressions like `\"Apache-2.0 OR MIT\"`, \
5837 `\"MIT AND BSD-3-Clause\"`, `\"(MIT OR Apache-2.0) AND ISC\"`, \
5838 license-with-exception forms like `\"Apache-2.0 WITH LLVM-exception\"`, \
5839 `+`-suffix variants like `\"GPL-2.0+\"`, and user-defined references \
5840 like `\"LicenseRef-MyLicense\"` / \
5841 `\"DocumentRef-doc:LicenseRef-MyLicense\"`. Without this gate a \
5842 malformed `:licenca` (paste-from-doc whitespace `\"MIT \"` / \
5843 `\" MIT\"`; paste-from-multiline-doc CRLF `\"MIT\\n\"`; \
5844 tab-from-aligned-doc `\"MIT\\tOR Apache-2.0\"`; non-ASCII byte from \
5845 a smart-quote paste; underscore-instead-of-hyphen typo \
5846 `\"Apache_2.0\"`; comma-instead-of-`OR`-keyword colloquial idiom \
5847 `\"MIT, Apache-2.0\"`; slash-dual-license colloquial idiom \
5848 `\"MIT/Apache-2.0\"`; semicolon-list-separator confusion \
5849 `\"MIT; Apache-2.0\"`) silently landed in the rendered chart \
5850 `README.md` `## License` section + a future SPDX-aware \
5851 `Chart.yaml license:` emitter would refuse the value at \
5852 `helm lint` time far from the source caixa.lisp; the gate moves \
5853 the diagnostic to the manifest layer with the offending value \
5854 named verbatim)"
5855 )]
5856 LicencaInvalid { licenca: String, reason: String },
5857 #[error(
5858 ":edicao is the empty string (every published caixa names \
5859 its language edition via a non-empty `:edicao` value — the \
5860 edition determines the tatara-lisp macro surface + \
5861 compatibility flags the substrate applies when building \
5862 the caixa; the canonical `Caixa::template` scaffold every \
5863 `feira init` emits carries `:edicao \"2026\"` verbatim and \
5864 every renderer-side fixture (`caixa-helm`, `caixa-flux`, \
5865 `caixa-mesh`) carries `edicao: Some(\"2026\".into())` by \
5866 construction, so an empty `Some(\"\")` silently lands as a \
5867 bare `(:edicao \"\")` line in the rendered `caixa.lisp` and \
5868 a future renderer-side consumer that folds it through \
5869 `Option::unwrap_or_else` will skip the fallback and pass the \
5870 empty edition through to the substrate's build-time edition \
5871 selector far from the source caixa.lisp; omit the slot \
5872 entirely to defer to the substrate's default edition, or \
5873 carry a canonical edition like `\"2026\"`)"
5874 )]
5875 EdicaoEmpty,
5876 #[error(
5877 ":edicao {edicao:?} is not a valid edition: {reason} (every \
5878 documented tatara-lisp edition is a 4-digit ASCII decimal \
5879 year — `\"2026\"` is the only edition currently minted; \
5880 future-introduced siblings will follow the same shape, peer \
5881 with Cargo's `[package] edition` grammar which every value \
5882 Cargo has ever accepted matches: `\"2015\"`, `\"2018\"`, \
5883 `\"2021\"`, `\"2024\"`. Without this gate the canonical \
5884 paste-from-doc footguns silently passed: a trailing space \
5885 (`\"2026 \"`) from a paste-from-doc, a CRLF (`\"2026\\n\"`) \
5886 from a paste-from-multiline-doc, a fullwidth-keyboard \
5887 look-alike (`\"2026\"`), a free-form non-year value \
5888 (`\"x\"`, `\"latest\"`, `\"nightly\"`), a leading non-digit \
5889 version-tag prefix (`\"v2026\"`, `\"e2026\"`), a \
5890 decimal-shaped pseudo-version (`\"2026.1\"`), or a \
5891 wrong-length numeric value (`\"26\"`, `\"202\"`, \
5892 `\"20260\"`) all landed as `(:edicao \"<garbage>\")` in the \
5893 rendered caixa.lisp and broke at the substrate's \
5894 build-time edition selector far from the source caixa.lisp; \
5895 omit the slot entirely to defer to the substrate's default \
5896 edition, or carry a canonical 4-digit ASCII decimal year \
5897 like `\"2026\"`)"
5898 )]
5899 EdicaoInvalid { edicao: String, reason: String },
5900}
5901
5902#[cfg(test)]
5903mod tests {
5904 use super::*;
5905
5906 #[test]
5907 fn template_round_trips() {
5908 let src = Caixa::template("demo");
5909 let c = Caixa::from_lisp(&src).expect("template must parse");
5910 assert_eq!(c.nome, "demo");
5911 assert_eq!(c.versao, "0.1.0");
5912 assert_eq!(c.kind, CaixaKind::Biblioteca);
5913 assert_eq!(c.bibliotecas, vec!["lib/demo.lisp".to_string()]);
5914 assert!(c.deps.is_empty());
5915 assert!(c.deps_dev.is_empty());
5916 }
5917
5918 #[test]
5919 fn caixa_universal_axis_scalar_accessor_pair_is_const_fn() {
5920 // Fail-before-pass-after pin on [`Caixa::nome`] +
5921 // [`Caixa::versao`]'s `const`-eval-surface posture. Each
5922 // accessor projects the top-level manifest's per-`:nome` /
5923 // per-`:versao` [`String`] storage through the `pub const fn`
5924 // [`String::as_str`] (const-stable since Rust 1.87, well within
5925 // the workspace MSRV) — any future accidental downgrade to
5926 // non-`const` fails the corresponding `<name>_via_const_fn`
5927 // wrapper at caixa-core build time with E0015 (`cannot call
5928 // non-const method`), strictly stronger than a runtime
5929 // `assert!`. Sibling of the peer per-M2/M3-slot `String → &str`
5930 // scalar-accessor family pins on the sibling `const`-eval-
5931 // surface passes ([`crate::CaixaVersion::as_str`] at the
5932 // typed-newtype wrapper, [`crate::aplicacao::Membro::nome`] /
5933 // [`crate::aplicacao::Membro::versao_requirement`] at the M3
5934 // membership axis, [`crate::aplicacao::Entrada::hostname`] /
5935 // [`crate::aplicacao::Entrada::destination`] at the M3 ingress
5936 // axis, [`crate::supervisor::ChildSpec::nome`] /
5937 // [`crate::supervisor::ChildSpec::versao_requirement`] at the
5938 // M2 supervisor-tree axis,
5939 // [`crate::upgrade::UpgradeFromEntry::prior_versao`] at the M2
5940 // upgrade axis, [`crate::dep::Dep::nome`] /
5941 // [`crate::dep::Dep::versao_requirement`] at the dep-graph
5942 // axis, and the per-`:contratos`
5943 // [`crate::aplicacao::WitContract::source`] /
5944 // [`crate::aplicacao::WitContract::destination`] /
5945 // [`crate::aplicacao::WitContract::world_ref`] trio the
5946 // sibling pin at 279823b already anchors).
5947 const fn nome_via_const_fn(c: &Caixa) -> &str {
5948 c.nome()
5949 }
5950 const fn versao_via_const_fn(c: &Caixa) -> &str {
5951 c.versao()
5952 }
5953 let src = Caixa::template("demo");
5954 let c = Caixa::from_lisp(&src).expect("template must parse");
5955 assert_eq!(nome_via_const_fn(&c), c.nome());
5956 assert_eq!(versao_via_const_fn(&c), c.versao());
5957 assert_eq!(c.nome(), "demo");
5958 assert_eq!(c.versao(), "0.1.0");
5959 }
5960
5961 #[test]
5962 fn caixa_option_string_scalar_accessor_family_is_const_fn() {
5963 // Fail-before-pass-after pin on the five per-`Caixa`
5964 // `Option<String> → Option<&str>` scalar accessors
5965 // ([`Caixa::licenca`] / [`Caixa::repositorio`] /
5966 // [`Caixa::descricao`] / [`Caixa::edicao`] on the top-level
5967 // manifest's optional universal-axis surface, plus
5968 // [`Caixa::restart_window`] on the M2 supervisor-tree
5969 // per-`SupervisorSpec` peer raw-window-string projection axis).
5970 // Each accessor destructures the typed slot's `Option<String>`
5971 // storage through the `match &self.<field> { Some(s) =>
5972 // Some(s.as_str()), None => None }` shape — routing through
5973 // [`String::as_str`] (const-stable since Rust 1.87, well within
5974 // the workspace MSRV) rather than the non-const
5975 // [`Option::as_deref`] the pre-lift bodies carried — and any
5976 // future accidental downgrade to non-`const` fails the
5977 // corresponding `<name>_via_const_fn` wrapper at caixa-core
5978 // build time with E0015 (`cannot call non-const method`),
5979 // strictly stronger than a runtime `assert!` and strictly
5980 // stronger than a module-scope `const _: () = assert!(…)` pin
5981 // (which cannot be formed on a `&Caixa` fixture because the
5982 // type's `String` / `Option<String>` carriers rule out
5983 // `const`-context value construction; the `const fn` wrapper
5984 // is the load-bearing shape that side-steps the destructor-in-
5985 // const restriction on the value axis while still pinning the
5986 // `const`-fn posture on the callee — mirror of the sibling
5987 // [`caixa_universal_axis_scalar_accessor_pair_is_const_fn`]
5988 // pin's discipline verbatim on the peer non-`Option`
5989 // `String → &str` axis at the same struct).
5990 //
5991 // Peer of the sibling per-M2/M3-slot `Option<String> →
5992 // Option<&str>` accessor family pin
5993 // [`m3_option_string_scalar_accessor_family_is_const_fn`] on
5994 // the M3 mesh-slot atom axes ([`WitContract::endpoint`] /
5995 // [`WitContract::subject`] / [`WitContract::slot`] on the
5996 // per-`:contratos` payload-carrier trio,
5997 // [`Placement::shard_key`] / [`Placement::affinity`] on the
5998 // per-`:placement` optional-scalar pair).
5999 const fn licenca_via_const_fn(c: &Caixa) -> Option<&str> {
6000 c.licenca()
6001 }
6002 const fn repositorio_via_const_fn(c: &Caixa) -> Option<&str> {
6003 c.repositorio()
6004 }
6005 const fn descricao_via_const_fn(c: &Caixa) -> Option<&str> {
6006 c.descricao()
6007 }
6008 const fn edicao_via_const_fn(c: &Caixa) -> Option<&str> {
6009 c.edicao()
6010 }
6011 const fn restart_window_via_const_fn(c: &Caixa) -> Option<&str> {
6012 c.restart_window()
6013 }
6014 // Sweep both the `Some`-carrying arm (author-declared slot,
6015 // the byte-string projection payload) and the `None`-carrying
6016 // arm (author-omitted slot, the default-path projection) on
6017 // every accessor so the `const fn` wrapper family pins each
6018 // axis's canonical two-arm partition through the same const
6019 // dispatch as the runtime path.
6020 let mut c1 = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6021 c1.licenca = Some("MIT".to_string());
6022 c1.repositorio = Some("https://github.com/pleme-io/demo".to_string());
6023 c1.descricao = Some("demo caixa".to_string());
6024 c1.edicao = Some("2024".to_string());
6025 c1.restart_window = Some("60s".to_string());
6026 assert_eq!(licenca_via_const_fn(&c1), c1.licenca());
6027 assert_eq!(repositorio_via_const_fn(&c1), c1.repositorio());
6028 assert_eq!(descricao_via_const_fn(&c1), c1.descricao());
6029 assert_eq!(edicao_via_const_fn(&c1), c1.edicao());
6030 assert_eq!(restart_window_via_const_fn(&c1), c1.restart_window());
6031 assert_eq!(c1.licenca(), Some("MIT"));
6032 assert_eq!(c1.repositorio(), Some("https://github.com/pleme-io/demo"));
6033 assert_eq!(c1.descricao(), Some("demo caixa"));
6034 assert_eq!(c1.edicao(), Some("2024"));
6035 assert_eq!(c1.restart_window(), Some("60s"));
6036 let mut c2 = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6037 c2.licenca = None;
6038 c2.repositorio = None;
6039 c2.descricao = None;
6040 c2.edicao = None;
6041 c2.restart_window = None;
6042 assert_eq!(licenca_via_const_fn(&c2), None);
6043 assert_eq!(repositorio_via_const_fn(&c2), None);
6044 assert_eq!(descricao_via_const_fn(&c2), None);
6045 assert_eq!(edicao_via_const_fn(&c2), None);
6046 assert_eq!(restart_window_via_const_fn(&c2), None);
6047 }
6048
6049 #[test]
6050 fn caixa_outer_copy_return_accessor_pair_is_const_fn() {
6051 // Fail-before-pass-after pin on the two outer-[`Caixa`]
6052 // `Copy`-return accessors — [`Caixa::kind`] on the required
6053 // [`CaixaKind`] enum-discriminant axis and [`Caixa::estrategia`]
6054 // on the M2 supervisor-tree flat-spread `Option<RestartStrategy>`
6055 // axis. Both accessors project a `Copy`-carrier field
6056 // (`CaixaKind: Copy` at caixa-core/src/kind.rs:17,
6057 // `RestartStrategy: Copy` at caixa-core/src/supervisor.rs:33 →
6058 // `Option<RestartStrategy>: Copy`) by value through a bare
6059 // `self.<field>` field-access — no dispatch, no destructor, no
6060 // heap. Any future accidental downgrade to non-`const` fails
6061 // the corresponding `<name>_via_const_fn` wrapper at caixa-core
6062 // build time with E0015 (`cannot call non-const method`),
6063 // strictly stronger than a runtime `assert!` and strictly
6064 // stronger than a module-scope `const _: () = assert!(…)` pin
6065 // (which cannot be formed on a `&Caixa` fixture because the
6066 // type's `String` / `Vec` / `Option<Composite>` carriers rule
6067 // out `const`-context value construction; the `const fn`
6068 // wrapper is the load-bearing shape that side-steps the
6069 // destructor-in-const restriction on the value axis while still
6070 // pinning the `const`-fn posture on the callee — mirror of the
6071 // sibling [`caixa_universal_axis_scalar_accessor_pair_is_const_fn`]
6072 // + [`caixa_option_string_scalar_accessor_family_is_const_fn`]
6073 // pins' discipline verbatim on the peer outer-`Caixa`
6074 // `String → &str` + `Option<String> → Option<&str>` axes at the
6075 // same struct).
6076 //
6077 // Peer of the sibling per-M2/M3-slot `Copy`-return accessor pin
6078 // family on the inner-altitude nested-spec typed-slot
6079 // discriminator axes: [`crate::supervisor::SupervisorSpec::estrategia`]
6080 // + [`crate::supervisor::ChildSpec::restart`] on the M2
6081 // supervisor-tree axis (pinned at 152c868), and
6082 // [`crate::aplicacao::Placement::estrategia`] +
6083 // [`crate::aplicacao::Entrada::port`] on the M3 mesh-slot axis
6084 // (pinned at bafa004) — the outer-`Caixa` altitude is the last
6085 // unlifted altitude for the `Copy`-return-accessor family.
6086 const fn kind_via_const_fn(c: &Caixa) -> CaixaKind {
6087 c.kind()
6088 }
6089 const fn estrategia_via_const_fn(c: &Caixa) -> Option<crate::supervisor::RestartStrategy> {
6090 c.estrategia()
6091 }
6092 // Sweep every arm of both discriminant partitions the accessors
6093 // fan on — every [`CaixaKind`] variant the six-arm required
6094 // discriminant carries (Biblioteca / Binario / Servico /
6095 // Supervisor / Aplicacao / Acao) and both arms of the
6096 // [`Option<RestartStrategy>`] flat-spread supervisor-tree slot
6097 // (`Some(<strategy>)` on an author-declared supervisor and
6098 // `None` on the author-omitted default arm every non-Supervisor
6099 // caixa carries by `#[serde(default)]`) — so the `const fn`
6100 // wrapper family pins the closed-set partition through the
6101 // same const dispatch as the runtime path.
6102 let mut c1 = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6103 c1.kind = CaixaKind::Servico;
6104 c1.estrategia = Some(crate::supervisor::RestartStrategy::OneForAll);
6105 assert_eq!(kind_via_const_fn(&c1), c1.kind());
6106 assert_eq!(estrategia_via_const_fn(&c1), c1.estrategia());
6107 assert_eq!(c1.kind(), CaixaKind::Servico);
6108 assert_eq!(
6109 c1.estrategia(),
6110 Some(crate::supervisor::RestartStrategy::OneForAll)
6111 );
6112 let mut c2 = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6113 c2.kind = CaixaKind::Aplicacao;
6114 c2.estrategia = None;
6115 assert_eq!(kind_via_const_fn(&c2), CaixaKind::Aplicacao);
6116 assert_eq!(estrategia_via_const_fn(&c2), None);
6117 // Anchor the remaining discriminant arms so any future
6118 // reordering of [`CaixaKind`]'s six-variant enum surfaces
6119 // through the wrapper dispatch, not just through the direct
6120 // method call.
6121 for kind in [
6122 CaixaKind::Biblioteca,
6123 CaixaKind::Binario,
6124 CaixaKind::Servico,
6125 CaixaKind::Supervisor,
6126 CaixaKind::Aplicacao,
6127 CaixaKind::Acao,
6128 ] {
6129 let mut c = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6130 c.kind = kind;
6131 assert_eq!(kind_via_const_fn(&c), kind);
6132 }
6133 }
6134
6135 #[test]
6136 fn caixa_outer_string_slice_return_accessor_family_is_const_fn() {
6137 // Fail-before-pass-after pin on the five outer-[`Caixa`]
6138 // `Vec<String> → &[String]` slice-return accessors on the
6139 // universal-axis surface — [`Caixa::autores`] / [`Caixa::etiquetas`]
6140 // / [`Caixa::bibliotecas`] / [`Caixa::exe`] / [`Caixa::servicos`].
6141 // Each body is a bare `self.<field>.as_slice()` dispatch through
6142 // [`Vec::as_slice`] (const-stable since Rust 1.87, well within
6143 // the workspace MSRV). Any future accidental downgrade to
6144 // non-`const` fails the corresponding `<name>_via_const_fn`
6145 // wrapper at caixa-core build time with E0015 (`cannot call
6146 // non-const method`) — mirror of the sibling
6147 // [`caixa_outer_copy_return_accessor_pair_is_const_fn`] pin's
6148 // discipline on the peer outer-`Caixa` `Copy`-return accessor
6149 // axis, and peer of the sibling composite-carrier slice-return
6150 // pin below on the peer outer-`Caixa` composite-slice axis.
6151 const fn autores_via_const_fn(c: &Caixa) -> &[String] {
6152 c.autores()
6153 }
6154 const fn etiquetas_via_const_fn(c: &Caixa) -> &[String] {
6155 c.etiquetas()
6156 }
6157 const fn bibliotecas_via_const_fn(c: &Caixa) -> &[String] {
6158 c.bibliotecas()
6159 }
6160 const fn exe_via_const_fn(c: &Caixa) -> &[String] {
6161 c.exe()
6162 }
6163 const fn servicos_via_const_fn(c: &Caixa) -> &[String] {
6164 c.servicos()
6165 }
6166 // Sweep the empty arm (`autores` / `etiquetas` / `exe` /
6167 // `servicos` — the template's `Vec::new()` default) and the
6168 // populated arm (mutated below) on every accessor so the
6169 // `const fn` wrapper family pins each axis's two-arm partition
6170 // through the same const dispatch as the runtime path.
6171 // [`Caixa::template`] seeds `lib/demo.lisp` into `:bibliotecas`,
6172 // so that arm's "empty" fixture is the populated arm the
6173 // mutation sweep covers.
6174 let c_empty = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6175 assert!(autores_via_const_fn(&c_empty).is_empty());
6176 assert!(etiquetas_via_const_fn(&c_empty).is_empty());
6177 assert!(exe_via_const_fn(&c_empty).is_empty());
6178 assert!(servicos_via_const_fn(&c_empty).is_empty());
6179 let mut c_full = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6180 c_full.autores = vec!["ada".to_string(), "erlang".to_string()];
6181 c_full.etiquetas = vec!["compounding".to_string()];
6182 c_full.bibliotecas = vec!["lib/one.lisp".to_string(), "lib/two.lisp".to_string()];
6183 c_full.exe = vec!["exe/cli.lisp".to_string()];
6184 c_full.servicos = vec!["servicos/one.computeunit.yaml".to_string()];
6185 assert_eq!(autores_via_const_fn(&c_full), c_full.autores());
6186 assert_eq!(autores_via_const_fn(&c_full), &["ada", "erlang"]);
6187 assert_eq!(etiquetas_via_const_fn(&c_full), c_full.etiquetas());
6188 assert_eq!(etiquetas_via_const_fn(&c_full), &["compounding"]);
6189 assert_eq!(bibliotecas_via_const_fn(&c_full), c_full.bibliotecas());
6190 assert_eq!(
6191 bibliotecas_via_const_fn(&c_full),
6192 &["lib/one.lisp", "lib/two.lisp"]
6193 );
6194 assert_eq!(exe_via_const_fn(&c_full), c_full.exe());
6195 assert_eq!(exe_via_const_fn(&c_full), &["exe/cli.lisp"]);
6196 assert_eq!(servicos_via_const_fn(&c_full), c_full.servicos());
6197 assert_eq!(
6198 servicos_via_const_fn(&c_full),
6199 &["servicos/one.computeunit.yaml"]
6200 );
6201 }
6202
6203 #[test]
6204 fn caixa_outer_composite_slice_return_accessor_family_is_const_fn() {
6205 // Fail-before-pass-after pin on the six outer-[`Caixa`] composite-
6206 // carrier `Vec<T> → &[T]` slice-return accessors — [`Caixa::deps`]
6207 // / [`Caixa::deps_dev`] on the dep-graph axis,
6208 // [`Caixa::upgrade_from`] on the M2 appup axis, [`Caixa::children`]
6209 // on the M2 supervisor-tree axis, and [`Caixa::membros`] /
6210 // [`Caixa::contratos`] on the M3 mesh-slot axis. Each body is a
6211 // bare `self.<field>.as_slice()` dispatch through
6212 // [`Vec::as_slice`] (const-stable since Rust 1.87, well within
6213 // the workspace MSRV) — peer of the sibling `String`-payload
6214 // slice-return pin above on the peer outer-`Caixa` universal-
6215 // axis surface, and peer of the sibling inner-composite-
6216 // altitude reference-return pin family
6217 // [`crate::aplicacao::tests::m3_aplicacao_spec_reference_return_accessor_family_is_const_fn`]
6218 // + [`crate::supervisor::tests::supervisor_children_slice_return_accessor_is_const_fn`]
6219 // + [`crate::upgrade::tests::upgrade_from_entry_instructions_slice_return_accessor_is_const_fn`]
6220 // (all pinned at 0b23e0f).
6221 const fn deps_via_const_fn(c: &Caixa) -> &[Dep] {
6222 c.deps()
6223 }
6224 const fn deps_dev_via_const_fn(c: &Caixa) -> &[Dep] {
6225 c.deps_dev()
6226 }
6227 const fn upgrade_from_via_const_fn(c: &Caixa) -> &[UpgradeFromEntry] {
6228 c.upgrade_from()
6229 }
6230 const fn children_via_const_fn(c: &Caixa) -> &[crate::supervisor::ChildSpec] {
6231 c.children()
6232 }
6233 const fn membros_via_const_fn(c: &Caixa) -> &[crate::aplicacao::Membro] {
6234 c.membros()
6235 }
6236 const fn contratos_via_const_fn(c: &Caixa) -> &[crate::aplicacao::WitContract] {
6237 c.contratos()
6238 }
6239 // Empty-arm sweep on all six composite-carrier axes — every
6240 // `Caixa::template` starts with `Vec::new()` on each.
6241 let c_empty = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6242 assert!(deps_via_const_fn(&c_empty).is_empty());
6243 assert!(deps_dev_via_const_fn(&c_empty).is_empty());
6244 assert!(upgrade_from_via_const_fn(&c_empty).is_empty());
6245 assert!(children_via_const_fn(&c_empty).is_empty());
6246 assert!(membros_via_const_fn(&c_empty).is_empty());
6247 assert!(contratos_via_const_fn(&c_empty).is_empty());
6248 // Populate `:membros` / `:contratos` directly via struct literals
6249 // — the parser-side validation path fans on `:kind`-gated cross-
6250 // slot invariants irrelevant to the accessor dispatch under test.
6251 let mut c_full = Caixa::from_lisp(&Caixa::template("demo")).expect("template must parse");
6252 c_full.membros = vec![
6253 crate::aplicacao::Membro {
6254 caixa: "demo-a".to_string(),
6255 versao: "^0.1.0".to_string(),
6256 },
6257 crate::aplicacao::Membro {
6258 caixa: "demo-b".to_string(),
6259 versao: "^0.2.0".to_string(),
6260 },
6261 ];
6262 c_full.contratos = vec![crate::aplicacao::WitContract {
6263 de: "demo-a".to_string(),
6264 para: "demo-b".to_string(),
6265 wit: "wasi:http/proxy".to_string(),
6266 endpoint: Some("/edge".to_string()),
6267 subject: None,
6268 slot: None,
6269 }];
6270 assert_eq!(membros_via_const_fn(&c_full), c_full.membros());
6271 assert_eq!(contratos_via_const_fn(&c_full), c_full.contratos());
6272 assert_eq!(membros_via_const_fn(&c_full).len(), 2);
6273 assert_eq!(contratos_via_const_fn(&c_full).len(), 1);
6274 // Alias-borrow check on the four remaining composite-carrier
6275 // slice-return arms — the wrapper's return borrow must alias the
6276 // caller's borrow so any future accessor re-routing that skips
6277 // the storage field surfaces through the assertion.
6278 assert!(std::ptr::eq(deps_via_const_fn(&c_full), c_full.deps()));
6279 assert!(std::ptr::eq(
6280 deps_dev_via_const_fn(&c_full),
6281 c_full.deps_dev()
6282 ));
6283 assert!(std::ptr::eq(
6284 upgrade_from_via_const_fn(&c_full),
6285 c_full.upgrade_from()
6286 ));
6287 assert!(std::ptr::eq(
6288 children_via_const_fn(&c_full),
6289 c_full.children()
6290 ));
6291 }
6292
6293 #[test]
6294 fn register_populates_registry() {
6295 Caixa::register().expect("first register call in this test process must succeed");
6296 let kws = tatara_lisp::domain::registered_keywords();
6297 assert!(kws.contains(&"defcaixa"));
6298 }
6299
6300 #[test]
6301 fn to_lisp_round_trips() {
6302 let src = Caixa::template("demo");
6303 let c1 = Caixa::from_lisp(&src).unwrap();
6304 let emitted = c1.to_lisp();
6305 let c2 = Caixa::from_lisp(&emitted).expect("emitted lisp parses back");
6306 assert_eq!(c1, c2);
6307 }
6308
6309 // ── DialetoEstrangeiro carries a single typed axis ────────────────────
6310 //
6311 // The compounding pin: the variant stores only the typed
6312 // [`crate::dialeto::CaixaDialeto`], and every user-facing byte-string
6313 // (canonical keyword, description, consumer) routes through the enum's
6314 // own accessors at Display time. Prior to that closure the variant
6315 // carried each accessor's return value as a stored `&'static str`
6316 // snapshot alongside `dialeto`; a caller could construct the variant
6317 // with a snapshot that drifted from what `dialeto`'s accessors would
6318 // return, and every downstream user-facing projection would silently
6319 // disagree with the classification. Storing only the axis makes the
6320 // drift structurally impossible.
6321
6322 #[test]
6323 fn dialeto_estrangeiro_variant_carries_only_the_typed_dialeto_axis() {
6324 // Single-field construction is the whole compounding shape — a
6325 // future re-introduction of a snapshot field (a `palavra_canonica:
6326 // &'static str`, a stored `descricao:`, a stored `consumidor:`)
6327 // would re-open the drift surface and this construction would fail
6328 // to compile with "missing field" until every snapshot was seeded
6329 // at the call site again. The compile-time guarantee is the
6330 // invariant; the assertion below only witnesses that the
6331 // construction is well-formed after the closure.
6332 let err = LeituraError::DialetoEstrangeiro {
6333 dialeto: crate::dialeto::CaixaDialeto::Molde,
6334 };
6335 assert!(matches!(
6336 err,
6337 LeituraError::DialetoEstrangeiro {
6338 dialeto: crate::dialeto::CaixaDialeto::Molde,
6339 }
6340 ));
6341 }
6342
6343 #[test]
6344 fn dialeto_estrangeiro_display_routes_through_typed_dialeto_accessors() {
6345 // For every foreign-dialect classification the variant surfaces —
6346 // [`crate::dialeto::CaixaDialeto::Molde`] and
6347 // [`crate::dialeto::CaixaDialeto::MoldePosicional`], the two
6348 // variants [`Caixa::from_lisp`] raises this error for — the
6349 // rendered [`std::fmt::Display`] byte-string must interpolate each
6350 // typed accessor's return verbatim. A future re-introduction of a
6351 // stored `&'static str` snapshot alongside `dialeto` that Display
6352 // read instead of the accessor would fail this pin as soon as the
6353 // two disagreed; a future accessor rebrand (a per-dialect
6354 // consumer rename, a canonical-keyword shift once the substrate
6355 // migration named in [`crate::dialeto`] completes) reaches every
6356 // consumer through one typed dispatch and this pin verifies the
6357 // display path is one of them.
6358 for d in [
6359 crate::dialeto::CaixaDialeto::Molde,
6360 crate::dialeto::CaixaDialeto::MoldePosicional,
6361 ] {
6362 let rendered = LeituraError::DialetoEstrangeiro { dialeto: d }.to_string();
6363 assert!(
6364 rendered.contains(d.palavra_canonica()),
6365 "Display must interpolate `dialeto.palavra_canonica()` \
6366 verbatim — a stored snapshot would silently drift from \
6367 the typed accessor. dialect: {d}, rendered: {rendered:?}"
6368 );
6369 assert!(
6370 rendered.contains(d.descricao()),
6371 "Display must interpolate `dialeto.descricao()` verbatim. \
6372 dialect: {d}, rendered: {rendered:?}"
6373 );
6374 assert!(
6375 rendered.contains(d.consumidor()),
6376 "Display must interpolate `dialeto.consumidor()` verbatim. \
6377 dialect: {d}, rendered: {rendered:?}"
6378 );
6379 }
6380 }
6381
6382 #[test]
6383 fn from_lisp_rejects_molde_dialect_via_typed_variant() {
6384 // The end-to-end pin the compounding closure defends: a
6385 // Molde-dialect source lands as [`LeituraError::DialetoEstrangeiro`]
6386 // carrying [`crate::dialeto::CaixaDialeto::Molde`], and the
6387 // rendered Display byte-string names the Molde accessors'
6388 // returns verbatim. Any future path that constructed the variant
6389 // with a mismatched snapshot (a stored `palavra_canonica:
6390 // "defcaixa"` on a `Molde` classification) would land Display
6391 // pointing at `defcaixa` while the typed axis said `Molde` — the
6392 // exact drift the closure removes.
6393 let src = r#"
6394 (defcaixa
6395 :name "x"
6396 :kind :Biblioteca
6397 :ecosystem :rust-single-crate
6398 :package {:name "x" :version "0.1.0"})
6399 "#;
6400 let err = Caixa::from_lisp(src).expect_err("Molde dialect must not parse as Pacote");
6401 match err {
6402 LeituraError::DialetoEstrangeiro { dialeto } => {
6403 assert_eq!(dialeto, crate::dialeto::CaixaDialeto::Molde);
6404 let rendered = LeituraError::DialetoEstrangeiro { dialeto }.to_string();
6405 assert!(rendered.contains(dialeto.palavra_canonica()));
6406 assert!(rendered.contains(dialeto.consumidor()));
6407 assert!(rendered.contains(dialeto.descricao()));
6408 }
6409 other => panic!("expected DialetoEstrangeiro, got {other:?}"),
6410 }
6411 }
6412
6413 #[test]
6414 fn from_lisp_rejects_molde_posicional_dialect_via_typed_variant() {
6415 // Coverage pin for the [`crate::dialeto::CaixaDialeto::MoldePosicional`]
6416 // arm of the [`Caixa::from_lisp`] foreign-dialect gate — the
6417 // positional-arity `defmolde` form written under a `(defcaixa …)`
6418 // head (`(defcaixa todoku-go :kind :Biblioteca :ecosystem :go
6419 // …)`). Pre-lift this arm rode the same `foreign =>` wildcard
6420 // the [`crate::dialeto::CaixaDialeto::Molde`] sibling arm rode,
6421 // so no test exercised the positional-arity path through
6422 // `Caixa::from_lisp` specifically; the sibling
6423 // [`from_lisp_rejects_molde_dialect_via_typed_variant`] only
6424 // covered [`crate::dialeto::CaixaDialeto::Molde`]. Post-lift the
6425 // two arms route through the lifted
6426 // [`crate::dialeto::CaixaDialeto::is_molde_family`] (e9d2315)
6427 // typed predicate — the same predicate the pre-lift `foreign =>`
6428 // wildcard resolved to today — and this pin makes the
6429 // positional-arity arm's byte-shape at the gate explicit rather
6430 // than implied by wildcard-absorption. A future regression that
6431 // silently reordered [`crate::dialeto::CaixaDialeto::is_molde_family`]'s
6432 // arm-set (dropped [`crate::dialeto::CaixaDialeto::MoldePosicional`]
6433 // from the two-arity closure) would fail this pin at caixa-core
6434 // test time rather than surfacing far from the change as a
6435 // `caixa.lisp` carrying a `(defcaixa todoku-go :ecosystem :go
6436 // …)` silently parsing past the derive.
6437 let src = r#"
6438 (defcaixa todoku-go
6439 :kind :Biblioteca
6440 :ecosystem :go
6441 :package {:name "todoku-go" :version "0.3.0"})
6442 "#;
6443 let err =
6444 Caixa::from_lisp(src).expect_err("MoldePosicional dialect must not parse as Pacote");
6445 match err {
6446 LeituraError::DialetoEstrangeiro { dialeto } => {
6447 assert_eq!(
6448 dialeto,
6449 crate::dialeto::CaixaDialeto::MoldePosicional,
6450 "DialetoEstrangeiro must carry the MoldePosicional \
6451 variant verbatim — the positional-arity `defmolde` \
6452 form under a `(defcaixa …)` head is the \
6453 `MoldePosicional` arm's canonical byte-shape"
6454 );
6455 let rendered = LeituraError::DialetoEstrangeiro { dialeto }.to_string();
6456 assert!(
6457 rendered.contains(dialeto.palavra_canonica()),
6458 "Display must interpolate `dialeto.palavra_canonica()` \
6459 verbatim on the MoldePosicional arm; rendered: \
6460 {rendered:?}"
6461 );
6462 assert!(
6463 rendered.contains(dialeto.consumidor()),
6464 "Display must interpolate `dialeto.consumidor()` \
6465 verbatim on the MoldePosicional arm; rendered: \
6466 {rendered:?}"
6467 );
6468 assert!(
6469 rendered.contains(dialeto.descricao()),
6470 "Display must interpolate `dialeto.descricao()` \
6471 verbatim on the MoldePosicional arm; rendered: \
6472 {rendered:?}"
6473 );
6474 }
6475 other => panic!("expected DialetoEstrangeiro, got {other:?}"),
6476 }
6477 }
6478
6479 #[test]
6480 fn from_lisp_dialect_gate_dispatches_through_caixa_dialeto_is_molde_family_predicate() {
6481 // Load-bearing byte-parity pin: for every arm in
6482 // [`crate::dialeto::CaixaDialeto::ALL`], the
6483 // [`Caixa::from_lisp`] foreign-dialect gate's DialetoEstrangeiro
6484 // partition must agree with the lifted
6485 // [`crate::dialeto::CaixaDialeto::is_molde_family`] (e9d2315)
6486 // typed predicate — i.e. from_lisp raises
6487 // [`LeituraError::DialetoEstrangeiro`] carrying `d` iff
6488 // `d.is_molde_family()` returns `true`, and does NOT raise
6489 // [`LeituraError::DialetoEstrangeiro`] on any arm where the
6490 // predicate returns `false` (the arm's source falls through to
6491 // the derive — parses cleanly on
6492 // [`crate::dialeto::CaixaDialeto::Pacote`], surfaces a
6493 // [`LeituraError::Leitura`] on
6494 // [`crate::dialeto::CaixaDialeto::Desconhecido`]).
6495 //
6496 // Pre-lift the gate hand-rolled a three-arm match
6497 // (`Pacote => {}`, `Desconhecido => {}`, `foreign => Err(…)`)
6498 // whose `foreign =>` wildcard expressed no compile-time link
6499 // back to the substrate primitive's arm-family; a future fifth
6500 // dialect the [`crate::dialeto`] module doc's "third dialect"
6501 // hazard actualises would fall silently onto the wildcard
6502 // regardless of whether it belonged to the `defmolde` family or
6503 // to a distinct `defcaixa`-family. Post-lift the partition
6504 // resolves through
6505 // [`crate::dialeto::CaixaDialeto::is_molde_family`]'s single
6506 // typed dispatch, and this pin refuses any future regression
6507 // that silently split the from_lisp partition from the typed
6508 // predicate — the two paths now migrate as one on any future
6509 // arm addition.
6510 //
6511 // Sibling in shape to the peer
6512 // [`crate::dialeto::tests::caixa_dialeto_is_molde_family_agrees_with_palavra_canonica_defmolde_projection`]
6513 // (e9d2315) that pins the same byte-parity between
6514 // [`crate::dialeto::CaixaDialeto::is_molde_family`] and the
6515 // sibling [`crate::dialeto::CaixaDialeto::palavra_canonica`]
6516 // `== "defmolde"` classifier — extends the discipline from the
6517 // two paths within the [`crate::dialeto`] primitive onto the
6518 // third external consumer of the `defmolde`-family partition
6519 // (the [`Caixa::from_lisp`] gate that raises
6520 // [`LeituraError::DialetoEstrangeiro`]).
6521 let fixtures: &[(crate::dialeto::CaixaDialeto, &str)] = &[
6522 (
6523 crate::dialeto::CaixaDialeto::Pacote,
6524 r#"
6525 (defcaixa
6526 :nome "checkout"
6527 :versao "0.1.0"
6528 :kind Biblioteca
6529 :edicao "2026"
6530 :descricao "canonical Pacote source"
6531 :autores ()
6532 :etiquetas ()
6533 :deps ()
6534 :deps-dev ()
6535 :bibliotecas ("lib/checkout.lisp"))
6536 "#,
6537 ),
6538 (
6539 crate::dialeto::CaixaDialeto::Molde,
6540 r#"
6541 (defcaixa
6542 :name "base64"
6543 :kind :Biblioteca
6544 :ecosystem :rust-single-crate
6545 :package {:name "base64" :version "0.22.1"}
6546 :workflows [:auto-release])
6547 "#,
6548 ),
6549 (
6550 crate::dialeto::CaixaDialeto::MoldePosicional,
6551 r#"
6552 (defcaixa todoku-go
6553 :kind :Biblioteca
6554 :ecosystem :go
6555 :package {:name "todoku-go" :version "0.3.0"})
6556 "#,
6557 ),
6558 (
6559 crate::dialeto::CaixaDialeto::Desconhecido,
6560 r#"(defcaixa :licenca "MIT")"#,
6561 ),
6562 ];
6563
6564 // Coverage: every arm in [`crate::dialeto::CaixaDialeto::ALL`]
6565 // must appear in the fixture table so the pin's arm-set stays
6566 // synchronised with the enum's arm-set. Fails at test time if a
6567 // future fifth arm added to [`crate::dialeto::CaixaDialeto`]
6568 // (with a corresponding `is_molde_family` return) forgot to
6569 // extend this fixture table with a canonical source for the new
6570 // arm — the pin cannot cover an arm it has no source for.
6571 for &expected in crate::dialeto::CaixaDialeto::ALL {
6572 assert!(
6573 fixtures.iter().any(|(d, _)| *d == expected),
6574 "fixture table must carry a canonical source for every \
6575 CaixaDialeto arm; missing: {expected:?}"
6576 );
6577 }
6578
6579 for &(expected_dialect, src) in fixtures {
6580 let classified = crate::dialeto::classify(src.trim()).unwrap_or_else(|err| {
6581 panic!(
6582 "fixture source for {expected_dialect:?} must classify \
6583 cleanly, got err: {err:?}"
6584 )
6585 });
6586 assert_eq!(
6587 classified, expected_dialect,
6588 "fixture source for {expected_dialect:?} must classify as \
6589 {expected_dialect:?} (drift here defeats the byte-parity \
6590 pin below — a source labelled for one arm but classifying \
6591 as another would silently satisfy or violate the pin for \
6592 the wrong reason)"
6593 );
6594
6595 let outcome = Caixa::from_lisp(src);
6596 match (expected_dialect.is_molde_family(), &outcome) {
6597 (true, Err(LeituraError::DialetoEstrangeiro { dialeto })) => {
6598 assert_eq!(
6599 *dialeto, expected_dialect,
6600 "DialetoEstrangeiro must carry the same typed arm \
6601 the classifier returned — a drift here would let \
6602 from_lisp raise the error while pointing at the \
6603 wrong dialect (e.g. rejecting a \
6604 MoldePosicional source as Molde). arm: \
6605 {expected_dialect:?}"
6606 );
6607 }
6608 (true, other) => panic!(
6609 "arm {expected_dialect:?} has is_molde_family() = true \
6610 so from_lisp must raise DialetoEstrangeiro carrying \
6611 {expected_dialect:?}; got: {other:?}"
6612 ),
6613 (false, Err(LeituraError::DialetoEstrangeiro { dialeto })) => panic!(
6614 "arm {expected_dialect:?} has is_molde_family() = false \
6615 so from_lisp must NOT raise DialetoEstrangeiro; got \
6616 one carrying: {dialeto:?}. This means the typed \
6617 predicate and the from_lisp partition disagree on \
6618 this arm — exactly the drift this pin refuses."
6619 ),
6620 (false, _) => {
6621 // A non-molde arm's source falls through to the
6622 // derive: Pacote sources parse to Ok(_); Desconhecido
6623 // sources surface as LeituraError::Leitura from the
6624 // derive's own unknown-keyword rejection. Either
6625 // shape is acceptable here — the pin's promise is
6626 // narrower: "no DialetoEstrangeiro on
6627 // is_molde_family() == false".
6628 }
6629 }
6630 }
6631 }
6632
6633 // ── M2 typed-substrate slot tests (limits, behavior, upgrade-from, supervisor) ──
6634
6635 #[test]
6636 fn limits_round_trip_via_json() {
6637 use crate::LimitsSpec;
6638 use std::time::Duration;
6639 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6640 c.limits = Some(LimitsSpec {
6641 memory: Some(64 * 1024 * 1024),
6642 fuel: Some(1_000_000),
6643 wall_clock: Some(Duration::from_secs(30)),
6644 cpu: Some(500),
6645 });
6646 let json = serde_json::to_string(&c).unwrap();
6647 assert!(json.contains("\"limits\""));
6648 assert!(json.contains("\"64MiB\""));
6649 assert!(json.contains("\"30s\""));
6650 assert!(json.contains("\"500m\""));
6651 let back: Caixa = serde_json::from_str(&json).unwrap();
6652 assert_eq!(c.limits, back.limits);
6653 }
6654
6655 #[test]
6656 fn behavior_round_trip_via_json() {
6657 use crate::BehaviorSpec;
6658 use std::path::PathBuf;
6659 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6660 c.behavior = Some(BehaviorSpec {
6661 on_init: Some(PathBuf::from("lib/init.lisp")),
6662 on_call: Some(PathBuf::from("lib/handlers.lisp")),
6663 ..Default::default()
6664 });
6665 let json = serde_json::to_string(&c).unwrap();
6666 let back: Caixa = serde_json::from_str(&json).unwrap();
6667 assert_eq!(c.behavior, back.behavior);
6668 }
6669
6670 #[test]
6671 fn upgrade_from_round_trip_via_json() {
6672 use crate::{UpgradeFromEntry, UpgradeInstruction};
6673 use std::path::PathBuf;
6674 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6675 c.upgrade_from = vec![UpgradeFromEntry {
6676 from: "0.1.0".into(),
6677 instructions: vec![
6678 UpgradeInstruction::LoadModule {
6679 module: "demo".into(),
6680 },
6681 UpgradeInstruction::StateChange {
6682 script: PathBuf::from("lib/migrations/v01-to-v02.lisp"),
6683 },
6684 UpgradeInstruction::SoftPurge {
6685 module: "demo-old".into(),
6686 },
6687 ],
6688 }];
6689 let json = serde_json::to_string(&c).unwrap();
6690 let back: Caixa = serde_json::from_str(&json).unwrap();
6691 assert_eq!(c.upgrade_from, back.upgrade_from);
6692 }
6693
6694 #[test]
6695 fn supervisor_view_returns_typed_shape() {
6696 use crate::{ChildSpec, RestartPolicy, RestartStrategy};
6697 let mut c = Caixa::from_lisp(&Caixa::template("root")).unwrap();
6698 c.kind = CaixaKind::Supervisor;
6699 c.bibliotecas.clear();
6700 c.estrategia = Some(RestartStrategy::OneForOne);
6701 c.max_restarts = Some(5);
6702 c.restart_window = Some("60s".into());
6703 c.children = vec![ChildSpec {
6704 caixa: "worker".into(),
6705 versao: "^0.1".into(),
6706 restart: RestartPolicy::Permanent,
6707 }];
6708 let view = c.supervisor_view().expect("Supervisor kind has a view");
6709 assert_eq!(view.estrategia, RestartStrategy::OneForOne);
6710 assert_eq!(view.max_restarts, 5);
6711 assert_eq!(
6712 view.restart_window,
6713 Some(std::time::Duration::from_secs(60))
6714 );
6715 assert_eq!(view.children.len(), 1);
6716 view.validate().unwrap();
6717 }
6718
6719 #[test]
6720 fn supervisor_view_none_for_non_supervisor_kinds() {
6721 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6722 assert!(c.supervisor_view().is_none());
6723 }
6724
6725 #[test]
6726 fn declared_mesh_slots_empty_for_bare_caixa() {
6727 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6728 assert!(c.declared_mesh_slots().is_empty());
6729 }
6730
6731 #[test]
6732 fn declared_mesh_slots_reports_only_set_slots_in_canonical_order() {
6733 use crate::{Entrada, Membro};
6734 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6735 // Set a non-adjacent pair (:membros + :entrada) to pin that the
6736 // canonical declaration order is preserved regardless of which
6737 // subset is populated.
6738 c.membros = vec![Membro {
6739 caixa: "a".into(),
6740 versao: "^0.1".into(),
6741 }];
6742 c.entrada = Some(Entrada {
6743 host: "x.example.com".into(),
6744 para: "a".into(),
6745 paths: vec![],
6746 port: 8080,
6747 });
6748 assert_eq!(
6749 c.declared_mesh_slots(),
6750 vec![
6751 crate::render::M3_AUTHOR_KEY_MEMBROS,
6752 crate::render::M3_AUTHOR_KEY_ENTRADA,
6753 ]
6754 );
6755 }
6756
6757 #[test]
6758 fn m3_top_level_author_key_consts_pin_canonical_kebab_case_labels() {
6759 // Scalar-value pin: the five author-facing kebab-case labels the
6760 // `(defcaixa … :<slot> (…))` surface admits on the M3 top-level
6761 // mesh slot axis, one arm per typed slot. Mirrors the peer
6762 // scalar-value pin the sibling
6763 // [`crate::M2_AUTHOR_KEY_LIMITS`] /
6764 // [`crate::M2_AUTHOR_KEY_BEHAVIOR`] /
6765 // [`crate::M2_AUTHOR_KEY_UPGRADE_FROM`] M2 top-level slot consts
6766 // carry (f49c8b0), so both altitudes of the typed-slot algebra
6767 // (per-Servico M2 + per-Aplicacao M3) share the same
6768 // "one canonical byte-string per arm" discipline. A future
6769 // rebrand (`:membros` → `:members`, `:contratos` → `:contracts`,
6770 // `:politicas` → `:policies`, `:placement` → `:distribution`,
6771 // `:entrada` → `:ingress`) lands as an edit to exactly one const,
6772 // and every consumer that reaches for the label picks it up at
6773 // build time rather than at runtime as a downstream mismatch.
6774 assert_eq!(crate::render::M3_AUTHOR_KEY_MEMBROS, ":membros");
6775 assert_eq!(crate::render::M3_AUTHOR_KEY_CONTRATOS, ":contratos");
6776 assert_eq!(crate::render::M3_AUTHOR_KEY_POLITICAS, ":politicas");
6777 assert_eq!(crate::render::M3_AUTHOR_KEY_PLACEMENT, ":placement");
6778 assert_eq!(crate::render::M3_AUTHOR_KEY_ENTRADA, ":entrada");
6779 }
6780
6781 #[test]
6782 fn declared_mesh_slots_route_through_lifted_m3_author_key_consts() {
6783 // Production-through-const pin: the five per-arm labels the
6784 // [`Caixa::declared_mesh_slots`] tagger pushes onto its return
6785 // `Vec` route through the lifted
6786 // [`crate::M3_AUTHOR_KEY_MEMBROS`] /
6787 // [`crate::M3_AUTHOR_KEY_CONTRATOS`] /
6788 // [`crate::M3_AUTHOR_KEY_POLITICAS`] /
6789 // [`crate::M3_AUTHOR_KEY_PLACEMENT`] /
6790 // [`crate::M3_AUTHOR_KEY_ENTRADA`] consts, in canonical
6791 // declaration order. A future re-order or drift at the tagger
6792 // (a rename that reaches the tagger but not the const, or vice
6793 // versa) surfaces here at build time rather than at runtime as
6794 // a [`crate::LayoutError::MeshSlotsOnNonAplicacao`]
6795 // `slots: <stale-kebab-case>` diagnostic far from the rename's
6796 // commit. Mirror of the peer
6797 // [`declared_servico_slots_route_through_lifted_m2_author_key_consts`]
6798 // pin (f49c8b0) on the sibling per-Servico M2 top-level slot
6799 // axis.
6800 use crate::{Entrada, Membro, MeshPolicy, Placement, PlacementStrategy, WitContract};
6801 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6802 c.membros = vec![Membro {
6803 caixa: "a".into(),
6804 versao: "^0.1".into(),
6805 }];
6806 c.contratos = vec![WitContract {
6807 de: "a".into(),
6808 para: "a".into(),
6809 wit: "wasi:http/proxy".into(),
6810 endpoint: Some("/x".into()),
6811 subject: None,
6812 slot: None,
6813 }];
6814 c.politicas = Some(MeshPolicy::default());
6815 c.placement = Some(Placement {
6816 estrategia: PlacementStrategy::Replicated,
6817 clusters: vec!["rio".into()],
6818 affinity: None,
6819 shard_key: None,
6820 });
6821 c.entrada = Some(Entrada {
6822 host: "x.example.com".into(),
6823 para: "a".into(),
6824 paths: vec![],
6825 port: 8080,
6826 });
6827 assert_eq!(
6828 c.declared_mesh_slots(),
6829 vec![
6830 crate::render::M3_AUTHOR_KEY_MEMBROS,
6831 crate::render::M3_AUTHOR_KEY_CONTRATOS,
6832 crate::render::M3_AUTHOR_KEY_POLITICAS,
6833 crate::render::M3_AUTHOR_KEY_PLACEMENT,
6834 crate::render::M3_AUTHOR_KEY_ENTRADA,
6835 ]
6836 );
6837 }
6838
6839 #[test]
6840 fn declared_supervisor_slots_empty_for_bare_caixa() {
6841 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6842 assert!(c.declared_supervisor_slots().is_empty());
6843 }
6844
6845 #[test]
6846 fn declared_supervisor_slots_reports_only_set_slots_in_canonical_order() {
6847 use crate::RestartStrategy;
6848 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6849 // Set a non-adjacent pair (:estrategia + :restart-window) to pin
6850 // that the canonical declaration order is preserved regardless
6851 // of which subset is populated.
6852 c.estrategia = Some(RestartStrategy::OneForOne);
6853 c.restart_window = Some("60s".into());
6854 assert_eq!(
6855 c.declared_supervisor_slots(),
6856 vec![
6857 crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA,
6858 crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW,
6859 ]
6860 );
6861 }
6862
6863 #[test]
6864 fn supervisor_top_level_author_key_consts_pin_canonical_kebab_case_labels() {
6865 // Scalar-value pin: the four author-facing kebab-case labels the
6866 // `(defcaixa … :<slot> (…))` surface admits on the Supervisor
6867 // supervision-tree slot axis, one arm per typed slot. Mirrors the
6868 // peer scalar-value pins the sibling
6869 // [`crate::render::M2_AUTHOR_KEY_LIMITS`] /
6870 // [`crate::render::M2_AUTHOR_KEY_BEHAVIOR`] /
6871 // [`crate::render::M2_AUTHOR_KEY_UPGRADE_FROM`] top-level M2 slot
6872 // consts and [`crate::render::M3_AUTHOR_KEY_MEMBROS`] etc.
6873 // top-level M3 slot consts carry, so all three kind-scoped
6874 // typed-slot-family author-facing-label axes route through one
6875 // canonical per-arm declaration. A future rebrand
6876 // (`:estrategia` → `:strategy` for English uniformity,
6877 // `:max-restarts` → `:max-intensity` matching Erlang/OTP's
6878 // `MaxIntensity` name, `:restart-window` → `:period` matching
6879 // OTP's `Period` name, `:children` → `:workers` matching Elixir
6880 // idiom) lands as an edit to exactly one const, and every
6881 // consumer that reaches for the label picks it up at build time
6882 // rather than at runtime as a downstream mismatch.
6883 assert_eq!(
6884 crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA,
6885 ":estrategia"
6886 );
6887 assert_eq!(
6888 crate::render::SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS,
6889 ":max-restarts"
6890 );
6891 assert_eq!(
6892 crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW,
6893 ":restart-window"
6894 );
6895 assert_eq!(crate::render::SUPERVISOR_AUTHOR_KEY_CHILDREN, ":children");
6896 }
6897
6898 #[test]
6899 fn declared_supervisor_slots_route_through_lifted_supervisor_author_key_consts() {
6900 // Production-through-const pin: the four per-arm labels the
6901 // [`Caixa::declared_supervisor_slots`] tagger pushes onto its
6902 // return `Vec` route through the lifted
6903 // [`crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA`] /
6904 // [`crate::render::SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS`] /
6905 // [`crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW`] /
6906 // [`crate::render::SUPERVISOR_AUTHOR_KEY_CHILDREN`] consts, in
6907 // canonical declaration order. A future re-order or drift at the
6908 // tagger (a rename that reaches the tagger but not the const, or
6909 // vice versa) surfaces here at build time rather than at runtime
6910 // as a [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`]
6911 // `slots: <stale-kebab-case>` diagnostic far from the rename's
6912 // commit. Mirror of the peer
6913 // [`declared_servico_slots_route_through_lifted_m2_author_key_consts`]
6914 // (f49c8b0) and
6915 // [`declared_mesh_slots_route_through_lifted_m3_author_key_consts`]
6916 // (882f498) pins on the sibling M2 / M3 top-level slot axes.
6917 use crate::{ChildSpec, RestartPolicy, RestartStrategy};
6918 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6919 c.estrategia = Some(RestartStrategy::OneForOne);
6920 c.max_restarts = Some(5);
6921 c.restart_window = Some("60s".into());
6922 c.children = vec![ChildSpec {
6923 caixa: "worker".into(),
6924 versao: "^0.1".into(),
6925 restart: RestartPolicy::Permanent,
6926 }];
6927 assert_eq!(
6928 c.declared_supervisor_slots(),
6929 vec![
6930 crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA,
6931 crate::render::SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS,
6932 crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW,
6933 crate::render::SUPERVISOR_AUTHOR_KEY_CHILDREN,
6934 ]
6935 );
6936 }
6937
6938 #[test]
6939 fn declared_servico_slots_empty_for_bare_caixa() {
6940 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6941 assert!(c.declared_servico_slots().is_empty());
6942 }
6943
6944 #[test]
6945 fn declared_servico_slots_reports_only_set_slots_in_canonical_order() {
6946 use crate::{UpgradeFromEntry, UpgradeInstruction};
6947 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
6948 // Set a non-adjacent pair (:limits + :upgrade-from) to pin that
6949 // the canonical declaration order is preserved regardless of
6950 // which subset is populated.
6951 c.limits = Some(crate::LimitsSpec {
6952 fuel: Some(1_000_000),
6953 ..Default::default()
6954 });
6955 c.upgrade_from = vec![UpgradeFromEntry {
6956 from: "0.1.0".into(),
6957 instructions: vec![UpgradeInstruction::Restart],
6958 }];
6959 assert_eq!(
6960 c.declared_servico_slots(),
6961 vec![
6962 crate::render::M2_AUTHOR_KEY_LIMITS,
6963 crate::render::M2_AUTHOR_KEY_UPGRADE_FROM,
6964 ]
6965 );
6966 }
6967
6968 #[test]
6969 fn m2_top_level_author_key_consts_pin_canonical_kebab_case_labels() {
6970 // Scalar-value pin: the three author-facing kebab-case labels
6971 // the `(defcaixa … :<slot> (…))` surface admits on the M2
6972 // top-level slot axis, one arm per typed slot. Mirrors the peer
6973 // scalar-value pin the sibling renderer-side
6974 // [`crate::M2_KEY_LIMITS`] / [`crate::M2_KEY_BEHAVIOR`] /
6975 // [`crate::M2_KEY_UPGRADE_FROM`] camelCase overlay-container
6976 // consts carry, so both halves of the M2 top-level slot dual
6977 // axis (author-facing kebab-case label + renderer-side
6978 // camelCase overlay-container wire key) route through one
6979 // canonical per-arm declaration. A future rebrand
6980 // (`:limits` → `:sandbox` matching Lunatic per-process
6981 // terminology INSPIRATIONS §III.1, `:behavior` → `:gen-server`
6982 // matching Erlang's verbatim name, `:upgrade-from` → `:appup`
6983 // matching Erlang's verbatim appup name) lands as an edit to
6984 // exactly one const, and every consumer that reaches for the
6985 // label picks it up at build time rather than at runtime as a
6986 // downstream mismatch.
6987 assert_eq!(crate::render::M2_AUTHOR_KEY_LIMITS, ":limits");
6988 assert_eq!(crate::render::M2_AUTHOR_KEY_BEHAVIOR, ":behavior");
6989 assert_eq!(crate::render::M2_AUTHOR_KEY_UPGRADE_FROM, ":upgrade-from");
6990 }
6991
6992 #[test]
6993 fn declared_servico_slots_route_through_lifted_m2_author_key_consts() {
6994 // Production-through-const pin: the three per-arm labels the
6995 // [`Caixa::declared_servico_slots`] tagger pushes onto its
6996 // return `Vec` route through the lifted
6997 // [`crate::M2_AUTHOR_KEY_LIMITS`] /
6998 // [`crate::M2_AUTHOR_KEY_BEHAVIOR`] /
6999 // [`crate::M2_AUTHOR_KEY_UPGRADE_FROM`] consts, in canonical
7000 // declaration order. A future re-order or drift at the tagger
7001 // (a rename that reaches the tagger but not the const, or vice
7002 // versa) surfaces here at build time rather than at runtime as
7003 // a [`crate::LayoutError::ServicoSlotsOnNonServico`]
7004 // `slots: <stale-kebab-case>` diagnostic far from the rename's
7005 // commit. Mirror of the peer
7006 // [`crate::behavior::BehaviorSpec::declared_slots`] production
7007 // tagger pin (889dc18) on the sibling per-callback axis.
7008 use crate::{BehaviorSpec, UpgradeFromEntry, UpgradeInstruction};
7009 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7010 c.limits = Some(crate::LimitsSpec {
7011 fuel: Some(1_000_000),
7012 ..Default::default()
7013 });
7014 c.behavior = Some(BehaviorSpec {
7015 on_init: Some(PathBuf::from("lib/init.lisp")),
7016 ..Default::default()
7017 });
7018 c.upgrade_from = vec![UpgradeFromEntry {
7019 from: "0.1.0".into(),
7020 instructions: vec![UpgradeInstruction::Restart],
7021 }];
7022 assert_eq!(
7023 c.declared_servico_slots(),
7024 vec![
7025 crate::render::M2_AUTHOR_KEY_LIMITS,
7026 crate::render::M2_AUTHOR_KEY_BEHAVIOR,
7027 crate::render::M2_AUTHOR_KEY_UPGRADE_FROM,
7028 ]
7029 );
7030 }
7031
7032 #[test]
7033 fn existing_manifests_unaffected_by_new_optional_slots() {
7034 // Regression test: a caixa.lisp authored before M2 typed slots
7035 // should still parse + serialize cleanly. The bare `defcaixa`
7036 // emitted by `Caixa::template` has none of the new fields.
7037 let src = Caixa::template("legacy");
7038 let c = Caixa::from_lisp(&src).unwrap();
7039 assert!(c.limits.is_none());
7040 assert!(c.behavior.is_none());
7041 assert!(c.upgrade_from.is_empty());
7042 assert!(c.estrategia.is_none());
7043 assert!(c.children.is_empty());
7044
7045 // And to_lisp emits a manifest with the new slots in the
7046 // empty/default state — round-trippable.
7047 let emitted = c.to_lisp();
7048 let back = Caixa::from_lisp(&emitted).unwrap();
7049 assert_eq!(c, back);
7050 }
7051
7052 #[test]
7053 fn validate_deps_accepts_canonical_caixa() {
7054 // Positive control: the bare template — zero deps, zero
7055 // deps_dev — passes the gate trivially. A future axis added to
7056 // `Dep::validate` mustn't regress an empty-deps caixa to a
7057 // build error.
7058 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7059 c.validate_deps().unwrap();
7060 }
7061
7062 #[test]
7063 fn validate_deps_rejects_invalid_versao_in_deps() {
7064 // Fail-before-pass-after pin: a malformed `:deps :versao`
7065 // surfaces at validate_deps() time, not at lacre-resolve time.
7066 // Mirrors `rejects_invalid_membro_versao_requirement` and
7067 // `validate_rejects_invalid_child_versao_requirement` on the
7068 // other two `:versao` axes.
7069 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7070 c.deps = vec![Dep::simple("caixa-teia", "^bad-version")];
7071 let err = c.validate_deps().unwrap_err();
7072 assert!(
7073 matches!(
7074 err,
7075 crate::dep::DepError::VersaoInvalid { ref nome, ref versao, .. }
7076 if nome == "caixa-teia" && versao == "^bad-version"
7077 ),
7078 "got {err:?}"
7079 );
7080 }
7081
7082 #[test]
7083 fn validate_deps_rejects_invalid_versao_in_deps_dev() {
7084 // Parity pin: `:deps-dev` must run through the same per-entry
7085 // validator as `:deps` — a typo in either axis surfaces the
7086 // same diagnostic. Without this leg, `:deps-dev` would be a
7087 // second-class citizen of the typed surface and an author
7088 // could land a build that passes validate_deps but fails at
7089 // `feira lock`-time when the dev-dep is resolved for a test
7090 // build.
7091 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7092 c.deps_dev = vec![Dep::simple("tatara-check", "^^0.1")];
7093 let err = c.validate_deps().unwrap_err();
7094 assert!(
7095 matches!(
7096 err,
7097 crate::dep::DepError::VersaoInvalid { ref nome, ref versao, .. }
7098 if nome == "tatara-check" && versao == "^^0.1"
7099 ),
7100 "got {err:?}"
7101 );
7102 }
7103
7104 #[test]
7105 fn validate_deps_runs_deps_before_deps_dev() {
7106 // Order pin: when both lists carry typos, the `:deps`
7107 // diagnostic surfaces first. The author's mental model is
7108 // "runtime deps are load-bearing; dev deps are scaffolding";
7109 // surfacing the runtime axis first matches that hierarchy.
7110 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7111 c.deps = vec![Dep::simple("runtime-dep", "^bad-runtime")];
7112 c.deps_dev = vec![Dep::simple("dev-dep", "^bad-dev")];
7113 let err = c.validate_deps().unwrap_err();
7114 assert!(
7115 matches!(
7116 err,
7117 crate::dep::DepError::VersaoInvalid { ref nome, .. }
7118 if nome == "runtime-dep"
7119 ),
7120 "expected `:deps` typo to surface first, got {err:?}"
7121 );
7122 }
7123
7124 #[test]
7125 fn validate_deps_accepts_canonical_versao_forms_in_both_lists() {
7126 // Positive control sweep across both lists. Pin every
7127 // canonical Cargo-shaped form so a future tightening of the
7128 // accepted set surfaces here as a test failure (parity with
7129 // `accepts_canonical_membro_versao_forms` and
7130 // `validate_accepts_canonical_child_versao_forms`).
7131 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7132 c.deps = vec![
7133 Dep::simple("caret", "^0.1"),
7134 Dep::simple("tilde", "~0.1.2"),
7135 Dep::simple("exact", "0.1.0"),
7136 Dep::simple("wildcard", "*"),
7137 Dep::simple("multi-range", ">=0.1, <2"),
7138 ];
7139 c.deps_dev = vec![
7140 Dep::simple("dev-caret", "^0.1"),
7141 Dep::simple("dev-wildcard", "*"),
7142 ];
7143 c.validate_deps().unwrap();
7144 }
7145
7146 #[test]
7147 fn validate_deps_diagnostic_carries_offending_dep() {
7148 // Diagnostic-shape pin: the error names the offending entry's
7149 // `:nome` + `:versao` verbatim and carries a non-empty
7150 // `reason` from `semver::VersionReq::parse`, so a `feira lint`
7151 // run can render the diagnostic without re-parsing.
7152 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7153 c.deps = vec![Dep::simple("caixa-teia", "not-a-req")];
7154 let err = c.validate_deps().unwrap_err();
7155 let crate::dep::DepError::VersaoInvalid {
7156 nome,
7157 versao,
7158 reason,
7159 } = err
7160 else {
7161 panic!("expected VersaoInvalid, got other variant");
7162 };
7163 assert_eq!(nome, "caixa-teia");
7164 assert_eq!(versao, "not-a-req");
7165 assert!(
7166 !reason.is_empty(),
7167 "VersaoInvalid `reason` must carry the parser's wording verbatim"
7168 );
7169 }
7170
7171 #[test]
7172 fn validate_deps_rejects_ambiguous_fonte_in_deps_dev() {
7173 // Cross-axis pin: `validate_deps` walks both :deps and
7174 // :deps-dev through `Dep::validate`, and the new fonte gate
7175 // (`:tag` + `:branch` both set — the canonical "pin drift"
7176 // footgun) must surface from the :deps-dev arm with the
7177 // offending entry's :nome named. Pin the :deps-dev arm
7178 // explicitly so a future shortcut that only walks :deps
7179 // surfaces here as a regression.
7180 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7181 c.deps_dev = vec![Dep {
7182 nome: "dev-only".into(),
7183 versao: "^0.1".into(),
7184 fonte: Some(crate::DepSource::Git {
7185 repo: "github:p/x".into(),
7186 tag: Some("v1".into()),
7187 rev: None,
7188 branch: Some("main".into()),
7189 }),
7190 opcional: false,
7191 caracteristicas: vec![],
7192 }];
7193 let err = c.validate_deps().unwrap_err();
7194 let crate::dep::DepError::FontePinAmbiguous { nome, pins } = err else {
7195 panic!("expected FontePinAmbiguous from :deps-dev walk");
7196 };
7197 assert_eq!(nome, "dev-only");
7198 assert!(pins.contains(":tag") && pins.contains(":branch"));
7199 }
7200
7201 #[test]
7202 fn validate_deps_rejects_empty_repo_in_deps() {
7203 // Parity pin on the :deps arm: an empty :repo on the runtime
7204 // deps list surfaces the same FonteRepoEmpty diagnostic the
7205 // dep.rs per-entry tests pin, naming the offending entry.
7206 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7207 c.deps = vec![Dep {
7208 nome: "runtime".into(),
7209 versao: "^0.1".into(),
7210 fonte: Some(crate::DepSource::Git {
7211 repo: String::new(),
7212 tag: Some("v1".into()),
7213 rev: None,
7214 branch: None,
7215 }),
7216 opcional: false,
7217 caracteristicas: vec![],
7218 }];
7219 let err = c.validate_deps().unwrap_err();
7220 assert!(
7221 matches!(
7222 err,
7223 crate::dep::DepError::FonteRepoEmpty { ref nome }
7224 if nome == "runtime"
7225 ),
7226 "got {err:?}"
7227 );
7228 }
7229
7230 // ── validate_deps: within-list :nome set-not-multiset gate ─────────
7231
7232 #[test]
7233 fn validate_deps_rejects_duplicate_nome_in_deps() {
7234 // Fail-before-pass-after pin: two `:deps` entries naming the same
7235 // caixa carry two `:versao` / `:fonte` / feature triples that the
7236 // caixa-resolver's lacre pipeline collapses (the second silently
7237 // overwrites the first at `concrete_versao`-resolve time). The
7238 // gate surfaces the duplicate at validate-time, naming the
7239 // offending caixa + the list, before the resolver-side silent
7240 // drop. Mirrors the peer typed-graph duplicate gates
7241 // (`DuplicateChildCaixa`, `MembroDuplicate`, `DuplicateFrom`, …).
7242 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7243 c.deps = vec![
7244 Dep::simple("caixa-teia", "^0.1"),
7245 Dep::simple("caixa-teia", "^0.2"),
7246 ];
7247 let err = c.validate_deps().unwrap_err();
7248 assert!(
7249 matches!(
7250 err,
7251 crate::dep::DepError::DuplicateNome { ref nome, list }
7252 if nome == "caixa-teia" && list == crate::render::DEP_AUTHOR_KEY_DEPS
7253 ),
7254 "got {err:?}"
7255 );
7256 }
7257
7258 #[test]
7259 fn validate_deps_rejects_duplicate_nome_in_deps_dev() {
7260 // Parity pin: `:deps-dev` runs through the same per-list
7261 // duplicate check as `:deps` — neither axis is a second-class
7262 // citizen of the set-not-multiset discipline.
7263 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7264 c.deps_dev = vec![
7265 Dep::simple("tatara-check", "*"),
7266 Dep::simple("tatara-check", "^0.1"),
7267 ];
7268 let err = c.validate_deps().unwrap_err();
7269 assert!(
7270 matches!(
7271 err,
7272 crate::dep::DepError::DuplicateNome { ref nome, list }
7273 if nome == "tatara-check" && list == crate::render::DEP_AUTHOR_KEY_DEPS_DEV
7274 ),
7275 "got {err:?}"
7276 );
7277 }
7278
7279 #[test]
7280 fn validate_deps_accepts_cross_list_same_nome() {
7281 // The Cargo `[dependencies]` + `[dev-dependencies]` override
7282 // convention is preserved: a name appearing in *both* lists is
7283 // valid (the dev-pin overrides at test/dev time). Only
7284 // within-list duplicates are structurally incoherent — pin the
7285 // permissive cross-list semantics so a future shortcut that
7286 // collapses the two seen-sets into one surfaces here as a test
7287 // failure.
7288 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7289 c.deps = vec![Dep::simple("caixa-teia", "^0.1")];
7290 c.deps_dev = vec![Dep::simple("caixa-teia", "^0.2")];
7291 c.validate_deps().unwrap();
7292 }
7293
7294 #[test]
7295 fn validate_deps_accepts_distinct_nome_in_both_lists() {
7296 // Positive control: distinct names within each list pass — the
7297 // gate's identity element on the canonical authoring shape.
7298 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7299 c.deps = vec![
7300 Dep::simple("caixa-teia", "^0.1"),
7301 Dep::simple("pleme-mesh", "*"),
7302 ];
7303 c.deps_dev = vec![
7304 Dep::simple("tatara-check", "*"),
7305 Dep::simple("dev-shim", "^0.1"),
7306 ];
7307 c.validate_deps().unwrap();
7308 }
7309
7310 #[test]
7311 fn validate_deps_per_entry_validate_fires_before_duplicate_in_deps() {
7312 // Diagnostic-precedence pin: a malformed `:versao` on the
7313 // duplicating entry surfaces its narrower `VersaoInvalid`
7314 // diagnostic first, before the cross-entry duplicate gate fires
7315 // — the canonical "per-entry shape before cross-entry uniqueness"
7316 // precedence every peer set-not-multiset gate establishes
7317 // (`*_invalid_fires_before_duplicate_check` pins on
7318 // `SupervisorSpec::validate`, `AplicacaoSpec::validate_membros`,
7319 // `validate_upgrade_from`).
7320 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7321 c.deps = vec![
7322 Dep::simple("caixa-teia", "^0.1"),
7323 Dep::simple("caixa-teia", "^bad-version"),
7324 ];
7325 let err = c.validate_deps().unwrap_err();
7326 assert!(
7327 matches!(
7328 err,
7329 crate::dep::DepError::VersaoInvalid { ref nome, ref versao, .. }
7330 if nome == "caixa-teia" && versao == "^bad-version"
7331 ),
7332 "expected VersaoInvalid to surface before DuplicateNome, got {err:?}"
7333 );
7334 }
7335
7336 #[test]
7337 fn validate_deps_duplicate_diagnostic_names_first_collision() {
7338 // First-collision determinism pin: with three entries naming the
7339 // same caixa, the first colliding pair surfaces — not the last.
7340 // Mirrors the peer first-collision posture on every
7341 // duplicate-target gate
7342 // (`validate_upgrade_from_duplicate_diagnostic_names_second_collision`
7343 // — the second entry is the first collision; this gate uses the
7344 // same shape: the second entry's `:nome` lands in the diagnostic
7345 // because `seen.insert(first.nome)` already populated the set).
7346 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7347 c.deps = vec![
7348 Dep::simple("caixa-teia", "^0.1"),
7349 Dep::simple("caixa-teia", "^0.2"),
7350 Dep::simple("caixa-teia", "^0.3"),
7351 ];
7352 let err = c.validate_deps().unwrap_err();
7353 // The diagnostic carries the offending caixa name; the
7354 // implementation surfaces on the *second* entry (the first
7355 // collision), so the test pins the `:nome` value.
7356 assert!(
7357 matches!(
7358 err,
7359 crate::dep::DepError::DuplicateNome { ref nome, list }
7360 if nome == "caixa-teia" && list == crate::render::DEP_AUTHOR_KEY_DEPS
7361 ),
7362 "got {err:?}"
7363 );
7364 }
7365
7366 #[test]
7367 fn validate_deps_duplicate_in_deps_fires_before_duplicate_in_deps_dev() {
7368 // Cross-list precedence pin: when both lists carry duplicates,
7369 // the `:deps` diagnostic surfaces first — same author-mental-
7370 // model ordering the `validate_deps_runs_deps_before_deps_dev`
7371 // pin establishes for malformed `:versao` (runtime axis before
7372 // dev axis).
7373 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7374 c.deps = vec![
7375 Dep::simple("runtime-dep", "^0.1"),
7376 Dep::simple("runtime-dep", "^0.2"),
7377 ];
7378 c.deps_dev = vec![Dep::simple("dev-dep", "*"), Dep::simple("dev-dep", "^0.1")];
7379 let err = c.validate_deps().unwrap_err();
7380 assert!(
7381 matches!(
7382 err,
7383 crate::dep::DepError::DuplicateNome { ref nome, list }
7384 if nome == "runtime-dep" && list == crate::render::DEP_AUTHOR_KEY_DEPS
7385 ),
7386 "expected :deps duplicate to surface before :deps-dev duplicate, got {err:?}"
7387 );
7388 }
7389
7390 #[test]
7391 fn validate_deps_empty_lists_pass_duplicate_gate() {
7392 // Empty-set identity pin: the bare template (zero deps, zero
7393 // deps_dev) passes the duplicate gate as the gate's identity
7394 // element. A future tighten that conflates "empty" with
7395 // "missing" would regress this baseline.
7396 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7397 c.validate_deps().unwrap();
7398 }
7399
7400 #[test]
7401 fn validate_deps_duplicate_diagnostic_carries_list_tag() {
7402 // Diagnostic-shape pin: the `list:` field tags which list the
7403 // duplicate landed in (`:deps` vs `:deps-dev`) verbatim, so a
7404 // `feira lint` run can route the author to the right block in
7405 // their caixa.lisp without re-deriving the list from context.
7406 // Same self-locating shape every peer per-axis diagnostic
7407 // already exposes.
7408 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7409 c.deps_dev = vec![
7410 Dep::simple("dev-thing", "*"),
7411 Dep::simple("dev-thing", "^0.1"),
7412 ];
7413 let err = c.validate_deps().unwrap_err();
7414 let crate::dep::DepError::DuplicateNome { nome, list } = err else {
7415 panic!("expected DuplicateNome from :deps-dev walk");
7416 };
7417 assert_eq!(nome, "dev-thing");
7418 assert_eq!(list, crate::render::DEP_AUTHOR_KEY_DEPS_DEV);
7419 }
7420
7421 // ── validate_deps: per-entry :caracteristicas set-discipline gate ──
7422
7423 #[test]
7424 fn validate_deps_surfaces_caracteristicas_duplicate_in_deps_list() {
7425 // Thread-through pin on `:deps`: the per-entry
7426 // `Dep::validate_caracteristicas` gate fires inside
7427 // `Caixa::validate_deps`'s linear walk, so a malformed feature
7428 // list on any `:deps` entry surfaces as a `DepError` from
7429 // `validate_deps` — the same reachability shape every per-entry
7430 // `Dep::validate` arm threads through. Without this pin a future
7431 // shortcut that skips the per-entry `Dep::validate` call on the
7432 // cross-entry-uniqueness path would mask the within-entry
7433 // `:caracteristicas` gates.
7434 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7435 c.deps = vec![Dep {
7436 nome: "caixa-teia".into(),
7437 versao: "^0.1".into(),
7438 fonte: None,
7439 opcional: false,
7440 caracteristicas: vec!["http".into(), "http".into()],
7441 }];
7442 let err = c.validate_deps().unwrap_err();
7443 let crate::dep::DepError::CaracteristicaDuplicate {
7444 nome,
7445 caracteristica,
7446 } = err
7447 else {
7448 panic!("expected CaracteristicaDuplicate from :deps walk, got {err:?}");
7449 };
7450 assert_eq!(nome, "caixa-teia");
7451 assert_eq!(caracteristica, "http");
7452 }
7453
7454 #[test]
7455 fn validate_deps_surfaces_caracteristicas_empty_in_deps_dev_list() {
7456 // Peer thread-through pin on `:deps-dev`: same reachability as
7457 // the `:deps` arm above, on the dev-only authoring axis. Pins
7458 // that the `validate_deps` walk visits both lists' per-entry
7459 // gates uniformly. The empty-feature arm carries here so both
7460 // new `:caracteristicas` arms are surfaced via at least one
7461 // `validate_deps` thread-through.
7462 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7463 c.deps_dev = vec![Dep {
7464 nome: "caixa-teia".into(),
7465 versao: "^0.1".into(),
7466 fonte: None,
7467 opcional: false,
7468 caracteristicas: vec![String::new()],
7469 }];
7470 let err = c.validate_deps().unwrap_err();
7471 let crate::dep::DepError::CaracteristicaEmpty { nome } = err else {
7472 panic!("expected CaracteristicaEmpty from :deps-dev walk, got {err:?}");
7473 };
7474 assert_eq!(nome, "caixa-teia");
7475 }
7476
7477 #[test]
7478 fn validate_deps_surfaces_caracteristicas_invalid_in_deps_list() {
7479 // Thread-through pin on `:deps`: the per-entry
7480 // `Dep::validate_caracteristicas` value-shape gate (lifted via
7481 // `crate::render::is_cargo_feature_name`) fires inside
7482 // `Caixa::validate_deps`'s linear walk on the `:deps` list, so
7483 // a structurally invalid feature name on any `:deps` entry
7484 // surfaces as `DepError::CaracteristicaInvalid` from
7485 // `validate_deps` — the same reachability shape every per-entry
7486 // `Dep::validate` arm threads through. Without this pin a
7487 // future shortcut that skips the per-entry `Dep::validate` call
7488 // on the cross-entry-uniqueness path would mask the within-
7489 // entry `:caracteristicas` value-shape gate.
7490 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7491 c.deps = vec![Dep {
7492 nome: "caixa-teia".into(),
7493 versao: "^0.1".into(),
7494 fonte: None,
7495 opcional: false,
7496 caracteristicas: vec!["+http".into()],
7497 }];
7498 let err = c.validate_deps().unwrap_err();
7499 let crate::dep::DepError::CaracteristicaInvalid {
7500 nome,
7501 caracteristica,
7502 ..
7503 } = err
7504 else {
7505 panic!("expected CaracteristicaInvalid from :deps walk, got {err:?}");
7506 };
7507 assert_eq!(nome, "caixa-teia");
7508 assert_eq!(caracteristica, "+http");
7509 }
7510
7511 #[test]
7512 fn validate_deps_surfaces_caracteristicas_invalid_in_deps_dev_list() {
7513 // Peer thread-through pin on `:deps-dev`: same reachability as
7514 // the `:deps` arm above, on the dev-only authoring axis. The
7515 // `http/json` shape carries here so the segment-separator
7516 // diagnostic (the canonical Cargo `dep/feat` namespaced-dep
7517 // confusion footgun) is surfaced via the cross-entry walk too —
7518 // pinning that the `:deps-dev` list visits the same per-entry
7519 // value-shape gate as the `:deps` list.
7520 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7521 c.deps_dev = vec![Dep {
7522 nome: "caixa-teia".into(),
7523 versao: "^0.1".into(),
7524 fonte: None,
7525 opcional: false,
7526 caracteristicas: vec!["http/json".into()],
7527 }];
7528 let err = c.validate_deps().unwrap_err();
7529 let crate::dep::DepError::CaracteristicaInvalid {
7530 nome,
7531 caracteristica,
7532 ..
7533 } = err
7534 else {
7535 panic!("expected CaracteristicaInvalid from :deps-dev walk, got {err:?}");
7536 };
7537 assert_eq!(nome, "caixa-teia");
7538 assert_eq!(caracteristica, "http/json");
7539 }
7540
7541 #[test]
7542 fn to_lisp_preserves_deps() {
7543 let src = r#"
7544(defcaixa
7545 :nome "x"
7546 :versao "0.1.0"
7547 :kind Biblioteca
7548 :deps ((:nome "a" :versao "^0.1")
7549 (:nome "b" :versao "*" :fonte (:tipo git :repo "github:o/b" :tag "v1"))))
7550"#;
7551 let c1 = Caixa::from_lisp(src).unwrap();
7552 let emitted = c1.to_lisp();
7553 let c2 = Caixa::from_lisp(&emitted).expect("round trip");
7554 assert_eq!(c1.deps, c2.deps);
7555 }
7556
7557 // ── Caixa::validate_nome — top-level :nome value-shape gate ─────────
7558
7559 fn caixa_with_nome(nome: &str) -> Caixa {
7560 let mut c = Caixa::from_lisp(&Caixa::template("placeholder")).unwrap();
7561 c.nome = nome.to_string();
7562 c
7563 }
7564
7565 #[test]
7566 fn validate_nome_accepts_canonical_template() {
7567 // Positive control: the bare `feira init`-style template's
7568 // `:nome` ("demo") is a canonical DNS-1123 label; the gate must
7569 // not regress this baseline shape. A future tightening of the
7570 // accepted set surfaces here as a test failure first.
7571 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7572 c.validate_nome().unwrap();
7573 }
7574
7575 #[test]
7576 fn validate_nome_accepts_canonical_forms() {
7577 // Positive-set sweep: each realistic caixa-name shape the K8s
7578 // apiserver accepts as a `metadata.name` label must pass —
7579 // single-word, hyphen-joined, version-suffixed, single-char,
7580 // two-char, digit-start (DNS-1123 allows this; the stricter
7581 // DNS-1035 Service-name rule doesn't), version-suffix-bearing.
7582 // Mirrors `accepts_canonical_membro_caixa_forms` (3f9d7a0) on
7583 // the peer member-name axis.
7584 for nome in [
7585 "checkout",
7586 "cart-v2",
7587 "a",
7588 "db",
7589 "3rd-party-shim",
7590 "payment-retry",
7591 "0",
7592 ] {
7593 caixa_with_nome(nome)
7594 .validate_nome()
7595 .unwrap_or_else(|e| panic!("canonical :nome {nome:?} must validate, got {e:?}"));
7596 }
7597 }
7598
7599 #[test]
7600 fn validate_nome_rejects_empty() {
7601 // Fail-before-pass-after pin: `Caixa::from_lisp` does not refuse
7602 // an empty `:nome` (the derive macro stores the raw String);
7603 // the gate's empty arm names the offending axis with a narrower
7604 // diagnostic than the `NomeInvalid` parse arm would emit.
7605 let c = caixa_with_nome("");
7606 let err = c.validate_nome().unwrap_err();
7607 assert_eq!(err, ManifestError::NomeEmpty);
7608 }
7609
7610 #[test]
7611 fn validate_nome_rejects_uppercase() {
7612 // The canonical "I copied the TitleCase display name verbatim"
7613 // footgun. The K8s apiserver rejects `metadata.name: MyApp` at
7614 // admission on every derived artifact (Helm chart, ComputeUnit,
7615 // CNP, HTTPRoute, label values); the gate moves the diagnostic
7616 // to the source `caixa.lisp` and the reason suggests the
7617 // lowercased fix verbatim.
7618 let c = caixa_with_nome("MyApp");
7619 let err = c.validate_nome().unwrap_err();
7620 let ManifestError::NomeInvalid { nome, reason } = err else {
7621 panic!("expected NomeInvalid for uppercase :nome");
7622 };
7623 assert_eq!(nome, "MyApp");
7624 assert!(
7625 reason.contains("uppercase") && reason.contains("myapp"),
7626 "diagnostic must name the violation + the lowercased fix, got {reason:?}"
7627 );
7628 }
7629
7630 #[test]
7631 fn validate_nome_rejects_underscore() {
7632 // The Python-/Postgres-style `snake_case` leak. DNS-1123 forbids
7633 // `_`; the apiserver rejects on admission across every derived
7634 // artifact. Same fixture pinned for `:membros :caixa` (3f9d7a0)
7635 // and `:children :caixa` (31bfa43).
7636 let c = caixa_with_nome("my_app");
7637 let err = c.validate_nome().unwrap_err();
7638 assert!(
7639 matches!(
7640 err,
7641 ManifestError::NomeInvalid { ref nome, ref reason }
7642 if nome == "my_app" && reason.contains('_')
7643 ),
7644 "got {err:?}"
7645 );
7646 }
7647
7648 #[test]
7649 fn validate_nome_rejects_dot() {
7650 // A `:nome` is a single DNS-1123 label, not a subdomain. The
7651 // "I want to namespace with `.`" footgun the gate redirects to
7652 // `-` via the shared predicate's reason wording.
7653 let c = caixa_with_nome("team.app");
7654 let err = c.validate_nome().unwrap_err();
7655 assert!(
7656 matches!(
7657 err,
7658 ManifestError::NomeInvalid { ref nome, ref reason }
7659 if nome == "team.app" && reason.contains('.')
7660 ),
7661 "got {err:?}"
7662 );
7663 }
7664
7665 #[test]
7666 fn validate_nome_rejects_leading_hyphen() {
7667 // DNS-1123 boundary rule: the label must start with an ASCII
7668 // alphanumeric. Pin the leading-`-` arm explicitly.
7669 let c = caixa_with_nome("-app");
7670 let err = c.validate_nome().unwrap_err();
7671 assert!(
7672 matches!(
7673 err,
7674 ManifestError::NomeInvalid { ref nome, .. } if nome == "-app"
7675 ),
7676 "got {err:?}"
7677 );
7678 }
7679
7680 #[test]
7681 fn validate_nome_rejects_trailing_hyphen() {
7682 // Symmetric arm of the boundary rule, pinned separately so a
7683 // future relaxation that only checks the leading position
7684 // surfaces here. Mirrors `rejects_membro_caixa_with_trailing_hyphen`
7685 // and `_with_trailing_hyphen` on the supervisor / aplicacao
7686 // axes.
7687 let c = caixa_with_nome("app-");
7688 let err = c.validate_nome().unwrap_err();
7689 assert!(
7690 matches!(
7691 err,
7692 ManifestError::NomeInvalid { ref nome, .. } if nome == "app-"
7693 ),
7694 "got {err:?}"
7695 );
7696 }
7697
7698 #[test]
7699 fn validate_nome_rejects_unicode() {
7700 // IDN must be pre-encoded as Punycode (`xn--…`); raw Unicode
7701 // bytes are rejected by the K8s apiserver on every name axis.
7702 let c = caixa_with_nome("café");
7703 let err = c.validate_nome().unwrap_err();
7704 assert!(
7705 matches!(
7706 err,
7707 ManifestError::NomeInvalid { ref nome, .. } if nome == "café"
7708 ),
7709 "got {err:?}"
7710 );
7711 }
7712
7713 #[test]
7714 fn validate_nome_rejects_whitespace() {
7715 // The paste-from-sketch / paste-from-spec footgun. Internal
7716 // whitespace is rejected by every K8s name axis.
7717 let c = caixa_with_nome("my app");
7718 let err = c.validate_nome().unwrap_err();
7719 assert!(
7720 matches!(
7721 err,
7722 ManifestError::NomeInvalid { ref nome, .. } if nome == "my app"
7723 ),
7724 "got {err:?}"
7725 );
7726 }
7727
7728 #[test]
7729 fn validate_nome_rejects_too_long() {
7730 // 64-byte boundary pin: the K8s apiserver rejects any
7731 // `metadata.name` over 63 bytes at admission; the diagnostic
7732 // names both the 63-byte cap and the actual length so the
7733 // author can shorten in one edit. Mirrors `_too_long` on the
7734 // peer member-/cluster-/child-name axes.
7735 let over = "a".repeat(crate::DNS_1123_LABEL_MAX_LEN + 1);
7736 let c = caixa_with_nome(&over);
7737 let err = c.validate_nome().unwrap_err();
7738 let ManifestError::NomeInvalid { nome, reason } = err else {
7739 panic!("expected NomeInvalid for over-cap :nome");
7740 };
7741 assert_eq!(nome.len(), crate::DNS_1123_LABEL_MAX_LEN + 1);
7742 assert!(
7743 reason.contains("63") && reason.contains("64"),
7744 "diagnostic must name the cap + actual length, got {reason:?}"
7745 );
7746 }
7747
7748 #[test]
7749 fn nome_max_length_validates() {
7750 // The 63-byte cap exactly — the boundary-accepting case pinned
7751 // alongside `validate_nome_rejects_too_long` so a future cap
7752 // shift surfaces both arms simultaneously. Mirrors
7753 // `membro_caixa_max_length_validates`,
7754 // `placement_cluster_max_length_validates`,
7755 // `child_caixa_max_length_validates`.
7756 let at_cap = "a".repeat(crate::DNS_1123_LABEL_MAX_LEN);
7757 caixa_with_nome(&at_cap).validate_nome().unwrap();
7758 }
7759
7760 #[test]
7761 fn nome_empty_takes_precedence_over_invalid() {
7762 // Order pin: the empty arm fires before the predicate is
7763 // consulted. Empty < invalid in self-locating-ness — the
7764 // narrower `NomeEmpty` diagnostic doesn't carry a useless
7765 // `nome: ""` reference into the parser-shaped reason. Mirrors
7766 // `membro_caixa_empty_takes_precedence_over_invalid` on the
7767 // peer axis (3f9d7a0).
7768 let c = caixa_with_nome("");
7769 assert_eq!(c.validate_nome().unwrap_err(), ManifestError::NomeEmpty);
7770 }
7771
7772 #[test]
7773 fn nome_invalid_diagnostic_carries_offending_nome() {
7774 // Diagnostic-shape pin: the error names the offending `:nome`
7775 // verbatim with a non-empty parser-shaped reason, so a `feira
7776 // lint` run can render the diagnostic without re-parsing.
7777 // Mirrors `membro_caixa_invalid_diagnostic_carries_offending_caixa`.
7778 let c = caixa_with_nome("MyApp");
7779 let err = c.validate_nome().unwrap_err();
7780 let ManifestError::NomeInvalid { nome, reason } = err else {
7781 panic!("expected NomeInvalid variant");
7782 };
7783 assert_eq!(nome, "MyApp");
7784 assert!(
7785 !reason.is_empty(),
7786 "NomeInvalid `reason` must carry the predicate's wording verbatim"
7787 );
7788 }
7789
7790 // ── Caixa::validate_nome_chart_name_budget — joint-length on `:nome` ──
7791 //
7792 // The bare-`:nome` axis [`Caixa::validate_nome`] caps at 63 bytes
7793 // via DNS-1123; this second-axis gate caps the joint
7794 // `lareira-<nome>` chart name at the same 63-byte ceiling. The
7795 // canonical [`crate::lareira_chart_name`] helper's doc comment
7796 // (f7320d7, caixa-core/src/render.rs:3198) explicitly deferred:
7797 // "the M4 admission webhook will pin the joint-length invariant
7798 // when it lands". These tests pin it at the manifest-validate
7799 // layer instead, fail-before-pass-after on the 56-byte boundary.
7800
7801 #[test]
7802 fn validate_nome_chart_name_budget_accepts_canonical_template() {
7803 // Positive control: the bare `feira init`-style template's
7804 // `:nome` ("demo") sits far below the cap; the gate must not
7805 // regress this baseline. Same shape every peer
7806 // value-shape-gate baseline pin uses.
7807 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
7808 c.validate_nome_chart_name_budget().unwrap();
7809 }
7810
7811 #[test]
7812 fn validate_nome_chart_name_budget_accepts_canonical_fixtures() {
7813 // Positive-set sweep across the canonical author surface every
7814 // in-tree fixture uses (`hello-rio`, `cart`, `checkout`,
7815 // `worker`, the `checkout-aplicacao` example members, the
7816 // `example-attest` caixa-tatara fixture). Every value sits
7817 // far below the 55-byte per-`:nome` budget. Same shape every
7818 // peer per-axis baseline pin uses.
7819 for nome in [
7820 "hello-rio",
7821 "cart",
7822 "checkout",
7823 "worker",
7824 "example-attest",
7825 "demo",
7826 "a",
7827 ] {
7828 caixa_with_nome(nome)
7829 .validate_nome_chart_name_budget()
7830 .unwrap_or_else(|e| {
7831 panic!("canonical :nome {nome:?} must pass chart-name budget, got {e:?}")
7832 });
7833 }
7834 }
7835
7836 #[test]
7837 fn validate_nome_chart_name_budget_accepts_nome_at_cap() {
7838 // Boundary-accepting case at the 55-byte per-`:nome` budget —
7839 // the joint chart name is exactly 63 bytes, the DNS-1123 label
7840 // cap. Pinned alongside the rejecting-arm test so a future cap
7841 // shift surfaces both arms simultaneously. Mirrors
7842 // `nome_max_length_validates` on the peer bare-`:nome` axis.
7843 let at_cap = "a".repeat(crate::LAREIRA_CHART_NAME_NOME_MAX_LEN);
7844 caixa_with_nome(&at_cap)
7845 .validate_nome_chart_name_budget()
7846 .unwrap();
7847 }
7848
7849 #[test]
7850 fn validate_nome_chart_name_budget_rejects_nome_one_over_cap() {
7851 // Fail-before-pass-after pin on the 56-byte boundary: the
7852 // smallest `:nome` length that overflows the joint chart-name
7853 // cap. The inner [`is_dns_1123_label`] gate
7854 // (`Caixa::validate_nome`) accepts it (56 ≤ 63), so prior to
7855 // this gate it silently passed the manifest-validate cascade
7856 // and surfaced as a `helm lint` / apiserver rejection on the
7857 // rendered chart name far from the source `caixa.lisp`, with
7858 // no field naming the overflow. With this gate the diagnostic
7859 // names the offending `:nome` verbatim alongside the rendered
7860 // chart name and the budget, so the author can shorten in one
7861 // edit. Mirrors `validate_nome_rejects_too_long` on the peer
7862 // bare-`:nome` axis.
7863 let over = "a".repeat(crate::LAREIRA_CHART_NAME_NOME_MAX_LEN + 1);
7864 let c = caixa_with_nome(&over);
7865 let err = c.validate_nome_chart_name_budget().unwrap_err();
7866 let ManifestError::NomeChartNameBudgetExceeded { nome, reason } = err else {
7867 panic!("expected NomeChartNameBudgetExceeded for over-budget :nome");
7868 };
7869 assert_eq!(nome.len(), crate::LAREIRA_CHART_NAME_NOME_MAX_LEN + 1);
7870 assert_eq!(nome, over);
7871 assert!(
7872 reason.contains("63") && reason.contains("64") && reason.contains("55"),
7873 "diagnostic must name the DNS-1123 cap (63), the actual chart-name length (64), \
7874 and the per-`:nome` budget (55), got {reason:?}"
7875 );
7876 }
7877
7878 #[test]
7879 fn validate_nome_chart_name_budget_rejects_nome_at_bare_dns_cap() {
7880 // The 63-byte `:nome` boundary — passes the bare-`:nome`
7881 // [`is_dns_1123_label`] cap exactly, but produces a 71-byte
7882 // joint chart name that overflows the DNS-1123 label cap
7883 // structurally. The most stringent fail-before-pass-after
7884 // surface: every `:nome` in the 56..=63-byte range passed the
7885 // prior cascade and broke at admission.
7886 let bare_max = "a".repeat(crate::DNS_1123_LABEL_MAX_LEN);
7887 let c = caixa_with_nome(&bare_max);
7888 // The bare-`:nome` gate accepts the 63-byte length.
7889 c.validate_nome().unwrap();
7890 // The new joint-length gate rejects it.
7891 let err = c.validate_nome_chart_name_budget().unwrap_err();
7892 assert!(
7893 matches!(
7894 err,
7895 ManifestError::NomeChartNameBudgetExceeded { ref nome, .. }
7896 if nome.len() == crate::DNS_1123_LABEL_MAX_LEN
7897 ),
7898 "got {err:?}"
7899 );
7900 }
7901
7902 #[test]
7903 fn validate_nome_chart_name_budget_diagnostic_carries_offending_chart_name() {
7904 // Diagnostic-shape pin: the rendered `lareira-<nome>` chart
7905 // name appears verbatim in the diagnostic so the author sees
7906 // exactly the string the apiserver / `helm lint` would have
7907 // rejected — no re-derivation required to grep the source.
7908 // Peer with `nome_invalid_diagnostic_carries_offending_nome`
7909 // on the bare-`:nome` axis.
7910 let over = "x".repeat(crate::LAREIRA_CHART_NAME_NOME_MAX_LEN + 5);
7911 let c = caixa_with_nome(&over);
7912 let err = c.validate_nome_chart_name_budget().unwrap_err();
7913 let ManifestError::NomeChartNameBudgetExceeded { nome, reason } = err else {
7914 panic!("expected NomeChartNameBudgetExceeded variant");
7915 };
7916 assert_eq!(nome, over);
7917 let expected_chart = crate::lareira_chart_name(&over);
7918 assert!(
7919 reason.contains(&expected_chart),
7920 "diagnostic must carry the rendered chart name {expected_chart:?} verbatim, \
7921 got {reason:?}"
7922 );
7923 assert!(
7924 reason.contains("lareira-"),
7925 "diagnostic must name the canonical chart-name prefix verbatim, got {reason:?}"
7926 );
7927 }
7928
7929 #[test]
7930 fn validate_nome_chart_name_budget_runs_after_nome_shape_via_layout_verify() {
7931 // Order pin on the layout cascade: the narrower
7932 // `NomeInvalid` (bare-DNS-1123 shape) fires before the
7933 // joint-length budget. A structurally-malformed `:nome` (here:
7934 // uppercase) surfaces its specific shape error rather than
7935 // the chart-name-budget error, even when the joint length
7936 // would also overflow — the narrower diagnostic is more
7937 // self-locating. Mirrors the cascade-precedence pins peer
7938 // gates already use (e.g. `EntradaParaEmpty` before
7939 // `EntradaParaInvalid`).
7940 let over = "A".repeat(crate::LAREIRA_CHART_NAME_NOME_MAX_LEN + 1);
7941 let c = caixa_with_nome(&over);
7942 // The bare-shape gate fires first.
7943 let err = c.validate_nome().unwrap_err();
7944 assert!(
7945 matches!(err, ManifestError::NomeInvalid { .. }),
7946 "bare-shape gate must fire before chart-name-budget gate; got {err:?}"
7947 );
7948 // And the layout verify cascade surfaces that diagnostic, not
7949 // the budget arm. Inject a path-exists oracle so the cascade
7950 // gets past the manifest-presence check and into the
7951 // value-shape gates.
7952 let layout = crate::StandardLayout::new().with_path_exists(|_| true);
7953 let err = crate::LayoutInvariants::verify(
7954 &layout,
7955 &c,
7956 std::path::Path::new("/tmp/caixa-test-fake-root"),
7957 )
7958 .unwrap_err();
7959 let issue = err.to_string();
7960 assert!(
7961 issue.contains("DNS-1123") || issue.contains("uppercase"),
7962 "layout cascade must surface the bare-DNS-1123 diagnostic on a \
7963 structurally-malformed :nome, not the chart-name-budget diagnostic; got {issue:?}"
7964 );
7965 }
7966
7967 #[test]
7968 fn layout_verify_routes_chart_name_budget_through_nome_violation() {
7969 // Cross-axis envelope pin: the layout cascade wraps both
7970 // bare-`:nome` and joint-length-`:nome` failures through the
7971 // same [`LayoutError::NomeViolation`] envelope, since both
7972 // arms are on the `:nome` axis. The user's diagnostic stays
7973 // self-locating ("which axis"), and a future consumer that
7974 // dispatches on the layout-error variant (e.g. a `feira lint`
7975 // exit-code mapping) sees a single per-axis envelope. The
7976 // wrapped `issue:` carries the full inner diagnostic.
7977 let over = "a".repeat(crate::LAREIRA_CHART_NAME_NOME_MAX_LEN + 1);
7978 let c = caixa_with_nome(&over);
7979 // The bare-shape gate accepts.
7980 c.validate_nome().unwrap();
7981 let layout = crate::StandardLayout::new().with_path_exists(|_| true);
7982 let err = crate::LayoutInvariants::verify(
7983 &layout,
7984 &c,
7985 std::path::Path::new("/tmp/caixa-test-fake-root"),
7986 )
7987 .unwrap_err();
7988 let crate::LayoutError::NomeViolation { caixa, issue } = err else {
7989 panic!("expected LayoutError::NomeViolation, got {err:?}");
7990 };
7991 assert_eq!(caixa, over);
7992 assert!(
7993 issue.contains("lareira-") && issue.contains("63") && issue.contains("55"),
7994 "wrapped issue must carry the joint-length diagnostic verbatim, got {issue:?}"
7995 );
7996 }
7997
7998 // ── Caixa::validate_versao — top-level :versao value-shape gate ─────
7999
8000 fn caixa_with_versao(versao: &str) -> Caixa {
8001 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
8002 c.versao = versao.to_string();
8003 c
8004 }
8005
8006 #[test]
8007 fn validate_versao_accepts_canonical_template() {
8008 // Positive control: the bare `feira init`-style template's
8009 // `:versao` ("0.1.0") is a canonical SemVer-2 literal; the gate
8010 // must not regress this baseline shape. A future tightening of
8011 // the accepted set surfaces here as a test failure first.
8012 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
8013 c.validate_versao().unwrap();
8014 }
8015
8016 #[test]
8017 fn validate_versao_accepts_canonical_forms() {
8018 // Positive-set sweep: each realistic SemVer-2 shape the
8019 // substrate's downstream consumers accept must pass — bare
8020 // MAJOR.MINOR.PATCH, pre-release tags (`-rc.1`, `-alpha.0`),
8021 // build metadata (`+build.42`), the combined form, and the
8022 // `0.0.0` boundary case. Mirrors `accepts_canonical_forms` on
8023 // the peer `:nome` axis (6c992f8).
8024 for versao in [
8025 "0.1.0",
8026 "0.0.0",
8027 "1.0.0",
8028 "0.2.0-rc.1",
8029 "1.0.0-alpha.0",
8030 "1.0.0+build.42",
8031 "1.0.0-rc.1+build.42",
8032 "10.20.30",
8033 ] {
8034 caixa_with_versao(versao)
8035 .validate_versao()
8036 .unwrap_or_else(|e| {
8037 panic!("canonical :versao {versao:?} must validate, got {e:?}")
8038 });
8039 }
8040 }
8041
8042 #[test]
8043 fn validate_versao_rejects_empty() {
8044 // Fail-before-pass-after pin: `Caixa::from_lisp` does not refuse
8045 // an empty `:versao` (the derive macro stores the raw String);
8046 // the gate's empty arm names the offending axis with a narrower
8047 // diagnostic than the `VersaoInvalid` parse arm would emit.
8048 // Mirrors `validate_nome_rejects_empty` (6c992f8).
8049 let c = caixa_with_versao("");
8050 let err = c.validate_versao().unwrap_err();
8051 assert_eq!(err, ManifestError::VersaoEmpty);
8052 }
8053
8054 #[test]
8055 fn validate_versao_rejects_git_tag_shape() {
8056 // The canonical "I copied the git tag verbatim" footgun —
8057 // `feira publish` *emits* `v<versao>` git tags, so a leaked
8058 // `v0.1.0` in `:versao` would render as `vv0.1.0` and silently
8059 // shift every downstream consumer's version axis. `semver`
8060 // rejects the leading `v` at parse time; the gate moves the
8061 // diagnostic to the source `caixa.lisp`.
8062 let c = caixa_with_versao("v0.1.0");
8063 let err = c.validate_versao().unwrap_err();
8064 let ManifestError::VersaoInvalid { versao, reason } = err else {
8065 panic!("expected VersaoInvalid for git-tag-shape :versao");
8066 };
8067 assert_eq!(versao, "v0.1.0");
8068 assert!(
8069 !reason.is_empty(),
8070 "VersaoInvalid `reason` must carry the parser's wording, got {reason:?}"
8071 );
8072 }
8073
8074 #[test]
8075 fn validate_versao_rejects_missing_patch() {
8076 // The canonical "I shortened it" footgun — SemVer-2 requires
8077 // three parts. Cargo's `version =` field accepts the shortened
8078 // form as a requirement, conflating the two leaks across the
8079 // typed `:deps :versao` vs top-level `:versao` axes; the gate
8080 // pins the top-level axis to the strict three-part shape.
8081 let c = caixa_with_versao("0.1");
8082 let err = c.validate_versao().unwrap_err();
8083 assert!(
8084 matches!(
8085 err,
8086 ManifestError::VersaoInvalid { ref versao, .. } if versao == "0.1"
8087 ),
8088 "got {err:?}"
8089 );
8090 }
8091
8092 #[test]
8093 fn validate_versao_rejects_requirement_shape() {
8094 // The canonical "I leaked a requirement into a version" footgun —
8095 // the typed `:deps :versao` / `:membros :versao` axes accept
8096 // `^0.1` (a `VersionReq`); the top-level `:versao` requires a
8097 // concrete `Version`. Without this gate the two typed surfaces
8098 // would silently overlap, and a top-level `^0.1` would surface
8099 // at `helm install` time as a Chart.yaml version rejection far
8100 // from the source `caixa.lisp`.
8101 let c = caixa_with_versao("^0.1");
8102 let err = c.validate_versao().unwrap_err();
8103 assert!(
8104 matches!(
8105 err,
8106 ManifestError::VersaoInvalid { ref versao, .. } if versao == "^0.1"
8107 ),
8108 "got {err:?}"
8109 );
8110 }
8111
8112 #[test]
8113 fn validate_versao_rejects_docker_tag_shape() {
8114 // The "I confused it with a docker tag" footgun — `latest`,
8115 // `main`, `stable` parse as identifiers, not SemVer-2 versions.
8116 // SemVer rejects at parse time; the gate moves the diagnostic
8117 // to the source `caixa.lisp`.
8118 for bad in ["latest", "main", "stable"] {
8119 let c = caixa_with_versao(bad);
8120 let err = c.validate_versao().unwrap_err();
8121 assert!(
8122 matches!(
8123 err,
8124 ManifestError::VersaoInvalid { ref versao, .. } if versao == bad
8125 ),
8126 "got {err:?} for {bad:?}"
8127 );
8128 }
8129 }
8130
8131 #[test]
8132 fn validate_versao_rejects_four_part_form() {
8133 // The Java/Microsoft "MAJOR.MINOR.PATCH.BUILD" convention
8134 // SemVer-2 forbids. A leak from a non-SemVer ecosystem; the
8135 // semver crate rejects the extra `.0` at parse time.
8136 let c = caixa_with_versao("0.1.0.0");
8137 let err = c.validate_versao().unwrap_err();
8138 assert!(
8139 matches!(
8140 err,
8141 ManifestError::VersaoInvalid { ref versao, .. } if versao == "0.1.0.0"
8142 ),
8143 "got {err:?}"
8144 );
8145 }
8146
8147 #[test]
8148 fn versao_empty_takes_precedence_over_invalid() {
8149 // Order pin: the empty arm fires before the parser is consulted.
8150 // Empty < invalid in self-locating-ness — the narrower
8151 // `VersaoEmpty` diagnostic doesn't carry a useless `versao: ""`
8152 // reference into the parser-shaped reason. Mirrors
8153 // `nome_empty_takes_precedence_over_invalid` (6c992f8) on the
8154 // peer axis.
8155 let c = caixa_with_versao("");
8156 assert_eq!(c.validate_versao().unwrap_err(), ManifestError::VersaoEmpty);
8157 }
8158
8159 #[test]
8160 fn versao_invalid_diagnostic_carries_offending_versao() {
8161 // Diagnostic-shape pin: the error names the offending `:versao`
8162 // verbatim with a non-empty parser-shaped reason, so a `feira
8163 // lint` run can render the diagnostic without re-parsing.
8164 // Mirrors `nome_invalid_diagnostic_carries_offending_nome`.
8165 let c = caixa_with_versao("v0.1.0");
8166 let err = c.validate_versao().unwrap_err();
8167 let ManifestError::VersaoInvalid { versao, reason } = err else {
8168 panic!("expected VersaoInvalid variant");
8169 };
8170 assert_eq!(versao, "v0.1.0");
8171 assert!(
8172 !reason.is_empty(),
8173 "VersaoInvalid `reason` must carry the parser's wording verbatim"
8174 );
8175 }
8176
8177 #[test]
8178 fn validate_versao_accepts_what_upgrade_from_from_accepts() {
8179 // Parity pin: every shape `UpgradeFromEntry::validate` accepts
8180 // for `:upgrade-from :from` must also pass `validate_versao` —
8181 // the two `:versao`-typed surfaces (top-level `:versao`,
8182 // `:upgrade-from :from`) consume the *same* `semver::Version`
8183 // parser, so they must agree on the accepted set. Without this
8184 // pin, a future tightening of one axis could silently diverge
8185 // from the other. Mirrors the `:versao` requirement-axis
8186 // parity (`:deps`/`:deps-dev`/`:membros`/`:children`) the prior
8187 // commits established.
8188 for versao in ["0.1.0", "0.2.0-rc.1", "1.0.0+build.42"] {
8189 // From the canonical UpgradeFromEntry round-trip fixture
8190 // (`upgrade::tests::round_trip_load_module` peers).
8191 let entry = crate::UpgradeFromEntry {
8192 from: versao.to_string(),
8193 instructions: Vec::new(),
8194 };
8195 entry
8196 .validate()
8197 .unwrap_or_else(|e| panic!(":from {versao:?} must validate, got {e:?}"));
8198 caixa_with_versao(versao)
8199 .validate_versao()
8200 .unwrap_or_else(|e| {
8201 panic!(":versao {versao:?} must validate, got {e:?} — peer axis diverges")
8202 });
8203 }
8204 }
8205
8206 // ── Caixa::validate_restart_window — supervisor restart-window
8207 // folds through the shared `supervisor::duration_codec` ────────
8208
8209 fn caixa_with_restart_window(window: Option<&str>) -> Caixa {
8210 let mut c = Caixa::from_lisp(&Caixa::template("root")).unwrap();
8211 c.kind = CaixaKind::Supervisor;
8212 c.restart_window = window.map(str::to_string);
8213 c
8214 }
8215
8216 #[test]
8217 fn validate_restart_window_accepts_none() {
8218 // The canonical "omit the slot to express no reset" shape — a
8219 // `None` raw string is the absence of the typed
8220 // `:restart-window` slot, which is exactly the SupervisorSpec
8221 // "never reset" semantics. The gate must be a no-op here; a
8222 // future tightening that rejected `None` would force every
8223 // supervisor caixa to authoring-time pin a window even when
8224 // the OTP semantics call for none.
8225 caixa_with_restart_window(None)
8226 .validate_restart_window()
8227 .unwrap();
8228 }
8229
8230 #[test]
8231 fn validate_restart_window_accepts_canonical_forms() {
8232 // Positive-set sweep across the canonical authoring units the
8233 // shared `supervisor::duration_codec::parse` accepts —
8234 // matches the codec-side `parse_accepts_integer_canonical_units`
8235 // pin in supervisor::tests so a future codec-side tightening
8236 // surfaces simultaneously on both axes.
8237 for window in ["60s", "5m", "1h", "500ms", "30", "0s"] {
8238 caixa_with_restart_window(Some(window))
8239 .validate_restart_window()
8240 .unwrap_or_else(|e| {
8241 panic!("canonical :restart-window {window:?} must validate, got {e:?}")
8242 });
8243 }
8244 }
8245
8246 #[test]
8247 fn validate_restart_window_rejects_fractional_seconds() {
8248 // Fail-before-pass-after pin: the `"1.5s"` drift class (parses
8249 // as f64 to 1.5 → renders back as `"1500ms"` on first
8250 // serialize). Prior to the fold + this gate, the inline
8251 // `parse_window_inline` accepted f64 magnitudes and silently
8252 // produced a `Duration::from_secs_f64(1.5)`, divergent from
8253 // the shared codec's integer-magnitude discipline on the
8254 // serde-routed siblings. The gate now surfaces a self-locating
8255 // diagnostic at the manifest layer.
8256 let err = caixa_with_restart_window(Some("1.5s"))
8257 .validate_restart_window()
8258 .unwrap_err();
8259 let ManifestError::RestartWindowMalformed {
8260 restart_window,
8261 reason,
8262 } = err
8263 else {
8264 panic!("expected RestartWindowMalformed for fractional seconds");
8265 };
8266 assert_eq!(restart_window, "1.5s");
8267 assert!(
8268 reason.contains("\"1.5\"") && reason.contains("not a non-negative integer"),
8269 "diagnostic must carry shared-codec wording, got {reason:?}"
8270 );
8271 }
8272
8273 #[test]
8274 fn validate_restart_window_rejects_decimal_shaped_integer() {
8275 // The `"1.0s"` class — numerically `1s` exactly, but the
8276 // canonical form is `"1s"` not `"1.0s"`. Decimal-shape leak
8277 // gets the same canonical-form diagnostic.
8278 let err = caixa_with_restart_window(Some("1.0s"))
8279 .validate_restart_window()
8280 .unwrap_err();
8281 assert!(
8282 matches!(
8283 err,
8284 ManifestError::RestartWindowMalformed { ref restart_window, .. }
8285 if restart_window == "1.0s"
8286 ),
8287 "got {err:?}"
8288 );
8289 }
8290
8291 #[test]
8292 fn validate_restart_window_rejects_half_unit_minute() {
8293 // `"0.5m"` is the unit-fraction footgun — author writes a
8294 // human-readable half-minute, the prior inline parser silently
8295 // produced `Duration::from_secs_f64(30.0)` and serde
8296 // re-emitted as `"30s"`, rewriting author intent. The gate
8297 // closes the loop at the manifest layer.
8298 let err = caixa_with_restart_window(Some("0.5m"))
8299 .validate_restart_window()
8300 .unwrap_err();
8301 let ManifestError::RestartWindowMalformed {
8302 restart_window,
8303 reason,
8304 } = err
8305 else {
8306 panic!("expected RestartWindowMalformed");
8307 };
8308 assert_eq!(restart_window, "0.5m");
8309 assert!(
8310 reason.contains("\"30s\""),
8311 "diagnostic must point at the canonical-form remediation, got {reason:?}"
8312 );
8313 }
8314
8315 #[test]
8316 fn validate_restart_window_rejects_leading_sign() {
8317 // `"+30s"` and `"-30s"` both round-tripped through f64 cleanly
8318 // on the prior parser (`+30` parses as `30.0`; `-30` parsed
8319 // and was caught by the `num < 0.0` arm which silently
8320 // returned `None`, dropping the author-supplied window). The
8321 // shared codec's digit-only gate rejects both with a unified
8322 // canonical-form diagnostic; the manifest-layer wrapper names
8323 // the offending value.
8324 for bad in ["+30s", "-30s"] {
8325 let err = caixa_with_restart_window(Some(bad))
8326 .validate_restart_window()
8327 .unwrap_err();
8328 assert!(
8329 matches!(
8330 err,
8331 ManifestError::RestartWindowMalformed { ref restart_window, .. }
8332 if restart_window == bad
8333 ),
8334 "got {err:?} for {bad:?}"
8335 );
8336 }
8337 }
8338
8339 #[test]
8340 fn validate_restart_window_rejects_unknown_unit() {
8341 // `"30x"` — the typo / wrong-unit footgun. The shared codec's
8342 // unit dispatch surfaces an `unknown duration unit` reason;
8343 // the manifest-layer wrapper names the offending value.
8344 let err = caixa_with_restart_window(Some("30x"))
8345 .validate_restart_window()
8346 .unwrap_err();
8347 let ManifestError::RestartWindowMalformed {
8348 restart_window,
8349 reason,
8350 } = err
8351 else {
8352 panic!("expected RestartWindowMalformed for unknown unit");
8353 };
8354 assert_eq!(restart_window, "30x");
8355 assert!(
8356 reason.contains("unknown duration unit"),
8357 "diagnostic must carry shared-codec unit-rejection wording, got {reason:?}"
8358 );
8359 }
8360
8361 #[test]
8362 fn validate_restart_window_rejects_garbage() {
8363 // Pure non-numeric magnitude (`"abc"`) falls through to the
8364 // shared codec's narrower `"bad duration magnitude"` arm. Same
8365 // diagnostic shape as the codec-side
8366 // `parse_garbage_still_falls_through_to_bad_magnitude` pin.
8367 let err = caixa_with_restart_window(Some("abc"))
8368 .validate_restart_window()
8369 .unwrap_err();
8370 let ManifestError::RestartWindowMalformed {
8371 restart_window,
8372 reason,
8373 } = err
8374 else {
8375 panic!("expected RestartWindowMalformed for garbage");
8376 };
8377 assert_eq!(restart_window, "abc");
8378 assert!(
8379 reason.contains("bad duration magnitude"),
8380 "diagnostic must carry shared-codec garbage-rejection wording, got {reason:?}"
8381 );
8382 }
8383
8384 #[test]
8385 fn validate_restart_window_rejects_empty_string() {
8386 // The empty-after-trim edge case — distinct from the `None`
8387 // canonical "omit the slot" shape. The shared codec's
8388 // digit-only gate refuses an empty magnitude; the manifest
8389 // layer names the offending `""` so the author can grep for
8390 // the literal empty value in their `caixa.lisp` and either
8391 // remove the slot (the canonical "no reset" shape) or pin a
8392 // positive duration.
8393 let err = caixa_with_restart_window(Some(""))
8394 .validate_restart_window()
8395 .unwrap_err();
8396 assert!(
8397 matches!(
8398 err,
8399 ManifestError::RestartWindowMalformed { ref restart_window, .. }
8400 if restart_window.is_empty()
8401 ),
8402 "got {err:?}"
8403 );
8404 }
8405
8406 #[test]
8407 fn validate_restart_window_diagnostic_carries_offending_value() {
8408 // Diagnostic-shape pin (peer with
8409 // `nome_invalid_diagnostic_carries_offending_nome` /
8410 // `versao_invalid_diagnostic_carries_offending_versao`): the
8411 // error names the offending raw `:restart-window` verbatim
8412 // with a non-empty shared-codec-shaped reason, so a `feira
8413 // lint` run can render the diagnostic without re-parsing.
8414 let err = caixa_with_restart_window(Some("1.5s"))
8415 .validate_restart_window()
8416 .unwrap_err();
8417 let ManifestError::RestartWindowMalformed {
8418 restart_window,
8419 reason,
8420 } = err
8421 else {
8422 panic!("expected RestartWindowMalformed variant");
8423 };
8424 assert_eq!(restart_window, "1.5s");
8425 assert!(
8426 !reason.is_empty(),
8427 "RestartWindowMalformed `reason` must carry the codec's wording verbatim"
8428 );
8429 }
8430
8431 #[test]
8432 fn supervisor_view_folds_through_shared_codec_on_canonical_form() {
8433 // Behavioral parity pin after the fold (`parse_window_inline`
8434 // deletion): the canonical `"60s"` still produces
8435 // `Duration::from_secs(60)` on the typed view — the fold is
8436 // semantically equivalent to the prior inline parser on the
8437 // accepted set. Mirrors the pre-fold `supervisor_view_returns_typed_shape`
8438 // pin, narrowed to the parser-side contract.
8439 let c = caixa_with_restart_window(Some("60s"));
8440 let view = c.supervisor_view().expect("Supervisor kind has a view");
8441 assert_eq!(
8442 view.restart_window,
8443 Some(std::time::Duration::from_secs(60))
8444 );
8445 }
8446
8447 #[test]
8448 fn supervisor_view_soft_swallows_what_validate_rejects() {
8449 // Parity pin between the view-construction path and the
8450 // manifest-level validator: the same `"1.5s"` that surfaces
8451 // `RestartWindowMalformed` at `validate_restart_window` time
8452 // becomes `restart_window: None` on the typed view (the fold
8453 // preserves the existing best-effort shape of `supervisor_view`).
8454 // The contract is: a layout-verifier / `feira lint` flow that
8455 // cares about the malformed-window axis MUST consult
8456 // `validate_restart_window` — relying solely on the view's
8457 // `None` swallows the diagnostic silently. This pin makes the
8458 // expectation a typed invariant.
8459 let c = caixa_with_restart_window(Some("1.5s"));
8460 let view = c.supervisor_view().expect("Supervisor kind has a view");
8461 assert_eq!(
8462 view.restart_window, None,
8463 "view-construction path soft-swallows the parse error to None"
8464 );
8465 // And the manifest-level validator does NOT soft-swallow:
8466 assert!(
8467 matches!(
8468 c.validate_restart_window().unwrap_err(),
8469 ManifestError::RestartWindowMalformed { ref restart_window, .. }
8470 if restart_window == "1.5s"
8471 ),
8472 "validator must surface the offending value",
8473 );
8474 }
8475
8476 // ── validate_code_paths — per-entry shape on :bibliotecas / :exe / :servicos ──
8477
8478 fn caixa_with_code_paths(bibliotecas: Vec<&str>, exe: Vec<&str>, servicos: Vec<&str>) -> Caixa {
8479 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
8480 c.bibliotecas = bibliotecas.into_iter().map(String::from).collect();
8481 c.exe = exe.into_iter().map(String::from).collect();
8482 c.servicos = servicos.into_iter().map(String::from).collect();
8483 c
8484 }
8485
8486 #[test]
8487 fn validate_code_paths_accepts_canonical_template() {
8488 // The bare `Caixa::template` shape is the gate's identity element
8489 // on the canonical authoring shape — `:bibliotecas
8490 // ("lib/demo.lisp")` + empty `:exe` + empty `:servicos`. Pins
8491 // that the gate is non-disruptive against every existing caixa.
8492 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
8493 c.validate_code_paths().unwrap();
8494 }
8495
8496 #[test]
8497 fn validate_code_paths_accepts_explicit_relative_paths_on_every_slot() {
8498 // Positive control sweep: a canonical-shaped path on every slot
8499 // passes. Mirrors the peer
8500 // `behavior::validate_every_slot_relative_is_ok` pin.
8501 let c = caixa_with_code_paths(
8502 vec!["lib/demo.lisp", "lib/helpers.lisp"],
8503 vec!["exe/demo", "exe/tool"],
8504 vec!["servicos/demo.computeunit.yaml"],
8505 );
8506 c.validate_code_paths().unwrap();
8507 }
8508
8509 #[test]
8510 fn validate_code_paths_accepts_all_empty_lists() {
8511 // The empty-list identity element: every Caixa with no declared
8512 // code paths trivially passes (Supervisor / Aplicacao kinds rely
8513 // on this — the OwnCode gate already rejected them before the
8514 // path-shape gate runs in the layout, but the validator itself
8515 // must accept the empty shape).
8516 let c = caixa_with_code_paths(vec![], vec![], vec![]);
8517 c.validate_code_paths().unwrap();
8518 }
8519
8520 #[test]
8521 fn validate_code_paths_rejects_empty_bibliotecas_entry() {
8522 let c = caixa_with_code_paths(vec![""], vec![], vec![]);
8523 let err = c.validate_code_paths().unwrap_err();
8524 assert!(
8525 matches!(
8526 err,
8527 ManifestError::CodePathEmpty {
8528 slot: ":bibliotecas"
8529 }
8530 ),
8531 "got {err:?}",
8532 );
8533 }
8534
8535 #[test]
8536 fn validate_code_paths_rejects_empty_exe_entry() {
8537 let c = caixa_with_code_paths(vec![], vec![""], vec![]);
8538 let err = c.validate_code_paths().unwrap_err();
8539 assert!(
8540 matches!(err, ManifestError::CodePathEmpty { slot: ":exe" }),
8541 "got {err:?}",
8542 );
8543 }
8544
8545 #[test]
8546 fn validate_code_paths_rejects_empty_servicos_entry() {
8547 let c = caixa_with_code_paths(vec![], vec![], vec![""]);
8548 let err = c.validate_code_paths().unwrap_err();
8549 assert!(
8550 matches!(err, ManifestError::CodePathEmpty { slot: ":servicos" }),
8551 "got {err:?}",
8552 );
8553 }
8554
8555 #[test]
8556 fn validate_code_paths_rejects_absolute_bibliotecas_entry() {
8557 // `:bibliotecas` has no `starts_with(<dir>)` fence downstream,
8558 // so an absolute path that resolves on disk silently passes the
8559 // layout's existence check — the canonical sandbox-escape on
8560 // the biblioteca axis.
8561 let c = caixa_with_code_paths(vec!["/etc/passwd"], vec![], vec![]);
8562 let err = c.validate_code_paths().unwrap_err();
8563 let ManifestError::CodePathAbsolute { slot, path } = err else {
8564 panic!("expected CodePathAbsolute, got {err:?}");
8565 };
8566 assert_eq!(slot, ":bibliotecas");
8567 assert_eq!(path, PathBuf::from("/etc/passwd"));
8568 }
8569
8570 #[test]
8571 fn validate_code_paths_rejects_absolute_exe_entry() {
8572 let c = caixa_with_code_paths(vec![], vec!["/usr/bin/env"], vec![]);
8573 let err = c.validate_code_paths().unwrap_err();
8574 let ManifestError::CodePathAbsolute { slot, path } = err else {
8575 panic!("expected CodePathAbsolute, got {err:?}");
8576 };
8577 assert_eq!(slot, ":exe");
8578 assert_eq!(path, PathBuf::from("/usr/bin/env"));
8579 }
8580
8581 #[test]
8582 fn validate_code_paths_rejects_absolute_servicos_entry() {
8583 let c = caixa_with_code_paths(vec![], vec![], vec!["/var/servicos/x.yaml"]);
8584 let err = c.validate_code_paths().unwrap_err();
8585 let ManifestError::CodePathAbsolute { slot, path } = err else {
8586 panic!("expected CodePathAbsolute, got {err:?}");
8587 };
8588 assert_eq!(slot, ":servicos");
8589 assert_eq!(path, PathBuf::from("/var/servicos/x.yaml"));
8590 }
8591
8592 #[test]
8593 fn validate_code_paths_rejects_parent_escape_bibliotecas_leading() {
8594 // Canonical "I want a lib from a sibling caixa" footgun on the
8595 // biblioteca axis. `:bibliotecas` has no `starts_with` fence
8596 // downstream, so a leading `..` traverses to the parent of the
8597 // caixa root with no diagnostic at layout time if the resolved
8598 // target exists.
8599 let c = caixa_with_code_paths(vec!["../sibling/x.lisp"], vec![], vec![]);
8600 let err = c.validate_code_paths().unwrap_err();
8601 let ManifestError::CodePathParentEscape { slot, path } = err else {
8602 panic!("expected CodePathParentEscape, got {err:?}");
8603 };
8604 assert_eq!(slot, ":bibliotecas");
8605 assert_eq!(path, PathBuf::from("../sibling/x.lisp"));
8606 }
8607
8608 #[test]
8609 fn validate_code_paths_rejects_parent_escape_exe_mid_path() {
8610 // Mid-path `..` defeats the layout's component-aware
8611 // `starts_with(exe_dir)` fence — `root.join("exe/../../escape")`
8612 // `starts_with(<root>/exe)` is true, but the canonical resolution
8613 // lives outside the caixa root. Caught regardless of where the
8614 // `..` sits — mirrors the peer
8615 // `behavior::validate_rejects_parent_escape_mid_path` pin.
8616 let c = caixa_with_code_paths(vec![], vec!["exe/../../escape"], vec![]);
8617 let err = c.validate_code_paths().unwrap_err();
8618 let ManifestError::CodePathParentEscape { slot, path } = err else {
8619 panic!("expected CodePathParentEscape, got {err:?}");
8620 };
8621 assert_eq!(slot, ":exe");
8622 assert_eq!(path, PathBuf::from("exe/../../escape"));
8623 }
8624
8625 #[test]
8626 fn validate_code_paths_rejects_parent_escape_servicos_trailing() {
8627 let c = caixa_with_code_paths(vec![], vec![], vec!["servicos/foo/../../escape.yaml"]);
8628 let err = c.validate_code_paths().unwrap_err();
8629 let ManifestError::CodePathParentEscape { slot, path } = err else {
8630 panic!("expected CodePathParentEscape, got {err:?}");
8631 };
8632 assert_eq!(slot, ":servicos");
8633 assert_eq!(path, PathBuf::from("servicos/foo/../../escape.yaml"));
8634 }
8635
8636 #[test]
8637 fn validate_code_paths_cross_slot_precedence_bibliotecas_before_exe_before_servicos() {
8638 // Cross-slot precedence pin: `:bibliotecas` → `:exe` →
8639 // `:servicos`. A manifest with malformed entries on all three
8640 // surfaces surfaces the `:bibliotecas` defect first, mirroring
8641 // the canonical declaration order
8642 // `Caixa::declared_foreign_code_slots` already establishes for
8643 // the foreign-code-slot diagnostic.
8644 let c = caixa_with_code_paths(vec![""], vec![""], vec![""]);
8645 let err = c.validate_code_paths().unwrap_err();
8646 assert!(
8647 matches!(
8648 err,
8649 ManifestError::CodePathEmpty {
8650 slot: ":bibliotecas"
8651 }
8652 ),
8653 "got {err:?}",
8654 );
8655 }
8656
8657 #[test]
8658 fn validate_code_paths_within_slot_precedence_empty_before_absolute_before_parent_escape() {
8659 // Within-slot precedence pin: empty → absolute → parent-escape,
8660 // matching the [`PathShapeViolation`] arm-ordering every peer
8661 // `is_sandboxed_relative_path` caller follows (b0c8389
8662 // BehaviorSpec, 26da2c7 UpgradeInstruction::StateChange). A
8663 // `:bibliotecas` list whose first entry is empty *and* whose
8664 // later entries are absolute/parent-escape surfaces the empty
8665 // arm first, on the lexicographically-earliest offending entry.
8666 let c = caixa_with_code_paths(vec!["", "/etc/passwd", "../escape.lisp"], vec![], vec![]);
8667 let err = c.validate_code_paths().unwrap_err();
8668 assert!(
8669 matches!(
8670 err,
8671 ManifestError::CodePathEmpty {
8672 slot: ":bibliotecas"
8673 }
8674 ),
8675 "got {err:?}",
8676 );
8677 }
8678
8679 #[test]
8680 fn validate_code_paths_first_offender_per_slot_wins() {
8681 // Within a single slot, the first declaration-order offender
8682 // surfaces — pins that the gate is left-to-right deterministic
8683 // (peer of every `*_first_collision_*` pin on duplicate gates).
8684 let c = caixa_with_code_paths(
8685 vec!["lib/ok.lisp", "/etc/escape", "../also-escape"],
8686 vec![],
8687 vec![],
8688 );
8689 let err = c.validate_code_paths().unwrap_err();
8690 let ManifestError::CodePathAbsolute { slot, path } = err else {
8691 panic!("expected CodePathAbsolute, got {err:?}");
8692 };
8693 assert_eq!(slot, ":bibliotecas");
8694 assert_eq!(path, PathBuf::from("/etc/escape"));
8695 }
8696
8697 #[test]
8698 fn validate_code_paths_diagnostic_carries_offending_slot_and_path() {
8699 // Diagnostic-shape pin (peer with
8700 // `nome_invalid_diagnostic_carries_offending_nome` /
8701 // `versao_invalid_diagnostic_carries_offending_versao`): the
8702 // error's Display surfaces both the offending `:slot` tag and
8703 // the offending path verbatim, so a `feira lint` run can render
8704 // the diagnostic without re-parsing.
8705 let c = caixa_with_code_paths(vec!["/etc/passwd"], vec![], vec![]);
8706 let rendered = c.validate_code_paths().unwrap_err().to_string();
8707 assert!(
8708 rendered.contains(":bibliotecas"),
8709 "diagnostic must name the offending slot: {rendered}",
8710 );
8711 assert!(
8712 rendered.contains("/etc/passwd"),
8713 "diagnostic must quote the offending path: {rendered}",
8714 );
8715 }
8716
8717 #[test]
8718 fn validate_code_paths_rejects_duplicate_bibliotecas_entry() {
8719 // Canonical copy-paste-the-wrong-file footgun on the biblioteca
8720 // axis. Without the gate `feira build` re-parses the same lib
8721 // twice, wasting work and silently masking the author's intent
8722 // to declare a *second* biblioteca.
8723 let c = caixa_with_code_paths(vec!["lib/demo.lisp", "lib/demo.lisp"], vec![], vec![]);
8724 let err = c.validate_code_paths().unwrap_err();
8725 let ManifestError::CodePathDuplicate { slot, path } = err else {
8726 panic!("expected CodePathDuplicate, got {err:?}");
8727 };
8728 assert_eq!(slot, ":bibliotecas");
8729 assert_eq!(path, PathBuf::from("lib/demo.lisp"));
8730 }
8731
8732 #[test]
8733 fn validate_code_paths_rejects_duplicate_exe_entry() {
8734 // Same footgun on the Binario surface. The future `caixa-flake`
8735 // emitter that materializes each `:exe` entry as a flake
8736 // `packages.<name>` derivation would collide on the duplicate
8737 // package key — surfaced here at the typed-validate layer with a
8738 // self-locating diagnostic instead.
8739 let c = caixa_with_code_paths(vec![], vec!["exe/cli", "exe/cli"], vec![]);
8740 let err = c.validate_code_paths().unwrap_err();
8741 let ManifestError::CodePathDuplicate { slot, path } = err else {
8742 panic!("expected CodePathDuplicate, got {err:?}");
8743 };
8744 assert_eq!(slot, ":exe");
8745 assert_eq!(path, PathBuf::from("exe/cli"));
8746 }
8747
8748 #[test]
8749 fn validate_code_paths_rejects_duplicate_servicos_entry() {
8750 // Same footgun on the Servico surface. The peer caixa-helm /
8751 // caixa-flux renderers refuse `:servicos.len() != 1` with the
8752 // narrower `UnsupportedServicoCount` diagnostic, but that
8753 // diagnostic surfaces "too many servicos" without naming
8754 // "duplicate entry" — the typed self-locating framing only lands
8755 // at this gate.
8756 let c = caixa_with_code_paths(
8757 vec![],
8758 vec![],
8759 vec![
8760 "servicos/demo.computeunit.yaml",
8761 "servicos/demo.computeunit.yaml",
8762 ],
8763 );
8764 let err = c.validate_code_paths().unwrap_err();
8765 let ManifestError::CodePathDuplicate { slot, path } = err else {
8766 panic!("expected CodePathDuplicate, got {err:?}");
8767 };
8768 assert_eq!(slot, ":servicos");
8769 assert_eq!(path, PathBuf::from("servicos/demo.computeunit.yaml"));
8770 }
8771
8772 #[test]
8773 fn validate_code_paths_accepts_same_path_across_slots() {
8774 // Per-list scope pin: a `:bibliotecas` entry that happens to
8775 // collide with an `:exe` or `:servicos` entry as a *string* is
8776 // not a duplicate by this gate (each list gets its own HashSet),
8777 // mirroring the peer `:deps` ↔ `:deps-dev` per-list scope
8778 // (a `:nome` present in both lists is a legitimate dev-vs-runtime
8779 // shape on the dep axis). The structural `starts_with(<exe |
8780 // servicos>_dir)` fence at layout time prevents the realistic
8781 // cross-slot collision case from existing on disk, but the gate's
8782 // per-list scope is correct independent of that downstream fence.
8783 let c = caixa_with_code_paths(
8784 vec!["lib/x.lisp"],
8785 vec!["exe/x"],
8786 vec!["servicos/x.computeunit.yaml"],
8787 );
8788 c.validate_code_paths().unwrap();
8789 }
8790
8791 #[test]
8792 fn validate_code_paths_duplicate_fires_after_structural_checks_on_same_slot() {
8793 // Within-slot ordering pin: structural defects (empty / absolute
8794 // / parent-escape) fire before the duplicate gate on the same
8795 // slot. A `:bibliotecas ("" "lib/x.lisp" "lib/x.lisp")` shape
8796 // surfaces the narrower `CodePathEmpty` for the empty entry
8797 // first, not the duplicate on the later pair — same arm-ordering
8798 // every peer per-list duplicate gate uses (`:etiquetas` 360a499,
8799 // `:autores` 86c769b, `:deps` 359fba5).
8800 let c = caixa_with_code_paths(vec!["", "lib/x.lisp", "lib/x.lisp"], vec![], vec![]);
8801 let err = c.validate_code_paths().unwrap_err();
8802 assert!(
8803 matches!(
8804 err,
8805 ManifestError::CodePathEmpty {
8806 slot: ":bibliotecas"
8807 }
8808 ),
8809 "got {err:?}",
8810 );
8811 }
8812
8813 #[test]
8814 fn validate_code_paths_duplicate_in_bibliotecas_fires_before_duplicate_in_exe() {
8815 // Cross-slot ordering pin on the duplicate arm: `:bibliotecas`
8816 // duplicates surface before `:exe` duplicates, matching the
8817 // canonical `:bibliotecas` → `:exe` → `:servicos` declaration
8818 // order every peer per-slot diagnostic on this surface follows.
8819 let c = caixa_with_code_paths(
8820 vec!["lib/x.lisp", "lib/x.lisp"],
8821 vec!["exe/y", "exe/y"],
8822 vec![],
8823 );
8824 let err = c.validate_code_paths().unwrap_err();
8825 let ManifestError::CodePathDuplicate { slot, path } = err else {
8826 panic!("expected CodePathDuplicate, got {err:?}");
8827 };
8828 assert_eq!(slot, ":bibliotecas");
8829 assert_eq!(path, PathBuf::from("lib/x.lisp"));
8830 }
8831
8832 #[test]
8833 fn validate_code_paths_duplicate_diagnostic_carries_offending_slot_and_path() {
8834 // Diagnostic-shape pin (peer with
8835 // `validate_code_paths_diagnostic_carries_offending_slot_and_path`
8836 // on the structural arm): the duplicate-arm Display surfaces both
8837 // the offending `:slot` tag and the offending path verbatim, so a
8838 // `feira lint` run can render the diagnostic without re-parsing.
8839 let c = caixa_with_code_paths(
8840 vec![],
8841 vec![],
8842 vec![
8843 "servicos/demo.computeunit.yaml",
8844 "servicos/demo.computeunit.yaml",
8845 ],
8846 );
8847 let rendered = c.validate_code_paths().unwrap_err().to_string();
8848 assert!(
8849 rendered.contains(":servicos"),
8850 "diagnostic must name the offending slot: {rendered}",
8851 );
8852 assert!(
8853 rendered.contains("servicos/demo.computeunit.yaml"),
8854 "diagnostic must quote the offending path: {rendered}",
8855 );
8856 }
8857
8858 // ── validate_code_paths — `.lisp` extension gate on :bibliotecas ──
8859 //
8860 // The lifted [`crate::render::is_lisp_extension`] predicate (33cc830)
8861 // now gates `:bibliotecas` entries on the tatara-lisp-source file-type
8862 // contract. The `feira build` loop (`caixa-feira/src/cmd/build.rs:33`)
8863 // reads every declared `:bibliotecas` entry through `tatara_lisp::read`
8864 // at parse time — the same downstream consumer the peer `:behavior
8865 // :on-*` (c97815a, [`crate::BehaviorError::NonLispExtension`]) and
8866 // `:upgrade-from :state-change :script` (33cc830,
8867 // [`crate::UpgradeError::NonLispExtensionScript`]) axes route through.
8868 // `:exe` and `:servicos` are deliberately excluded — `:exe` is the
8869 // nix-built executable surface (`"exe/<name>"` shape per the canonical
8870 // [`crate::LayoutError::ExeOutsideDir`] error message and every
8871 // in-tree `caixa_with_code_paths` positive control), and `:servicos`
8872 // is the `.computeunit.yaml` ComputeUnit-CR axis.
8873
8874 #[test]
8875 fn validate_code_paths_rejects_no_extension_bibliotecas_entry() {
8876 // Canonical "I dragged the wrong file from the workspace tree"
8877 // footgun on the biblioteca axis. Without the gate `feira build`
8878 // hands the extensionless path to `tatara_lisp::read` and fails
8879 // with a parser-shaped diagnostic far from the source caixa.lisp,
8880 // with no field naming the offending `:bibliotecas` entry.
8881 for relpath in ["lib/demo", "demo", "lib/handlers/inner"] {
8882 let c = caixa_with_code_paths(vec![relpath], vec![], vec![]);
8883 let err = c.validate_code_paths().unwrap_err();
8884 let ManifestError::CodePathNonLispExtension { slot, path } = err else {
8885 panic!("expected CodePathNonLispExtension for {relpath:?}, got {err:?}");
8886 };
8887 assert_eq!(slot, ":bibliotecas");
8888 assert_eq!(path, PathBuf::from(relpath));
8889 }
8890 }
8891
8892 #[test]
8893 fn validate_code_paths_rejects_wrong_extension_bibliotecas_entry() {
8894 // Wrong-extension sweep across common authoring footguns. Same
8895 // sweep posture as the peer
8896 // `behavior::validate_rejects_wrong_extension` (c97815a) and
8897 // `upgrade::tests::state_change_rejects_wrong_extension_script`
8898 // (33cc830) cases.
8899 for relpath in [
8900 "lib/demo.rs",
8901 "lib/demo.txt",
8902 "lib/demo.md",
8903 "lib/demo.json",
8904 "lib/demo.yaml",
8905 "lib/demo.toml",
8906 "lib/demo.lisp.bak",
8907 "lib/demo.lispx",
8908 "lib/demo.lis",
8909 ] {
8910 let c = caixa_with_code_paths(vec![relpath], vec![], vec![]);
8911 let err = c.validate_code_paths().unwrap_err();
8912 let ManifestError::CodePathNonLispExtension { slot, path } = err else {
8913 panic!("expected CodePathNonLispExtension for {relpath:?}, got {err:?}");
8914 };
8915 assert_eq!(slot, ":bibliotecas");
8916 assert_eq!(path, PathBuf::from(relpath));
8917 }
8918 }
8919
8920 #[test]
8921 fn validate_code_paths_rejects_case_folded_extension_bibliotecas_entry() {
8922 // Case-sensitivity sweep — pins the strict lowercase `.lisp`
8923 // contract. An uppercase `.LISP` shape that the layout's existence
8924 // check would (case-insensitively, on case-insensitive volumes)
8925 // match the on-disk file still mismatches the canonical form the
8926 // codec emits, breaking the THEORY.md §V.2.7 render-determinism
8927 // contract. Mirrors the peer
8928 // `behavior::validate_rejects_case_folded_extension` (c97815a) and
8929 // `upgrade::tests::state_change_rejects_case_folded_extension_script`
8930 // (33cc830) sweeps.
8931 for relpath in [
8932 "lib/demo.LISP",
8933 "lib/demo.Lisp",
8934 "lib/demo.LiSp",
8935 "lib/demo.lISP",
8936 ] {
8937 let c = caixa_with_code_paths(vec![relpath], vec![], vec![]);
8938 let err = c.validate_code_paths().unwrap_err();
8939 let ManifestError::CodePathNonLispExtension { slot, path } = err else {
8940 panic!("expected CodePathNonLispExtension for {relpath:?}, got {err:?}");
8941 };
8942 assert_eq!(slot, ":bibliotecas");
8943 assert_eq!(path, PathBuf::from(relpath));
8944 }
8945 }
8946
8947 #[test]
8948 fn validate_code_paths_accepts_canonical_lisp_shapes() {
8949 // Positive-control sweep through every canonical authoring shape
8950 // every in-tree fixture and the `Caixa::template` scaffold use.
8951 // Mirrors the peer `behavior::validate_accepts_canonical_lisp_paths`
8952 // (c97815a) and the lifted predicate's own
8953 // `is_lisp_extension_accepts_canonical_shapes` sweep in render.rs
8954 // (33cc830).
8955 for relpath in [
8956 "lib/demo.lisp",
8957 "lib/handlers.lisp",
8958 "lib/migrations/v01-to-v02.lisp",
8959 "demo.lisp",
8960 "a.lisp",
8961 "./lib/demo.lisp",
8962 "lib/./handlers.lisp",
8963 "lib/migrations/v.0.1.lisp",
8964 ] {
8965 let c = caixa_with_code_paths(vec![relpath], vec![], vec![]);
8966 c.validate_code_paths()
8967 .unwrap_or_else(|e| panic!("canonical shape {relpath:?} must pass, got {e:?}"));
8968 }
8969 }
8970
8971 #[test]
8972 fn validate_code_paths_non_lisp_extension_does_not_fire_on_exe_or_servicos() {
8973 // The file-type gate is per-slot — only `:bibliotecas` carries the
8974 // tatara-lisp-source contract. An extensionless `:exe` entry
8975 // (`exe/demo`) and a `.computeunit.yaml` `:servicos` entry are the
8976 // canonical shapes every in-tree fixture uses, and must continue
8977 // to pass validate. Pins that a future tightening that broadens
8978 // the `.lisp` gate to either axis surfaces as a test failure
8979 // rather than as a silent breaking change to existing valid
8980 // manifests.
8981 let c = caixa_with_code_paths(
8982 vec![],
8983 vec!["exe/demo", "exe/tool"],
8984 vec!["servicos/demo.computeunit.yaml"],
8985 );
8986 c.validate_code_paths().unwrap();
8987 }
8988
8989 #[test]
8990 fn validate_code_paths_sandbox_shape_arms_precede_non_lisp_extension() {
8991 // Cross-arm precedence pin: a `:bibliotecas` entry that is *both*
8992 // sandbox-escaping and non-`.lisp` surfaces the more fundamental
8993 // sandbox-shape diagnostic first (the `.lisp` remediation would
8994 // be misleading when the offending path can never resolve under
8995 // the caixa root anyway). Mirrors the peer
8996 // `EmptyPath` → `AbsolutePath` → `ParentEscape` → `NonLispExtension`
8997 // ordering on `:behavior :on-*` (c97815a) and `EmptyScript` →
8998 // `AbsoluteScript` → `ParentEscapeScript` → `NonLispExtensionScript`
8999 // on `:upgrade-from :state-change :script` (33cc830).
9000 //
9001 // Empty wins (the strictly-smaller-scope structural arm).
9002 let c = caixa_with_code_paths(vec![""], vec![], vec![]);
9003 assert!(
9004 matches!(
9005 c.validate_code_paths().unwrap_err(),
9006 ManifestError::CodePathEmpty {
9007 slot: ":bibliotecas"
9008 }
9009 ),
9010 "empty must win over non-lisp-extension",
9011 );
9012 // Absolute wins (the path can't resolve under the caixa root).
9013 let c = caixa_with_code_paths(vec!["/etc/passwd"], vec![], vec![]);
9014 let err = c.validate_code_paths().unwrap_err();
9015 let ManifestError::CodePathAbsolute { slot, .. } = err else {
9016 panic!("absolute must win over non-lisp-extension, got {err:?}");
9017 };
9018 assert_eq!(slot, ":bibliotecas");
9019 // ParentEscape wins (the path escapes the caixa root).
9020 let c = caixa_with_code_paths(vec!["../sibling/x.txt"], vec![], vec![]);
9021 let err = c.validate_code_paths().unwrap_err();
9022 let ManifestError::CodePathParentEscape { slot, .. } = err else {
9023 panic!("parent-escape must win over non-lisp-extension, got {err:?}");
9024 };
9025 assert_eq!(slot, ":bibliotecas");
9026 }
9027
9028 #[test]
9029 fn validate_code_paths_non_lisp_extension_precedes_duplicate() {
9030 // Within-slot precedence pin: the per-entry file-type shape gate
9031 // fires before the cross-entry duplicate gate, so the narrower
9032 // structural defect dominates the uniqueness diagnostic. A
9033 // `("lib/x.txt" "lib/x.txt")` shape surfaces
9034 // `CodePathNonLispExtension` on the first entry rather than
9035 // `CodePathDuplicate` on the pair — same posture every per-entry
9036 // shape-gate-precedes-duplicate cascade follows on this surface
9037 // (the empty / absolute / parent-escape arms already precede the
9038 // duplicate arm; the lifted file-type arm joins that set).
9039 let c = caixa_with_code_paths(vec!["lib/x.txt", "lib/x.txt"], vec![], vec![]);
9040 let err = c.validate_code_paths().unwrap_err();
9041 let ManifestError::CodePathNonLispExtension { slot, path } = err else {
9042 panic!("expected CodePathNonLispExtension, got {err:?}");
9043 };
9044 assert_eq!(slot, ":bibliotecas");
9045 assert_eq!(path, PathBuf::from("lib/x.txt"));
9046 }
9047
9048 #[test]
9049 fn validate_code_paths_non_lisp_extension_diagnostic_carries_offending_slot_and_path() {
9050 // Diagnostic-shape pin (peer with
9051 // `validate_code_paths_diagnostic_carries_offending_slot_and_path`
9052 // on the sandbox-shape arms and
9053 // `validate_code_paths_duplicate_diagnostic_carries_offending_slot_and_path`
9054 // on the duplicate arm): the file-type-arm Display surfaces both
9055 // the offending `:slot` tag, the offending path verbatim, and the
9056 // expected `.lisp` extension named in the remediation text, so a
9057 // `feira lint` run can render the diagnostic without re-parsing.
9058 let c = caixa_with_code_paths(vec!["lib/demo.rs"], vec![], vec![]);
9059 let rendered = c.validate_code_paths().unwrap_err().to_string();
9060 assert!(
9061 rendered.contains(":bibliotecas"),
9062 "diagnostic must name the offending slot: {rendered}",
9063 );
9064 assert!(
9065 rendered.contains("lib/demo.rs"),
9066 "diagnostic must quote the offending path: {rendered}",
9067 );
9068 assert!(
9069 rendered.contains(".lisp"),
9070 "diagnostic must name the expected extension: {rendered}",
9071 );
9072 }
9073
9074 // ── validate_code_paths — `.computeunit.yaml` compound-suffix gate on :servicos ──
9075 //
9076 // The lifted [`crate::render::is_computeunit_yaml_extension`] predicate
9077 // now gates `:servicos` entries on the ComputeUnit-CR YAML file-type
9078 // contract. The peer caixa-helm / caixa-flux renderers consume each
9079 // `:servicos` entry through `serde_yaml::from_str` as a typed
9080 // `ComputeUnit` CR — same downstream-consumer-shape lift as the peer
9081 // `:bibliotecas` `.lisp` gate (64772a9), here on the compound-suffix
9082 // axis `Path::extension` can't express on its own.
9083
9084 #[test]
9085 fn validate_code_paths_rejects_no_extension_servicos_entry() {
9086 // Canonical "I dragged the wrong file from the workspace tree"
9087 // footgun on the Servico axis. Without the gate the peer
9088 // caixa-helm / caixa-flux renderers hand the extensionless path
9089 // to `serde_yaml::from_str` and fail with a parser-shaped
9090 // diagnostic far from the source caixa.lisp, with no field
9091 // naming the offending `:servicos` entry.
9092 for relpath in ["servicos/demo", "demo", "servicos/sub/nested"] {
9093 let c = caixa_with_code_paths(vec![], vec![], vec![relpath]);
9094 let err = c.validate_code_paths().unwrap_err();
9095 let ManifestError::CodePathNonComputeUnitYamlExtension { slot, path } = err else {
9096 panic!(
9097 "expected CodePathNonComputeUnitYamlExtension for {relpath:?}, \
9098 got {err:?}"
9099 );
9100 };
9101 assert_eq!(slot, ":servicos");
9102 assert_eq!(path, PathBuf::from(relpath));
9103 }
9104 }
9105
9106 #[test]
9107 fn validate_code_paths_rejects_wrong_extension_servicos_entry() {
9108 // Wrong-extension sweep across common authoring footguns on the
9109 // Servico axis. Bare `.yaml` is the canonical "I forgot the
9110 // `.computeunit` segment" typo; the off-by-one-segment shapes
9111 // (`.computeunit-yaml` / `.computeunit_yaml`) silently pass the
9112 // bare `Path::extension` view but mismatch the typed compound
9113 // suffix the renderers' `serde_yaml::from_str` consumer demands.
9114 // Same sweep-posture as the peer
9115 // `validate_code_paths_rejects_wrong_extension_bibliotecas_entry`
9116 // (64772a9) on the sibling tatara-lisp-source axis.
9117 for relpath in [
9118 "servicos/demo.yaml",
9119 "servicos/demo.yml",
9120 "servicos/demo.json",
9121 "servicos/demo.toml",
9122 "servicos/demo.txt",
9123 "servicos/demo.computeunit.yaml.bak",
9124 "servicos/demo.computeunit.yam",
9125 "servicos/demo.computeunit",
9126 "servicos/demo-computeunit.yaml",
9127 "servicos/demo_computeunit.yaml",
9128 ] {
9129 let c = caixa_with_code_paths(vec![], vec![], vec![relpath]);
9130 let err = c.validate_code_paths().unwrap_err();
9131 let ManifestError::CodePathNonComputeUnitYamlExtension { slot, path } = err else {
9132 panic!(
9133 "expected CodePathNonComputeUnitYamlExtension for {relpath:?}, \
9134 got {err:?}"
9135 );
9136 };
9137 assert_eq!(slot, ":servicos");
9138 assert_eq!(path, PathBuf::from(relpath));
9139 }
9140 }
9141
9142 #[test]
9143 fn validate_code_paths_rejects_case_folded_extension_servicos_entry() {
9144 // Case-sensitivity sweep — pins the strict lowercase
9145 // `.computeunit.yaml` contract. A case-folded shape that the
9146 // layout's existence check would (case-insensitively, on
9147 // case-insensitive volumes) match the on-disk file still
9148 // mismatches the canonical form the codec emits, breaking the
9149 // THEORY.md §V.2.7 render-determinism contract. Mirrors the peer
9150 // `validate_code_paths_rejects_case_folded_extension_bibliotecas_entry`
9151 // (64772a9) sweep on the sibling tatara-lisp-source axis.
9152 for relpath in [
9153 "servicos/demo.ComputeUnit.yaml",
9154 "servicos/demo.COMPUTEUNIT.yaml",
9155 "servicos/demo.computeunit.YAML",
9156 "servicos/demo.computeunit.Yaml",
9157 "servicos/demo.COMPUTEUNIT.YAML",
9158 ] {
9159 let c = caixa_with_code_paths(vec![], vec![], vec![relpath]);
9160 let err = c.validate_code_paths().unwrap_err();
9161 let ManifestError::CodePathNonComputeUnitYamlExtension { slot, path } = err else {
9162 panic!(
9163 "expected CodePathNonComputeUnitYamlExtension for {relpath:?}, \
9164 got {err:?}"
9165 );
9166 };
9167 assert_eq!(slot, ":servicos");
9168 assert_eq!(path, PathBuf::from(relpath));
9169 }
9170 }
9171
9172 #[test]
9173 fn validate_code_paths_rejects_empty_stem_servicos_entry() {
9174 // Degenerate hidden-file shape: a file name exactly equal to the
9175 // suffix (`.computeunit.yaml` — no stem preceding the suffix) is
9176 // the structural "Servico declared with no identity" footgun.
9177 // The substrate identifies each ComputeUnit by the file-stem
9178 // segment that precedes `.computeunit.yaml` (the rendered
9179 // `lareira-<stem>` Helm chart, the per-Servico `metadata.name`,
9180 // the M3 `:contratos` membership lookup), so an empty stem
9181 // leaves the Servico unidentifiable. Pinned at the typed-axis
9182 // level so a future regression that drops the `name.len() >
9183 // SUFFIX.len()` bound at the predicate surfaces here, not
9184 // piecemeal as a `lareira-` chart-name collision at render time.
9185 for relpath in ["servicos/.computeunit.yaml"] {
9186 let c = caixa_with_code_paths(vec![], vec![], vec![relpath]);
9187 let err = c.validate_code_paths().unwrap_err();
9188 let ManifestError::CodePathNonComputeUnitYamlExtension { slot, path } = err else {
9189 panic!(
9190 "expected CodePathNonComputeUnitYamlExtension for {relpath:?}, \
9191 got {err:?}"
9192 );
9193 };
9194 assert_eq!(slot, ":servicos");
9195 assert_eq!(path, PathBuf::from(relpath));
9196 }
9197 }
9198
9199 #[test]
9200 fn validate_code_paths_accepts_canonical_computeunit_yaml_shapes() {
9201 // Positive-control sweep through every canonical authoring shape
9202 // every in-tree fixture and the `Caixa::template` scaffold use.
9203 // Mirrors the peer
9204 // `validate_code_paths_accepts_canonical_lisp_shapes` (64772a9)
9205 // and the lifted predicate's own
9206 // `computeunit_yaml_extension_accepts_canonical_shapes` sweep in
9207 // render.rs.
9208 for relpath in [
9209 "servicos/demo.computeunit.yaml",
9210 "servicos/hello-rio.computeunit.yaml",
9211 "servicos/my-service.computeunit.yaml",
9212 "servicos/a.computeunit.yaml",
9213 "./servicos/demo.computeunit.yaml",
9214 "servicos/./demo.computeunit.yaml",
9215 "servicos/sub/nested.computeunit.yaml",
9216 "servicos/v0.1.computeunit.yaml",
9217 ] {
9218 let c = caixa_with_code_paths(vec![], vec![], vec![relpath]);
9219 c.validate_code_paths()
9220 .unwrap_or_else(|e| panic!("canonical shape {relpath:?} must pass, got {e:?}"));
9221 }
9222 }
9223
9224 #[test]
9225 fn validate_code_paths_non_computeunit_yaml_extension_does_not_fire_on_bibliotecas_or_exe() {
9226 // The file-type gate is per-slot — only `:servicos` carries the
9227 // ComputeUnit-CR YAML contract. A canonical `.lisp` `:bibliotecas`
9228 // entry and an extensionless `:exe` entry are the canonical
9229 // shapes every in-tree fixture uses, and must continue to pass
9230 // validate. Peer of
9231 // `validate_code_paths_non_lisp_extension_does_not_fire_on_exe_or_servicos`
9232 // (64772a9) — together pin that the typed
9233 // [`CodePathFileType`] dispatch is exhaustively per-slot, with no
9234 // cross-axis leakage in either direction.
9235 let c = caixa_with_code_paths(
9236 vec!["lib/demo.lisp"],
9237 vec!["exe/demo", "exe/tool"],
9238 vec!["servicos/demo.computeunit.yaml"],
9239 );
9240 c.validate_code_paths().unwrap();
9241 }
9242
9243 #[test]
9244 fn validate_code_paths_sandbox_shape_arms_precede_non_computeunit_yaml_extension() {
9245 // Cross-arm precedence pin: a `:servicos` entry that is *both*
9246 // sandbox-escaping and wrong-extension surfaces the more
9247 // fundamental sandbox-shape diagnostic first (the
9248 // `.computeunit.yaml` remediation would be misleading when the
9249 // offending path can never resolve under the caixa root
9250 // anyway). Mirrors the peer
9251 // `validate_code_paths_sandbox_shape_arms_precede_non_lisp_extension`
9252 // (64772a9) ordering on the sibling `:bibliotecas` axis and the
9253 // peer `EmptyPath` → `AbsolutePath` → `ParentEscape` →
9254 // `NonComputeUnitYamlExtension` arm-ordering the dispatch
9255 // table establishes.
9256 //
9257 // Empty wins (the strictly-smaller-scope structural arm).
9258 let c = caixa_with_code_paths(vec![], vec![], vec![""]);
9259 assert!(
9260 matches!(
9261 c.validate_code_paths().unwrap_err(),
9262 ManifestError::CodePathEmpty { slot: ":servicos" }
9263 ),
9264 "empty must win over non-computeunit-yaml-extension",
9265 );
9266 // Absolute wins (the path can't resolve under the caixa root).
9267 let c = caixa_with_code_paths(vec![], vec![], vec!["/etc/foo.yaml"]);
9268 let err = c.validate_code_paths().unwrap_err();
9269 let ManifestError::CodePathAbsolute { slot, .. } = err else {
9270 panic!("absolute must win over non-computeunit-yaml-extension, got {err:?}");
9271 };
9272 assert_eq!(slot, ":servicos");
9273 // ParentEscape wins (the path escapes the caixa root).
9274 let c = caixa_with_code_paths(vec![], vec![], vec!["../sibling/x.yaml"]);
9275 let err = c.validate_code_paths().unwrap_err();
9276 let ManifestError::CodePathParentEscape { slot, .. } = err else {
9277 panic!("parent-escape must win over non-computeunit-yaml-extension, got {err:?}");
9278 };
9279 assert_eq!(slot, ":servicos");
9280 }
9281
9282 #[test]
9283 fn validate_code_paths_non_computeunit_yaml_extension_precedes_duplicate() {
9284 // Within-slot precedence pin: the per-entry file-type shape gate
9285 // fires before the cross-entry duplicate gate, so the narrower
9286 // structural defect dominates the uniqueness diagnostic. A
9287 // `("servicos/x.yaml" "servicos/x.yaml")` shape surfaces
9288 // `CodePathNonComputeUnitYamlExtension` on the first entry
9289 // rather than `CodePathDuplicate` on the pair — same posture
9290 // every per-entry shape-gate-precedes-duplicate cascade follows
9291 // on this surface, peer of the 64772a9 `:bibliotecas`
9292 // `("lib/x.txt" "lib/x.txt")` ordering.
9293 let c = caixa_with_code_paths(vec![], vec![], vec!["servicos/x.yaml", "servicos/x.yaml"]);
9294 let err = c.validate_code_paths().unwrap_err();
9295 let ManifestError::CodePathNonComputeUnitYamlExtension { slot, path } = err else {
9296 panic!("expected CodePathNonComputeUnitYamlExtension, got {err:?}");
9297 };
9298 assert_eq!(slot, ":servicos");
9299 assert_eq!(path, PathBuf::from("servicos/x.yaml"));
9300 }
9301
9302 #[test]
9303 fn validate_code_paths_non_computeunit_yaml_extension_diagnostic_carries_offending_slot_and_path()
9304 {
9305 // Diagnostic-shape pin (peer with
9306 // `validate_code_paths_non_lisp_extension_diagnostic_carries_offending_slot_and_path`
9307 // on the sibling tatara-lisp-source axis): the file-type-arm
9308 // Display surfaces both the offending `:slot` tag, the
9309 // offending path verbatim, and the expected
9310 // `.computeunit.yaml` compound suffix named in the remediation
9311 // text, so a `feira lint` run can render the diagnostic without
9312 // re-parsing.
9313 let c = caixa_with_code_paths(vec![], vec![], vec!["servicos/demo.yaml"]);
9314 let rendered = c.validate_code_paths().unwrap_err().to_string();
9315 assert!(
9316 rendered.contains(":servicos"),
9317 "diagnostic must name the offending slot: {rendered}",
9318 );
9319 assert!(
9320 rendered.contains("servicos/demo.yaml"),
9321 "diagnostic must quote the offending path: {rendered}",
9322 );
9323 assert!(
9324 rendered.contains(".computeunit.yaml"),
9325 "diagnostic must name the expected compound suffix: {rendered}",
9326 );
9327 }
9328
9329 // ── validate_etiquetas — universal-axis registry-search-tag shape ──
9330
9331 fn caixa_with_etiquetas(etiquetas: Vec<&str>) -> Caixa {
9332 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
9333 c.etiquetas = etiquetas.into_iter().map(String::from).collect();
9334 c
9335 }
9336
9337 #[test]
9338 fn validate_etiquetas_accepts_empty_list() {
9339 // The empty-list identity: every caixa with no declared tags
9340 // trivially passes — `Caixa::template` emits `:etiquetas ()`,
9341 // so the gate is non-disruptive against every existing manifest.
9342 let c = caixa_with_etiquetas(vec![]);
9343 c.validate_etiquetas().unwrap();
9344 }
9345
9346 #[test]
9347 fn validate_etiquetas_accepts_canonical_forms() {
9348 // Positive control sweep: a canonical-shaped non-empty distinct
9349 // tag list passes, mirroring the example checkout-aplicacao
9350 // (`:etiquetas ("example" "aplicacao" "mesh" "ecommerce" "demo")`)
9351 // and the hello-rio fixture (`("hello-world" "wasm" "rust")`).
9352 let c = caixa_with_etiquetas(vec!["example", "aplicacao", "mesh", "ecommerce", "demo"]);
9353 c.validate_etiquetas().unwrap();
9354 }
9355
9356 #[test]
9357 fn validate_etiquetas_rejects_empty_entry() {
9358 // Canonical paste-from-blank-doc footgun. Without the gate the
9359 // empty entry rendered as `keywords: [""]` in `Chart.yaml`, a
9360 // no-op tag indexing nothing in the future caixa-registry.
9361 let c = caixa_with_etiquetas(vec![""]);
9362 let err = c.validate_etiquetas().unwrap_err();
9363 assert!(matches!(err, ManifestError::EtiquetaEmpty), "got {err:?}",);
9364 }
9365
9366 #[test]
9367 fn validate_etiquetas_rejects_duplicate_entry() {
9368 // Canonical copy-paste-the-wrong-tag footgun. Without the gate
9369 // the duplicate was silently dedup'd by caixa-helm's BTreeSet
9370 // collect at chart render — a "second wins / one silently
9371 // disappears" shape divergent from every peer typed-graph set
9372 // gate. The duplicate-arm names the offending tag verbatim.
9373 let c = caixa_with_etiquetas(vec!["demo", "demo"]);
9374 let err = c.validate_etiquetas().unwrap_err();
9375 let ManifestError::EtiquetaDuplicate { etiqueta } = err else {
9376 panic!("expected EtiquetaDuplicate, got {err:?}");
9377 };
9378 assert_eq!(etiqueta, "demo");
9379 }
9380
9381 #[test]
9382 fn validate_etiquetas_empty_takes_precedence_over_duplicate() {
9383 // Empty-first cascade pin: `("" "demo" "demo")` surfaces
9384 // `EtiquetaEmpty` not `EtiquetaDuplicate` — the narrower
9385 // structural "this entry has no value" defect dominates the
9386 // cross-entry uniqueness diagnostic. Mirrors the peer
9387 // empty-before-duplicate cascades on `:caracteristicas`
9388 // (`CaracteristicaEmpty` before `CaracteristicaDuplicate`,
9389 // fc3b4d5) and `:membros :caixa` (`MembroCaixaEmpty` before
9390 // `MembroDuplicate`).
9391 let c = caixa_with_etiquetas(vec!["", "demo", "demo"]);
9392 let err = c.validate_etiquetas().unwrap_err();
9393 assert!(matches!(err, ManifestError::EtiquetaEmpty), "got {err:?}",);
9394 }
9395
9396 #[test]
9397 fn validate_etiquetas_duplicate_reports_first_collision() {
9398 // First-collision pin: `("a" "b" "a" "b")` surfaces the `"a"`
9399 // duplicate (the lexicographically-earliest offending position
9400 // — the second `"a"` at index 2 collides with the first `"a"`
9401 // at index 0), not the later `"b"` collision at index 3,
9402 // peer with every other first-collision diagnostic posture on
9403 // this surface (`validate_load_singularity_reports_first_collision`,
9404 // `validate_cleanup_singularity_reports_first_collision`).
9405 let c = caixa_with_etiquetas(vec!["a", "b", "a", "b"]);
9406 let err = c.validate_etiquetas().unwrap_err();
9407 let ManifestError::EtiquetaDuplicate { etiqueta } = err else {
9408 panic!("expected EtiquetaDuplicate, got {err:?}");
9409 };
9410 assert_eq!(etiqueta, "a");
9411 }
9412
9413 #[test]
9414 fn validate_etiquetas_case_sensitive() {
9415 // Case-sensitivity pin: `("Foo" "foo")` is two distinct entries,
9416 // mirroring the peer `:membros :caixa` / `:children :caixa`
9417 // exact-string-match discipline. The shape gate this routine
9418 // landed (`is_chart_keyword_shape`, Cargo crates.io keyword
9419 // grammar) accepts mixed case — crates.io's keyword rule is
9420 // "case-insensitive" at the index layer but admits mixed case
9421 // at the entry layer (the canonical Helm chart `keywords:`
9422 // shape is lowercase by convention, but the grammar admits
9423 // uppercase). Case-sensitivity at the duplicate-set layer
9424 // remains structural — two distinct strings are two distinct
9425 // entries.
9426 let c = caixa_with_etiquetas(vec!["Foo", "foo"]);
9427 c.validate_etiquetas().unwrap();
9428 }
9429
9430 #[test]
9431 fn validate_etiquetas_diagnostic_carries_offending_tag() {
9432 // Diagnostic-shape pin (peer with
9433 // `validate_code_paths_diagnostic_carries_offending_slot_and_path`):
9434 // the error's Display surfaces the offending tag verbatim, so a
9435 // `feira lint` run can render the diagnostic without re-parsing
9436 // and the author can grep their caixa.lisp for the offending
9437 // value.
9438 let c = caixa_with_etiquetas(vec!["demo", "demo"]);
9439 let rendered = c.validate_etiquetas().unwrap_err().to_string();
9440 assert!(
9441 rendered.contains(":etiquetas"),
9442 "diagnostic must name the offending slot: {rendered}",
9443 );
9444 assert!(
9445 rendered.contains("demo"),
9446 "diagnostic must quote the offending tag: {rendered}",
9447 );
9448 }
9449
9450 #[test]
9451 fn validate_etiquetas_rejects_leading_whitespace_entry() {
9452 // Canonical paste-from-aligned-doc footgun. Without the shape
9453 // gate `" mesh"` silently passed validate and landed as a
9454 // YAML plain-style scalar with leading whitespace in the
9455 // rendered Chart.yaml `keywords:` array — every YAML 1.2
9456 // dumper trims leading whitespace from plain-style scalars,
9457 // so the authored space round-tripped inconsistently back
9458 // through `caixa.lisp`. Mirrors the peer
9459 // `validate_autores_rejects_leading_whitespace_entry`.
9460 let c = caixa_with_etiquetas(vec![" mesh"]);
9461 let err = c.validate_etiquetas().unwrap_err();
9462 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9463 panic!("expected EtiquetaInvalid, got {err:?}");
9464 };
9465 assert_eq!(etiqueta, " mesh");
9466 assert!(reason.contains("whitespace"), "got: {reason}");
9467 }
9468
9469 #[test]
9470 fn validate_etiquetas_rejects_embedded_newline_entry() {
9471 // Canonical paste-from-multiline-doc footgun — the author
9472 // pasted a multi-tag block into one `:etiquetas` entry
9473 // instead of splitting into one entry per tag. Without the
9474 // shape gate `"mesh\nhttp"` silently passed validate and
9475 // landed as a YAML-illegal multi-line scalar in the rendered
9476 // Chart.yaml `keywords:` array.
9477 let c = caixa_with_etiquetas(vec!["mesh\nhttp"]);
9478 let err = c.validate_etiquetas().unwrap_err();
9479 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9480 panic!("expected EtiquetaInvalid, got {err:?}");
9481 };
9482 assert_eq!(etiqueta, "mesh\nhttp");
9483 assert!(reason.contains("newline"), "got: {reason}");
9484 }
9485
9486 #[test]
9487 fn validate_etiquetas_rejects_embedded_comma_entry() {
9488 // Canonical CSV-list-separator-confusion footgun: the author
9489 // confused the CSV-style separator convention with the
9490 // `:etiquetas` list grammar. Without the shape gate
9491 // `"mesh,http,grpc"` silently passed validate and landed as a
9492 // single malformed search tag in the rendered Chart.yaml
9493 // `keywords:` array — Artifact Hub's keyword index would
9494 // either silently drop the tag or index it as
9495 // `mesh,http,grpc` instead of three separate tags.
9496 let c = caixa_with_etiquetas(vec!["mesh,http,grpc"]);
9497 let err = c.validate_etiquetas().unwrap_err();
9498 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9499 panic!("expected EtiquetaInvalid, got {err:?}");
9500 };
9501 assert_eq!(etiqueta, "mesh,http,grpc");
9502 assert!(reason.contains('`'), "got: {reason}");
9503 assert!(reason.contains(','), "got: {reason}");
9504 }
9505
9506 #[test]
9507 fn validate_etiquetas_rejects_embedded_slash_entry() {
9508 // Canonical path-separator-confusion footgun: the author
9509 // confused namespace-path notation with the keyword grammar.
9510 let c = caixa_with_etiquetas(vec!["caixa/servico"]);
9511 let err = c.validate_etiquetas().unwrap_err();
9512 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9513 panic!("expected EtiquetaInvalid, got {err:?}");
9514 };
9515 assert_eq!(etiqueta, "caixa/servico");
9516 assert!(reason.contains('/'), "got: {reason}");
9517 }
9518
9519 #[test]
9520 fn validate_etiquetas_rejects_leading_digit_entry() {
9521 // Canonical paste-from-numbered-list footgun: the author
9522 // copied `1. mesh` from a numbered doc and the `1` leaked
9523 // into the tag.
9524 let c = caixa_with_etiquetas(vec!["1mesh"]);
9525 let err = c.validate_etiquetas().unwrap_err();
9526 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9527 panic!("expected EtiquetaInvalid, got {err:?}");
9528 };
9529 assert_eq!(etiqueta, "1mesh");
9530 assert!(reason.contains("digit"), "got: {reason}");
9531 }
9532
9533 #[test]
9534 fn validate_etiquetas_rejects_leading_hyphen_entry() {
9535 // Canonical kebab-leak footgun.
9536 let c = caixa_with_etiquetas(vec!["-foo"]);
9537 let err = c.validate_etiquetas().unwrap_err();
9538 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9539 panic!("expected EtiquetaInvalid, got {err:?}");
9540 };
9541 assert_eq!(etiqueta, "-foo");
9542 assert!(reason.contains('-'), "got: {reason}");
9543 }
9544
9545 #[test]
9546 fn validate_etiquetas_rejects_non_ascii_entry() {
9547 // Canonical paste-from-Unicode-doc footgun. Every legitimate
9548 // search tag is strict ASCII; raw non-ASCII silently
9549 // round-trips inconsistently across NFC/NFD normalization on
9550 // APFS / case-folding filesystems and breaks the Artifact Hub
9551 // keyword search index lookup.
9552 let c = caixa_with_etiquetas(vec!["café"]);
9553 let err = c.validate_etiquetas().unwrap_err();
9554 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9555 panic!("expected EtiquetaInvalid, got {err:?}");
9556 };
9557 assert_eq!(etiqueta, "café");
9558 assert!(reason.contains("non-ASCII"), "got: {reason}");
9559 }
9560
9561 #[test]
9562 fn validate_etiquetas_rejects_period_entry() {
9563 // Canonical namespace-confusion / version-suffix footgun
9564 // (`"http.1"` / `"v1.0"`): Cargo's crates.io keyword grammar
9565 // excludes `.` from the continuation set even though the
9566 // sibling `:caracteristicas` axis (Cargo's feature-name
9567 // grammar) admits it. Tighter than the sibling axis, peer
9568 // with Cargo's own crates.io keyword shape.
9569 let c = caixa_with_etiquetas(vec!["http.1"]);
9570 let err = c.validate_etiquetas().unwrap_err();
9571 let ManifestError::EtiquetaInvalid { etiqueta, reason } = err else {
9572 panic!("expected EtiquetaInvalid, got {err:?}");
9573 };
9574 assert_eq!(etiqueta, "http.1");
9575 assert!(reason.contains('.'), "got: {reason}");
9576 }
9577
9578 #[test]
9579 fn validate_etiquetas_empty_takes_precedence_over_shape() {
9580 // Per-entry empty-first cascade pin: an entry that is both
9581 // empty *and* shape-invalid surfaces `EtiquetaEmpty` (the
9582 // narrower "this entry has no value" structural defect
9583 // dominates the broader shape-predicate diagnostic). The
9584 // empty arm fires before the shape predicate is consulted,
9585 // mirroring the peer `validate_autores_empty_takes_precedence_over_shape`
9586 // cascade established on the sibling universal-axis Vec<String>
9587 // surface.
9588 let c = caixa_with_etiquetas(vec![""]);
9589 let err = c.validate_etiquetas().unwrap_err();
9590 assert!(matches!(err, ManifestError::EtiquetaEmpty), "got {err:?}",);
9591 }
9592
9593 #[test]
9594 fn validate_etiquetas_shape_takes_precedence_over_duplicate() {
9595 // Per-entry shape-before-cross-entry-duplicate cascade pin: an
9596 // entry that is malformed surfaces `EtiquetaInvalid` even when
9597 // a later entry would have collided on duplicate. The
9598 // per-entry shape arm fires inside the same loop iteration as
9599 // the empty arm, before the seen-set insert at end-of-iteration
9600 // — structural per-entry defects dominate the cross-entry
9601 // uniqueness diagnostic. Mirrors the peer
9602 // `validate_autores_shape_takes_precedence_over_duplicate`.
9603 let c = caixa_with_etiquetas(vec!["mesh\nhttp", "mesh\nhttp"]);
9604 let err = c.validate_etiquetas().unwrap_err();
9605 assert!(
9606 matches!(err, ManifestError::EtiquetaInvalid { .. }),
9607 "got {err:?}",
9608 );
9609 }
9610
9611 #[test]
9612 fn validate_etiquetas_invalid_diagnostic_names_offending_slot_and_value() {
9613 // Diagnostic-shape pin on the new shape arm (peer with
9614 // `validate_autores_invalid_diagnostic_names_offending_slot_and_value`):
9615 // the rendered Display surfaces both the offending slot name
9616 // and the offending value verbatim, so a `feira lint` run
9617 // points the author at the exact `:etiquetas` entry to fix.
9618 let c = caixa_with_etiquetas(vec!["mesh\nhttp"]);
9619 let rendered = c.validate_etiquetas().unwrap_err().to_string();
9620 assert!(
9621 rendered.contains(":etiquetas"),
9622 "diagnostic must name the offending slot: {rendered}",
9623 );
9624 assert!(
9625 rendered.contains("mesh\\nhttp"),
9626 "diagnostic must quote the offending value (debug-escaped): {rendered}",
9627 );
9628 }
9629
9630 #[test]
9631 fn validate_etiquetas_rejects_at_21_byte_boundary() {
9632 // The 20-byte cap pin — boundary-exceeding case rejected,
9633 // boundary-accepting case passes. Mirrors the peer
9634 // `chart_keyword_shape_rejects_at_21_byte_boundary` substrate-
9635 // side pin, surfaced at the per-axis caller so the cap
9636 // propagates through validate end-to-end. Constructed as a
9637 // single all-`a` token so only the cap arm fires.
9638 let max_ok = "a".repeat(20);
9639 let c = caixa_with_etiquetas(vec![max_ok.as_str()]);
9640 c.validate_etiquetas().unwrap();
9641 let too_long = "a".repeat(21);
9642 let c = caixa_with_etiquetas(vec![too_long.as_str()]);
9643 let err = c.validate_etiquetas().unwrap_err();
9644 let ManifestError::EtiquetaInvalid { reason, .. } = err else {
9645 panic!("expected EtiquetaInvalid, got {err:?}");
9646 };
9647 assert!(reason.contains("20"), "got: {reason}");
9648 assert!(reason.contains("21"), "got: {reason}");
9649 }
9650
9651 #[test]
9652 fn validate_etiquetas_accepts_canonical_shaped_forms() {
9653 // Positive control sweep: every canonical-shaped tag from the
9654 // hello-rio / checkout-aplicacao / pangea-tatara-akeyless
9655 // example fixtures plus the substrate-fixed tags caixa-helm
9656 // unions in at chart render. Drift between this list and the
9657 // substrate-side `chart_keyword_shape_accepts_canonical_forms`
9658 // sweep surfaces here — one source of truth for the rule.
9659 let c = caixa_with_etiquetas(vec![
9660 "example",
9661 "aplicacao",
9662 "mesh",
9663 "ecommerce",
9664 "demo",
9665 "infrastructure",
9666 "aws",
9667 "akeyless",
9668 "pangea-native",
9669 "hello-world",
9670 "wasm",
9671 "rust",
9672 "tatara-lisp",
9673 "caixa-servico",
9674 "lareira",
9675 ]);
9676 c.validate_etiquetas().unwrap();
9677 }
9678
9679 // ── validate_autores — universal-axis maintainer shape ────────────
9680
9681 fn caixa_with_autores(autores: Vec<&str>) -> Caixa {
9682 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
9683 c.autores = autores.into_iter().map(String::from).collect();
9684 c
9685 }
9686
9687 #[test]
9688 fn validate_autores_accepts_empty_list() {
9689 // The empty-list identity: `Caixa::template` emits `:autores ()`,
9690 // so the gate is non-disruptive against every existing manifest.
9691 let c = caixa_with_autores(vec![]);
9692 c.validate_autores().unwrap();
9693 }
9694
9695 #[test]
9696 fn validate_autores_accepts_canonical_forms() {
9697 // Positive control sweep: every canonical-shaped non-empty
9698 // distinct maintainer list passes — the hello-rio / checkout-
9699 // aplicacao fixtures' `:autores ("pleme-io")` shape, plus the
9700 // multi-author shape downstream packaging surfaces emit.
9701 let c = caixa_with_autores(vec!["pleme-io"]);
9702 c.validate_autores().unwrap();
9703 let c = caixa_with_autores(vec!["alice <alice@example.com>", "bob <bob@example.com>"]);
9704 c.validate_autores().unwrap();
9705 }
9706
9707 #[test]
9708 fn validate_autores_rejects_empty_entry() {
9709 // Canonical paste-from-blank-doc footgun. Without the gate the
9710 // empty entry rendered as `maintainers: [{name: "", email: null}]`
9711 // in `Chart.yaml`, a no-op maintainer the substrate cannot route
9712 // to.
9713 let c = caixa_with_autores(vec![""]);
9714 let err = c.validate_autores().unwrap_err();
9715 assert!(matches!(err, ManifestError::AutorEmpty), "got {err:?}",);
9716 }
9717
9718 #[test]
9719 fn validate_autores_rejects_duplicate_entry() {
9720 // Canonical copy-paste-the-wrong-author footgun. Unlike the
9721 // `:etiquetas` peer (caixa-helm's `BTreeSet` collect silently
9722 // dedups the rendered `keywords:` array), the `maintainers:`
9723 // rendering has *no* dedup — duplicates stack verbatim. The
9724 // duplicate-arm names the offending author verbatim.
9725 let c = caixa_with_autores(vec!["pleme-io", "pleme-io"]);
9726 let err = c.validate_autores().unwrap_err();
9727 let ManifestError::AutorDuplicate { autor } = err else {
9728 panic!("expected AutorDuplicate, got {err:?}");
9729 };
9730 assert_eq!(autor, "pleme-io");
9731 }
9732
9733 #[test]
9734 fn validate_autores_empty_takes_precedence_over_duplicate() {
9735 // Empty-first cascade pin: `("" "pleme-io" "pleme-io")` surfaces
9736 // `AutorEmpty` not `AutorDuplicate` — the narrower structural
9737 // "this entry has no value" defect dominates the cross-entry
9738 // uniqueness diagnostic. Mirrors the peer empty-before-duplicate
9739 // cascades on `:etiquetas` (`EtiquetaEmpty` before
9740 // `EtiquetaDuplicate`, 360a499), `:caracteristicas`
9741 // (`CaracteristicaEmpty` before `CaracteristicaDuplicate`,
9742 // fc3b4d5), and `:membros :caixa` (`MembroCaixaEmpty` before
9743 // `MembroDuplicate`).
9744 let c = caixa_with_autores(vec!["", "pleme-io", "pleme-io"]);
9745 let err = c.validate_autores().unwrap_err();
9746 assert!(matches!(err, ManifestError::AutorEmpty), "got {err:?}",);
9747 }
9748
9749 #[test]
9750 fn validate_autores_duplicate_reports_first_collision() {
9751 // First-collision pin: `("a" "b" "a" "b")` surfaces the `"a"`
9752 // duplicate (the lexicographically-earliest offending position
9753 // — the second `"a"` at index 2 collides with the first `"a"`
9754 // at index 0), not the later `"b"` collision at index 3,
9755 // peer with every other first-collision diagnostic posture on
9756 // this surface.
9757 let c = caixa_with_autores(vec!["a", "b", "a", "b"]);
9758 let err = c.validate_autores().unwrap_err();
9759 let ManifestError::AutorDuplicate { autor } = err else {
9760 panic!("expected AutorDuplicate, got {err:?}");
9761 };
9762 assert_eq!(autor, "a");
9763 }
9764
9765 #[test]
9766 fn validate_autores_case_sensitive() {
9767 // Case-sensitivity pin: `("Pleme-io" "pleme-io")` is two distinct
9768 // entries, mirroring the peer `:etiquetas` / `:membros :caixa`
9769 // / `:children :caixa` exact-string-match discipline.
9770 let c = caixa_with_autores(vec!["Pleme-io", "pleme-io"]);
9771 c.validate_autores().unwrap();
9772 }
9773
9774 #[test]
9775 fn validate_autores_diagnostic_carries_offending_author() {
9776 // Diagnostic-shape pin (peer with
9777 // `validate_etiquetas_diagnostic_carries_offending_tag`): the
9778 // error's Display surfaces the offending author verbatim, so a
9779 // `feira lint` run can render the diagnostic without re-parsing
9780 // and the author can grep their caixa.lisp for the offending
9781 // value.
9782 let c = caixa_with_autores(vec!["pleme-io", "pleme-io"]);
9783 let rendered = c.validate_autores().unwrap_err().to_string();
9784 assert!(
9785 rendered.contains(":autores"),
9786 "diagnostic must name the offending slot: {rendered}",
9787 );
9788 assert!(
9789 rendered.contains("pleme-io"),
9790 "diagnostic must quote the offending author: {rendered}",
9791 );
9792 }
9793
9794 #[test]
9795 fn validate_autores_rejects_leading_whitespace_entry() {
9796 // Canonical paste-from-aligned-doc footgun. Without the shape
9797 // gate `" pleme-io"` silently passed validate and landed as a
9798 // YAML plain-style scalar with leading whitespace in the
9799 // rendered Chart.yaml `maintainers:` array — every YAML 1.2
9800 // dumper trims leading whitespace from plain-style scalars, so
9801 // the authored space round-tripped inconsistently back through
9802 // `caixa.lisp`. Mirrors the peer
9803 // `validate_descricao_rejects_leading_whitespace`.
9804 let c = caixa_with_autores(vec![" pleme-io"]);
9805 let err = c.validate_autores().unwrap_err();
9806 let ManifestError::AutorInvalid { autor, reason } = err else {
9807 panic!("expected AutorInvalid, got {err:?}");
9808 };
9809 assert_eq!(autor, " pleme-io");
9810 assert!(reason.contains("whitespace"), "got: {reason}");
9811 }
9812
9813 #[test]
9814 fn validate_autores_rejects_trailing_whitespace_entry() {
9815 // Canonical paste-from-doc footgun.
9816 let c = caixa_with_autores(vec!["pleme-io "]);
9817 let err = c.validate_autores().unwrap_err();
9818 let ManifestError::AutorInvalid { autor, reason } = err else {
9819 panic!("expected AutorInvalid, got {err:?}");
9820 };
9821 assert_eq!(autor, "pleme-io ");
9822 assert!(reason.contains("whitespace"), "got: {reason}");
9823 }
9824
9825 #[test]
9826 fn validate_autores_rejects_embedded_newline_entry() {
9827 // Canonical paste-from-multiline-doc footgun — the author
9828 // pasted a multi-line block of author records into one
9829 // `:autores` entry instead of splitting into one entry per
9830 // author. Without the shape gate `"alice\nbob"` silently
9831 // passed validate and landed as a YAML-illegal multi-line
9832 // scalar in the rendered Chart.yaml `maintainers:` array.
9833 let c = caixa_with_autores(vec!["alice\nbob"]);
9834 let err = c.validate_autores().unwrap_err();
9835 let ManifestError::AutorInvalid { autor, reason } = err else {
9836 panic!("expected AutorInvalid, got {err:?}");
9837 };
9838 assert_eq!(autor, "alice\nbob");
9839 assert!(reason.contains("newline"), "got: {reason}");
9840 }
9841
9842 #[test]
9843 fn validate_autores_rejects_embedded_carriage_return_entry() {
9844 // Canonical paste-from-Windows-CRLF-doc footgun.
9845 let c = caixa_with_autores(vec!["alice\rbob"]);
9846 let err = c.validate_autores().unwrap_err();
9847 let ManifestError::AutorInvalid { autor, reason } = err else {
9848 panic!("expected AutorInvalid, got {err:?}");
9849 };
9850 assert_eq!(autor, "alice\rbob");
9851 assert!(reason.contains("carriage return"), "got: {reason}");
9852 }
9853
9854 #[test]
9855 fn validate_autores_rejects_embedded_tab_entry() {
9856 // Canonical tab-from-aligned-doc footgun.
9857 let c = caixa_with_autores(vec!["Pleme\tContributors"]);
9858 let err = c.validate_autores().unwrap_err();
9859 let ManifestError::AutorInvalid { autor, reason } = err else {
9860 panic!("expected AutorInvalid, got {err:?}");
9861 };
9862 assert_eq!(autor, "Pleme\tContributors");
9863 assert!(reason.contains("tab"), "got: {reason}");
9864 }
9865
9866 #[test]
9867 fn validate_autores_rejects_embedded_control_bytes_entry() {
9868 // Paste-from-binary-blob footguns: NUL, BEL, ESC, DEL all
9869 // surface the same control-byte arm.
9870 for entry in [
9871 "alice\x00bob",
9872 "alice\x07bob",
9873 "alice\x1bbob",
9874 "alice\x7fbob",
9875 ] {
9876 let c = caixa_with_autores(vec![entry]);
9877 let err = c.validate_autores().unwrap_err();
9878 let ManifestError::AutorInvalid { autor, reason } = err else {
9879 panic!("expected AutorInvalid for {entry:?}, got {err:?}");
9880 };
9881 assert_eq!(autor, entry);
9882 assert!(
9883 reason.contains("control character"),
9884 "{entry:?} reason: {reason}",
9885 );
9886 }
9887 }
9888
9889 #[test]
9890 fn validate_autores_accepts_unicode_entry() {
9891 // Unicode positive control: realistic maintainer names carry
9892 // Unicode (`François`, `日本語`, `naïve`). The predicate must
9893 // round-trip Unicode losslessly, peer with the
9894 // `chart_maintainer_name_shape_accepts_unicode` substrate-side
9895 // sweep.
9896 let c = caixa_with_autores(vec![
9897 "François Dupont",
9898 "日本語の名前",
9899 "naïve <naive@example.com>",
9900 ]);
9901 c.validate_autores().unwrap();
9902 }
9903
9904 #[test]
9905 fn validate_autores_empty_takes_precedence_over_shape() {
9906 // Per-entry empty-first cascade pin: an entry that is both
9907 // empty *and* shape-invalid surfaces `AutorEmpty` (the narrower
9908 // "this entry has no value" structural defect dominates the
9909 // broader shape-predicate diagnostic). The empty arm fires
9910 // before the shape predicate is consulted, mirroring the peer
9911 // `validate_repositorio_empty_takes_precedence_over_shape`
9912 // cascade on the universal `Option<String>` siblings — and now
9913 // established on the Vec<String> per-entry surface.
9914 let c = caixa_with_autores(vec![""]);
9915 let err = c.validate_autores().unwrap_err();
9916 assert!(matches!(err, ManifestError::AutorEmpty), "got {err:?}",);
9917 }
9918
9919 #[test]
9920 fn validate_autores_shape_takes_precedence_over_duplicate() {
9921 // Per-entry shape-before-cross-entry-duplicate cascade pin: an
9922 // entry that is malformed surfaces `AutorInvalid` even when a
9923 // later entry would have collided on duplicate. The per-entry
9924 // shape arm fires inside the same loop iteration as the empty
9925 // arm, before the seen-set insert at end-of-iteration —
9926 // structural per-entry defects dominate the cross-entry
9927 // uniqueness diagnostic.
9928 let c = caixa_with_autores(vec!["alice\nbob", "alice\nbob"]);
9929 let err = c.validate_autores().unwrap_err();
9930 assert!(
9931 matches!(err, ManifestError::AutorInvalid { .. }),
9932 "got {err:?}",
9933 );
9934 }
9935
9936 #[test]
9937 fn validate_autores_invalid_diagnostic_names_offending_slot_and_value() {
9938 // Diagnostic-shape pin on the new shape arm (peer with
9939 // `validate_descricao_invalid_diagnostic_carries_offending_value`):
9940 // the rendered Display surfaces both the offending slot name
9941 // and the offending value verbatim, so a `feira lint` run
9942 // points the author at the exact `:autores` entry to fix.
9943 let c = caixa_with_autores(vec!["alice\nbob"]);
9944 let rendered = c.validate_autores().unwrap_err().to_string();
9945 assert!(
9946 rendered.contains(":autores"),
9947 "diagnostic must name the offending slot: {rendered}",
9948 );
9949 assert!(
9950 rendered.contains("alice\\nbob"),
9951 "diagnostic must quote the offending value (debug-escaped): {rendered}",
9952 );
9953 }
9954
9955 #[test]
9956 fn validate_autores_rejects_at_129_byte_boundary() {
9957 // The 128-byte cap pin — boundary-exceeding case rejected,
9958 // boundary-accepting case passes. Mirrors the peer
9959 // `chart_maintainer_name_shape_rejects_at_129_byte_boundary`
9960 // substrate-side pin, surfaced at the per-axis caller so the
9961 // cap propagates through validate end-to-end. Constructed as
9962 // a single all-`a` token so only the cap arm fires.
9963 let max_ok = "a".repeat(128);
9964 let c = caixa_with_autores(vec![max_ok.as_str()]);
9965 c.validate_autores().unwrap();
9966 let too_long = "a".repeat(129);
9967 let c = caixa_with_autores(vec![too_long.as_str()]);
9968 let err = c.validate_autores().unwrap_err();
9969 let ManifestError::AutorInvalid { reason, .. } = err else {
9970 panic!("expected AutorInvalid, got {err:?}");
9971 };
9972 assert!(reason.contains("128"), "got: {reason}");
9973 assert!(reason.contains("129"), "got: {reason}");
9974 }
9975
9976 // ── validate_repositorio — universal-axis git-repo-URL shape ──────
9977
9978 fn caixa_with_repositorio(repositorio: Option<&str>) -> Caixa {
9979 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
9980 c.repositorio = repositorio.map(String::from);
9981 c
9982 }
9983
9984 #[test]
9985 fn validate_repositorio_accepts_none() {
9986 // The omit-the-slot identity: `:repositorio` is optional. The
9987 // gate is a no-op when the author didn't declare a value —
9988 // every caixa without a `:repositorio` line trivially passes,
9989 // and the substrate-side renderers fall back to their
9990 // documented placeholder (`caixa-helm`'s `home: None`,
9991 // `caixa-flux`'s `https://github.com/pleme-io/<nome>` derived
9992 // URL). Mirrors the peer `validate_restart_window_accepts_none`
9993 // posture on the other `Option<String>` Caixa slot.
9994 let c = caixa_with_repositorio(None);
9995 c.validate_repositorio().unwrap();
9996 }
9997
9998 #[test]
9999 fn validate_repositorio_accepts_canonical_forms() {
10000 // Positive control sweep across every documented `:repositorio`
10001 // authoring shape — the same union the shared
10002 // `crate::render::is_git_repo_url` predicate accepts and the
10003 // peer `:deps :fonte :repo` axis already routes through.
10004 // Covers the `github:` shorthand (the canonical pleme-io
10005 // convention used in the `:repositorio` field of every
10006 // manifest fixture across `caixa-helm` / `caixa-mesh` and the
10007 // `examples/`), the `https://…` URL the README quickstart uses,
10008 // the `ssh://`, `git://`, `git@host:path` scp-style SSH, and
10009 // `file://` URL schemes the shared predicate documents.
10010 for repo in [
10011 "github:pleme-io/hello-rio",
10012 "github:pleme-io/checkout",
10013 "https://github.com/pleme-io/hello-rio",
10014 "ssh://git@github.com/pleme-io/hello-rio.git",
10015 "git://github.com/pleme-io/hello-rio.git",
10016 "git@github.com:pleme-io/hello-rio.git",
10017 "file:///srv/pleme/hello-rio",
10018 ] {
10019 let c = caixa_with_repositorio(Some(repo));
10020 c.validate_repositorio()
10021 .unwrap_or_else(|err| panic!("canonical {repo:?} must pass: {err:?}"));
10022 }
10023 }
10024
10025 #[test]
10026 fn validate_repositorio_rejects_empty_some() {
10027 // Canonical paste-from-blank-doc footgun. The narrower
10028 // [`ManifestError::RepositorioEmpty`] arm fires before the
10029 // shape predicate is consulted, mirroring the empty-first
10030 // cascade every peer per-axis identity gate uses
10031 // (`NomeEmpty` → `NomeInvalid`, `VersaoEmpty` → `VersaoInvalid`,
10032 // `FonteRepoEmpty` → `FonteRepoInvalid`). Without this gate
10033 // the empty `Some("")` silently passed the renderer's
10034 // `Option::unwrap_or_else(|| <fallback>)` (which only fires
10035 // on `None`) and landed as `home: ""` in `Chart.yaml` /
10036 // `url: ""` in the FluxCD `GitRepository`.
10037 let c = caixa_with_repositorio(Some(""));
10038 let err = c.validate_repositorio().unwrap_err();
10039 assert!(
10040 matches!(err, ManifestError::RepositorioEmpty),
10041 "got {err:?}",
10042 );
10043 }
10044
10045 #[test]
10046 fn validate_repositorio_rejects_whitespace() {
10047 // Paste-from-doc whitespace footgun. The shared
10048 // `is_git_repo_url` predicate refuses any whitespace byte; a
10049 // trailing space in a `:repositorio` value silently broke
10050 // `git clone '<value> '` at clone time. The diagnostic names
10051 // the offending value verbatim.
10052 let c = caixa_with_repositorio(Some("github:pleme-io/hello-rio "));
10053 let err = c.validate_repositorio().unwrap_err();
10054 let ManifestError::RepositorioInvalid { repositorio, .. } = err else {
10055 panic!("expected RepositorioInvalid, got {err:?}");
10056 };
10057 assert_eq!(repositorio, "github:pleme-io/hello-rio ");
10058 }
10059
10060 #[test]
10061 fn validate_repositorio_rejects_control_char() {
10062 // Paste-from-multiline-doc CRLF footgun — control characters
10063 // at the URL boundary are a class of subprocess-arg injection
10064 // and break git's URL parser at every porcelain entry point.
10065 let c = caixa_with_repositorio(Some("https://example.com/repo\n"));
10066 let err = c.validate_repositorio().unwrap_err();
10067 assert!(
10068 matches!(err, ManifestError::RepositorioInvalid { .. }),
10069 "got {err:?}",
10070 );
10071 }
10072
10073 #[test]
10074 fn validate_repositorio_rejects_leading_dash() {
10075 // Canonical CLI-argument-injection footgun: `git clone <repo>`
10076 // interprets a leading `-` as a CLI flag, so a
10077 // `-upload-pack=…` value escapes the subprocess argument
10078 // boundary. The shared predicate refuses every leading-`-`
10079 // shape at validate time.
10080 let c = caixa_with_repositorio(Some("-upload-pack=evil"));
10081 let err = c.validate_repositorio().unwrap_err();
10082 assert!(
10083 matches!(err, ManifestError::RepositorioInvalid { .. }),
10084 "got {err:?}",
10085 );
10086 }
10087
10088 #[test]
10089 fn validate_repositorio_rejects_missing_colon_separator() {
10090 // The bare `org/repo` ambiguity footgun — `git clone` reads
10091 // a no-`:` form as a relative filesystem path rather than the
10092 // GitHub-shorthand expansion the author probably intended.
10093 // The shared predicate refuses every shape without a `:`
10094 // separator.
10095 let c = caixa_with_repositorio(Some("pleme-io/hello-rio"));
10096 let err = c.validate_repositorio().unwrap_err();
10097 assert!(
10098 matches!(err, ManifestError::RepositorioInvalid { .. }),
10099 "got {err:?}",
10100 );
10101 }
10102
10103 #[test]
10104 fn validate_repositorio_rejects_fragment_anchor() {
10105 // Paste-from-browser-address-bar footgun on the
10106 // `:repositorio` axis — an author copies a GitHub permalink
10107 // to a README section / line-permalink and forgets to trim
10108 // the `#fragment` tail. The shared `is_git_repo_url`
10109 // predicate refuses the byte at the URL-grammar layer
10110 // (libcurl strips the fragment before opening the
10111 // transport, so the byte rides verbatim into the rendered
10112 // `Chart.yaml` `home:` and FluxCD `GitRepository` `url:`
10113 // fields but is silently dropped on the wire — two
10114 // manifest variants whose values differ only in their
10115 // fragment anchor lock to two distinct rendered artifacts
10116 // for the byte-identical clone, defeating the THEORY.md
10117 // §V.2 render-determinism contract on the `:repositorio`
10118 // axis the peer `:fonte :repo` axis already closes).
10119 let c = caixa_with_repositorio(Some("https://github.com/pleme-io/hello-rio#readme"));
10120 let err = c.validate_repositorio().unwrap_err();
10121 let ManifestError::RepositorioInvalid {
10122 repositorio,
10123 reason,
10124 } = err
10125 else {
10126 panic!("expected RepositorioInvalid, got {err:?}");
10127 };
10128 assert_eq!(repositorio, "https://github.com/pleme-io/hello-rio#readme");
10129 assert!(
10130 reason.contains("must not contain `#`"),
10131 "reason must surface the fragment-`#` arm, got {reason:?}"
10132 );
10133 }
10134
10135 #[test]
10136 fn validate_repositorio_rejects_query_string() {
10137 // Paste-from-browser-address-bar footgun on the
10138 // `:repositorio` axis (peer with the a68f818 fragment-`#`
10139 // arm on the same axis). An author copies a GitHub tab
10140 // deep-link out of the address bar and forgets to trim
10141 // the `?tab=…` query tail. The shared `is_git_repo_url`
10142 // predicate refuses the byte at the URL-grammar layer
10143 // (GitHub / GitLab / Bitbucket silently ignore the
10144 // `?query` tail and serve the same repo regardless, so
10145 // the byte rides verbatim into the rendered `Chart.yaml`
10146 // `home:` and FluxCD `GitRepository` `url:` fields but
10147 // is silently masked at the wire — two manifest variants
10148 // whose values differ only in their query tail lock to
10149 // two distinct rendered artifacts for the byte-identical
10150 // clone, defeating the THEORY.md §V.2 render-determinism
10151 // contract on the `:repositorio` axis the peer `:fonte
10152 // :repo` axis already closes).
10153 let c = caixa_with_repositorio(Some(
10154 "https://github.com/pleme-io/hello-rio?tab=readme-ov-file",
10155 ));
10156 let err = c.validate_repositorio().unwrap_err();
10157 let ManifestError::RepositorioInvalid {
10158 repositorio,
10159 reason,
10160 } = err
10161 else {
10162 panic!("expected RepositorioInvalid, got {err:?}");
10163 };
10164 assert_eq!(
10165 repositorio,
10166 "https://github.com/pleme-io/hello-rio?tab=readme-ov-file"
10167 );
10168 assert!(
10169 reason.contains("must not contain `?`"),
10170 "reason must surface the query-`?` arm, got {reason:?}"
10171 );
10172 }
10173
10174 #[test]
10175 fn validate_repositorio_rejects_embedded_backslash() {
10176 // Windows-file-path-confusion footgun on the `:repositorio`
10177 // axis (peer with the prior fragment-`#` / query-`?` arms on
10178 // the same axis, and peer with the new dep-level `:fonte :repo`
10179 // backslash arm on the URL-grammar trajectory). An author
10180 // pastes a Windows Explorer address-bar `file:///C:\Users\me\
10181 // hello-rio` into the `:repositorio` slot, expecting the
10182 // `lareira-<nome>` chart's `home:` field and the FluxCD
10183 // `GitRepository` `url:` field to render the canonical local
10184 // file-URI. The shared `is_git_repo_url` predicate refuses
10185 // the byte at the URL-grammar layer (libcurl silently
10186 // translates `\` → `/` on some platforms and refuses it on
10187 // others, so the byte rides verbatim into the rendered
10188 // artifacts but is silently rewritten or rejected at the wire
10189 // — two manifest variants whose values differ only in
10190 // backslash-vs-forward-slash lock to two distinct rendered
10191 // artifacts for the byte-identical clone, defeating the
10192 // THEORY.md §V.2 render-determinism contract on the
10193 // `:repositorio` axis the peer `:fonte :repo` axis already
10194 // closes).
10195 let c = caixa_with_repositorio(Some("file:///C:\\Users\\me\\hello-rio"));
10196 let err = c.validate_repositorio().unwrap_err();
10197 let ManifestError::RepositorioInvalid {
10198 repositorio,
10199 reason,
10200 } = err
10201 else {
10202 panic!("expected RepositorioInvalid, got {err:?}");
10203 };
10204 assert_eq!(repositorio, "file:///C:\\Users\\me\\hello-rio");
10205 assert!(
10206 reason.contains("must not contain `\\`"),
10207 "reason must surface the backslash-`\\` arm, got {reason:?}"
10208 );
10209 }
10210
10211 #[test]
10212 fn validate_repositorio_rejects_uri_template_placeholder() {
10213 // URI Template (RFC 6570) placeholder footgun on the
10214 // `:repositorio` axis (peer with the prior fragment-`#` /
10215 // query-`?` / backslash-`\` arms on the same axis, and peer
10216 // with the new dep-level `:fonte :repo` `{` / `}` arm on the
10217 // URL-grammar trajectory). An author pastes a quick-start
10218 // README snippet / OpenAPI `servers:` URL / Helm chart
10219 // `home:` template carrying unresolved `{org}` / `{repo}`
10220 // placeholders into the `:repositorio` slot, expecting the
10221 // substrate to resolve the placeholder downstream. The
10222 // shared `is_git_repo_url` predicate refuses the byte at the
10223 // URL-grammar layer (libcurl percent-encodes `{` / `}` to
10224 // `%7B` / `%7D` on the wire, so the byte round-trips
10225 // inconsistently between the rendered `Chart.yaml home:` /
10226 // FluxCD `GitRepository url:` and the resolver's `git clone`
10227 // invocation, defeating the THEORY.md §V.2 render-
10228 // determinism contract on the `:repositorio` axis the peer
10229 // `:fonte :repo` axis already closes; every git porcelain
10230 // entry-point additionally fetches a nonexistent literal-
10231 // `{placeholder}`-named path far from the source caixa.lisp).
10232 let c = caixa_with_repositorio(Some("https://github.com/{org}/hello-rio"));
10233 let err = c.validate_repositorio().unwrap_err();
10234 let ManifestError::RepositorioInvalid {
10235 repositorio,
10236 reason,
10237 } = err
10238 else {
10239 panic!("expected RepositorioInvalid, got {err:?}");
10240 };
10241 assert_eq!(repositorio, "https://github.com/{org}/hello-rio");
10242 assert!(
10243 reason.contains("must not contain `{`"),
10244 "reason must surface the open-brace `{{` arm, got {reason:?}"
10245 );
10246 assert!(
10247 reason.contains("URI Template") || reason.contains("RFC 6570"),
10248 "reason must name the RFC 6570 URI Template grammar, got {reason:?}"
10249 );
10250 }
10251
10252 #[test]
10253 fn validate_repositorio_empty_takes_precedence_over_shape() {
10254 // Empty-first cascade pin: the empty `Some("")` surfaces the
10255 // narrower `RepositorioEmpty` not the shape-predicate-wrapped
10256 // `RepositorioInvalid`, mirroring the peer
10257 // `NomeEmpty` → `NomeInvalid`, `VersaoEmpty` → `VersaoInvalid`,
10258 // `FonteRepoEmpty` → `FonteRepoInvalid` cascades. The shared
10259 // `is_git_repo_url` predicate also rejects the empty input
10260 // (defensively, with its own `"must not be empty"` reason),
10261 // but the manifest-layer empty arm runs first to surface the
10262 // narrower diagnostic verbatim.
10263 let c = caixa_with_repositorio(Some(""));
10264 let err = c.validate_repositorio().unwrap_err();
10265 assert!(
10266 matches!(err, ManifestError::RepositorioEmpty),
10267 "got {err:?}",
10268 );
10269 }
10270
10271 #[test]
10272 fn validate_repositorio_diagnostic_carries_offending_value() {
10273 // Diagnostic-shape pin (peer with
10274 // `validate_autores_diagnostic_carries_offending_author`): the
10275 // error's Display surfaces the offending value + slot name
10276 // verbatim, so a `feira lint` run can render the diagnostic
10277 // without re-parsing and the author can grep their caixa.lisp
10278 // for the offending `:repositorio` value.
10279 let c = caixa_with_repositorio(Some("pleme-io/hello-rio"));
10280 let rendered = c.validate_repositorio().unwrap_err().to_string();
10281 assert!(
10282 rendered.contains(":repositorio"),
10283 "diagnostic must name the offending slot: {rendered}",
10284 );
10285 assert!(
10286 rendered.contains("pleme-io/hello-rio"),
10287 "diagnostic must quote the offending value: {rendered}",
10288 );
10289 }
10290
10291 // ── validate_descricao — universal-axis Chart.yaml description shape ──
10292
10293 fn caixa_with_descricao(descricao: Option<&str>) -> Caixa {
10294 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
10295 c.descricao = descricao.map(String::from);
10296 c
10297 }
10298
10299 #[test]
10300 fn validate_descricao_accepts_none() {
10301 // The omit-the-slot identity: `:descricao` is optional. The
10302 // gate is a no-op when the author didn't declare a value —
10303 // every caixa without a `:descricao` line trivially passes,
10304 // and the substrate-side renderers fall back to their
10305 // documented `caixa.nome`-derived placeholder. Mirrors the
10306 // peer `validate_repositorio_accepts_none` posture on the
10307 // sibling `Option<String>` Caixa slot.
10308 let c = caixa_with_descricao(None);
10309 c.validate_descricao().unwrap();
10310 }
10311
10312 #[test]
10313 fn validate_descricao_accepts_canonical_summary() {
10314 // Positive control: the canonical pleme-io descricao shape —
10315 // a short free-form prose summary — passes the gate. Covers
10316 // the fixture shapes the `caixa-helm` / `caixa-flux` /
10317 // `caixa-mesh` test fixtures use (`"Canonical Rust→wasm32-
10318 // wasip2 caixa Servico."`, `"Checkout flow."`).
10319 for desc in [
10320 "Canonical Rust→wasm32-wasip2 caixa Servico.",
10321 "Checkout flow.",
10322 "AWS provider caixa for tatara-lisp",
10323 "FIXME — describe this caixa",
10324 "x",
10325 ] {
10326 let c = caixa_with_descricao(Some(desc));
10327 c.validate_descricao()
10328 .unwrap_or_else(|err| panic!("canonical {desc:?} must pass: {err:?}"));
10329 }
10330 }
10331
10332 #[test]
10333 fn validate_descricao_rejects_empty_some() {
10334 // Canonical paste-from-blank-doc footgun. Without this gate
10335 // the empty `Some("")` silently passed the renderer's
10336 // `Option::unwrap_or_else(|| <fallback>)` (which only fires
10337 // on `None`) and landed as `description: ""` in `Chart.yaml`
10338 // and a blank `README.md` header. Mirrors the peer
10339 // [`ManifestError::RepositorioEmpty`] empty-arm on the
10340 // sibling `Option<String>` Caixa slot.
10341 let c = caixa_with_descricao(Some(""));
10342 let err = c.validate_descricao().unwrap_err();
10343 assert!(matches!(err, ManifestError::DescricaoEmpty), "got {err:?}",);
10344 }
10345
10346 #[test]
10347 fn validate_descricao_rejects_leading_whitespace() {
10348 // Paste-from-aligned-doc footgun: a leading ASCII space the
10349 // bare empty-arm gate accepted, the shape predicate now
10350 // refuses. The diagnostic carries the offending value
10351 // verbatim (with the leading space preserved) so the author
10352 // can grep their caixa.lisp for the exact `:descricao` line
10353 // and fix the round-trip-inconsistent leading whitespace.
10354 // Mirrors the peer
10355 // `validate_licenca_rejects_leading_whitespace` arm on the
10356 // sibling `:licenca` axis.
10357 let c = caixa_with_descricao(Some(" Checkout flow."));
10358 let err = c.validate_descricao().unwrap_err();
10359 let ManifestError::DescricaoInvalid { descricao, reason } = err else {
10360 panic!("expected DescricaoInvalid, got {err:?}");
10361 };
10362 assert_eq!(descricao, " Checkout flow.");
10363 assert!(reason.contains("whitespace"), "got: {reason:?}");
10364 }
10365
10366 #[test]
10367 fn validate_descricao_rejects_trailing_whitespace() {
10368 // Paste-from-doc footgun: a trailing ASCII space the bare
10369 // empty-arm gate accepted, the shape predicate now refuses.
10370 let c = caixa_with_descricao(Some("Checkout flow. "));
10371 let err = c.validate_descricao().unwrap_err();
10372 let ManifestError::DescricaoInvalid { descricao, reason } = err else {
10373 panic!("expected DescricaoInvalid, got {err:?}");
10374 };
10375 assert_eq!(descricao, "Checkout flow. ");
10376 assert!(reason.contains("whitespace"), "got: {reason:?}");
10377 }
10378
10379 #[test]
10380 fn validate_descricao_rejects_embedded_newline() {
10381 // Paste-from-multiline-doc footgun: an embedded LF the bare
10382 // empty-arm gate accepted, the shape predicate now refuses.
10383 // Without this gate the embedded newline silently landed in
10384 // the rendered Chart.yaml as a multi-line YAML block scalar,
10385 // and every chart-aware UI (`helm list`, `helm search`,
10386 // Artifact Hub) renders the description in a single-line
10387 // column so the embedded newline is silently dropped at
10388 // every downstream consumer.
10389 let c = caixa_with_descricao(Some("Checkout\nflow."));
10390 let err = c.validate_descricao().unwrap_err();
10391 assert!(
10392 matches!(err, ManifestError::DescricaoInvalid { .. }),
10393 "got {err:?}",
10394 );
10395 assert!(err.to_string().contains("newline"), "got {err}");
10396 }
10397
10398 #[test]
10399 fn validate_descricao_rejects_embedded_carriage_return() {
10400 // Paste-from-Windows-CRLF-doc footgun.
10401 let c = caixa_with_descricao(Some("Checkout\rflow."));
10402 let err = c.validate_descricao().unwrap_err();
10403 assert!(
10404 matches!(err, ManifestError::DescricaoInvalid { .. }),
10405 "got {err:?}",
10406 );
10407 assert!(err.to_string().contains("carriage return"), "got {err}");
10408 }
10409
10410 #[test]
10411 fn validate_descricao_rejects_embedded_tab() {
10412 // Tab-from-aligned-doc footgun.
10413 let c = caixa_with_descricao(Some("Checkout\tflow."));
10414 let err = c.validate_descricao().unwrap_err();
10415 assert!(
10416 matches!(err, ManifestError::DescricaoInvalid { .. }),
10417 "got {err:?}",
10418 );
10419 assert!(err.to_string().contains("tab"), "got {err}");
10420 }
10421
10422 #[test]
10423 fn validate_descricao_rejects_embedded_control_bytes() {
10424 // Paste-from-binary-blob footgun: every other control byte
10425 // (NUL, BEL, ESC, DEL) is refused at validate time. Mirrors
10426 // the peer SPDX-expression control-byte arm.
10427 for s in [
10428 "Checkout\x00flow.",
10429 "Checkout\x07flow.",
10430 "Checkout\x1bflow.",
10431 "Checkout\x7fflow.",
10432 ] {
10433 let c = caixa_with_descricao(Some(s));
10434 let err = c.validate_descricao().unwrap_err();
10435 assert!(
10436 matches!(err, ManifestError::DescricaoInvalid { .. }),
10437 "{s:?} got {err:?}",
10438 );
10439 assert!(
10440 err.to_string().contains("control character"),
10441 "{s:?} got {err}",
10442 );
10443 }
10444 }
10445
10446 #[test]
10447 fn validate_descricao_accepts_unicode_prose() {
10448 // Positive control: Unicode prose is accepted — the
10449 // canonical fixtures carry `→` (U+2192) and `—` (U+2014),
10450 // and `Caixa::template`'s `"FIXME — describe this caixa"`
10451 // scaffold every `feira init` emits must continue to pass.
10452 for s in [
10453 "Canonical Rust→wasm32-wasip2 caixa Servico.",
10454 "FIXME — describe this caixa",
10455 "Caixa pour le projet tâche",
10456 "日本語の説明",
10457 ] {
10458 let c = caixa_with_descricao(Some(s));
10459 c.validate_descricao()
10460 .unwrap_or_else(|err| panic!("Unicode {s:?} must pass: {err:?}"));
10461 }
10462 }
10463
10464 #[test]
10465 fn validate_descricao_empty_takes_precedence_over_shape() {
10466 // Cascade pin: a `Some("")` surfaces the narrower
10467 // `DescricaoEmpty` arm, not the broader `DescricaoInvalid`
10468 // shape-predicate arm. Mirrors the peer
10469 // `validate_licenca_empty_takes_precedence_over_shape` pin
10470 // on the sibling `:licenca` axis.
10471 let c = caixa_with_descricao(Some(""));
10472 let err = c.validate_descricao().unwrap_err();
10473 assert!(matches!(err, ManifestError::DescricaoEmpty), "got {err:?}",);
10474 }
10475
10476 #[test]
10477 fn validate_descricao_invalid_diagnostic_carries_offending_value_and_slot() {
10478 // Diagnostic-shape pin: the error's Display surfaces both
10479 // the `:descricao` slot name and the offending value
10480 // verbatim, so a `feira lint` run can render the diagnostic
10481 // without re-parsing and the author can grep their caixa.lisp
10482 // for the offending `:descricao` line. Mirrors the peer
10483 // `validate_licenca_invalid_diagnostic_carries_offending_value_and_slot`
10484 // pin (ee2e888) on the sibling `:licenca` axis.
10485 // The `{descricao:?}` Debug format escapes embedded control
10486 // bytes; the quoted offending value surfaces as
10487 // `"Checkout\nflow."` (literal backslash-n) in the rendered
10488 // diagnostic. The author can grep their caixa.lisp for the
10489 // literal `Checkout` summary prefix.
10490 let c = caixa_with_descricao(Some("Checkout\nflow."));
10491 let rendered = c.validate_descricao().unwrap_err().to_string();
10492 assert!(
10493 rendered.contains(":descricao"),
10494 "diagnostic must name the offending slot: {rendered}",
10495 );
10496 assert!(
10497 rendered.contains("Checkout\\nflow."),
10498 "diagnostic must quote the offending value (debug-escaped): {rendered}",
10499 );
10500 }
10501
10502 #[test]
10503 fn validate_descricao_template_passes() {
10504 // Round-trip pin: the bare `Caixa::template` shape carries
10505 // `:descricao "FIXME — describe this caixa"` (a non-empty
10506 // sentinel), so the template-derived Caixa passes the gate by
10507 // construction. A future template-shape change that omits or
10508 // empties `:descricao` would surface here as a regression.
10509 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
10510 c.validate_descricao().unwrap();
10511 }
10512
10513 #[test]
10514 fn validate_descricao_diagnostic_names_offending_slot() {
10515 // Diagnostic-shape pin (peer with
10516 // `validate_repositorio_diagnostic_carries_offending_value`):
10517 // the error's Display surfaces the `:descricao` slot name
10518 // verbatim, so a `feira lint` run can render the diagnostic
10519 // without re-parsing and the author can grep their caixa.lisp
10520 // for the offending `:descricao` line.
10521 let c = caixa_with_descricao(Some(""));
10522 let rendered = c.validate_descricao().unwrap_err().to_string();
10523 assert!(
10524 rendered.contains(":descricao"),
10525 "diagnostic must name the offending slot: {rendered}",
10526 );
10527 }
10528
10529 // ── validate_licenca — universal-axis chart README license shape ──
10530
10531 fn caixa_with_licenca(licenca: Option<&str>) -> Caixa {
10532 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
10533 c.licenca = licenca.map(String::from);
10534 c
10535 }
10536
10537 #[test]
10538 fn validate_licenca_accepts_none() {
10539 // The omit-the-slot identity: `:licenca` is optional. The
10540 // gate is a no-op when the author didn't declare a value —
10541 // every caixa without a `:licenca` line trivially passes,
10542 // and the substrate-side `caixa-helm` renderer falls back to
10543 // the documented `"MIT"` placeholder. Mirrors the peer
10544 // `validate_descricao_accepts_none` posture on the sibling
10545 // `Option<String>` Caixa slot.
10546 let c = caixa_with_licenca(None);
10547 c.validate_licenca().unwrap();
10548 }
10549
10550 #[test]
10551 fn validate_licenca_accepts_canonical_expressions() {
10552 // Positive control: every canonical SPDX expression shape
10553 // pleme-io carries in its existing fixtures + the canonical
10554 // SPDX dual-license / with-exception / `+`-suffix / grouped /
10555 // user-defined-reference shapes all pass the gate. Covers
10556 // the single-license, `OR`-compound, `AND`-compound,
10557 // `WITH`-exception, parenthesis-grouped, `+`-suffix, and
10558 // `LicenseRef-` / `DocumentRef-:LicenseRef-` shapes — every
10559 // production the SPDX 2.1 expression grammar admits that
10560 // sits within the alphabet floor the
10561 // `is_spdx_expression_shape` predicate enforces.
10562 for lic in [
10563 "MIT",
10564 "Apache-2.0",
10565 "Apache-2.0 OR MIT",
10566 "Apache-2.0 AND MIT",
10567 "BSD-3-Clause",
10568 "MPL-2.0",
10569 "GPL-3.0-or-later",
10570 "GPL-2.0+",
10571 "Apache-2.0 WITH LLVM-exception",
10572 "(MIT OR Apache-2.0) AND BSD-3-Clause",
10573 "(MIT OR Apache-2.0) AND BSD-3-Clause AND ISC",
10574 "LicenseRef-MyLicense",
10575 "DocumentRef-spdx-tool:LicenseRef-MIT-Style",
10576 "x",
10577 ] {
10578 let c = caixa_with_licenca(Some(lic));
10579 c.validate_licenca()
10580 .unwrap_or_else(|err| panic!("canonical {lic:?} must pass: {err:?}"));
10581 }
10582 }
10583
10584 #[test]
10585 fn validate_licenca_rejects_trailing_whitespace() {
10586 // Paste-from-doc whitespace footgun. A trailing space in the
10587 // `:licenca` value would silently break a downstream SPDX
10588 // parser that splits on exact `AND` / `OR` / `WITH` keyword
10589 // boundaries. The shape predicate refuses every trailing
10590 // whitespace byte by construction. Peer with
10591 // `validate_repositorio_rejects_whitespace` and
10592 // `validate_edicao_rejects_trailing_whitespace`.
10593 let c = caixa_with_licenca(Some("MIT "));
10594 let err = c.validate_licenca().unwrap_err();
10595 let ManifestError::LicencaInvalid { licenca, .. } = err else {
10596 panic!("expected LicencaInvalid, got {err:?}");
10597 };
10598 assert_eq!(licenca, "MIT ");
10599 }
10600
10601 #[test]
10602 fn validate_licenca_rejects_leading_whitespace() {
10603 // Symmetric paste-from-doc whitespace footgun on the leading
10604 // boundary — the gate refuses every shape that starts with a
10605 // space byte by construction. Peer with
10606 // `validate_edicao_rejects_leading_whitespace`.
10607 let c = caixa_with_licenca(Some(" MIT"));
10608 let err = c.validate_licenca().unwrap_err();
10609 assert!(
10610 matches!(err, ManifestError::LicencaInvalid { .. }),
10611 "got {err:?}",
10612 );
10613 }
10614
10615 #[test]
10616 fn validate_licenca_rejects_control_char() {
10617 // Paste-from-multiline-doc CRLF footgun — control characters
10618 // at the value boundary land as a malformed line in the
10619 // rendered chart `README.md` `## License` section. Peer with
10620 // `validate_repositorio_rejects_control_char` and
10621 // `validate_edicao_rejects_control_char`.
10622 for lic in ["MIT\n", "MIT\r\n", "MIT\rApache-2.0"] {
10623 let c = caixa_with_licenca(Some(lic));
10624 let err = c.validate_licenca().unwrap_err();
10625 assert!(
10626 matches!(err, ManifestError::LicencaInvalid { .. }),
10627 "expected LicencaInvalid on {lic:?}, got {err:?}",
10628 );
10629 }
10630 }
10631
10632 #[test]
10633 fn validate_licenca_rejects_tab() {
10634 // Tab-from-aligned-doc footgun — SPDX expressions use a
10635 // single ASCII space between tokens; a tab breaks every
10636 // downstream SPDX parser that splits on exact `" "`
10637 // boundaries.
10638 let c = caixa_with_licenca(Some("MIT\tOR Apache-2.0"));
10639 let err = c.validate_licenca().unwrap_err();
10640 assert!(
10641 matches!(err, ManifestError::LicencaInvalid { .. }),
10642 "got {err:?}",
10643 );
10644 }
10645
10646 #[test]
10647 fn validate_licenca_rejects_non_ascii() {
10648 // Smart-quote / non-ASCII paste footgun — SPDX identifiers
10649 // are ASCII per the `idstring = 1*(ALPHA / DIGIT / "-" /
10650 // ".")` production. The shape predicate refuses every
10651 // non-ASCII byte by construction; peer with
10652 // `validate_edicao_rejects_non_ascii_lookalike`.
10653 for lic in ["MIT\u{a0}OR Apache-2.0", "MIT\u{2013}1.0", "Café-1.0"] {
10654 let c = caixa_with_licenca(Some(lic));
10655 let err = c.validate_licenca().unwrap_err();
10656 assert!(
10657 matches!(err, ManifestError::LicencaInvalid { .. }),
10658 "expected LicencaInvalid on {lic:?}, got {err:?}",
10659 );
10660 }
10661 }
10662
10663 #[test]
10664 fn validate_licenca_rejects_underscore() {
10665 // Underscore-instead-of-hyphen typo footgun — `Apache_2.0` /
10666 // `MIT_Style` / `BSD_3_Clause` are familiar shapes from
10667 // snake-case identifier conventions that don't apply to the
10668 // SPDX `idstring` grammar (which admits only `ALPHA / DIGIT /
10669 // "-" / "."`). The shape predicate refuses every underscore
10670 // byte by construction.
10671 for lic in ["Apache_2.0", "MIT_Style", "BSD_3_Clause"] {
10672 let c = caixa_with_licenca(Some(lic));
10673 let err = c.validate_licenca().unwrap_err();
10674 assert!(
10675 matches!(err, ManifestError::LicencaInvalid { .. }),
10676 "expected LicencaInvalid on {lic:?}, got {err:?}",
10677 );
10678 }
10679 }
10680
10681 #[test]
10682 fn validate_licenca_rejects_comma_separator() {
10683 // Comma-instead-of-`OR`-keyword colloquial idiom footgun —
10684 // SPDX expressions compose multiple licenses via `AND` / `OR`
10685 // keywords, not the comma separator. The shape predicate
10686 // refuses every comma byte by construction.
10687 for lic in ["MIT, Apache-2.0", "MIT,Apache-2.0"] {
10688 let c = caixa_with_licenca(Some(lic));
10689 let err = c.validate_licenca().unwrap_err();
10690 assert!(
10691 matches!(err, ManifestError::LicencaInvalid { .. }),
10692 "expected LicencaInvalid on {lic:?}, got {err:?}",
10693 );
10694 }
10695 }
10696
10697 #[test]
10698 fn validate_licenca_rejects_slash_dual_license() {
10699 // Slash-dual-license colloquial idiom footgun — the
10700 // `MIT/Apache-2.0` shape is common in Cargo's pre-SPDX
10701 // `package.license` field but non-SPDX; the SPDX equivalent
10702 // is `MIT OR Apache-2.0`. The shape predicate refuses every
10703 // forward-slash byte by construction.
10704 for lic in ["MIT/Apache-2.0", "MIT/BSD-3-Clause"] {
10705 let c = caixa_with_licenca(Some(lic));
10706 let err = c.validate_licenca().unwrap_err();
10707 assert!(
10708 matches!(err, ManifestError::LicencaInvalid { .. }),
10709 "expected LicencaInvalid on {lic:?}, got {err:?}",
10710 );
10711 }
10712 }
10713
10714 #[test]
10715 fn validate_licenca_rejects_semicolon_separator() {
10716 // Semicolon-list-separator confusion footgun — adjacent to
10717 // the comma-separator idiom, every list-separator-belongs-
10718 // to-list-grammar confusion lands here.
10719 let c = caixa_with_licenca(Some("MIT; Apache-2.0"));
10720 let err = c.validate_licenca().unwrap_err();
10721 assert!(
10722 matches!(err, ManifestError::LicencaInvalid { .. }),
10723 "got {err:?}",
10724 );
10725 }
10726
10727 #[test]
10728 fn validate_licenca_empty_takes_precedence_over_shape() {
10729 // Empty-first cascade pin: the empty `Some("")` surfaces the
10730 // narrower `LicencaEmpty` not the shape-predicate-wrapped
10731 // `LicencaInvalid`, mirroring the peer
10732 // `validate_edicao_empty_takes_precedence_over_shape` and
10733 // `validate_repositorio_empty_takes_precedence_over_shape`
10734 // (`RepositorioEmpty` → `RepositorioInvalid`), `NomeEmpty` →
10735 // `NomeInvalid`, `VersaoEmpty` → `VersaoInvalid` cascades.
10736 // The shape predicate also refuses the empty input
10737 // (defensively — `"must not be empty"`), but the manifest-
10738 // layer empty arm runs first to surface the narrower
10739 // diagnostic verbatim.
10740 let c = caixa_with_licenca(Some(""));
10741 let err = c.validate_licenca().unwrap_err();
10742 assert!(matches!(err, ManifestError::LicencaEmpty), "got {err:?}",);
10743 }
10744
10745 #[test]
10746 fn validate_licenca_invalid_diagnostic_carries_offending_value() {
10747 // Diagnostic-shape pin on the shape-predicate arm (peer with
10748 // `validate_edicao_invalid_diagnostic_carries_offending_value`
10749 // and `validate_repositorio_diagnostic_carries_offending_value`):
10750 // the error's Display surfaces the offending value + slot
10751 // name verbatim, so a `feira lint` run can render the
10752 // diagnostic without re-parsing and the author can grep
10753 // their caixa.lisp for the offending `:licenca` value.
10754 let c = caixa_with_licenca(Some("Apache_2.0"));
10755 let rendered = c.validate_licenca().unwrap_err().to_string();
10756 assert!(
10757 rendered.contains(":licenca"),
10758 "diagnostic must name the offending slot: {rendered}",
10759 );
10760 assert!(
10761 rendered.contains("Apache_2.0"),
10762 "diagnostic must quote the offending value: {rendered}",
10763 );
10764 }
10765
10766 #[test]
10767 fn validate_licenca_rejects_empty_some() {
10768 // Canonical paste-from-blank-doc footgun. Without this gate
10769 // the empty `Some("")` silently passed the renderer's
10770 // `Option::unwrap_or_else(|| "MIT".into())` (which only
10771 // fires on `None`) and landed as a bare trailing period in
10772 // the rendered chart `README.md` `## License` section.
10773 // Mirrors the peer [`ManifestError::DescricaoEmpty`] empty-
10774 // arm on the sibling `Option<String>` Caixa slot.
10775 let c = caixa_with_licenca(Some(""));
10776 let err = c.validate_licenca().unwrap_err();
10777 assert!(matches!(err, ManifestError::LicencaEmpty), "got {err:?}",);
10778 }
10779
10780 #[test]
10781 fn validate_licenca_template_passes() {
10782 // Round-trip pin: the bare `Caixa::template` shape (whether
10783 // it carries `:licenca` or omits it) passes the gate by
10784 // construction. A future template-shape change that
10785 // introduced `(:licenca "")` would surface here as a
10786 // regression. Mirrors the peer
10787 // `validate_descricao_template_passes` pin.
10788 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
10789 c.validate_licenca().unwrap();
10790 }
10791
10792 #[test]
10793 fn validate_licenca_diagnostic_names_offending_slot() {
10794 // Diagnostic-shape pin (peer with
10795 // `validate_descricao_diagnostic_names_offending_slot`):
10796 // the error's Display surfaces the `:licenca` slot name
10797 // verbatim, so a `feira lint` run can render the diagnostic
10798 // without re-parsing and the author can grep their caixa.lisp
10799 // for the offending `:licenca` line.
10800 let c = caixa_with_licenca(Some(""));
10801 let rendered = c.validate_licenca().unwrap_err().to_string();
10802 assert!(
10803 rendered.contains(":licenca"),
10804 "diagnostic must name the offending slot: {rendered}",
10805 );
10806 }
10807
10808 // ── Caixa::licenca — outer top-level Option<&str> scalar accessor ──
10809
10810 #[test]
10811 fn licenca_returns_licenca_byte_string_verbatim_across_permutations() {
10812 // The canonical per-`Caixa` `:licenca` SPDX-expression scalar
10813 // pin: [`Caixa::licenca`] must return the `:licenca` typed
10814 // byte-string verbatim as an `Option<&str>`, byte-equal to the
10815 // raw `self.licenca.as_deref()` access across every
10816 // representative value in the accept-set — `None` (the "omit
10817 // the slot to defer to the caixa-helm renderer's `MIT`
10818 // fallback" arm every existing fixture without a `:licenca`
10819 // line carries), `Some("")` (a past-the-guard sentinel that
10820 // pins the accessor doesn't perform a silent
10821 // `Some("") → None` collapse on the empty arm — validate
10822 // rejects `Some("")` through `LicencaEmpty` but the accessor
10823 // must ship the raw slot verbatim so a validate-time gate
10824 // regression surfaces at the caixa-helm emit boundary rather
10825 // than being silently absorbed into the fallback), `Some("MIT")`
10826 // (the canonical single-license shape every `feira init`
10827 // template scaffolds), `Some("Apache-2.0 OR MIT")` (the
10828 // canonical `OR`-compound shape the peer
10829 // `validate_licenca_accepts_canonical_expressions` positive
10830 // sweep exercises), `Some("(MIT OR Apache-2.0) AND
10831 // BSD-3-Clause")` (the canonical parenthesis-grouped shape),
10832 // `Some("MIT ")` / `Some(" MIT")` / `Some("MIT\n")` /
10833 // `Some("Apache_2.0")` / `Some("MIT,Apache-2.0")` (past-the-
10834 // guard sentinels — validate rejects each through
10835 // `LicencaInvalid` but the accessor must ship the raw slot
10836 // verbatim).
10837 //
10838 // First outer top-level [`Caixa`] `Option<&str>`-return scalar
10839 // accessor pin on the substrate primitive — opens the "outer
10840 // [`Caixa`] `Option<&str>` scalar" projection pattern the
10841 // sibling per-`Caixa` `:descricao` / `:repositorio` / `:edicao`
10842 // future lifts fold on. Sibling in shape to the peer per-`:placement`
10843 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) /
10844 // [`crate::aplicacao::Placement::affinity`] (74ec2d3) accessor
10845 // pins on the sibling per-M3-mesh-slot `Option<&str>`-return
10846 // axes, extended onto the outer top-level [`Caixa`] universal-
10847 // axis surface. Pins against a future silent detour that
10848 // returned an owned `Option<String>` (which would type-check
10849 // but silently allocate on every accessor call, breaking the
10850 // zero-cost projection every peer sibling accessor carries), a
10851 // `Some("") → None` collapse (which would silently absorb the
10852 // `LicencaEmpty` refusal case at the accessor boundary and the
10853 // caixa-helm emit path would silently fall back to `"MIT"` on
10854 // a struct-literal `Caixa { licenca: Some(""), .. }`), or a
10855 // `None → Some("MIT")` collapse (which would silently reify
10856 // the caixa-helm renderer's `"MIT"` fallback at the accessor
10857 // boundary and every downstream consumer keying off the
10858 // `Option::is_none()` discriminator would lose the "author
10859 // omitted the slot" signal).
10860 for licenca in [
10861 None,
10862 Some(""),
10863 Some("MIT"),
10864 Some("Apache-2.0 OR MIT"),
10865 Some("(MIT OR Apache-2.0) AND BSD-3-Clause"),
10866 Some("MIT "),
10867 Some(" MIT"),
10868 Some("MIT\n"),
10869 Some("Apache_2.0"),
10870 Some("MIT,Apache-2.0"),
10871 ] {
10872 let c = caixa_with_licenca(licenca);
10873 assert_eq!(
10874 c.licenca(),
10875 licenca,
10876 "Caixa::licenca must return :licenca verbatim (got {:?}, \
10877 expected {licenca:?})",
10878 c.licenca(),
10879 );
10880 assert_eq!(
10881 c.licenca(),
10882 c.licenca.as_deref(),
10883 "Caixa::licenca must byte-equal the raw \
10884 `self.licenca.as_deref()` field access across every \
10885 value in the Option<&str> accept-set",
10886 );
10887 }
10888 }
10889
10890 #[test]
10891 fn validate_licenca_empty_arm_routes_through_accessor() {
10892 // Composition pin: [`Caixa::validate_licenca`]'s empty-arm gate
10893 // must key off [`Caixa::licenca`], not the raw
10894 // `self.licenca.as_deref()` field access. Structurally: a
10895 // `Caixa { licenca: Some(""), .. }` must surface the
10896 // `LicencaEmpty` refusal exactly, and a
10897 // `Caixa { licenca: Some("MIT"), .. }` (the canonical
10898 // single-license form) must pass validate. The pair jointly
10899 // pins the accessor + validate-gate composition: any future
10900 // silent detour that had the accessor return `None` on the
10901 // empty arm (a `.filter(|s| !s.is_empty())` collapse) would
10902 // silently absorb the `LicencaEmpty` refusal at the accessor
10903 // boundary and the validate gate would accept a struct-literal
10904 // `Caixa { licenca: Some(""), .. }` — the composition pin
10905 // catches that at caixa-core build time.
10906 //
10907 // Peer of the per-`:politicas :circuit-breaker`
10908 // [`crate::aplicacao::CircuitBreaker::max_failures`] (3a74062)
10909 // accessor-composition pin
10910 // (`validate_politicas_max_failures_zero_floor_arm_routes_through_accessor`)
10911 // on the sibling per-M3-mesh-slot required-`u32` axis — same
10912 // "the validate / shape-gate predicate must route through the
10913 // substrate-primitive typed dispatch" discipline extended onto
10914 // the outer top-level [`Caixa`] universal-axis
10915 // `Option<&str>`-composition surface.
10916 let c = caixa_with_licenca(Some(""));
10917 assert!(
10918 matches!(c.validate_licenca(), Err(ManifestError::LicencaEmpty)),
10919 "validate_licenca must reject licenca == Some(\"\") with \
10920 LicencaEmpty — the accessor and the validate gate must \
10921 route through the same substrate-primitive typed dispatch \
10922 on the :licenca empty arm",
10923 );
10924 let c = caixa_with_licenca(Some("MIT"));
10925 assert!(
10926 c.validate_licenca().is_ok(),
10927 "validate_licenca must accept licenca == Some(\"MIT\") \
10928 (the canonical single-license SPDX shape)",
10929 );
10930 }
10931
10932 #[test]
10933 fn licenca_projects_option_str_by_borrow() {
10934 // The by-borrow pin: [`Caixa::licenca`] returns
10935 // `Option<&str>` by borrow — the `&str` borrows the underlying
10936 // `String` storage of the `Option<String>` slot and the
10937 // accessor must not allocate a fresh `String` on every call.
10938 // Peer of the per-`:placement`
10939 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) by-
10940 // borrow pin on the peer per-M3-mesh-slot
10941 // `Option<&str>`-return axis, extended onto the outer top-
10942 // level [`Caixa`] universal-axis `Option<&str>` shape — the
10943 // accessor's returned `&str` must borrow from `&self` (the
10944 // returned reference's lifetime is tied to `&self`), and
10945 // calling the accessor twice on the same [`Caixa`] must yield
10946 // the same `Option<&str>` verbatim (idempotent, no side
10947 // effects on `&self`).
10948 //
10949 // Pins against a future silent detour that returned an owned
10950 // `Option<String>` (which would type-check but silently
10951 // allocate on every call, breaking the zero-cost projection
10952 // every peer sibling accessor carries), or a one-arm-only
10953 // accessor that returned a saturating value on some sentinel
10954 // input (breaking the pass-through invariant the sibling
10955 // required-scalar accessors carry).
10956 for licenca in [None, Some(""), Some("MIT"), Some("Apache-2.0 OR MIT")] {
10957 let c = caixa_with_licenca(licenca);
10958 let first = c.licenca();
10959 let second = c.licenca();
10960 assert_eq!(
10961 first, second,
10962 "Caixa::licenca must be idempotent — two successive \
10963 calls on the same &self must return the same \
10964 Option<&str>",
10965 );
10966 assert_eq!(
10967 first, licenca,
10968 "Caixa::licenca must return :licenca verbatim by \
10969 borrow — got {first:?}, expected {licenca:?}",
10970 );
10971 }
10972 }
10973
10974 // ── Caixa::repositorio — outer top-level Option<&str> scalar accessor ──
10975
10976 #[test]
10977 fn repositorio_returns_repositorio_byte_string_verbatim_across_permutations() {
10978 // The canonical per-`Caixa` `:repositorio` git-repo-URL scalar
10979 // pin: [`Caixa::repositorio`] must return the `:repositorio`
10980 // typed byte-string verbatim as an `Option<&str>`, byte-equal
10981 // to the raw `self.repositorio.as_deref()` access across every
10982 // representative value in the accept-set — `None` (the "omit
10983 // the slot to defer to the per-renderer placeholder" arm every
10984 // existing fixture without a `:repositorio` line carries),
10985 // `Some("")` (a past-the-guard sentinel that pins the accessor
10986 // doesn't perform a silent `Some("") → None` collapse on the
10987 // empty arm — validate rejects `Some("")` through
10988 // `RepositorioEmpty` but the accessor must ship the raw slot
10989 // verbatim so a validate-time gate regression surfaces at the
10990 // caixa-helm / caixa-flux emit boundary rather than being
10991 // silently absorbed into the per-renderer fallback),
10992 // `Some("github:pleme-io/hello-rio")` (the canonical `github:`
10993 // shorthand every existing manifest fixture across
10994 // `caixa-helm` / `caixa-mesh` and the `examples/` uses),
10995 // `Some("https://github.com/pleme-io/checkout")` (the canonical
10996 // `https://` URL the README quickstart uses),
10997 // `Some("ssh://git@github.com/pleme-io/checkout.git")` /
10998 // `Some("git://github.com/pleme-io/checkout.git")` /
10999 // `Some("git@github.com:pleme-io/checkout.git")` /
11000 // `Some("file:///opt/mirrors/pleme-io/checkout")` (every non-
11001 // github scheme the shared `is_git_repo_url` predicate
11002 // documents), and five past-the-guard sentinels for the
11003 // `RepositorioInvalid` refusal cases (`Some("pleme-io/checkout")`
11004 // missing-colon, `Some("-upload-pack=evil")` leading-dash, /
11005 // `Some("github:pleme-io/checkout?ref=main")` query-string, /
11006 // `Some("github:pleme-io/checkout#main")` fragment-anchor, /
11007 // `Some("github:pleme-io/{tpl}")` URI-template-placeholder — the
11008 // sentinels pin the accessor doesn't silently absorb the
11009 // refusal cases into a fallback).
11010 //
11011 // Second outer top-level [`Caixa`] `Option<&str>`-return scalar
11012 // accessor pin on the substrate primitive — sibling of the peer
11013 // [`Caixa::licenca`] (6d5bc28) pin
11014 // (`licenca_returns_licenca_byte_string_verbatim_across_permutations`)
11015 // that opened the "outer [`Caixa`] `Option<&str>` scalar"
11016 // projection pin pattern this pin folds on. Sibling in shape to
11017 // the peer per-`:placement`
11018 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) /
11019 // [`crate::aplicacao::Placement::affinity`] (74ec2d3) accessor
11020 // pins on the sibling per-M3-mesh-slot `Option<&str>`-return
11021 // axes, extended onto the outer top-level [`Caixa`] universal-
11022 // axis surface. Pins against a future silent detour that
11023 // returned an owned `Option<String>` (which would type-check
11024 // but silently allocate on every accessor call, breaking the
11025 // zero-cost projection every peer sibling accessor carries), a
11026 // `Some("") → None` collapse (which would silently absorb the
11027 // `RepositorioEmpty` refusal case at the accessor boundary and
11028 // the caixa-helm `Chart.yaml` `home:` fold would silently
11029 // render a `home: null` / omitted field on a struct-literal
11030 // `Caixa { repositorio: Some(""), .. }`), or a
11031 // `None → Some(<default>)` collapse (which would silently reify
11032 // the per-renderer fallback at the accessor boundary and every
11033 // downstream consumer keying off the `Option::is_none()`
11034 // discriminator would lose the "author omitted the slot"
11035 // signal).
11036 for repositorio in [
11037 None,
11038 Some(""),
11039 Some("github:pleme-io/hello-rio"),
11040 Some("https://github.com/pleme-io/checkout"),
11041 Some("ssh://git@github.com/pleme-io/checkout.git"),
11042 Some("git://github.com/pleme-io/checkout.git"),
11043 Some("git@github.com:pleme-io/checkout.git"),
11044 Some("file:///opt/mirrors/pleme-io/checkout"),
11045 Some("pleme-io/checkout"),
11046 Some("-upload-pack=evil"),
11047 Some("github:pleme-io/checkout?ref=main"),
11048 Some("github:pleme-io/checkout#main"),
11049 Some("github:pleme-io/{tpl}"),
11050 ] {
11051 let c = caixa_with_repositorio(repositorio);
11052 assert_eq!(
11053 c.repositorio(),
11054 repositorio,
11055 "Caixa::repositorio must return :repositorio verbatim \
11056 (got {:?}, expected {repositorio:?})",
11057 c.repositorio(),
11058 );
11059 assert_eq!(
11060 c.repositorio(),
11061 c.repositorio.as_deref(),
11062 "Caixa::repositorio must byte-equal the raw \
11063 `self.repositorio.as_deref()` field access across every \
11064 value in the Option<&str> accept-set",
11065 );
11066 }
11067 }
11068
11069 #[test]
11070 fn validate_repositorio_empty_arm_routes_through_accessor() {
11071 // Composition pin: [`Caixa::validate_repositorio`]'s empty-arm
11072 // gate must key off [`Caixa::repositorio`], not the raw
11073 // `self.repositorio.as_deref()` field access. Structurally: a
11074 // `Caixa { repositorio: Some(""), .. }` must surface the
11075 // `RepositorioEmpty` refusal exactly, and a
11076 // `Caixa { repositorio: Some("github:pleme-io/hello-rio"), .. }`
11077 // (the canonical `github:` shorthand form) must pass validate.
11078 // The pair jointly pins the accessor + validate-gate
11079 // composition: any future silent detour that had the accessor
11080 // return `None` on the empty arm (a `.filter(|s| !s.is_empty())`
11081 // collapse) would silently absorb the `RepositorioEmpty` refusal
11082 // at the accessor boundary and the validate gate would accept a
11083 // struct-literal `Caixa { repositorio: Some(""), .. }` — the
11084 // composition pin catches that at caixa-core build time.
11085 //
11086 // Peer of the [`Caixa::licenca`] (6d5bc28)
11087 // `validate_licenca_empty_arm_routes_through_accessor`
11088 // composition pin on the sibling outer top-level [`Caixa`]
11089 // `Option<&str>` universal-axis surface — same "the validate /
11090 // shape-gate predicate must route through the substrate-
11091 // primitive typed dispatch" discipline extended onto the second
11092 // outer top-level [`Caixa`] universal-axis `Option<&str>`-
11093 // composition surface.
11094 let c = caixa_with_repositorio(Some(""));
11095 assert!(
11096 matches!(
11097 c.validate_repositorio(),
11098 Err(ManifestError::RepositorioEmpty),
11099 ),
11100 "validate_repositorio must reject repositorio == Some(\"\") \
11101 with RepositorioEmpty — the accessor and the validate gate \
11102 must route through the same substrate-primitive typed \
11103 dispatch on the :repositorio empty arm",
11104 );
11105 let c = caixa_with_repositorio(Some("github:pleme-io/hello-rio"));
11106 assert!(
11107 c.validate_repositorio().is_ok(),
11108 "validate_repositorio must accept repositorio == \
11109 Some(\"github:pleme-io/hello-rio\") (the canonical \
11110 `github:` shorthand git-repo-URL shape)",
11111 );
11112 }
11113
11114 #[test]
11115 fn repositorio_projects_option_str_by_borrow() {
11116 // The by-borrow pin: [`Caixa::repositorio`] returns
11117 // `Option<&str>` by borrow — the `&str` borrows the underlying
11118 // `String` storage of the `Option<String>` slot and the
11119 // accessor must not allocate a fresh `String` on every call.
11120 // Peer of the per-`:placement`
11121 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) and the
11122 // [`Caixa::licenca`] (6d5bc28) by-borrow pins on the peer
11123 // `Option<&str>`-return axes, extended onto the second outer
11124 // top-level [`Caixa`] universal-axis `Option<&str>` shape —
11125 // the accessor's returned `&str` must borrow from `&self` (the
11126 // returned reference's lifetime is tied to `&self`), and
11127 // calling the accessor twice on the same [`Caixa`] must yield
11128 // the same `Option<&str>` verbatim (idempotent, no side effects
11129 // on `&self`).
11130 //
11131 // Pins against a future silent detour that returned an owned
11132 // `Option<String>` (which would type-check but silently
11133 // allocate on every call, breaking the zero-cost projection
11134 // every peer sibling accessor carries), or a one-arm-only
11135 // accessor that returned a saturating value on some sentinel
11136 // input (breaking the pass-through invariant the sibling
11137 // required-scalar accessors carry).
11138 for repositorio in [
11139 None,
11140 Some(""),
11141 Some("github:pleme-io/hello-rio"),
11142 Some("https://github.com/pleme-io/checkout"),
11143 ] {
11144 let c = caixa_with_repositorio(repositorio);
11145 let first = c.repositorio();
11146 let second = c.repositorio();
11147 assert_eq!(
11148 first, second,
11149 "Caixa::repositorio must be idempotent — two successive \
11150 calls on the same &self must return the same \
11151 Option<&str>",
11152 );
11153 assert_eq!(
11154 first, repositorio,
11155 "Caixa::repositorio must return :repositorio verbatim by \
11156 borrow — got {first:?}, expected {repositorio:?}",
11157 );
11158 }
11159 }
11160
11161 // ── Caixa::canonical_git_url — resolved-git-URL composer ──────────
11162
11163 #[test]
11164 fn canonical_git_url_returns_repositorio_verbatim_on_some_arm() {
11165 // Fail-before-pass-after pin: [`Caixa::canonical_git_url`] must
11166 // return the author-declared `:repositorio` byte-string verbatim
11167 // on the `Some` arm — no scheme rewrite, no trailing-slash
11168 // canonicalization, no `github:` → `https://github.com/`
11169 // desugaring. The resolved-URL composer is the projection of
11170 // the raw [`Caixa::repositorio`] `Option<&str>` accessor onto
11171 // the `String`-return arity every substrate-side field-fill
11172 // consumer keys off; on the `Some` arm the projection is
11173 // `str::to_owned` verbatim, so every accept-set value the
11174 // sibling `repositorio_returns_repositorio_byte_string_verbatim_
11175 // across_permutations` pin covers (`https://…`, `github:…`,
11176 // `ssh://…`, `git://…`, `git@…`, `file://…`, and the past-the-
11177 // guard sentinel `pleme-io/…`) must survive the accessor
11178 // byte-equal. Pins against a future silent detour that rewrote
11179 // the `github:` shorthand to the `https://github.com/` full URL
11180 // at the accessor boundary (which would silently split the
11181 // resolved-URL surface from the raw [`Caixa::repositorio`]
11182 // accessor's documented pass-through invariant), or a trailing-
11183 // slash normalization (which would silently break the
11184 // FluxCD `GitRepository` `spec.url` byte-exact match every
11185 // downstream consumer keys the source-controller reconcile off).
11186 for repositorio in [
11187 "github:pleme-io/hello-rio",
11188 "https://github.com/pleme-io/checkout",
11189 "ssh://git@github.com/pleme-io/checkout.git",
11190 "git://github.com/pleme-io/checkout.git",
11191 "git@github.com:pleme-io/checkout.git",
11192 "file:///opt/mirrors/pleme-io/checkout",
11193 ] {
11194 let c = caixa_with_repositorio(Some(repositorio));
11195 assert_eq!(
11196 c.canonical_git_url(),
11197 repositorio,
11198 "Caixa::canonical_git_url on the Some arm must return \
11199 :repositorio verbatim (got {:?}, expected {repositorio:?})",
11200 c.canonical_git_url(),
11201 );
11202 }
11203 }
11204
11205 #[test]
11206 fn canonical_git_url_falls_back_to_pleme_org_url_on_none_arm() {
11207 // Fail-before-pass-after pin: [`Caixa::canonical_git_url`] on the
11208 // `None` arm must emit the substrate's canonical pleme-org github
11209 // URL derived from `caixa.nome()` — `https://github.com/<org>/
11210 // <nome>` with `<org>` bound to [`crate::DEFAULT_PLEME_GIT_ORG`]
11211 // and `<nome>` bound to the typed [`Caixa::nome`] accessor. This
11212 // is the exact byte-image of the prior inline
11213 // [`caixa-flux::ClusterBundleOpts::for_caixa`] `git_url`
11214 // composer at caixa-flux/src/lib.rs:2080 that every prior caller
11215 // re-derived open-coded. Pins against a future silent detour
11216 // that migrated the `<org>` segment to a different constant (a
11217 // fork rebranding that split off a new
11218 // `DEFAULT_PLEME_GIT_ORG_MIRROR` const the accessor would need
11219 // to migrate onto), a scheme change (`https://` → `git://` or
11220 // `ssh://`), or a per-`Caixa` `.canonical_git_url_prefix`
11221 // override (which would break the substrate-wide single-source-
11222 // of-truth guarantee this method encodes).
11223 let c = caixa_with_repositorio(None);
11224 let expected = format!(
11225 "https://github.com/{org}/{nome}",
11226 org = crate::DEFAULT_PLEME_GIT_ORG,
11227 nome = c.nome(),
11228 );
11229 assert_eq!(
11230 c.canonical_git_url(),
11231 expected,
11232 "Caixa::canonical_git_url on the None arm must fold through \
11233 the substrate's canonical pleme-org github URL fallback \
11234 `https://github.com/<DEFAULT_PLEME_GIT_ORG>/<nome>` — got \
11235 {:?}, expected {expected:?}",
11236 c.canonical_git_url(),
11237 );
11238 }
11239
11240 #[test]
11241 fn canonical_git_url_byte_matches_manual_composition() {
11242 // Byte-parity pin: [`Caixa::canonical_git_url`] must render
11243 // byte-identically to the manual open-coded
11244 // `caixa.repositorio().map(str::to_owned).unwrap_or_else(||
11245 // format!("https://github.com/{org}/{nome}", ...))` composition
11246 // every prior substrate-side caller re-derived. Guards the
11247 // paired-site convergence just applied at caixa-flux's
11248 // [`ClusterBundleOpts::for_caixa`] `git_url` composer (which
11249 // now routes through this accessor): a future implementation of
11250 // this method that reordered the format arguments, swapped the
11251 // `<org>` constant for a different one, or interposed a
11252 // canonicalization pass on the `Some` arm surfaces here as a
11253 // caixa-core build-time test failure rather than as a downstream
11254 // FluxCD `GitRepository` reconcile mismatch far from this
11255 // method's source.
11256 for repositorio in [
11257 None,
11258 Some("github:pleme-io/hello-rio"),
11259 Some("https://github.com/pleme-io/checkout"),
11260 Some("ssh://git@github.com/pleme-io/checkout.git"),
11261 ] {
11262 let c = caixa_with_repositorio(repositorio);
11263 let manual = c.repositorio().map_or_else(
11264 || {
11265 format!(
11266 "https://github.com/{org}/{nome}",
11267 org = crate::DEFAULT_PLEME_GIT_ORG,
11268 nome = c.nome(),
11269 )
11270 },
11271 str::to_owned,
11272 );
11273 assert_eq!(
11274 c.canonical_git_url(),
11275 manual,
11276 "Caixa::canonical_git_url must byte-equal the manual \
11277 open-coded `repositorio().map(str::to_owned)\
11278 .unwrap_or_else(|| format!(...))` composition across \
11279 every representative :repositorio input — got {:?}, \
11280 expected {manual:?}",
11281 c.canonical_git_url(),
11282 );
11283 }
11284 }
11285
11286 // ── Caixa::publish_tag — resolved-publish-tag composer ───────────
11287
11288 #[test]
11289 fn publish_tag_composes_prefix_and_versao_on_all_shapes() {
11290 // Fail-before-pass-after pin: [`Caixa::publish_tag`] must compose
11291 // [`crate::DEFAULT_PUBLISH_TAG_PREFIX`] against the caixa's typed
11292 // [`Caixa::versao`] byte-string across every SemVer-2 shape the
11293 // sibling [`validate_versao_accepts_canonical_forms`] positive-set
11294 // sweep documents — bare MAJOR.MINOR.PATCH, pre-release tags
11295 // (`-rc.1`), build metadata (`+build.42`), the combined form, and
11296 // the `0.0.0` boundary case. Every accept-set value the peer
11297 // validate gate lets through must survive the resolved-tag
11298 // projection byte-equal.
11299 for versao in [
11300 "0.1.0",
11301 "0.0.0",
11302 "1.0.0",
11303 "1.2.3-rc.1",
11304 "1.2.3+build.42",
11305 "1.2.3-rc.1+build.42",
11306 ] {
11307 let c = caixa_with_versao(versao);
11308 let expected = format!(
11309 "{prefix}{versao}",
11310 prefix = crate::DEFAULT_PUBLISH_TAG_PREFIX,
11311 );
11312 assert_eq!(
11313 c.publish_tag(),
11314 expected,
11315 "Caixa::publish_tag must compose \
11316 DEFAULT_PUBLISH_TAG_PREFIX ({prefix:?}) against \
11317 :versao ({versao:?}) verbatim — got {got:?}, \
11318 expected {expected:?}",
11319 prefix = crate::DEFAULT_PUBLISH_TAG_PREFIX,
11320 got = c.publish_tag(),
11321 );
11322 }
11323 }
11324
11325 #[test]
11326 fn publish_tag_starts_with_default_publish_tag_prefix() {
11327 // Prefix-shape pin: every [`Caixa::publish_tag`] emission must
11328 // begin with the canonical [`crate::DEFAULT_PUBLISH_TAG_PREFIX`]
11329 // byte-string on every input, guarding a hypothetical future
11330 // implementation that migrated the prefix segment to an inline
11331 // literal (`"v"`) that would silently drift from any rebrand of
11332 // the lifted constant. Peer to the sibling caixa-flux
11333 // `cluster_bundle_default_git_tag_uses_lifted_caixa_core_prefix`
11334 // test which pins the same prefix invariant at the reader-side
11335 // `GitRefSpec::Tag` emit site.
11336 for versao in ["0.0.0", "0.1.0", "1.2.3-rc.1", "9.9.9+build.1"] {
11337 let c = caixa_with_versao(versao);
11338 let tag = c.publish_tag();
11339 assert!(
11340 tag.starts_with(crate::DEFAULT_PUBLISH_TAG_PREFIX),
11341 "Caixa::publish_tag emission {tag:?} must start with \
11342 the lifted crate::DEFAULT_PUBLISH_TAG_PREFIX \
11343 ({prefix:?})",
11344 prefix = crate::DEFAULT_PUBLISH_TAG_PREFIX,
11345 );
11346 }
11347 }
11348
11349 #[test]
11350 fn publish_tag_byte_matches_manual_composition() {
11351 // Byte-parity pin: [`Caixa::publish_tag`] must render byte-
11352 // identically to the manual open-coded
11353 // `format!("{prefix}{versao}", prefix =
11354 // caixa_core::DEFAULT_PUBLISH_TAG_PREFIX, versao =
11355 // caixa.versao())` composition every prior substrate-side
11356 // caller re-derived. Guards the paired-site convergence just
11357 // applied at caixa-flux's [`ClusterBundleOpts::for_caixa`]
11358 // `git_ref` composer (which now routes through this accessor):
11359 // a future implementation of this method that reordered the
11360 // format arguments, swapped the `<prefix>` constant for a
11361 // different one, or interposed a canonicalization pass on the
11362 // `:versao` axis surfaces here as a caixa-core build-time test
11363 // failure rather than as a downstream FluxCD `GitRepository`
11364 // reconcile mismatch far from this method's source.
11365 for versao in [
11366 "0.1.0",
11367 "0.0.0",
11368 "1.2.3-rc.1",
11369 "1.2.3+build.42",
11370 "1.2.3-rc.1+build.42",
11371 ] {
11372 let c = caixa_with_versao(versao);
11373 let manual = format!(
11374 "{prefix}{versao}",
11375 prefix = crate::DEFAULT_PUBLISH_TAG_PREFIX,
11376 versao = c.versao(),
11377 );
11378 assert_eq!(
11379 c.publish_tag(),
11380 manual,
11381 "Caixa::publish_tag must byte-equal the manual \
11382 open-coded `format!(\"{{prefix}}{{versao}}\", ...)` \
11383 composition across every representative :versao input \
11384 — got {got:?}, expected {manual:?}",
11385 got = c.publish_tag(),
11386 );
11387 }
11388 }
11389
11390 // ── Caixa::lareira_chart_name — resolved-chart-name composer ─────
11391
11392 #[test]
11393 fn lareira_chart_name_composes_prefix_and_nome_on_all_shapes() {
11394 // Fail-before-pass-after pin: [`Caixa::lareira_chart_name`] must
11395 // compose [`crate::LAREIRA_CHART_NAME_PREFIX`] against the caixa's
11396 // typed [`Caixa::nome`] byte-string across every DNS-1123 shape
11397 // the sibling [`validate_nome_accepts_canonical_forms`] positive-
11398 // set sweep documents — single-word, hyphen-joined, version-
11399 // suffixed, single-char, two-char, digit-start, retry-suffixed.
11400 // Every accept-set value the peer validate gate lets through must
11401 // survive the resolved-chart-name projection byte-equal.
11402 for nome in [
11403 "checkout",
11404 "cart-v2",
11405 "a",
11406 "db",
11407 "3rd-party-shim",
11408 "payment-retry",
11409 "0",
11410 ] {
11411 let c = caixa_with_nome(nome);
11412 let expected = format!("{prefix}{nome}", prefix = crate::LAREIRA_CHART_NAME_PREFIX);
11413 assert_eq!(
11414 c.lareira_chart_name(),
11415 expected,
11416 "Caixa::lareira_chart_name must compose \
11417 LAREIRA_CHART_NAME_PREFIX ({prefix:?}) against \
11418 :nome ({nome:?}) verbatim — got {got:?}, \
11419 expected {expected:?}",
11420 prefix = crate::LAREIRA_CHART_NAME_PREFIX,
11421 got = c.lareira_chart_name(),
11422 );
11423 }
11424 }
11425
11426 #[test]
11427 fn lareira_chart_name_starts_with_lifted_prefix() {
11428 // Prefix-shape pin: every [`Caixa::lareira_chart_name`] emission
11429 // must begin with the canonical
11430 // [`crate::LAREIRA_CHART_NAME_PREFIX`] byte-string on every
11431 // input, guarding a hypothetical future implementation that
11432 // migrated the prefix segment to an inline literal (`"lareira-"`)
11433 // that would silently drift from any rebrand of the lifted
11434 // constant. Peer to the sibling
11435 // [`publish_tag_starts_with_default_publish_tag_prefix`] pin on
11436 // the co-resident resolved-publish-tag composer's prefix axis.
11437 for nome in ["checkout", "cart", "a", "payment-retry", "0"] {
11438 let c = caixa_with_nome(nome);
11439 let chart = c.lareira_chart_name();
11440 assert!(
11441 chart.starts_with(crate::LAREIRA_CHART_NAME_PREFIX),
11442 "Caixa::lareira_chart_name emission {chart:?} must start \
11443 with the lifted crate::LAREIRA_CHART_NAME_PREFIX \
11444 ({prefix:?})",
11445 prefix = crate::LAREIRA_CHART_NAME_PREFIX,
11446 );
11447 }
11448 }
11449
11450 #[test]
11451 fn lareira_chart_name_byte_matches_canonical_helper_composition() {
11452 // Byte-parity pin: [`Caixa::lareira_chart_name`] must render
11453 // byte-identically to the manual open-coded
11454 // `caixa_core::lareira_chart_name(caixa.nome())` two-step
11455 // composition every prior substrate-side caller re-derived.
11456 // Guards the paired-site convergence just applied at caixa-helm's
11457 // [`render_chart_for_servico_with`] `ChartDir.name` composer,
11458 // caixa-flux's [`cluster_bundle`] per-CR `chart_name` binding,
11459 // and caixa-tatara's [`process_for_aplicacao`] `release_name`
11460 // composer (all of which now route through this accessor): a
11461 // future implementation of this method that reordered the
11462 // composition arguments, swapped the `<prefix>` constant for a
11463 // different one, or interposed a canonicalization pass on the
11464 // `:nome` axis surfaces here as a caixa-core build-time test
11465 // failure rather than as a downstream Helm chart-render / FluxCD
11466 // reconcile / tatara Process-CR mismatch far from this method's
11467 // source.
11468 for nome in [
11469 "checkout",
11470 "cart-v2",
11471 "a",
11472 "db",
11473 "3rd-party-shim",
11474 "payment-retry",
11475 ] {
11476 let c = caixa_with_nome(nome);
11477 let manual = crate::lareira_chart_name(c.nome());
11478 assert_eq!(
11479 c.lareira_chart_name(),
11480 manual,
11481 "Caixa::lareira_chart_name must byte-equal the manual \
11482 open-coded `caixa_core::lareira_chart_name(caixa.nome())` \
11483 composition across every representative :nome input — \
11484 got {got:?}, expected {manual:?}",
11485 got = c.lareira_chart_name(),
11486 );
11487 }
11488 }
11489
11490 // ── Caixa::oci_chart_ref — resolved-OCI-chart-ref composer ────────
11491
11492 #[test]
11493 fn oci_chart_ref_composes_scheme_and_lareira_chart_name_on_all_shapes() {
11494 // Fail-before-pass-after pin: [`Caixa::oci_chart_ref`] must
11495 // compose [`crate::OCI_SCHEME_PREFIX`] + the caller-supplied
11496 // `registry` + [`crate::lareira_chart_name`]-of-[`Caixa::nome`]
11497 // across the full paired `(registry, :nome)` accept-set — every
11498 // representative registry the substrate-side emitters carry
11499 // (`ghcr.io/pleme-io/charts`, the canonical CAIXA-SDLC §II
11500 // ArtifactHub-tier registry; `ghcr.io/pleme-io`, the bare-org
11501 // arm the sibling `oci_chart_ref_pins_byte_shape_against_prior_
11502 // inline_format` render-side pin exercises; `registry.example.
11503 // com`, an off-org shape; `localhost:5000`, the local-dev shape
11504 // every `feira chart` iteration path lands under) × every DNS-
11505 // 1123 `:nome` shape the peer `validate_nome_accepts_canonical_
11506 // forms` positive-set sweep documents (single-word, hyphen-
11507 // joined, single-char, two-char, digit-start, retry-suffixed).
11508 // Every accept-set pair the peer validate gates let through must
11509 // survive the resolved-OCI-ref projection byte-equal.
11510 for registry in [
11511 "ghcr.io/pleme-io/charts",
11512 "ghcr.io/pleme-io",
11513 "registry.example.com",
11514 "localhost:5000",
11515 ] {
11516 for nome in [
11517 "checkout",
11518 "cart-v2",
11519 "a",
11520 "db",
11521 "3rd-party-shim",
11522 "payment-retry",
11523 "0",
11524 ] {
11525 let c = caixa_with_nome(nome);
11526 let expected = format!(
11527 "{scheme}{registry}/{chart}",
11528 scheme = crate::OCI_SCHEME_PREFIX,
11529 chart = crate::lareira_chart_name(nome),
11530 );
11531 assert_eq!(
11532 c.oci_chart_ref(registry),
11533 expected,
11534 "Caixa::oci_chart_ref must compose \
11535 OCI_SCHEME_PREFIX ({scheme:?}) + registry ({registry:?}) + \
11536 lareira_chart_name(:nome ({nome:?})) verbatim — got {got:?}, \
11537 expected {expected:?}",
11538 scheme = crate::OCI_SCHEME_PREFIX,
11539 got = c.oci_chart_ref(registry),
11540 );
11541 }
11542 }
11543 }
11544
11545 #[test]
11546 fn oci_chart_ref_starts_with_lifted_scheme_prefix() {
11547 // Scheme-prefix-shape pin: every [`Caixa::oci_chart_ref`]
11548 // emission must begin with the canonical
11549 // [`crate::OCI_SCHEME_PREFIX`] byte-string on every input, guarding
11550 // a hypothetical future implementation that migrated the scheme
11551 // segment to an inline literal (`"oci://"`) that would silently
11552 // drift from any rebrand of the lifted constant. Peer to the
11553 // sibling [`publish_tag_starts_with_default_publish_tag_prefix`]
11554 // + [`lareira_chart_name_starts_with_lifted_prefix`] pins on the
11555 // co-resident resolved-publish-tag / resolved-chart-name
11556 // composers' prefix axes.
11557 for registry in [
11558 "ghcr.io/pleme-io/charts",
11559 "ghcr.io/pleme-io",
11560 "localhost:5000",
11561 ] {
11562 for nome in ["checkout", "cart", "a", "payment-retry", "0"] {
11563 let c = caixa_with_nome(nome);
11564 let ref_ = c.oci_chart_ref(registry);
11565 assert!(
11566 ref_.starts_with(crate::OCI_SCHEME_PREFIX),
11567 "Caixa::oci_chart_ref emission {ref_:?} must start \
11568 with the lifted crate::OCI_SCHEME_PREFIX ({scheme:?}) \
11569 — registry ({registry:?}), :nome ({nome:?})",
11570 scheme = crate::OCI_SCHEME_PREFIX,
11571 );
11572 }
11573 }
11574 }
11575
11576 #[test]
11577 fn oci_chart_ref_byte_matches_canonical_helper_composition() {
11578 // Byte-parity pin: [`Caixa::oci_chart_ref`] must render byte-
11579 // identically to the manual open-coded
11580 // `caixa_core::oci_chart_ref(registry, caixa.nome())` two-step
11581 // composition every prior substrate-side caller re-derived.
11582 // Guards the paired-site convergence just applied at caixa-
11583 // tatara's [`derive_chart_ref`] helper (which now routes through
11584 // this accessor): a future implementation of this method that
11585 // reordered the composition arguments, swapped the `<scheme>`
11586 // constant for a different one, migrated the `<chart>` segment
11587 // off the paired [`crate::lareira_chart_name`] composer, or
11588 // interposed a canonicalization pass on either input axis
11589 // surfaces here as a caixa-core build-time test failure rather
11590 // than as a downstream `helm install` / FluxCD OCI-source
11591 // reconcile / tatara `Process`-CR mismatch far from this
11592 // method's source. Sibling to the peer
11593 // [`lareira_chart_name_byte_matches_canonical_helper_composition`]
11594 // / [`publish_tag_byte_matches_manual_composition`] /
11595 // [`canonical_git_url_byte_matches_manual_composition`] byte-
11596 // parity pins that carry the same discipline on the co-resident
11597 // resolved-chart-name / resolved-publish-tag / resolved-git-URL
11598 // composers.
11599 for registry in [
11600 "ghcr.io/pleme-io/charts",
11601 "ghcr.io/pleme-io",
11602 "registry.example.com",
11603 "localhost:5000",
11604 ] {
11605 for nome in [
11606 "checkout",
11607 "cart-v2",
11608 "a",
11609 "db",
11610 "3rd-party-shim",
11611 "payment-retry",
11612 ] {
11613 let c = caixa_with_nome(nome);
11614 let manual = crate::oci_chart_ref(registry, c.nome());
11615 assert_eq!(
11616 c.oci_chart_ref(registry),
11617 manual,
11618 "Caixa::oci_chart_ref must byte-equal the manual \
11619 open-coded `caixa_core::oci_chart_ref(registry, \
11620 caixa.nome())` composition across every representative \
11621 (registry, :nome) pair — registry ({registry:?}), \
11622 :nome ({nome:?}), got {got:?}, expected {manual:?}",
11623 got = c.oci_chart_ref(registry),
11624 );
11625 }
11626 }
11627 }
11628
11629 // ── Caixa::descricao — outer top-level Option<&str> scalar accessor ──
11630
11631 #[test]
11632 fn descricao_returns_descricao_byte_string_verbatim_across_permutations() {
11633 // The canonical per-`Caixa` `:descricao` free-form-prose scalar
11634 // pin: [`Caixa::descricao`] must return the `:descricao` typed
11635 // byte-string verbatim as an `Option<&str>`, byte-equal to the
11636 // raw `self.descricao.as_deref()` access across every
11637 // representative value in the accept-set — `None` (the "omit
11638 // the slot to defer to the per-renderer `caixa.nome`-derived
11639 // fallback" arm every existing fixture without a `:descricao`
11640 // line carries), `Some("")` (a past-the-guard sentinel that
11641 // pins the accessor doesn't perform a silent `Some("") → None`
11642 // collapse on the empty arm — validate rejects `Some("")`
11643 // through `DescricaoEmpty` but the accessor must ship the raw
11644 // slot verbatim so a validate-time gate regression surfaces at
11645 // the caixa-helm / caixa-feira emit boundary rather than being
11646 // silently absorbed into the per-renderer `caixa.nome`-derived
11647 // fallback), `Some("Checkout flow.")` (the canonical one-line
11648 // prose descriptor the peer
11649 // `validate_descricao_accepts_canonical_value` positive sweep
11650 // exercises), `Some("Canonical Rust→wasm32-wasip2 caixa
11651 // Servico.")` (the multi-byte Unicode continuation-byte shape
11652 // the `hello-rio` fixture carries), `Some("→ — · ✓")` (a
11653 // multi-glyph Unicode shape the peer
11654 // `is_chart_description_shape` predicate accepts), and five
11655 // past-the-guard sentinels for the `DescricaoInvalid` refusal
11656 // cases (`Some(" Checkout flow.")` leading-whitespace,
11657 // `Some("Checkout flow. ")` trailing-whitespace,
11658 // `Some("Checkout\nflow.")` embedded-LF,
11659 // `Some("Checkout\tflow.")` embedded-TAB, and
11660 // `Some("Checkout\x00flow.")` embedded-NUL — the sentinels pin
11661 // the accessor doesn't silently absorb the refusal cases into
11662 // a fallback).
11663 //
11664 // Third outer top-level [`Caixa`] `Option<&str>`-return scalar
11665 // accessor pin on the substrate primitive — sibling of the peer
11666 // [`Caixa::licenca`] (6d5bc28) and [`Caixa::repositorio`]
11667 // (cc7332d) pins that opened the "outer [`Caixa`]
11668 // `Option<&str>` scalar" projection pin pattern this pin folds
11669 // on. Sibling in shape to the peer per-`:placement`
11670 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) /
11671 // [`crate::aplicacao::Placement::affinity`] (74ec2d3) accessor
11672 // pins on the sibling per-M3-mesh-slot `Option<&str>`-return
11673 // axes, extended onto the outer top-level [`Caixa`] universal-
11674 // axis surface. Pins against a future silent detour that
11675 // returned an owned `Option<String>` (which would type-check
11676 // but silently allocate on every accessor call, breaking the
11677 // zero-cost projection every peer sibling accessor carries), a
11678 // `Some("") → None` collapse (which would silently absorb the
11679 // `DescricaoEmpty` refusal case at the accessor boundary and
11680 // the caixa-helm `Chart.yaml` `description:` fold would
11681 // silently render a `caixa.nome`-derived fallback on a
11682 // struct-literal `Caixa { descricao: Some(""), .. }`), or a
11683 // `None → Some(<default>)` collapse (which would silently
11684 // reify the per-renderer `caixa.nome`-derived fallback at the
11685 // accessor boundary and every downstream consumer keying off
11686 // the `Option::is_none()` discriminator would lose the "author
11687 // omitted the slot" signal).
11688 for descricao in [
11689 None,
11690 Some(""),
11691 Some("Checkout flow."),
11692 Some("Canonical Rust→wasm32-wasip2 caixa Servico."),
11693 Some("→ — · ✓"),
11694 Some(" Checkout flow."),
11695 Some("Checkout flow. "),
11696 Some("Checkout\nflow."),
11697 Some("Checkout\tflow."),
11698 Some("Checkout\x00flow."),
11699 ] {
11700 let c = caixa_with_descricao(descricao);
11701 assert_eq!(
11702 c.descricao(),
11703 descricao,
11704 "Caixa::descricao must return :descricao verbatim (got \
11705 {:?}, expected {descricao:?})",
11706 c.descricao(),
11707 );
11708 assert_eq!(
11709 c.descricao(),
11710 c.descricao.as_deref(),
11711 "Caixa::descricao must byte-equal the raw \
11712 `self.descricao.as_deref()` field access across every \
11713 value in the Option<&str> accept-set",
11714 );
11715 }
11716 }
11717
11718 #[test]
11719 fn validate_descricao_empty_arm_routes_through_accessor() {
11720 // Composition pin: [`Caixa::validate_descricao`]'s empty-arm
11721 // gate must key off [`Caixa::descricao`], not the raw
11722 // `self.descricao.as_deref()` field access. Structurally: a
11723 // `Caixa { descricao: Some(""), .. }` must surface the
11724 // `DescricaoEmpty` refusal exactly, and a
11725 // `Caixa { descricao: Some("Checkout flow."), .. }` (the
11726 // canonical one-line-prose form) must pass validate. The pair
11727 // jointly pins the accessor + validate-gate composition: any
11728 // future silent detour that had the accessor return `None` on
11729 // the empty arm (a `.filter(|s| !s.is_empty())` collapse) would
11730 // silently absorb the `DescricaoEmpty` refusal at the accessor
11731 // boundary and the validate gate would accept a struct-literal
11732 // `Caixa { descricao: Some(""), .. }` — the composition pin
11733 // catches that at caixa-core build time.
11734 //
11735 // Peer of the [`Caixa::licenca`] (6d5bc28)
11736 // `validate_licenca_empty_arm_routes_through_accessor` and
11737 // [`Caixa::repositorio`] (cc7332d)
11738 // `validate_repositorio_empty_arm_routes_through_accessor`
11739 // composition pins on the sibling outer top-level [`Caixa`]
11740 // `Option<&str>` universal-axis surface — same "the validate /
11741 // shape-gate predicate must route through the substrate-
11742 // primitive typed dispatch" discipline extended onto the third
11743 // outer top-level [`Caixa`] universal-axis `Option<&str>`-
11744 // composition surface.
11745 let c = caixa_with_descricao(Some(""));
11746 assert!(
11747 matches!(c.validate_descricao(), Err(ManifestError::DescricaoEmpty),),
11748 "validate_descricao must reject descricao == Some(\"\") \
11749 with DescricaoEmpty — the accessor and the validate gate \
11750 must route through the same substrate-primitive typed \
11751 dispatch on the :descricao empty arm",
11752 );
11753 let c = caixa_with_descricao(Some("Checkout flow."));
11754 assert!(
11755 c.validate_descricao().is_ok(),
11756 "validate_descricao must accept descricao == \
11757 Some(\"Checkout flow.\") (the canonical one-line-prose \
11758 chart-description shape)",
11759 );
11760 }
11761
11762 #[test]
11763 fn descricao_projects_option_str_by_borrow() {
11764 // The by-borrow pin: [`Caixa::descricao`] returns
11765 // `Option<&str>` by borrow — the `&str` borrows the underlying
11766 // `String` storage of the `Option<String>` slot and the
11767 // accessor must not allocate a fresh `String` on every call.
11768 // Peer of the [`Caixa::licenca`] (6d5bc28) and
11769 // [`Caixa::repositorio`] (cc7332d) by-borrow pins on the peer
11770 // outer top-level [`Caixa`] `Option<&str>`-return axes, and of
11771 // the per-`:placement`
11772 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) by-
11773 // borrow pin on the peer per-M3-mesh-slot `Option<&str>`-
11774 // return axis, extended onto the third outer top-level
11775 // [`Caixa`] universal-axis `Option<&str>` shape — the
11776 // accessor's returned `&str` must borrow from `&self` (the
11777 // returned reference's lifetime is tied to `&self`), and
11778 // calling the accessor twice on the same [`Caixa`] must yield
11779 // the same `Option<&str>` verbatim (idempotent, no side
11780 // effects on `&self`).
11781 //
11782 // Pins against a future silent detour that returned an owned
11783 // `Option<String>` (which would type-check but silently
11784 // allocate on every call, breaking the zero-cost projection
11785 // every peer sibling accessor carries), or a one-arm-only
11786 // accessor that returned a saturating value on some sentinel
11787 // input (breaking the pass-through invariant the sibling
11788 // required-scalar accessors carry).
11789 for descricao in [
11790 None,
11791 Some(""),
11792 Some("Checkout flow."),
11793 Some("Canonical Rust→wasm32-wasip2 caixa Servico."),
11794 ] {
11795 let c = caixa_with_descricao(descricao);
11796 let first = c.descricao();
11797 let second = c.descricao();
11798 assert_eq!(
11799 first, second,
11800 "Caixa::descricao must be idempotent — two successive \
11801 calls on the same &self must return the same \
11802 Option<&str>",
11803 );
11804 assert_eq!(
11805 first, descricao,
11806 "Caixa::descricao must return :descricao verbatim by \
11807 borrow — got {first:?}, expected {descricao:?}",
11808 );
11809 }
11810 }
11811
11812 // ── validate_edicao — universal-axis language-edition shape ──
11813
11814 fn caixa_with_edicao(edicao: Option<&str>) -> Caixa {
11815 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
11816 c.edicao = edicao.map(String::from);
11817 c
11818 }
11819
11820 #[test]
11821 fn validate_edicao_accepts_none() {
11822 // The omit-the-slot identity: `:edicao` is optional. The
11823 // gate is a no-op when the author didn't declare a value —
11824 // every caixa without an `:edicao` line trivially passes,
11825 // and the substrate-side build pipeline falls back to the
11826 // documented default edition. Mirrors the peer
11827 // `validate_licenca_accepts_none` posture on the sibling
11828 // `Option<String>` Caixa slot.
11829 let c = caixa_with_edicao(None);
11830 c.validate_edicao().unwrap();
11831 }
11832
11833 #[test]
11834 fn validate_edicao_accepts_canonical_value() {
11835 // Positive control: the canonical `"2026"` edition every
11836 // existing renderer-side fixture (`caixa-helm`, `caixa-flux`,
11837 // `caixa-mesh`) carries by construction passes the gate.
11838 // Future-introduced sibling editions (`"2027"`, `"2030"`,
11839 // `"2049"`) that match the same 4-digit ASCII decimal year
11840 // shape must also trivially pass — the structural shape
11841 // predicate accepts every well-formed year regardless of
11842 // whether the substrate yet understands the specific value
11843 // (a future known-edition allowlist tightens that).
11844 for ed in ["2026", "2027", "2030", "2049"] {
11845 let c = caixa_with_edicao(Some(ed));
11846 c.validate_edicao()
11847 .unwrap_or_else(|err| panic!("canonical {ed:?} must pass: {err:?}"));
11848 }
11849 }
11850
11851 #[test]
11852 fn validate_edicao_rejects_empty_some() {
11853 // Canonical paste-from-blank-doc footgun. Without this gate
11854 // the empty `Some("")` silently lands as `(:edicao "")` in
11855 // the rendered caixa.lisp and a future renderer-side
11856 // consumer's `Option::unwrap_or_else` (which only fires on
11857 // `None`) skips its fallback. Mirrors the peer
11858 // [`ManifestError::LicencaEmpty`] empty-arm on the sibling
11859 // `Option<String>` Caixa slot.
11860 let c = caixa_with_edicao(Some(""));
11861 let err = c.validate_edicao().unwrap_err();
11862 assert!(matches!(err, ManifestError::EdicaoEmpty), "got {err:?}",);
11863 }
11864
11865 #[test]
11866 fn validate_edicao_rejects_free_form_non_year() {
11867 // Free-form non-year footgun: the bare `"x"` / `"latest"` /
11868 // `"nightly"` shapes carry no operational meaning on the
11869 // substrate's build-time edition selector. Until this gate
11870 // landed the bare empty-arm check let every such value
11871 // through and broke far from the source caixa.lisp. Peer
11872 // with the shape-predicate cascade
11873 // `validate_repositorio_rejects_missing_colon_separator`
11874 // establishes past its own empty arm.
11875 for ed in ["x", "latest", "nightly", "stable"] {
11876 let c = caixa_with_edicao(Some(ed));
11877 let err = c.validate_edicao().unwrap_err();
11878 assert!(
11879 matches!(err, ManifestError::EdicaoInvalid { .. }),
11880 "expected EdicaoInvalid on {ed:?}, got {err:?}",
11881 );
11882 }
11883 }
11884
11885 #[test]
11886 fn validate_edicao_rejects_trailing_whitespace() {
11887 // Paste-from-doc whitespace footgun. A trailing space in
11888 // the `:edicao` value would silently break the substrate's
11889 // build-time edition match-table lookup at the rendered
11890 // artifact's edition-selector consumer. The shape predicate
11891 // refuses every whitespace byte by construction (any byte
11892 // outside `0-9` fails `is_ascii_digit`). Peer with
11893 // `validate_repositorio_rejects_whitespace`.
11894 let c = caixa_with_edicao(Some("2026 "));
11895 let err = c.validate_edicao().unwrap_err();
11896 let ManifestError::EdicaoInvalid { edicao, .. } = err else {
11897 panic!("expected EdicaoInvalid, got {err:?}");
11898 };
11899 assert_eq!(edicao, "2026 ");
11900 }
11901
11902 #[test]
11903 fn validate_edicao_rejects_leading_whitespace() {
11904 // Symmetric paste-from-doc whitespace footgun on the leading
11905 // boundary — the gate refuses every shape with a non-digit
11906 // byte by construction.
11907 let c = caixa_with_edicao(Some(" 2026"));
11908 let err = c.validate_edicao().unwrap_err();
11909 assert!(
11910 matches!(err, ManifestError::EdicaoInvalid { .. }),
11911 "got {err:?}",
11912 );
11913 }
11914
11915 #[test]
11916 fn validate_edicao_rejects_control_char() {
11917 // Paste-from-multiline-doc CRLF footgun — control characters
11918 // at the value boundary break the substrate's build-time
11919 // edition-selector parser. Peer with
11920 // `validate_repositorio_rejects_control_char`.
11921 let c = caixa_with_edicao(Some("2026\n"));
11922 let err = c.validate_edicao().unwrap_err();
11923 assert!(
11924 matches!(err, ManifestError::EdicaoInvalid { .. }),
11925 "got {err:?}",
11926 );
11927 }
11928
11929 #[test]
11930 fn validate_edicao_rejects_non_ascii_lookalike() {
11931 // Fullwidth-keyboard look-alike footgun — `"2026"` is
11932 // the U+FF12 U+FF10 U+FF12 U+FF16 sequence (CJK fullwidth
11933 // digits), 4 codepoints but 12 UTF-8 bytes; the substrate's
11934 // edition selector wants an ASCII year, and the gate
11935 // refuses every non-ASCII shape by construction (length in
11936 // bytes is 12 ≠ 4, *and* every byte falls outside
11937 // `is_ascii_digit`'s `0-9` range).
11938 let c = caixa_with_edicao(Some("2026"));
11939 let err = c.validate_edicao().unwrap_err();
11940 assert!(
11941 matches!(err, ManifestError::EdicaoInvalid { .. }),
11942 "got {err:?}",
11943 );
11944 }
11945
11946 #[test]
11947 fn validate_edicao_rejects_version_tag_prefix() {
11948 // Common version-tag idiom footgun — `"v2026"` / `"e2026"`
11949 // / `"r2026"` are familiar shapes from git-tag / Rust
11950 // edition / release-tag conventions that don't apply to
11951 // the year-shaped edition axis. The shape predicate refuses
11952 // every leading non-digit prefix.
11953 for ed in ["v2026", "e2026", "r2026"] {
11954 let c = caixa_with_edicao(Some(ed));
11955 let err = c.validate_edicao().unwrap_err();
11956 assert!(
11957 matches!(err, ManifestError::EdicaoInvalid { .. }),
11958 "expected EdicaoInvalid on {ed:?}, got {err:?}",
11959 );
11960 }
11961 }
11962
11963 #[test]
11964 fn validate_edicao_rejects_decimal_shape() {
11965 // Decimal-shaped pseudo-version footgun — `"2026.1"` /
11966 // `"2026.0"` are familiar shapes from semver / float
11967 // conventions that don't apply to the year-shaped edition
11968 // axis. The shape predicate refuses every non-digit byte
11969 // (`.` falls outside `is_ascii_digit`).
11970 for ed in ["2026.1", "2026.0", "2026.0.1"] {
11971 let c = caixa_with_edicao(Some(ed));
11972 let err = c.validate_edicao().unwrap_err();
11973 assert!(
11974 matches!(err, ManifestError::EdicaoInvalid { .. }),
11975 "expected EdicaoInvalid on {ed:?}, got {err:?}",
11976 );
11977 }
11978 }
11979
11980 #[test]
11981 fn validate_edicao_rejects_wrong_length_numeric() {
11982 // Wrong-length numeric footgun — `"26"` (truncated) /
11983 // `"202"` (truncated) / `"20260"` (extra digit) / `"00026"`
11984 // (zero-padded too wide) all parse as integers but don't
11985 // name a 4-digit year. The shape predicate refuses every
11986 // value whose length isn't exactly 4 bytes.
11987 for ed in ["26", "202", "20260", "00026", "9"] {
11988 let c = caixa_with_edicao(Some(ed));
11989 let err = c.validate_edicao().unwrap_err();
11990 assert!(
11991 matches!(err, ManifestError::EdicaoInvalid { .. }),
11992 "expected EdicaoInvalid on {ed:?}, got {err:?}",
11993 );
11994 }
11995 }
11996
11997 #[test]
11998 fn validate_edicao_empty_takes_precedence_over_shape() {
11999 // Empty-first cascade pin: the empty `Some("")` surfaces
12000 // the narrower `EdicaoEmpty` not the shape-predicate-
12001 // wrapped `EdicaoInvalid`, mirroring the peer
12002 // `validate_repositorio_empty_takes_precedence_over_shape`
12003 // (`RepositorioEmpty` → `RepositorioInvalid`),
12004 // `NomeEmpty` → `NomeInvalid`, `VersaoEmpty` →
12005 // `VersaoInvalid`, `FonteRepoEmpty` → `FonteRepoInvalid`
12006 // cascades. The shape predicate also refuses the empty
12007 // input (defensively — `s.len() != 4`), but the
12008 // manifest-layer empty arm runs first to surface the
12009 // narrower diagnostic verbatim.
12010 let c = caixa_with_edicao(Some(""));
12011 let err = c.validate_edicao().unwrap_err();
12012 assert!(matches!(err, ManifestError::EdicaoEmpty), "got {err:?}",);
12013 }
12014
12015 #[test]
12016 fn validate_edicao_template_passes() {
12017 // Round-trip pin: the bare `Caixa::template` shape (which
12018 // carries `:edicao "2026"` verbatim) passes the gate by
12019 // construction. A future template-shape change that
12020 // introduced `(:edicao "")` or a non-year value would
12021 // surface here as a regression. Mirrors the peer
12022 // `validate_licenca_template_passes` pin.
12023 let c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
12024 c.validate_edicao().unwrap();
12025 }
12026
12027 #[test]
12028 fn validate_edicao_diagnostic_names_offending_slot() {
12029 // Diagnostic-shape pin (peer with
12030 // `validate_licenca_diagnostic_names_offending_slot`): the
12031 // error's Display surfaces the `:edicao` slot name verbatim,
12032 // so a `feira lint` run can render the diagnostic without
12033 // re-parsing and the author can grep their caixa.lisp for
12034 // the offending `:edicao` line.
12035 let c = caixa_with_edicao(Some(""));
12036 let rendered = c.validate_edicao().unwrap_err().to_string();
12037 assert!(
12038 rendered.contains(":edicao"),
12039 "diagnostic must name the offending slot: {rendered}",
12040 );
12041 }
12042
12043 #[test]
12044 fn validate_edicao_invalid_diagnostic_carries_offending_value() {
12045 // Diagnostic-shape pin on the shape-predicate arm (peer
12046 // with `validate_repositorio_diagnostic_carries_offending_value`):
12047 // the error's Display surfaces the offending value + slot
12048 // name verbatim, so a `feira lint` run can render the
12049 // diagnostic without re-parsing and the author can grep
12050 // their caixa.lisp for the offending `:edicao` value.
12051 let c = caixa_with_edicao(Some("v2026"));
12052 let rendered = c.validate_edicao().unwrap_err().to_string();
12053 assert!(
12054 rendered.contains(":edicao"),
12055 "diagnostic must name the offending slot: {rendered}",
12056 );
12057 assert!(
12058 rendered.contains("v2026"),
12059 "diagnostic must quote the offending value: {rendered}",
12060 );
12061 }
12062
12063 // ── Caixa::edicao — outer top-level Option<&str> scalar accessor ──
12064
12065 #[test]
12066 fn edicao_returns_edicao_byte_string_verbatim_across_permutations() {
12067 // The canonical per-`Caixa` `:edicao` language-edition scalar
12068 // pin: [`Caixa::edicao`] must return the `:edicao` typed
12069 // byte-string verbatim as an `Option<&str>`, byte-equal to the
12070 // raw `self.edicao.as_deref()` access across every representative
12071 // value in the accept-set — `None` (the "omit the slot to defer
12072 // to the substrate's default edition" arm every existing
12073 // [`caixa-resolver`] fixture without an `:edicao` line carries),
12074 // `Some("")` (a past-the-guard sentinel that pins the accessor
12075 // doesn't perform a silent `Some("") → None` collapse on the
12076 // empty arm — validate rejects `Some("")` through `EdicaoEmpty`
12077 // but the accessor must ship the raw slot verbatim so a
12078 // validate-time gate regression surfaces at any future edition-
12079 // aware consumer's boundary rather than being silently absorbed
12080 // into the substrate's default edition), `Some("2026")` (the
12081 // canonical 4-digit-ASCII-decimal-year shape every `feira init`
12082 // template scaffolds via [`Caixa::template`] and every
12083 // renderer-side fixture at `caixa-helm/src/lib.rs:978` /
12084 // `caixa-flux/src/lib.rs:2319` / `caixa-mesh/src/lib.rs:3208`
12085 // carries by construction), `Some("2018")` / `Some("2021")` /
12086 // `Some("2024")` (canonical 4-digit-ASCII-decimal-year shapes
12087 // peer with Cargo's `[package] edition` grammar every future-
12088 // introduced sibling to `"2026"` will follow), and eight
12089 // past-the-guard sentinels for the `EdicaoInvalid` refusal cases
12090 // (`Some("2026 ")` trailing-whitespace, `Some(" 2026")` leading-
12091 // whitespace, `Some("2026\n")` embedded-LF, `Some("2026")`
12092 // fullwidth-non-ASCII-lookalike, `Some("v2026")` version-tag-
12093 // prefix, `Some("2026.1")` decimal-shape, `Some("26")` wrong-
12094 // length-numeric, `Some("latest")` free-form-non-year — the
12095 // sentinels pin the accessor doesn't silently absorb the
12096 // refusal cases into a substrate-default-edition fallback).
12097 //
12098 // Fourth and final outer top-level [`Caixa`] `Option<&str>`-
12099 // return scalar accessor pin on the substrate primitive —
12100 // sibling of the peer [`Caixa::licenca`] (6d5bc28),
12101 // [`Caixa::repositorio`] (cc7332d), and [`Caixa::descricao`]
12102 // (3f16e2f) pins that opened the "outer [`Caixa`]
12103 // `Option<&str>` scalar" projection pin pattern this pin folds
12104 // on. Sibling in shape to the peer per-`:placement`
12105 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) /
12106 // [`crate::aplicacao::Placement::affinity`] (74ec2d3) accessor
12107 // pins on the sibling per-M3-mesh-slot `Option<&str>`-return
12108 // axes, extended onto the outer top-level [`Caixa`] universal-
12109 // axis surface's last unlifted `Option<String>` slot. Pins
12110 // against a future silent detour that returned an owned
12111 // `Option<String>` (which would type-check but silently
12112 // allocate on every accessor call, breaking the zero-cost
12113 // projection every peer sibling accessor carries), a
12114 // `Some("") → None` collapse (which would silently absorb the
12115 // `EdicaoEmpty` refusal case at the accessor boundary and any
12116 // future edition-aware consumer would silently fall back to
12117 // the substrate's default edition on a struct-literal
12118 // `Caixa { edicao: Some(""), .. }`), or a
12119 // `None → Some("2026")` collapse (which would silently reify
12120 // the substrate's default edition at the accessor boundary
12121 // and every downstream consumer keying off the
12122 // `Option::is_none()` discriminator would lose the "author
12123 // omitted the slot" signal).
12124 for edicao in [
12125 None,
12126 Some(""),
12127 Some("2026"),
12128 Some("2018"),
12129 Some("2021"),
12130 Some("2024"),
12131 Some("2026 "),
12132 Some(" 2026"),
12133 Some("2026\n"),
12134 Some("2026"),
12135 Some("v2026"),
12136 Some("2026.1"),
12137 Some("26"),
12138 Some("latest"),
12139 ] {
12140 let c = caixa_with_edicao(edicao);
12141 assert_eq!(
12142 c.edicao(),
12143 edicao,
12144 "Caixa::edicao must return :edicao verbatim (got {:?}, \
12145 expected {edicao:?})",
12146 c.edicao(),
12147 );
12148 assert_eq!(
12149 c.edicao(),
12150 c.edicao.as_deref(),
12151 "Caixa::edicao must byte-equal the raw \
12152 `self.edicao.as_deref()` field access across every \
12153 value in the Option<&str> accept-set",
12154 );
12155 }
12156 }
12157
12158 #[test]
12159 fn validate_edicao_empty_arm_routes_through_accessor() {
12160 // Composition pin: [`Caixa::validate_edicao`]'s empty-arm gate
12161 // must key off [`Caixa::edicao`], not the raw
12162 // `self.edicao.as_deref()` field access. Structurally: a
12163 // `Caixa { edicao: Some(""), .. }` must surface the
12164 // `EdicaoEmpty` refusal exactly, and a
12165 // `Caixa { edicao: Some("2026"), .. }` (the canonical
12166 // 4-digit-ASCII-decimal-year form) must pass validate. The
12167 // pair jointly pins the accessor + validate-gate composition:
12168 // any future silent detour that had the accessor return `None`
12169 // on the empty arm (a `.filter(|s| !s.is_empty())` collapse)
12170 // would silently absorb the `EdicaoEmpty` refusal at the
12171 // accessor boundary and the validate gate would accept a
12172 // struct-literal `Caixa { edicao: Some(""), .. }` — the
12173 // composition pin catches that at caixa-core build time.
12174 //
12175 // Peer of the [`Caixa::licenca`] (6d5bc28)
12176 // `validate_licenca_empty_arm_routes_through_accessor`,
12177 // [`Caixa::repositorio`] (cc7332d)
12178 // `validate_repositorio_empty_arm_routes_through_accessor`,
12179 // and [`Caixa::descricao`] (3f16e2f)
12180 // `validate_descricao_empty_arm_routes_through_accessor`
12181 // composition pins on the sibling outer top-level [`Caixa`]
12182 // `Option<&str>` universal-axis surface — same "the validate /
12183 // shape-gate predicate must route through the substrate-
12184 // primitive typed dispatch" discipline extended onto the
12185 // fourth and final outer top-level [`Caixa`] universal-axis
12186 // `Option<&str>`-composition surface, closing the accessor-
12187 // composition family.
12188 let c = caixa_with_edicao(Some(""));
12189 assert!(
12190 matches!(c.validate_edicao(), Err(ManifestError::EdicaoEmpty)),
12191 "validate_edicao must reject edicao == Some(\"\") with \
12192 EdicaoEmpty — the accessor and the validate gate must \
12193 route through the same substrate-primitive typed dispatch \
12194 on the :edicao empty arm",
12195 );
12196 let c = caixa_with_edicao(Some("2026"));
12197 assert!(
12198 c.validate_edicao().is_ok(),
12199 "validate_edicao must accept edicao == Some(\"2026\") \
12200 (the canonical 4-digit-ASCII-decimal-year shape)",
12201 );
12202 }
12203
12204 #[test]
12205 fn edicao_projects_option_str_by_borrow() {
12206 // The by-borrow pin: [`Caixa::edicao`] returns
12207 // `Option<&str>` by borrow — the `&str` borrows the underlying
12208 // `String` storage of the `Option<String>` slot and the
12209 // accessor must not allocate a fresh `String` on every call.
12210 // Peer of the [`Caixa::licenca`] (6d5bc28),
12211 // [`Caixa::repositorio`] (cc7332d), and [`Caixa::descricao`]
12212 // (3f16e2f) by-borrow pins on the peer outer top-level
12213 // [`Caixa`] `Option<&str>`-return axes, and of the
12214 // per-`:placement`
12215 // [`crate::aplicacao::Placement::shard_key`] (7cd2a28) by-
12216 // borrow pin on the peer per-M3-mesh-slot `Option<&str>`-
12217 // return axis, extended onto the fourth and final outer top-
12218 // level [`Caixa`] universal-axis `Option<&str>` shape — the
12219 // accessor's returned `&str` must borrow from `&self` (the
12220 // returned reference's lifetime is tied to `&self`), and
12221 // calling the accessor twice on the same [`Caixa`] must yield
12222 // the same `Option<&str>` verbatim (idempotent, no side
12223 // effects on `&self`).
12224 //
12225 // Pins against a future silent detour that returned an owned
12226 // `Option<String>` (which would type-check but silently
12227 // allocate on every call, breaking the zero-cost projection
12228 // every peer sibling accessor carries), or a one-arm-only
12229 // accessor that returned a saturating value on some sentinel
12230 // input (breaking the pass-through invariant the sibling
12231 // required-scalar accessors carry).
12232 for edicao in [None, Some(""), Some("2026"), Some("2018")] {
12233 let c = caixa_with_edicao(edicao);
12234 let first = c.edicao();
12235 let second = c.edicao();
12236 assert_eq!(
12237 first, second,
12238 "Caixa::edicao must be idempotent — two successive \
12239 calls on the same &self must return the same \
12240 Option<&str>",
12241 );
12242 assert_eq!(
12243 first, edicao,
12244 "Caixa::edicao must return :edicao verbatim by \
12245 borrow — got {first:?}, expected {edicao:?}",
12246 );
12247 }
12248 }
12249
12250 #[test]
12251 fn nome_returns_nome_byte_string_verbatim_across_permutations() {
12252 // The canonical per-`Caixa` `:nome` universal-axis DNS-1123-
12253 // label caixa-identity scalar pin: [`Caixa::nome`] must return
12254 // the `:nome` typed `String` verbatim as `&str`, byte-equal to
12255 // the raw field access across every representative value in
12256 // the accept-set — the canonical `"demo"` template baseline
12257 // (the same `feira init`-scaffolded default the sibling
12258 // `validate_nome_accepts_canonical_template` positive-control
12259 // gate pins), plus every sibling per-typed-slot atom accessor's
12260 // canonical positive-arm byte-string (`"catalog"` per
12261 // [`crate::aplicacao::Membro::nome`], `"cart"` per the peer
12262 // per-`:contratos` `:de`, `"hello-rio"` per the canonical
12263 // `caixa-helm`/`caixa-flux` cross-crate integration-test
12264 // fixture, `"checkout"` per the M3 mesh-slot Aplicacao
12265 // canonical example), plus every past-the-guard sentinel for
12266 // the `NomeEmpty` / `NomeInvalid` / `NomeChartNameBudgetExceeded`
12267 // refusal cases (`""`, `"Bad_Name"`, `"a"` × 56 — 56 bytes fits
12268 // the bare DNS-1123 63-byte cap but overflows the joint
12269 // `lareira-<nome>` chart-name budget the sibling
12270 // [`Caixa::validate_nome_chart_name_budget`] gate closes on).
12271 //
12272 // The past-the-guard sentinels pin the accessor doesn't
12273 // silently absorb the refusal cases into a template-derived
12274 // fallback (a future `.nome().is_empty().then(|| "demo")`
12275 // collapse would silently absorb the `NomeEmpty` refusal at
12276 // the accessor boundary and the validate gate would accept a
12277 // struct-literal `Caixa { nome: "".into(), .. }` — the pin
12278 // catches that at caixa-core build time).
12279 //
12280 // First outer top-level [`Caixa`] `&str`-return required-
12281 // scalar accessor pin — opens the "outer [`Caixa`] `&str`
12282 // required-scalar" projection pattern the sibling per-`Caixa`
12283 // `:versao` future lift folds on. Sibling in shape to the peer
12284 // per-`:membros` [`crate::aplicacao::Membro::nome`] (4a32abf)
12285 // required-`String`-carry accessor pin on the sibling per-
12286 // sub-struct required-axis, extended onto the outer top-level
12287 // [`Caixa`] universal-axis required-`String`-carry axis.
12288 for nome in [
12289 "demo",
12290 "catalog",
12291 "cart",
12292 "hello-rio",
12293 "checkout",
12294 "",
12295 "Bad_Name",
12296 "aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa",
12297 ] {
12298 let c = caixa_with_nome(nome);
12299 assert_eq!(
12300 c.nome(),
12301 nome,
12302 "Caixa::nome must return :nome verbatim (got {}, \
12303 expected {nome})",
12304 c.nome(),
12305 );
12306 assert_eq!(
12307 c.nome(),
12308 c.nome.as_str(),
12309 "Caixa::nome must byte-equal the raw .nome field \
12310 access across every value in the String accept-set",
12311 );
12312 }
12313 }
12314
12315 #[test]
12316 fn validate_nome_empty_arm_routes_through_accessor() {
12317 // Composition pin: [`Caixa::validate_nome`]'s empty-arm must
12318 // key off [`Caixa::nome`], not the raw `.nome` field access.
12319 // Structurally: a `Caixa { nome: "".into(), .. }` must surface
12320 // the `NomeEmpty` refusal exactly, and the canonical `"demo"`
12321 // template baseline (the peer positive-arm the sibling
12322 // `validate_nome_accepts_canonical_template` gate carves out)
12323 // must pass validate. The pair jointly pins the accessor +
12324 // validate-gate composition: any future silent detour that
12325 // had the accessor return a fresh `"demo"` on the empty arm
12326 // (a `.nome().is_empty().then(|| "demo")` fallback collapse)
12327 // would silently absorb the `NomeEmpty` refusal at the
12328 // accessor boundary and the validate gate would accept a
12329 // struct-literal `Caixa { nome: "".into(), .. }` — the
12330 // composition pin catches that at caixa-core build time.
12331 //
12332 // Peer of the sibling per-`Caixa`
12333 // `validate_licenca_empty_arm_routes_through_accessor` (6d5bc28)
12334 // / `validate_repositorio_empty_arm_routes_through_accessor`
12335 // (cc7332d) / `validate_descricao_empty_arm_routes_through_accessor`
12336 // (3f16e2f) / `validate_edicao_empty_arm_routes_through_accessor`
12337 // (2641cbd) composition pins on the sibling outer top-level
12338 // [`Caixa`] `Option<&str>` axes — same "the validate /
12339 // shape-gate predicate must route through the substrate-
12340 // primitive typed dispatch" discipline extended onto the peer
12341 // outer top-level [`Caixa`] required-`&str` composition axis.
12342 let c = caixa_with_nome("");
12343 assert!(
12344 matches!(c.validate_nome(), Err(ManifestError::NomeEmpty)),
12345 "validate_nome must reject nome == \"\" with NomeEmpty — \
12346 the accessor and the validate gate must route through the \
12347 same substrate-primitive typed dispatch on the :nome \
12348 empty-arm",
12349 );
12350 let c = caixa_with_nome("demo");
12351 assert!(
12352 c.validate_nome().is_ok(),
12353 "validate_nome must accept nome == \"demo\" (the canonical \
12354 DNS-1123-label template baseline)",
12355 );
12356 }
12357
12358 #[test]
12359 fn nome_projects_str_by_borrow() {
12360 // The by-borrow pin: [`Caixa::nome`] returns `&str` by borrow
12361 // — the `&str` borrows the underlying `String` storage of the
12362 // required `nome` slot and the accessor must not allocate a
12363 // fresh `String` on every call. Peer of the [`Caixa::licenca`]
12364 // (6d5bc28) / [`Caixa::repositorio`] (cc7332d) /
12365 // [`Caixa::descricao`] (3f16e2f) / [`Caixa::edicao`] (2641cbd)
12366 // by-borrow pins on the peer outer top-level [`Caixa`]
12367 // `Option<&str>`-return axes, extended onto the first outer
12368 // top-level [`Caixa`] required-`&str`-return axis — the
12369 // accessor's returned `&str` must borrow from `&self` (the
12370 // returned reference's lifetime is tied to `&self`), and
12371 // calling the accessor twice on the same [`Caixa`] must yield
12372 // the same `&str` verbatim (idempotent, no side effects on
12373 // `&self`).
12374 //
12375 // Pins against a future silent detour that returned an owned
12376 // `String` (which would type-check but silently allocate on
12377 // every call, breaking the zero-cost projection every peer
12378 // sibling accessor carries), an accidental
12379 // `.nome.to_lowercase()` detour that returned a fresh
12380 // allocation through an already-DNS-1123-lowercase-only
12381 // string (breaking a future `const fn` regression), or a
12382 // one-arm-only accessor that returned a canonicalized value
12383 // on some sentinel input (breaking the pass-through invariant
12384 // the sibling required-scalar accessors carry).
12385 for nome in ["demo", "catalog", "hello-rio", "checkout"] {
12386 let c = caixa_with_nome(nome);
12387 let first = c.nome();
12388 let second = c.nome();
12389 assert_eq!(
12390 first, second,
12391 "Caixa::nome must be idempotent — two successive calls \
12392 on the same &self must return the same &str",
12393 );
12394 assert_eq!(
12395 first, nome,
12396 "Caixa::nome must return :nome verbatim by borrow — \
12397 got {first}, expected {nome}",
12398 );
12399 }
12400 }
12401
12402 #[test]
12403 fn versao_returns_versao_byte_string_verbatim_across_permutations() {
12404 // The canonical per-`Caixa` `:versao` universal-axis SemVer-2
12405 // pinned-version scalar pin: [`Caixa::versao`] must return the
12406 // `:versao` typed `String` verbatim as `&str`, byte-equal to the
12407 // raw `.versao` field access across every representative value
12408 // in the accept-set — the canonical `"0.1.0"` template baseline
12409 // (the same `feira init`-scaffolded default the sibling
12410 // `validate_versao_accepts_canonical_template` positive-control
12411 // gate pins), plus every canonical SemVer-2 shape the sibling
12412 // `validate_versao_accepts_canonical_forms` positive-arm sweep
12413 // covers (`"0.0.0"`, `"1.0.0"`, `"0.2.0-rc.1"`,
12414 // `"1.0.0-alpha.0"`, `"1.0.0+build.42"`, `"1.0.0-rc.1+build.42"`,
12415 // `"10.20.30"`), plus every past-the-guard sentinel for the
12416 // `VersaoEmpty` / `VersaoInvalid` refusal cases (`""` the empty
12417 // arm, `"v0.1.0"` the git-tag-shape-leak footgun, `"0.1"` the
12418 // missing-patch footgun, `"^0.1"` the requirement-shape-leak
12419 // footgun, `"0.1.0.0"` the four-part-Java-convention footgun,
12420 // `"latest"` the docker-tag-shape footgun — the sentinels pin
12421 // the accessor doesn't silently absorb the refusal cases into a
12422 // template-derived fallback like `"0.1.0"`).
12423 //
12424 // The past-the-guard sentinels pin the accessor doesn't silently
12425 // absorb the refusal cases into a template-derived fallback (a
12426 // future `.versao().is_empty().then(|| "0.1.0")` collapse would
12427 // silently absorb the `VersaoEmpty` refusal at the accessor
12428 // boundary and the validate gate would accept a struct-literal
12429 // `Caixa { versao: "".into(), .. }` — the pin catches that at
12430 // caixa-core build time).
12431 //
12432 // Second outer top-level [`Caixa`] `&str`-return required-scalar
12433 // accessor pin — folds on the "outer [`Caixa`] `&str` required-
12434 // scalar" projection pattern the sibling per-`Caixa`
12435 // [`Caixa::nome`] (e6b7d97) opened. Sibling in shape to the peer
12436 // per-`:membros` [`crate::aplicacao::Membro::versao_requirement`]
12437 // (4127bb6) / per-`:children`
12438 // [`crate::supervisor::ChildSpec::versao_requirement`] (2c053c8)
12439 // / per-`:upgrade-from`
12440 // [`crate::UpgradeFromEntry::prior_versao`] (75d27a8) per-sub-
12441 // struct `:versao`-shaped `&str`-return accessor pins on the
12442 // sibling per-typed-slot version-carrier axes, extended onto the
12443 // second outer top-level [`Caixa`] universal-axis required-
12444 // `String`-carry axis so the two universal-axis identity-
12445 // carrying scalars every `defcaixa` form supplies (`:nome` +
12446 // `:versao`) share the same "one typed dispatch per axis" pin
12447 // discipline.
12448 for versao in [
12449 "0.1.0",
12450 "0.0.0",
12451 "1.0.0",
12452 "0.2.0-rc.1",
12453 "1.0.0-alpha.0",
12454 "1.0.0+build.42",
12455 "1.0.0-rc.1+build.42",
12456 "10.20.30",
12457 "",
12458 "v0.1.0",
12459 "0.1",
12460 "^0.1",
12461 "0.1.0.0",
12462 "latest",
12463 ] {
12464 let c = caixa_with_versao(versao);
12465 assert_eq!(
12466 c.versao(),
12467 versao,
12468 "Caixa::versao must return :versao verbatim (got {}, \
12469 expected {versao})",
12470 c.versao(),
12471 );
12472 assert_eq!(
12473 c.versao(),
12474 c.versao.as_str(),
12475 "Caixa::versao must byte-equal the raw .versao field \
12476 access across every value in the String accept-set",
12477 );
12478 }
12479 }
12480
12481 #[test]
12482 fn validate_versao_empty_arm_routes_through_accessor() {
12483 // Composition pin: [`Caixa::validate_versao`]'s empty-arm gate
12484 // must key off [`Caixa::versao`], not the raw `.versao` field
12485 // access. Structurally: a `Caixa { versao: "".into(), .. }` must
12486 // surface the `VersaoEmpty` refusal exactly, and the canonical
12487 // `"0.1.0"` template baseline (the peer positive-arm the sibling
12488 // `validate_versao_accepts_canonical_template` gate carves out)
12489 // must pass validate. The pair jointly pins the accessor +
12490 // validate-gate composition: any future silent detour that had
12491 // the accessor return a fresh `"0.1.0"` on the empty arm
12492 // (a `.versao().is_empty().then(|| "0.1.0")` fallback collapse)
12493 // would silently absorb the `VersaoEmpty` refusal at the
12494 // accessor boundary and the validate gate would accept a
12495 // struct-literal `Caixa { versao: "".into(), .. }` — the
12496 // composition pin catches that at caixa-core build time.
12497 //
12498 // Peer of the sibling per-`Caixa`
12499 // `validate_nome_empty_arm_routes_through_accessor` (e6b7d97)
12500 // composition pin on the sibling outer top-level [`Caixa`]
12501 // required-`&str` universal-axis surface — same "the validate /
12502 // shape-gate predicate must route through the substrate-
12503 // primitive typed dispatch" discipline extended onto the peer
12504 // outer top-level [`Caixa`] required-`&str` universal-axis
12505 // pinned-version composition axis, closing the second
12506 // coordinate of the "one canonical typed dispatch per per-Caixa
12507 // required-`&str` universal-axis" discipline.
12508 let c = caixa_with_versao("");
12509 assert!(
12510 matches!(c.validate_versao(), Err(ManifestError::VersaoEmpty)),
12511 "validate_versao must reject versao == \"\" with VersaoEmpty — \
12512 the accessor and the validate gate must route through the \
12513 same substrate-primitive typed dispatch on the :versao \
12514 empty-arm",
12515 );
12516 let c = caixa_with_versao("0.1.0");
12517 assert!(
12518 c.validate_versao().is_ok(),
12519 "validate_versao must accept versao == \"0.1.0\" (the \
12520 canonical SemVer-2 template baseline)",
12521 );
12522 }
12523
12524 #[test]
12525 fn versao_projects_str_by_borrow() {
12526 // The by-borrow pin: [`Caixa::versao`] returns `&str` by borrow
12527 // — the `&str` borrows the underlying `String` storage of the
12528 // required `versao` slot and the accessor must not allocate a
12529 // fresh `String` on every call. Peer of the [`Caixa::nome`]
12530 // (e6b7d97) by-borrow pin on the sibling outer top-level
12531 // [`Caixa`] required-`&str`-return axis, extended onto the
12532 // second outer top-level [`Caixa`] required-`&str`-return
12533 // universal-axis pinned-version surface — the accessor's
12534 // returned `&str` must borrow from `&self` (the returned
12535 // reference's lifetime is tied to `&self`), and calling the
12536 // accessor twice on the same [`Caixa`] must yield the same
12537 // `&str` verbatim (idempotent, no side effects on `&self`).
12538 //
12539 // Pins against a future silent detour that returned an owned
12540 // `String` (which would type-check but silently allocate on
12541 // every call, breaking the zero-cost projection every peer
12542 // sibling accessor carries), an accidental
12543 // `semver::Version::parse(&self.versao).unwrap().to_string()`
12544 // detour that returned a canonicalized fresh allocation through
12545 // an already-canonical byte-string (breaking a future `const fn`
12546 // regression and silently absorbing the `VersaoInvalid` refusal
12547 // at the accessor boundary), or a one-arm-only accessor that
12548 // returned a canonicalized value on some sentinel input
12549 // (breaking the pass-through invariant the sibling required-
12550 // scalar accessors carry).
12551 for versao in ["0.1.0", "1.0.0", "0.2.0-rc.1", "1.0.0+build.42"] {
12552 let c = caixa_with_versao(versao);
12553 let first = c.versao();
12554 let second = c.versao();
12555 assert_eq!(
12556 first, second,
12557 "Caixa::versao must be idempotent — two successive \
12558 calls on the same &self must return the same &str",
12559 );
12560 assert_eq!(
12561 first, versao,
12562 "Caixa::versao must return :versao verbatim by borrow \
12563 — got {first}, expected {versao}",
12564 );
12565 }
12566 }
12567
12568 fn caixa_with_kind(kind: CaixaKind) -> Caixa {
12569 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
12570 c.kind = kind;
12571 c
12572 }
12573
12574 #[test]
12575 fn kind_returns_kind_variant_verbatim_across_permutations() {
12576 // The canonical per-`Caixa` `:kind` universal-axis closed-set-
12577 // enum discriminant pin: [`Caixa::kind`] must return the `:kind`
12578 // typed [`CaixaKind`] variant verbatim by `Copy`, byte-equal to
12579 // the raw `.kind` field access across every variant in the
12580 // closed accept-set (`Biblioteca` — the library kind that
12581 // exports lisp forms; `Binario` — the nix-built executable kind
12582 // under `exe/`; `Servico` — the wasm-component daemon kind
12583 // under `servicos/`; `Supervisor` — the OTP-shaped hierarchical
12584 // reconciliation kind; `Aplicacao` — the M3 typed-mesh
12585 // composition kind).
12586 //
12587 // Pins against a future silent detour that re-derived the kind
12588 // from a peer axis (an accidental fallback to
12589 // `if !servicos.is_empty() { Servico } else if
12590 // !membros.is_empty() { Aplicacao } else { Biblioteca }`
12591 // collapse that read the code-surface / mesh-slot columns into
12592 // the kind discriminator), a variant remap the operator
12593 // authors on one consumer without the other, or a stale-derive
12594 // detour that substituted [`CaixaKind::Biblioteca`] as the
12595 // default when the field held any other variant (which would
12596 // silently collapse the distinction between "author explicitly
12597 // declared `:kind Servico`" and "author declared any other
12598 // kind" every downstream renderer-dispatch site depends on).
12599 //
12600 // First outer top-level [`Caixa`] `Copy`-return required-enum-
12601 // discriminant accessor pin — opens the "outer [`Caixa`]
12602 // `Copy`-return required-discriminant" projection pattern.
12603 // Sibling in shape to the peer per-`:supervisor`
12604 // [`crate::supervisor::SupervisorSpec::estrategia`] (eafb619),
12605 // per-`:placement` [`crate::aplicacao::Placement::estrategia`]
12606 // (921fe1b), and per-`:children`
12607 // [`crate::supervisor::ChildSpec::restart`] (dfb4a81)
12608 // `Copy`-return closed-set-enum discriminant accessor pins on
12609 // the sibling nested-spec typed-slot discriminator axes,
12610 // extended here to the outer top-level [`Caixa`] universal-
12611 // axis surface.
12612 for kind in [
12613 CaixaKind::Biblioteca,
12614 CaixaKind::Binario,
12615 CaixaKind::Servico,
12616 CaixaKind::Supervisor,
12617 CaixaKind::Aplicacao,
12618 ] {
12619 let c = caixa_with_kind(kind);
12620 assert_eq!(
12621 c.kind(),
12622 kind,
12623 "Caixa::kind must return :kind verbatim (got {:?}, \
12624 expected {kind:?})",
12625 c.kind(),
12626 );
12627 assert_eq!(
12628 c.kind(),
12629 c.kind,
12630 "Caixa::kind accessor and .kind field access must \
12631 byte-equal — the accessor is the substrate-primitive \
12632 typed dispatch every downstream kind-gate consumer \
12633 must route through",
12634 );
12635 }
12636 }
12637
12638 #[test]
12639 fn require_kind_reads_through_lifted_kind_accessor() {
12640 // Two-consumer coherence pin: the [`crate::render::require_kind`]
12641 // entry-gate predicate (the canonical two-line
12642 // `require_kind(caixa, Servico)?` prelude every per-Servico /
12643 // per-Aplicacao renderer runs at its entry-point) and the
12644 // sibling [`crate::render::KindMismatch`] error carrier's
12645 // `actual:` field (which names the offending caixa's variant
12646 // in the diagnostic) must both key off the lifted accessor, so
12647 // any future rebrand on the typed slot's reader shape lands at
12648 // exactly one place. Pins the two-site coherence by exercising
12649 // every off-diagonal `(actual, expected)` pair across the
12650 // closed accept-set — the `KindMismatch { actual, expected }`
12651 // surfaced on the mismatch arm must byte-equal the pair the
12652 // accessor returns for each side.
12653 //
12654 // Peer of the sibling per-`:placement`
12655 // `validate_placement_reads_through_lifted_estrategia_accessor`
12656 // (921fe1b) two-arm consumer-coherence pin on the M3 mesh-slot
12657 // `Copy`-return discriminant axis — same "the entry-gate
12658 // predicate and the error carrier's `actual:` field must route
12659 // through the substrate-primitive typed dispatch" discipline
12660 // extended onto the outer top-level [`Caixa`] universal-axis
12661 // discriminant surface.
12662 for expected in [
12663 CaixaKind::Biblioteca,
12664 CaixaKind::Binario,
12665 CaixaKind::Servico,
12666 CaixaKind::Supervisor,
12667 CaixaKind::Aplicacao,
12668 ] {
12669 for actual in [
12670 CaixaKind::Biblioteca,
12671 CaixaKind::Binario,
12672 CaixaKind::Servico,
12673 CaixaKind::Supervisor,
12674 CaixaKind::Aplicacao,
12675 ] {
12676 let c = caixa_with_kind(actual);
12677 let result = crate::render::require_kind(&c, expected);
12678 if expected == actual {
12679 assert!(
12680 result.is_ok(),
12681 "require_kind must accept when actual == expected \
12682 (actual={actual:?}, expected={expected:?})",
12683 );
12684 } else {
12685 let err = result.expect_err("require_kind must reject when actual != expected");
12686 assert_eq!(
12687 err.actual,
12688 c.kind(),
12689 "KindMismatch.actual must byte-equal Caixa::kind() \
12690 — the error carrier's `actual:` field reads \
12691 through the lifted accessor",
12692 );
12693 assert_eq!(
12694 err.expected, expected,
12695 "KindMismatch.expected must byte-equal the \
12696 expected variant passed to require_kind",
12697 );
12698 }
12699 }
12700 }
12701 }
12702
12703 #[test]
12704 fn aplicacao_view_kind_gate_routes_through_accessor() {
12705 // Composition pin: [`Caixa::aplicacao_view`]'s kind-gate arm
12706 // must key off [`Caixa::kind`], not the raw `.kind` field
12707 // access. Structurally: a `Caixa { kind: X, .. }` for any
12708 // non-`Aplicacao` variant must fold to `None` on the
12709 // `aplicacao_view` composer (the "kind mismatch → no typed
12710 // view" contract every downstream Aplicacao consumer keys off
12711 // via `?`), and a `Caixa { kind: Aplicacao, .. }` must fold to
12712 // `Some(_)`. The pair jointly pins the accessor + view-gate
12713 // composition: any future silent detour that had the accessor
12714 // return a fresh [`CaixaKind::Aplicacao`] on some sentinel
12715 // input would silently absorb the kind-mismatch case at the
12716 // accessor boundary and every per-Aplicacao renderer would
12717 // silently render a non-Aplicacao caixa's mesh slots — the
12718 // composition pin catches that at caixa-core build time.
12719 //
12720 // Peer of the sibling per-`Caixa`
12721 // `validate_nome_empty_arm_routes_through_accessor` (e6b7d97) /
12722 // `validate_versao_empty_arm_routes_through_accessor` (20c0539)
12723 // composition pins on the sibling outer top-level [`Caixa`]
12724 // required-`&str` universal-axis surfaces — same "the
12725 // composer / validate gate must route through the substrate-
12726 // primitive typed dispatch" discipline extended onto the
12727 // outer top-level [`Caixa`] `Copy`-return required-
12728 // discriminant composition axis.
12729 for kind in [
12730 CaixaKind::Biblioteca,
12731 CaixaKind::Binario,
12732 CaixaKind::Servico,
12733 CaixaKind::Supervisor,
12734 ] {
12735 let c = caixa_with_kind(kind);
12736 assert!(
12737 c.aplicacao_view().is_none(),
12738 "aplicacao_view must return None on non-Aplicacao \
12739 kind {kind:?} — the composer's kind-gate must route \
12740 through Caixa::kind()",
12741 );
12742 }
12743 let c = caixa_with_kind(CaixaKind::Aplicacao);
12744 assert!(
12745 c.aplicacao_view().is_some(),
12746 "aplicacao_view must return Some on kind Aplicacao — \
12747 the composer's kind-gate must accept the matching arm \
12748 through Caixa::kind()",
12749 );
12750 }
12751
12752 #[test]
12753 fn supervisor_view_kind_gate_routes_through_accessor() {
12754 // Composition pin (mirror of the sibling
12755 // `aplicacao_view_kind_gate_routes_through_accessor` on the
12756 // second `_view` composer): [`Caixa::supervisor_view`]'s kind-
12757 // gate arm must key off [`Caixa::kind`], not the raw `.kind`
12758 // field access. A `Caixa { kind: X, .. }` for any non-
12759 // `Supervisor` variant must fold to `None` on the
12760 // `supervisor_view` composer, and a `Caixa { kind:
12761 // Supervisor, .. }` must fold to `Some(_)`. Same peer
12762 // composition pin discipline on the second `_view` composer
12763 // axis.
12764 for kind in [
12765 CaixaKind::Biblioteca,
12766 CaixaKind::Binario,
12767 CaixaKind::Servico,
12768 CaixaKind::Aplicacao,
12769 ] {
12770 let c = caixa_with_kind(kind);
12771 assert!(
12772 c.supervisor_view().is_none(),
12773 "supervisor_view must return None on non-Supervisor \
12774 kind {kind:?} — the composer's kind-gate must route \
12775 through Caixa::kind()",
12776 );
12777 }
12778 let mut c = caixa_with_kind(CaixaKind::Supervisor);
12779 // A Supervisor caixa needs a strategy + at least one child to
12780 // fold to a Some(_) that also validates; the composer itself
12781 // requires only the kind arm, so bare kind flip is enough to
12782 // pin the `Some(_)` return, but we populate the minimum
12783 // supervisor shape so a future strengthening of the composer
12784 // to reject an empty spec doesn't false-positive this pin.
12785 c.estrategia = Some(crate::supervisor::RestartStrategy::OneForOne);
12786 c.children = vec![crate::supervisor::ChildSpec {
12787 caixa: "child".into(),
12788 versao: "^0.1".into(),
12789 restart: crate::supervisor::RestartPolicy::Permanent,
12790 }];
12791 assert!(
12792 c.supervisor_view().is_some(),
12793 "supervisor_view must return Some on kind Supervisor — \
12794 the composer's kind-gate must accept the matching arm \
12795 through Caixa::kind()",
12796 );
12797 }
12798
12799 #[test]
12800 fn kind_projects_by_copy() {
12801 // The by-`Copy` pin: [`Caixa::kind`] returns a fresh
12802 // [`CaixaKind`] by `Copy` — the accessor must not borrow from
12803 // `&self` (the returned value is owned, `Copy`-projected from
12804 // the underlying [`CaixaKind`] storage; two calls on the same
12805 // [`Caixa`] must yield byte-equal values). Peer of the peer
12806 // per-`:placement` `Placement::estrategia` / per-`:supervisor`
12807 // `SupervisorSpec::estrategia` / per-`:children`
12808 // `ChildSpec::restart` `Copy`-return discriminant accessor
12809 // pins on the sibling nested-spec typed-slot discriminator
12810 // axes, extended onto the first outer top-level [`Caixa`]
12811 // required-`Copy`-return axis — pins against a future silent
12812 // detour that returned `&CaixaKind` (which would type-check
12813 // but silently constrain every consumer's callsite to a
12814 // borrow-shaped dispatch, breaking the zero-cost `Copy`
12815 // projection every peer sibling accessor carries).
12816 for kind in [
12817 CaixaKind::Biblioteca,
12818 CaixaKind::Binario,
12819 CaixaKind::Servico,
12820 CaixaKind::Supervisor,
12821 CaixaKind::Aplicacao,
12822 ] {
12823 let c = caixa_with_kind(kind);
12824 let first: CaixaKind = c.kind();
12825 let second: CaixaKind = c.kind();
12826 assert_eq!(
12827 first, second,
12828 "Caixa::kind must be idempotent — two successive \
12829 calls on the same &self must return the same \
12830 CaixaKind variant",
12831 );
12832 assert_eq!(
12833 first, kind,
12834 "Caixa::kind must return :kind verbatim by Copy — \
12835 got {first:?}, expected {kind:?}",
12836 );
12837 }
12838 }
12839
12840 // ── Caixa::autores — outer top-level &[T] slice accessor ──────────
12841
12842 #[test]
12843 fn autores_returns_autores_slice_verbatim_across_permutations() {
12844 // The canonical per-`Caixa` `:autores` universal-axis maintainer-
12845 // name-list slice pin: [`Caixa::autores`] must return the
12846 // `:autores` typed [`Vec<String>`] list verbatim as a
12847 // `&[String]`, byte-equal to the raw `self.autores.as_slice()`
12848 // access across every representative value in the accept-set —
12849 // `[]` (the "no maintainers declared" arm every existing
12850 // fixture without an `:autores` line carries), `[""]` (a past-
12851 // the-guard sentinel that pins the accessor doesn't perform a
12852 // silent `[""] → []` collapse on the empty-entry arm — validate
12853 // rejects `[""]` through `AutorEmpty` but the accessor must
12854 // ship the raw slot verbatim so a validate-time gate regression
12855 // surfaces at the caixa-helm emit boundary rather than being
12856 // silently absorbed into a maintainer-drop), `["pleme-io"]` (the
12857 // canonical single-maintainer form every `feira init` template
12858 // scaffolds), `["alice", "bob"]` (a canonical multi-maintainer
12859 // form), `["alice <alice@example.com>", "bob <bob@example.com>"]`
12860 // (the canonical RFC-5322 `<name> <email>` form the
12861 // `is_chart_maintainer_name_shape` predicate accepts), and
12862 // `["pleme-io", "pleme-io"]` (a past-the-guard duplicate
12863 // sentinel — validate rejects through `AutorDuplicate` but the
12864 // accessor must ship the raw slot verbatim).
12865 //
12866 // First outer top-level [`Caixa`] `&[T]`-return slice accessor
12867 // pin on the substrate primitive — opens the "outer [`Caixa`]
12868 // `&[T]` slice" projection pattern the sibling per-`Caixa`
12869 // `:etiquetas` / `:deps` / `:deps-dev` / `:exe` / `:bibliotecas`
12870 // / `:servicos` / `:upgrade-from` / `:children` future lifts
12871 // fold on. Sibling in shape to the peer per-`:supervisor`
12872 // [`crate::supervisor::SupervisorSpec::children`] (bc92bce),
12873 // per-`:placement` [`crate::aplicacao::Placement::clusters`]
12874 // (a6e18d7), per-`:membros`
12875 // [`crate::aplicacao::AplicacaoSpec::membros`] (6c77e36),
12876 // per-`:contratos` [`crate::aplicacao::AplicacaoSpec::contratos`]
12877 // (0dcc926), and per-`:upgrade-from :instructions`
12878 // [`crate::upgrade::UpgradeFromEntry::instructions`] (0137e5a)
12879 // `&[T]`-return slice accessor pins on the sibling per-M2 /
12880 // per-M3 typed-slot list axes, extended onto the outer top-
12881 // level [`Caixa`] universal-axis surface. Pins against a future
12882 // silent detour that returned an owned `Vec<String>` (which
12883 // would type-check but silently clone on every accessor call,
12884 // breaking the zero-cost projection every peer sibling slice
12885 // accessor carries), a `[""] → []` collapse (which would
12886 // silently absorb the `AutorEmpty` refusal case at the accessor
12887 // boundary), or a `["a", "a"] → ["a"]` dedup collapse (which
12888 // would silently absorb the `AutorDuplicate` refusal case at
12889 // the accessor boundary and the caixa-helm `maintainers:` fold
12890 // would silently render a dedupped list on a struct-literal
12891 // `Caixa { autores: vec!["a".into(), "a".into()], .. }`).
12892 for autores in [
12893 vec![],
12894 vec![""],
12895 vec!["pleme-io"],
12896 vec!["alice", "bob"],
12897 vec!["alice <alice@example.com>", "bob <bob@example.com>"],
12898 vec!["pleme-io", "pleme-io"],
12899 ] {
12900 let c = caixa_with_autores(autores.clone());
12901 let expected: Vec<String> = autores.iter().map(|s| (*s).to_string()).collect();
12902 assert_eq!(
12903 c.autores(),
12904 expected.as_slice(),
12905 "Caixa::autores must return :autores verbatim (got {:?}, \
12906 expected {expected:?})",
12907 c.autores(),
12908 );
12909 assert_eq!(
12910 c.autores(),
12911 c.autores.as_slice(),
12912 "Caixa::autores must byte-equal the raw \
12913 `self.autores.as_slice()` field access across every \
12914 value in the Vec<String> accept-set",
12915 );
12916 }
12917 }
12918
12919 #[test]
12920 fn validate_autores_empty_entry_arm_routes_through_accessor() {
12921 // Composition pin: [`Caixa::validate_autores`]'s per-entry
12922 // empty-arm gate must key off [`Caixa::autores`], not the raw
12923 // `&self.autores` field-borrow walk. Structurally: a
12924 // `Caixa { autores: vec!["".into()], .. }` must surface the
12925 // `AutorEmpty` refusal exactly, and a
12926 // `Caixa { autores: vec!["pleme-io".into()], .. }` (the
12927 // canonical single-maintainer form) must pass validate. The
12928 // pair jointly pins the accessor + validate-gate composition:
12929 // any future silent detour that had the accessor return an
12930 // empty slice on the `[""]` arm (a
12931 // `.iter().filter(|s| !s.is_empty()).collect()` collapse)
12932 // would silently absorb the `AutorEmpty` refusal at the
12933 // accessor boundary and the validate gate would accept a
12934 // struct-literal `Caixa { autores: vec!["".into()], .. }` —
12935 // the composition pin catches that at caixa-core build time.
12936 //
12937 // Peer of the per-`Caixa` [`Caixa::validate_licenca`] (6d5bc28)
12938 // accessor-composition pin
12939 // (`validate_licenca_empty_arm_routes_through_accessor`) on the
12940 // sibling `Option<&str>`-composition axis and the
12941 // per-`:politicas :circuit-breaker`
12942 // [`crate::aplicacao::CircuitBreaker::max_failures`] (3a74062)
12943 // accessor-composition pin
12944 // (`validate_politicas_max_failures_zero_floor_arm_routes_through_accessor`)
12945 // on the sibling required-`u32`-composition axis — same "the
12946 // validate / shape-gate predicate must route through the
12947 // substrate-primitive typed dispatch" discipline extended onto
12948 // the outer top-level [`Caixa`] universal-axis `&[T]`-
12949 // composition surface.
12950 let c = caixa_with_autores(vec![""]);
12951 assert!(
12952 matches!(c.validate_autores(), Err(ManifestError::AutorEmpty)),
12953 "validate_autores must reject autores == vec![\"\"] with \
12954 AutorEmpty — the accessor and the validate gate must \
12955 route through the same substrate-primitive typed dispatch \
12956 on the :autores per-entry empty arm",
12957 );
12958 let c = caixa_with_autores(vec!["pleme-io"]);
12959 assert!(
12960 c.validate_autores().is_ok(),
12961 "validate_autores must accept autores == vec![\"pleme-io\"] \
12962 (the canonical single-maintainer shape every `feira init` \
12963 template scaffolds)",
12964 );
12965 }
12966
12967 #[test]
12968 fn autores_projects_slice_by_borrow() {
12969 // The by-borrow pin: [`Caixa::autores`] returns `&[String]` by
12970 // borrow — the returned slice borrows the underlying
12971 // `Vec<String>` storage of the `:autores` slot and the
12972 // accessor must not clone the backing `Vec` on every call.
12973 // Peer of the per-`:membros`
12974 // [`crate::aplicacao::AplicacaoSpec::membros`] (6c77e36) /
12975 // per-`:contratos` [`crate::aplicacao::AplicacaoSpec::contratos`]
12976 // (0dcc926) / per-`:placement`
12977 // [`crate::aplicacao::Placement::clusters`] (a6e18d7) /
12978 // per-`:supervisor` [`crate::supervisor::SupervisorSpec::children`]
12979 // (bc92bce) by-borrow pins on the sibling per-M2 / per-M3
12980 // typed-slot `&[T]`-return axes, extended onto the outer top-
12981 // level [`Caixa`] universal-axis `&[String]` shape — the
12982 // accessor's returned slice must borrow from `&self` (the
12983 // returned reference's lifetime is tied to `&self`), and
12984 // calling the accessor twice on the same [`Caixa`] must yield
12985 // slices that are pointer-equal (the underlying byte-buffer is
12986 // the storage `Vec`'s allocation, not a fresh copy) as well as
12987 // value-equal (idempotent, no side effects on `&self`).
12988 //
12989 // Pins against a future silent detour that returned an owned
12990 // `Vec<String>` (which would type-check but silently clone on
12991 // every call, breaking the zero-cost projection every peer
12992 // sibling slice accessor carries), a `&Vec<String>` return
12993 // (which would leak the backing `Vec`'s grow/push/reserve
12994 // surface no downstream consumer reaches for), or a one-arm-
12995 // only accessor that returned a saturating value on some
12996 // sentinel input (breaking the pass-through invariant the
12997 // sibling slice accessors carry).
12998 for autores in [
12999 vec![],
13000 vec!["pleme-io"],
13001 vec!["alice", "bob"],
13002 vec!["pleme-io", "pleme-io"],
13003 ] {
13004 let c = caixa_with_autores(autores.clone());
13005 let expected: Vec<String> = autores.iter().map(|s| (*s).to_string()).collect();
13006 let first = c.autores();
13007 let second = c.autores();
13008 assert_eq!(
13009 first, second,
13010 "Caixa::autores must be idempotent — two successive \
13011 calls on the same &self must return the same \
13012 &[String]",
13013 );
13014 assert_eq!(
13015 first.as_ptr(),
13016 second.as_ptr(),
13017 "Caixa::autores must borrow the underlying Vec<String> \
13018 storage — two successive calls must return slices \
13019 with the same backing pointer (a fresh Vec<String> \
13020 clone would change the pointer on every call)",
13021 );
13022 assert_eq!(
13023 first,
13024 expected.as_slice(),
13025 "Caixa::autores must return :autores verbatim by \
13026 borrow — got {first:?}, expected {expected:?}",
13027 );
13028 }
13029 }
13030
13031 // ── Caixa::etiquetas — outer top-level &[T] slice accessor ────────
13032
13033 #[test]
13034 fn etiquetas_returns_etiquetas_slice_verbatim_across_permutations() {
13035 // The canonical per-`Caixa` `:etiquetas` universal-axis
13036 // registry-search-tag-list slice pin: [`Caixa::etiquetas`] must
13037 // return the `:etiquetas` typed [`Vec<String>`] list verbatim
13038 // as a `&[String]`, byte-equal to the raw
13039 // `self.etiquetas.as_slice()` access across every representative
13040 // value in the accept-set — `[]` (the "no tags declared" arm
13041 // every existing fixture without an `:etiquetas` line carries),
13042 // `[""]` (a past-the-guard sentinel that pins the accessor
13043 // doesn't perform a silent `[""] → []` collapse on the empty-
13044 // entry arm — validate rejects `[""]` through `EtiquetaEmpty`
13045 // but the accessor must ship the raw slot verbatim so a
13046 // validate-time gate regression surfaces at the caixa-helm emit
13047 // boundary rather than being silently absorbed into a keyword-
13048 // drop), `["demo"]` (the canonical single-tag form every
13049 // `feira init` template scaffolds), `["example", "aplicacao",
13050 // "mesh", "ecommerce", "demo"]` (the canonical multi-tag form
13051 // the checkout-aplicacao fixture emits), and `["demo", "demo"]`
13052 // (a past-the-guard duplicate sentinel — validate rejects
13053 // through `EtiquetaDuplicate` but the accessor must ship the
13054 // raw slot verbatim so the caixa-helm `BTreeSet::collect` dedup
13055 // at chart-render time isn't silently promoted into the
13056 // accessor boundary and struct-literal
13057 // `Caixa { etiquetas: vec!["demo".into(), "demo".into()], .. }`
13058 // fixtures continue to expose the duplicate at the accessor).
13059 //
13060 // Second outer top-level [`Caixa`] `&[T]`-return slice accessor
13061 // pin on the substrate primitive — folds on the "outer
13062 // [`Caixa`] `&[T]` slice" projection pattern
13063 // `autores_returns_autores_slice_verbatim_across_permutations`
13064 // (b5d813f) opened, sibling in shape and idiom. Pins against a
13065 // future silent detour that returned an owned `Vec<String>`
13066 // (which would type-check but silently clone on every accessor
13067 // call, breaking the zero-cost projection every peer sibling
13068 // slice accessor carries), a `[""] → []` collapse (which would
13069 // silently absorb the `EtiquetaEmpty` refusal case at the
13070 // accessor boundary), or a `["a", "a"] → ["a"]` dedup collapse
13071 // (which would silently absorb the `EtiquetaDuplicate` refusal
13072 // case at the accessor boundary — the caixa-helm chart-render
13073 // `BTreeSet::collect` dedup is downstream of the accessor and
13074 // must not be silently promoted into it).
13075 for etiquetas in [
13076 vec![],
13077 vec![""],
13078 vec!["demo"],
13079 vec!["example", "aplicacao", "mesh", "ecommerce", "demo"],
13080 vec!["demo", "demo"],
13081 ] {
13082 let c = caixa_with_etiquetas(etiquetas.clone());
13083 let expected: Vec<String> = etiquetas.iter().map(|s| (*s).to_string()).collect();
13084 assert_eq!(
13085 c.etiquetas(),
13086 expected.as_slice(),
13087 "Caixa::etiquetas must return :etiquetas verbatim (got \
13088 {:?}, expected {expected:?})",
13089 c.etiquetas(),
13090 );
13091 assert_eq!(
13092 c.etiquetas(),
13093 c.etiquetas.as_slice(),
13094 "Caixa::etiquetas must byte-equal the raw \
13095 `self.etiquetas.as_slice()` field access across every \
13096 value in the Vec<String> accept-set",
13097 );
13098 }
13099 }
13100
13101 #[test]
13102 fn validate_etiquetas_empty_entry_arm_routes_through_accessor() {
13103 // Composition pin: [`Caixa::validate_etiquetas`]'s per-entry
13104 // empty-arm gate must key off [`Caixa::etiquetas`], not the raw
13105 // `&self.etiquetas` field-borrow walk. Structurally: a
13106 // `Caixa { etiquetas: vec!["".into()], .. }` must surface the
13107 // `EtiquetaEmpty` refusal exactly, and a
13108 // `Caixa { etiquetas: vec!["demo".into()], .. }` (the canonical
13109 // single-tag form) must pass validate. The pair jointly pins
13110 // the accessor + validate-gate composition: any future silent
13111 // detour that had the accessor return an empty slice on the
13112 // `[""]` arm (a
13113 // `.iter().filter(|s| !s.is_empty()).collect()` collapse) would
13114 // silently absorb the `EtiquetaEmpty` refusal at the accessor
13115 // boundary and the validate gate would accept a struct-literal
13116 // `Caixa { etiquetas: vec!["".into()], .. }` — the composition
13117 // pin catches that at caixa-core build time.
13118 //
13119 // Peer of the per-`Caixa` `validate_autores_empty_arm_routes_
13120 // through_accessor` (b5d813f) accessor-composition pin on the
13121 // sibling `&[T]`-composition axis — same "the validate / shape-
13122 // gate predicate must route through the substrate-primitive
13123 // typed dispatch" discipline extended onto the sibling outer
13124 // top-level [`Caixa`] `&[T]`-composition surface.
13125 let c = caixa_with_etiquetas(vec![""]);
13126 assert!(
13127 matches!(c.validate_etiquetas(), Err(ManifestError::EtiquetaEmpty)),
13128 "validate_etiquetas must reject etiquetas == vec![\"\"] \
13129 with EtiquetaEmpty — the accessor and the validate gate \
13130 must route through the same substrate-primitive typed \
13131 dispatch on the :etiquetas per-entry empty arm",
13132 );
13133 let c = caixa_with_etiquetas(vec!["demo"]);
13134 assert!(
13135 c.validate_etiquetas().is_ok(),
13136 "validate_etiquetas must accept etiquetas == vec![\"demo\"] \
13137 (the canonical single-tag shape every `feira init` \
13138 template scaffolds)",
13139 );
13140 }
13141
13142 #[test]
13143 fn etiquetas_projects_slice_by_borrow() {
13144 // The by-borrow pin: [`Caixa::etiquetas`] returns `&[String]`
13145 // by borrow — the returned slice borrows the underlying
13146 // `Vec<String>` storage of the `:etiquetas` slot and the
13147 // accessor must not clone the backing `Vec` on every call.
13148 // Peer of the per-`Caixa` `autores_projects_slice_by_borrow`
13149 // (b5d813f) by-borrow pin on the sibling outer top-level
13150 // [`Caixa`] `&[String]`-return axis — the accessor's returned
13151 // slice must borrow from `&self` (the returned reference's
13152 // lifetime is tied to `&self`), and calling the accessor twice
13153 // on the same [`Caixa`] must yield slices that are pointer-
13154 // equal (the underlying byte-buffer is the storage `Vec`'s
13155 // allocation, not a fresh copy) as well as value-equal
13156 // (idempotent, no side effects on `&self`).
13157 //
13158 // Pins against a future silent detour that returned an owned
13159 // `Vec<String>` (which would type-check but silently clone on
13160 // every call, breaking the zero-cost projection every peer
13161 // sibling slice accessor carries), a `&Vec<String>` return
13162 // (which would leak the backing `Vec`'s grow/push/reserve
13163 // surface no downstream consumer reaches for), or a one-arm-
13164 // only accessor that returned a saturating value on some
13165 // sentinel input (breaking the pass-through invariant the
13166 // sibling slice accessors carry).
13167 for etiquetas in [
13168 vec![],
13169 vec!["demo"],
13170 vec!["example", "aplicacao", "mesh"],
13171 vec!["demo", "demo"],
13172 ] {
13173 let c = caixa_with_etiquetas(etiquetas.clone());
13174 let expected: Vec<String> = etiquetas.iter().map(|s| (*s).to_string()).collect();
13175 let first = c.etiquetas();
13176 let second = c.etiquetas();
13177 assert_eq!(
13178 first, second,
13179 "Caixa::etiquetas must be idempotent — two successive \
13180 calls on the same &self must return the same \
13181 &[String]",
13182 );
13183 assert_eq!(
13184 first.as_ptr(),
13185 second.as_ptr(),
13186 "Caixa::etiquetas must borrow the underlying \
13187 Vec<String> storage — two successive calls must \
13188 return slices with the same backing pointer (a fresh \
13189 Vec<String> clone would change the pointer on every \
13190 call)",
13191 );
13192 assert_eq!(
13193 first,
13194 expected.as_slice(),
13195 "Caixa::etiquetas must return :etiquetas verbatim by \
13196 borrow — got {first:?}, expected {expected:?}",
13197 );
13198 }
13199 }
13200
13201 // ── Caixa::bibliotecas — outer top-level &[T] slice accessor ──────
13202
13203 #[test]
13204 fn bibliotecas_returns_bibliotecas_slice_verbatim_across_permutations() {
13205 // The canonical per-`Caixa` `:bibliotecas` universal-axis
13206 // library-source-path-list slice pin: [`Caixa::bibliotecas`]
13207 // must return the `:bibliotecas` typed [`Vec<String>`] list
13208 // verbatim as a `&[String]`, byte-equal to the raw
13209 // `self.bibliotecas.as_slice()` access across every
13210 // representative value in the accept-set — `[]` (the "no
13211 // libraries declared" arm every `:kind` other than `Biblioteca`
13212 // + every `Biblioteca` relying on the canonical
13213 // `lib/<nome>.lisp` implicit-default path carries; the
13214 // layout's [`crate::LayoutInvariants`] `MissingLib` arm-gate
13215 // fires exactly on this empty-slot + `Biblioteca`-kind
13216 // combination), `[""]` (a past-the-guard sentinel that pins
13217 // the accessor doesn't perform a silent `[""] → []` collapse
13218 // on the empty-entry arm — validate rejects `[""]` through
13219 // `CodePathEmpty { slot: ":bibliotecas" }` but the accessor
13220 // must ship the raw slot verbatim so a validate-time gate
13221 // regression surfaces at the `feira build` phase-1 parse
13222 // boundary rather than being silently absorbed into a
13223 // library-drop), `["lib/demo.lisp"]` (the canonical single-
13224 // entry form `Caixa::template` scaffolds and every `feira init`
13225 // template emits), `["lib/demo.lisp", "lib/helpers.lisp"]`
13226 // (the canonical multi-library form the
13227 // `validate_code_paths_accepts_explicit_relative_paths_on_
13228 // every_slot` fixture emits), and `["lib/foo.lisp",
13229 // "lib/foo.lisp"]` (a past-the-guard duplicate sentinel —
13230 // validate rejects through `CodePathDuplicate { slot:
13231 // ":bibliotecas" }` per the per-slot set-not-multiset gate,
13232 // but the accessor must ship the raw slot verbatim so the
13233 // `feira build` `for entry in caixa.bibliotecas()` parse walk
13234 // sees the duplicate at the accessor boundary and struct-
13235 // literal `Caixa { bibliotecas: vec!["lib/foo.lisp".into(),
13236 // "lib/foo.lisp".into()], .. }` fixtures continue to expose
13237 // the duplicate at the accessor).
13238 //
13239 // Third outer top-level [`Caixa`] `&[T]`-return slice accessor
13240 // pin on the substrate primitive — folds on the "outer
13241 // [`Caixa`] `&[T]` slice" projection pattern
13242 // `autores_returns_autores_slice_verbatim_across_permutations`
13243 // (b5d813f) opened and
13244 // `etiquetas_returns_etiquetas_slice_verbatim_across_permutations`
13245 // (78c7d3c) folded on, sibling in shape and idiom. Pins
13246 // against a future silent detour that returned an owned
13247 // `Vec<String>` (which would type-check but silently clone on
13248 // every accessor call, breaking the zero-cost projection
13249 // every peer sibling slice accessor carries), a `[""] → []`
13250 // collapse (which would silently absorb the `CodePathEmpty`
13251 // refusal case at the accessor boundary), or a `["lib/foo.lisp",
13252 // "lib/foo.lisp"] → ["lib/foo.lisp"]` dedup collapse (which
13253 // would silently absorb the `CodePathDuplicate` refusal case
13254 // at the accessor boundary — the per-slot set-not-multiset
13255 // gate is downstream of the accessor and must not be silently
13256 // promoted into it).
13257 for bibliotecas in [
13258 vec![],
13259 vec![""],
13260 vec!["lib/demo.lisp"],
13261 vec!["lib/demo.lisp", "lib/helpers.lisp"],
13262 vec!["lib/foo.lisp", "lib/foo.lisp"],
13263 ] {
13264 let c = caixa_with_code_paths(bibliotecas.clone(), vec![], vec![]);
13265 let expected: Vec<String> = bibliotecas.iter().map(|s| (*s).to_string()).collect();
13266 assert_eq!(
13267 c.bibliotecas(),
13268 expected.as_slice(),
13269 "Caixa::bibliotecas must return :bibliotecas verbatim \
13270 (got {:?}, expected {expected:?})",
13271 c.bibliotecas(),
13272 );
13273 assert_eq!(
13274 c.bibliotecas(),
13275 c.bibliotecas.as_slice(),
13276 "Caixa::bibliotecas must byte-equal the raw \
13277 `self.bibliotecas.as_slice()` field access across \
13278 every value in the Vec<String> accept-set",
13279 );
13280 }
13281 }
13282
13283 #[test]
13284 fn validate_code_paths_bibliotecas_empty_arm_routes_through_accessor() {
13285 // Composition pin: [`Caixa::validate_code_paths`]'s per-entry
13286 // empty-arm gate on the `:bibliotecas` slot must key off
13287 // [`Caixa::bibliotecas`], not a divergent raw
13288 // `&self.bibliotecas` field-borrow walk. Structurally: a
13289 // `Caixa { bibliotecas: vec!["".into()], .. }` must surface
13290 // the `CodePathEmpty { slot: ":bibliotecas" }` refusal
13291 // exactly, and a `Caixa { bibliotecas: vec!["lib/demo.lisp".
13292 // into()], .. }` (the canonical single-library form
13293 // `Caixa::template` scaffolds) must pass validate. The pair
13294 // jointly pins the accessor + validate-gate composition: any
13295 // future silent detour that had the accessor return an empty
13296 // slice on the `[""]` arm (a `.iter().filter(|s|
13297 // !s.is_empty()).collect()` collapse) would silently absorb
13298 // the `CodePathEmpty` refusal at the accessor boundary and
13299 // the validate gate would accept a struct-literal
13300 // `Caixa { bibliotecas: vec!["".into()], .. }` — the
13301 // composition pin catches that at caixa-core build time.
13302 //
13303 // Peer of the per-`Caixa` `validate_autores_empty_arm_routes_
13304 // through_accessor` (b5d813f) and
13305 // `validate_etiquetas_empty_entry_arm_routes_through_accessor`
13306 // (78c7d3c) accessor-composition pins on the sibling `&[T]`-
13307 // composition axes — same "the validate / shape-gate
13308 // predicate must route through the substrate-primitive typed
13309 // dispatch" discipline extended onto the sibling outer top-
13310 // level [`Caixa`] `&[T]`-composition surface. Nominally the
13311 // in-tree `validate_code_paths` production body still keys
13312 // off the internal `[(":bibliotecas", &self.bibliotecas,
13313 // CodePathFileType::LispSource), (":exe", &self.exe, ..),
13314 // (":servicos", &self.servicos, ..)]` per-slot dispatch tuple
13315 // (the tuple's homogeneous slice-typed shape blocks a per-
13316 // element accessor swap in isolation — a future companion
13317 // lift for `:exe` and `:servicos` on the same outer-`Caixa`
13318 // `&[T]` slice-accessor axis closes that tuple onto the
13319 // triple of typed dispatches as a unit); the composition pin
13320 // catches any future accessor-side silent filter drop against
13321 // that eventual tuple-closure regardless of whether the
13322 // `:bibliotecas` slot is threaded through the accessor or the
13323 // raw field access at the tuple's construction site.
13324 let c = caixa_with_code_paths(vec![""], vec![], vec![]);
13325 assert!(
13326 matches!(
13327 c.validate_code_paths(),
13328 Err(ManifestError::CodePathEmpty {
13329 slot: ":bibliotecas"
13330 })
13331 ),
13332 "validate_code_paths must reject bibliotecas == vec![\"\"] \
13333 with CodePathEmpty {{ slot: \":bibliotecas\" }} — the \
13334 accessor and the validate gate must route through the \
13335 same substrate-primitive typed dispatch on the \
13336 :bibliotecas per-entry empty arm",
13337 );
13338 let c = caixa_with_code_paths(vec!["lib/demo.lisp"], vec![], vec![]);
13339 assert!(
13340 c.validate_code_paths().is_ok(),
13341 "validate_code_paths must accept bibliotecas == \
13342 vec![\"lib/demo.lisp\"] (the canonical single-library \
13343 shape every `feira init` template scaffolds)",
13344 );
13345 }
13346
13347 #[test]
13348 fn bibliotecas_projects_slice_by_borrow() {
13349 // The by-borrow pin: [`Caixa::bibliotecas`] returns
13350 // `&[String]` by borrow — the returned slice borrows the
13351 // underlying `Vec<String>` storage of the `:bibliotecas` slot
13352 // and the accessor must not clone the backing `Vec` on every
13353 // call. Peer of the per-`Caixa` `autores_projects_slice_by_borrow`
13354 // (b5d813f) and `etiquetas_projects_slice_by_borrow` (78c7d3c)
13355 // by-borrow pins on the sibling outer top-level [`Caixa`]
13356 // `&[String]`-return axes — the accessor's returned slice
13357 // must borrow from `&self` (the returned reference's lifetime
13358 // is tied to `&self`), and calling the accessor twice on the
13359 // same [`Caixa`] must yield slices that are pointer-equal
13360 // (the underlying byte-buffer is the storage `Vec`'s
13361 // allocation, not a fresh copy) as well as value-equal
13362 // (idempotent, no side effects on `&self`).
13363 //
13364 // Pins against a future silent detour that returned an owned
13365 // `Vec<String>` (which would type-check but silently clone on
13366 // every call, breaking the zero-cost projection every peer
13367 // sibling slice accessor carries), a `&Vec<String>` return
13368 // (which would leak the backing `Vec`'s grow/push/reserve
13369 // surface no downstream consumer reaches for), or a one-arm-
13370 // only accessor that returned a saturating value on some
13371 // sentinel input (breaking the pass-through invariant the
13372 // sibling slice accessors carry).
13373 for bibliotecas in [
13374 vec![],
13375 vec!["lib/demo.lisp"],
13376 vec!["lib/demo.lisp", "lib/helpers.lisp"],
13377 vec!["lib/foo.lisp", "lib/foo.lisp"],
13378 ] {
13379 let c = caixa_with_code_paths(bibliotecas.clone(), vec![], vec![]);
13380 let expected: Vec<String> = bibliotecas.iter().map(|s| (*s).to_string()).collect();
13381 let first = c.bibliotecas();
13382 let second = c.bibliotecas();
13383 assert_eq!(
13384 first, second,
13385 "Caixa::bibliotecas must be idempotent — two \
13386 successive calls on the same &self must return the \
13387 same &[String]",
13388 );
13389 assert_eq!(
13390 first.as_ptr(),
13391 second.as_ptr(),
13392 "Caixa::bibliotecas must borrow the underlying \
13393 Vec<String> storage — two successive calls must \
13394 return slices with the same backing pointer (a \
13395 fresh Vec<String> clone would change the pointer on \
13396 every call)",
13397 );
13398 assert_eq!(
13399 first,
13400 expected.as_slice(),
13401 "Caixa::bibliotecas must return :bibliotecas verbatim \
13402 by borrow — got {first:?}, expected {expected:?}",
13403 );
13404 }
13405 }
13406
13407 // ── Caixa::exe — outer top-level &[T] slice accessor ──────────────
13408
13409 #[test]
13410 fn exe_returns_exe_slice_verbatim_across_permutations() {
13411 // The canonical per-`Caixa` `:exe` universal-axis
13412 // nix-built-executable-entry-path-list slice pin: [`Caixa::exe`]
13413 // must return the `:exe` typed [`Vec<String>`] list verbatim as
13414 // a `&[String]`, byte-equal to the raw `self.exe.as_slice()`
13415 // access across every representative value in the accept-set —
13416 // `[]` (the "no executable declared" arm every `:kind` other
13417 // than `Binario` carries; the layout's [`crate::LayoutInvariants`]
13418 // `BinarioWithoutExe` arm-gate fires exactly on this empty-slot
13419 // + `Binario`-kind combination), `[""]` (a past-the-guard
13420 // sentinel that pins the accessor doesn't perform a silent
13421 // `[""] → []` collapse on the empty-entry arm — validate rejects
13422 // `[""]` through `CodePathEmpty { slot: ":exe" }` but the
13423 // accessor must ship the raw slot verbatim so a validate-time
13424 // gate regression surfaces at the layout / `feira nix` boundary
13425 // rather than being silently absorbed into an executable-drop),
13426 // `["exe/cli"]` (the canonical single-entry Binario form every
13427 // in-tree `caixa_with_code_paths` positive control uses),
13428 // `["exe/cli", "exe/serve"]` (the canonical multi-executable
13429 // form the `validate_code_paths_accepts_explicit_relative_paths_
13430 // on_every_slot` fixture emits), and `["exe/cli", "exe/cli"]`
13431 // (a past-the-guard duplicate sentinel — validate rejects
13432 // through `CodePathDuplicate { slot: ":exe" }` per the per-slot
13433 // set-not-multiset gate, but the accessor must ship the raw
13434 // slot verbatim so struct-literal `Caixa { exe: vec!["exe/cli".
13435 // into(), "exe/cli".into()], .. }` fixtures continue to expose
13436 // the duplicate at the accessor).
13437 //
13438 // Fourth outer top-level [`Caixa`] `&[T]`-return slice accessor
13439 // pin on the substrate primitive — folds on the "outer
13440 // [`Caixa`] `&[T]` slice" projection pattern
13441 // `autores_returns_autores_slice_verbatim_across_permutations`
13442 // (b5d813f) opened,
13443 // `etiquetas_returns_etiquetas_slice_verbatim_across_permutations`
13444 // (78c7d3c) folded on, and
13445 // `bibliotecas_returns_bibliotecas_slice_verbatim_across_permutations`
13446 // (8a36c23) closed the universal-axis text-tag family of.
13447 // Opens the outer-`Caixa` foreign-code-slot `&[T]` sub-family
13448 // the sibling `:servicos` future lift closes onto. Pins against
13449 // a future silent detour that returned an owned `Vec<String>`
13450 // (which would type-check but silently clone on every accessor
13451 // call, breaking the zero-cost projection every peer sibling
13452 // slice accessor carries), a `[""] → []` collapse (which would
13453 // silently absorb the `CodePathEmpty` refusal case at the
13454 // accessor boundary), or an `["exe/cli", "exe/cli"] →
13455 // ["exe/cli"]` dedup collapse (which would silently absorb the
13456 // `CodePathDuplicate` refusal case at the accessor boundary —
13457 // the per-slot set-not-multiset gate is downstream of the
13458 // accessor and must not be silently promoted into it).
13459 for exe in [
13460 vec![],
13461 vec![""],
13462 vec!["exe/cli"],
13463 vec!["exe/cli", "exe/serve"],
13464 vec!["exe/cli", "exe/cli"],
13465 ] {
13466 let c = caixa_with_code_paths(vec![], exe.clone(), vec![]);
13467 let expected: Vec<String> = exe.iter().map(|s| (*s).to_string()).collect();
13468 assert_eq!(
13469 c.exe(),
13470 expected.as_slice(),
13471 "Caixa::exe must return :exe verbatim (got {:?}, \
13472 expected {expected:?})",
13473 c.exe(),
13474 );
13475 assert_eq!(
13476 c.exe(),
13477 c.exe.as_slice(),
13478 "Caixa::exe must byte-equal the raw \
13479 `self.exe.as_slice()` field access across every value \
13480 in the Vec<String> accept-set",
13481 );
13482 }
13483 }
13484
13485 #[test]
13486 fn validate_code_paths_exe_empty_arm_routes_through_accessor() {
13487 // Composition pin: [`Caixa::validate_code_paths`]'s per-entry
13488 // empty-arm gate on the `:exe` slot must key off
13489 // [`Caixa::exe`], not a divergent raw `&self.exe` field-borrow
13490 // walk. Structurally: a `Caixa { exe: vec!["".into()], .. }`
13491 // must surface the `CodePathEmpty { slot: ":exe" }` refusal
13492 // exactly, and a `Caixa { exe: vec!["exe/cli".into()], .. }`
13493 // (the canonical single-executable form every in-tree
13494 // `caixa_with_code_paths` positive control uses) must pass
13495 // validate. The pair jointly pins the accessor + validate-gate
13496 // composition: any future silent detour that had the accessor
13497 // return an empty slice on the `[""]` arm (a
13498 // `.iter().filter(|s| !s.is_empty()).collect()` collapse) would
13499 // silently absorb the `CodePathEmpty` refusal at the accessor
13500 // boundary and the validate gate would accept a struct-literal
13501 // `Caixa { exe: vec!["".into()], .. }` — the composition pin
13502 // catches that at caixa-core build time.
13503 //
13504 // Peer of the per-`Caixa`
13505 // `validate_code_paths_bibliotecas_empty_arm_routes_through_accessor`
13506 // (8a36c23), `validate_autores_empty_arm_routes_through_accessor`
13507 // (b5d813f), and
13508 // `validate_etiquetas_empty_entry_arm_routes_through_accessor`
13509 // (78c7d3c) accessor-composition pins on the sibling `&[T]`-
13510 // composition axes — same "the validate / shape-gate predicate
13511 // must route through the substrate-primitive typed dispatch"
13512 // discipline extended onto the sibling outer top-level [`Caixa`]
13513 // `&[T]`-composition surface. Nominally the in-tree
13514 // `validate_code_paths` production body still keys off the
13515 // internal `[(":bibliotecas", &self.bibliotecas,
13516 // CodePathFileType::LispSource), (":exe", &self.exe, ..),
13517 // (":servicos", &self.servicos, ..)]` per-slot dispatch tuple
13518 // (the tuple's homogeneous slice-typed shape blocks a per-
13519 // element accessor swap in isolation — a future companion lift
13520 // for `:servicos` on the same outer-`Caixa` `&[T]` slice-
13521 // accessor axis closes that tuple onto the triple of typed
13522 // dispatches as a unit); the composition pin catches any future
13523 // accessor-side silent filter drop against that eventual tuple-
13524 // closure regardless of whether the `:exe` slot is threaded
13525 // through the accessor or the raw field access at the tuple's
13526 // construction site.
13527 let c = caixa_with_code_paths(vec![], vec![""], vec![]);
13528 assert!(
13529 matches!(
13530 c.validate_code_paths(),
13531 Err(ManifestError::CodePathEmpty { slot: ":exe" })
13532 ),
13533 "validate_code_paths must reject exe == vec![\"\"] \
13534 with CodePathEmpty {{ slot: \":exe\" }} — the \
13535 accessor and the validate gate must route through the \
13536 same substrate-primitive typed dispatch on the \
13537 :exe per-entry empty arm",
13538 );
13539 let c = caixa_with_code_paths(vec![], vec!["exe/cli"], vec![]);
13540 assert!(
13541 c.validate_code_paths().is_ok(),
13542 "validate_code_paths must accept exe == vec![\"exe/cli\"] \
13543 (the canonical single-executable shape every in-tree \
13544 `caixa_with_code_paths` positive control uses)",
13545 );
13546 }
13547
13548 #[test]
13549 fn exe_projects_slice_by_borrow() {
13550 // The by-borrow pin: [`Caixa::exe`] returns `&[String]` by
13551 // borrow — the returned slice borrows the underlying
13552 // `Vec<String>` storage of the `:exe` slot and the accessor
13553 // must not clone the backing `Vec` on every call. Peer of the
13554 // per-`Caixa` `autores_projects_slice_by_borrow` (b5d813f),
13555 // `etiquetas_projects_slice_by_borrow` (78c7d3c), and
13556 // `bibliotecas_projects_slice_by_borrow` (8a36c23) by-borrow
13557 // pins on the sibling outer top-level [`Caixa`] `&[String]`-
13558 // return axes — the accessor's returned slice must borrow from
13559 // `&self` (the returned reference's lifetime is tied to
13560 // `&self`), and calling the accessor twice on the same
13561 // [`Caixa`] must yield slices that are pointer-equal (the
13562 // underlying byte-buffer is the storage `Vec`'s allocation,
13563 // not a fresh copy) as well as value-equal (idempotent, no
13564 // side effects on `&self`).
13565 //
13566 // Pins against a future silent detour that returned an owned
13567 // `Vec<String>` (which would type-check but silently clone on
13568 // every call, breaking the zero-cost projection every peer
13569 // sibling slice accessor carries), a `&Vec<String>` return
13570 // (which would leak the backing `Vec`'s grow/push/reserve
13571 // surface no downstream consumer reaches for), or a one-arm-
13572 // only accessor that returned a saturating value on some
13573 // sentinel input (breaking the pass-through invariant the
13574 // sibling slice accessors carry).
13575 for exe in [
13576 vec![],
13577 vec!["exe/cli"],
13578 vec!["exe/cli", "exe/serve"],
13579 vec!["exe/cli", "exe/cli"],
13580 ] {
13581 let c = caixa_with_code_paths(vec![], exe.clone(), vec![]);
13582 let expected: Vec<String> = exe.iter().map(|s| (*s).to_string()).collect();
13583 let first = c.exe();
13584 let second = c.exe();
13585 assert_eq!(
13586 first, second,
13587 "Caixa::exe must be idempotent — two successive calls \
13588 on the same &self must return the same &[String]",
13589 );
13590 assert_eq!(
13591 first.as_ptr(),
13592 second.as_ptr(),
13593 "Caixa::exe must borrow the underlying Vec<String> \
13594 storage — two successive calls must return slices \
13595 with the same backing pointer (a fresh Vec<String> \
13596 clone would change the pointer on every call)",
13597 );
13598 assert_eq!(
13599 first,
13600 expected.as_slice(),
13601 "Caixa::exe must return :exe verbatim by borrow — \
13602 got {first:?}, expected {expected:?}",
13603 );
13604 }
13605 }
13606
13607 // ── Caixa::servicos — outer top-level &[T] slice accessor ─────────
13608
13609 #[test]
13610 fn servicos_returns_servicos_slice_verbatim_across_permutations() {
13611 // The canonical per-`Caixa` `:servicos` universal-axis
13612 // ComputeUnit-CR-YAML-entry-path-list slice pin:
13613 // [`Caixa::servicos`] must return the `:servicos` typed
13614 // [`Vec<String>`] list verbatim as a `&[String]`, byte-equal to
13615 // the raw `self.servicos.as_slice()` access across every
13616 // representative value in the accept-set — `[]` (the "no
13617 // ComputeUnit-CR declared" arm every `:kind` other than
13618 // `Servico` carries; the layout's [`crate::LayoutInvariants`]
13619 // `ServicoWithoutServicos` arm-gate fires exactly on this
13620 // empty-slot + `Servico`-kind combination), `[""]` (a past-the-
13621 // guard sentinel that pins the accessor doesn't perform a
13622 // silent `[""] → []` collapse on the empty-entry arm — validate
13623 // rejects `[""]` through `CodePathEmpty { slot: ":servicos" }`
13624 // but the accessor must ship the raw slot verbatim so a
13625 // validate-time gate regression surfaces at the layout /
13626 // per-Servico renderer boundary rather than being silently
13627 // absorbed into a component-drop),
13628 // `["servicos/demo.computeunit.yaml"]` (the canonical
13629 // singleton V0-shape every in-tree `caixa_with_code_paths`
13630 // positive control uses; the same shape
13631 // [`crate::require_single_servico`] admits),
13632 // `["servicos/a.computeunit.yaml", "servicos/b.computeunit.
13633 // yaml"]` (a past-the-guard `len != 1` sentinel — the V0
13634 // singularity gate rejects through `ServicoCountMismatch
13635 // { count: 2 }` but the accessor must ship the raw slot
13636 // verbatim so struct-literal `Caixa { servicos: vec![...,
13637 // ...], .. }` fixtures continue to expose the count at the
13638 // accessor), and `["servicos/a.computeunit.yaml",
13639 // "servicos/a.computeunit.yaml"]` (a past-the-guard duplicate
13640 // sentinel — validate rejects through
13641 // `CodePathDuplicate { slot: ":servicos" }` per the per-slot
13642 // set-not-multiset gate, but the accessor must ship the raw
13643 // slot verbatim so struct-literal fixtures continue to expose
13644 // the duplicate at the accessor).
13645 //
13646 // Fifth and final outer top-level [`Caixa`] `&[T]`-return
13647 // slice accessor pin on the substrate primitive — folds on the
13648 // "outer [`Caixa`] `&[T]` slice" projection pattern
13649 // `autores_returns_autores_slice_verbatim_across_permutations`
13650 // (b5d813f) opened,
13651 // `etiquetas_returns_etiquetas_slice_verbatim_across_permutations`
13652 // (78c7d3c) folded on,
13653 // `bibliotecas_returns_bibliotecas_slice_verbatim_across_permutations`
13654 // (8a36c23) closed the universal-axis text-tag family of, and
13655 // `exe_returns_exe_slice_verbatim_across_permutations`
13656 // (65d9527) opened the foreign-code-slot sub-family of. Closes
13657 // the outer-`Caixa` foreign-code-slot `&[T]` sub-family — the
13658 // trio of code-surface list slots (`:bibliotecas` + `:exe` +
13659 // `:servicos`) now each carries a substrate-canonical slice
13660 // accessor. Pins against a future silent detour that returned
13661 // an owned `Vec<String>` (which would type-check but silently
13662 // clone on every accessor call, breaking the zero-cost
13663 // projection every peer sibling slice accessor carries), a
13664 // `[""] → []` collapse (which would silently absorb the
13665 // `CodePathEmpty` refusal case at the accessor boundary), an
13666 // `[a, a] → [a]` dedup collapse (which would silently absorb
13667 // the `CodePathDuplicate` refusal case at the accessor
13668 // boundary — the per-slot set-not-multiset gate is downstream
13669 // of the accessor and must not be silently promoted into it),
13670 // or a `[a, b] → [a]` singleton collapse (which would silently
13671 // absorb the V0 `ServicoCountMismatch` refusal case at the
13672 // accessor boundary — the V0 singularity gate is downstream of
13673 // the accessor and must not be silently promoted into it).
13674 for servicos in [
13675 vec![],
13676 vec![""],
13677 vec!["servicos/demo.computeunit.yaml"],
13678 vec!["servicos/a.computeunit.yaml", "servicos/b.computeunit.yaml"],
13679 vec!["servicos/a.computeunit.yaml", "servicos/a.computeunit.yaml"],
13680 ] {
13681 let c = caixa_with_code_paths(vec![], vec![], servicos.clone());
13682 let expected: Vec<String> = servicos.iter().map(|s| (*s).to_string()).collect();
13683 assert_eq!(
13684 c.servicos(),
13685 expected.as_slice(),
13686 "Caixa::servicos must return :servicos verbatim (got \
13687 {:?}, expected {expected:?})",
13688 c.servicos(),
13689 );
13690 assert_eq!(
13691 c.servicos(),
13692 c.servicos.as_slice(),
13693 "Caixa::servicos must byte-equal the raw \
13694 `self.servicos.as_slice()` field access across every \
13695 value in the Vec<String> accept-set",
13696 );
13697 }
13698 }
13699
13700 #[test]
13701 fn validate_code_paths_servicos_empty_arm_routes_through_accessor() {
13702 // Composition pin: [`Caixa::validate_code_paths`]'s per-entry
13703 // empty-arm gate on the `:servicos` slot must key off
13704 // [`Caixa::servicos`], not a divergent raw `&self.servicos`
13705 // field-borrow walk. Structurally: a `Caixa { servicos:
13706 // vec!["".into()], .. }` must surface the `CodePathEmpty
13707 // { slot: ":servicos" }` refusal exactly, and a `Caixa
13708 // { servicos: vec!["servicos/demo.computeunit.yaml".into()],
13709 // .. }` (the canonical singleton V0-shape every in-tree
13710 // `caixa_with_code_paths` positive control uses) must pass
13711 // validate. The pair jointly pins the accessor + validate-gate
13712 // composition: any future silent detour that had the accessor
13713 // return an empty slice on the `[""]` arm (a `.iter().filter
13714 // (|s| !s.is_empty()).collect()` collapse) would silently
13715 // absorb the `CodePathEmpty` refusal at the accessor boundary
13716 // and the validate gate would accept a struct-literal
13717 // `Caixa { servicos: vec!["".into()], .. }` — the composition
13718 // pin catches that at caixa-core build time.
13719 //
13720 // Peer of the per-`Caixa`
13721 // `validate_code_paths_bibliotecas_empty_arm_routes_through_accessor`
13722 // (8a36c23), `validate_code_paths_exe_empty_arm_routes_through_accessor`
13723 // (65d9527), `validate_autores_empty_arm_routes_through_accessor`
13724 // (b5d813f), and
13725 // `validate_etiquetas_empty_entry_arm_routes_through_accessor`
13726 // (78c7d3c) accessor-composition pins on the sibling `&[T]`-
13727 // composition axes — same "the validate / shape-gate predicate
13728 // must route through the substrate-primitive typed dispatch"
13729 // discipline extended onto the sibling outer top-level
13730 // [`Caixa`] `&[T]`-composition surface, closing the trio of
13731 // code-surface accessor-composition pins on the same axis.
13732 // Nominally the in-tree `validate_code_paths` production body
13733 // still keys off the internal
13734 // `[(":bibliotecas", &self.bibliotecas,
13735 // CodePathFileType::LispSource), (":exe", &self.exe, ..),
13736 // (":servicos", &self.servicos, ..)]` per-slot dispatch tuple
13737 // (the tuple's homogeneous `&Vec<String>`-typed shape blocks a
13738 // per-element accessor swap in isolation — a future companion
13739 // lift promotes the tuple's element type to `&[String]` and
13740 // threads the triple of typed dispatches through as a unit);
13741 // the composition pin catches any future accessor-side silent
13742 // filter drop against that eventual tuple-closure regardless
13743 // of whether the `:servicos` slot is threaded through the
13744 // accessor or the raw field access at the tuple's construction
13745 // site.
13746 let c = caixa_with_code_paths(vec![], vec![], vec![""]);
13747 assert!(
13748 matches!(
13749 c.validate_code_paths(),
13750 Err(ManifestError::CodePathEmpty { slot: ":servicos" })
13751 ),
13752 "validate_code_paths must reject servicos == vec![\"\"] \
13753 with CodePathEmpty {{ slot: \":servicos\" }} — the \
13754 accessor and the validate gate must route through the \
13755 same substrate-primitive typed dispatch on the \
13756 :servicos per-entry empty arm",
13757 );
13758 let c = caixa_with_code_paths(vec![], vec![], vec!["servicos/demo.computeunit.yaml"]);
13759 assert!(
13760 c.validate_code_paths().is_ok(),
13761 "validate_code_paths must accept servicos == \
13762 vec![\"servicos/demo.computeunit.yaml\"] (the canonical \
13763 singleton V0-shape every in-tree `caixa_with_code_paths` \
13764 positive control uses)",
13765 );
13766 }
13767
13768 #[test]
13769 fn servicos_projects_slice_by_borrow() {
13770 // The by-borrow pin: [`Caixa::servicos`] returns `&[String]` by
13771 // borrow — the returned slice borrows the underlying
13772 // `Vec<String>` storage of the `:servicos` slot and the
13773 // accessor must not clone the backing `Vec` on every call.
13774 // Peer of the per-`Caixa` `autores_projects_slice_by_borrow`
13775 // (b5d813f), `etiquetas_projects_slice_by_borrow` (78c7d3c),
13776 // `bibliotecas_projects_slice_by_borrow` (8a36c23), and
13777 // `exe_projects_slice_by_borrow` (65d9527) by-borrow pins on
13778 // the sibling outer top-level [`Caixa`] `&[String]`-return
13779 // axes — the accessor's returned slice must borrow from
13780 // `&self` (the returned reference's lifetime is tied to
13781 // `&self`), and calling the accessor twice on the same
13782 // [`Caixa`] must yield slices that are pointer-equal (the
13783 // underlying byte-buffer is the storage `Vec`'s allocation,
13784 // not a fresh copy) as well as value-equal (idempotent, no
13785 // side effects on `&self`).
13786 //
13787 // Pins against a future silent detour that returned an owned
13788 // `Vec<String>` (which would type-check but silently clone on
13789 // every call, breaking the zero-cost projection every peer
13790 // sibling slice accessor carries), a `&Vec<String>` return
13791 // (which would leak the backing `Vec`'s grow/push/reserve
13792 // surface no downstream consumer reaches for), or a one-arm-
13793 // only accessor that returned a saturating value on some
13794 // sentinel input (breaking the pass-through invariant the
13795 // sibling slice accessors carry).
13796 for servicos in [
13797 vec![],
13798 vec!["servicos/demo.computeunit.yaml"],
13799 vec!["servicos/a.computeunit.yaml", "servicos/b.computeunit.yaml"],
13800 vec!["servicos/a.computeunit.yaml", "servicos/a.computeunit.yaml"],
13801 ] {
13802 let c = caixa_with_code_paths(vec![], vec![], servicos.clone());
13803 let expected: Vec<String> = servicos.iter().map(|s| (*s).to_string()).collect();
13804 let first = c.servicos();
13805 let second = c.servicos();
13806 assert_eq!(
13807 first, second,
13808 "Caixa::servicos must be idempotent — two successive \
13809 calls on the same &self must return the same &[String]",
13810 );
13811 assert_eq!(
13812 first.as_ptr(),
13813 second.as_ptr(),
13814 "Caixa::servicos must borrow the underlying \
13815 Vec<String> storage — two successive calls must \
13816 return slices with the same backing pointer (a fresh \
13817 Vec<String> clone would change the pointer on every \
13818 call)",
13819 );
13820 assert_eq!(
13821 first,
13822 expected.as_slice(),
13823 "Caixa::servicos must return :servicos verbatim by \
13824 borrow — got {first:?}, expected {expected:?}",
13825 );
13826 }
13827 }
13828
13829 // ── Caixa::deps — outer top-level &[Dep] slice accessor ───────────
13830
13831 fn caixa_with_deps(deps: Vec<Dep>) -> Caixa {
13832 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
13833 c.deps = deps;
13834 c
13835 }
13836
13837 #[test]
13838 fn deps_returns_deps_slice_verbatim_across_permutations() {
13839 // The canonical per-`Caixa` `:deps` universal-axis runtime-
13840 // dependency-declaration-list slice pin: [`Caixa::deps`] must
13841 // return the `:deps` typed [`Vec<Dep>`] list verbatim as a
13842 // `&[Dep]`, element-equal to the raw `self.deps.as_slice()`
13843 // access across every representative value in the accept-set —
13844 // `[]` (the "no runtime deps declared" arm every existing
13845 // fixture without a `:deps` line carries; the
13846 // [`Caixa::template`] scaffold emits `:deps ()`), a canonical
13847 // single-entry list (the shape most consumer caixas carry), a
13848 // canonical two-entry list (the multi-dep runtime closure), and
13849 // two past-the-guard sentinels — a `[""]`-`:nome` entry
13850 // ([`Self::validate_deps`] rejects through `NomeEmpty` /
13851 // `NomeInvalid` but the accessor must ship the raw slot
13852 // verbatim) and a `[a, a]` duplicate (validate rejects through
13853 // `DuplicateNome { list: ":deps" }` but the accessor must ship
13854 // the raw slot verbatim so struct-literal fixtures continue to
13855 // expose the duplicate at the accessor).
13856 //
13857 // First outer top-level [`Caixa`] `&[Dep]`-return slice accessor
13858 // pin on the substrate primitive — opens the outer-`Caixa`
13859 // dependency-slot `&[Dep]` sub-family the sibling `:deps-dev`
13860 // future lift closes on. Peer of the closed outer-`Caixa`
13861 // foreign-code-slot `&[String]` sub-family
13862 // (`bibliotecas_returns_bibliotecas_slice_verbatim_across_permutations`
13863 // 8a36c23, `exe_returns_exe_slice_verbatim_across_permutations`
13864 // 65d9527, `servicos_returns_servicos_slice_verbatim_across_permutations`
13865 // 611f78b) and the outer-`Caixa` universal-axis text-tag family
13866 // (`autores_returns_autores_slice_verbatim_across_permutations`
13867 // b5d813f, `etiquetas_returns_etiquetas_slice_verbatim_across_permutations`
13868 // 78c7d3c) — extends the "outer [`Caixa`] `&[T]` slice"
13869 // projection pattern onto a novel element-type axis (`Dep`
13870 // composite vs the prior sibling family's `String` scalar).
13871 // Pins against a future silent detour that returned an owned
13872 // `Vec<Dep>` (which would type-check but silently clone on every
13873 // accessor call, breaking the zero-cost projection every peer
13874 // sibling slice accessor carries), a `[""] → []` collapse (which
13875 // would silently absorb the `NomeEmpty` refusal case at the
13876 // accessor boundary), or a `[a, a] → [a]` dedup collapse (which
13877 // would silently absorb the `DuplicateNome` refusal case at the
13878 // accessor boundary).
13879 for deps in [
13880 vec![],
13881 vec![Dep::simple("", "^0.1")],
13882 vec![Dep::simple("caixa-teia", "^0.1")],
13883 vec![
13884 Dep::simple("caixa-teia", "^0.1"),
13885 Dep::simple("caixa-core", "^0.1"),
13886 ],
13887 vec![
13888 Dep::simple("caixa-teia", "^0.1"),
13889 Dep::simple("caixa-teia", "^0.2"),
13890 ],
13891 ] {
13892 let c = caixa_with_deps(deps.clone());
13893 assert_eq!(
13894 c.deps(),
13895 deps.as_slice(),
13896 "Caixa::deps must return :deps verbatim (got {:?}, \
13897 expected {deps:?})",
13898 c.deps(),
13899 );
13900 assert_eq!(
13901 c.deps(),
13902 c.deps.as_slice(),
13903 "Caixa::deps must element-equal the raw \
13904 `self.deps.as_slice()` field access across every \
13905 value in the Vec<Dep> accept-set",
13906 );
13907 }
13908 }
13909
13910 #[test]
13911 fn validate_deps_duplicate_arm_routes_through_accessor() {
13912 // Composition pin: [`Caixa::validate_deps`]'s within-`:deps`
13913 // duplicate-`:nome` gate must key off [`Caixa::deps`], not the
13914 // raw `&self.deps` field-borrow walk. Structurally: a `Caixa
13915 // { deps: vec![Dep::simple("d", "^0.1"), Dep::simple("d",
13916 // "^0.2")], .. }` must surface the `DuplicateNome { list:
13917 // ":deps" }` refusal exactly, and a `Caixa { deps: vec![
13918 // Dep::simple("d", "^0.1")], .. }` (the canonical single-entry
13919 // form) must pass validate. The pair jointly pins the accessor +
13920 // validate-gate composition: any future silent detour that had
13921 // the accessor return a dedupped slice on the `[a, a]` arm (a
13922 // `.iter().unique_by(|d| d.nome.as_str()).collect()` collapse)
13923 // would silently absorb the `DuplicateNome` refusal at the
13924 // accessor boundary and the validate gate would accept a
13925 // struct-literal `Caixa` carrying the drift — the composition
13926 // pin catches that at caixa-core build time.
13927 //
13928 // Peer of the per-`Caixa`
13929 // `validate_autores_empty_entry_arm_routes_through_accessor`
13930 // (b5d813f), `validate_etiquetas_empty_entry_arm_routes_through_accessor`
13931 // (78c7d3c), `validate_code_paths_bibliotecas_empty_arm_routes_through_accessor`
13932 // (8a36c23), `validate_code_paths_exe_empty_arm_routes_through_accessor`
13933 // (65d9527), and `validate_code_paths_servicos_empty_arm_routes_through_accessor`
13934 // (611f78b) accessor-composition pins on the sibling `&[T]`-
13935 // composition axes — same "the validate gate must route through
13936 // the substrate-primitive typed dispatch" discipline extended
13937 // onto the sibling outer top-level [`Caixa`] `&[Dep]`-
13938 // composition surface, opening the outer-`Caixa` dependency-slot
13939 // arm of the composition-pin family.
13940 let c = caixa_with_deps(vec![Dep::simple("d", "^0.1"), Dep::simple("d", "^0.2")]);
13941 let err = c.validate_deps().unwrap_err();
13942 assert!(
13943 matches!(
13944 err,
13945 DepError::DuplicateNome { ref nome, list } if nome == "d"
13946 && list == crate::render::DEP_AUTHOR_KEY_DEPS
13947 ),
13948 "validate_deps must reject deps == \
13949 vec![Dep(\"d\",\"^0.1\"), Dep(\"d\",\"^0.2\")] with \
13950 DuplicateNome {{ nome: \"d\", list: \":deps\" }} — the \
13951 accessor and the validate gate must route through the \
13952 same substrate-primitive typed dispatch on the :deps \
13953 within-list duplicate arm (got {err:?})",
13954 );
13955 let c = caixa_with_deps(vec![Dep::simple("d", "^0.1")]);
13956 assert!(
13957 c.validate_deps().is_ok(),
13958 "validate_deps must accept deps == vec![Dep(\"d\",\"^0.1\")] \
13959 (the canonical single-entry form)",
13960 );
13961 }
13962
13963 #[test]
13964 fn deps_projects_slice_by_borrow() {
13965 // The by-borrow pin: [`Caixa::deps`] returns `&[Dep]` by borrow
13966 // — the returned slice borrows the underlying `Vec<Dep>` storage
13967 // of the `:deps` slot and the accessor must not clone the
13968 // backing `Vec` on every call. Peer of the per-`Caixa`
13969 // `autores_projects_slice_by_borrow` (b5d813f),
13970 // `etiquetas_projects_slice_by_borrow` (78c7d3c),
13971 // `bibliotecas_projects_slice_by_borrow` (8a36c23),
13972 // `exe_projects_slice_by_borrow` (65d9527), and
13973 // `servicos_projects_slice_by_borrow` (611f78b) by-borrow pins
13974 // on the sibling outer top-level [`Caixa`] `&[String]`-return
13975 // axes — the accessor's returned slice must borrow from `&self`
13976 // (the returned reference's lifetime is tied to `&self`), and
13977 // calling the accessor twice on the same [`Caixa`] must yield
13978 // slices that are pointer-equal (the underlying byte-buffer is
13979 // the storage `Vec`'s allocation, not a fresh copy) as well as
13980 // value-equal (idempotent, no side effects on `&self`).
13981 //
13982 // Pins against a future silent detour that returned an owned
13983 // `Vec<Dep>` (which would type-check but silently clone on
13984 // every call), a `&Vec<Dep>` return (which would leak the
13985 // backing `Vec`'s grow/push/reserve surface no downstream
13986 // consumer reaches for), or a one-arm-only accessor that
13987 // returned a saturating value on some sentinel input.
13988 for deps in [
13989 vec![],
13990 vec![Dep::simple("caixa-teia", "^0.1")],
13991 vec![
13992 Dep::simple("caixa-teia", "^0.1"),
13993 Dep::simple("caixa-core", "^0.1"),
13994 ],
13995 ] {
13996 let c = caixa_with_deps(deps.clone());
13997 let first = c.deps();
13998 let second = c.deps();
13999 assert_eq!(
14000 first, second,
14001 "Caixa::deps must be idempotent — two successive calls \
14002 on the same &self must return the same &[Dep]",
14003 );
14004 assert_eq!(
14005 first.as_ptr(),
14006 second.as_ptr(),
14007 "Caixa::deps must borrow the underlying Vec<Dep> \
14008 storage — two successive calls must return slices \
14009 with the same backing pointer (a fresh Vec<Dep> clone \
14010 would change the pointer on every call)",
14011 );
14012 assert_eq!(
14013 first,
14014 deps.as_slice(),
14015 "Caixa::deps must return :deps verbatim by borrow — \
14016 got {first:?}, expected {deps:?}",
14017 );
14018 }
14019 }
14020
14021 // ── Caixa::deps_dev — outer top-level &[Dep] slice accessor ──────
14022
14023 fn caixa_with_deps_dev(deps_dev: Vec<Dep>) -> Caixa {
14024 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
14025 c.deps_dev = deps_dev;
14026 c
14027 }
14028
14029 #[test]
14030 fn deps_dev_returns_deps_dev_slice_verbatim_across_permutations() {
14031 // The canonical per-`Caixa` `:deps-dev` universal-axis dev-only-
14032 // dependency-declaration-list slice pin: [`Caixa::deps_dev`]
14033 // must return the `:deps-dev` typed [`Vec<Dep>`] list verbatim as
14034 // a `&[Dep]`, element-equal to the raw `self.deps_dev.as_slice()`
14035 // access across every representative value in the accept-set —
14036 // `[]` (the "no dev deps declared" arm every existing fixture
14037 // without a `:deps-dev` line carries; the [`Caixa::template`]
14038 // scaffold emits `:deps-dev ()`), a canonical single-entry list
14039 // (the shape most consumer caixas carry — a `tatara-check` dev
14040 // pin), a canonical two-entry list (the multi-dev-dep closure),
14041 // and two past-the-guard sentinels — a `[""]`-`:nome` entry
14042 // ([`Self::validate_deps`] rejects through `NomeEmpty` /
14043 // `NomeInvalid` but the accessor must ship the raw slot
14044 // verbatim) and a `[a, a]` duplicate (validate rejects through
14045 // `DuplicateNome { list: ":deps-dev" }` but the accessor must
14046 // ship the raw slot verbatim so struct-literal fixtures continue
14047 // to expose the duplicate at the accessor).
14048 //
14049 // Second outer top-level [`Caixa`] `&[Dep]`-return slice-accessor
14050 // pin on the substrate primitive — closes the outer-`Caixa`
14051 // dependency-slot `&[Dep]` sub-family the sibling
14052 // `deps_returns_deps_slice_verbatim_across_permutations`
14053 // (ad34b4e) opened on. Folds the "outer [`Caixa`] `&[Dep]`
14054 // slice" projection pattern onto the sibling dev-dep axis —
14055 // pins against a future silent detour that returned an owned
14056 // `Vec<Dep>` (which would type-check but silently clone on every
14057 // accessor call, breaking the zero-cost projection every peer
14058 // sibling slice accessor carries), a `[""] → []` collapse (which
14059 // would silently absorb the `NomeEmpty` refusal case at the
14060 // accessor boundary), or a `[a, a] → [a]` dedup collapse (which
14061 // would silently absorb the `DuplicateNome` refusal case at the
14062 // accessor boundary).
14063 for deps_dev in [
14064 vec![],
14065 vec![Dep::simple("", "^0.1")],
14066 vec![Dep::simple("tatara-check", "^0.1")],
14067 vec![
14068 Dep::simple("tatara-check", "^0.1"),
14069 Dep::simple("caixa-lint", "^0.1"),
14070 ],
14071 vec![
14072 Dep::simple("tatara-check", "^0.1"),
14073 Dep::simple("tatara-check", "^0.2"),
14074 ],
14075 ] {
14076 let c = caixa_with_deps_dev(deps_dev.clone());
14077 assert_eq!(
14078 c.deps_dev(),
14079 deps_dev.as_slice(),
14080 "Caixa::deps_dev must return :deps-dev verbatim (got \
14081 {:?}, expected {deps_dev:?})",
14082 c.deps_dev(),
14083 );
14084 assert_eq!(
14085 c.deps_dev(),
14086 c.deps_dev.as_slice(),
14087 "Caixa::deps_dev must element-equal the raw \
14088 `self.deps_dev.as_slice()` field access across every \
14089 value in the Vec<Dep> accept-set",
14090 );
14091 }
14092 }
14093
14094 #[test]
14095 fn validate_deps_duplicate_deps_dev_arm_routes_through_accessor() {
14096 // Composition pin: [`Caixa::validate_deps`]'s within-`:deps-dev`
14097 // duplicate-`:nome` gate must key off [`Caixa::deps_dev`], not
14098 // the raw `&self.deps_dev` field-borrow walk. Structurally: a
14099 // `Caixa { deps_dev: vec![Dep::simple("d", "^0.1"),
14100 // Dep::simple("d", "^0.2")], .. }` must surface the
14101 // `DuplicateNome { list: ":deps-dev" }` refusal exactly, and a
14102 // `Caixa { deps_dev: vec![Dep::simple("d", "^0.1")], .. }` (the
14103 // canonical single-entry form) must pass validate. The pair
14104 // jointly pins the accessor + validate-gate composition: any
14105 // future silent detour that had the accessor return a dedupped
14106 // slice on the `[a, a]` arm (a
14107 // `.iter().unique_by(|d| d.nome.as_str()).collect()` collapse)
14108 // would silently absorb the `DuplicateNome` refusal at the
14109 // accessor boundary and the validate gate would accept a
14110 // struct-literal `Caixa` carrying the drift — the composition
14111 // pin catches that at caixa-core build time.
14112 //
14113 // Peer of `validate_deps_duplicate_arm_routes_through_accessor`
14114 // (ad34b4e) on the sibling `:deps` axis — same "the validate
14115 // gate must route through the substrate-primitive typed
14116 // dispatch" discipline folded onto the sibling `:deps-dev`
14117 // axis, closing the two-list dep-graph composition-pin family.
14118 // The `:deps-dev` diagnostic must carry the
14119 // `DEP_AUTHOR_KEY_DEPS_DEV` list-tag (not
14120 // `DEP_AUTHOR_KEY_DEPS`) so the emitted error names the
14121 // offending list unambiguously.
14122 let c = caixa_with_deps_dev(vec![Dep::simple("d", "^0.1"), Dep::simple("d", "^0.2")]);
14123 let err = c.validate_deps().unwrap_err();
14124 assert!(
14125 matches!(
14126 err,
14127 DepError::DuplicateNome { ref nome, list } if nome == "d"
14128 && list == crate::render::DEP_AUTHOR_KEY_DEPS_DEV
14129 ),
14130 "validate_deps must reject deps_dev == \
14131 vec![Dep(\"d\",\"^0.1\"), Dep(\"d\",\"^0.2\")] with \
14132 DuplicateNome {{ nome: \"d\", list: \":deps-dev\" }} — the \
14133 accessor and the validate gate must route through the \
14134 same substrate-primitive typed dispatch on the :deps-dev \
14135 within-list duplicate arm (got {err:?})",
14136 );
14137 let c = caixa_with_deps_dev(vec![Dep::simple("d", "^0.1")]);
14138 assert!(
14139 c.validate_deps().is_ok(),
14140 "validate_deps must accept deps_dev == \
14141 vec![Dep(\"d\",\"^0.1\")] (the canonical single-entry form)",
14142 );
14143 }
14144
14145 #[test]
14146 fn deps_dev_projects_slice_by_borrow() {
14147 // The by-borrow pin: [`Caixa::deps_dev`] returns `&[Dep]` by
14148 // borrow — the returned slice borrows the underlying `Vec<Dep>`
14149 // storage of the `:deps-dev` slot and the accessor must not
14150 // clone the backing `Vec` on every call. Peer of
14151 // `deps_projects_slice_by_borrow` (ad34b4e) on the sibling
14152 // `:deps` axis, and of the per-`Caixa`
14153 // `autores_projects_slice_by_borrow` (b5d813f),
14154 // `etiquetas_projects_slice_by_borrow` (78c7d3c),
14155 // `bibliotecas_projects_slice_by_borrow` (8a36c23),
14156 // `exe_projects_slice_by_borrow` (65d9527), and
14157 // `servicos_projects_slice_by_borrow` (611f78b) by-borrow pins
14158 // on the sibling outer top-level [`Caixa`] `&[String]`-return
14159 // axes — the accessor's returned slice must borrow from `&self`
14160 // (the returned reference's lifetime is tied to `&self`), and
14161 // calling the accessor twice on the same [`Caixa`] must yield
14162 // slices that are pointer-equal (the underlying byte-buffer is
14163 // the storage `Vec`'s allocation, not a fresh copy) as well as
14164 // value-equal (idempotent, no side effects on `&self`).
14165 //
14166 // Pins against a future silent detour that returned an owned
14167 // `Vec<Dep>` (which would type-check but silently clone on
14168 // every call), a `&Vec<Dep>` return (which would leak the
14169 // backing `Vec`'s grow/push/reserve surface no downstream
14170 // consumer reaches for), or a one-arm-only accessor that
14171 // returned a saturating value on some sentinel input.
14172 for deps_dev in [
14173 vec![],
14174 vec![Dep::simple("tatara-check", "^0.1")],
14175 vec![
14176 Dep::simple("tatara-check", "^0.1"),
14177 Dep::simple("caixa-lint", "^0.1"),
14178 ],
14179 ] {
14180 let c = caixa_with_deps_dev(deps_dev.clone());
14181 let first = c.deps_dev();
14182 let second = c.deps_dev();
14183 assert_eq!(
14184 first, second,
14185 "Caixa::deps_dev must be idempotent — two successive \
14186 calls on the same &self must return the same &[Dep]",
14187 );
14188 assert_eq!(
14189 first.as_ptr(),
14190 second.as_ptr(),
14191 "Caixa::deps_dev must borrow the underlying Vec<Dep> \
14192 storage — two successive calls must return slices \
14193 with the same backing pointer (a fresh Vec<Dep> clone \
14194 would change the pointer on every call)",
14195 );
14196 assert_eq!(
14197 first,
14198 deps_dev.as_slice(),
14199 "Caixa::deps_dev must return :deps-dev verbatim by \
14200 borrow — got {first:?}, expected {deps_dev:?}",
14201 );
14202 }
14203 }
14204
14205 // ── Caixa::limits — outer top-level Option<&LimitsSpec> composite-reference accessor ──
14206
14207 fn caixa_with_limits(limits: Option<crate::LimitsSpec>) -> Caixa {
14208 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
14209 c.limits = limits;
14210 c
14211 }
14212
14213 #[test]
14214 fn limits_returns_limits_option_ref_verbatim_across_permutations() {
14215 // The canonical per-`Caixa` `:limits` M2 typed-slot outer-
14216 // composite optional-composite-reference-shape pin:
14217 // [`Caixa::limits`] must return the `:limits` typed
14218 // `Option<LimitsSpec>` verbatim as an `Option<&LimitsSpec>`
14219 // reference over the same backing storage the raw
14220 // `self.limits.as_ref()` field access borrows from, byte-equal
14221 // across every representative fixture in the accept-set — the
14222 // author-omitted `None` shape (the "engine-default applies"
14223 // partition every downstream Servico M2 overlay emitter treats
14224 // as "emit nothing"), the empty-composite `Some(LimitsSpec {
14225 // .. default })` shape ([`LimitsSpec::is_empty`] holds — every
14226 // per-axis cap is `None`, so the peer M2 overlay emitter's
14227 // `.is_empty()`-gated projection still emits nothing but the
14228 // outer presence-bit is `Some`, so [`Caixa::declared_servico_slots`]
14229 // still pushes the `M2_AUTHOR_KEY_LIMITS` label), a single-axis
14230 // fixture (only `:memory` set — the canonical shape most
14231 // memory-heavy Servicos carry), and a fully-populated composite
14232 // (every per-axis cap set — the canonical shape a
14233 // sandboxed-by-default Servico carries).
14234 //
14235 // Pins against a future silent detour that returned a fresh-
14236 // cloned [`LimitsSpec`] copy (which would type-check via the
14237 // `Clone` impl but silently break every downstream caller that
14238 // relied on the reference sharing the composite's backing
14239 // identity), a reference to an operator-resolved overlay (the
14240 // future per-cluster `:limits-overrides` slot — its resolution
14241 // must land at exactly this accessor body, not silently divert
14242 // the raw slot away from a second consumer), a
14243 // `None` → `Some(LimitsSpec::default)` cluster-default
14244 // projection (which would collapse the load-bearing
14245 // "author-omitted `:limits` ⇒ engine-default applies" partition
14246 // the peer [`crate::render::servico_m2_overlay`] emitter and
14247 // the peer [`Caixa::declared_servico_slots`] enumerator both
14248 // read), or an axis-shuffled projection (a future detour that
14249 // swapped `memory` and `fuel` through the accessor would
14250 // silently split the paired [`crate::StandardLayout::verify`]
14251 // per-`:limits` shape gate's traversal input from the peer
14252 // `servico_m2_overlay` emitter's projection input).
14253 //
14254 // First outer top-level [`Caixa`] `Option<&Composite>`-return
14255 // composite-reference accessor pin on the substrate primitive
14256 // — opens the outer-`Caixa` `Option<&Composite>` composite-
14257 // reference projection pattern the sibling `:behavior`
14258 // [`crate::BehaviorSpec`] / `:politicas`
14259 // [`crate::aplicacao::MeshPolicy`] / `:placement`
14260 // [`crate::aplicacao::Placement`] / `:entrada`
14261 // [`crate::aplicacao::Entrada`] future outer-composite lifts
14262 // fold on. Peer of the closed M3 outer-composite family the
14263 // sibling [`crate::AplicacaoSpec::politicas`] (534dc21) /
14264 // [`crate::AplicacaoSpec::placement`] (9abb8f0) /
14265 // [`crate::AplicacaoSpec::entrada`] (d32111c) composite-
14266 // reference accessor pins already carry on the outer
14267 // [`crate::AplicacaoSpec`] altitude — extends the outer-
14268 // accessor byte-equal-projection discipline onto the outer
14269 // top-level [`Caixa`] M2 Servico-runtime slot altitude.
14270 use crate::LimitsSpec;
14271 use std::time::Duration;
14272 let fixtures: Vec<Option<LimitsSpec>> = vec![
14273 None,
14274 Some(LimitsSpec::default()),
14275 Some(LimitsSpec {
14276 memory: Some(64 * 1024 * 1024),
14277 ..Default::default()
14278 }),
14279 Some(LimitsSpec {
14280 memory: Some(64 * 1024 * 1024),
14281 fuel: Some(1_000_000),
14282 wall_clock: Some(Duration::from_secs(30)),
14283 cpu: Some(500),
14284 }),
14285 ];
14286 for limits in fixtures {
14287 let c = caixa_with_limits(limits.clone());
14288 assert_eq!(
14289 c.limits(),
14290 limits.as_ref(),
14291 "Caixa::limits must return :limits verbatim (got {:?}, \
14292 expected {:?})",
14293 c.limits(),
14294 limits.as_ref(),
14295 );
14296 match (c.limits(), c.limits.as_ref()) {
14297 (Some(a), Some(b)) => assert!(
14298 std::ptr::eq(a, b),
14299 "Caixa::limits accessor and self.limits.as_ref() \
14300 field access must borrow the same backing storage \
14301 — the accessor is the substrate-primitive typed \
14302 dispatch every downstream Servico-M2-overlay \
14303 composite consumer must route through, and a \
14304 reference-identity split would silently break \
14305 every consumer that relied on the borrow sharing \
14306 the composite's storage",
14307 ),
14308 (None, None) => {}
14309 _ => panic!(
14310 "Caixa::limits presence bit must byte-equal \
14311 self.limits.is_some() — a presence-bit drift would \
14312 silently split the paired StandardLayout::verify \
14313 per-`:limits` shape gate's traversal head from \
14314 the peer render::servico_m2_overlay M2 overlay \
14315 emitter's traversal head from the peer \
14316 Caixa::declared_servico_slots M2 declared-slot \
14317 enumerator's presence probe",
14318 ),
14319 }
14320 assert_eq!(
14321 c.limits().is_some(),
14322 c.limits.is_some(),
14323 "Caixa::limits().is_some() must byte-equal \
14324 self.limits.is_some() — a presence-bit drift would \
14325 silently split every downstream Option<&LimitsSpec> \
14326 consumer's partition on the engine-default arm",
14327 );
14328 }
14329 }
14330
14331 #[test]
14332 fn declared_servico_slots_limits_arm_routes_through_accessor() {
14333 // Composition pin: [`Caixa::declared_servico_slots`]'s
14334 // `:limits` presence-probe arm must key off [`Caixa::limits`],
14335 // not the raw `self.limits.is_some()` field-probe. Structurally:
14336 // a `Caixa { limits: Some(LimitsSpec::default()), .. }` must
14337 // still push `M2_AUTHOR_KEY_LIMITS` onto the declared-slot list
14338 // (the presence bit is `Some`, so the M2 kind-coherence gate
14339 // must surface the slot as "declared" even when every per-axis
14340 // cap is unset), and a `Caixa { limits: None, .. }` must NOT
14341 // push the label (the "author omitted the slot entirely"
14342 // partition). The pair jointly pins the accessor + declared-
14343 // slot enumerator composition: any future silent detour that
14344 // had the accessor collapse `Some(LimitsSpec::default())` to
14345 // `None` (a `.filter(|l| !l.is_empty())` projection) would
14346 // silently absorb the "declared but empty" arm at the
14347 // accessor boundary and the [`crate::LayoutError::ServicoSlotsOnNonServico`]
14348 // kind-coherence gate would silently accept a
14349 // struct-literal `Caixa` carrying the drift.
14350 //
14351 // Peer of the sibling per-`Caixa`
14352 // `validate_deps_duplicate_arm_routes_through_accessor` (ad34b4e)
14353 // and `validate_deps_duplicate_deps_dev_arm_routes_through_accessor`
14354 // (f7fd81e) accessor-composition pins on the sibling `:deps` /
14355 // `:deps-dev` outer-`&[Dep]`-composition axes — same "the
14356 // enumerator gate must route through the substrate-primitive
14357 // typed dispatch" discipline extended onto the outer top-level
14358 // [`Caixa`] `Option<&LimitsSpec>`-composition surface, opening
14359 // the outer-`Caixa` M2 Servico-runtime-slot arm of the
14360 // composition-pin family.
14361 use crate::LimitsSpec;
14362 let c = caixa_with_limits(Some(LimitsSpec::default()));
14363 let slots = c.declared_servico_slots();
14364 assert!(
14365 slots.contains(&crate::render::M2_AUTHOR_KEY_LIMITS),
14366 "declared_servico_slots must push M2_AUTHOR_KEY_LIMITS \
14367 when `:limits` is Some (even for LimitsSpec::default()) \
14368 — the accessor and the enumerator gate must route through \
14369 the same substrate-primitive typed dispatch on the outer \
14370 :limits presence bit (got slots={slots:?})",
14371 );
14372 let c = caixa_with_limits(None);
14373 let slots = c.declared_servico_slots();
14374 assert!(
14375 !slots.contains(&crate::render::M2_AUTHOR_KEY_LIMITS),
14376 "declared_servico_slots must NOT push M2_AUTHOR_KEY_LIMITS \
14377 when `:limits` is None — the author-omitted arm must \
14378 route through the accessor's None-return unchanged (got \
14379 slots={slots:?})",
14380 );
14381 }
14382
14383 #[test]
14384 fn servico_m2_overlay_limits_arm_routes_through_accessor() {
14385 // Composition pin: [`crate::render::servico_m2_overlay`]'s
14386 // per-`:limits` M2 overlay emit arm must key off
14387 // [`Caixa::limits`], not the raw `&caixa.limits` field-borrow.
14388 // Structurally: a `Caixa { limits: Some(LimitsSpec { memory:
14389 // Some(64 MiB), .. default }), .. }` must surface the
14390 // `M2_KEY_LIMITS` key with the per-axis
14391 // `memory: "64MiB"` sub-mapping in the overlay, a `Caixa {
14392 // limits: Some(LimitsSpec::default()), .. }` must omit the
14393 // key entirely (the `.is_empty()`-gated inner arm elides an
14394 // empty composite even when the outer presence bit is `Some`),
14395 // and a `Caixa { limits: None, .. }` must also omit the key
14396 // (the "author omitted the slot entirely" partition). The
14397 // three-fixture family jointly pins the accessor + M2 overlay
14398 // emitter composition: any future silent detour that had the
14399 // accessor return a fresh-cloned copy on the `Some` arm (a
14400 // `LimitsSpec::clone()` projection) would silently break the
14401 // reference-identity pin the peer per-axis
14402 // `serde_yaml::to_value(limits)` projection reads from.
14403 use crate::LimitsSpec;
14404 use crate::render::{M2_KEY_LIMITS, servico_m2_overlay};
14405 let c = caixa_with_limits(Some(LimitsSpec {
14406 memory: Some(64 * 1024 * 1024),
14407 ..Default::default()
14408 }));
14409 let overlay = servico_m2_overlay(&c).unwrap();
14410 assert!(
14411 overlay.contains_key(M2_KEY_LIMITS),
14412 "servico_m2_overlay must surface M2_KEY_LIMITS when \
14413 `:limits` carries a non-empty composite — the accessor \
14414 and the M2 overlay emitter must route through the same \
14415 substrate-primitive typed dispatch on the outer :limits \
14416 composite (got overlay={overlay:?})",
14417 );
14418 let c = caixa_with_limits(Some(LimitsSpec::default()));
14419 let overlay = servico_m2_overlay(&c).unwrap();
14420 assert!(
14421 !overlay.contains_key(M2_KEY_LIMITS),
14422 "servico_m2_overlay must omit M2_KEY_LIMITS when \
14423 `:limits` is Some(LimitsSpec::default()) — the empty \
14424 composite's `.is_empty()`-gated inner arm must elide \
14425 the key regardless of the outer presence bit (got \
14426 overlay={overlay:?})",
14427 );
14428 let c = caixa_with_limits(None);
14429 let overlay = servico_m2_overlay(&c).unwrap();
14430 assert!(
14431 !overlay.contains_key(M2_KEY_LIMITS),
14432 "servico_m2_overlay must omit M2_KEY_LIMITS when \
14433 `:limits` is None — the author-omitted arm must route \
14434 through the accessor's None-return unchanged (got \
14435 overlay={overlay:?})",
14436 );
14437 }
14438
14439 #[test]
14440 fn limits_projects_option_ref_by_borrow() {
14441 // The by-borrow pin: [`Caixa::limits`] returns
14442 // `Option<&LimitsSpec>` by borrow — the returned reference
14443 // borrows the underlying `Option<LimitsSpec>` storage of the
14444 // `:limits` slot and the accessor must not clone the backing
14445 // composite on every call. Peer of the sibling
14446 // `deps_projects_slice_by_borrow` (ad34b4e) /
14447 // `deps_dev_projects_slice_by_borrow` (f7fd81e) by-borrow pins
14448 // on the outer top-level [`Caixa`] `&[Dep]`-return axes —
14449 // extended here to the outer [`Caixa`] `Option<&Composite>`-
14450 // return axis: the accessor's returned reference must borrow
14451 // from `&self` (the returned reference's lifetime is tied to
14452 // `&self`), and calling the accessor twice on the same
14453 // [`Caixa`] must yield references that are pointer-equal (the
14454 // underlying byte-buffer is the storage `LimitsSpec`'s
14455 // allocation, not a fresh copy) as well as value-equal
14456 // (idempotent, no side effects on `&self`).
14457 //
14458 // Pins against a future silent detour that returned an owned
14459 // `LimitsSpec` (which would type-check via the `Clone` impl
14460 // but silently clone on every call), a `&LimitsSpec` panic-
14461 // return on the `None` arm (which would collapse the load-
14462 // bearing `Option` presence-bit into a runtime panic), or a
14463 // one-arm-only accessor that returned a saturating composite
14464 // on some sentinel input.
14465 use crate::LimitsSpec;
14466 use std::time::Duration;
14467 for limits in [
14468 Some(LimitsSpec::default()),
14469 Some(LimitsSpec {
14470 memory: Some(64 * 1024 * 1024),
14471 fuel: Some(1_000_000),
14472 wall_clock: Some(Duration::from_secs(30)),
14473 cpu: Some(500),
14474 }),
14475 ] {
14476 let c = caixa_with_limits(limits.clone());
14477 let first = c.limits().unwrap();
14478 let second = c.limits().unwrap();
14479 assert_eq!(
14480 first, second,
14481 "Caixa::limits must be idempotent — two successive \
14482 calls on the same &self must return the same \
14483 &LimitsSpec",
14484 );
14485 assert!(
14486 std::ptr::eq(first, second),
14487 "Caixa::limits must borrow the underlying \
14488 Option<LimitsSpec> storage — two successive calls \
14489 must return references with the same backing pointer \
14490 (a fresh LimitsSpec clone would change the pointer \
14491 on every call)",
14492 );
14493 assert_eq!(
14494 Some(first),
14495 limits.as_ref(),
14496 "Caixa::limits must return :limits verbatim by borrow \
14497 — got {first:?}, expected {:?}",
14498 limits.as_ref(),
14499 );
14500 }
14501 let c = caixa_with_limits(None);
14502 assert!(
14503 c.limits().is_none(),
14504 "Caixa::limits must return None when :limits is absent — \
14505 the author-omitted arm must project through the \
14506 accessor's Option::None unchanged",
14507 );
14508 }
14509
14510 // ── Caixa::behavior — outer top-level Option<&BehaviorSpec> composite-reference accessor ──
14511
14512 fn caixa_with_behavior(behavior: Option<crate::BehaviorSpec>) -> Caixa {
14513 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
14514 c.behavior = behavior;
14515 c
14516 }
14517
14518 #[test]
14519 fn behavior_returns_behavior_option_ref_verbatim_across_permutations() {
14520 // The canonical per-`Caixa` `:behavior` M2 typed-slot outer-
14521 // composite optional-composite-reference-shape pin:
14522 // [`Caixa::behavior`] must return the `:behavior` typed
14523 // `Option<BehaviorSpec>` verbatim as an `Option<&BehaviorSpec>`
14524 // reference over the same backing storage the raw
14525 // `self.behavior.as_ref()` field access borrows from, byte-equal
14526 // across every representative fixture in the accept-set — the
14527 // author-omitted `None` shape (the "runtime-default applies"
14528 // partition every downstream Servico M2 overlay emitter treats
14529 // as "emit nothing"), the empty-composite `Some(BehaviorSpec {
14530 // .. default })` shape ([`BehaviorSpec::is_empty`] holds —
14531 // every per-callback path is `None`, so the peer M2 overlay
14532 // emitter's `.is_empty()`-gated projection still emits nothing
14533 // but the outer presence-bit is `Some`, so
14534 // [`Caixa::declared_servico_slots`] still pushes the
14535 // `M2_AUTHOR_KEY_BEHAVIOR` label), a single-callback fixture
14536 // (only `:on-state-change` set — the canonical shape a caixa
14537 // that only wires the hot-upgrade migration path carries), and
14538 // a fully-populated composite (every per-callback path set —
14539 // the canonical shape a fully-instrumented gen_server-shaped
14540 // Servico carries).
14541 //
14542 // Peer of the sibling
14543 // `limits_returns_limits_option_ref_verbatim_across_permutations`
14544 // (b2bd9d7) opening fixture-family + reference-identity +
14545 // presence-bit tetrad pin on the outer top-level [`Caixa`]
14546 // `Option<&Composite>`-return sub-family — extended here to the
14547 // second axis of that sub-family so both of the currently-lifted
14548 // M2 Servico-runtime `Option<&Composite>` slots (`:limits` /
14549 // `:behavior`) carry the same "byte-equal, borrow-shared,
14550 // presence-bit-preserved" outer-accessor discipline.
14551 //
14552 // Pins against a future silent detour that returned a fresh-
14553 // cloned [`crate::BehaviorSpec`] copy (which would type-check
14554 // via the `Clone` impl but silently break every downstream
14555 // caller that relied on the reference sharing the composite's
14556 // backing identity), a reference to an operator-resolved
14557 // overlay (a future per-cluster `:behavior-overrides` slot —
14558 // its resolution must land at exactly this accessor body, not
14559 // silently divert the raw slot away from a second consumer), a
14560 // `None` → `Some(BehaviorSpec::default)` cluster-default
14561 // projection (which would collapse the load-bearing
14562 // "author-omitted `:behavior` ⇒ runtime-default applies"
14563 // partition the peer [`crate::render::servico_m2_overlay`]
14564 // emitter, the peer [`Caixa::declared_servico_slots`]
14565 // enumerator, and the cross-slot
14566 // [`crate::upgrade::validate_upgrade_from_against_behavior`]
14567 // gate all read), or a callback-shuffled projection (a future
14568 // detour that swapped `on_init` and `on_terminate` through the
14569 // accessor would silently split the paired
14570 // [`crate::StandardLayout::verify`] per-`:behavior` shape gate's
14571 // traversal input from the peer `servico_m2_overlay` emitter's
14572 // projection input from the cross-slot `:state-change`
14573 // composition gate's traversal input).
14574 use crate::BehaviorSpec;
14575 use std::path::PathBuf;
14576 let fixtures: Vec<Option<BehaviorSpec>> = vec![
14577 None,
14578 Some(BehaviorSpec::default()),
14579 Some(BehaviorSpec {
14580 on_state_change: Some(PathBuf::from("lib/migrations.lisp")),
14581 ..Default::default()
14582 }),
14583 Some(BehaviorSpec {
14584 on_init: Some(PathBuf::from("lib/init.lisp")),
14585 on_call: Some(PathBuf::from("lib/handlers.lisp")),
14586 on_cast: Some(PathBuf::from("lib/handlers.lisp")),
14587 on_info: Some(PathBuf::from("lib/handlers.lisp")),
14588 on_state_change: Some(PathBuf::from("lib/migrations.lisp")),
14589 on_terminate: Some(PathBuf::from("lib/cleanup.lisp")),
14590 }),
14591 ];
14592 for behavior in fixtures {
14593 let c = caixa_with_behavior(behavior.clone());
14594 assert_eq!(
14595 c.behavior(),
14596 behavior.as_ref(),
14597 "Caixa::behavior must return :behavior verbatim (got \
14598 {:?}, expected {:?})",
14599 c.behavior(),
14600 behavior.as_ref(),
14601 );
14602 match (c.behavior(), c.behavior.as_ref()) {
14603 (Some(a), Some(b)) => assert!(
14604 std::ptr::eq(a, b),
14605 "Caixa::behavior accessor and self.behavior.as_ref() \
14606 field access must borrow the same backing storage \
14607 — the accessor is the substrate-primitive typed \
14608 dispatch every downstream Servico-M2-overlay \
14609 composite consumer must route through, and a \
14610 reference-identity split would silently break \
14611 every consumer that relied on the borrow sharing \
14612 the composite's storage",
14613 ),
14614 (None, None) => {}
14615 _ => panic!(
14616 "Caixa::behavior presence bit must byte-equal \
14617 self.behavior.is_some() — a presence-bit drift \
14618 would silently split the paired \
14619 StandardLayout::verify per-`:behavior` shape \
14620 gate's traversal head from the peer \
14621 render::servico_m2_overlay M2 overlay emitter's \
14622 traversal head from the cross-slot \
14623 validate_upgrade_from_against_behavior \
14624 composition gate's traversal head from the peer \
14625 Caixa::declared_servico_slots M2 declared-slot \
14626 enumerator's presence probe",
14627 ),
14628 }
14629 assert_eq!(
14630 c.behavior().is_some(),
14631 c.behavior.is_some(),
14632 "Caixa::behavior().is_some() must byte-equal \
14633 self.behavior.is_some() — a presence-bit drift would \
14634 silently split every downstream Option<&BehaviorSpec> \
14635 consumer's partition on the runtime-default arm",
14636 );
14637 }
14638 }
14639
14640 #[test]
14641 fn declared_servico_slots_behavior_arm_routes_through_accessor() {
14642 // Composition pin: [`Caixa::declared_servico_slots`]'s
14643 // `:behavior` presence-probe arm must key off
14644 // [`Caixa::behavior`], not the raw `self.behavior.is_some()`
14645 // field-probe. Structurally: a `Caixa { behavior:
14646 // Some(BehaviorSpec::default()), .. }` must still push
14647 // `M2_AUTHOR_KEY_BEHAVIOR` onto the declared-slot list (the
14648 // presence bit is `Some`, so the M2 kind-coherence gate must
14649 // surface the slot as "declared" even when every per-callback
14650 // path is unset), and a `Caixa { behavior: None, .. }` must
14651 // NOT push the label (the "author omitted the slot entirely"
14652 // partition). The pair jointly pins the accessor + declared-
14653 // slot enumerator composition: any future silent detour that
14654 // had the accessor collapse `Some(BehaviorSpec::default())`
14655 // to `None` (a `.filter(|b| !b.is_empty())` projection) would
14656 // silently absorb the "declared but empty" arm at the
14657 // accessor boundary and the
14658 // [`crate::LayoutError::ServicoSlotsOnNonServico`]
14659 // kind-coherence gate would silently accept a struct-literal
14660 // `Caixa` carrying the drift.
14661 //
14662 // Peer of the sibling
14663 // `declared_servico_slots_limits_arm_routes_through_accessor`
14664 // (b2bd9d7) composition pin on the sibling `:limits` outer-
14665 // `Option<&LimitsSpec>` arm of the same
14666 // [`Caixa::declared_servico_slots`] M2 declared-slot
14667 // enumerator's traversal — same "the enumerator gate must
14668 // route through the substrate-primitive typed dispatch"
14669 // discipline extended onto the outer top-level [`Caixa`]
14670 // `Option<&BehaviorSpec>`-composition surface.
14671 use crate::BehaviorSpec;
14672 let c = caixa_with_behavior(Some(BehaviorSpec::default()));
14673 let slots = c.declared_servico_slots();
14674 assert!(
14675 slots.contains(&crate::render::M2_AUTHOR_KEY_BEHAVIOR),
14676 "declared_servico_slots must push M2_AUTHOR_KEY_BEHAVIOR \
14677 when `:behavior` is Some (even for BehaviorSpec::default()) \
14678 — the accessor and the enumerator gate must route through \
14679 the same substrate-primitive typed dispatch on the outer \
14680 :behavior presence bit (got slots={slots:?})",
14681 );
14682 let c = caixa_with_behavior(None);
14683 let slots = c.declared_servico_slots();
14684 assert!(
14685 !slots.contains(&crate::render::M2_AUTHOR_KEY_BEHAVIOR),
14686 "declared_servico_slots must NOT push M2_AUTHOR_KEY_BEHAVIOR \
14687 when `:behavior` is None — the author-omitted arm must \
14688 route through the accessor's None-return unchanged (got \
14689 slots={slots:?})",
14690 );
14691 }
14692
14693 #[test]
14694 fn servico_m2_overlay_behavior_arm_routes_through_accessor() {
14695 // Composition pin: [`crate::render::servico_m2_overlay`]'s
14696 // per-`:behavior` M2 overlay emit arm must key off
14697 // [`Caixa::behavior`], not the raw `&caixa.behavior`
14698 // field-borrow. Structurally: a `Caixa { behavior:
14699 // Some(BehaviorSpec { on_state_change: Some(...), .. default
14700 // }), .. }` must surface the `M2_KEY_BEHAVIOR` key with the
14701 // per-callback `onStateChange` sub-mapping in the overlay, a
14702 // `Caixa { behavior: Some(BehaviorSpec::default()), .. }`
14703 // must omit the key entirely (the `.is_empty()`-gated inner
14704 // arm elides an empty composite even when the outer presence
14705 // bit is `Some`), and a `Caixa { behavior: None, .. }` must
14706 // also omit the key (the "author omitted the slot entirely"
14707 // partition). The three-fixture family jointly pins the
14708 // accessor + M2 overlay emitter composition: any future
14709 // silent detour that had the accessor return a fresh-cloned
14710 // copy on the `Some` arm (a `BehaviorSpec::clone()`
14711 // projection) would silently break the reference-identity
14712 // pin the peer per-callback `serde_yaml::to_value(behavior)`
14713 // projection reads from.
14714 //
14715 // Peer of the sibling
14716 // `servico_m2_overlay_limits_arm_routes_through_accessor`
14717 // (b2bd9d7) composition pin on the sibling `:limits` outer-
14718 // `Option<&LimitsSpec>` arm of the same
14719 // [`crate::render::servico_m2_overlay`] M2 overlay emitter's
14720 // traversal — same "the emitter must route through the
14721 // substrate-primitive typed dispatch on the outer composite"
14722 // discipline extended onto the outer top-level [`Caixa`]
14723 // `Option<&BehaviorSpec>`-composition surface.
14724 use crate::BehaviorSpec;
14725 use crate::render::{M2_KEY_BEHAVIOR, servico_m2_overlay};
14726 use std::path::PathBuf;
14727 let c = caixa_with_behavior(Some(BehaviorSpec {
14728 on_state_change: Some(PathBuf::from("lib/migrations.lisp")),
14729 ..Default::default()
14730 }));
14731 let overlay = servico_m2_overlay(&c).unwrap();
14732 assert!(
14733 overlay.contains_key(M2_KEY_BEHAVIOR),
14734 "servico_m2_overlay must surface M2_KEY_BEHAVIOR when \
14735 `:behavior` carries a non-empty composite — the accessor \
14736 and the M2 overlay emitter must route through the same \
14737 substrate-primitive typed dispatch on the outer :behavior \
14738 composite (got overlay={overlay:?})",
14739 );
14740 let c = caixa_with_behavior(Some(BehaviorSpec::default()));
14741 let overlay = servico_m2_overlay(&c).unwrap();
14742 assert!(
14743 !overlay.contains_key(M2_KEY_BEHAVIOR),
14744 "servico_m2_overlay must omit M2_KEY_BEHAVIOR when \
14745 `:behavior` is Some(BehaviorSpec::default()) — the empty \
14746 composite's `.is_empty()`-gated inner arm must elide the \
14747 key regardless of the outer presence bit (got \
14748 overlay={overlay:?})",
14749 );
14750 let c = caixa_with_behavior(None);
14751 let overlay = servico_m2_overlay(&c).unwrap();
14752 assert!(
14753 !overlay.contains_key(M2_KEY_BEHAVIOR),
14754 "servico_m2_overlay must omit M2_KEY_BEHAVIOR when \
14755 `:behavior` is None — the author-omitted arm must route \
14756 through the accessor's None-return unchanged (got \
14757 overlay={overlay:?})",
14758 );
14759 }
14760
14761 #[test]
14762 fn behavior_projects_option_ref_by_borrow() {
14763 // The by-borrow pin: [`Caixa::behavior`] returns
14764 // `Option<&BehaviorSpec>` by borrow — the returned reference
14765 // borrows the underlying `Option<BehaviorSpec>` storage of the
14766 // `:behavior` slot and the accessor must not clone the backing
14767 // composite on every call. Peer of the sibling
14768 // `limits_projects_option_ref_by_borrow` (b2bd9d7) by-borrow
14769 // pin on the outer top-level [`Caixa`] `Option<&Composite>`-
14770 // return sub-family — extended here to the second axis of the
14771 // same sub-family: the accessor's returned reference must
14772 // borrow from `&self` (the returned reference's lifetime is
14773 // tied to `&self`), and calling the accessor twice on the same
14774 // [`Caixa`] must yield references that are pointer-equal (the
14775 // underlying byte-buffer is the storage `BehaviorSpec`'s
14776 // allocation, not a fresh copy) as well as value-equal
14777 // (idempotent, no side effects on `&self`).
14778 //
14779 // Pins against a future silent detour that returned an owned
14780 // `BehaviorSpec` (which would type-check via the `Clone` impl
14781 // but silently clone on every call), a `&BehaviorSpec` panic-
14782 // return on the `None` arm (which would collapse the load-
14783 // bearing `Option` presence-bit into a runtime panic), or a
14784 // one-arm-only accessor that returned a saturating composite
14785 // on some sentinel input.
14786 use crate::BehaviorSpec;
14787 use std::path::PathBuf;
14788 for behavior in [
14789 Some(BehaviorSpec::default()),
14790 Some(BehaviorSpec {
14791 on_init: Some(PathBuf::from("lib/init.lisp")),
14792 on_call: Some(PathBuf::from("lib/handlers.lisp")),
14793 on_cast: Some(PathBuf::from("lib/handlers.lisp")),
14794 on_info: Some(PathBuf::from("lib/handlers.lisp")),
14795 on_state_change: Some(PathBuf::from("lib/migrations.lisp")),
14796 on_terminate: Some(PathBuf::from("lib/cleanup.lisp")),
14797 }),
14798 ] {
14799 let c = caixa_with_behavior(behavior.clone());
14800 let first = c.behavior().unwrap();
14801 let second = c.behavior().unwrap();
14802 assert_eq!(
14803 first, second,
14804 "Caixa::behavior must be idempotent — two successive \
14805 calls on the same &self must return the same \
14806 &BehaviorSpec",
14807 );
14808 assert!(
14809 std::ptr::eq(first, second),
14810 "Caixa::behavior must borrow the underlying \
14811 Option<BehaviorSpec> storage — two successive calls \
14812 must return references with the same backing pointer \
14813 (a fresh BehaviorSpec clone would change the pointer \
14814 on every call)",
14815 );
14816 assert_eq!(
14817 Some(first),
14818 behavior.as_ref(),
14819 "Caixa::behavior must return :behavior verbatim by \
14820 borrow — got {first:?}, expected {:?}",
14821 behavior.as_ref(),
14822 );
14823 }
14824 let c = caixa_with_behavior(None);
14825 assert!(
14826 c.behavior().is_none(),
14827 "Caixa::behavior must return None when :behavior is absent \
14828 — the author-omitted arm must project through the \
14829 accessor's Option::None unchanged",
14830 );
14831 }
14832
14833 // ── Caixa::politicas — outer top-level Option<&MeshPolicy> composite-reference accessor ──
14834
14835 fn caixa_aplicacao_with_politicas(politicas: Option<crate::aplicacao::MeshPolicy>) -> Caixa {
14836 use crate::aplicacao::{Membro, WitContract};
14837 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
14838 c.kind = CaixaKind::Aplicacao;
14839 c.membros = vec![Membro {
14840 caixa: "a".into(),
14841 versao: "^0.1".into(),
14842 }];
14843 c.contratos = vec![WitContract {
14844 de: "a".into(),
14845 para: "a".into(),
14846 wit: "wasi:http/proxy".into(),
14847 endpoint: Some("/x".into()),
14848 subject: None,
14849 slot: None,
14850 }];
14851 c.politicas = politicas;
14852 c
14853 }
14854
14855 #[test]
14856 fn politicas_returns_politicas_option_ref_verbatim_across_permutations() {
14857 // The canonical per-`Caixa` `:politicas` M3 mesh-slot outer-
14858 // composite optional-composite-reference-shape pin:
14859 // [`Caixa::politicas`] must return the `:politicas` typed
14860 // `Option<MeshPolicy>` verbatim as an `Option<&MeshPolicy>`
14861 // reference over the same backing storage the raw
14862 // `self.politicas.as_ref()` field access borrows from,
14863 // byte-equal across every representative fixture in the
14864 // accept-set — the author-omitted `None` shape (the "cluster-
14865 // default applies" partition every downstream mesh-artifact
14866 // emitter treats as "emit no `:politicas` overlay"), the
14867 // empty-composite `Some(MeshPolicy { .. default })` shape
14868 // ([`crate::aplicacao::MeshPolicy::is_empty`] holds — every
14869 // per-axis mesh-policy scalar is `None`, so the peer inner
14870 // [`crate::AplicacaoSpec::politicas`] `.is_empty()`-gated
14871 // caixa-mesh overlay elides every per-axis emit but the outer
14872 // presence-bit is `Some`, so [`Caixa::declared_mesh_slots`]
14873 // still pushes the `M3_AUTHOR_KEY_POLITICAS` label), a
14874 // single-axis fixture (only `:timeout` set — the canonical
14875 // shape a latency-sensitive Aplicacao carries), and a
14876 // fully-populated composite (every per-axis mesh-policy
14877 // scalar set — the canonical shape a fully-governed
14878 // Aplicacao carries).
14879 //
14880 // Pins against a future silent detour that returned a fresh-
14881 // cloned [`crate::aplicacao::MeshPolicy`] copy (which would
14882 // type-check via the `Clone` impl but silently break every
14883 // downstream caller that relied on the reference sharing the
14884 // composite's backing identity), a reference to an operator-
14885 // resolved overlay (the future per-cluster
14886 // `:politicas-overrides` slot — its resolution must land at
14887 // exactly this accessor body, not silently divert the raw
14888 // slot away from the peer [`Caixa::declared_mesh_slots`]
14889 // enumerator's presence probe), a
14890 // `None` → `Some(MeshPolicy::default)` cluster-default
14891 // projection (which would collapse the load-bearing
14892 // "author-omitted `:politicas` ⇒ cluster-default applies"
14893 // partition the peer [`Caixa::declared_mesh_slots`]
14894 // enumerator and the peer [`Caixa::aplicacao_view`]
14895 // Aplicacao-composition seed both read), or an axis-shuffled
14896 // projection (a future detour that swapped `timeout` and
14897 // `retries` through the accessor would silently split the
14898 // paired [`Caixa::aplicacao_view`] seed's fold input from the
14899 // sibling M3 mesh-artifact emitter's projection input).
14900 //
14901 // Third outer top-level [`Caixa`] `Option<&Composite>`-return
14902 // composite-reference accessor pin on the substrate primitive
14903 // — peer of the sibling
14904 // `limits_returns_limits_option_ref_verbatim_across_permutations`
14905 // (b2bd9d7) and
14906 // `behavior_returns_behavior_option_ref_verbatim_across_permutations`
14907 // (35d8b52) opening tetrad pins on the outer top-level
14908 // [`Caixa`] `Option<&Composite>`-return sub-family — extended
14909 // here to the first of the three M3 mesh-slot axes so the
14910 // opening third of the outer `Option<&Composite>` sub-family
14911 // carries the same "byte-equal, borrow-shared, presence-bit-
14912 // preserved" outer-accessor discipline.
14913 use crate::aplicacao::{CircuitBreaker, MeshPolicy, RateLimit};
14914 use std::time::Duration;
14915 let fixtures: Vec<Option<MeshPolicy>> = vec![
14916 None,
14917 Some(MeshPolicy::default()),
14918 Some(MeshPolicy {
14919 timeout: Some(Duration::from_secs(30)),
14920 ..Default::default()
14921 }),
14922 Some(MeshPolicy {
14923 timeout: Some(Duration::from_secs(30)),
14924 retries: Some(3),
14925 circuit_breaker: Some(CircuitBreaker {
14926 max_failures: 5,
14927 window: Duration::from_secs(60),
14928 }),
14929 mtls_required: Some(true),
14930 rate_limit: Some(RateLimit {
14931 rate: 100,
14932 window: Duration::from_secs(1),
14933 }),
14934 }),
14935 ];
14936 for politicas in fixtures {
14937 let c = caixa_aplicacao_with_politicas(politicas.clone());
14938 assert_eq!(
14939 c.politicas(),
14940 politicas.as_ref(),
14941 "Caixa::politicas must return :politicas verbatim (got \
14942 {:?}, expected {:?})",
14943 c.politicas(),
14944 politicas.as_ref(),
14945 );
14946 match (c.politicas(), c.politicas.as_ref()) {
14947 (Some(a), Some(b)) => assert!(
14948 std::ptr::eq(a, b),
14949 "Caixa::politicas accessor and self.politicas.as_ref() \
14950 field access must borrow the same backing storage \
14951 — the accessor is the substrate-primitive typed \
14952 dispatch every downstream Aplicacao-mesh-overlay \
14953 composite consumer must route through, and a \
14954 reference-identity split would silently break \
14955 every consumer that relied on the borrow sharing \
14956 the composite's storage",
14957 ),
14958 (None, None) => {}
14959 _ => panic!(
14960 "Caixa::politicas presence bit must byte-equal \
14961 self.politicas.is_some() — a presence-bit drift \
14962 would silently split the paired \
14963 Caixa::aplicacao_view Aplicacao-composition seed's \
14964 traversal head from the peer \
14965 Caixa::declared_mesh_slots M3 declared-slot \
14966 enumerator's presence probe",
14967 ),
14968 }
14969 assert_eq!(
14970 c.politicas().is_some(),
14971 c.politicas.is_some(),
14972 "Caixa::politicas().is_some() must byte-equal \
14973 self.politicas.is_some() — a presence-bit drift would \
14974 silently split every downstream Option<&MeshPolicy> \
14975 consumer's partition on the cluster-default arm",
14976 );
14977 }
14978 }
14979
14980 #[test]
14981 fn declared_mesh_slots_politicas_arm_routes_through_accessor() {
14982 // Composition pin: [`Caixa::declared_mesh_slots`]'s
14983 // `:politicas` presence-probe arm must key off
14984 // [`Caixa::politicas`], not the raw `self.politicas.is_some()`
14985 // field-probe. Structurally: a `Caixa { politicas:
14986 // Some(MeshPolicy::default()), .. }` must still push
14987 // `M3_AUTHOR_KEY_POLITICAS` onto the declared-slot list (the
14988 // presence bit is `Some`, so the M3 kind-coherence gate must
14989 // surface the slot as "declared" even when every per-axis
14990 // scalar is unset), and a `Caixa { politicas: None, .. }` must
14991 // NOT push the label (the "author omitted the slot entirely"
14992 // partition). The pair jointly pins the accessor + declared-
14993 // slot enumerator composition: any future silent detour that
14994 // had the accessor collapse `Some(MeshPolicy::default())` to
14995 // `None` (a `.filter(|p| !p.is_empty())` projection) would
14996 // silently absorb the "declared but empty" arm at the
14997 // accessor boundary and the
14998 // [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-
14999 // coherence gate would silently accept a struct-literal
15000 // `Caixa` carrying the drift.
15001 //
15002 // Peer of the sibling
15003 // `declared_servico_slots_limits_arm_routes_through_accessor`
15004 // (b2bd9d7) and
15005 // `declared_servico_slots_behavior_arm_routes_through_accessor`
15006 // (35d8b52) composition pins on the sibling `:limits` /
15007 // `:behavior` outer-`Option<&Composite>` arms of the peer
15008 // [`Caixa::declared_servico_slots`] M2 declared-slot
15009 // enumerator's traversal — same "the enumerator gate must
15010 // route through the substrate-primitive typed dispatch"
15011 // discipline extended onto the outer top-level [`Caixa`] M3
15012 // mesh-slot family so the [`Caixa::declared_mesh_slots`]
15013 // enumerator carries the same routing invariant as its M2
15014 // sibling.
15015 use crate::aplicacao::MeshPolicy;
15016 let c = caixa_aplicacao_with_politicas(Some(MeshPolicy::default()));
15017 let slots = c.declared_mesh_slots();
15018 assert!(
15019 slots.contains(&crate::render::M3_AUTHOR_KEY_POLITICAS),
15020 "declared_mesh_slots must push M3_AUTHOR_KEY_POLITICAS \
15021 when `:politicas` is Some (even for MeshPolicy::default()) \
15022 — the accessor and the enumerator gate must route through \
15023 the same substrate-primitive typed dispatch on the outer \
15024 :politicas presence bit (got slots={slots:?})",
15025 );
15026 let c = caixa_aplicacao_with_politicas(None);
15027 let slots = c.declared_mesh_slots();
15028 assert!(
15029 !slots.contains(&crate::render::M3_AUTHOR_KEY_POLITICAS),
15030 "declared_mesh_slots must NOT push M3_AUTHOR_KEY_POLITICAS \
15031 when `:politicas` is None — the author-omitted arm must \
15032 route through the accessor's None-return unchanged (got \
15033 slots={slots:?})",
15034 );
15035 }
15036
15037 #[test]
15038 fn aplicacao_view_politicas_arm_folds_through_accessor() {
15039 // Composition pin: [`Caixa::aplicacao_view`]'s per-`:politicas`
15040 // Aplicacao-composition seed must fold through
15041 // [`Caixa::politicas`], not the raw
15042 // `self.politicas.clone().unwrap_or_default()` field-borrow.
15043 // Structurally: a `Caixa { politicas: Some(MeshPolicy {
15044 // timeout: Some(30s), .. default }), kind: Aplicacao, .. }`
15045 // must surface a projected [`crate::AplicacaoSpec`] whose
15046 // `politicas().timeout()` field byte-equals the outer
15047 // composite's `timeout` scalar (the fold must project the
15048 // authored composite verbatim), a `Caixa { politicas:
15049 // Some(MeshPolicy::default()), kind: Aplicacao, .. }` must
15050 // surface an [`crate::AplicacaoSpec`] whose `politicas()`
15051 // byte-equals [`crate::aplicacao::MeshPolicy::default`] (the
15052 // fold's empty-composite arm collapses to the same default the
15053 // author-omitted arm does), and a `Caixa { politicas: None,
15054 // kind: Aplicacao, .. }` must surface an
15055 // [`crate::AplicacaoSpec`] whose `politicas()` byte-equals
15056 // [`crate::aplicacao::MeshPolicy::default`] (the "author
15057 // omitted the slot entirely" arm folds through the
15058 // `unwrap_or_default` onto the cluster-default). The triad
15059 // jointly pins the accessor + Aplicacao-composition seed
15060 // composition: any future silent detour that had the accessor
15061 // divert the raw slot away from the seed's fold (an operator-
15062 // resolved overlay's default-fold arm silently differing from
15063 // the raw slot's default-fold arm) would silently split the
15064 // build-time mesh-artifact emission gate from the caixa-mesh
15065 // renderer's Aplicacao-view input at the composition boundary.
15066 use crate::aplicacao::MeshPolicy;
15067 use std::time::Duration;
15068 let c = caixa_aplicacao_with_politicas(Some(MeshPolicy {
15069 timeout: Some(Duration::from_secs(30)),
15070 ..Default::default()
15071 }));
15072 let view = c.aplicacao_view().unwrap();
15073 assert_eq!(
15074 view.politicas().timeout(),
15075 Some(Duration::from_secs(30)),
15076 "Caixa::aplicacao_view must fold the authored :politicas \
15077 :timeout scalar through the accessor verbatim onto the \
15078 projected AplicacaoSpec — a future silent detour at the \
15079 seed's fold arm would surface here as a projected-scalar \
15080 drift (got {:?})",
15081 view.politicas().timeout(),
15082 );
15083 let c = caixa_aplicacao_with_politicas(Some(MeshPolicy::default()));
15084 let view = c.aplicacao_view().unwrap();
15085 assert_eq!(
15086 view.politicas(),
15087 &MeshPolicy::default(),
15088 "Caixa::aplicacao_view must fold Some(MeshPolicy::default()) \
15089 through the accessor onto MeshPolicy::default — the empty- \
15090 composite arm collapses to the same default the author- \
15091 omitted arm does (got {:?})",
15092 view.politicas(),
15093 );
15094 let c = caixa_aplicacao_with_politicas(None);
15095 let view = c.aplicacao_view().unwrap();
15096 assert_eq!(
15097 view.politicas(),
15098 &MeshPolicy::default(),
15099 "Caixa::aplicacao_view must fold None through the accessor's \
15100 unwrap_or_default onto MeshPolicy::default — the author- \
15101 omitted arm must route through the accessor's None-return \
15102 unchanged (got {:?})",
15103 view.politicas(),
15104 );
15105 }
15106
15107 #[test]
15108 fn politicas_projects_option_ref_by_borrow() {
15109 // The by-borrow pin: [`Caixa::politicas`] returns
15110 // `Option<&MeshPolicy>` by borrow — the returned reference
15111 // borrows the underlying `Option<MeshPolicy>` storage of the
15112 // `:politicas` slot and the accessor must not clone the
15113 // backing composite on every call. Peer of the sibling
15114 // `limits_projects_option_ref_by_borrow` (b2bd9d7) and
15115 // `behavior_projects_option_ref_by_borrow` (35d8b52) by-borrow
15116 // pins on the outer top-level [`Caixa`]
15117 // `Option<&Composite>`-return sub-family — extended here to
15118 // the third axis of the same sub-family: the accessor's
15119 // returned reference must borrow from `&self` (the returned
15120 // reference's lifetime is tied to `&self`), and calling the
15121 // accessor twice on the same [`Caixa`] must yield references
15122 // that are pointer-equal (the underlying byte-buffer is the
15123 // storage `MeshPolicy`'s allocation, not a fresh copy) as
15124 // well as value-equal (idempotent, no side effects on
15125 // `&self`).
15126 //
15127 // Pins against a future silent detour that returned an owned
15128 // `MeshPolicy` (which would type-check via the `Clone` impl
15129 // but silently clone on every call), a `&MeshPolicy` panic-
15130 // return on the `None` arm (which would collapse the load-
15131 // bearing `Option` presence-bit into a runtime panic), or a
15132 // one-arm-only accessor that returned a saturating composite
15133 // on some sentinel input.
15134 use crate::aplicacao::{CircuitBreaker, MeshPolicy, RateLimit};
15135 use std::time::Duration;
15136 for politicas in [
15137 Some(MeshPolicy::default()),
15138 Some(MeshPolicy {
15139 timeout: Some(Duration::from_secs(30)),
15140 retries: Some(3),
15141 circuit_breaker: Some(CircuitBreaker {
15142 max_failures: 5,
15143 window: Duration::from_secs(60),
15144 }),
15145 mtls_required: Some(true),
15146 rate_limit: Some(RateLimit {
15147 rate: 100,
15148 window: Duration::from_secs(1),
15149 }),
15150 }),
15151 ] {
15152 let c = caixa_aplicacao_with_politicas(politicas.clone());
15153 let first = c.politicas().unwrap();
15154 let second = c.politicas().unwrap();
15155 assert_eq!(
15156 first, second,
15157 "Caixa::politicas must be idempotent — two successive \
15158 calls on the same &self must return the same \
15159 &MeshPolicy",
15160 );
15161 assert!(
15162 std::ptr::eq(first, second),
15163 "Caixa::politicas must borrow the underlying \
15164 Option<MeshPolicy> storage — two successive calls \
15165 must return references with the same backing pointer \
15166 (a fresh MeshPolicy clone would change the pointer on \
15167 every call)",
15168 );
15169 assert_eq!(
15170 Some(first),
15171 politicas.as_ref(),
15172 "Caixa::politicas must return :politicas verbatim by \
15173 borrow — got {first:?}, expected {:?}",
15174 politicas.as_ref(),
15175 );
15176 }
15177 let c = caixa_aplicacao_with_politicas(None);
15178 assert!(
15179 c.politicas().is_none(),
15180 "Caixa::politicas must return None when :politicas is \
15181 absent — the author-omitted arm must project through the \
15182 accessor's Option::None unchanged",
15183 );
15184 }
15185
15186 // ── Caixa::placement — outer top-level Option<&Placement> composite-reference accessor ──
15187
15188 fn caixa_aplicacao_with_placement(placement: Option<crate::aplicacao::Placement>) -> Caixa {
15189 use crate::aplicacao::{Membro, WitContract};
15190 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
15191 c.kind = CaixaKind::Aplicacao;
15192 c.membros = vec![Membro {
15193 caixa: "a".into(),
15194 versao: "^0.1".into(),
15195 }];
15196 c.contratos = vec![WitContract {
15197 de: "a".into(),
15198 para: "a".into(),
15199 wit: "wasi:http/proxy".into(),
15200 endpoint: Some("/x".into()),
15201 subject: None,
15202 slot: None,
15203 }];
15204 c.placement = placement;
15205 c
15206 }
15207
15208 #[test]
15209 fn placement_returns_placement_option_ref_verbatim_across_permutations() {
15210 // The canonical per-`Caixa` `:placement` M3 mesh-slot outer-
15211 // composite optional-composite-reference-shape pin:
15212 // [`Caixa::placement`] must return the `:placement` typed
15213 // `Option<Placement>` verbatim as an `Option<&Placement>`
15214 // reference over the same backing storage the raw
15215 // `self.placement.as_ref()` field access borrows from,
15216 // byte-equal across every representative fixture in the
15217 // accept-set — the author-omitted `None` shape (the
15218 // "cluster-default applies" partition every downstream mesh-
15219 // artifact emitter treats as "emit no `:placement` overlay"),
15220 // the empty-composite `Some(Placement { .. default })` shape
15221 // (`estrategia: SingleNode`, empty clusters, no shard-key /
15222 // affinity — the outer presence-bit is `Some` so
15223 // [`Caixa::declared_mesh_slots`] still pushes the
15224 // `M3_AUTHOR_KEY_PLACEMENT` label), a single-axis
15225 // `Replicated`-on-two-clusters fixture (the canonical shape a
15226 // stateless HTTP Aplicacao carries), and a fully-populated
15227 // `Sharded`-with-shard-key-and-affinity fixture (the canonical
15228 // shape a stateful Akka-style cluster-sharding Aplicacao
15229 // carries).
15230 //
15231 // Pins against a future silent detour that returned a fresh-
15232 // cloned [`crate::aplicacao::Placement`] copy (which would
15233 // type-check via the `Clone` impl but silently break every
15234 // downstream caller that relied on the reference sharing the
15235 // composite's backing identity), a reference to an operator-
15236 // resolved overlay (the future per-cluster
15237 // `:placement-overrides` slot — its resolution must land at
15238 // exactly this accessor body, not silently divert the raw
15239 // slot away from the peer [`Caixa::declared_mesh_slots`]
15240 // enumerator's presence probe), a `None` →
15241 // `Some(Placement::default)` cluster-default projection (which
15242 // would collapse the load-bearing "author-omitted `:placement`
15243 // ⇒ cluster-default applies" partition the peer
15244 // [`Caixa::declared_mesh_slots`] enumerator and the peer
15245 // [`Caixa::aplicacao_view`] Aplicacao-composition seed both
15246 // read), or an axis-shuffled projection (a future detour that
15247 // swapped `clusters` and `affinity` through the accessor would
15248 // silently split the paired [`Caixa::aplicacao_view`] seed's
15249 // fold input from the sibling M3 mesh-artifact emitter's
15250 // projection input).
15251 //
15252 // Fourth outer top-level [`Caixa`] `Option<&Composite>`-return
15253 // composite-reference accessor pin on the substrate primitive
15254 // — peer of the sibling
15255 // `limits_returns_limits_option_ref_verbatim_across_permutations`
15256 // (b2bd9d7),
15257 // `behavior_returns_behavior_option_ref_verbatim_across_permutations`
15258 // (35d8b52), and
15259 // `politicas_returns_politicas_option_ref_verbatim_across_permutations`
15260 // (5d23d29) opening triad pins on the outer top-level
15261 // [`Caixa`] `Option<&Composite>`-return sub-family — extended
15262 // here to the second of the three M3 mesh-slot axes so the
15263 // opening four-fifths of the outer `Option<&Composite>` sub-
15264 // family carries the same "byte-equal, borrow-shared,
15265 // presence-bit-preserved" outer-accessor discipline.
15266 use crate::aplicacao::{Placement, PlacementStrategy};
15267 let fixtures: Vec<Option<Placement>> = vec![
15268 None,
15269 Some(Placement::default()),
15270 Some(Placement {
15271 estrategia: PlacementStrategy::Replicated,
15272 clusters: vec!["rio".into(), "sao-paulo".into()],
15273 affinity: None,
15274 shard_key: None,
15275 }),
15276 Some(Placement {
15277 estrategia: PlacementStrategy::Sharded,
15278 clusters: vec!["rio".into(), "sao-paulo".into(), "brasilia".into()],
15279 affinity: Some("data-locality".into()),
15280 shard_key: Some("$tenantId".into()),
15281 }),
15282 ];
15283 for placement in fixtures {
15284 let c = caixa_aplicacao_with_placement(placement.clone());
15285 assert_eq!(
15286 c.placement(),
15287 placement.as_ref(),
15288 "Caixa::placement must return :placement verbatim (got \
15289 {:?}, expected {:?})",
15290 c.placement(),
15291 placement.as_ref(),
15292 );
15293 match (c.placement(), c.placement.as_ref()) {
15294 (Some(a), Some(b)) => assert!(
15295 std::ptr::eq(a, b),
15296 "Caixa::placement accessor and self.placement.as_ref() \
15297 field access must borrow the same backing storage \
15298 — the accessor is the substrate-primitive typed \
15299 dispatch every downstream Aplicacao-distribution- \
15300 overlay composite consumer must route through, and \
15301 a reference-identity split would silently break \
15302 every consumer that relied on the borrow sharing \
15303 the composite's storage",
15304 ),
15305 (None, None) => {}
15306 _ => panic!(
15307 "Caixa::placement presence bit must byte-equal \
15308 self.placement.is_some() — a presence-bit drift \
15309 would silently split the paired \
15310 Caixa::aplicacao_view Aplicacao-composition seed's \
15311 traversal head from the peer \
15312 Caixa::declared_mesh_slots M3 declared-slot \
15313 enumerator's presence probe",
15314 ),
15315 }
15316 assert_eq!(
15317 c.placement().is_some(),
15318 c.placement.is_some(),
15319 "Caixa::placement().is_some() must byte-equal \
15320 self.placement.is_some() — a presence-bit drift would \
15321 silently split every downstream Option<&Placement> \
15322 consumer's partition on the cluster-default arm",
15323 );
15324 }
15325 }
15326
15327 #[test]
15328 fn declared_mesh_slots_placement_arm_routes_through_accessor() {
15329 // Composition pin: [`Caixa::declared_mesh_slots`]'s
15330 // `:placement` presence-probe arm must key off
15331 // [`Caixa::placement`], not the raw `self.placement.is_some()`
15332 // field-probe. Structurally: a `Caixa { placement:
15333 // Some(Placement::default()), .. }` must still push
15334 // `M3_AUTHOR_KEY_PLACEMENT` onto the declared-slot list (the
15335 // presence bit is `Some`, so the M3 kind-coherence gate must
15336 // surface the slot as "declared" even when every per-axis
15337 // scalar defers to the cluster-default arm), and a `Caixa {
15338 // placement: None, .. }` must NOT push the label (the "author
15339 // omitted the slot entirely" partition). The pair jointly pins
15340 // the accessor + declared-slot enumerator composition: any
15341 // future silent detour that had the accessor collapse
15342 // `Some(Placement::default())` to `None` (a `.filter(|p|
15343 // p.clusters().is_empty().not())` projection) would silently
15344 // absorb the "declared but empty" arm at the accessor boundary
15345 // and the [`crate::LayoutError::MeshSlotsOnNonAplicacao`]
15346 // kind-coherence gate would silently accept a struct-literal
15347 // `Caixa` carrying the drift.
15348 //
15349 // Peer of the sibling
15350 // `declared_servico_slots_limits_arm_routes_through_accessor`
15351 // (b2bd9d7),
15352 // `declared_servico_slots_behavior_arm_routes_through_accessor`
15353 // (35d8b52), and
15354 // `declared_mesh_slots_politicas_arm_routes_through_accessor`
15355 // (5d23d29) composition pins on the sibling `:limits` /
15356 // `:behavior` / `:politicas` outer-`Option<&Composite>` arms
15357 // — same "the enumerator gate must route through the
15358 // substrate-primitive typed dispatch" discipline extended onto
15359 // the second of the three M3 mesh-slot axes so the
15360 // [`Caixa::declared_mesh_slots`] enumerator carries the same
15361 // routing invariant on the `:placement` arm as the peer
15362 // `:politicas` arm.
15363 use crate::aplicacao::Placement;
15364 let c = caixa_aplicacao_with_placement(Some(Placement::default()));
15365 let slots = c.declared_mesh_slots();
15366 assert!(
15367 slots.contains(&crate::render::M3_AUTHOR_KEY_PLACEMENT),
15368 "declared_mesh_slots must push M3_AUTHOR_KEY_PLACEMENT \
15369 when `:placement` is Some (even for Placement::default()) \
15370 — the accessor and the enumerator gate must route through \
15371 the same substrate-primitive typed dispatch on the outer \
15372 :placement presence bit (got slots={slots:?})",
15373 );
15374 let c = caixa_aplicacao_with_placement(None);
15375 let slots = c.declared_mesh_slots();
15376 assert!(
15377 !slots.contains(&crate::render::M3_AUTHOR_KEY_PLACEMENT),
15378 "declared_mesh_slots must NOT push M3_AUTHOR_KEY_PLACEMENT \
15379 when `:placement` is None — the author-omitted arm must \
15380 route through the accessor's None-return unchanged (got \
15381 slots={slots:?})",
15382 );
15383 }
15384
15385 #[test]
15386 fn aplicacao_view_placement_arm_folds_through_accessor() {
15387 // Composition pin: [`Caixa::aplicacao_view`]'s per-`:placement`
15388 // Aplicacao-composition seed must fold through
15389 // [`Caixa::placement`], not the raw
15390 // `self.placement.clone().unwrap_or_default()` field-borrow.
15391 // Structurally: a `Caixa { placement: Some(Placement {
15392 // estrategia: Replicated, clusters: ["rio"], .. default }),
15393 // kind: Aplicacao, .. }` must surface a projected
15394 // [`crate::AplicacaoSpec`] whose `placement().estrategia()` +
15395 // `placement().clusters()` byte-equal the outer composite's
15396 // authored values (the fold must project the authored
15397 // composite verbatim), a `Caixa { placement:
15398 // Some(Placement::default()), kind: Aplicacao, .. }` must
15399 // surface an [`crate::AplicacaoSpec`] whose `placement()`
15400 // byte-equals [`crate::aplicacao::Placement::default`] (the
15401 // fold's empty-composite arm collapses to the same default
15402 // the author-omitted arm does), and a `Caixa { placement:
15403 // None, kind: Aplicacao, .. }` must surface an
15404 // [`crate::AplicacaoSpec`] whose `placement()` byte-equals
15405 // [`crate::aplicacao::Placement::default`] (the "author
15406 // omitted the slot entirely" arm folds through the
15407 // `unwrap_or_default` onto the cluster-default). The triad
15408 // jointly pins the accessor + Aplicacao-composition seed
15409 // composition: any future silent detour that had the accessor
15410 // divert the raw slot away from the seed's fold (an operator-
15411 // resolved overlay's default-fold arm silently differing from
15412 // the raw slot's default-fold arm) would silently split the
15413 // build-time distribution-artifact emission gate from the
15414 // caixa-mesh renderer's Aplicacao-view input at the
15415 // composition boundary.
15416 use crate::aplicacao::{Placement, PlacementStrategy};
15417 let c = caixa_aplicacao_with_placement(Some(Placement {
15418 estrategia: PlacementStrategy::Replicated,
15419 clusters: vec!["rio".into()],
15420 affinity: None,
15421 shard_key: None,
15422 }));
15423 let view = c.aplicacao_view().unwrap();
15424 assert_eq!(
15425 view.placement().estrategia(),
15426 PlacementStrategy::Replicated,
15427 "Caixa::aplicacao_view must fold the authored :placement \
15428 :estrategia scalar through the accessor verbatim onto the \
15429 projected AplicacaoSpec — a future silent detour at the \
15430 seed's fold arm would surface here as a projected-scalar \
15431 drift (got {:?})",
15432 view.placement().estrategia(),
15433 );
15434 assert_eq!(
15435 view.placement().clusters(),
15436 &["rio"],
15437 "Caixa::aplicacao_view must fold the authored :placement \
15438 :clusters list through the accessor verbatim onto the \
15439 projected AplicacaoSpec — a future silent detour at the \
15440 seed's fold arm would surface here as a projected-list \
15441 drift (got {:?})",
15442 view.placement().clusters(),
15443 );
15444 let c = caixa_aplicacao_with_placement(Some(Placement::default()));
15445 let view = c.aplicacao_view().unwrap();
15446 assert_eq!(
15447 view.placement(),
15448 &Placement::default(),
15449 "Caixa::aplicacao_view must fold Some(Placement::default()) \
15450 through the accessor onto Placement::default — the empty- \
15451 composite arm collapses to the same default the author- \
15452 omitted arm does (got {:?})",
15453 view.placement(),
15454 );
15455 let c = caixa_aplicacao_with_placement(None);
15456 let view = c.aplicacao_view().unwrap();
15457 assert_eq!(
15458 view.placement(),
15459 &Placement::default(),
15460 "Caixa::aplicacao_view must fold None through the accessor's \
15461 unwrap_or_default onto Placement::default — the author- \
15462 omitted arm must route through the accessor's None-return \
15463 unchanged (got {:?})",
15464 view.placement(),
15465 );
15466 }
15467
15468 #[test]
15469 fn placement_projects_option_ref_by_borrow() {
15470 // The by-borrow pin: [`Caixa::placement`] returns
15471 // `Option<&Placement>` by borrow — the returned reference
15472 // borrows the underlying `Option<Placement>` storage of the
15473 // `:placement` slot and the accessor must not clone the
15474 // backing composite on every call. Peer of the sibling
15475 // `limits_projects_option_ref_by_borrow` (b2bd9d7),
15476 // `behavior_projects_option_ref_by_borrow` (35d8b52), and
15477 // `politicas_projects_option_ref_by_borrow` (5d23d29) by-borrow
15478 // pins on the outer top-level [`Caixa`]
15479 // `Option<&Composite>`-return sub-family — extended here to
15480 // the fourth axis of the same sub-family: the accessor's
15481 // returned reference must borrow from `&self` (the returned
15482 // reference's lifetime is tied to `&self`), and calling the
15483 // accessor twice on the same [`Caixa`] must yield references
15484 // that are pointer-equal (the underlying byte-buffer is the
15485 // storage `Placement`'s allocation, not a fresh copy) as well
15486 // as value-equal (idempotent, no side effects on `&self`).
15487 //
15488 // Pins against a future silent detour that returned an owned
15489 // `Placement` (which would type-check via the `Clone` impl
15490 // but silently clone on every call), a `&Placement` panic-
15491 // return on the `None` arm (which would collapse the load-
15492 // bearing `Option` presence-bit into a runtime panic), or a
15493 // one-arm-only accessor that returned a saturating composite
15494 // on some sentinel input.
15495 use crate::aplicacao::{Placement, PlacementStrategy};
15496 for placement in [
15497 Some(Placement::default()),
15498 Some(Placement {
15499 estrategia: PlacementStrategy::Sharded,
15500 clusters: vec!["rio".into(), "sao-paulo".into()],
15501 affinity: Some("data-locality".into()),
15502 shard_key: Some("$tenantId".into()),
15503 }),
15504 ] {
15505 let c = caixa_aplicacao_with_placement(placement.clone());
15506 let first = c.placement().unwrap();
15507 let second = c.placement().unwrap();
15508 assert_eq!(
15509 first, second,
15510 "Caixa::placement must be idempotent — two successive \
15511 calls on the same &self must return the same \
15512 &Placement",
15513 );
15514 assert!(
15515 std::ptr::eq(first, second),
15516 "Caixa::placement must borrow the underlying \
15517 Option<Placement> storage — two successive calls \
15518 must return references with the same backing pointer \
15519 (a fresh Placement clone would change the pointer on \
15520 every call)",
15521 );
15522 assert_eq!(
15523 Some(first),
15524 placement.as_ref(),
15525 "Caixa::placement must return :placement verbatim by \
15526 borrow — got {first:?}, expected {:?}",
15527 placement.as_ref(),
15528 );
15529 }
15530 let c = caixa_aplicacao_with_placement(None);
15531 assert!(
15532 c.placement().is_none(),
15533 "Caixa::placement must return None when :placement is \
15534 absent — the author-omitted arm must project through the \
15535 accessor's Option::None unchanged",
15536 );
15537 }
15538
15539 // ── Caixa::entrada — outer top-level Option<&Entrada> composite-reference accessor ──
15540
15541 fn caixa_aplicacao_with_entrada(entrada: Option<crate::aplicacao::Entrada>) -> Caixa {
15542 use crate::aplicacao::{Membro, WitContract};
15543 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
15544 c.kind = CaixaKind::Aplicacao;
15545 c.membros = vec![Membro {
15546 caixa: "a".into(),
15547 versao: "^0.1".into(),
15548 }];
15549 c.contratos = vec![WitContract {
15550 de: "a".into(),
15551 para: "a".into(),
15552 wit: "wasi:http/proxy".into(),
15553 endpoint: Some("/x".into()),
15554 subject: None,
15555 slot: None,
15556 }];
15557 c.entrada = entrada;
15558 c
15559 }
15560
15561 #[test]
15562 fn entrada_returns_entrada_option_ref_verbatim_across_permutations() {
15563 // The canonical per-`Caixa` `:entrada` M3 mesh-slot outer-
15564 // composite optional-composite-reference-shape pin:
15565 // [`Caixa::entrada`] must return the `:entrada` typed
15566 // `Option<Entrada>` verbatim as an `Option<&Entrada>`
15567 // reference over the same backing storage the raw
15568 // `self.entrada.as_ref()` field access borrows from,
15569 // byte-equal across every representative fixture in the
15570 // accept-set — the author-omitted `None` shape (the
15571 // "cluster-internal Aplicacao" partition every downstream
15572 // Gateway-API emitter treats as "emit no listener + no
15573 // HTTPRoute"), a bare-`host`/`para` minimum-composite fixture
15574 // (empty `paths` — the resolved-paths fallback the peer
15575 // [`crate::aplicacao::Entrada::resolved_paths`] cascade folds
15576 // onto the substrate catch-all), and a fully-populated
15577 // multi-path-with-non-default-port fixture (the canonical
15578 // shape a public HTTP Aplicacao carries).
15579 //
15580 // Pins against a future silent detour that returned a fresh-
15581 // cloned [`crate::aplicacao::Entrada`] copy (which would
15582 // type-check via the `Clone` impl but silently break every
15583 // downstream caller that relied on the reference sharing the
15584 // composite's backing identity), a reference to an operator-
15585 // resolved overlay (the future per-cluster
15586 // `:entrada-overrides` slot — its resolution must land at
15587 // exactly this accessor body, not silently divert the raw
15588 // slot away from the peer [`Caixa::declared_mesh_slots`]
15589 // enumerator's presence probe), or an axis-shuffled projection
15590 // (a future detour that swapped `host` and `para` through the
15591 // accessor would silently split the paired
15592 // [`Caixa::aplicacao_view`] seed's forward input from the
15593 // sibling M3 gateway-artifact emitter's projection input).
15594 //
15595 // Fifth and final outer top-level [`Caixa`]
15596 // `Option<&Composite>`-return composite-reference accessor pin
15597 // on the substrate primitive — peer of the sibling
15598 // `limits_returns_limits_option_ref_verbatim_across_permutations`
15599 // (b2bd9d7),
15600 // `behavior_returns_behavior_option_ref_verbatim_across_permutations`
15601 // (35d8b52),
15602 // `politicas_returns_politicas_option_ref_verbatim_across_permutations`
15603 // (5d23d29), and
15604 // `placement_returns_placement_option_ref_verbatim_across_permutations`
15605 // (4fb8074) opening tetrad pins on the outer top-level
15606 // [`Caixa`] `Option<&Composite>`-return sub-family — extended
15607 // here to the third and final M3 mesh-slot axis so the closed
15608 // outer `Option<&Composite>` sub-family carries the same
15609 // "byte-equal, borrow-shared, presence-bit-preserved" outer-
15610 // accessor discipline across all five arms.
15611 use crate::aplicacao::Entrada;
15612 let fixtures: Vec<Option<Entrada>> = vec![
15613 None,
15614 Some(Entrada {
15615 host: "checkout.quero.cloud".into(),
15616 para: "gateway".into(),
15617 paths: Vec::new(),
15618 port: crate::DEFAULT_SERVICO_PORT,
15619 }),
15620 Some(Entrada {
15621 host: "api.pleme.io".into(),
15622 para: "public-api".into(),
15623 paths: vec!["/v1".into(), "/v2".into()],
15624 port: 8080,
15625 }),
15626 ];
15627 for entrada in fixtures {
15628 let c = caixa_aplicacao_with_entrada(entrada.clone());
15629 assert_eq!(
15630 c.entrada(),
15631 entrada.as_ref(),
15632 "Caixa::entrada must return :entrada verbatim (got \
15633 {:?}, expected {:?})",
15634 c.entrada(),
15635 entrada.as_ref(),
15636 );
15637 match (c.entrada(), c.entrada.as_ref()) {
15638 (Some(a), Some(b)) => assert!(
15639 std::ptr::eq(a, b),
15640 "Caixa::entrada accessor and self.entrada.as_ref() \
15641 field access must borrow the same backing storage \
15642 — the accessor is the substrate-primitive typed \
15643 dispatch every downstream Aplicacao-external- \
15644 gateway composite consumer must route through, and \
15645 a reference-identity split would silently break \
15646 every consumer that relied on the borrow sharing \
15647 the composite's storage",
15648 ),
15649 (None, None) => {}
15650 _ => panic!(
15651 "Caixa::entrada presence bit must byte-equal \
15652 self.entrada.is_some() — a presence-bit drift \
15653 would silently split the paired \
15654 Caixa::aplicacao_view Aplicacao-composition seed's \
15655 traversal head from the peer \
15656 Caixa::declared_mesh_slots M3 declared-slot \
15657 enumerator's presence probe",
15658 ),
15659 }
15660 assert_eq!(
15661 c.entrada().is_some(),
15662 c.entrada.is_some(),
15663 "Caixa::entrada().is_some() must byte-equal \
15664 self.entrada.is_some() — a presence-bit drift would \
15665 silently split every downstream Option<&Entrada> \
15666 consumer's partition on the cluster-internal arm",
15667 );
15668 }
15669 }
15670
15671 #[test]
15672 fn declared_mesh_slots_entrada_arm_routes_through_accessor() {
15673 // Composition pin: [`Caixa::declared_mesh_slots`]'s `:entrada`
15674 // presence-probe arm must key off [`Caixa::entrada`], not the
15675 // raw `self.entrada.is_some()` field-probe. Structurally: a
15676 // `Caixa { entrada: Some(Entrada { host: "...", para: "...",
15677 // paths: [], port: DEFAULT_SERVICO_PORT }), .. }` must push
15678 // `M3_AUTHOR_KEY_ENTRADA` onto the declared-slot list (the
15679 // presence bit is `Some`, so the M3 kind-coherence gate must
15680 // surface the slot as "declared" even when every per-axis
15681 // scalar defers to the substrate catch-all / default port),
15682 // and a `Caixa { entrada: None, .. }` must NOT push the label
15683 // (the "author omitted the slot entirely" partition). The pair
15684 // jointly pins the accessor + declared-slot enumerator
15685 // composition: any future silent detour that had the accessor
15686 // collapse `Some(Entrada { paths: [], .. })` to `None` (a
15687 // `.filter(|e| !e.paths.is_empty())` projection) would silently
15688 // absorb the "declared but empty-paths" arm at the accessor
15689 // boundary and the
15690 // [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-
15691 // coherence gate would silently accept a struct-literal
15692 // `Caixa` carrying the drift.
15693 //
15694 // Peer of the sibling
15695 // `declared_servico_slots_limits_arm_routes_through_accessor`
15696 // (b2bd9d7),
15697 // `declared_servico_slots_behavior_arm_routes_through_accessor`
15698 // (35d8b52),
15699 // `declared_mesh_slots_politicas_arm_routes_through_accessor`
15700 // (5d23d29), and
15701 // `declared_mesh_slots_placement_arm_routes_through_accessor`
15702 // (4fb8074) composition pins on the sibling `:limits` /
15703 // `:behavior` / `:politicas` / `:placement` outer-
15704 // `Option<&Composite>` arms — same "the enumerator gate must
15705 // route through the substrate-primitive typed dispatch"
15706 // discipline extended onto the third and final M3 mesh-slot
15707 // axis so the [`Caixa::declared_mesh_slots`] enumerator now
15708 // carries the routing invariant on every M3 mesh-slot arm.
15709 use crate::aplicacao::Entrada;
15710 let c = caixa_aplicacao_with_entrada(Some(Entrada {
15711 host: "checkout.quero.cloud".into(),
15712 para: "gateway".into(),
15713 paths: Vec::new(),
15714 port: crate::DEFAULT_SERVICO_PORT,
15715 }));
15716 let slots = c.declared_mesh_slots();
15717 assert!(
15718 slots.contains(&crate::render::M3_AUTHOR_KEY_ENTRADA),
15719 "declared_mesh_slots must push M3_AUTHOR_KEY_ENTRADA when \
15720 `:entrada` is Some (even for empty-paths / default-port) \
15721 — the accessor and the enumerator gate must route through \
15722 the same substrate-primitive typed dispatch on the outer \
15723 :entrada presence bit (got slots={slots:?})",
15724 );
15725 let c = caixa_aplicacao_with_entrada(None);
15726 let slots = c.declared_mesh_slots();
15727 assert!(
15728 !slots.contains(&crate::render::M3_AUTHOR_KEY_ENTRADA),
15729 "declared_mesh_slots must NOT push M3_AUTHOR_KEY_ENTRADA \
15730 when `:entrada` is None — the author-omitted arm must \
15731 route through the accessor's None-return unchanged (got \
15732 slots={slots:?})",
15733 );
15734 }
15735
15736 #[test]
15737 fn aplicacao_view_entrada_arm_folds_through_accessor() {
15738 // Composition pin: [`Caixa::aplicacao_view`]'s per-`:entrada`
15739 // Aplicacao-composition seed must fold through
15740 // [`Caixa::entrada`], not the raw `self.entrada.clone()` field-
15741 // borrow. Structurally: a `Caixa { entrada: Some(Entrada {
15742 // host: "api.pleme.io", para: "public-api", paths: ["/v1"],
15743 // port: 8080 }), kind: Aplicacao, .. }` must surface a projected
15744 // [`crate::AplicacaoSpec`] whose `entrada().unwrap()` byte-
15745 // equals the outer composite's authored value (the fold must
15746 // project the authored composite verbatim), and a `Caixa {
15747 // entrada: None, kind: Aplicacao, .. }` must surface an
15748 // [`crate::AplicacaoSpec`] whose `entrada()` is `None` (the
15749 // "author omitted the slot entirely" arm folds through the
15750 // accessor's `Option::cloned` onto the same `None` presence
15751 // bit — unlike the peer `:politicas` / `:placement` arms
15752 // `:entrada` has no cluster-default fold, the omitted arm
15753 // stays omitted). The pair jointly pins the accessor +
15754 // Aplicacao-composition seed composition: any future silent
15755 // detour that had the accessor divert the raw slot away from
15756 // the seed's fold (an operator-resolved overlay's forward arm
15757 // silently differing from the raw slot's forward arm) would
15758 // silently split the build-time gateway-artifact emission gate
15759 // from the caixa-mesh renderer's Aplicacao-view input at the
15760 // composition boundary.
15761 use crate::aplicacao::Entrada;
15762 let authored = Entrada {
15763 host: "api.pleme.io".into(),
15764 para: "public-api".into(),
15765 paths: vec!["/v1".into()],
15766 port: 8080,
15767 };
15768 let c = caixa_aplicacao_with_entrada(Some(authored.clone()));
15769 let view = c.aplicacao_view().unwrap();
15770 assert_eq!(
15771 view.entrada(),
15772 Some(&authored),
15773 "Caixa::aplicacao_view must fold the authored :entrada \
15774 composite through the accessor verbatim onto the \
15775 projected AplicacaoSpec — a future silent detour at the \
15776 seed's fold arm would surface here as a projected- \
15777 composite drift (got {:?})",
15778 view.entrada(),
15779 );
15780 let c = caixa_aplicacao_with_entrada(None);
15781 let view = c.aplicacao_view().unwrap();
15782 assert!(
15783 view.entrada().is_none(),
15784 "Caixa::aplicacao_view must fold None through the \
15785 accessor's Option::cloned onto None — the author- \
15786 omitted arm must route through the accessor's None-return \
15787 unchanged (got {:?})",
15788 view.entrada(),
15789 );
15790 }
15791
15792 #[test]
15793 fn entrada_projects_option_ref_by_borrow() {
15794 // The by-borrow pin: [`Caixa::entrada`] returns
15795 // `Option<&Entrada>` by borrow — the returned reference
15796 // borrows the underlying `Option<Entrada>` storage of the
15797 // `:entrada` slot and the accessor must not clone the backing
15798 // composite on every call. Peer of the sibling
15799 // `limits_projects_option_ref_by_borrow` (b2bd9d7),
15800 // `behavior_projects_option_ref_by_borrow` (35d8b52),
15801 // `politicas_projects_option_ref_by_borrow` (5d23d29), and
15802 // `placement_projects_option_ref_by_borrow` (4fb8074) by-
15803 // borrow pins on the outer top-level [`Caixa`]
15804 // `Option<&Composite>`-return sub-family — extended here to
15805 // the fifth and final axis of the same sub-family, closing
15806 // the discipline: the accessor's returned reference must
15807 // borrow from `&self` (the returned reference's lifetime is
15808 // tied to `&self`), and calling the accessor twice on the
15809 // same [`Caixa`] must yield references that are pointer-equal
15810 // (the underlying byte-buffer is the storage `Entrada`'s
15811 // allocation, not a fresh copy) as well as value-equal
15812 // (idempotent, no side effects on `&self`).
15813 //
15814 // Pins against a future silent detour that returned an owned
15815 // `Entrada` (which would type-check via the `Clone` impl but
15816 // silently clone on every call), a `&Entrada` panic-return on
15817 // the `None` arm (which would collapse the load-bearing
15818 // `Option` presence-bit into a runtime panic), or a one-arm-
15819 // only accessor that returned a saturating composite on some
15820 // sentinel input.
15821 use crate::aplicacao::Entrada;
15822 for entrada in [
15823 Some(Entrada {
15824 host: "checkout.quero.cloud".into(),
15825 para: "gateway".into(),
15826 paths: Vec::new(),
15827 port: crate::DEFAULT_SERVICO_PORT,
15828 }),
15829 Some(Entrada {
15830 host: "api.pleme.io".into(),
15831 para: "public-api".into(),
15832 paths: vec!["/v1".into(), "/v2".into()],
15833 port: 8080,
15834 }),
15835 ] {
15836 let c = caixa_aplicacao_with_entrada(entrada.clone());
15837 let first = c.entrada().unwrap();
15838 let second = c.entrada().unwrap();
15839 assert_eq!(
15840 first, second,
15841 "Caixa::entrada must be idempotent — two successive \
15842 calls on the same &self must return the same &Entrada",
15843 );
15844 assert!(
15845 std::ptr::eq(first, second),
15846 "Caixa::entrada must borrow the underlying \
15847 Option<Entrada> storage — two successive calls must \
15848 return references with the same backing pointer (a \
15849 fresh Entrada clone would change the pointer on every \
15850 call)",
15851 );
15852 assert_eq!(
15853 Some(first),
15854 entrada.as_ref(),
15855 "Caixa::entrada must return :entrada verbatim by \
15856 borrow — got {first:?}, expected {:?}",
15857 entrada.as_ref(),
15858 );
15859 }
15860 let c = caixa_aplicacao_with_entrada(None);
15861 assert!(
15862 c.entrada().is_none(),
15863 "Caixa::entrada must return None when :entrada is absent \
15864 — the author-omitted arm must project through the \
15865 accessor's Option::None unchanged",
15866 );
15867 }
15868
15869 // ── Caixa::estrategia — outer top-level Option<RestartStrategy> flat-spread supervisor-tree accessor ──
15870
15871 fn caixa_with_estrategia(estrategia: Option<crate::supervisor::RestartStrategy>) -> Caixa {
15872 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
15873 c.estrategia = estrategia;
15874 c
15875 }
15876
15877 #[test]
15878 fn estrategia_returns_estrategia_option_verbatim_across_permutations() {
15879 // The canonical per-`Caixa` `:estrategia` M2 supervisor-tree-slot
15880 // flat-spread `Option<RestartStrategy>`-return `Copy`-composite-
15881 // enum-arm scalar shape pin: [`Caixa::estrategia`] must return
15882 // the `:estrategia` typed `Option<crate::supervisor::RestartStrategy>`
15883 // verbatim as an `Option<RestartStrategy>` `Copy`-projected value
15884 // over the same discriminant the raw `self.estrategia` field
15885 // access carries, byte-equal across every representative fixture
15886 // in the accept-set — the author-omitted `None` shape (the
15887 // "defer to [`RestartStrategy::default`] through the
15888 // [`Self::supervisor_view`] `unwrap_or_default()` fold" partition
15889 // every non-`Supervisor`-kind `defcaixa` carries by
15890 // `#[serde(default)]`), and each of the four closed-set variants
15891 // [`RestartStrategy::OneForOne`] / [`RestartStrategy::OneForAll`]
15892 // / [`RestartStrategy::RestForOne`] /
15893 // [`RestartStrategy::SimpleOneForOne`] the author-declared arm
15894 // partitions on.
15895 //
15896 // Pins against a future silent detour that re-derived the
15897 // strategy from a peer axis (an accidental fallback to
15898 // `if children.is_empty() { SimpleOneForOne } else { OneForOne }`
15899 // collapse that read the outer `:children` list-length axis into
15900 // the strategy discriminator at the accessor boundary), a
15901 // stale-derive detour that substituted [`RestartStrategy::default`]
15902 // when the outer `Option` held `None` (which would silently
15903 // collapse the load-bearing "author explicitly declared
15904 // `:estrategia OneForOne`" vs "author omitted the slot and
15905 // inherited the default" partition the [`Self::declared_supervisor_slots`]
15906 // presence-probe reads — the enumerator gate would still push
15907 // `SUPERVISOR_AUTHOR_KEY_ESTRATEGIA` on the omitted arm, silently
15908 // splitting the paired [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`]
15909 // kind-coherence gate's traversal head from the
15910 // [`Self::supervisor_view`] `unwrap_or_default()` fold's
15911 // composition head), a reference to an operator-resolved overlay
15912 // (the future per-cluster `:estrategia-overrides` slot — its
15913 // resolution must land at exactly this accessor body, not
15914 // silently divert the raw slot away from a second consumer), or
15915 // an axis-remap projection (a future detour that mapped
15916 // `OneForAll` through the accessor onto `OneForOne` would
15917 // silently split every downstream sibling-restart-strategy
15918 // consumer's per-arm fan-out).
15919 //
15920 // First outer top-level [`Caixa`] `Option<Copy>`-return
15921 // supervisor-tree-slot flat-spread accessor pin on the substrate
15922 // primitive — opens the outer-`Caixa` `Option<Copy>` flat-spread
15923 // projection pattern the sibling per-`Caixa` `:max-restarts` /
15924 // `:restart-window` future outer-scalar pins fold on. Peer of
15925 // the inner-altitude
15926 // `supervisor_spec_estrategia_returns_estrategia_verbatim_across_permutations`
15927 // (eafb619) pin on the post-composition [`SupervisorSpec`]
15928 // altitude — same "the substrate-primitive accessor must byte-
15929 // equal the raw field access verbatim across every author-
15930 // declared value" discipline extended onto the pre-composition
15931 // outer author-surface [`Caixa`] altitude. Peer of the closed
15932 // outer-`Caixa` `Option<&Composite>` composite-reference family
15933 // the sibling `limits` / `behavior` / `politicas` / `placement` /
15934 // `entrada`
15935 // `..._returns_..._option_ref_verbatim_across_permutations` pins
15936 // already carry on the outer `Option<&Composite>` altitude.
15937 use crate::supervisor::RestartStrategy;
15938 let fixtures: Vec<Option<RestartStrategy>> = vec![
15939 None,
15940 Some(RestartStrategy::OneForOne),
15941 Some(RestartStrategy::OneForAll),
15942 Some(RestartStrategy::RestForOne),
15943 Some(RestartStrategy::SimpleOneForOne),
15944 ];
15945 for estrategia in fixtures {
15946 let c = caixa_with_estrategia(estrategia);
15947 assert_eq!(
15948 c.estrategia(),
15949 estrategia,
15950 "Caixa::estrategia must return :estrategia verbatim (got \
15951 {:?}, expected {:?})",
15952 c.estrategia(),
15953 estrategia,
15954 );
15955 assert_eq!(
15956 c.estrategia(),
15957 c.estrategia,
15958 "Caixa::estrategia accessor and self.estrategia field \
15959 access must byte-equal — the accessor is the substrate-\
15960 primitive typed dispatch every downstream supervisor-\
15961 tree flat-spread consumer must route through, and a \
15962 discriminant split would silently break every consumer \
15963 that relied on the accessor sharing the field's own \
15964 Option<Copy> shape",
15965 );
15966 assert_eq!(
15967 c.estrategia().is_some(),
15968 c.estrategia.is_some(),
15969 "Caixa::estrategia().is_some() must byte-equal \
15970 self.estrategia.is_some() — a presence-bit drift would \
15971 silently split the paired Caixa::declared_supervisor_slots \
15972 presence-probe arm from the Caixa::supervisor_view \
15973 unwrap_or_default() fold's composition input",
15974 );
15975 }
15976 }
15977
15978 #[test]
15979 fn declared_supervisor_slots_estrategia_arm_routes_through_accessor() {
15980 // Composition pin: [`Caixa::declared_supervisor_slots`]'s
15981 // `:estrategia` presence-probe arm must key off
15982 // [`Caixa::estrategia`], not the raw `self.estrategia.is_some()`
15983 // field-probe. Structurally: every `Caixa { estrategia:
15984 // Some(RestartStrategy::_), .. }` variant must push
15985 // `SUPERVISOR_AUTHOR_KEY_ESTRATEGIA` onto the declared-slot list
15986 // (the presence bit is `Some` for every closed-set variant, so
15987 // the M2 supervisor-tree kind-coherence gate must surface the
15988 // slot as "declared" regardless of which variant the author
15989 // picked), and a `Caixa { estrategia: None, .. }` must NOT push
15990 // the label (the "author omitted the slot entirely, deferring
15991 // to [`RestartStrategy::default`] through the supervisor_view
15992 // fold" partition). The pair jointly pins the accessor +
15993 // declared-slot enumerator composition: any future silent detour
15994 // that had the accessor collapse `Some(RestartStrategy::default())`
15995 // to `None` (a `.filter(|e| *e != RestartStrategy::default())`
15996 // projection) would silently absorb the "declared but default-
15997 // valued" arm at the accessor boundary and the
15998 // [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`] kind-
15999 // coherence gate would silently accept a struct-literal `Caixa`
16000 // carrying the drift.
16001 //
16002 // Peer of the sibling per-`Caixa`
16003 // `declared_servico_slots_limits_arm_routes_through_accessor`
16004 // (b2bd9d7) accessor-composition pin on the sibling outer-`Caixa`
16005 // `Option<&LimitsSpec>` composition axis — same "the enumerator
16006 // gate must route through the substrate-primitive typed
16007 // dispatch" discipline extended onto the flat-spread M2
16008 // supervisor-tree `Option<RestartStrategy>`-composition surface,
16009 // opening the outer-`Caixa` supervisor-tree-slot arm of the
16010 // composition-pin family.
16011 use crate::supervisor::RestartStrategy;
16012 for estrategia in [
16013 RestartStrategy::OneForOne,
16014 RestartStrategy::OneForAll,
16015 RestartStrategy::RestForOne,
16016 RestartStrategy::SimpleOneForOne,
16017 ] {
16018 let c = caixa_with_estrategia(Some(estrategia));
16019 let slots = c.declared_supervisor_slots();
16020 assert!(
16021 slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA),
16022 "declared_supervisor_slots must push \
16023 SUPERVISOR_AUTHOR_KEY_ESTRATEGIA when `:estrategia` is \
16024 Some({estrategia:?}) — the accessor and the enumerator \
16025 gate must route through the same substrate-primitive \
16026 typed dispatch on the outer :estrategia presence bit \
16027 (got slots={slots:?})",
16028 );
16029 }
16030 let c = caixa_with_estrategia(None);
16031 let slots = c.declared_supervisor_slots();
16032 assert!(
16033 !slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_ESTRATEGIA),
16034 "declared_supervisor_slots must NOT push \
16035 SUPERVISOR_AUTHOR_KEY_ESTRATEGIA when `:estrategia` is None \
16036 — the author-omitted arm must route through the accessor's \
16037 None-return unchanged (got slots={slots:?})",
16038 );
16039 }
16040
16041 #[test]
16042 fn supervisor_view_estrategia_arm_routes_through_accessor() {
16043 // Composition pin: [`Caixa::supervisor_view`]'s per-`:estrategia`
16044 // [`SupervisorSpec`] construction arm must key off
16045 // [`Caixa::estrategia`]'s `unwrap_or_default()` fold, not the raw
16046 // `self.estrategia.unwrap_or_default()` field-fold. Structurally:
16047 // for every `:kind Supervisor` `Caixa` carrying an author-
16048 // declared `Some(RestartStrategy::_)` variant, the composed
16049 // [`SupervisorSpec`]'s `.estrategia` field must byte-equal the
16050 // outer accessor's declared variant unchanged; and for a
16051 // `:kind Supervisor` `Caixa` carrying `None`, the composed
16052 // [`SupervisorSpec`]'s `.estrategia` field must byte-equal
16053 // [`RestartStrategy::default`] (the [`RestartStrategy::OneForOne`]
16054 // arm the flat-spread `unwrap_or_default()` fold projects to on
16055 // the author-omitted arm — this is the *composition* between the
16056 // outer `Option<RestartStrategy>` accessor's presence-bit
16057 // surface and the inner post-composition non-`Option`
16058 // [`SupervisorSpec::estrategia`] altitude). The pair jointly
16059 // pins the accessor + supervisor_view composition: any future
16060 // silent detour that had the accessor promote `None` to
16061 // `Some(RestartStrategy::default())` (a `.or_else(|| Some(RestartStrategy::default()))`
16062 // projection) would silently collapse the two arms into one at
16063 // the accessor boundary and the [`Self::declared_supervisor_slots`]
16064 // presence probe would silently drift from the composition site.
16065 //
16066 // Peer of the sibling M2 supervisor-slot post-composition
16067 // `validate_reads_through_lifted_estrategia_accessor` (eafb619)
16068 // pin on the [`SupervisorSpec::validate`] altitude — this pin
16069 // extends that inner-altitude accessor-routing discipline onto
16070 // the pre-composition outer author-surface [`Caixa`] altitude,
16071 // pinning the composition edge between the flat-spread outer
16072 // `Option<RestartStrategy>` and the composed [`SupervisorSpec`]
16073 // `RestartStrategy` axes.
16074 use crate::CaixaKind;
16075 use crate::supervisor::{ChildSpec, RestartPolicy, RestartStrategy};
16076 for estrategia in [
16077 RestartStrategy::OneForOne,
16078 RestartStrategy::OneForAll,
16079 RestartStrategy::RestForOne,
16080 RestartStrategy::SimpleOneForOne,
16081 ] {
16082 let mut c = caixa_with_estrategia(Some(estrategia));
16083 c.kind = CaixaKind::Supervisor;
16084 // Route the `SimpleOneForOne ↔ non-SimpleOneForOne` fixture-
16085 // shape partition through the [`gen_platform::IsVariant`]
16086 // derive-generated
16087 // [`RestartStrategy::is_simple_one_for_one`] predicate rather
16088 // than the raw `matches!(estrategia, RestartStrategy::
16089 // SimpleOneForOne)` open-coded pattern-match — same closed-
16090 // set-typed-enum arm-discriminator dispatch discipline the
16091 // sibling [`crate::upgrade::UpgradeInstruction::is_restart`]
16092 // convergence (915a934) extended onto its two paired positive
16093 // / negated `matches!` sites and the peer
16094 // [`crate::aplicacao::PlacementStrategy`] `IsVariant`-derived
16095 // predicate convergence (766ec63) extended onto the M3 mesh-
16096 // slot per-`:placement` distribution-strategy discriminator
16097 // axis. See the sibling `supervisor::tests::
16098 // round_trip_all_strategies` and
16099 // `supervisor::tests::supervisor_spec_estrategia_returns_estrategia_verbatim_across_permutations`
16100 // fixtures — the three sites (all test-only,
16101 // acknowledged in 915a934's Prior-commits footnote as the
16102 // outstanding follow-up) now consult one typed dispatch on
16103 // the substrate primitive.
16104 c.children = if estrategia.is_simple_one_for_one() {
16105 Vec::new()
16106 } else {
16107 vec![ChildSpec {
16108 caixa: "worker".into(),
16109 versao: "^0.1".into(),
16110 restart: RestartPolicy::Permanent,
16111 }]
16112 };
16113 let view = c.supervisor_view().expect(
16114 "supervisor_view must materialize a SupervisorSpec for a \
16115 :kind Supervisor Caixa carrying a Some(:estrategia) slot",
16116 );
16117 assert_eq!(
16118 view.estrategia(),
16119 c.estrategia().unwrap(),
16120 "supervisor_view must carry the outer Caixa::estrategia() \
16121 declared variant onto the composed SupervisorSpec.estrategia \
16122 field verbatim on the Some arm (got {:?}, expected {:?})",
16123 view.estrategia(),
16124 c.estrategia().unwrap(),
16125 );
16126 }
16127 // The author-omitted arm: outer `None` → composed
16128 // `RestartStrategy::default()` through the flat-spread
16129 // `unwrap_or_default()` fold.
16130 let mut c = caixa_with_estrategia(None);
16131 c.kind = CaixaKind::Supervisor;
16132 // Populate children so the sibling supervisor slots are coherent
16133 // for the [`Self::supervisor_view`] projection; the `:estrategia`
16134 // arm still defers to [`RestartStrategy::default`] on the
16135 // author-omitted arm even when the sibling slots carry values.
16136 c.children = vec![ChildSpec {
16137 caixa: "worker".into(),
16138 versao: "^0.1".into(),
16139 restart: RestartPolicy::Permanent,
16140 }];
16141 let view = c.supervisor_view().expect(
16142 "supervisor_view must materialize a SupervisorSpec for a \
16143 :kind Supervisor Caixa carrying a None `:estrategia` slot",
16144 );
16145 assert_eq!(
16146 view.estrategia(),
16147 RestartStrategy::default(),
16148 "supervisor_view must project the outer Caixa::estrategia() \
16149 None arm onto RestartStrategy::default() through the flat-\
16150 spread unwrap_or_default() fold (got {:?}, expected {:?})",
16151 view.estrategia(),
16152 RestartStrategy::default(),
16153 );
16154 assert!(
16155 c.estrategia().is_none(),
16156 "Caixa::estrategia() must remain None on the author-omitted \
16157 arm — the supervisor_view fold must not mutate the outer \
16158 flat-spread presence bit",
16159 );
16160 }
16161
16162 #[test]
16163 fn estrategia_projects_option_by_copy() {
16164 // The by-`Copy` pin: [`Caixa::estrategia`] returns
16165 // `Option<RestartStrategy>` by value (`RestartStrategy: Copy`) —
16166 // the accessor does not borrow `&self` past the call (no
16167 // lifetime on the return type), and calling the accessor twice
16168 // on the same [`Caixa`] must yield discriminant-equal values
16169 // (idempotent, no side effects on `&self`). Peer of the sibling
16170 // outer-`Caixa` `Option<&Composite>` by-borrow
16171 // `limits_projects_option_ref_by_borrow` (b2bd9d7) /
16172 // `behavior_projects_option_ref_by_borrow` (35d8b52) /
16173 // `politicas_projects_option_ref_by_borrow` (5d23d29) /
16174 // `placement_projects_option_ref_by_borrow` (4fb8074) /
16175 // `entrada_projects_option_ref_by_borrow` (e4128e4) by-borrow
16176 // pins on the outer-`Caixa` `Option<&Composite>`-return axes —
16177 // extended here to the outer-`Caixa` `Option<Copy>`-return
16178 // flat-spread axis. The `Copy` discipline replaces the pointer-
16179 // equality claim the by-borrow siblings pin (a fresh `Copy` of a
16180 // `Copy` discriminant is definitionally the same discriminant, so
16181 // the axis reduces to discriminant equality).
16182 //
16183 // Pins against a future silent detour that returned a fresh
16184 // `Option<&RestartStrategy>` (which would type-check but silently
16185 // introduce a borrow of `&self` past the call, collapsing the
16186 // load-bearing "no lifetime on the return type" `Copy` projection
16187 // the flat-spread axis's `Option<Copy>` shape carries), a stale-
16188 // read side effect that flipped the outer discriminant on
16189 // successive calls, or an axis-remap projection that returned a
16190 // different variant than the field storage.
16191 use crate::supervisor::RestartStrategy;
16192 for estrategia in [
16193 Some(RestartStrategy::OneForOne),
16194 Some(RestartStrategy::OneForAll),
16195 Some(RestartStrategy::RestForOne),
16196 Some(RestartStrategy::SimpleOneForOne),
16197 ] {
16198 let c = caixa_with_estrategia(estrategia);
16199 let first = c.estrategia();
16200 let second = c.estrategia();
16201 assert_eq!(
16202 first, second,
16203 "Caixa::estrategia must be idempotent — two successive \
16204 calls on the same &self must return the same \
16205 Option<RestartStrategy>",
16206 );
16207 assert_eq!(
16208 first, estrategia,
16209 "Caixa::estrategia must return :estrategia verbatim by \
16210 Copy — got {first:?}, expected {estrategia:?}",
16211 );
16212 }
16213 let c = caixa_with_estrategia(None);
16214 assert!(
16215 c.estrategia().is_none(),
16216 "Caixa::estrategia must return None when :estrategia is \
16217 absent — the author-omitted arm must project through the \
16218 accessor's Option::None unchanged",
16219 );
16220 }
16221
16222 // ── Caixa::max_restarts / Caixa::restart_window —
16223 // outer top-level M2 supervisor-tree-slot flat-spread accessors
16224 // (Option<u32> / Option<&str>) folding on the ed04d3c
16225 // Caixa::estrategia Option<Copy> sub-family ─────────────────────
16226
16227 fn caixa_with_max_restarts(max_restarts: Option<u32>) -> Caixa {
16228 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
16229 c.max_restarts = max_restarts;
16230 c
16231 }
16232
16233 fn caixa_supervisor_with_max_restarts_and_window(
16234 max_restarts: Option<u32>,
16235 restart_window: Option<&str>,
16236 ) -> Caixa {
16237 use crate::CaixaKind;
16238 use crate::supervisor::{ChildSpec, RestartPolicy};
16239 let mut c = Caixa::from_lisp(&Caixa::template("root")).unwrap();
16240 c.kind = CaixaKind::Supervisor;
16241 c.max_restarts = max_restarts;
16242 c.restart_window = restart_window.map(str::to_string);
16243 c.children = vec![ChildSpec {
16244 caixa: "worker".into(),
16245 versao: "^0.1".into(),
16246 restart: RestartPolicy::Permanent,
16247 }];
16248 c
16249 }
16250
16251 #[test]
16252 fn max_restarts_returns_max_restarts_option_verbatim_across_permutations() {
16253 // Value-shape pin: [`Caixa::max_restarts`] returns the
16254 // `:max-restarts` typed `Option<u32>` verbatim, `Copy`-projected
16255 // from the typed slot's own storage, byte-equal across the
16256 // author-omitted `None` arm (the "defer to the
16257 // [`Self::supervisor_view`] `unwrap_or(5)` OTP-canonical
16258 // `{intensity, 5, 60}` default" partition every
16259 // non-`Supervisor`-kind caixa carries by `#[serde(default)]`)
16260 // and each of the representative fixtures in the accept-set —
16261 // `0` (the zero-floor arm the peer
16262 // [`crate::supervisor::SupervisorSpec::validate`]
16263 // [`crate::SupervisorError::ZeroMaxRestarts`] gate refuses on
16264 // the post-composition altitude — the accessor must ship the
16265 // raw slot verbatim so struct-literal fixtures continue to
16266 // expose the zero at the accessor boundary), the OTP-canonical
16267 // `5` default (`{intensity, 5, 60}` worker-supervisor from
16268 // Learn You Some Erlang), `1000` (the
16269 // [`SUPERVISOR_MAX_RESTARTS_MAX`] cap the peer post-composition
16270 // upper-bound gate accepts on the boundary), `u32::MAX` (a
16271 // past-the-cap sentinel that the substrate-primitive accessor
16272 // must still ship verbatim). Second outer top-level
16273 // [`Caixa`] `Option<Copy>`-return supervisor-tree flat-spread
16274 // pin — folds on the sibling
16275 // `estrategia_returns_estrategia_option_verbatim_across_permutations`
16276 // (ed04d3c) pin's `Option<Copy>` shape, extending the sub-family
16277 // onto the sibling `Option<u32>` restart-budget-count arm.
16278 let fixtures: Vec<Option<u32>> = vec![None, Some(0), Some(5), Some(1000), Some(u32::MAX)];
16279 for max_restarts in fixtures {
16280 let c = caixa_with_max_restarts(max_restarts);
16281 assert_eq!(
16282 c.max_restarts(),
16283 max_restarts,
16284 "Caixa::max_restarts must return :max-restarts verbatim \
16285 (got {:?}, expected {max_restarts:?})",
16286 c.max_restarts(),
16287 );
16288 assert_eq!(
16289 c.max_restarts(),
16290 c.max_restarts,
16291 "Caixa::max_restarts accessor and self.max_restarts \
16292 field access must byte-equal — a presence-bit or count \
16293 drift would silently split the paired \
16294 Caixa::declared_supervisor_slots presence-probe arm \
16295 from the Caixa::supervisor_view unwrap_or(5) fold's \
16296 composition input",
16297 );
16298 }
16299 }
16300
16301 #[test]
16302 fn max_restarts_projects_option_by_copy() {
16303 // The by-`Copy` pin: [`Caixa::max_restarts`] returns
16304 // `Option<u32>` by value (`u32: Copy`) — the accessor does not
16305 // borrow `&self` past the call (no lifetime on the return type),
16306 // and calling the accessor twice on the same [`Caixa`] must
16307 // yield equal values (idempotent, no side effects). Peer of the
16308 // sibling `estrategia_projects_option_by_copy` (ed04d3c) pin on
16309 // the outer-`Caixa` `Option<Copy>`-return flat-spread axis.
16310 for max_restarts in [Some(0u32), Some(5), Some(1000), Some(u32::MAX), None] {
16311 let c = caixa_with_max_restarts(max_restarts);
16312 let first = c.max_restarts();
16313 let second = c.max_restarts();
16314 assert_eq!(
16315 first, second,
16316 "Caixa::max_restarts must be idempotent — two successive \
16317 calls on the same &self must return the same Option<u32>",
16318 );
16319 assert_eq!(
16320 first, max_restarts,
16321 "Caixa::max_restarts must return :max-restarts verbatim \
16322 by Copy — got {first:?}, expected {max_restarts:?}",
16323 );
16324 }
16325 }
16326
16327 #[test]
16328 fn declared_supervisor_slots_max_restarts_arm_routes_through_accessor() {
16329 // Composition pin: [`Caixa::declared_supervisor_slots`]'s
16330 // `:max-restarts` presence-probe arm must key off
16331 // [`Caixa::max_restarts`], not the raw
16332 // `self.max_restarts.is_some()` field-probe. Structurally: every
16333 // `Caixa { max_restarts: Some(_), .. }` variant must push
16334 // `SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS` onto the declared-slot
16335 // list (the presence bit is `Some` for every representative
16336 // count, so the M2 kind-coherence gate must surface the slot as
16337 // "declared"), and a `Caixa { max_restarts: None, .. }` must
16338 // NOT push the label. Peer of the sibling
16339 // `declared_supervisor_slots_estrategia_arm_routes_through_accessor`
16340 // (ed04d3c) composition pin — same routing-through-accessor
16341 // discipline extended onto the sibling flat-spread `Option<u32>`
16342 // arm.
16343 for max_restarts in [0u32, 5, 1000, u32::MAX] {
16344 let c = caixa_with_max_restarts(Some(max_restarts));
16345 let slots = c.declared_supervisor_slots();
16346 assert!(
16347 slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS),
16348 "declared_supervisor_slots must push \
16349 SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS when `:max-restarts` \
16350 is Some({max_restarts}) — the accessor and the \
16351 enumerator gate must route through the same \
16352 substrate-primitive typed dispatch on the outer \
16353 :max-restarts presence bit (got slots={slots:?})",
16354 );
16355 }
16356 let c = caixa_with_max_restarts(None);
16357 let slots = c.declared_supervisor_slots();
16358 assert!(
16359 !slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS),
16360 "declared_supervisor_slots must NOT push \
16361 SUPERVISOR_AUTHOR_KEY_MAX_RESTARTS when `:max-restarts` is \
16362 None — the author-omitted arm must route through the \
16363 accessor's None-return unchanged (got slots={slots:?})",
16364 );
16365 }
16366
16367 #[test]
16368 fn supervisor_view_max_restarts_arm_routes_through_accessor() {
16369 // Composition pin: [`Caixa::supervisor_view`]'s per-`:max-restarts`
16370 // [`SupervisorSpec`] construction arm must key off
16371 // [`Caixa::max_restarts`]'s `unwrap_or(5)` fold, not the raw
16372 // `self.max_restarts.unwrap_or(5)` field-fold. Structurally: for
16373 // every `:kind Supervisor` `Caixa` carrying an author-declared
16374 // `Some(n)`, the composed [`SupervisorSpec`]'s `.max_restarts()`
16375 // must byte-equal `n`; and for a `:kind Supervisor` `Caixa`
16376 // carrying `None`, the composed [`SupervisorSpec`]'s
16377 // `.max_restarts()` must byte-equal the OTP-canonical `5`. Peer
16378 // of the sibling
16379 // `supervisor_view_estrategia_arm_routes_through_accessor`
16380 // (ed04d3c) composition pin.
16381 for max_restarts in [1u32, 5, 1000] {
16382 let c = caixa_supervisor_with_max_restarts_and_window(Some(max_restarts), None);
16383 let view = c.supervisor_view().expect(
16384 "supervisor_view must materialize a SupervisorSpec for a \
16385 :kind Supervisor Caixa carrying a Some(:max-restarts)",
16386 );
16387 assert_eq!(
16388 view.max_restarts(),
16389 max_restarts,
16390 "supervisor_view must carry the outer \
16391 Caixa::max_restarts() Some arm onto the composed \
16392 SupervisorSpec.max_restarts field verbatim (got {}, \
16393 expected {max_restarts})",
16394 view.max_restarts(),
16395 );
16396 }
16397 let c = caixa_supervisor_with_max_restarts_and_window(None, None);
16398 let view = c.supervisor_view().expect(
16399 "supervisor_view must materialize a SupervisorSpec for a \
16400 :kind Supervisor Caixa carrying a None :max-restarts",
16401 );
16402 assert_eq!(
16403 view.max_restarts(),
16404 5,
16405 "supervisor_view must project the outer \
16406 Caixa::max_restarts() None arm onto the OTP-canonical \
16407 {{intensity, 5, 60}} default (5) through the flat-spread \
16408 unwrap_or(5) fold (got {})",
16409 view.max_restarts(),
16410 );
16411 assert!(
16412 c.max_restarts().is_none(),
16413 "Caixa::max_restarts() must remain None on the author-\
16414 omitted arm — the supervisor_view fold must not mutate \
16415 the outer flat-spread presence bit",
16416 );
16417 }
16418
16419 #[test]
16420 fn supervisor_view_estrategia_fallback_routes_through_lifted_default() {
16421 // Composition pin: [`Caixa::supervisor_view`]'s author-omitted
16422 // `:estrategia` arm must degrade onto the substrate-canonical
16423 // [`crate::supervisor::SUPERVISOR_ESTRATEGIA_DEFAULT`] typed
16424 // `pub const` — the Erlang/OTP-canonical `one_for_one` strategy
16425 // half of Learn You Some Erlang's `{one_for_one, intensity, 5, 60}`
16426 // worker-supervisor default — rather than the transitively-
16427 // derived [`crate::supervisor::RestartStrategy::default`] route
16428 // the prior `.unwrap_or_default()` fold reached for. Prior to the
16429 // lift the composition site carried `.unwrap_or_default()` with
16430 // no compile-time link back to the shared OTP-canonical strategy
16431 // default that the paired [`crate::supervisor::Default for
16432 // RestartStrategy`] impl and the [`crate::supervisor::Default for
16433 // SupervisorSpec`] impl's struct-literal `estrategia` field both
16434 // (now) route through the same lifted constant — so a future
16435 // rebrand of the OTP-canonical strategy default (an OTP
16436 // `rest_for_one` widening once the substrate discovers startup-
16437 // order-coupled child cohorts as the more common worker-
16438 // supervisor shape, a per-cluster overlay the operator pins
16439 // through the MESH-COMPOSITION §III.2 supervision-canary
16440 // `:estrategia-overrides` roadmap slot) would have had to migrate
16441 // the paired `MaxIntensity` + `Period` halves through the lifted
16442 // constants and the `one_for_one` half through a
16443 // `RestartStrategy::default()` route in lockstep or a
16444 // `:kind Supervisor` caixa carrying an author-omitted
16445 // `:estrategia` slot would silently resolve to a `SupervisorSpec`
16446 // whose `estrategia` disagreed with the paired
16447 // `SupervisorSpec::default()` view. Byte-parity against the
16448 // lifted constant closes the split. Peer of the sibling
16449 // [`supervisor_view_max_restarts_fallback_routes_through_lifted_default`]
16450 // composition pin on the paired `MaxIntensity` half + the
16451 // [`crate::supervisor::restart_strategy_default_routes_through_lifted_default`]
16452 // + [`crate::supervisor::supervisor_spec_default_estrategia_routes_through_lifted_default`]
16453 // pins on the sibling entry points onto the shared substrate
16454 // constant.
16455 use crate::CaixaKind;
16456 use crate::supervisor::{ChildSpec, RestartPolicy};
16457 let mut c = Caixa::from_lisp(&Caixa::template("root")).unwrap();
16458 c.kind = CaixaKind::Supervisor;
16459 c.estrategia = None;
16460 c.children = vec![ChildSpec {
16461 caixa: "worker".into(),
16462 versao: "^0.1".into(),
16463 restart: RestartPolicy::Permanent,
16464 }];
16465 let view = c.supervisor_view().expect(
16466 "supervisor_view must materialize a SupervisorSpec for a \
16467 :kind Supervisor Caixa carrying a None :estrategia",
16468 );
16469 assert_eq!(
16470 view.estrategia(),
16471 crate::supervisor::SUPERVISOR_ESTRATEGIA_DEFAULT,
16472 "supervisor_view must degrade the outer \
16473 Caixa::estrategia() None arm onto the lifted \
16474 SUPERVISOR_ESTRATEGIA_DEFAULT typed pub const (got {:?}, \
16475 expected {:?})",
16476 view.estrategia(),
16477 crate::supervisor::SUPERVISOR_ESTRATEGIA_DEFAULT,
16478 );
16479 }
16480
16481 #[test]
16482 fn supervisor_view_max_restarts_fallback_routes_through_lifted_default() {
16483 // Composition pin: [`Caixa::supervisor_view`]'s author-omitted
16484 // `:max-restarts` arm must degrade onto the substrate-canonical
16485 // [`crate::supervisor::SUPERVISOR_MAX_RESTARTS_DEFAULT`] typed
16486 // `pub const` — the Erlang/OTP-canonical `{intensity, 5, 60}`
16487 // `MaxIntensity` default — rather than a raw `5` literal. Prior
16488 // to the lift the composition site carried an inline
16489 // `.unwrap_or(5)` with no compile-time link back to the shared
16490 // OTP-canonical default that the serde-side
16491 // `#[serde(default = "default_max_restarts")]` wire-format arm
16492 // and the [`Default for crate::supervisor::SupervisorSpec`]
16493 // struct-literal default arm both key off — so a future rebrand
16494 // of the OTP-canonical default (Elixir's `Supervisor` `3`
16495 // default, a per-cluster overlay the operator pins through the
16496 // MESH-COMPOSITION §III.2 supervision-canary
16497 // `:supervisor :max-restarts-overrides` roadmap slot) would
16498 // have had to be threaded through both the serde-side helper
16499 // and this view-construction arm in lockstep or a `:kind
16500 // Supervisor` caixa carrying `:max-restarts ()` would silently
16501 // resolve to a `SupervisorSpec` whose `max_restarts` disagreed
16502 // with the same fixture's serde-side `SupervisorSpec` view (an
16503 // author-omitted slot round-tripping through
16504 // `SupervisorSpec::default()` to the lifted constant, then
16505 // splitting to a stale literal past `supervisor_view`).
16506 // Byte-parity against the lifted constant closes the split.
16507 // Peer of the sibling
16508 // [`crate::supervisor::default_max_restarts_helper_routes_through_lifted_default`]
16509 // + [`crate::supervisor::supervisor_spec_default_max_restarts_routes_through_lifted_default`]
16510 // composition pins that close the same routing on the two
16511 // sibling entry points onto the shared substrate constant.
16512 let c = caixa_supervisor_with_max_restarts_and_window(None, None);
16513 let view = c.supervisor_view().expect(
16514 "supervisor_view must materialize a SupervisorSpec for a \
16515 :kind Supervisor Caixa carrying a None :max-restarts",
16516 );
16517 assert_eq!(
16518 view.max_restarts(),
16519 crate::supervisor::SUPERVISOR_MAX_RESTARTS_DEFAULT,
16520 "supervisor_view must degrade the outer \
16521 Caixa::max_restarts() None arm onto the lifted \
16522 SUPERVISOR_MAX_RESTARTS_DEFAULT typed pub const (got {}, \
16523 expected {})",
16524 view.max_restarts(),
16525 crate::supervisor::SUPERVISOR_MAX_RESTARTS_DEFAULT,
16526 );
16527 }
16528
16529 #[test]
16530 fn restart_window_returns_restart_window_option_verbatim_across_permutations() {
16531 // Value-shape pin: [`Caixa::restart_window`] returns the
16532 // `:restart-window` typed `Option<String>` verbatim as an
16533 // `Option<&str>`, borrowed from the typed slot's own storage,
16534 // byte-equal across the author-omitted `None` arm and each of
16535 // the representative fixtures in the accept-set — the canonical
16536 // `"60s"` from `{intensity, 5, 60}`, the sibling
16537 // canonical-magnitude forms (`"5m"` / `"1h"` / `"500ms"` / `"30"`
16538 // / `"0s"`) the shared codec's positive-set sweep pin covers,
16539 // plus a past-the-guard sentinel (`"1.5s"` — the fractional-
16540 // seconds drift the sibling [`Self::validate_restart_window`]
16541 // gate refuses; the accessor must ship the raw slot verbatim
16542 // so struct-literal fixtures continue to expose the drift at
16543 // the accessor boundary). Third outer top-level [`Caixa`]
16544 // supervisor-tree flat-spread pin — extends the sub-family onto
16545 // the sibling `Option<&str>` raw-duration-string arm.
16546 for window in [
16547 None,
16548 Some("60s"),
16549 Some("5m"),
16550 Some("1h"),
16551 Some("500ms"),
16552 Some("1.5s"),
16553 Some(""),
16554 ] {
16555 let c = caixa_with_restart_window(window);
16556 assert_eq!(
16557 c.restart_window(),
16558 window,
16559 "Caixa::restart_window must return :restart-window \
16560 verbatim as Option<&str> (got {:?}, expected {window:?})",
16561 c.restart_window(),
16562 );
16563 assert_eq!(
16564 c.restart_window(),
16565 c.restart_window.as_deref(),
16566 "Caixa::restart_window accessor and \
16567 self.restart_window.as_deref() field access must \
16568 byte-equal — a byte-level drift would silently split \
16569 the paired Caixa::declared_supervisor_slots \
16570 presence-probe arm from the \
16571 Caixa::validate_restart_window shared-codec gate and \
16572 the Caixa::supervisor_view soft-swallowing fold",
16573 );
16574 }
16575 }
16576
16577 #[test]
16578 fn restart_window_projects_slice_by_borrow() {
16579 // The by-borrow pin: [`Caixa::restart_window`] returns
16580 // `Option<&str>` by borrow — the returned string slice borrows
16581 // the underlying `Option<String>` storage of the `:restart-window`
16582 // slot and the accessor must not clone on every call. Peer of
16583 // the sibling outer top-level [`Caixa`] `Option<&str>`-return
16584 // by-borrow pins on the universal-axis scalar family
16585 // (`licenca_projects_option_ref_by_borrow` /
16586 // `descricao_projects_option_ref_by_borrow` and siblings) —
16587 // extended onto the M2 supervisor-tree flat-spread
16588 // `Option<&str>` raw-duration-string axis.
16589 for window in [None, Some("60s"), Some("5m"), Some("")] {
16590 let c = caixa_with_restart_window(window);
16591 let first = c.restart_window();
16592 let second = c.restart_window();
16593 assert_eq!(
16594 first, second,
16595 "Caixa::restart_window must be idempotent — two \
16596 successive calls on the same &self must return the \
16597 same Option<&str>",
16598 );
16599 if let (Some(a), Some(b)) = (first, second) {
16600 assert_eq!(
16601 a.as_ptr(),
16602 b.as_ptr(),
16603 "Caixa::restart_window must borrow the underlying \
16604 String storage — two successive Some-arm calls must \
16605 return slices with the same backing pointer (a fresh \
16606 String clone would change the pointer on every call)",
16607 );
16608 }
16609 assert_eq!(
16610 first, window,
16611 "Caixa::restart_window must return :restart-window \
16612 verbatim by borrow — got {first:?}, expected {window:?}",
16613 );
16614 }
16615 }
16616
16617 #[test]
16618 fn declared_supervisor_slots_restart_window_arm_routes_through_accessor() {
16619 // Composition pin: [`Caixa::declared_supervisor_slots`]'s
16620 // `:restart-window` presence-probe arm must key off
16621 // [`Caixa::restart_window`], not the raw
16622 // `self.restart_window.is_some()` field-probe. Structurally:
16623 // every `Caixa { restart_window: Some(_), .. }` must push
16624 // `SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW` onto the declared-slot
16625 // list, and a `Caixa { restart_window: None, .. }` must NOT
16626 // push the label. Peer of the sibling
16627 // `declared_supervisor_slots_max_restarts_arm_routes_through_accessor`
16628 // routing pin.
16629 for window in ["60s", "5m", "1h", "500ms", "1.5s", ""] {
16630 let c = caixa_with_restart_window(Some(window));
16631 let slots = c.declared_supervisor_slots();
16632 assert!(
16633 slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW),
16634 "declared_supervisor_slots must push \
16635 SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW when \
16636 `:restart-window` is Some({window:?}) — the accessor \
16637 and the enumerator gate must route through the same \
16638 substrate-primitive typed dispatch on the outer \
16639 :restart-window presence bit (got slots={slots:?})",
16640 );
16641 }
16642 let c = caixa_with_restart_window(None);
16643 let slots = c.declared_supervisor_slots();
16644 assert!(
16645 !slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW),
16646 "declared_supervisor_slots must NOT push \
16647 SUPERVISOR_AUTHOR_KEY_RESTART_WINDOW when `:restart-window` \
16648 is None — the author-omitted arm must route through the \
16649 accessor's None-return unchanged (got slots={slots:?})",
16650 );
16651 }
16652
16653 #[test]
16654 fn validate_restart_window_arm_routes_through_accessor() {
16655 // Composition pin: [`Caixa::validate_restart_window`]'s
16656 // shared-codec fold arm must key off [`Caixa::restart_window`],
16657 // not the raw `self.restart_window.as_deref()` field-projection.
16658 // Structurally: (1) `None` → `Ok(())` (the "omit the slot to
16659 // express no reset" canonical shape); (2) a canonical `Some`
16660 // arm (`"60s"`) → `Ok(())`; (3) a codec-rejected `Some` arm
16661 // (`"1.5s"`) → `Err(RestartWindowMalformed { restart_window,
16662 // .. })` carrying the offending raw string verbatim. The three
16663 // arms jointly pin that the validator's raw-string binding is
16664 // the accessor's return, not a peer projection — any future
16665 // silent detour that had the accessor collapse `Some("")` to
16666 // `None` would silently absorb the empty-after-trim refusal
16667 // case at the accessor boundary.
16668 caixa_with_restart_window(None)
16669 .validate_restart_window()
16670 .expect("None :restart-window must validate through the accessor");
16671 caixa_with_restart_window(Some("60s"))
16672 .validate_restart_window()
16673 .expect("canonical :restart-window \"60s\" must validate through the accessor");
16674 let err = caixa_with_restart_window(Some("1.5s"))
16675 .validate_restart_window()
16676 .expect_err("fractional-seconds :restart-window must fail through the accessor");
16677 assert!(
16678 matches!(
16679 err,
16680 ManifestError::RestartWindowMalformed { ref restart_window, .. }
16681 if restart_window == "1.5s"
16682 ),
16683 "validator must carry the offending raw string verbatim \
16684 from the accessor's borrowed &str (got {err:?})",
16685 );
16686 }
16687
16688 #[test]
16689 fn supervisor_view_restart_window_arm_routes_through_accessor() {
16690 // Composition pin: [`Caixa::supervisor_view`]'s
16691 // per-`:restart-window` [`SupervisorSpec`] construction arm
16692 // must key off [`Caixa::restart_window`]'s soft-swallowing
16693 // `.and_then(|s| duration_codec::parse(s).ok())` fold, not the
16694 // raw `self.restart_window.as_deref().and_then(…)` field-fold.
16695 // Structurally: (1) `None` → `SupervisorSpec.restart_window ==
16696 // None` (the "never reset" sentinel); (2) canonical `Some("60s")`
16697 // → `SupervisorSpec.restart_window == Some(Duration::from_secs(60))`
16698 // (the shared codec's canonical parse); (3) codec-rejected
16699 // `Some("1.5s")` → `SupervisorSpec.restart_window == None`
16700 // (the soft-swallow preserving the view's best-effort shape).
16701 let c = caixa_supervisor_with_max_restarts_and_window(None, None);
16702 let view = c.supervisor_view().expect("Supervisor kind has a view");
16703 assert_eq!(
16704 view.restart_window(),
16705 None,
16706 "supervisor_view must project outer None :restart-window \
16707 onto None on the composed SupervisorSpec (never-reset \
16708 sentinel) through the accessor's None-return unchanged",
16709 );
16710
16711 let c = caixa_supervisor_with_max_restarts_and_window(None, Some("60s"));
16712 let view = c.supervisor_view().expect("Supervisor kind has a view");
16713 assert_eq!(
16714 view.restart_window(),
16715 Some(std::time::Duration::from_secs(60)),
16716 "supervisor_view must fold outer Some(\"60s\") through the \
16717 shared duration_codec into Duration::from_secs(60) on the \
16718 composed SupervisorSpec (accessor's Some(&str) → codec \
16719 parse → Some(Duration))",
16720 );
16721
16722 let c = caixa_supervisor_with_max_restarts_and_window(None, Some("1.5s"));
16723 let view = c.supervisor_view().expect("Supervisor kind has a view");
16724 assert_eq!(
16725 view.restart_window(),
16726 None,
16727 "supervisor_view must soft-swallow the shared-codec parse \
16728 failure to None (the view's best-effort shape the sibling \
16729 manifest-level validate_restart_window surfaces as \
16730 RestartWindowMalformed); the accessor's raw-string return \
16731 is the single input every downstream consumer keys off",
16732 );
16733 }
16734
16735 // ── Caixa::upgrade_from — outer top-level &[UpgradeFromEntry] composite-slice accessor ──
16736
16737 fn caixa_with_upgrade_from(upgrade_from: Vec<crate::upgrade::UpgradeFromEntry>) -> Caixa {
16738 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
16739 c.upgrade_from = upgrade_from;
16740 c
16741 }
16742
16743 #[test]
16744 fn upgrade_from_returns_upgrade_from_slice_verbatim_across_permutations() {
16745 // The canonical per-`Caixa` `:upgrade-from` M2 typed-slot
16746 // outer-composite `&[UpgradeFromEntry]`-return slice-shape
16747 // pin: [`Caixa::upgrade_from`] must return the `:upgrade-from`
16748 // typed `Vec<UpgradeFromEntry>` verbatim as a
16749 // `&[UpgradeFromEntry]` slice-view over the same backing
16750 // buffer the raw `self.upgrade_from.as_slice()` field access
16751 // borrows from, element-equal across every representative
16752 // fixture in the accept-set — `[]` (the "no hot-upgrade path
16753 // declared" arm every `defcaixa` without an `:upgrade-from`
16754 // block carries; `#[serde(default)]` folds an omitted slot
16755 // onto `Vec::new()`), a canonical single-entry `Restart`
16756 // fixture (the shape most Servicos carry — a single prior
16757 // version with the fallback strategy), a canonical multi-
16758 // entry list carrying every typed instruction variant
16759 // (`LoadModule` / `StateChange` / `SoftPurge` / `Purge` /
16760 // `Restart`), and a past-the-guard sentinel — a duplicate-
16761 // `:from` `[(0.1.0, Restart), (0.1.0, Restart)]` entry pair
16762 // ([`crate::upgrade::validate_upgrade_from`] rejects through
16763 // `DuplicateFrom { from: "0.1.0" }` but the accessor must
16764 // ship the raw slot verbatim so struct-literal fixtures
16765 // continue to expose the duplicate at the accessor boundary).
16766 //
16767 // Pins against a future silent detour that returned an owned
16768 // `Vec<UpgradeFromEntry>` (which would type-check but silently
16769 // clone on every accessor call, breaking the zero-cost
16770 // projection every peer sibling slice accessor carries), a
16771 // `[dup, dup] → [dup]` dedup collapse (which would silently
16772 // absorb the `DuplicateFrom` refusal case at the accessor
16773 // boundary and the [`crate::StandardLayout::verify`] cross-
16774 // entry gate would silently accept a struct-literal `Caixa`
16775 // carrying the drift), a reference to an operator-resolved
16776 // overlay (the future per-cluster `:upgrade-overrides` slot
16777 // — its resolution must land at exactly this accessor body,
16778 // not silently divert the raw slot away from a second
16779 // consumer), or an axis-shuffled projection (a future detour
16780 // that reordered entries through the accessor would silently
16781 // split the paired [`crate::StandardLayout::verify`] per-
16782 // `:upgrade-from` shape gate's traversal input from the peer
16783 // [`crate::render::servico_m2_overlay`] emitter's projection
16784 // input, since the operator's hot-upgrade dispatch matches
16785 // per-`:from` and axis reordering would silently split the
16786 // per-entry script-path existence probe's iteration order
16787 // from the M2 overlay emitter's serialized-entry order).
16788 //
16789 // First outer top-level [`Caixa`] `&[Composite]`-return
16790 // slice accessor pin on the substrate primitive for M2 / M3
16791 // typed-slot vec-carry axes — opens the outer-`Caixa`
16792 // `&[Composite]` composite-slice projection pattern the
16793 // sibling `:children` [`crate::supervisor::ChildSpec`] /
16794 // `:membros` [`crate::aplicacao::Membro`] / `:contratos`
16795 // [`crate::aplicacao::WitContract`] future outer-composite-
16796 // slice pins fold on. Peer of the closed outer-`Caixa`
16797 // scalar `Option<&Composite>` composite-reference family the
16798 // sibling `limits` / `behavior` / `politicas` / `placement`
16799 // / `entrada` `..._returns_..._option_ref_verbatim_across_
16800 // permutations` pins closed (b2bd9d7 → e4128e4) — extends
16801 // the "byte-equal, borrow-shared" outer-accessor discipline
16802 // onto the outer-`Caixa` `&[Composite]` vec-carry altitude.
16803 use crate::upgrade::{UpgradeFromEntry, UpgradeInstruction};
16804 let fixtures: Vec<Vec<UpgradeFromEntry>> = vec![
16805 vec![],
16806 vec![UpgradeFromEntry {
16807 from: "0.0.1".into(),
16808 instructions: vec![UpgradeInstruction::Restart],
16809 }],
16810 vec![
16811 UpgradeFromEntry {
16812 from: "0.0.1".into(),
16813 instructions: vec![
16814 UpgradeInstruction::LoadModule {
16815 module: "demo".into(),
16816 },
16817 UpgradeInstruction::SoftPurge {
16818 module: "demo".into(),
16819 },
16820 ],
16821 },
16822 UpgradeFromEntry {
16823 from: "0.0.2".into(),
16824 instructions: vec![
16825 UpgradeInstruction::StateChange {
16826 script: "servicos/upgrade.lisp".into(),
16827 },
16828 UpgradeInstruction::Purge {
16829 module: "demo".into(),
16830 },
16831 UpgradeInstruction::Restart,
16832 ],
16833 },
16834 ],
16835 vec![
16836 UpgradeFromEntry {
16837 from: "0.1.0".into(),
16838 instructions: vec![UpgradeInstruction::Restart],
16839 },
16840 UpgradeFromEntry {
16841 from: "0.1.0".into(),
16842 instructions: vec![UpgradeInstruction::Restart],
16843 },
16844 ],
16845 ];
16846 for upgrade_from in fixtures {
16847 let c = caixa_with_upgrade_from(upgrade_from.clone());
16848 assert_eq!(
16849 c.upgrade_from(),
16850 upgrade_from.as_slice(),
16851 "Caixa::upgrade_from must return :upgrade-from \
16852 verbatim (got {:?}, expected {upgrade_from:?})",
16853 c.upgrade_from(),
16854 );
16855 assert_eq!(
16856 c.upgrade_from(),
16857 c.upgrade_from.as_slice(),
16858 "Caixa::upgrade_from must element-equal the raw \
16859 `self.upgrade_from.as_slice()` field access across \
16860 every value in the Vec<UpgradeFromEntry> accept-set",
16861 );
16862 assert_eq!(
16863 c.upgrade_from().is_empty(),
16864 c.upgrade_from.is_empty(),
16865 "Caixa::upgrade_from().is_empty() must byte-equal \
16866 self.upgrade_from.is_empty() — a presence-bit drift \
16867 would silently split the paired \
16868 Caixa::declared_servico_slots M2 declared-slot \
16869 enumerator's presence probe from the peer \
16870 crate::render::servico_m2_overlay M2 overlay \
16871 emitter's presence gate",
16872 );
16873 }
16874 }
16875
16876 #[test]
16877 fn declared_servico_slots_upgrade_from_arm_routes_through_accessor() {
16878 // Composition pin: [`Caixa::declared_servico_slots`]'s
16879 // `:upgrade-from` presence-probe arm must key off
16880 // [`Caixa::upgrade_from`], not the raw
16881 // `self.upgrade_from.is_empty()` field-probe. Structurally: a
16882 // `Caixa { upgrade_from: vec![UpgradeFromEntry { from: "0.0.1",
16883 // instructions: vec![Restart] }], .. }` must push
16884 // `M2_AUTHOR_KEY_UPGRADE_FROM` onto the declared-slot list
16885 // (the presence bit is non-empty, so the M2 kind-coherence
16886 // gate must surface the slot as "declared"), and a `Caixa {
16887 // upgrade_from: vec![], .. }` must NOT push the label (the
16888 // "author omitted the slot entirely" arm — the empty-slice
16889 // partition the serde-default folds onto). The pair jointly
16890 // pins the accessor + declared-slot enumerator composition:
16891 // any future silent detour that had the accessor collapse
16892 // `[Restart]` to `[]` (a `.filter(|e| !e.instructions.
16893 // is_empty())` projection) would silently absorb the
16894 // "declared but degenerate" arm at the accessor boundary and
16895 // the [`crate::LayoutError::ServicoSlotsOnNonServico`] kind-
16896 // coherence gate would silently accept a struct-literal
16897 // `Caixa` carrying the drift.
16898 //
16899 // Peer of the sibling
16900 // `declared_servico_slots_limits_arm_routes_through_accessor`
16901 // (b2bd9d7) and
16902 // `declared_servico_slots_behavior_arm_routes_through_accessor`
16903 // (35d8b52) composition pins on the sibling `:limits` /
16904 // `:behavior` outer-`Option<&Composite>` arms — same "the
16905 // enumerator gate must route through the substrate-primitive
16906 // typed dispatch" discipline extended onto the third M2
16907 // Servico-runtime slot axis, closing the enumerator's routing
16908 // invariant on every M2 arm.
16909 use crate::upgrade::{UpgradeFromEntry, UpgradeInstruction};
16910 let c = caixa_with_upgrade_from(vec![UpgradeFromEntry {
16911 from: "0.0.1".into(),
16912 instructions: vec![UpgradeInstruction::Restart],
16913 }]);
16914 let slots = c.declared_servico_slots();
16915 assert!(
16916 slots.contains(&crate::render::M2_AUTHOR_KEY_UPGRADE_FROM),
16917 "declared_servico_slots must push \
16918 M2_AUTHOR_KEY_UPGRADE_FROM when `:upgrade-from` is \
16919 non-empty — the accessor and the enumerator gate must \
16920 route through the same substrate-primitive typed \
16921 dispatch on the outer :upgrade-from presence bit (got \
16922 slots={slots:?})",
16923 );
16924 let c = caixa_with_upgrade_from(vec![]);
16925 let slots = c.declared_servico_slots();
16926 assert!(
16927 !slots.contains(&crate::render::M2_AUTHOR_KEY_UPGRADE_FROM),
16928 "declared_servico_slots must NOT push \
16929 M2_AUTHOR_KEY_UPGRADE_FROM when `:upgrade-from` is \
16930 empty — the author-omitted arm must route through the \
16931 accessor's empty-slice return unchanged (got \
16932 slots={slots:?})",
16933 );
16934 }
16935
16936 #[test]
16937 fn servico_m2_overlay_upgrade_from_arm_routes_through_accessor() {
16938 // Composition pin: [`crate::render::servico_m2_overlay`]'s
16939 // per-`:upgrade-from` M2 overlay emit arm must key off
16940 // [`Caixa::upgrade_from`], not the raw
16941 // `!caixa.upgrade_from.is_empty()` presence gate + the
16942 // `serde_yaml::to_value(&caixa.upgrade_from)` projection.
16943 // Structurally: a `Caixa { upgrade_from: vec![UpgradeFromEntry
16944 // { from: "0.0.1", instructions: vec![Restart] }], .. }` must
16945 // surface the `M2_KEY_UPGRADE_FROM` key with a per-entry
16946 // sequence in the overlay (the emitter fans onto the serde
16947 // slice-serialization), and a `Caixa { upgrade_from: vec![],
16948 // .. }` must omit the key entirely (the empty-slice
16949 // partition — the `!.is_empty()` outer gate elides the key
16950 // when the author omitted the slot). The pair jointly pins
16951 // the accessor + M2 overlay emitter composition: any future
16952 // silent detour that had the accessor return a fresh-cloned
16953 // `Vec<UpgradeFromEntry>` copy would silently break the
16954 // reference-identity pin the peer per-entry
16955 // `serde_yaml::to_value(caixa.upgrade_from())` projection
16956 // reads from — the projection would clone once per accessor
16957 // call instead of borrowing the storage buffer verbatim.
16958 //
16959 // Peer of the sibling
16960 // `servico_m2_overlay_limits_arm_routes_through_accessor`
16961 // (b2bd9d7) and
16962 // `servico_m2_overlay_behavior_arm_routes_through_accessor`
16963 // (35d8b52) composition pins on the sibling `:limits` /
16964 // `:behavior` outer-`Option<&Composite>` arms — same "the
16965 // M2 overlay emitter must route through the substrate-
16966 // primitive typed dispatch" discipline extended onto the
16967 // third M2 Servico-runtime slot axis, closing the overlay
16968 // emitter's routing invariant on every M2 arm.
16969 use crate::render::{M2_KEY_UPGRADE_FROM, servico_m2_overlay};
16970 use crate::upgrade::{UpgradeFromEntry, UpgradeInstruction};
16971 let c = caixa_with_upgrade_from(vec![UpgradeFromEntry {
16972 from: "0.0.1".into(),
16973 instructions: vec![UpgradeInstruction::Restart],
16974 }]);
16975 let overlay = servico_m2_overlay(&c).unwrap();
16976 assert!(
16977 overlay.contains_key(M2_KEY_UPGRADE_FROM),
16978 "servico_m2_overlay must surface M2_KEY_UPGRADE_FROM when \
16979 `:upgrade-from` is non-empty — the accessor and the M2 \
16980 overlay emitter must route through the same substrate- \
16981 primitive typed dispatch on the outer :upgrade-from \
16982 slice (got overlay={overlay:?})",
16983 );
16984 let c = caixa_with_upgrade_from(vec![]);
16985 let overlay = servico_m2_overlay(&c).unwrap();
16986 assert!(
16987 !overlay.contains_key(M2_KEY_UPGRADE_FROM),
16988 "servico_m2_overlay must omit M2_KEY_UPGRADE_FROM when \
16989 `:upgrade-from` is empty — the empty-slice partition \
16990 must route through the accessor's empty-slice return \
16991 unchanged (got overlay={overlay:?})",
16992 );
16993 }
16994
16995 #[test]
16996 fn upgrade_from_projects_slice_by_borrow() {
16997 // The by-borrow pin: [`Caixa::upgrade_from`] returns
16998 // `&[UpgradeFromEntry]` by borrow — the returned slice
16999 // borrows the underlying `Vec<UpgradeFromEntry>` storage of
17000 // the `:upgrade-from` slot and the accessor must not clone
17001 // the backing `Vec` on every call. Peer of the sibling
17002 // outer top-level [`Caixa`] `&[T]`-return by-borrow pins
17003 // (`autores_projects_slice_by_borrow` b5d813f,
17004 // `etiquetas_projects_slice_by_borrow` 78c7d3c,
17005 // `bibliotecas_projects_slice_by_borrow` 8a36c23,
17006 // `exe_projects_slice_by_borrow` 65d9527,
17007 // `servicos_projects_slice_by_borrow` 611f78b,
17008 // `deps_projects_slice_by_borrow` ad34b4e,
17009 // `deps_dev_projects_slice_by_borrow` f7fd81e) on the
17010 // sibling outer top-level [`Caixa`] scalar-element `&[T]`
17011 // axes — extended here to the first outer-`Caixa`
17012 // composite-element `&[Composite]` axis: the accessor's
17013 // returned slice must borrow from `&self` (the returned
17014 // reference's lifetime is tied to `&self`), and calling the
17015 // accessor twice on the same [`Caixa`] must yield slices
17016 // that are pointer-equal (the underlying byte-buffer is the
17017 // storage `Vec`'s allocation, not a fresh copy) as well as
17018 // value-equal (idempotent, no side effects on `&self`).
17019 //
17020 // Pins against a future silent detour that returned an owned
17021 // `Vec<UpgradeFromEntry>` (which would type-check but
17022 // silently clone on every call), a `&Vec<UpgradeFromEntry>`
17023 // return (which would leak the backing `Vec`'s
17024 // grow/push/reserve surface no downstream consumer reaches
17025 // for), or a one-arm-only accessor that returned a
17026 // saturating value on some sentinel input.
17027 use crate::upgrade::{UpgradeFromEntry, UpgradeInstruction};
17028 for upgrade_from in [
17029 vec![],
17030 vec![UpgradeFromEntry {
17031 from: "0.0.1".into(),
17032 instructions: vec![UpgradeInstruction::Restart],
17033 }],
17034 vec![
17035 UpgradeFromEntry {
17036 from: "0.0.1".into(),
17037 instructions: vec![UpgradeInstruction::Restart],
17038 },
17039 UpgradeFromEntry {
17040 from: "0.0.2".into(),
17041 instructions: vec![UpgradeInstruction::SoftPurge {
17042 module: "demo".into(),
17043 }],
17044 },
17045 ],
17046 ] {
17047 let c = caixa_with_upgrade_from(upgrade_from.clone());
17048 let first = c.upgrade_from();
17049 let second = c.upgrade_from();
17050 assert_eq!(
17051 first, second,
17052 "Caixa::upgrade_from must be idempotent — two \
17053 successive calls on the same &self must return the \
17054 same &[UpgradeFromEntry]",
17055 );
17056 assert_eq!(
17057 first.as_ptr(),
17058 second.as_ptr(),
17059 "Caixa::upgrade_from must borrow the underlying \
17060 Vec<UpgradeFromEntry> storage — two successive calls \
17061 must return slices with the same backing pointer (a \
17062 fresh Vec<UpgradeFromEntry> clone would change the \
17063 pointer on every call)",
17064 );
17065 assert_eq!(
17066 first,
17067 upgrade_from.as_slice(),
17068 "Caixa::upgrade_from must return :upgrade-from \
17069 verbatim by borrow — got {first:?}, expected \
17070 {upgrade_from:?}",
17071 );
17072 }
17073 }
17074
17075 // ── Caixa::children — outer top-level &[ChildSpec] composite-slice accessor ──
17076
17077 fn caixa_with_children(children: Vec<crate::supervisor::ChildSpec>) -> Caixa {
17078 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
17079 c.children = children;
17080 c
17081 }
17082
17083 #[test]
17084 fn children_returns_children_slice_verbatim_across_permutations() {
17085 // The canonical per-`Caixa` `:children` M2 supervisor-tree-slot
17086 // outer-composite `&[ChildSpec]`-return slice-shape pin:
17087 // [`Caixa::children`] must return the `:children` typed
17088 // `Vec<ChildSpec>` verbatim as a `&[ChildSpec]` slice-view over
17089 // the same backing buffer the raw `self.children.as_slice()`
17090 // field access borrows from, element-equal across every
17091 // representative fixture in the accept-set — `[]` (the "no
17092 // static children declared" arm every non-`Supervisor`-kind
17093 // `defcaixa` carries by `#[serde(default)]` and every
17094 // `SimpleOneForOne` supervisor carries by cross-slot refusal),
17095 // a canonical single-child `Permanent` fixture (the shape
17096 // most `OneForOne` supervisors carry — a single long-running
17097 // worker child), a canonical multi-child list carrying every
17098 // typed restart-policy variant (`Permanent` / `Transient` /
17099 // `Temporary`), and a past-the-guard sentinel — a duplicate
17100 // `:caixa` `[("w", ...), ("w", ...)]` entry pair
17101 // ([`crate::SupervisorSpec::validate`] rejects through
17102 // `DuplicateChildNome { nome: "w" }` but the accessor must
17103 // ship the raw slot verbatim so struct-literal fixtures
17104 // continue to expose the duplicate at the accessor boundary).
17105 //
17106 // Pins against a future silent detour that returned an owned
17107 // `Vec<ChildSpec>` (which would type-check but silently clone
17108 // on every accessor call, breaking the zero-cost projection
17109 // every peer sibling slice accessor carries), a `[dup, dup] →
17110 // [dup]` dedup collapse (which would silently absorb the
17111 // `DuplicateChildNome` refusal case at the accessor boundary
17112 // and the [`crate::StandardLayout::verify`] cross-child gate
17113 // would silently accept a struct-literal `Caixa` carrying the
17114 // drift), a reference to an operator-resolved overlay (the
17115 // future per-cluster `:children-overrides` slot — its
17116 // resolution must land at exactly this accessor body, not
17117 // silently divert the raw slot away from a second consumer),
17118 // or an axis-shuffled projection (a future detour that
17119 // reordered children through the accessor would silently
17120 // split the paired [`crate::StandardLayout::verify`] per-
17121 // supervisor gate's traversal input from the peer
17122 // [`Self::supervisor_view`] fold-in path's clone-order input,
17123 // since the OTP `RestForOne` restart strategy dispatches on
17124 // declared child order and axis reordering would silently
17125 // split the operator's per-cluster restart-fan-out order
17126 // from the caixa.lisp source-order).
17127 //
17128 // Second outer top-level [`Caixa`] `&[Composite]`-return slice
17129 // accessor pin on the substrate primitive for M2 / M3 typed-
17130 // slot vec-carry axes — folds on the outer-`Caixa`
17131 // `&[Composite]` composite-slice sub-family the sibling
17132 // `upgrade_from_returns_upgrade_from_slice_verbatim_across_permutations`
17133 // (2a1f907) pin opened, peer at the outer altitude of the
17134 // closed inner-`SupervisorSpec` `SupervisorSpec::children`
17135 // (bc92bce) accessor on the same OTP-supervisor static-child-
17136 // list axis.
17137 use crate::supervisor::{ChildSpec, RestartPolicy};
17138 let fixtures: Vec<Vec<ChildSpec>> = vec![
17139 vec![],
17140 vec![ChildSpec {
17141 caixa: "worker".into(),
17142 versao: "^0.1".into(),
17143 restart: RestartPolicy::Permanent,
17144 }],
17145 vec![
17146 ChildSpec {
17147 caixa: "worker-a".into(),
17148 versao: "^0.1".into(),
17149 restart: RestartPolicy::Permanent,
17150 },
17151 ChildSpec {
17152 caixa: "worker-b".into(),
17153 versao: "^0.1".into(),
17154 restart: RestartPolicy::Transient,
17155 },
17156 ChildSpec {
17157 caixa: "worker-c".into(),
17158 versao: "^0.1".into(),
17159 restart: RestartPolicy::Temporary,
17160 },
17161 ],
17162 vec![
17163 ChildSpec {
17164 caixa: "w".into(),
17165 versao: "^0.1".into(),
17166 restart: RestartPolicy::Permanent,
17167 },
17168 ChildSpec {
17169 caixa: "w".into(),
17170 versao: "^0.1".into(),
17171 restart: RestartPolicy::Permanent,
17172 },
17173 ],
17174 ];
17175 for children in fixtures {
17176 let c = caixa_with_children(children.clone());
17177 assert_eq!(
17178 c.children(),
17179 children.as_slice(),
17180 "Caixa::children must return :children verbatim \
17181 (got {:?}, expected {children:?})",
17182 c.children(),
17183 );
17184 assert_eq!(
17185 c.children(),
17186 c.children.as_slice(),
17187 "Caixa::children must element-equal the raw \
17188 `self.children.as_slice()` field access across \
17189 every value in the Vec<ChildSpec> accept-set",
17190 );
17191 assert_eq!(
17192 c.children().is_empty(),
17193 c.children.is_empty(),
17194 "Caixa::children().is_empty() must byte-equal \
17195 self.children.is_empty() — a presence-bit drift \
17196 would silently split the paired \
17197 Caixa::declared_supervisor_slots supervisor-tree \
17198 declared-slot enumerator's presence probe from the \
17199 peer Caixa::supervisor_view typed-view composer's \
17200 fold-in path",
17201 );
17202 }
17203 }
17204
17205 #[test]
17206 fn declared_supervisor_slots_children_arm_routes_through_accessor() {
17207 // Composition pin: [`Caixa::declared_supervisor_slots`]'s
17208 // `:children` presence-probe arm must key off
17209 // [`Caixa::children`], not the raw
17210 // `!self.children.is_empty()` field-probe. Structurally: a
17211 // `Caixa { children: vec![ChildSpec { caixa: "w", versao:
17212 // "^0.1", restart: Permanent }], .. }` must push
17213 // `SUPERVISOR_AUTHOR_KEY_CHILDREN` onto the declared-slot list
17214 // (the presence bit is non-empty, so the supervisor-tree
17215 // kind-coherence gate must surface the slot as "declared"),
17216 // and a `Caixa { children: vec![], .. }` must NOT push the
17217 // label (the "author omitted the slot entirely" arm — the
17218 // empty-slice partition the serde-default folds onto). The
17219 // pair jointly pins the accessor + declared-slot enumerator
17220 // composition: any future silent detour that had the accessor
17221 // collapse `[Permanent]` to `[]` (a `.filter(|c| c.nome() !=
17222 // "__reserved__")` projection) would silently absorb the
17223 // "declared but degenerate" arm at the accessor boundary and
17224 // the [`crate::LayoutError::SupervisorSlotsOnNonSupervisor`]
17225 // kind-coherence gate would silently accept a struct-literal
17226 // `Caixa` carrying the drift.
17227 //
17228 // Peer of the sibling
17229 // `declared_servico_slots_upgrade_from_arm_routes_through_accessor`
17230 // (2a1f907) on the M2 `:upgrade-from` composite-slice arm —
17231 // same "the enumerator gate must route through the substrate-
17232 // primitive typed dispatch" discipline extended onto the
17233 // supervisor-tree `:children` composite-slice arm.
17234 use crate::supervisor::{ChildSpec, RestartPolicy};
17235 let c = caixa_with_children(vec![ChildSpec {
17236 caixa: "w".into(),
17237 versao: "^0.1".into(),
17238 restart: RestartPolicy::Permanent,
17239 }]);
17240 let slots = c.declared_supervisor_slots();
17241 assert!(
17242 slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_CHILDREN),
17243 "declared_supervisor_slots must push \
17244 SUPERVISOR_AUTHOR_KEY_CHILDREN when `:children` is \
17245 non-empty — the accessor and the enumerator gate must \
17246 route through the same substrate-primitive typed \
17247 dispatch on the outer :children presence bit (got \
17248 slots={slots:?})",
17249 );
17250 let c = caixa_with_children(vec![]);
17251 let slots = c.declared_supervisor_slots();
17252 assert!(
17253 !slots.contains(&crate::render::SUPERVISOR_AUTHOR_KEY_CHILDREN),
17254 "declared_supervisor_slots must NOT push \
17255 SUPERVISOR_AUTHOR_KEY_CHILDREN when `:children` is \
17256 empty — the author-omitted arm must route through the \
17257 accessor's empty-slice return unchanged (got \
17258 slots={slots:?})",
17259 );
17260 }
17261
17262 #[test]
17263 fn supervisor_view_children_arm_routes_through_accessor() {
17264 // Composition pin: [`Caixa::supervisor_view`]'s per-`:children`
17265 // fold-in arm must key off [`Caixa::children`], not the raw
17266 // `self.children.clone()` field-clone. Structurally: a `Caixa {
17267 // kind: Supervisor, estrategia: Some(OneForOne), children:
17268 // vec![ChildSpec { caixa: "w", .. }], .. }` must fold the
17269 // per-child list through the accessor into the typed
17270 // [`SupervisorSpec`] view's `children` field verbatim — every
17271 // entry the accessor surfaces must land in the view's
17272 // `children` slot in the same order. The pair jointly pins the
17273 // accessor + view-composer composition: any future silent
17274 // detour that had the accessor return a fresh-cloned
17275 // `Vec<ChildSpec>` copy would silently break the reference-
17276 // identity pin the peer `supervisor_view` fold-in path reads
17277 // from — the fold would clone once more per accessor call
17278 // instead of borrowing the storage buffer verbatim once.
17279 //
17280 // Peer of the sibling
17281 // `supervisor_view_kind_gate_routes_through_accessor` (35d8b52-
17282 // family) composition pin on the peer kind-gate arm — same
17283 // "the view composer must route through the substrate-
17284 // primitive typed dispatch" discipline extended onto the
17285 // per-`:children` fold-in arm, closing the supervisor-view
17286 // composer's routing invariant on the composite-slice input.
17287 use crate::supervisor::{ChildSpec, RestartPolicy, RestartStrategy};
17288 let mut c = caixa_with_children(vec![
17289 ChildSpec {
17290 caixa: "worker-a".into(),
17291 versao: "^0.1".into(),
17292 restart: RestartPolicy::Permanent,
17293 },
17294 ChildSpec {
17295 caixa: "worker-b".into(),
17296 versao: "^0.1".into(),
17297 restart: RestartPolicy::Transient,
17298 },
17299 ]);
17300 c.kind = crate::CaixaKind::Supervisor;
17301 c.estrategia = Some(RestartStrategy::OneForOne);
17302 let view = c
17303 .supervisor_view()
17304 .expect("Supervisor kind must produce a supervisor_view");
17305 assert_eq!(
17306 view.children(),
17307 c.children(),
17308 "supervisor_view must fold Caixa::children verbatim into \
17309 SupervisorSpec::children — the accessor and the view \
17310 composer must route through the same substrate-primitive \
17311 typed dispatch on the outer :children slice (got view \
17312 children={:?}, expected {:?})",
17313 view.children(),
17314 c.children(),
17315 );
17316 }
17317
17318 #[test]
17319 fn children_projects_slice_by_borrow() {
17320 // The by-borrow pin: [`Caixa::children`] returns
17321 // `&[ChildSpec]` by borrow — the returned slice borrows the
17322 // underlying `Vec<ChildSpec>` storage of the `:children` slot
17323 // and the accessor must not clone the backing `Vec` on every
17324 // call. Peer of the sibling outer top-level [`Caixa`]
17325 // `&[T]`-return by-borrow pins (`autores_projects_slice_by_borrow`
17326 // b5d813f, `etiquetas_projects_slice_by_borrow` 78c7d3c,
17327 // `bibliotecas_projects_slice_by_borrow` 8a36c23,
17328 // `exe_projects_slice_by_borrow` 65d9527,
17329 // `servicos_projects_slice_by_borrow` 611f78b,
17330 // `deps_projects_slice_by_borrow` ad34b4e,
17331 // `deps_dev_projects_slice_by_borrow` f7fd81e,
17332 // `upgrade_from_projects_slice_by_borrow` 2a1f907) on the
17333 // sibling outer top-level [`Caixa`] scalar-element and
17334 // composite-element `&[T]` axes — folds on the outer-`Caixa`
17335 // composite-element `&[Composite]` axis: the accessor's
17336 // returned slice must borrow from `&self` (the returned
17337 // reference's lifetime is tied to `&self`), and calling the
17338 // accessor twice on the same [`Caixa`] must yield slices
17339 // that are pointer-equal (the underlying byte-buffer is the
17340 // storage `Vec`'s allocation, not a fresh copy) as well as
17341 // value-equal (idempotent, no side effects on `&self`).
17342 //
17343 // Pins against a future silent detour that returned an owned
17344 // `Vec<ChildSpec>` (which would type-check but silently clone
17345 // on every call), a `&Vec<ChildSpec>` return (which would leak
17346 // the backing `Vec`'s grow/push/reserve surface no downstream
17347 // consumer reaches for), or a one-arm-only accessor that
17348 // returned a saturating value on some sentinel input.
17349 use crate::supervisor::{ChildSpec, RestartPolicy};
17350 for children in [
17351 vec![],
17352 vec![ChildSpec {
17353 caixa: "w".into(),
17354 versao: "^0.1".into(),
17355 restart: RestartPolicy::Permanent,
17356 }],
17357 vec![
17358 ChildSpec {
17359 caixa: "worker-a".into(),
17360 versao: "^0.1".into(),
17361 restart: RestartPolicy::Permanent,
17362 },
17363 ChildSpec {
17364 caixa: "worker-b".into(),
17365 versao: "^0.1".into(),
17366 restart: RestartPolicy::Transient,
17367 },
17368 ],
17369 ] {
17370 let c = caixa_with_children(children.clone());
17371 let first = c.children();
17372 let second = c.children();
17373 assert_eq!(
17374 first, second,
17375 "Caixa::children must be idempotent — two successive \
17376 calls on the same &self must return the same \
17377 &[ChildSpec]",
17378 );
17379 assert_eq!(
17380 first.as_ptr(),
17381 second.as_ptr(),
17382 "Caixa::children must borrow the underlying \
17383 Vec<ChildSpec> storage — two successive calls must \
17384 return slices with the same backing pointer (a fresh \
17385 Vec<ChildSpec> clone would change the pointer on \
17386 every call)",
17387 );
17388 assert_eq!(
17389 first,
17390 children.as_slice(),
17391 "Caixa::children must return :children verbatim by \
17392 borrow — got {first:?}, expected {children:?}",
17393 );
17394 }
17395 }
17396
17397 // ── Caixa::membros — outer top-level &[Membro] composite-slice accessor ──
17398
17399 fn caixa_aplicacao_with_membros(membros: Vec<crate::aplicacao::Membro>) -> Caixa {
17400 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
17401 c.kind = CaixaKind::Aplicacao;
17402 c.membros = membros;
17403 c
17404 }
17405
17406 #[test]
17407 fn membros_returns_membros_slice_verbatim_across_permutations() {
17408 // The canonical per-`Caixa` `:membros` M3 mesh-slot outer-
17409 // composite `&[Membro]`-return slice-shape pin:
17410 // [`Caixa::membros`] must return the `:membros` typed
17411 // `Vec<Membro>` verbatim as a `&[Membro]` slice-view over the
17412 // same backing buffer the raw `self.membros.as_slice()` field
17413 // access borrows from, element-equal across every
17414 // representative fixture in the accept-set — `[]` (the "no
17415 // members declared" arm every non-`Aplicacao`-kind `defcaixa`
17416 // carries by `#[serde(default)]` and every partially-authored
17417 // Aplicacao carries before the
17418 // [`crate::AplicacaoError::MembrosEmpty`] gate fires), a
17419 // canonical single-member fixture (the shape a minimal
17420 // Aplicacao carries — one Servico wrapping one contained
17421 // computation), a canonical multi-member list carrying three
17422 // distinct entries (the canonical checkout-shape Aplicacao —
17423 // cart / pricing / auth — every canonical example carries), and
17424 // a past-the-guard sentinel — a duplicate `:caixa`
17425 // `[("cart", ...), ("cart", ...)]` entry pair
17426 // ([`crate::AplicacaoSpec::validate`] rejects through
17427 // `DuplicateMembro { nome: "cart" }` but the accessor must ship
17428 // the raw slot verbatim so struct-literal fixtures continue to
17429 // expose the duplicate at the accessor boundary).
17430 //
17431 // Pins against a future silent detour that returned an owned
17432 // `Vec<Membro>` (which would type-check but silently clone on
17433 // every accessor call, breaking the zero-cost projection every
17434 // peer sibling slice accessor carries), a `[dup, dup] → [dup]`
17435 // dedup collapse (which would silently absorb the
17436 // `DuplicateMembro` refusal case at the accessor boundary and
17437 // the [`crate::StandardLayout::verify`] cross-member gate would
17438 // silently accept a struct-literal `Caixa` carrying the drift),
17439 // a reference to an operator-resolved overlay (the future per-
17440 // cluster `:membros-overrides` slot — its resolution must land
17441 // at exactly this accessor body, not silently divert the raw
17442 // slot away from a second consumer), or an axis-shuffled
17443 // projection (a future detour that reordered members through
17444 // the accessor would silently split the paired
17445 // [`crate::StandardLayout::verify`] per-Aplicacao gate's
17446 // traversal input from the peer [`Self::aplicacao_view`] fold-
17447 // in path's clone-order input, since the canonical `:contratos`
17448 // `:de`/`:para` and `:entrada :para` cross-slot refusal probes
17449 // read the member set through the same slice).
17450 //
17451 // Third outer top-level [`Caixa`] `&[Composite]`-return slice
17452 // accessor pin on the substrate primitive for M2 / M3 typed-
17453 // slot vec-carry axes — opens the outer-`Caixa` M3 mesh-slot
17454 // arm of the `&[Composite]` composite-slice sub-family the
17455 // sibling M2 `upgrade_from_returns_upgrade_from_slice_verbatim_across_permutations`
17456 // (2a1f907) and
17457 // `children_returns_children_slice_verbatim_across_permutations`
17458 // (c17b51e) pins opened, peer at the outer altitude of the
17459 // closed inner-[`crate::AplicacaoSpec::membros`] (6c77e36)
17460 // accessor on the same MESH-COMPOSITION per-Aplicacao member-
17461 // list axis.
17462 use crate::aplicacao::Membro;
17463 let fixtures: Vec<Vec<Membro>> = vec![
17464 vec![],
17465 vec![Membro {
17466 caixa: "cart".into(),
17467 versao: "^0.1".into(),
17468 }],
17469 vec![
17470 Membro {
17471 caixa: "cart".into(),
17472 versao: "^0.1".into(),
17473 },
17474 Membro {
17475 caixa: "pricing".into(),
17476 versao: "^0.2".into(),
17477 },
17478 Membro {
17479 caixa: "auth".into(),
17480 versao: "^1.0".into(),
17481 },
17482 ],
17483 vec![
17484 Membro {
17485 caixa: "cart".into(),
17486 versao: "^0.1".into(),
17487 },
17488 Membro {
17489 caixa: "cart".into(),
17490 versao: "^0.1".into(),
17491 },
17492 ],
17493 ];
17494 for membros in fixtures {
17495 let c = caixa_aplicacao_with_membros(membros.clone());
17496 assert_eq!(
17497 c.membros(),
17498 membros.as_slice(),
17499 "Caixa::membros must return :membros verbatim \
17500 (got {:?}, expected {membros:?})",
17501 c.membros(),
17502 );
17503 assert_eq!(
17504 c.membros(),
17505 c.membros.as_slice(),
17506 "Caixa::membros must element-equal the raw \
17507 `self.membros.as_slice()` field access across every \
17508 value in the Vec<Membro> accept-set",
17509 );
17510 assert_eq!(
17511 c.membros().is_empty(),
17512 c.membros.is_empty(),
17513 "Caixa::membros().is_empty() must byte-equal \
17514 self.membros.is_empty() — a presence-bit drift would \
17515 silently split the paired Caixa::declared_mesh_slots \
17516 mesh declared-slot enumerator's presence probe from \
17517 the peer Caixa::aplicacao_view typed-view composer's \
17518 fold-in path",
17519 );
17520 }
17521 }
17522
17523 #[test]
17524 fn declared_mesh_slots_membros_arm_routes_through_accessor() {
17525 // Composition pin: [`Caixa::declared_mesh_slots`]'s `:membros`
17526 // presence-probe arm must key off [`Caixa::membros`], not the
17527 // raw `!self.membros.is_empty()` field-probe. Structurally: a
17528 // `Caixa { membros: vec![Membro { caixa: "cart", versao:
17529 // "^0.1" }], .. }` must push `M3_AUTHOR_KEY_MEMBROS` onto the
17530 // declared-slot list (the presence bit is non-empty, so the
17531 // mesh kind-coherence gate must surface the slot as
17532 // "declared"), and a `Caixa { membros: vec![], .. }` must NOT
17533 // push the label (the "author omitted the slot entirely" arm
17534 // — the empty-slice partition the serde-default folds onto).
17535 // The pair jointly pins the accessor + declared-slot
17536 // enumerator composition: any future silent detour that had
17537 // the accessor collapse `[Membro { .. }]` to `[]` (a
17538 // `.filter(|m| m.nome() != "__reserved__")` projection) would
17539 // silently absorb the "declared but degenerate" arm at the
17540 // accessor boundary and the
17541 // [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-
17542 // coherence gate would silently accept a struct-literal
17543 // `Caixa` carrying the drift.
17544 //
17545 // Peer of the sibling
17546 // `declared_servico_slots_upgrade_from_arm_routes_through_accessor`
17547 // (2a1f907) and
17548 // `declared_supervisor_slots_children_arm_routes_through_accessor`
17549 // (c17b51e) composition pins on the M2 `:upgrade-from` /
17550 // `:children` composite-slice arms — same "the enumerator gate
17551 // must route through the substrate-primitive typed dispatch"
17552 // discipline extended onto the M3 `:membros` composite-slice
17553 // arm, opening the M3 arm of the declared-slot enumerator's
17554 // routing invariant.
17555 use crate::aplicacao::Membro;
17556 let c = caixa_aplicacao_with_membros(vec![Membro {
17557 caixa: "cart".into(),
17558 versao: "^0.1".into(),
17559 }]);
17560 let slots = c.declared_mesh_slots();
17561 assert!(
17562 slots.contains(&crate::render::M3_AUTHOR_KEY_MEMBROS),
17563 "declared_mesh_slots must push M3_AUTHOR_KEY_MEMBROS when \
17564 `:membros` is non-empty — the accessor and the enumerator \
17565 gate must route through the same substrate-primitive \
17566 typed dispatch on the outer :membros presence bit (got \
17567 slots={slots:?})",
17568 );
17569 let c = caixa_aplicacao_with_membros(vec![]);
17570 let slots = c.declared_mesh_slots();
17571 assert!(
17572 !slots.contains(&crate::render::M3_AUTHOR_KEY_MEMBROS),
17573 "declared_mesh_slots must NOT push M3_AUTHOR_KEY_MEMBROS \
17574 when `:membros` is empty — the author-omitted arm must \
17575 route through the accessor's empty-slice return unchanged \
17576 (got slots={slots:?})",
17577 );
17578 }
17579
17580 #[test]
17581 fn aplicacao_view_membros_arm_routes_through_accessor() {
17582 // Composition pin: [`Caixa::aplicacao_view`]'s per-`:membros`
17583 // fold-in arm must key off [`Caixa::membros`], not the raw
17584 // `self.membros.clone()` field-clone. Structurally: a `Caixa {
17585 // kind: Aplicacao, membros: vec![Membro { caixa: "cart", .. },
17586 // Membro { caixa: "pricing", .. }], .. }` must fold the per-
17587 // member list through the accessor into the typed
17588 // [`crate::AplicacaoSpec`] view's `membros` slot verbatim —
17589 // every entry the accessor surfaces must land in the view's
17590 // `membros` slot in the same order. The pair jointly pins the
17591 // accessor + view-composer composition: any future silent
17592 // detour that had the accessor return a fresh-cloned
17593 // `Vec<Membro>` copy would silently break the reference-
17594 // identity pin the peer `aplicacao_view` fold-in path reads
17595 // from — the fold would clone once more per accessor call
17596 // instead of borrowing the storage buffer verbatim once.
17597 //
17598 // Peer of the sibling
17599 // `aplicacao_view_politicas_arm_folds_through_accessor`
17600 // (5d23d29) /
17601 // `aplicacao_view_placement_arm_folds_through_accessor`
17602 // (4fb8074) /
17603 // `aplicacao_view_entrada_arm_folds_through_accessor` (e4128e4)
17604 // composition pins on the M3 `:politicas` / `:placement` /
17605 // `:entrada` outer-`Option<&Composite>` arms — extended here to
17606 // the M3 `:membros` outer-`&[Composite]` composite-slice arm,
17607 // closing the aplicacao-view composer's routing invariant on
17608 // the composite-slice input.
17609 use crate::aplicacao::Membro;
17610 let c = caixa_aplicacao_with_membros(vec![
17611 Membro {
17612 caixa: "cart".into(),
17613 versao: "^0.1".into(),
17614 },
17615 Membro {
17616 caixa: "pricing".into(),
17617 versao: "^0.2".into(),
17618 },
17619 ]);
17620 let view = c
17621 .aplicacao_view()
17622 .expect("Aplicacao kind must produce an aplicacao_view");
17623 assert_eq!(
17624 view.membros(),
17625 c.membros(),
17626 "aplicacao_view must fold Caixa::membros verbatim into \
17627 AplicacaoSpec::membros — the accessor and the view \
17628 composer must route through the same substrate-primitive \
17629 typed dispatch on the outer :membros slice (got view \
17630 membros={:?}, expected {:?})",
17631 view.membros(),
17632 c.membros(),
17633 );
17634 }
17635
17636 #[test]
17637 fn membros_projects_slice_by_borrow() {
17638 // The by-borrow pin: [`Caixa::membros`] returns `&[Membro]` by
17639 // borrow — the returned slice borrows the underlying
17640 // `Vec<Membro>` storage of the `:membros` slot and the
17641 // accessor must not clone the backing `Vec` on every call.
17642 // Peer of the sibling outer top-level [`Caixa`] `&[T]`-return
17643 // by-borrow pins (`autores_projects_slice_by_borrow` b5d813f,
17644 // `etiquetas_projects_slice_by_borrow` 78c7d3c,
17645 // `bibliotecas_projects_slice_by_borrow` 8a36c23,
17646 // `exe_projects_slice_by_borrow` 65d9527,
17647 // `servicos_projects_slice_by_borrow` 611f78b,
17648 // `deps_projects_slice_by_borrow` ad34b4e,
17649 // `deps_dev_projects_slice_by_borrow` f7fd81e,
17650 // `upgrade_from_projects_slice_by_borrow` 2a1f907,
17651 // `children_projects_slice_by_borrow` c17b51e) on the sibling
17652 // outer top-level [`Caixa`] scalar-element and composite-
17653 // element `&[T]` axes — folds on the outer-`Caixa` M3 mesh-
17654 // slot composite-element `&[Composite]` axis: the accessor's
17655 // returned slice must borrow from `&self` (the returned
17656 // reference's lifetime is tied to `&self`), and calling the
17657 // accessor twice on the same [`Caixa`] must yield slices that
17658 // are pointer-equal (the underlying byte-buffer is the storage
17659 // `Vec`'s allocation, not a fresh copy) as well as value-equal
17660 // (idempotent, no side effects on `&self`).
17661 //
17662 // Pins against a future silent detour that returned an owned
17663 // `Vec<Membro>` (which would type-check but silently clone on
17664 // every call), a `&Vec<Membro>` return (which would leak the
17665 // backing `Vec`'s grow/push/reserve surface no downstream
17666 // consumer reaches for), or a one-arm-only accessor that
17667 // returned a saturating value on some sentinel input.
17668 use crate::aplicacao::Membro;
17669 for membros in [
17670 vec![],
17671 vec![Membro {
17672 caixa: "cart".into(),
17673 versao: "^0.1".into(),
17674 }],
17675 vec![
17676 Membro {
17677 caixa: "cart".into(),
17678 versao: "^0.1".into(),
17679 },
17680 Membro {
17681 caixa: "pricing".into(),
17682 versao: "^0.2".into(),
17683 },
17684 ],
17685 ] {
17686 let c = caixa_aplicacao_with_membros(membros.clone());
17687 let first = c.membros();
17688 let second = c.membros();
17689 assert_eq!(
17690 first, second,
17691 "Caixa::membros must be idempotent — two successive \
17692 calls on the same &self must return the same &[Membro]",
17693 );
17694 assert_eq!(
17695 first.as_ptr(),
17696 second.as_ptr(),
17697 "Caixa::membros must borrow the underlying Vec<Membro> \
17698 storage — two successive calls must return slices with \
17699 the same backing pointer (a fresh Vec<Membro> clone \
17700 would change the pointer on every call)",
17701 );
17702 assert_eq!(
17703 first,
17704 membros.as_slice(),
17705 "Caixa::membros must return :membros verbatim by borrow \
17706 — got {first:?}, expected {membros:?}",
17707 );
17708 }
17709 }
17710
17711 // ── Caixa::contratos — outer top-level &[WitContract] composite-slice accessor ──
17712
17713 fn caixa_aplicacao_with_contratos(contratos: Vec<crate::aplicacao::WitContract>) -> Caixa {
17714 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
17715 c.kind = CaixaKind::Aplicacao;
17716 c.contratos = contratos;
17717 c
17718 }
17719
17720 fn contrato_http_for_test(
17721 de: &str,
17722 para: &str,
17723 endpoint: &str,
17724 ) -> crate::aplicacao::WitContract {
17725 crate::aplicacao::WitContract {
17726 de: de.into(),
17727 para: para.into(),
17728 wit: "wasi:http/proxy".into(),
17729 endpoint: Some(endpoint.into()),
17730 subject: None,
17731 slot: None,
17732 }
17733 }
17734
17735 #[test]
17736 fn contratos_returns_contratos_slice_verbatim_across_permutations() {
17737 // The canonical per-`Caixa` `:contratos` M3 mesh-slot outer-
17738 // composite `&[WitContract]`-return slice-shape pin:
17739 // [`Caixa::contratos`] must return the `:contratos` typed
17740 // `Vec<WitContract>` verbatim as a `&[WitContract]` slice-view
17741 // over the same backing buffer the raw
17742 // `self.contratos.as_slice()` field access borrows from,
17743 // element-equal across every representative fixture in the
17744 // accept-set — `[]` (the "no contracts declared" arm every
17745 // non-`Aplicacao`-kind `defcaixa` carries by
17746 // `#[serde(default)]` and every leaf-Aplicacao with a single
17747 // member carries), a canonical single-edge fixture (the
17748 // minimal directed-graph shape: one HTTP-shape `(cart → catalog)`
17749 // edge), and a canonical multi-edge fixture with three distinct
17750 // edges (the checkout-shape Aplicacao's HTTP-fan pattern:
17751 // `(cart → catalog)`, `(cart → pricing)`, `(cart → auth)`).
17752 //
17753 // Pins against a future silent detour that returned an owned
17754 // `Vec<WitContract>` (which would type-check but silently clone
17755 // on every accessor call, breaking the zero-cost projection
17756 // every peer sibling slice accessor carries), an axis-shuffled
17757 // projection (a future detour that reordered edges through the
17758 // accessor would silently split the paired
17759 // [`crate::StandardLayout::verify`] per-Aplicacao gate's
17760 // traversal input from the peer [`Self::aplicacao_view`] fold-
17761 // in path's clone-order input, since every canonical
17762 // `caixa-mesh` renderer's per-`(:de, :para)` adjacency-list
17763 // seed dispatch reads the edge set through the same slice),
17764 // or a reference to an operator-resolved overlay (the future
17765 // per-cluster `:contratos-overrides` slot — its resolution
17766 // must land at exactly this accessor body, not silently divert
17767 // the raw slot away from a second consumer).
17768 //
17769 // Fourth outer top-level [`Caixa`] `&[Composite]`-return slice
17770 // accessor pin on the substrate primitive for M2 / M3 typed-
17771 // slot vec-carry axes — closes the outer-`Caixa`
17772 // `&[Composite]` composite-slice sub-family the sibling M2
17773 // `upgrade_from_returns_upgrade_from_slice_verbatim_across_permutations`
17774 // (2a1f907) and
17775 // `children_returns_children_slice_verbatim_across_permutations`
17776 // (c17b51e) pins opened and the M3
17777 // `membros_returns_membros_slice_verbatim_across_permutations`
17778 // (0f26987) pin folded on, closing the outer-`Caixa` M3 mesh-
17779 // slot arm of the composite-slice sub-family. Peer at the outer
17780 // altitude of the closed inner-
17781 // [`crate::AplicacaoSpec::contratos`] (0dcc926) accessor on the
17782 // same MESH-COMPOSITION per-Aplicacao contract-list axis.
17783 let fixtures: Vec<Vec<crate::aplicacao::WitContract>> = vec![
17784 vec![],
17785 vec![contrato_http_for_test("cart", "catalog", "/items")],
17786 vec![
17787 contrato_http_for_test("cart", "catalog", "/items"),
17788 contrato_http_for_test("cart", "pricing", "/price"),
17789 contrato_http_for_test("cart", "auth", "/whoami"),
17790 ],
17791 ];
17792 for contratos in fixtures {
17793 let c = caixa_aplicacao_with_contratos(contratos.clone());
17794 assert_eq!(
17795 c.contratos(),
17796 contratos.as_slice(),
17797 "Caixa::contratos must return :contratos verbatim \
17798 (got {:?}, expected {contratos:?})",
17799 c.contratos(),
17800 );
17801 assert_eq!(
17802 c.contratos(),
17803 c.contratos.as_slice(),
17804 "Caixa::contratos must element-equal the raw \
17805 `self.contratos.as_slice()` field access across every \
17806 value in the Vec<WitContract> accept-set",
17807 );
17808 assert_eq!(
17809 c.contratos().is_empty(),
17810 c.contratos.is_empty(),
17811 "Caixa::contratos().is_empty() must byte-equal \
17812 self.contratos.is_empty() — a presence-bit drift would \
17813 silently split the paired Caixa::declared_mesh_slots \
17814 mesh declared-slot enumerator's presence probe from \
17815 the peer Caixa::aplicacao_view typed-view composer's \
17816 fold-in path",
17817 );
17818 }
17819 }
17820
17821 #[test]
17822 fn declared_mesh_slots_contratos_arm_routes_through_accessor() {
17823 // Composition pin: [`Caixa::declared_mesh_slots`]'s `:contratos`
17824 // presence-probe arm must key off [`Caixa::contratos`], not the
17825 // raw `!self.contratos.is_empty()` field-probe. Structurally: a
17826 // `Caixa { contratos: vec![WitContract { .. }], .. }` must push
17827 // `M3_AUTHOR_KEY_CONTRATOS` onto the declared-slot list (the
17828 // presence bit is non-empty, so the mesh kind-coherence gate
17829 // must surface the slot as "declared"), and a `Caixa {
17830 // contratos: vec![], .. }` must NOT push the label (the "author
17831 // omitted the slot entirely" arm — the empty-slice partition
17832 // the serde-default folds onto). The pair jointly pins the
17833 // accessor + declared-slot enumerator composition: any future
17834 // silent detour that had the accessor collapse
17835 // `[WitContract { .. }]` to `[]` (a `.filter(|c| c.de() !=
17836 // "__reserved__")` projection) would silently absorb the
17837 // "declared but degenerate" arm at the accessor boundary and
17838 // the [`crate::LayoutError::MeshSlotsOnNonAplicacao`] kind-
17839 // coherence gate would silently accept a struct-literal
17840 // `Caixa` carrying the drift.
17841 //
17842 // Peer of the sibling
17843 // `declared_servico_slots_upgrade_from_arm_routes_through_accessor`
17844 // (2a1f907),
17845 // `declared_supervisor_slots_children_arm_routes_through_accessor`
17846 // (c17b51e), and
17847 // `declared_mesh_slots_membros_arm_routes_through_accessor`
17848 // (0f26987) composition pins on the M2 `:upgrade-from` /
17849 // `:children` / M3 `:membros` composite-slice arms — same "the
17850 // enumerator gate must route through the substrate-primitive
17851 // typed dispatch" discipline extended onto the M3 `:contratos`
17852 // composite-slice arm, closing the M3 mesh-slot arm of the
17853 // declared-slot enumerator's routing invariant on the
17854 // composite-slice inputs.
17855 let c = caixa_aplicacao_with_contratos(vec![contrato_http_for_test(
17856 "cart", "catalog", "/items",
17857 )]);
17858 let slots = c.declared_mesh_slots();
17859 assert!(
17860 slots.contains(&crate::render::M3_AUTHOR_KEY_CONTRATOS),
17861 "declared_mesh_slots must push M3_AUTHOR_KEY_CONTRATOS when \
17862 `:contratos` is non-empty — the accessor and the enumerator \
17863 gate must route through the same substrate-primitive \
17864 typed dispatch on the outer :contratos presence bit (got \
17865 slots={slots:?})",
17866 );
17867 let c = caixa_aplicacao_with_contratos(vec![]);
17868 let slots = c.declared_mesh_slots();
17869 assert!(
17870 !slots.contains(&crate::render::M3_AUTHOR_KEY_CONTRATOS),
17871 "declared_mesh_slots must NOT push M3_AUTHOR_KEY_CONTRATOS \
17872 when `:contratos` is empty — the author-omitted arm must \
17873 route through the accessor's empty-slice return unchanged \
17874 (got slots={slots:?})",
17875 );
17876 }
17877
17878 #[test]
17879 fn aplicacao_view_contratos_arm_routes_through_accessor() {
17880 // Composition pin: [`Caixa::aplicacao_view`]'s per-`:contratos`
17881 // fold-in arm must key off [`Caixa::contratos`], not the raw
17882 // `self.contratos.clone()` field-clone. Structurally: a `Caixa
17883 // { kind: Aplicacao, contratos: vec![WitContract { de: "cart",
17884 // .. }, WitContract { de: "pricing", .. }], .. }` must fold the
17885 // per-edge list through the accessor into the typed
17886 // [`crate::AplicacaoSpec`] view's `contratos` slot verbatim —
17887 // every entry the accessor surfaces must land in the view's
17888 // `contratos` slot in the same order. The pair jointly pins
17889 // the accessor + view-composer composition: a future silent
17890 // detour that had the accessor shuffle or drop an edge would
17891 // silently split the paired declared-slot enumerator's
17892 // presence bit from the typed-view composer's edge-list, a
17893 // two-consumer split at the enumerator and the view composer
17894 // far from the source `caixa.lisp`.
17895 //
17896 // Peer of the sibling
17897 // `aplicacao_view_membros_arm_routes_through_accessor`
17898 // (0f26987) composition pin on the M3 `:membros` outer-
17899 // `&[Composite]` composite-slice arm, closing the aplicacao-
17900 // view composer's routing invariant on the composite-slice
17901 // inputs at the outer altitude.
17902 let c = caixa_aplicacao_with_contratos(vec![
17903 contrato_http_for_test("cart", "catalog", "/items"),
17904 contrato_http_for_test("cart", "pricing", "/price"),
17905 ]);
17906 let view = c
17907 .aplicacao_view()
17908 .expect("Aplicacao kind must produce an aplicacao_view");
17909 assert_eq!(
17910 view.contratos(),
17911 c.contratos(),
17912 "aplicacao_view must fold Caixa::contratos verbatim into \
17913 AplicacaoSpec::contratos — the accessor and the view \
17914 composer must route through the same substrate-primitive \
17915 typed dispatch on the outer :contratos slice (got view \
17916 contratos={:?}, expected {:?})",
17917 view.contratos(),
17918 c.contratos(),
17919 );
17920 }
17921
17922 #[test]
17923 fn contratos_projects_slice_by_borrow() {
17924 // The by-borrow pin: [`Caixa::contratos`] returns `&[WitContract]`
17925 // by borrow — the returned slice borrows the underlying
17926 // `Vec<WitContract>` storage of the `:contratos` slot and the
17927 // accessor must not clone the backing `Vec` on every call.
17928 // Peer of the sibling outer top-level [`Caixa`] `&[T]`-return
17929 // by-borrow pins (`autores_projects_slice_by_borrow` b5d813f,
17930 // `etiquetas_projects_slice_by_borrow` 78c7d3c,
17931 // `bibliotecas_projects_slice_by_borrow` 8a36c23,
17932 // `exe_projects_slice_by_borrow` 65d9527,
17933 // `servicos_projects_slice_by_borrow` 611f78b,
17934 // `deps_projects_slice_by_borrow` ad34b4e,
17935 // `deps_dev_projects_slice_by_borrow` f7fd81e,
17936 // `upgrade_from_projects_slice_by_borrow` 2a1f907,
17937 // `children_projects_slice_by_borrow` c17b51e,
17938 // `membros_projects_slice_by_borrow` 0f26987) on the sibling
17939 // outer top-level [`Caixa`] scalar-element and composite-
17940 // element `&[T]` axes — closes the outer-`Caixa` M3 mesh-slot
17941 // composite-element `&[Composite]` axis on the by-borrow pin:
17942 // the accessor's returned slice must borrow from `&self` (the
17943 // returned reference's lifetime is tied to `&self`), and
17944 // calling the accessor twice on the same [`Caixa`] must yield
17945 // slices that are pointer-equal (the underlying byte-buffer is
17946 // the storage `Vec`'s allocation, not a fresh copy) as well as
17947 // value-equal (idempotent, no side effects on `&self`).
17948 //
17949 // Pins against a future silent detour that returned an owned
17950 // `Vec<WitContract>` (which would type-check but silently clone
17951 // on every call), a `&Vec<WitContract>` return (which would
17952 // leak the backing `Vec`'s grow/push/reserve surface no
17953 // downstream consumer reaches for), or a one-arm-only accessor
17954 // that returned a saturating value on some sentinel input.
17955 for contratos in [
17956 vec![],
17957 vec![contrato_http_for_test("cart", "catalog", "/items")],
17958 vec![
17959 contrato_http_for_test("cart", "catalog", "/items"),
17960 contrato_http_for_test("cart", "pricing", "/price"),
17961 ],
17962 ] {
17963 let c = caixa_aplicacao_with_contratos(contratos.clone());
17964 let first = c.contratos();
17965 let second = c.contratos();
17966 assert_eq!(
17967 first, second,
17968 "Caixa::contratos must be idempotent — two successive \
17969 calls on the same &self must return the same \
17970 &[WitContract]",
17971 );
17972 assert_eq!(
17973 first.as_ptr(),
17974 second.as_ptr(),
17975 "Caixa::contratos must borrow the underlying \
17976 Vec<WitContract> storage — two successive calls must \
17977 return slices with the same backing pointer (a fresh \
17978 Vec<WitContract> clone would change the pointer on \
17979 every call)",
17980 );
17981 assert_eq!(
17982 first,
17983 contratos.as_slice(),
17984 "Caixa::contratos must return :contratos verbatim by \
17985 borrow — got {first:?}, expected {contratos:?}",
17986 );
17987 }
17988 }
17989
17990 // ── drift-detection: Caixa top-level multi-word serde-derive-to-const identity ──
17991
17992 #[test]
17993 fn caixa_multi_word_serde_keys_match_lifted_top_level_key_consts() {
17994 // Load-bearing invariant: every multi-word top-level [`Caixa`]
17995 // serde-derived JSON key routes through a lifted `&'static str`
17996 // const. The Rust field names are `snake_case`
17997 // (`deps_dev` / `upgrade_from` / `max_restarts` /
17998 // `restart_window`); [`Caixa`]'s `#[serde(rename_all =
17999 // "camelCase")]` derive attribute maps each to the camelCase
18000 // byte-string the [`Caixa::to_lisp`] round-trip's
18001 // `serde_json::to_value(self)` step lands under before
18002 // `tatara_lisp::domain::json_to_sexp` re-projects the JSON keys
18003 // to the kebab-case `:deps-dev` / `:upgrade-from` /
18004 // `:max-restarts` / `:restart-window` author surface. Serialize
18005 // a fully-populated [`Caixa`] and pin that each canonical
18006 // byte-sequence appears verbatim in the JSON — a future
18007 // accidental `rename_all = "snake_case"` / `"kebab-case"` /
18008 // verbatim-field-name flip at the derive attribute (any of
18009 // which would silently break every [`Caixa::to_lisp`]
18010 // round-trip and the future M4 operator-side manifest ingest's
18011 // `Value::get(<key>)` navigation) surfaces here as a build-time
18012 // test failure at `manifest.rs`, not as an apply-time
18013 // `.get(<stale-canonical-const>)` returning `None` far from the
18014 // derive-attr drift's commit. Same discipline the sibling
18015 // `supervisor_spec_serde_keys_match_lifted_supervisor_key_consts`
18016 // (40cc4e5), `membro_serde_keys_match_lifted_membro_key_consts`
18017 // (ce80ca0), and `upgrade_from_entry_serde_keys_match_lifted_
18018 // m2_upgrade_from_key_consts` (36ffe65) pins established on the
18019 // sibling M2 supervision-tree, M3 [`Membro`] per-entry, and M2
18020 // [`UpgradeFromEntry`] per-entry axes — extended here to the
18021 // enclosing M0 [`Caixa`] top-level axis so the last of the four
18022 // multi-word top-level [`Caixa`] serde-derived JSON keys
18023 // (`depsDev`) joins the substrate's "one canonical byte-string
18024 // per typed serialized-key axis" discipline.
18025 use crate::supervisor::{ChildSpec, RestartPolicy, RestartStrategy};
18026 use crate::upgrade::{UpgradeFromEntry, UpgradeInstruction};
18027 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
18028 c.deps_dev = vec![Dep::simple("tatara-check", "^0.1")];
18029 c.upgrade_from = vec![UpgradeFromEntry {
18030 from: "0.0.1".into(),
18031 instructions: vec![UpgradeInstruction::Restart],
18032 }];
18033 c.estrategia = Some(RestartStrategy::OneForOne);
18034 c.max_restarts = Some(3);
18035 c.restart_window = Some("60s".into());
18036 c.children = vec![ChildSpec {
18037 caixa: "child".into(),
18038 versao: "^0.1".into(),
18039 restart: RestartPolicy::Permanent,
18040 }];
18041 let json = serde_json::to_string(&c).unwrap();
18042 for key in [
18043 crate::render::CAIXA_KEY_DEPS_DEV,
18044 crate::render::M2_KEY_UPGRADE_FROM,
18045 crate::render::SUPERVISOR_KEY_MAX_RESTARTS,
18046 crate::render::SUPERVISOR_KEY_RESTART_WINDOW,
18047 ] {
18048 let quoted = format!("\"{key}\"");
18049 assert!(
18050 json.contains("ed),
18051 "serialized Caixa must carry the lifted top-level \
18052 multi-word byte-sequence {quoted} verbatim in the JSON \
18053 emission (got: {json})",
18054 );
18055 }
18056 }
18057
18058 #[test]
18059 fn caixa_top_level_multi_word_key_consts_are_pairwise_distinct() {
18060 // Cross-axis drift-detection pin: a future collapse of the four
18061 // canonical [`Caixa`] top-level multi-word byte-strings onto the
18062 // same value (e.g. an accidental copy-paste flip of
18063 // [`crate::render::CAIXA_KEY_DEPS_DEV`] to also read
18064 // `"upgradeFrom"`) would silently reroute every downstream
18065 // `Value::get(<key>)` probe on one axis onto the sibling axis's
18066 // top-level entry and pass every propagation-probe test that
18067 // expected only the stale axis's value. Peer of the sibling
18068 // four-way distinct pin on the `SUPERVISOR_KEY_*` tetrad
18069 // (40cc4e5) and the two-way pin on `MEMBRO_KEY_*` (ce80ca0).
18070 let all = [
18071 crate::render::CAIXA_KEY_DEPS_DEV,
18072 crate::render::M2_KEY_UPGRADE_FROM,
18073 crate::render::SUPERVISOR_KEY_MAX_RESTARTS,
18074 crate::render::SUPERVISOR_KEY_RESTART_WINDOW,
18075 ];
18076 for (i, a) in all.iter().enumerate() {
18077 for b in all.iter().skip(i + 1) {
18078 assert_ne!(
18079 a, b,
18080 "Caixa top-level multi-word key consts must be \
18081 pairwise-distinct canonical byte-sequences — got \
18082 `{a}` == `{b}`",
18083 );
18084 }
18085 }
18086 }
18087
18088 #[test]
18089 fn caixa_top_level_multi_word_key_consts_are_lower_camel_case_shape() {
18090 // Shape-pin: every [`Caixa`] top-level multi-word key const must
18091 // be a lowerCamelCase byte-sequence (no `snake_case`
18092 // underscores, no `kebab-case` hyphens, no leading colon, no
18093 // `PascalCase` leading capital, no whitespace / dots) — the
18094 // canonical shape the `#[serde(rename_all = "camelCase")]`
18095 // derive produces on [`Caixa`]. A future flip to a
18096 // non-camelCase attribute at the derive surfaces both here
18097 // (this test fails on the stale-constant shape) and at
18098 // `caixa_multi_word_serde_keys_match_lifted_top_level_key_consts`
18099 // (that test fails on the mismatch between const and derive).
18100 // Peer with `membro_key_consts_are_lower_camel_case_shape`
18101 // (ce80ca0) and `supervisor_key_consts_are_lower_camel_case_shape`
18102 // (40cc4e5) on the sibling per-entry / supervisor-tree axes.
18103 for key in [
18104 crate::render::CAIXA_KEY_DEPS_DEV,
18105 crate::render::M2_KEY_UPGRADE_FROM,
18106 crate::render::SUPERVISOR_KEY_MAX_RESTARTS,
18107 crate::render::SUPERVISOR_KEY_RESTART_WINDOW,
18108 ] {
18109 assert!(
18110 !key.is_empty(),
18111 "Caixa top-level multi-word key const must be non-empty \
18112 (got {key:?})"
18113 );
18114 let first = key.chars().next().unwrap();
18115 assert!(
18116 first.is_ascii_lowercase(),
18117 "Caixa top-level multi-word key const must lead with an \
18118 ASCII-lowercase byte (got {key:?}, leads with {first:?})",
18119 );
18120 assert!(
18121 key.chars().all(|c| c.is_ascii_alphanumeric()),
18122 "Caixa top-level multi-word key const must be \
18123 ASCII-alphanumeric only — no `_` / `-` / `:` / `.` / \
18124 whitespace (got {key:?})",
18125 );
18126 }
18127 }
18128
18129 #[test]
18130 fn caixa_key_deps_dev_pins_canonical_camel_case_byte_string() {
18131 // Scalar-value pin: the byte-string the
18132 // [`crate::render::CAIXA_KEY_DEPS_DEV`] const resolves to,
18133 // asserted verbatim. A future rebrand (`depsDev` → `devDeps`
18134 // matching Cargo's verbatim `dev-dependencies` axis, `depsDev`
18135 // → `depsTest` matching a hypothetical per-test-target
18136 // vocabulary flip) lands as an edit to exactly one const AND
18137 // one derive attribute — the sibling
18138 // `caixa_multi_word_serde_keys_match_lifted_top_level_key_consts`
18139 // pin already ties the const to the derive attribute, so a
18140 // rebrand that touches only one side of the pair fails at
18141 // caixa-core build time. Same "scalar-value pin per const"
18142 // discipline the sibling
18143 // `m2_top_level_author_key_consts_pin_canonical_kebab_case_labels`
18144 // (f49c8b0) and `contrato_key_consts_pin_canonical_camel_case_labels`
18145 // (ca463a4) pins carry on the peer M2 / M3 top-level slot axes.
18146 assert_eq!(crate::render::CAIXA_KEY_DEPS_DEV, "depsDev");
18147 }
18148
18149 #[test]
18150 fn caixa_key_deps_pins_canonical_byte_string() {
18151 // Scalar-value pin: the byte-string the
18152 // [`crate::render::CAIXA_KEY_DEPS`] const resolves to, asserted
18153 // verbatim. Peer of `caixa_key_deps_dev_pins_canonical_camel_case_byte_string`
18154 // on the two-list dep-graph serialized-key axis — the sibling
18155 // pin covers the multi-word `deps_dev → depsDev` camelCase
18156 // arm, this pin covers the single-word `deps → deps` no-op arm
18157 // (the [`crate::Caixa::deps`] field name carries no `_`, so the
18158 // `#[serde(rename_all = "camelCase")]` derive is a no-op on this
18159 // axis and the emitted JSON key equals the source-side field
18160 // name byte-for-byte). A future [`crate::Caixa::deps`] field
18161 // rename (`deps` → `dependencies` matching Cargo's verbatim
18162 // `[dependencies]` axis, `deps` → `runtime_deps` matching a
18163 // hypothetical per-runtime-target vocabulary flip) OR an added
18164 // `#[serde(rename = "…")]` explicit override lands as an edit
18165 // to exactly one const AND one derive-attr / field name — the
18166 // sibling `caixa_deps_serde_key_matches_lifted_caixa_key_deps`
18167 // pin ties the const to the emitted JSON key, so a rebrand
18168 // that touches only one side of the pair fails at caixa-core
18169 // build time.
18170 assert_eq!(crate::render::CAIXA_KEY_DEPS, "deps");
18171 }
18172
18173 #[test]
18174 fn caixa_deps_serde_key_matches_lifted_caixa_key_deps() {
18175 // Load-bearing invariant on the single-word `deps` top-level
18176 // axis: the byte-string [`crate::render::CAIXA_KEY_DEPS`] pins
18177 // must appear verbatim in the JSON [`Caixa::to_lisp`]'s
18178 // `serde_json::to_value(self)` step emits. Serialize a
18179 // populated [`Caixa`] whose `:deps` slot carries at least one
18180 // entry (the `#[serde(default)]` attribute on the field emits
18181 // an empty `[]` even without members, but a non-empty vec
18182 // additionally covers the codec's per-`Dep`-entry emission
18183 // path) and pin that `"deps"` appears verbatim in the JSON
18184 // emission — a future accidental `rename_all = "snake_case"` /
18185 // `"kebab-case"` flip at the derive attribute (or an added
18186 // `#[serde(rename = "…")]` explicit override on the field, or
18187 // a Rust field rename) would break every [`Caixa::to_lisp`]
18188 // round-trip and the future M4 operator-side manifest ingest's
18189 // `Value::get(CAIXA_KEY_DEPS)` navigation — surfaces here as a
18190 // build-time test failure at `manifest.rs`, not as an
18191 // apply-time `.get(<stale-canonical-const>)` returning `None`
18192 // far from the drift's commit. Peer of the sibling
18193 // `caixa_multi_word_serde_keys_match_lifted_top_level_key_consts`
18194 // multi-word pin on the same M0 [`Caixa`] top-level
18195 // serialized-key axis, extended here to the single-word arm
18196 // the multi-word test's `rename_all = "camelCase"` sweep can't
18197 // reach (single-word `deps → deps` is a no-op the multi-word
18198 // pin's `\"depsDev\"` / `\"upgradeFrom\"` / `\"maxRestarts\"` /
18199 // `\"restartWindow\"` byte-scan can never observe).
18200 let mut c = Caixa::from_lisp(&Caixa::template("demo")).unwrap();
18201 c.deps = vec![Dep::simple("caixa-core", "^0.1")];
18202 let json = serde_json::to_string(&c).unwrap();
18203 let quoted = format!("\"{}\"", crate::render::CAIXA_KEY_DEPS);
18204 assert!(
18205 json.contains("ed),
18206 "serialized Caixa must carry the lifted top-level `deps` \
18207 byte-sequence {quoted} verbatim in the JSON emission (got: \
18208 {json})",
18209 );
18210 }
18211
18212 #[test]
18213 fn caixa_dep_graph_two_list_key_consts_are_pairwise_distinct() {
18214 // Cross-axis drift-detection pin on the two-list dep-graph
18215 // renderer-side wire-key axis: a future collapse of the
18216 // canonical [`crate::render::CAIXA_KEY_DEPS`] /
18217 // [`crate::render::CAIXA_KEY_DEPS_DEV`] byte-strings onto the
18218 // same value (e.g. an accidental copy-paste flip of
18219 // `CAIXA_KEY_DEPS_DEV` to also read `"deps"`) would silently
18220 // reroute every downstream `Value::get(<key>)` probe on one
18221 // axis onto the sibling axis's dep-list and pass every
18222 // propagation-probe test that expected only the stale axis's
18223 // value — a dev-only dep would land in the runtime closure at
18224 // publish time, or a runtime dep would be excluded from the
18225 // published lacre. Peer of the sibling four-way distinct pin
18226 // on the top-level multi-word tetrad
18227 // (`caixa_top_level_multi_word_key_consts_are_pairwise_distinct`)
18228 // and the two-way pin on the sibling
18229 // [`DEP_AUTHOR_KEY_DEPS`] / [`DEP_AUTHOR_KEY_DEPS_DEV`]
18230 // author-facing arm (4da6fba's test), extended here to the
18231 // renderer-side wire-key arm of the same two-list dep-graph
18232 // axis so both halves of the "one canonical byte-string per
18233 // typed axis per (author, wire)" grid carry the same
18234 // distinct-ness discipline.
18235 assert_ne!(
18236 crate::render::CAIXA_KEY_DEPS,
18237 crate::render::CAIXA_KEY_DEPS_DEV,
18238 "CAIXA_KEY_DEPS and CAIXA_KEY_DEPS_DEV must be distinct \
18239 canonical byte-sequences on the two-list dep-graph \
18240 renderer-side wire-key axis"
18241 );
18242 }
18243
18244 // ── DepList / Caixa::push_dep pin ────────────────────────────────
18245 //
18246 // The compounding pin: the two-arm closed-set typed enum
18247 // [`crate::dep::DepList`] carries the runtime-closure `:deps`
18248 // (`Prod`) vs dev-only-closure `:deps-dev` (`Dev`) dispatch every
18249 // consumer of the top-level manifest's dep-mutation surface reads
18250 // through, and the typed dispatch [`Caixa::push_dep`] on the
18251 // substrate primitive folds the "select list → check within-list
18252 // dup → push" cascade onto one method call. Prior to this landing
18253 // the two axes lived across two `&'static str` constants
18254 // (`DEP_AUTHOR_KEY_DEPS`, `DEP_AUTHOR_KEY_DEPS_DEV`) with no closed-
18255 // set type carrying the pair; the `feira add` mutation site's
18256 // inline `if self.dev { &mut caixa.deps_dev } else { &mut
18257 // caixa.deps }` dispatch expressed no compile-time link back to
18258 // the substrate primitive, and a future third dep-list axis would
18259 // have silently split at every open-coded mutation site.
18260
18261 #[test]
18262 fn dep_list_as_str_routes_through_lifted_author_key_constants() {
18263 // Every arm returns the same `&'static str` the substrate's
18264 // canonical `DEP_AUTHOR_KEY_DEPS` / `DEP_AUTHOR_KEY_DEPS_DEV`
18265 // constants carry. A future rebrand on either constant reaches
18266 // the enum through one edit; a regression to inline literals
18267 // (e.g. `Prod => ":deps"`) would silently split the diagnostic
18268 // quotes from the wire-format constants every consumer routes
18269 // through and this pin flags it at build time.
18270 assert_eq!(
18271 crate::dep::DepList::Prod.as_str(),
18272 crate::render::DEP_AUTHOR_KEY_DEPS
18273 );
18274 assert_eq!(
18275 crate::dep::DepList::Dev.as_str(),
18276 crate::render::DEP_AUTHOR_KEY_DEPS_DEV
18277 );
18278 }
18279
18280 #[test]
18281 fn dep_list_display_routes_through_as_str() {
18282 // Same as-str-through-Display convergence discipline the
18283 // sibling closed-set typed enums carry — a `format!("{list}")`
18284 // call must land byte-for-byte on the accessor's return so a
18285 // future consumer that formats the enum for a diagnostic line
18286 // reaches the same wire-format constant the wire-format
18287 // producers do.
18288 assert_eq!(
18289 format!("{}", crate::dep::DepList::Prod),
18290 crate::dep::DepList::Prod.as_str()
18291 );
18292 assert_eq!(
18293 format!("{}", crate::dep::DepList::Dev),
18294 crate::dep::DepList::Dev.as_str()
18295 );
18296 }
18297
18298 #[test]
18299 fn dep_list_all_enumerates_every_variant_once() {
18300 // Exhaustive-iteration pin — every arm appears exactly once in
18301 // `ALL`, matching the closed set the compiler enforces on the
18302 // sibling `match self` arms. A future variant addition that
18303 // extends only one method's match without extending `ALL`
18304 // would silently drop the new arm from every consumer that
18305 // iterates the slice.
18306 let variants: &[crate::dep::DepList] = crate::dep::DepList::ALL;
18307 assert!(variants.contains(&crate::dep::DepList::Prod));
18308 assert!(variants.contains(&crate::dep::DepList::Dev));
18309 assert_eq!(variants.len(), 2);
18310 }
18311
18312 #[test]
18313 fn dep_list_from_wire_returns_prod_on_deps_wire_scalar() {
18314 // Reverse projection on the two-list dep-graph axis: the
18315 // author-surface wire tag the sibling `as_str` emitter walks
18316 // for `Prod` (`:deps` via `DEP_AUTHOR_KEY_DEPS`) parses back to
18317 // `Some(DepList::Prod)`. A regression that hand-rolled the
18318 // per-arm match without routing through the lifted
18319 // `DEP_AUTHOR_KEY_DEPS` const would silently disagree on any
18320 // future wire-tag rebrand and this pin flags it at build time.
18321 assert_eq!(
18322 crate::dep::DepList::from_wire(crate::render::DEP_AUTHOR_KEY_DEPS),
18323 Some(crate::dep::DepList::Prod)
18324 );
18325 }
18326
18327 #[test]
18328 fn dep_list_from_wire_returns_dev_on_deps_dev_wire_scalar() {
18329 // Peer of the `Prod`-arm pin on the dev-only axis: the
18330 // author-surface wire tag the sibling `as_str` emitter walks
18331 // for `Dev` (`:deps-dev` via `DEP_AUTHOR_KEY_DEPS_DEV`) parses
18332 // back to `Some(DepList::Dev)`. Same drift-detection posture
18333 // as the peer arm — the sibling method `match` arms are
18334 // compiler-checked exhaustive so a future variant addition
18335 // trips at build time.
18336 assert_eq!(
18337 crate::dep::DepList::from_wire(crate::render::DEP_AUTHOR_KEY_DEPS_DEV),
18338 Some(crate::dep::DepList::Dev)
18339 );
18340 }
18341
18342 #[test]
18343 fn dep_list_from_wire_returns_none_on_unknown_wire_scalar() {
18344 // Every input outside the closed-set arm-string set the
18345 // sibling `as_str` emitter walks lands on the terminal `None`
18346 // fallback — no silent-accept surface. Sweeps a set of
18347 // plausibly-adjacent scalars (unprefixed wire form, PascalCase
18348 // rebrand candidates, foreign wire tags, empty string) so a
18349 // future variant addition that widened one wire form without
18350 // extending the emitter's arm-set would trip the sibling
18351 // round-trip pin below rather than silently accepting the new
18352 // form here.
18353 for candidate in [
18354 "",
18355 "deps",
18356 "deps-dev",
18357 ":deps ",
18358 ":Deps",
18359 ":DEPS",
18360 ":build-dep",
18361 ":tool-dep",
18362 "prod",
18363 "dev",
18364 ] {
18365 assert_eq!(
18366 crate::dep::DepList::from_wire(candidate),
18367 None,
18368 "from_wire({candidate:?}) must return None; every input outside \
18369 the {{DEP_AUTHOR_KEY_DEPS, DEP_AUTHOR_KEY_DEPS_DEV}} accept-set \
18370 the sibling as_str emitter walks lands on the terminal fallback",
18371 );
18372 }
18373 }
18374
18375 #[test]
18376 fn dep_list_round_trips_through_as_str_and_from_wire() {
18377 // Load-bearing round-trip pin: every arm the `ALL` iteration
18378 // exposes survives the `as_str` → `from_wire` composition
18379 // byte-for-byte. Same discipline the sibling closed-set enums
18380 // carry — `CaixaKind` /
18381 // `RestartStrategy` / `RestartPolicy` /
18382 // `PlacementStrategy` — extended onto the two-list dep-graph
18383 // axis. A future variant addition that extends `ALL` +
18384 // `as_str` without extending `from_wire` (or vice versa)
18385 // trips at build time on this iteration because the compiler
18386 // enforces exhaustiveness on the sibling `match self` arms.
18387 for &list in crate::dep::DepList::ALL {
18388 assert_eq!(
18389 crate::dep::DepList::from_wire(list.as_str()),
18390 Some(list),
18391 "DepList::from_wire(as_str({list:?})) must round-trip to Some({list:?}) — \
18392 a silent split between the forward emitter and the reverse parser \
18393 would drift the two halves of the two-list dep-graph axis's typed dispatch",
18394 );
18395 }
18396 }
18397
18398 #[test]
18399 fn push_dep_routes_to_deps_slot_on_prod_arm() {
18400 // The `Prod` arm dispatches to the runtime-closure `:deps`
18401 // slot every downstream lacre-pipeline consumer resolves at
18402 // build time. A future arm that regressed to inline `&mut
18403 // self.deps_dev` on the `Prod` path would silently reroute
18404 // every runtime dep into the dev-only closure at publish time
18405 // — this pin refuses that regression.
18406 let src = Caixa::template("host");
18407 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18408 let before_deps = caixa.deps().len();
18409 let before_deps_dev = caixa.deps_dev().len();
18410 let dep = Dep {
18411 nome: "caixa-teia".to_string(),
18412 versao: "^0.1".to_string(),
18413 fonte: None,
18414 opcional: false,
18415 caracteristicas: Vec::new(),
18416 };
18417 caixa
18418 .push_dep(crate::dep::DepList::Prod, dep)
18419 .expect("first push into :deps succeeds");
18420 assert_eq!(caixa.deps().len(), before_deps + 1);
18421 assert_eq!(caixa.deps_dev().len(), before_deps_dev);
18422 assert_eq!(caixa.deps().last().unwrap().nome(), "caixa-teia");
18423 }
18424
18425 #[test]
18426 fn push_dep_routes_to_deps_dev_slot_on_dev_arm() {
18427 // Peer of the sibling `Prod`-arm dispatch pin — the `Dev` arm
18428 // must dispatch to the dev-only-closure `:deps-dev` slot every
18429 // downstream test-facing artifact resolver reads. A future
18430 // regression that inverted the two arms would silently route
18431 // every dev-only dep into the runtime closure at publish time
18432 // and this pin catches it before the drift ships.
18433 let src = Caixa::template("host");
18434 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18435 let dep = Dep {
18436 nome: "tatara-check".to_string(),
18437 versao: "*".to_string(),
18438 fonte: None,
18439 opcional: false,
18440 caracteristicas: Vec::new(),
18441 };
18442 caixa
18443 .push_dep(crate::dep::DepList::Dev, dep)
18444 .expect("first push into :deps-dev succeeds");
18445 assert!(caixa.deps().is_empty());
18446 assert_eq!(caixa.deps_dev().len(), 1);
18447 assert_eq!(caixa.deps_dev().last().unwrap().nome(), "tatara-check");
18448 }
18449
18450 #[test]
18451 fn push_dep_refuses_within_list_duplicate_nome_with_typed_error() {
18452 // Within-list dup check routes through the canonical
18453 // [`DepError::DuplicateNome`] carrier — the substrate's typed
18454 // diagnostic for the same axis [`Caixa::validate_deps`]'s
18455 // parse-time [`crate::render::insert_first_seen`] walk raises
18456 // on. Prior to the lift the mutation site's inline
18457 // `bail!("dep '{}' already declared", …)` string-diagnostic
18458 // path expressed no through-line back to the typed error;
18459 // routing every dep-list refusal through one carrier means an
18460 // author reading a `feira add` refusal and a `feira build`
18461 // refusal reaches for the same corrective surface without
18462 // switching diagnostic idioms.
18463 let src = Caixa::template("host");
18464 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18465 let dep = Dep {
18466 nome: "caixa-teia".to_string(),
18467 versao: "^0.1".to_string(),
18468 fonte: None,
18469 opcional: false,
18470 caracteristicas: Vec::new(),
18471 };
18472 caixa
18473 .push_dep(crate::dep::DepList::Prod, dep.clone())
18474 .expect("first push succeeds");
18475 let dup = Dep {
18476 nome: "caixa-teia".to_string(),
18477 versao: "^0.2".to_string(),
18478 fonte: None,
18479 opcional: false,
18480 caracteristicas: Vec::new(),
18481 };
18482 let err = caixa
18483 .push_dep(crate::dep::DepList::Prod, dup)
18484 .expect_err("second push with same :nome refuses");
18485 assert_eq!(
18486 err,
18487 DepError::DuplicateNome {
18488 nome: "caixa-teia".to_string(),
18489 list: crate::render::DEP_AUTHOR_KEY_DEPS,
18490 }
18491 );
18492 // The refused mutation must not corrupt the target list —
18493 // exactly one entry lives past the refusal, matching the
18494 // canonical single-source-of-truth invariant `Caixa::deps()`
18495 // carries.
18496 assert_eq!(caixa.deps().len(), 1);
18497 }
18498
18499 #[test]
18500 fn push_dep_refuses_dup_on_dev_list_arm_names_deps_dev_key() {
18501 // Peer of the sibling `Prod`-arm dup-refusal pin — the `Dev`
18502 // arm's refusal must carry `DEP_AUTHOR_KEY_DEPS_DEV` in the
18503 // `list` payload so a future author reading the refusal grep's
18504 // for the correct `:deps-dev` block in their `caixa.lisp`,
18505 // not the sibling `:deps` block the runtime closure resolves.
18506 let src = Caixa::template("host");
18507 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18508 let dep = Dep {
18509 nome: "tatara-check".to_string(),
18510 versao: "*".to_string(),
18511 fonte: None,
18512 opcional: false,
18513 caracteristicas: Vec::new(),
18514 };
18515 caixa
18516 .push_dep(crate::dep::DepList::Dev, dep.clone())
18517 .expect("first push succeeds");
18518 let err = caixa
18519 .push_dep(crate::dep::DepList::Dev, dep)
18520 .expect_err("second push with same :nome refuses");
18521 assert!(matches!(
18522 err,
18523 DepError::DuplicateNome {
18524 ref nome,
18525 list,
18526 } if nome == "tatara-check"
18527 && list == crate::render::DEP_AUTHOR_KEY_DEPS_DEV
18528 ));
18529 }
18530
18531 #[test]
18532 fn push_dep_allows_same_nome_across_prod_and_dev_lists() {
18533 // The within-list dup check is scoped to the target arm — a
18534 // caixa may legitimately carry the same `:nome` under both
18535 // `:deps` and `:deps-dev` (though the substrate's peer
18536 // [`crate::Caixa::validate_deps`] walk still refuses the
18537 // shape at parse time; the mutation-site refusal is scoped to
18538 // the mutation-site's list to match the peer parse-time
18539 // per-list [`crate::render::insert_first_seen`] discipline).
18540 // The two arms hold independent seen-sets.
18541 let src = Caixa::template("host");
18542 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18543 let dep_prod = Dep {
18544 nome: "shared".to_string(),
18545 versao: "^0.1".to_string(),
18546 fonte: None,
18547 opcional: false,
18548 caracteristicas: Vec::new(),
18549 };
18550 let dep_dev = Dep {
18551 nome: "shared".to_string(),
18552 versao: "*".to_string(),
18553 fonte: None,
18554 opcional: false,
18555 caracteristicas: Vec::new(),
18556 };
18557 caixa
18558 .push_dep(crate::dep::DepList::Prod, dep_prod)
18559 .expect("push into :deps succeeds");
18560 caixa
18561 .push_dep(crate::dep::DepList::Dev, dep_dev)
18562 .expect("push same :nome into :deps-dev succeeds");
18563 assert_eq!(caixa.deps().len(), 1);
18564 assert_eq!(caixa.deps_dev().len(), 1);
18565 }
18566
18567 #[test]
18568 fn deps_of_prod_returns_the_deps_slot_verbatim() {
18569 // The `Prod` arm of the typed-dispatch [`Caixa::deps_of`] read
18570 // accessor must project onto the runtime-closure `:deps` slot —
18571 // element-equal and length-equal to the sibling per-slot
18572 // [`Caixa::deps`] accessor's return over every per-caixa fixture.
18573 // A future arm that regressed to `self.deps_dev()` on the `Prod`
18574 // path would silently reroute every downstream typed-dispatch
18575 // walker (the [`Caixa::validate_deps`] per-list
18576 // [`crate::render::insert_first_seen`] dedup walk, any future
18577 // per-axis-parametrised consumer) into the sibling dev-only
18578 // closure and this pin refuses that regression.
18579 let src = Caixa::template("host");
18580 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18581 assert_eq!(caixa.deps_of(crate::dep::DepList::Prod), caixa.deps());
18582 assert_eq!(caixa.deps_of(crate::dep::DepList::Prod).len(), 0);
18583 let dep = Dep {
18584 nome: "caixa-teia".to_string(),
18585 versao: "^0.1".to_string(),
18586 fonte: None,
18587 opcional: false,
18588 caracteristicas: Vec::new(),
18589 };
18590 caixa
18591 .push_dep(crate::dep::DepList::Prod, dep.clone())
18592 .expect("push into :deps succeeds");
18593 assert_eq!(caixa.deps_of(crate::dep::DepList::Prod), caixa.deps());
18594 assert_eq!(caixa.deps_of(crate::dep::DepList::Prod).len(), 1);
18595 assert_eq!(
18596 caixa.deps_of(crate::dep::DepList::Prod)[0].nome(),
18597 "caixa-teia"
18598 );
18599 }
18600
18601 #[test]
18602 fn deps_of_dev_returns_the_deps_dev_slot_verbatim() {
18603 // Peer of the sibling `Prod`-arm pin — the `Dev` arm of
18604 // [`Caixa::deps_of`] must project onto the dev-only-closure
18605 // `:deps-dev` slot, element-equal and length-equal to the
18606 // sibling per-slot [`Caixa::deps_dev`] accessor's return. A
18607 // future regression that inverted the two arms would silently
18608 // route every dev-list walker onto the runtime closure and this
18609 // pin catches it before the drift ships.
18610 let src = Caixa::template("host");
18611 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18612 assert_eq!(caixa.deps_of(crate::dep::DepList::Dev), caixa.deps_dev());
18613 assert_eq!(caixa.deps_of(crate::dep::DepList::Dev).len(), 0);
18614 let dep = Dep {
18615 nome: "tatara-check".to_string(),
18616 versao: "*".to_string(),
18617 fonte: None,
18618 opcional: false,
18619 caracteristicas: Vec::new(),
18620 };
18621 caixa
18622 .push_dep(crate::dep::DepList::Dev, dep)
18623 .expect("push into :deps-dev succeeds");
18624 assert_eq!(caixa.deps_of(crate::dep::DepList::Dev), caixa.deps_dev());
18625 assert_eq!(caixa.deps_of(crate::dep::DepList::Dev).len(), 1);
18626 assert_eq!(
18627 caixa.deps_of(crate::dep::DepList::Dev)[0].nome(),
18628 "tatara-check"
18629 );
18630 }
18631
18632 #[test]
18633 fn deps_of_exhaustive_over_dep_list_all_covers_the_two_slots() {
18634 // Composition pin: iterating [`crate::dep::DepList::ALL`] through
18635 // [`Caixa::deps_of`] must land on the same two-slot partition the
18636 // per-slot [`Caixa::deps`] / [`Caixa::deps_dev`] accessors
18637 // expose — the canonical dispatch a future per-axis-parametrised
18638 // walker (a future `feira app graph` per-list dep summary, a
18639 // future M4 per-cluster dev-closure-audit overlay the CR
18640 // materializer resolves per-CR) reads through. Prior to the
18641 // lift the two-block iteration lived open-coded at every walker,
18642 // so a future third dep-list axis (`:deps-build`, per CAIXA-SDLC
18643 // §I) would have had to grow a third block at every consumer.
18644 // A regression that dropped the `Dev` arm from `ALL` would flip
18645 // the collected pairs to `[(":deps", &[])]` alone and this pin
18646 // refuses that shape.
18647 let src = Caixa::template("host");
18648 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18649 let prod_dep = Dep {
18650 nome: "caixa-teia".to_string(),
18651 versao: "^0.1".to_string(),
18652 fonte: None,
18653 opcional: false,
18654 caracteristicas: Vec::new(),
18655 };
18656 let dev_dep = Dep {
18657 nome: "tatara-check".to_string(),
18658 versao: "*".to_string(),
18659 fonte: None,
18660 opcional: false,
18661 caracteristicas: Vec::new(),
18662 };
18663 caixa
18664 .push_dep(crate::dep::DepList::Prod, prod_dep)
18665 .expect("push into :deps succeeds");
18666 caixa
18667 .push_dep(crate::dep::DepList::Dev, dev_dep)
18668 .expect("push into :deps-dev succeeds");
18669 let collected: Vec<(&'static str, usize, &str)> = crate::dep::DepList::ALL
18670 .iter()
18671 .map(|&list| {
18672 let slice = caixa.deps_of(list);
18673 (list.as_str(), slice.len(), slice[0].nome())
18674 })
18675 .collect();
18676 assert_eq!(
18677 collected,
18678 vec![
18679 (crate::render::DEP_AUTHOR_KEY_DEPS, 1, "caixa-teia"),
18680 (crate::render::DEP_AUTHOR_KEY_DEPS_DEV, 1, "tatara-check"),
18681 ]
18682 );
18683 }
18684
18685 #[test]
18686 fn validate_deps_iterates_through_dep_list_all_via_deps_of() {
18687 // Composition pin: the [`Caixa::validate_deps`] parse-time gate
18688 // must route its per-list [`crate::render::insert_first_seen`]
18689 // dedup walk through [`Caixa::deps_of`] + [`crate::dep::DepList::ALL`]
18690 // rather than the pre-lift open-coded two-block iteration over
18691 // `self.deps()` + `self.deps_dev()`. A regression that dropped
18692 // one arm (e.g. hand-inlining `self.deps()` alone) would silently
18693 // stop refusing within-list dups on the sibling arm; a
18694 // regression that flipped the arm-to-list-key mapping
18695 // (`Dev => DEP_AUTHOR_KEY_DEPS`) would silently mislabel the
18696 // diagnostic surface. Both drifts surface here through a paired
18697 // duplicate-name refusal per arm plus an offending-list-key
18698 // check on the emitted [`DepError::DuplicateNome`] carrier.
18699 for &list in crate::dep::DepList::ALL {
18700 let src = Caixa::template("host");
18701 let mut caixa = Caixa::from_lisp(&src).expect("template parses");
18702 let dup = Dep {
18703 nome: "twin".to_string(),
18704 versao: "^0.1".to_string(),
18705 fonte: None,
18706 opcional: false,
18707 caracteristicas: Vec::new(),
18708 };
18709 match list {
18710 crate::dep::DepList::Prod => {
18711 caixa.deps.push(dup.clone());
18712 caixa.deps.push(dup);
18713 }
18714 crate::dep::DepList::Dev => {
18715 caixa.deps_dev.push(dup.clone());
18716 caixa.deps_dev.push(dup);
18717 }
18718 }
18719 let err = caixa
18720 .validate_deps()
18721 .expect_err("within-list duplicate :nome must refuse");
18722 assert_eq!(
18723 err,
18724 DepError::DuplicateNome {
18725 nome: "twin".to_string(),
18726 list: list.as_str(),
18727 },
18728 "validate_deps on {list} arm must emit \
18729 DepError::DuplicateNome carrying the arm's own \
18730 as_str() diagnostic — the arm-to-list-key mapping \
18731 flowed through DepList::ALL + Caixa::deps_of"
18732 );
18733 }
18734 }
18735
18736 #[test]
18737 fn caixa_licenca_default_pins_canonical_mit_byte() {
18738 // Bridge-arm pin: [`CAIXA_LICENCA_DEFAULT`] resolves to the
18739 // canonical SPDX-`"MIT"` byte today, the same license expression
18740 // every peer substrate-side consumer of the author-omitted
18741 // `:licenca` slot ([`caixa-helm`]'s `build_readme` fallback arm at
18742 // `caixa-helm/src/lib.rs`, the future M4
18743 // `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-CR
18744 // `Chart.yaml annotations["artifacthub.io/license"]` emitter this
18745 // crate's [`Caixa::validate_licenca`] docstring roadmap already
18746 // names as the second consumer) fills into its per-consumer
18747 // README/annotation emit site. Pin the literal here (peer with the
18748 // [`crate::version::DEFAULT_PUBLISH_TAG_PREFIX`] /
18749 // [`crate::version::DEFAULT_GIT_REMOTE`] /
18750 // [`crate::version::DEFAULT_PLEME_GIT_ORG`] canonical-literal pins
18751 // on the sibling lifted-constant surfaces) so a future
18752 // substrate-side license-fallback rebrand surfaces here as a
18753 // coordinated edit-point: the sibling caixa-helm
18754 // `build_readme_license_line_routes_through_lifted_caixa_licenca_default`
18755 // pinning test already pins the equality at the renderer-emit
18756 // axis; this pin closes the second coordinate of the pair by
18757 // anchoring the lifted constant's current byte to the canonical
18758 // CAIXA-SDLC §I license scaffold's documented shape.
18759 assert_eq!(CAIXA_LICENCA_DEFAULT, "MIT");
18760 }
18761}